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Các hạt PCTFE kháng hóa học cho đúc phun chính xác

Các hạt PCTFE kháng hóa học cho đúc phun chính xác

Các hạt PCTFE đúc phun chính xác

các hạt PCTFE kháng hóa chất

Liên hệ với chúng tôi
Yêu cầu Đặt giá
Chi tiết sản phẩm
Đèn nhẹ:
Nhẹ và có tỷ lệ sức mạnh trên trọng lượng cao
Chống khí hậu:
Khả năng chống bức xạ UV và thời tiết
Hệ số ma sát thấp:
Hệ số ma sát thấp, làm cho nó phù hợp để sử dụng trong các bộ phận chuyển động
Điều khoản thanh toán và vận chuyển
Số lượng đặt hàng tối thiểu
100kg
Giá bán
US $29.00-40.00 / kg
chi tiết đóng gói
25kg/bao
Thời gian giao hàng
5-8 ngày làm việc
Điều khoản thanh toán
L/C, D/A, D/P, T/T, Western Union, MoneyGram
Khả năng cung cấp
1500 tấn / năm
Mô tả sản phẩm

1. Product Description

PCTFE (Polychlorotrifluoroethylene) resin is a high-performance fluoropolymer known for its exceptional moisture barrier properties, ultra-low gas permeability, and excellent clarity. It offers outstanding chemical resistance, dimensional stability, and low outgassing characteristics, making it ideal for precision molding applications. With a continuous service temperature range from -200°C to +150°C, PCTFE resin is widely used in critical environments where stability and purity are essential. Its non-flammable, non-toxic nature also complies with demanding safety standards such as FDA and ASTM.

 

2. Product Applications

PCTFE resin is suitable for use in the following industries and applications:

  • Cryogenic components (valves, seals, O-rings)

  • High-performance barrier films for moisture-sensitive electronics and pharmaceuticals

  • Semiconductor and electronic parts

  • Precision medical components

  • Aerospace insulation and components

  • Chemical processing equipment

  • Transparent mechanical parts requiring optical clarity and dimensional stability

     

    3. Key Technical Properties

    Property Value / Range Test Method
    Appearance Transparent / Clear Pellets Visual Inspection
    Density 2.10 – 2.17 g/cm³ ASTM D792
    Melting Point ~210°C (410°F) ASTM D3418
    Thermal Stability Excellent up to 150°C continuous use
    Water Vapor Transmission Rate < 0.1 g·mm/m²·day (extremely low) ASTM E96
    Oxygen Permeability < 1.0 cm³·mm/m²·day·atm ASTM D1434
    Tensile Strength ≥ 35 MPa ASTM D638
    Elongation at Break ≥ 50% ASTM D638
    Flame Resistance Non-flammable UL 94 V-0
    Chemical Resistance Excellent against acids, bases, oils

     

     

    4. FAQ – Frequently Asked Questions

    Q1: What makes PCTFE resin different from PTFE or FEP?
    A1: PCTFE has significantly lower gas permeability, better dimensional stability, and higher tensile strength, making it ideal for moisture- and air-sensitive applications.

    Q2: Can PCTFE resin be injection molded?
    A2: Yes, it has excellent processability for precision injection and compression molding.

    Q3: Is PCTFE FDA approved for food or medical use?
    A3: Yes, high-purity grades of PCTFE resin comply with FDA regulations and are suitable for medical applications.

    Q4: What’s the temperature range for PCTFE use?
    A4: PCTFE maintains performance from -200°C to +150°C.

    Q5: Is PCTFE resistant to radiation or UV?
    A5: PCTFE offers good resistance to UV and moderate resistance to gamma radiation.

    Q6: How does PCTFE perform in cryogenic conditions?
    A6: It retains mechanical integrity and sealing performance even at extremely low temperatures, making it ideal for cryogenic valves and gaskets.

    Q7: Can PCTFE be used as a transparent barrier film?
    A7: Yes, it is widely used for transparent films in pharmaceutical and electronics packaging due to its ultra-low moisture permeability.

    Q8: What is the shelf life of PCTFE resin?
    A8: If stored properly in dry conditions, it has an indefinite shelf life without performance degradation.

    Q9: Is PCTFE recyclable or reusable?
    A9: It can be reprocessed under controlled conditions, but recycling is less common due to its high-performance nature.

    Q10: What processing techniques are suitable for PCTFE resin?
    A10: Suitable methods include injection molding, compression molding, extrusion, and machining of molded parts.

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