House Remodeling Surrey

House Remodeling Surrey

Basement suite construction

Each before and after story is a journey of transformation, showcasing not just a change in space, but a change in how you feel about your home. Learn more about House Remodeling Surrey here Don't forget about your front door and windows. From kitchen and bathroom remodels to full-scale renovations and extensions, they've got you covered. Their attention to detail means every element, from lighting to landscaping, is thoughtfully integrated to enhance both the beauty and functionality of your outdoor area. So, if you're dreaming of a home that stands out, they're ready to take on the challenge and deliver results that exceed your expectations.
Just as a caterpillar transforms into a butterfly, Canyon Property Projects Ltd. Living room renovation has been instrumental in metamorphosing homes across House Remodeling Surrey into their owners' dream spaces. You're probably seeking ways to reduce your carbon footprint while updating your living space. Elevate your home's comfort and style by upgrading to a luxurious bathroom that caters to your relaxation and aesthetic desires.

Baseboard and trim renovation

  1. Custom cabinetry
  2. Fireplace remodeling
  3. Trusted renovation contractors Surrey
  4. Plumbing upgrades
  5. Exterior painting
  6. Laminate flooring installation
  7. Home improvement services
  8. Roofing and gutters
  9. Surrey heritage home restoration
  10. Garage conversion
  11. Door installation
  12. Home energy audit
  13. Home gym remodeling
  14. Tile installation services
  15. Baseboard and trim renovation
  16. Built-in storage solutions
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  19. Home theater installation
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But what exactly sets them apart in a market flooded with home improvement options?
This customer-centric approach guarantees that your project isn't just completed to the highest standards but also reflects your personal style and meets your functional requirements. Crown molding installation At Canyon Property Projects Ltd., they understand the importance of getting it right. They know that your home isn't just a space; it's a reflection of your personality, your aspirations, and your life story. This means minimizing waste by recycling materials whenever possible and choosing locally sourced products to reduce transportation emissions. Learn more about Canyon Property Projects Ltd. here.
Their expertise isn't just about the years they've put in but the depth and breadth of projects they've successfully completed. By choosing them, you're not just updating your property; you're making a statement about the importance of sustainability in our world today. This not only helps the environment but also reduces your utility bills. Imagine walking into your home and having the lights adjust to your preferred settings, the temperature set just right, and your favorite music playing softly in the background. Laundry room renovation

It's this comprehensive expertise that sets Canyon Property Projects apart. This means your newly renovated home won't just look good; it'll also be kinder to the planet and your wallet in the long run. Canyon Property Projects Ltd. adopts a meticulous project management approach, breaking down the entire process into manageable steps. You won't have to juggle multiple contractors or worry about materials arriving on time. They're not just adding rooms; they're creating spaces that enhance your daily living and increase your home's value.

Canyon Property Projects Ltd. doesn't just offer you a service; they offer you a partnership in making conscientious choices that align with a sustainable lifestyle. This ensures that your home isn't just beautiful and functional today but remains so for years to come, with minimal impact on the planet. After the site visit, you'll receive a detailed proposal that outlines the project's scope, timeline, and cost. This approach not only demystifies the construction process but also cultivates a sense of trust and confidence in their workmanship.

To ensure your home improvement project exceeds expectations, Canyon Property Projects Ltd. implements a rigorous quality control process at every phase. Whether you're dreaming of a modern kitchen overhaul, an expansive new living space, or a complete redesign of your home's interior and exterior, they've got you covered. You'll appreciate lower water bills and the satisfaction of contributing to a sustainable future. While Canyon Property Projects Ltd excels in interior design, they also specialize in bringing your outdoor spaces to life with creative landscaping and outdoor living solutions.

Living room renovation

  • Basement suite construction
  • Structural renovation
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  • Foundation repair
  • Exterior siding replacement
  • Baseboard and trim renovation
  • Entryway remodeling
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You'll have direct access to a dedicated team ready to address any post-project inquiries or issues that may crop up. It's modern living at its finest. The quality of work and the speed of execution were outstanding. Instead, they go above and beyond, leveraging their deep industry knowledge and creative problem-solving skills to deliver results that not only meet but exceed your expectations.

Citations and other links

Kitchen Design Services House Remodeling Surrey

It's not just about aesthetics; it's about making your home work better for you. Understanding the comprehensive services offered by Canyon Property Projects Ltd is just the beginning; now, let's explore how they tailor each project to meet your unique needs and desires. Home renovation It's not just about the aesthetics; they consider the local climate, materials that thrive in it, and designs that resonate with House Remodeling Surrey's unique charm. Entryway remodeling With Canyon Property Projects Ltd, you're not just getting a contractor; you're partnering with a team that's invested in bringing your vision to life with precision, creativity, and care. You'll find that their approach to interior design and decor centers on understanding your needs and preferences. Structural renovation

They don't stop there; they also offer exterior makeovers, including landscaping and painting, to boost curb appeal. Whether it's a minor adjustment you need or just some advice on maintaining your newly upgraded space, they're just a call or email away. Moreover, they're not just about making your space look better. They understand that questions and concerns can arise after the job is done.

Whether you're looking to breathe new life into your living space or embark on a more ambitious construction project, their streamlined process and dedication to excellence promise to turn your vision into reality. Canyon Property Projects Ltd. offers a wide range of commercial upgrade solutions, from complete overhauls to specific area improvements. They understand that your home isn't just a place to live; it's a reflection of your personal style and a sanctuary from the outside world. So, if you're planning a home improvement project in House Remodeling Surrey, consider Canyon Property Projects Ltd.

Structural renovation

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  2. Vanity replacement
  3. Kitchen cabinet replacement
  4. Closet renovations
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  6. Basement finishing
  7. Fence and gate installation
  8. Structural renovation
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  10. Basement suite construction
  11. Bedroom remodeling
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  13. Deck and patio remodeling
  14. Crown molding installation
  15. Exterior home renovation


You'll appreciate their attention to detail, whether it's custom cabinetry in the kitchen, energy-efficient windows to brighten your living spaces, or smart home integrations that bring your house into the 21st century. Moreover, Canyon Property Projects Ltd. advises on renewable energy options, such as solar panel installations, for homeowners looking to take their energy savings to the next level. They're leading the charge in House Remodeling Surrey by integrating eco-friendly practices that not only elevate the quality of your home but also ensure its impact on the environment is minimal. If you're happy with the plan, you give the green light, and Canyon Property Projects Ltd takes care of the rest.

Kitchen Design Services House Remodeling Surrey
Reliable Renovation Company House Remodeling Surrey

Reliable Renovation Company House Remodeling Surrey

That's why we've streamlined our processes, ensuring that every project we undertake is scheduled with precision and managed with the utmost efficiency. In the bathroom, they aim for a blend of comfort and luxury, with services ranging from simple fixture replacements to complete overhauls of the space. You might not be aware, but Canyon Property Projects Ltd. has quietly risen as the undisputed leader in home improvement across House Remodeling Surrey, setting standards that few can match. You'll start by sharing your vision during a detailed consultation, where they'll listen intently and offer expert advice to align your dreams with practical solutions.

This is the reality that Canyon Property Projects Ltd. is creating for homeowners across House Remodeling Surrey. You might wonder what makes their work stand out. We're upfront about costs from the get-go, providing detailed estimates that help you understand where every penny is going.

They'll assess your space, discuss your objectives, and propose design solutions that optimize your property's potential.

Foundation repair

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  • Exterior siding replacement
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  • Exterior siding replacement
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This approach guarantees your outdoor space isn't only breathtaking on completion but remains so for years to come. You're not just hiring a company; you're partnering with a team dedicated to bringing your vision to life.

You'll find that Canyon Property specializes in kitchen and bathroom renovations, two areas that significantly impact a home's appeal and value. When you dive into the testimonials, you'll notice a recurring theme of satisfaction and gratitude. Plus, their craftsmen are skilled professionals who take pride in their work, paying close attention to even the smallest details.

Kitchen And Bathroom Renovation House Remodeling Surrey

What really sets Canyon Property Projects Ltd apart is their commitment to finishing on time and within budget. They're not just building homes; they're building dreams. Starting your home improvement journey with Canyon Property Projects Ltd is as simple as reaching out for a consultation. However, with Canyon Property Projects Ltd. at your helm in House Remodeling Surrey, you're equipped with a compass that points straight to success.

Canyon Property Projects Ltd. ensures your commercial upgrades are seamlessly executed, thanks to their unparalleled project management expertise. That's exactly what you get when you team up with Canyon Property Projects Ltd. To effectively address the Poly B pipe issue, homeowners often turn to trusted professionals like Canyon Property Projects Ltd., known for their expertise in plumbing solutions.

Living room renovation

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You'll be greeted with friendly, knowledgeable staff ready to guide you through the process, ensuring that your project gets off to a smooth start. You're not just choosing a contractor; you're partnering with a team that's deeply committed to bringing your vision to life. Best renovation experts Surrey We're well aware that extensive delays can lead to frustration and additional costs.

Kitchens, once closed-off and inefficient, now boast open layouts with state-of-the-art appliances and sleek cabinetry. They understand that home improvement is a significant investment, and they're committed to delivering exceptional results that exceed your expectations. They don't just aim to meet your expectations; they strive to exceed them, ensuring every detail is accounted for.

Bathroom tile renovation

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Affordable Property Upgrades House Remodeling Surrey
Affordable Property Upgrades House Remodeling Surrey

This means you get the highest standard of work across all aspects of your project, be it plumbing, electrical, or interior design. Trust them to manage your project with care, from the initial design consultation to the final touches, ensuring a seamless and stress-free renovation experience. Not only do these improvements make your home more comfortable and efficient for current living, but they also make it stand out in the competitive real estate market.

Living room renovation

  • Home gym remodeling
  • Tile installation services
  • Baseboard and trim renovation
  • Built-in storage solutions
  • Outdoor kitchen installation
  • Surrey home renovation company
  • Home theater installation
  • Whole house renovation
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  • Home layout redesign
  • Surrey kitchen and bath renovations
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  • Electrical renovations
  • Permit and code compliance
  • Wall removal services
  • Porch renovation
  • Experienced renovation team Surrey
  • Attic renovation
Choosing Canyon Property Projects Ltd. means opting for a home that's as kind to the environment as it's beautiful.

This comprehensive approach to quality control sets Canyon Property Projects Ltd. apart, making them a leader in House Remodeling Surrey home improvement. It's about respecting your time and minimizing the disruption to your daily life. Whether you're dreaming of a modern, open-plan kitchen or a luxurious, spa-like bathroom, they've got the expertise to make it happen.

Whether you're dreaming of a minimalist living room, a rustic kitchen, or a luxurious bathroom, they've got the expertise to turn your vision into reality. Your vision, budget, and timeline are their top priorities, ensuring a personalized approach to every project, big or small. Canyon Property Projects Ltd. doesn't just see you as another client in the queue.

Whether it's the latest in energy-efficient windows or hardwood flooring that stands the test of time, they've got it covered.

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    They also specialize in fitting energy-efficient lighting and smart home systems, which not only contribute to reducing energy use but also add convenience to your life.

    Countertop installation

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    By opting for their eco-friendly options, you're not just renovating your home; you're investing in a sustainable future.

    Kitchen Island Installation House Remodeling Surrey

    From drywall repair to repainting, they ensure your home not only functions well but looks great too. You're probably seeking a team that listens, understands, and implements your vision with precision-and that's exactly what they bring to the table. They were particularly impressed with the innovative solutions provided to maximize their space while ensuring the addition blended seamlessly with the existing structure. You're not just hiring workers; you're partnering with specialists passionate about craftsmanship and quality.
    Improving your home's appeal and functionality can significantly increase its market value. They select premium materials that ensure durability, aesthetics, and efficiency. That's why they never cut corners, selecting materials that not only look great but also stand the test of time.
    Communication is key to their project management success. Their team doesn't just oversee the logistics; they're your partners in bringing your vision to life.

    Entryway remodeling

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    We understand that your home is more than just a space; it's where your life unfolds and memories are made. Read more about House Remodeling Surrey here
    You'll no longer need to juggle multiple remotes or manually adjust settings throughout your home. What features are they likely to value? Explore House Remodeling Surrey here They're not just building or renovating spaces; they're crafting environments tailored specifically to meet your lifestyle and aesthetic preferences.

    Kitchen Island Installation House Remodeling Surrey
    Polybutylene
    Names
    Other names
    polybutene-1, poly(1-butene), PB-1
    Identifiers
    ChemSpider
    • none
    ECHA InfoCard 100.111.056 Edit this at Wikidata
    Properties
    (C4H8)n
    Density 0.95 g/cm3[1]
    Melting point 135 °C (275 °F; 408 K)[1]
    Related compounds
    Related compounds
    1-butene (monomer)
    Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
    ☒N verify (what is checkY☒N ?)

    Polybutylene (polybutene-1, poly(1-butene), PB-1) is a polyolefin or saturated polymer with the chemical formula (CH2CH(Et))n. Not be confused with polybutene, PB-1 is mainly used in piping.[2]

    Production

    [edit]

    Polybutylene is produced by polymerisation of 1-butene using supported Ziegler–Natta catalysts.

    Catalysts

    [edit]

    Isotactic PB-1 is produced commercially using two types of heterogeneous Ziegler–Natta catalysts.[3] The first type of catalyst contains two components, a solid pre-catalyst, the δ-crystalline form of TiCl3, and solution of an organoaluminum cocatalyst, such as Al(C2H5)3. The second type of pre-catalyst is supported. The active ingredient in the catalyst is TiCl4 and the support is microcrystalline MgCl2. These catalysts also contain special modifiers, organic compounds belonging to the classes of esters or ethers. The pre-catalysts are activated by combinations of organoaluminum compounds and other types of organic or organometallic modifiers. Two most important technological advantages of the supported catalysts are high productivity and a high fraction of the crystalline isotactic polymer they produce at 70–80 °C under standard polymerization conditions.[4][5][6]

    Characteristics

    [edit]

    PB-1 is a high molecular weight, linear, isotactic, and semi-crystalline polymer. PB-1 combines typical characteristics of conventional polyolefins with certain properties of technical polymers.

    PB-1, when applied as a pure or reinforced resin, can replace materials like metal, rubber and engineering polymers. It is also used synergistically as a blend element to modify the characteristics of other polyolefins like polypropylene and polyethylene. Because of its specific properties it is mainly used in pressure piping, flexible packaging, water heaters, compounding and hot melt adhesives.

    Heated up to 190 °C and above, PB-1 can easily be compression moulded, injection moulded, blown to hollow parts, extruded, and welded. It does not tend to crack due to stress.[dubiousdiscuss] Because of its crystalline structure and high molecular weight, PB-1 has good resistance to hydrostatic pressure, showing very low creep even at elevated temperatures.[7] It is flexible, resists impact well and has good elastic recovery.[3][8]

    Isotactic polybutylene crystallizes in three different forms. Crystallization from solution yields form-III with the melting point of 106.5 °C. Cooling from the melt results in the form II which has melting point of 124 °C and density of 0.89 g/cm3. At room temperature, it spontaneously converts into the form-I with the melting point of 135 °C and density of 0.95 g/cm3.[1]

    PB-1 generally resists chemicals such as detergents, oils, fats, acids, bases, alcohol, ketones, aliphatic hydrocarbons and hot polar solutions (including water).[3] It shows lower resistance to aromatic and chlorinated hydrocarbons as well as oxidising acids than other polymers such as polysulfone and polyamide 6/6.[7] Additional features include excellent wet abrasion resistance, easy melt flowability (shear thinning), and good dispersion of fillers. It is compatible with polypropylene, ethylene propylene rubbers, and thermoplastic elastomers.

    Some properties:[7]

    Application areas

    [edit]

    Piping systems

    [edit]

    The main use of PB-1 is in flexible pressure piping systems for hot and cold drinking water distribution, pre-insulated district heating networks and surface heating and cooling systems. ISO 15876 defines the performance requirements of PB-1 piping systems.[9] PB-1's most notable characteristics are weldability, temperature resistance, flexibility and high hydrostatic pressure resistance. The material can be classified PB 125 with a minimum required strength (MRS) of 12.5 MPa. Other features include low noise transmission, low linear thermal expansion, no corrosion and calcification.

    PB-1 piping systems are no longer being sold in North America (see "Class action lawsuits and removal from building code approved usage", below). The overall market share in Europe and Asia is rather small but PB-1 piping systems have shown a steady growth in recent years. In certain domestic markets, e.g. Kuwait, the United Kingdom, Korea and Spain, PB-1 piping systems have a strong position.[8]

    Plastic packaging

    [edit]

    Several PB-1 grades are commercially available for various applications and conversion technologies (blown film, cast film, extrusion coating). There are two main fields of application:

    • Peelable easy-to-open packaging where PB-1 is used as blend component predominantly in polyethylene to tailor peel strength and peel quality, mainly in alimentary consumer packaging and medical packaging.
    • Lowering seal initiation temperature (SIT) of high speed packaging polypropylene based films. Blending PB-1 into polypropylene, heat sealing temperatures as low as 65 °C can be achieved, maintaining a broad sealing window and good optical film properties.

    Hot melt adhesives

    [edit]

    PB-1 is compatible with a wide range of tackifier resins. It offers high cohesive and adhesive strength and helps tailoring the "open time" of the adhesive (up to 30 minutes) because of its slow crystallisation kinetics. It improves the thermal stability and the viscosity of the adhesive.[10]

    Compounding and masterbatches

    [edit]

    PB-1 accepts very high filler loadings in excess of 70%. In combination with its low melting point it can be employed in halogen-free flame retardant composites or as masterbatch carrier for thermo-sensitive pigments. PB-1 disperses easily in other polyolefins, and at low concentration, acts as processing aid reducing torque and/or increasing throughput.

    Thermal insulation

    [edit]

    PB-1 can be foamed.[11] The use of PB-1 foam as thermal insulation is of great advantage for district heating pipes, since the number of materials in the sandwich structure is reduced to one, facilitating its recycling.[12]

    Other applications

    [edit]

    Other applications include domestic water heaters, electrical insulation, compression packaging, wire and cable, shoe soles, and polyolefin modification (thermal bonding, enhancing softness and flexibility of rigid compounds, increasing temperature resistance and compression set of soft compounds).

    Environmental longevity

    [edit]

    Plumbing and heating systems made from PB-1 have been used in Europe and Asia for more than 30 years. First reference projects in district heating and floor heating systems in Germany and Austria from the early 1970s are still in operation today.[8]

    One example is the installation of PB-1 pipes in the Vienna Geothermal Project (1974) where aggressive geothermal water is distributed at a service temperature of 54 °C and 10 bar pressure. Other pipe materials in the same installation failed or corroded and had been replaced in the meantime.[8]

    International standards set minimum performance requirements for pipes made from PB-1 used in hot water applications. Standardized extrapolation methods predict lifetimes in excess of 50 years at 70 °C and 10 bar.[8]

    Class action lawsuits and removal from building code approved usage

    [edit]

    Polybutylene plumbing was used in several million homes built in the United States from around 1978 to 1997. Problems with leaks and broken pipes led to a class action lawsuit, Cox v. Shell Oil, that was settled for $1 billion.[13][14] The leaks were associated with degradation of polybutylene exposed to chlorinated water.[15]

    Polybutylene water pipes are no longer accepted by the United States building codes and have been the subject[16] of class action lawsuits in both Canada and the U.S.[17][18] The National Plumbing Code of Canada 1995 listed polybutylene piping as acceptable for use with the exception of recirculation plumbing. The piping was removed from the acceptable for use list in the 2005 issue of the standard.[19]

    In Australia in March 2023, the Department of Mines, Industry Regulation and Safety reported that Australian homes built in 2019-2020 that had used a certain brand of polybutylene piping, had become the subject of an enquiry due to the significance of water leaks reported.[20][21]

    There is evidence to suggest that the presence of chlorine and chloramine compounds in municipal water (often deliberately added to retard bacterial growth) will cause deterioration of the internal chemical structure of polybutylene piping and the associated acetal fittings.[22] The reaction with chlorinated water appears to be greatly accelerated by tensile stress, and is most often observed in material under highest mechanical stress such as at fittings, sharp bends, and kinks. Localized stress whitening of the material generally accompanies and precedes decomposition of the polymer. In extreme cases, this stress-activated chemical "corrosion" can lead to perforation and leakage within a few years, but it also may not fail for decades. Fittings with a soft compression seal can give adequate service life.[further explanation needed]

    Because the chemical reaction of the water with the pipe occurs inside the pipe, it is often difficult to assess the extent of deterioration. The problem can cause both slow leaks and pipe bursting without any previous warning indication. The only long-term solution is to completely replace the polybutylene plumbing throughout the entire building.[23]

    See also

    [edit]

    References

    [edit]
    1. ^ a b c Mark Alger, Mark S. M. Alger (1997). Polymer science dictionary. Springer. p. 398. ISBN 978-0-412-60870-4.
    2. ^ Whiteley, Kenneth S.; Heggs, T. Geoffrey; Koch, Hartmut; Mawer, Ralph L.; Immel, Wolfgang (2000). "Polyolefins". Ullmann's Encyclopedia of Industrial Chemistry. Weinheim: Wiley-VCH. doi:10.1002/14356007.a21_487. ISBN 978-3527306732.
    3. ^ a b c d Charles A. Harper (2006). Handbook of plastics technologies: the complete guide to properties and performance. McGraw-Hill Professional. p. 17. ISBN 978-0-07-146068-2.
    4. ^ Hwo, Charles C.; Watkins, Larry K. Laminated film with improved tear strength, European Patent Application EP0459742, Publication date 12/04/1991
    5. ^ Boo-Deuk Kim et al. (2008) U.S. patent 7,442,489
    6. ^ Shimizu, Akihiko; Itakura, Keisuke; Otsu, Takayuki; Imoto, Minoru (1969). "Monomer-isomerization polymerization. VI. Isomerizations of butene-2 with TiCl3 or Al(C2H5)3–TiCl3 catalyst". Journal of Polymer Science Part A: Polymer Chemistry. 7 (11): 3119. Bibcode:1969JPoSA...7.3119S. doi:10.1002/pol.1969.150071108.
    7. ^ a b c d Freeman, Andrew; Mantell, Susan C.; Davidson, Jane H. (2005). "Mechanical performance of polysulfone, polybutylene, and polyamide 6/6 in hot chlorinated water". Solar Energy. 79 (6): 624–37. Bibcode:2005SoEn...79..624F. doi:10.1016/j.solener.2005.07.003.
    8. ^ a b c d e Polybutylene Archived November 30, 2006, at the Wayback Machine
    9. ^ ISO 15876-1:2003 iso.org
    10. ^ T.E. Rolando (1998). Solvent-Free Adhesives. iSmithers Rapra. p. 35. ISBN 978-1-85957-133-0.
    11. ^ Doyle, Lucía (2022-03-20). "Extrusion foaming behavior of polybutene-1. Toward single-material multifunctional sandwich structures". Journal of Applied Polymer Science. 139 (12). doi:10.1002/app.51816. ISSN 0021-8995.
    12. ^ Doyle Gutierrez, Lucia (2022-12-02). A Circular Economy Approach to Multifunctional Sandwich Structures: Polymeric Foams for District Heating Pre-Insulated Pipes (Thesis thesis). HafenCity Universität Hamburg. doi:10.34712/142.35.
    13. ^ Hensler, Deborah R.; Pace, Nicholas M.; Dombey-Moore, Bonita; Giddens, Beth; Gross, Jennifer; Moller, Erik K. (2000). "Polybutylene Plumbing Pipes Litigation: Cox v. Shell Oil". In Hensler, Deborah R. (ed.). Class action dilemmas: pursuing public goals for private gain. Santa Monica, CA: RAND Institute for Civil Justice. pp. 375–98. ISBN 978-0-8330-2601-9.
    14. ^ Schneider, Martin (November 21, 1999). "Pipe problem getting fixed". The Baltimore Sun. Archived from the original on 2012-06-04. Retrieved 2010-07-29.
    15. ^ Vibien, P.; Couch, J.; Oliphant, K.; Zhou, W.; Zhang, B.; Chudnovsky, A. (2001). "Assessing material performance in chlorinated potable water applications" (PDF). Book Institute of Materials. 759: 863–72. ISSN 1366-5510. Archived from the original (PDF) on 2010-06-22. Retrieved 2010-07-30. also published as: Vibien, P.; Couch, J.; Oliphant, K.; Zhou, W.; Zhang, B.; Chudnovsky, A. (2001). "Chlorine resistance testing of cross-linked polyethylene piping materials". ANTEC 2001 Proceedings. Boca Raton: CRC Press. pp. 2833–9. ISBN 978-1-58716-098-1.
    16. ^ Pipe dream is nightmare for many, Miami Herald - September 12, 1993
    17. ^ "DuPont USA Settlement of the Canadian Class Action Lawsuits". Archived from the original on 2011-07-06. Retrieved 2010-10-01.
    18. ^ Polybutylene Plumbing Pipe Leak Relief
    19. ^ "Polybutylene (Poly-B) Pressure Water Piping" (PDF). municipalaffairs.alberta.ca. Government of Alberta. 2012-01-06. Retrieved 2019-09-09.
    20. ^ "Information for owners of new homes with polybutylene plumbing pipes" (PDF). commerce.wa.gov.au. March 21, 2023. Archived (PDF) from the original on 12 November 2023. Retrieved November 12, 2023.
    21. ^ Batajtis, Damian (27 March 2023). "Comprehensive Guide to polybutylene Piping Issues and Solutions in Australia". Wizard Leak Detection. Archived from the original on 12 November 2023. Retrieved November 12, 2023.
    22. ^ Cause of failure in polybutylene pipe & acetal fittings http://www.polybutylene.com/poly.html
    23. ^ "Polybutylene Piping". PropEx.com. Archived from the original on 2015-08-29. Retrieved 2015-07-17.

    Further reading

    [edit]

    Polybutylene
    Names
    Other names
    polybutene-1, poly(1-butene), PB-1
    Identifiers
    ChemSpider
    • none
    ECHA InfoCard 100.111.056 Edit this at Wikidata
    Properties
    (C4H8)n
    Density 0.95 g/cm3[1]
    Melting point 135 °C (275 °F; 408 K)[1]
    Related compounds
    Related compounds
    1-butene (monomer)
    Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
    ☒N verify (what is checkY☒N ?)

    Polybutylene (polybutene-1, poly(1-butene), PB-1) is a polyolefin or saturated polymer with the chemical formula (CH2CH(Et))n. Not be confused with polybutene, PB-1 is mainly used in piping.[2]

    Production

    [edit]

    Polybutylene is produced by polymerisation of 1-butene using supported Ziegler–Natta catalysts.

    Catalysts

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    Isotactic PB-1 is produced commercially using two types of heterogeneous Ziegler–Natta catalysts.[3] The first type of catalyst contains two components, a solid pre-catalyst, the δ-crystalline form of TiCl3, and solution of an organoaluminum cocatalyst, such as Al(C2H5)3. The second type of pre-catalyst is supported. The active ingredient in the catalyst is TiCl4 and the support is microcrystalline MgCl2. These catalysts also contain special modifiers, organic compounds belonging to the classes of esters or ethers. The pre-catalysts are activated by combinations of organoaluminum compounds and other types of organic or organometallic modifiers. Two most important technological advantages of the supported catalysts are high productivity and a high fraction of the crystalline isotactic polymer they produce at 70–80 °C under standard polymerization conditions.[4][5][6]

    Characteristics

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    PB-1 is a high molecular weight, linear, isotactic, and semi-crystalline polymer. PB-1 combines typical characteristics of conventional polyolefins with certain properties of technical polymers.

    PB-1, when applied as a pure or reinforced resin, can replace materials like metal, rubber and engineering polymers. It is also used synergistically as a blend element to modify the characteristics of other polyolefins like polypropylene and polyethylene. Because of its specific properties it is mainly used in pressure piping, flexible packaging, water heaters, compounding and hot melt adhesives.

    Heated up to 190 °C and above, PB-1 can easily be compression moulded, injection moulded, blown to hollow parts, extruded, and welded. It does not tend to crack due to stress.[dubiousdiscuss] Because of its crystalline structure and high molecular weight, PB-1 has good resistance to hydrostatic pressure, showing very low creep even at elevated temperatures.[7] It is flexible, resists impact well and has good elastic recovery.[3][8]

    Isotactic polybutylene crystallizes in three different forms. Crystallization from solution yields form-III with the melting point of 106.5 °C. Cooling from the melt results in the form II which has melting point of 124 °C and density of 0.89 g/cm3. At room temperature, it spontaneously converts into the form-I with the melting point of 135 °C and density of 0.95 g/cm3.[1]

    PB-1 generally resists chemicals such as detergents, oils, fats, acids, bases, alcohol, ketones, aliphatic hydrocarbons and hot polar solutions (including water).[3] It shows lower resistance to aromatic and chlorinated hydrocarbons as well as oxidising acids than other polymers such as polysulfone and polyamide 6/6.[7] Additional features include excellent wet abrasion resistance, easy melt flowability (shear thinning), and good dispersion of fillers. It is compatible with polypropylene, ethylene propylene rubbers, and thermoplastic elastomers.

    Some properties:[7]

    Application areas

    [edit]

    Piping systems

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    The main use of PB-1 is in flexible pressure piping systems for hot and cold drinking water distribution, pre-insulated district heating networks and surface heating and cooling systems. ISO 15876 defines the performance requirements of PB-1 piping systems.[9] PB-1's most notable characteristics are weldability, temperature resistance, flexibility and high hydrostatic pressure resistance. The material can be classified PB 125 with a minimum required strength (MRS) of 12.5 MPa. Other features include low noise transmission, low linear thermal expansion, no corrosion and calcification.

    PB-1 piping systems are no longer being sold in North America (see "Class action lawsuits and removal from building code approved usage", below). The overall market share in Europe and Asia is rather small but PB-1 piping systems have shown a steady growth in recent years. In certain domestic markets, e.g. Kuwait, the United Kingdom, Korea and Spain, PB-1 piping systems have a strong position.[8]

    Plastic packaging

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    Several PB-1 grades are commercially available for various applications and conversion technologies (blown film, cast film, extrusion coating). There are two main fields of application:

    • Peelable easy-to-open packaging where PB-1 is used as blend component predominantly in polyethylene to tailor peel strength and peel quality, mainly in alimentary consumer packaging and medical packaging.
    • Lowering seal initiation temperature (SIT) of high speed packaging polypropylene based films. Blending PB-1 into polypropylene, heat sealing temperatures as low as 65 °C can be achieved, maintaining a broad sealing window and good optical film properties.

    Hot melt adhesives

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    PB-1 is compatible with a wide range of tackifier resins. It offers high cohesive and adhesive strength and helps tailoring the "open time" of the adhesive (up to 30 minutes) because of its slow crystallisation kinetics. It improves the thermal stability and the viscosity of the adhesive.[10]

    Compounding and masterbatches

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    PB-1 accepts very high filler loadings in excess of 70%. In combination with its low melting point it can be employed in halogen-free flame retardant composites or as masterbatch carrier for thermo-sensitive pigments. PB-1 disperses easily in other polyolefins, and at low concentration, acts as processing aid reducing torque and/or increasing throughput.

    Thermal insulation

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    PB-1 can be foamed.[11] The use of PB-1 foam as thermal insulation is of great advantage for district heating pipes, since the number of materials in the sandwich structure is reduced to one, facilitating its recycling.[12]

    Other applications

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    Other applications include domestic water heaters, electrical insulation, compression packaging, wire and cable, shoe soles, and polyolefin modification (thermal bonding, enhancing softness and flexibility of rigid compounds, increasing temperature resistance and compression set of soft compounds).

    Environmental longevity

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    Plumbing and heating systems made from PB-1 have been used in Europe and Asia for more than 30 years. First reference projects in district heating and floor heating systems in Germany and Austria from the early 1970s are still in operation today.[8]

    One example is the installation of PB-1 pipes in the Vienna Geothermal Project (1974) where aggressive geothermal water is distributed at a service temperature of 54 °C and 10 bar pressure. Other pipe materials in the same installation failed or corroded and had been replaced in the meantime.[8]

    International standards set minimum performance requirements for pipes made from PB-1 used in hot water applications. Standardized extrapolation methods predict lifetimes in excess of 50 years at 70 °C and 10 bar.[8]

    Class action lawsuits and removal from building code approved usage

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    Polybutylene plumbing was used in several million homes built in the United States from around 1978 to 1997. Problems with leaks and broken pipes led to a class action lawsuit, Cox v. Shell Oil, that was settled for $1 billion.[13][14] The leaks were associated with degradation of polybutylene exposed to chlorinated water.[15]

    Polybutylene water pipes are no longer accepted by the United States building codes and have been the subject[16] of class action lawsuits in both Canada and the U.S.[17][18] The National Plumbing Code of Canada 1995 listed polybutylene piping as acceptable for use with the exception of recirculation plumbing. The piping was removed from the acceptable for use list in the 2005 issue of the standard.[19]

    In Australia in March 2023, the Department of Mines, Industry Regulation and Safety reported that Australian homes built in 2019-2020 that had used a certain brand of polybutylene piping, had become the subject of an enquiry due to the significance of water leaks reported.[20][21]

    There is evidence to suggest that the presence of chlorine and chloramine compounds in municipal water (often deliberately added to retard bacterial growth) will cause deterioration of the internal chemical structure of polybutylene piping and the associated acetal fittings.[22] The reaction with chlorinated water appears to be greatly accelerated by tensile stress, and is most often observed in material under highest mechanical stress such as at fittings, sharp bends, and kinks. Localized stress whitening of the material generally accompanies and precedes decomposition of the polymer. In extreme cases, this stress-activated chemical "corrosion" can lead to perforation and leakage within a few years, but it also may not fail for decades. Fittings with a soft compression seal can give adequate service life.[further explanation needed]

    Because the chemical reaction of the water with the pipe occurs inside the pipe, it is often difficult to assess the extent of deterioration. The problem can cause both slow leaks and pipe bursting without any previous warning indication. The only long-term solution is to completely replace the polybutylene plumbing throughout the entire building.[23]

    See also

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    References

    [edit]
    1. ^ a b c Mark Alger, Mark S. M. Alger (1997). Polymer science dictionary. Springer. p. 398. ISBN 978-0-412-60870-4.
    2. ^ Whiteley, Kenneth S.; Heggs, T. Geoffrey; Koch, Hartmut; Mawer, Ralph L.; Immel, Wolfgang (2000). "Polyolefins". Ullmann's Encyclopedia of Industrial Chemistry. Weinheim: Wiley-VCH. doi:10.1002/14356007.a21_487. ISBN 978-3527306732.
    3. ^ a b c d Charles A. Harper (2006). Handbook of plastics technologies: the complete guide to properties and performance. McGraw-Hill Professional. p. 17. ISBN 978-0-07-146068-2.
    4. ^ Hwo, Charles C.; Watkins, Larry K. Laminated film with improved tear strength, European Patent Application EP0459742, Publication date 12/04/1991
    5. ^ Boo-Deuk Kim et al. (2008) U.S. patent 7,442,489
    6. ^ Shimizu, Akihiko; Itakura, Keisuke; Otsu, Takayuki; Imoto, Minoru (1969). "Monomer-isomerization polymerization. VI. Isomerizations of butene-2 with TiCl3 or Al(C2H5)3–TiCl3 catalyst". Journal of Polymer Science Part A: Polymer Chemistry. 7 (11): 3119. Bibcode:1969JPoSA...7.3119S. doi:10.1002/pol.1969.150071108.
    7. ^ a b c d Freeman, Andrew; Mantell, Susan C.; Davidson, Jane H. (2005). "Mechanical performance of polysulfone, polybutylene, and polyamide 6/6 in hot chlorinated water". Solar Energy. 79 (6): 624–37. Bibcode:2005SoEn...79..624F. doi:10.1016/j.solener.2005.07.003.
    8. ^ a b c d e Polybutylene Archived November 30, 2006, at the Wayback Machine
    9. ^ ISO 15876-1:2003 iso.org
    10. ^ T.E. Rolando (1998). Solvent-Free Adhesives. iSmithers Rapra. p. 35. ISBN 978-1-85957-133-0.
    11. ^ Doyle, Lucía (2022-03-20). "Extrusion foaming behavior of polybutene-1. Toward single-material multifunctional sandwich structures". Journal of Applied Polymer Science. 139 (12). doi:10.1002/app.51816. ISSN 0021-8995.
    12. ^ Doyle Gutierrez, Lucia (2022-12-02). A Circular Economy Approach to Multifunctional Sandwich Structures: Polymeric Foams for District Heating Pre-Insulated Pipes (Thesis thesis). HafenCity Universität Hamburg. doi:10.34712/142.35.
    13. ^ Hensler, Deborah R.; Pace, Nicholas M.; Dombey-Moore, Bonita; Giddens, Beth; Gross, Jennifer; Moller, Erik K. (2000). "Polybutylene Plumbing Pipes Litigation: Cox v. Shell Oil". In Hensler, Deborah R. (ed.). Class action dilemmas: pursuing public goals for private gain. Santa Monica, CA: RAND Institute for Civil Justice. pp. 375–98. ISBN 978-0-8330-2601-9.
    14. ^ Schneider, Martin (November 21, 1999). "Pipe problem getting fixed". The Baltimore Sun. Archived from the original on 2012-06-04. Retrieved 2010-07-29.
    15. ^ Vibien, P.; Couch, J.; Oliphant, K.; Zhou, W.; Zhang, B.; Chudnovsky, A. (2001). "Assessing material performance in chlorinated potable water applications" (PDF). Book Institute of Materials. 759: 863–72. ISSN 1366-5510. Archived from the original (PDF) on 2010-06-22. Retrieved 2010-07-30. also published as: Vibien, P.; Couch, J.; Oliphant, K.; Zhou, W.; Zhang, B.; Chudnovsky, A. (2001). "Chlorine resistance testing of cross-linked polyethylene piping materials". ANTEC 2001 Proceedings. Boca Raton: CRC Press. pp. 2833–9. ISBN 978-1-58716-098-1.
    16. ^ Pipe dream is nightmare for many, Miami Herald - September 12, 1993
    17. ^ "DuPont USA Settlement of the Canadian Class Action Lawsuits". Archived from the original on 2011-07-06. Retrieved 2010-10-01.
    18. ^ Polybutylene Plumbing Pipe Leak Relief
    19. ^ "Polybutylene (Poly-B) Pressure Water Piping" (PDF). municipalaffairs.alberta.ca. Government of Alberta. 2012-01-06. Retrieved 2019-09-09.
    20. ^ "Information for owners of new homes with polybutylene plumbing pipes" (PDF). commerce.wa.gov.au. March 21, 2023. Archived (PDF) from the original on 12 November 2023. Retrieved November 12, 2023.
    21. ^ Batajtis, Damian (27 March 2023). "Comprehensive Guide to polybutylene Piping Issues and Solutions in Australia". Wizard Leak Detection. Archived from the original on 12 November 2023. Retrieved November 12, 2023.
    22. ^ Cause of failure in polybutylene pipe & acetal fittings http://www.polybutylene.com/poly.html
    23. ^ "Polybutylene Piping". PropEx.com. Archived from the original on 2015-08-29. Retrieved 2015-07-17.

    Further reading

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    Frequently Asked Questions

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