佳 盼 塑 胶
JIA PAN SU JIAO
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Ultramid® PA6 8202C HS BK-102
聚酰胺6
BASF Corporation
产品说明
Ultramid 8202C HS BK-102 is a heat stabilized, low viscosity, pigmented black, PA6, injection molding homopolymer possessing a modified crystalline structure for increased property performance and faster cycles. It is also available in non-heat stabilized (Ultramid 8202C).
Applications
Ultramid 8202C HS BK-102 is generally recommended for applications such as gears, valves, fittings, insulators, bushings, slides, window hardware, wiring devices, textile components and furniture casters.
含添加剂:成核剂,热稳定剂
材料特点:半结晶,尺寸稳定,低粘度,刚性好,高强度,结晶,均聚物,易加工,抗热老化,流动性好,耐化学,耐磨蚀,热稳定,生产阶段快,有核
材料用途:齿轮,电气部件,电器导线绝缘材料,阀门/阀门部件,纺织应用,家具,连接器,零件装置,套管
外观颜色:黑色
外观形式:颗粒料
加工方法:注射成型
塑料牌号:PA6 8202C HS BK-102
定属记号:尼龙6
物料数据
物理性能 |
干燥 |
调节后的 |
单位制 |
测试方法 |
比重 |
1.13 |
-- |
g/cm³ |
ASTM D792,ISO 1183 |
收缩率 - 流动(3.18 mm) |
0.90 |
-- |
% |
|
吸水率 |
|
|
|
|
24 hr |
1.6 |
-- |
% |
ASTM D570 |
23℃,24 hr |
1.6 |
-- |
% |
ISO 62 |
饱和 |
9.3 |
-- |
% |
ASTM D570 |
饱和,23℃ |
9.3 |
-- |
% |
ISO 62 |
平衡,50% RH |
2.6 |
-- |
% |
ASTM D570 |
平衡,23℃,50% RH |
2.6 |
-- |
% |
ISO 62 |
硬度 |
干燥 |
调节后的 |
单位制 |
测试方法 |
洛氏硬度(R 级) |
120 |
-- |
|
ASTM D785 |
球压硬度 |
200 |
-- |
MPa |
ISO 2039-1 |
机械性能 |
干燥 |
调节后的 |
单位制 |
测试方法 |
拉伸模量(23℃) |
3500 |
1360 |
MPa |
ISO 527-2 |
抗张强度 |
|
|
|
|
屈服,-40℃ |
137 |
142 |
MPa |
ASTM D638 |
屈服,23℃ |
90.0 |
48.0 |
MPa |
ASTM D638 |
屈服,80℃ |
40.0 |
30.0 |
MPa |
ASTM D638 |
屈服,121℃ |
30.0 |
25.0 |
MPa |
ASTM D638 |
屈服,23℃ |
85.0 |
43.0 |
MPa |
ISO 527-2 |
断裂,-40℃ |
130 |
80.0 |
MPa |
ASTM D638 |
断裂,23℃ |
90.0 |
70.0 |
MPa |
ASTM D638 |
断裂,80℃ |
35.0 |
30.0 |
MPa |
ASTM D638 |
断裂,121℃ |
25.0 |
20.0 |
MPa |
ASTM D638 |
伸长率 |
|
|
|
|
屈服,-40℃ |
3.0 |
3.0 |
% |
ASTM D638 |
屈服,23℃ |
4.0 |
22 |
% |
ASTM D638,ISO 527-2 |
屈服,80℃ |
25 |
25 |
% |
ASTM D638 |
屈服,121℃ |
27 |
30 |
% |
ASTM D638 |
断裂,-40℃ |
5.0 |
3.0 |
% |
ASTM D638 |
断裂,23℃ |
12 |
> 100 |
% |
ASTM D638 |
断裂,80℃ |
> 100 |
> 100 |
% |
ASTM D638 |
断裂,121℃ |
> 100 |
> 100 |
% |
ASTM D638 |
标称拉伸断裂应变(23℃) |
10 |
> 50 |
% |
ISO 527-2 |
弯曲模量 |
|
|
|
|
-40℃ |
3370 |
4200 |
MPa |
ASTM D790 |
23℃ |
3170 |
970 |
MPa |
ASTM D790 |
65℃ |
600 |
-- |
MPa |
ASTM D790 |
90℃ |
440 |
-- |
MPa |
ASTM D790 |
121℃ |
385 |
-- |
MPa |
ASTM D790 |
23℃ |
2800 |
-- |
MPa |
ISO 178 |
弯曲强度 |
|
|
|
|
-40℃ |
183 |
168 |
MPa |
ASTM D790 |
23℃ |
110 |
42.0 |
MPa |
ASTM D790 |
65℃ |
30.0 |
-- |
MPa |
ASTM D790 |
121℃ |
21.0 |
-- |
MPa |
ASTM D790 |
23℃ |
95.0 |
-- |
MPa |
ISO 178 |
冲击性能 |
干燥 |
调节后的 |
单位制 |
测试方法 |
简支梁缺口冲击强度(23℃) |
3.0 |
-- |
kJ/m² |
ISO 179 |
简支梁无缺口冲击强度(23℃) |
无断裂 |
-- |
|
ISO 179 |
悬壁梁缺口冲击强度 |
|
|
|
ASTM D256 |
-40℃ |
32 |
21 |
J/m |
|
23℃ |
48 |
170 |
J/m |
|
热性能 |
干燥 |
调节后的 |
单位制 |
测试方法 |
载荷下热变形温度 |
|
|
|
|
0.45 MPa,未退火 |
190 |
-- |
℃ |
ASTM D648 |
1.8 MPa,未退火 |
75.0 |
-- |
℃ |
ASTM D648 |
1.8 MPa,未退火 |
60.0 |
-- |
℃ |
ISO 75-2/A |
熔融峰值温度 |
220 |
-- |
℃ |
ASTM D3418,ISO 3146 |
线形热膨胀系数 - 流动 |
8.1E-5 |
-- |
cm/cm/℃ |
ASTM E831 |
RTI Elec |
|
|
|
UL 746 |
0.710 mm |
130 |
-- |
℃ |
|
1.50 mm |
130 |
-- |
℃ |
|
3.00 mm |
130 |
-- |
℃ |
|
6.00 mm |
130 |
-- |
℃ |
|
RTI Imp |
|
|
|
UL 746 |
0.710 mm |
95.0 |
-- |
℃ |
|
1.50 mm |
105 |
-- |
℃ |
|
3.00 mm |
105 |
-- |
℃ |
|
6.00 mm |
105 |
-- |
℃ |
|
RTI |
|
|
|
UL 746 |
0.710 mm |
95.0 |
-- |
℃ |
|
1.50 mm |
105 |
-- |
℃ |
|
3.00 mm |
105 |
-- |
℃ |
|
6.00 mm |
105 |
-- |
℃ |
|
电气性能 |
干燥 |
调节后的 |
单位制 |
测试方法 |
体积电阻率 |
|
|
|
|
1.50 mm |
> 1.0E+13 |
-- |
ohms·cm |
ASTM D257 |
-- |
> 1.0E+15 |
-- |
ohms·cm |
IEC 60093 |
漏电起痕指数 |
600 |
-- |
V |
IEC 60112 |
可燃性 |
干燥 |
调节后的 |
单位制 |
测试方法 |
UL 阻燃等级 |
|
|
|
UL 94 |
0.710 mm |
V-2 |
-- |
|
|
1.50 mm |
V-2 |
-- |
|
|
3.00 mm |
V-2 |
-- |
|
|
6.00 mm |
V-2 |
-- |
|
|
补充信息 |
干燥 |
调节后的 |
单位制 |
测试方法 |
Drop Weight Impact Strength(23℃) |
122 |
> 271 |
J |
内部方法 |
注射 |
干燥 |
单位制 |
||
干燥温度 |
80.0 |
℃ |
||
干燥时间 |
2.0 到 4.0 |
hr |
||
建议的最大水分含量 |
0.15 |
% |
||
加工(熔体)温度 |
240 到 285 |
℃ |
||
模具温度 |
65.0 到 80.0 |
℃ |
||
注塑压力 |
3.50 到 12.5 |
MPa |
||
注射速度 |
快速 |
|
Ultramid® polyamides are molding compounds based on PA 6, PA 66 and copolyamides such as PA 66/6. Due to their outstanding properties these materials have become indispensable in almost all fields of engineering for the most varied components and machine parts, as high-quality electrical insulating materials and for many special applications.