公司信息及水印
牌号简介 About |
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Vydyne® 21SPC是一种通用的PA66树脂。自然色可选。主要用于注塑加工。该树脂具有高强度、刚性、良好韧性、高熔点、良好的表面润滑性、耐磨性以及耐多种化学品、机器和机油、溶剂和汽油等工程性能的良好平衡组合。Vydyne® 21SPC允许生产具有良好初始颜色、良好性能和使用再研磨时保持颜色的成型零件。该树脂经保险商实验室认可,符合许多工业、联邦和军用优质通用PA66树脂规范的要求。内部和外部润滑,以改善机器饲料和特殊的模具释放。Vydyne® 21SPC用于高生产率应用。在许多应用中,由于零件可能在较高温度下从型腔中取出,因此可以缩短成型周期。在零件容易粘在型腔中的困难模具中,Vydyne® 21SPC可以减少或消除模具释放喷剂的需要。在常规生产基础上实施较短的成型周期之前,应根据规范检查关键的成型零件尺寸。典型应用/最终用途:Vydyne® 21SPC已用于许多成型应用,如接线板、轴承、衬套、凸轮、电气连接器和外壳、电缆扎带/扎带以及许多其他硬件和一般工业零件。 Vydyne 21SPC is a general-purpose PA66 resin. Available in natural color. It is designed principally for injection-molding fabrication. This resin offers a well balanced combination of engineering properties characterized by high strength; rigidity; good toughness; high melt point; good surface lubricity; abrasion resistance; and resistance to many chemicals, machine and motor oils, solvents and gasoline. Vydyne 21SPC permits production of molded parts with good initial color plus good property and color retention when using regrind. This resin is recognized by Underwriters Laboratories and conforms to the requirements of many industrial, federal and military specifications for premium-quality, general-purpose PA66 resins. Internally and externally lubricated for improved machine feed and exceptional mold release. Vydyne 21SPC is intended for use in high-productivity applications. In many applications, the molding cycle can be reduced because parts may be removed from the cavity at higher temperatures. In difficult molds where parts have a tendency to stick in the cavity, Vydyne 21SPC can reduce or eliminate the need for mold release sprays. Critical molded-part dimensions should be checked against specifications before implementing shorter molding cycles on a routine production basis. Typical Applications/End Uses: Vydyne 21SPC has been used in many molding applications such as terminal blocks, bearings, bushings, cams, electrical connectors and housings, electrical cable ties/tie straps and many other hardware and general industrial parts. |
技术参数 Technical Data | |||
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物理性能 PHYSICAL |
额定值 Nominal Value |
单位 Units |
测试方法 Test Method |
密度 Density |
1.14 | g/cm³ | ISO 1183 |
收缩率 Shrinkage rate |
ISO 294-4 | ||
TD:23℃,2.0 mm TD:23℃,2.0 mm |
1.7 | % | ISO 294-4 |
MD:23℃,2.0 mm MD:23℃,2.0 mm |
1.8 | % | ISO 294-4 |
吸水率 Water absorption rate |
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平衡,23℃,50% RH Equilibrium, 23 ℃, 50% RH |
2.4 | % | ISO 62 |
23℃,24hr 23℃,24hr |
1.2 | % | ISO 62 |
耐候性 Weathering resistance |
UL 746C | ||
机械性能 MECHANICAL |
额定值 Nominal Value |
单位 Units |
测试方法 Test Method |
拉伸模量 Tensile modulus |
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23℃ 23℃ |
MPa | ISO 527-2 | |
拉伸强度 tensile strength |
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断裂,23℃ Fracture, 23 ℃ |
MPa | ISO 527-2 | |
屈服,23℃ Yield, 23 ℃ |
MPa | ISO 527-2 | |
拉伸应变 Tensile strain |
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屈服,23℃ Yield, 23 ℃ |
% | ISO 527-2 | |
标称拉伸断裂应变 Nominal tensile fracture strain |
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23℃ 23℃ |
% | ISO 527-2 | |
弯曲模量 Bending modulus |
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23℃ 23℃ |
MPa | ISO 178 | |
弯曲强度 bending strength |
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23℃ 23℃ |
MPa | ISO 178 | |
泊松比 Poisson's ratio |
ISO 527 | ||
冲击性能 IMPACT |
额定值 Nominal Value |
单位 Units |
测试方法 Test Method |
简支梁缺口冲击强度 Charpy Notched Impact Strength |
ISO 179/1eA | ||
-30℃ -30℃ |
kJ/m² | ISO 179/1eA | |
23℃ 23℃ |
kJ/m² | ISO 179/1eA | |
简支梁无缺口冲击强度 Charpy Unnotch Impact strength |
ISO 179/1eU | ||
-30℃ -30℃ |
ISO 179/1eU | ||
23℃ 23℃ |
ISO 179/1eU | ||
悬臂梁缺口冲击强度 Impact strength of cantilever beam notch |
ISO 180 | ||
-30℃ -30℃ |
kJ/m² | ISO 180 | |
23℃ 23℃ |
kJ/m² | ISO 180 | |
热性能 THERMAL |
额定值 Nominal Value |
单位 Units |
测试方法 Test Method |
热变形温度 Hot deformation temperature |
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1.8 MPa,未退火 1.8 MPa, unannealed |
℃ | ISO 75-2/A | |
0.45 MPa,未退火 0.45 MPa, unannealed |
℃ | ISO 75-2/B | |
熔融温度 Melting temperature |
℃ | ISO 11357-3 | |
线性热膨胀系数 Linear coefficient of thermal expansion |
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TD:23~55℃ TD:23~55℃ |
1/℃ | ISO 11359-2 | |
MD:23~55℃ MD:23~55℃ |
1/℃ | ISO 11359-2 | |
相对温度指数 Relative temperature index |
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电气性能 Electrical performance |
UL 746 | ||
0.40 mm 0.40 mm |
℃ | UL 746 | |
0.71 mm 0.71 mm |
℃ | UL 746 | |
1.5 mm 1.5 mm |
℃ | UL 746 | |
3.0 mm 3.0 mm |
℃ | UL 746 | |
强度机械性能 Strength mechanical performance |
UL 746 | ||
0.40 mm 0.40 mm |
℃ | UL 746 | |
0.71 mm 0.71 mm |
℃ | UL 746 | |
1.5 mm 1.5 mm |
℃ | UL 746 | |
3.0 mm 3.0 mm |
℃ | UL 746 | |
冲击机械性能 Impact mechanical performance |
UL 746 | ||
0.40 mm 0.40 mm |
℃ | UL 746 | |
0.71 mm 0.71 mm |
℃ | UL 746 | |
1.5 mm 1.5 mm |
℃ | UL 746 | |
3.0 mm 3.0 mm |
℃ | UL 746 | |
电气性能 Electrical performance |
额定值 Nominal Value |
单位 Units |
测试方法 Test Method |
体积电阻率 Volume resistivity |
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0.75 mm 0.75 mm |
ohms·cm | IEC 60093 | |
介电强度 Dielectric strength |
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1 mm 1 mm |
kV/mm | IEC 60243 | |
耐电弧性 Arc resistance |
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3.0 mm 3.0 mm |
ASTM D495 | ||
相比漏电起痕指数 Compared to the leakage tracing index |
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3.00 mm 3.00 mm |
V | IEC 60112 | |
高电弧燃烧指数(HAI) High Arc Burning Index (HAI) |
UL 746 | ||
0.40 mm 0.40 mm |
UL 746 | ||
0.71 mm 0.71 mm |
UL 746 | ||
1.5 mm 1.5 mm |
UL 746 | ||
3.0 mm 3.0 mm |
UL 746 | ||
高电压电弧起痕速率 High voltage arc marking rate |
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HVTR HVTR |
UL 746 | ||
热丝引燃 Hot wire ignition |
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HWI HWI |
UL 746 | ||
0.40 mm 0.40 mm |
UL 746 | ||
0.71 mm 0.71 mm |
UL 746 | ||
1.5 mm 1.5 mm |
UL 746 | ||
3.0 mm 3.0 mm |
UL 746 | ||
阻燃性能 FLAME CHARACTERISTICS |
额定值 Nominal Value |
单位 Units |
测试方法 Test Method |
阻燃等级 Flame retardant level |
UL 94 | ||
0.40 mm 0.40 mm |
UL 94 | ||
0.71 mm 0.71 mm |
UL 94 | ||
1.50 mm 1.50 mm |
UL 94 | ||
3.00 mm 3.00 mm |
UL 94 | ||
灼热丝可燃性指数 Glowing wire flammability index |
IEC 60695-2-12 | ||
0.40 mm 0.40 mm |
℃ | IEC 60695-2-12 | |
0.71 mm 0.71 mm |
℃ | IEC 60695-2-12 | |
1.5 mm 1.5 mm |
℃ | IEC 60695-2-12 | |
3.0 mm 3.0 mm |
℃ | IEC 60695-2-12 | |
灼热丝起燃温度 Igniting temperature of the hot wire |
IEC 60695-2-13 | ||
0.4 mm 0.4 mm |
℃ | IEC 60695-2-13 | |
0.71 mm 0.71 mm |
℃ | IEC 60695-2-13 | |
1.5 mm 1.5 mm |
℃ | IEC 60695-2-13 | |
3 mm 3 mm |
℃ | IEC 60695-2-13 | |
极限氧指数 Extreme oxygen index |
% | ISO 4589-2 |
备注 |
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1 一般属性:这些不能被视为规格。 |
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