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Teflon® PFA 440HPB

PFA

DuPont Fluoropolymers

产品说明

For inventory control purposes product name may be followed by an X.

Products labeled PFA 440HPB and PFA 440HPB X are equivalent and all information in this document is applicable to both.

Typical Application
Applications for DuPont™ Teflon ® PFA 440HPB include fluid handling components for critical, high-purity processes like semiconductor, pharmaceutical, and biotechnology, as well as applications where purity in the parts-per-billion range is needed. Teflon ® PFA 440HPB offers a slightly lower melt flow rate than Teflon ® PFA 440HPA, ultimately providing a higher degree of stress-crack resistance.

Description
DuPont™ Teflon ® PFA 440HPB is a special purpose fluoroplastic resin available in pellet form. This resin is a chemically modified form of Teflon ® PFA 340 that combines many of the benefits of the parent resin (a relatively high typical melt flow rate of 14) with several additional benefits including enhanced purity, improved thermal stability while processing, and chemical inertness; for example, to ozonated fluids. Table 1 shows the typical property data for Teflon ® PFA 440HPB.

Teflon ® PFA 440HPB is a premium resin with the lowest level of extractables designed to meet ultra-high purity requirements. Teflon ® PFA 440HPB has a relatively high melt flow rate for injection molding and extrusion processes, and the highest level of inertness due to stable end group polymer structure. The enhanced purity of Teflon ® PFA 440HPB makes it suitable for applications that require improved color, lower extractable fluorides, and freedom from other foreign materials. This product contains no additives and is designed for hostile chemical environments where purity in the parts-per-billion range is needed. Examples are in semiconductor manufacture, fluid handling systems for industry or life sciences, and instrumentation for precise measurements of fluid systems. Compared to other thermoplastics, the high melt strength and thermal stability of Teflon ® PFA 440HPB can be used to improve processing rates, combining the processing ease of conventional thermoplastics with many properties similar to those of polytetrafluoroethylene.

Properly processed products made from neat Teflon ® PFA 440HPB resin provide the superior properties characteristic of fluoroplastic resins: chemical inertness, exceptional dielectric properties, heat resistance, toughness and flexibility, low coefficient of friction, non-stick characteristics, negligible moisture absorption, low flammability, performance at temperature extremes, and excellent weather resistance.

In a flame situation, products of Teflon ® PFA 440HPB resist ignition and do not promote flame spread. When ignited by flame from other sources, their contribution of heat is very small and added at a slow rate with very little smoke.

Teflon ® PFA 440HPB meets the requirements of ASTM D3307, Type I
基本信息
特性
  • 纯度高
  • 低摩擦系数
  • 低吸湿性
  • 低烟度
  • 良好的电气性能
  • 良好的熔体强度
  • 良好的柔韧性
  • 流动性高
  • 耐化学性良好
  • 耐气候影响性能良好
  • 耐热性,中等
  • 热稳定性,良好
  • 韧性良好
  • 食品接触的合规性
用途
  • 液体处理
机构评级
  • FDA 21 CFR 177.1550
  • 欧洲 10/1/2011 12:00:00 AM
形式
  • 粒子
加工方法
  • 挤出
  • 树脂传递成型
  • 压缩模塑
  • 注射成型
物理性能额定值单位制测试方法
比重 g/cm³ASTM D792
熔流率(熔体流动速率) (372°C/5.0 kg)g/10 minASTM D3307, ISO 12086
吸水率 (24 hr)%ASTM D570
硬度额定值单位制测试方法
肖氏硬度 (邵氏 D)ASTM D2240, ISO 868
机械性能额定值单位制测试方法
抗张强度 ASTM D3307, ISO 12086
    23°C MPaASTM D3307, ISO 12086
    250°C MPaASTM D3307, ISO 12086
伸长率 ASTM D3307, ISO 12086
    断裂, 23°C %ASTM D3307, ISO 12086
    断裂, 250°C %ASTM D3307, ISO 12086
弯曲模量 ASTM D790, ISO 178
    23°C MPaASTM D790, ISO 178
    250°C MPaASTM D790, ISO 178
热性能额定值单位制测试方法
熔融温度 °CASTM D4591
电气性能额定值单位制测试方法
体积电阻率 ohms·cmASTM D257, ISO 1325
介电强度
    0.250 mm 1kV/mmASTM D149
    0.250 mm kV/mmIEC 60243-1
介电常数 (1 MHz)ASTM D150, IEC 60250
耗散因数 (1 MHz)ASTM D150, IEC 60250
可燃性额定值单位制测试方法
UL 阻燃等级 2UL 94
极限氧指数 %ASTM D2863, ISO 4589-2
补充信息额定值单位制测试方法
Critical Shear Rate (372°C)sec^-1
MIT Folding Endurance 3(200.0 µm)CyclesASTM D2176
Weather and Chemical Resistance: Outstanding
备注
1 .方法A(短时间)
2 .These results are based on laboratory tests under controlled conditions and do not reflect performance under actual fire conditions, current rating is a typical theoretical value.
3 .Depending on fabrication conditions
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