东莞市樟木头富临塑胶贸易商行
Vydyne? R533H
聚酰胺66
33% 玻璃纤维增强材料
Ascend Performance Materials Operations LLC
产品说明:
Vydyne R533H is 33% glass-fiber reinforced, heat-stabilized PA66 resin. Available in natural, it is specifically designed to maximize the retention of physical properties when exposed to anti-freeze solutions at elevated temperatures. This product is lubricated for improved machine feed and flow.
Glass-reinforced Vydyne resins provide higher heat distortion temperature, resistance to creep and better dimensional stability when compared with unreinforced PA66. These products have good chemical resistance to a broad range of chemicals including gasoline, hydraulic fluids and most solvents.
Vydyne R533H resin is heat-stabilized to minimize oxidative degradation of the polymer when exposed to elevated temperatures in service. This product provides improved retention of physical properties under exposure to long-term heat. Also, Vydyne R533H resin has excellent knit-line strength and fatigue resistance, which is essential for cycle testing with anti-freeze solutions.
Typical Applications/End Uses:
Glass-reinforced Vydyne resins provide higher heat distortion temperature, resistance to creep and better dimensional stability when compared with unreinforced PA66. These products have good chemical resistance to a broad range of chemicals including gasoline, hydraulic fluids and most solvents.
Vydyne R533H resin is heat-stabilized to minimize oxidative degradation of the polymer when exposed to elevated temperatures in service. This product provides improved retention of physical properties under exposure to long-term heat. Also, Vydyne R533H resin has excellent knit-line strength and fatigue resistance, which is essential for cycle testing with anti-freeze solutions.
Typical Applications/End Uses:
Vydyne R533H resin has been used for many under-the-hood automotive applications, motor housings for power tools and garden appliances. This resin has also been used in miscellaneous brackets, gears and clips that require high rigidity and strength.
现货 供应美国首诺PA66 R533H(食品级 玻纤增强) PA66 R533H33% 玻璃纤维增强材料
Vydyne? R533H 物性表
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特性 |
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外观 |
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加工方法 |
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物理性能 | 干燥 | 调节后的 | 单位制 | 测试方法 |
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密度 | 1.40 | -- | g/cm3 | ISO 1183 |
收缩率 | ISO 294-4 | |||
垂直流动方向 : 23°C, 2.00 mm | 0.90 | -- | % | ISO 294-4 |
流动方向 : 23°C, 2.00 mm | 0.40 | -- | % | ISO 294-4 |
吸水率 | ISO 62 | |||
23°C, 24 hr | 0.80 | -- | % | ISO 62 |
平衡, 23°C, 50% RH | 1.7 | -- | % | ISO 62 |
机械性能 | 干燥 | 调节后的 | 单位制 | 测试方法 |
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拉伸模量(23°C) | 10600 | 7900 | MPa | ISO 527-2 |
拉伸应力(断裂, 23°C) | 205 | 145 | MPa | ISO 527-2 |
拉伸应变(断裂, 23°C) | 3.0 | 5.0 | % | ISO 527-2 |
弯曲模量(23°C) | 10200 | 6500 | MPa | ISO 178 |
弯曲应力(23°C) | 290 | 200 | MPa | ISO 178 |
泊松比 | 0.40 | -- | ISO 527-2 |
冲击性能 | 干燥 | 调节后的 | 单位制 | 测试方法 |
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简支梁缺口冲击强度 | ISO 179/1eA | |||
-30°C | 10 | 12 | kJ/m2 | ISO 179/1eA |
23°C | 11 | 14 | kJ/m2 | ISO 179/1eA |
简支梁无缺口冲击强度 | ISO 179/1eU | |||
-30°C | 70 | 85 | kJ/m2 | ISO 179/1eU |
23°C | 80 | 90 | kJ/m2 | ISO 179/1eU |
悬壁梁缺口冲击强度 | ISO 180 | |||
-30°C | 10 | 12 | kJ/m2 | ISO 180 |
23°C | 12 | 14 | kJ/m2 | ISO 180 |
热性能 | 干燥 | 调节后的 | 单位制 | 测试方法 |
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热变形温度 | ||||
0.45 MPa, 未退火 | 260 | -- | °C | ISO 75-2/B |
1.8 MPa, 未退火 | 250 | -- | °C | ISO 75-2/A |
熔融温度 | 260 | -- | °C | ISO 11357-3 |
线形热膨胀系数 | ISO 11359-2 | |||
流动 : 23 到 55°C, 2.00 mm | 2.1E-5 | -- | cm/cm/°C | ISO 11359-2 |
横向 : 23 到 55°C, 2.00 mm | 1.1E-4 | -- | cm/cm/°C | ISO 11359-2 |
RTI Elec | UL 746 | |||
0.750 mm | 140 | -- | °C | UL 746 |
1.50 mm | 140 | -- | °C | UL 746 |
3.00 mm | 140 | -- | °C | UL 746 |
RTI Imp | UL 746 | |||
0.750 mm | 125 | -- | °C | UL 746 |
1.50 mm | 125 | -- | °C | UL 746 |
3.00 mm | 125 | -- | °C | UL 746 |
RTI | UL 746 | |||
0.750 mm | 140 | -- | °C | UL 746 |
1.50 mm | 140 | -- | °C | UL 746 |
3.00 mm | 140 | -- | °C | UL 746 |
电气性能 | 干燥 | 调节后的 | 单位制 | 测试方法 |
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体积电阻率(0.750 mm) | 1.0E+13 | -- | ohms·cm | IEC 60093 |
介电强度(1.00 mm) | 20 | -- | kV/mm | IEC 60243 |
耐电弧性(3.00 mm) | PLC 6 | -- | ASTM D495 | |
漏电起痕指数(3.00 mm) | 250 到 399 | -- | V | IEC 60112 |
高电弧燃烧指数(HAI) | UL 746 | |||
0.750 mm | PLC 0 | -- | UL 746 | |
1.50 mm | PLC 0 | -- | UL 746 | |
3.00 mm | PLC 0 | -- | UL 746 | |
高电压电弧起痕速率 (HVTR) | PLC 1 | -- | UL 746 | |
热丝引燃 (HWI) | UL 746 | |||
0.750 mm | PLC 4 | -- | UL 746 | |
1.50 mm | PLC 3 | -- | UL 746 | |
3.00 mm | PLC 4 | -- | UL 746 |
可燃性 | 干燥 | 调节后的 | 单位制 | 测试方法 |
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UL 阻燃等级 | UL 94 | |||
0.750 mm | HB | -- | UL 94 | |
1.50 mm | HB | -- | UL 94 | |
3.00 mm | HB | -- | UL 94 | |
灼热丝易燃指数 | IEC 60695-2-12 | |||
0.750 mm | 675 | -- | °C | IEC 60695-2-12 |
1.50 mm | 675 | -- | °C | IEC 60695-2-12 |
3.00 mm | 675 | -- | °C | IEC 60695-2-12 |
热灯丝点火温度 | IEC 60695-2-13 | |||
0.750 mm | 700 | -- | °C | IEC 60695-2-13 |
1.50 mm | 700 | -- | °C | IEC 60695-2-13 |
3.00 mm | 700 | -- | °C | IEC 60695-2-13 |
注射 | 干燥 | 单位制 | |
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干燥温度 | 80.0 | °C | |
干燥时间 | 4.0 | hr | |
建议的最大回制料比例 | 25 | % | |
料筒后部温度 | 280 到 310 | °C | |
料筒中部温度 | 280 到 310 | °C | |
料筒前部温度 | 280 到 310 | °C | |
射嘴温度 | 280 到 310 | °C | |
加工(熔体)温度 | 285 到 305 | °C | |
模具温度 | 65.0 到 95.0 | °C |