Global grade; MVR (300 °C/1.2 kg) 6.5 cm³/10 min; 10 % glass fiber reinforced; chlorine- and bromine-free flame retardancy; UL 94V-0/1.5 mm and 5VA/3.0 mm; high viscosity; easy release
;二尖瓣置换术(300 ° C/1.2公斤)6.5立方厘米/ 10分钟,10%的玻璃纤维增强;含氯和溴的无阻燃;毫米UL认证94V-0/1.5和5VA/3.0毫米,高粘度,易于释放
ISO Shortname: ISO 7391-PC,MFR,(,,)-09-9,GF10 PropertyTest ConditionUnitStandardValue Rheological properties |  | Melt volume-flow rate | 300 °C; 1.2 kg | cm³/10 min | ISO 1133 | 6.5 |  | Molding shrinkage, parallel | 60x60x2; 500 bar | % | ISO 294-4 | 0.55 |  | Molding shrinkage, normal | 60x60x2; 500 bar | % | ISO 294-4 | 0.45 | | Molding shrinkage, parallel/normal | Value range based on general practical experience | % | b.o. ISO 2577 | 0.4 - 0.6 | | Melt mass-flow rate | 300 °C; 1.2 kg | g/10 min | ISO 1133 | 7.0 | Mechanical properties (23 °C/50 % r. h.) |  | Tensile modulus | 1 mm/min | MPa | ISO 527-1,-2 | 3800 | | Yield stress | 5 mm/min | MPa | ISO 527-1,-2 | 64 | | Yield strain | 5 mm/min | % | ISO 527-1,-2 | 4.6 |  | Stress at break | 5 mm/min | MPa | ISO 527-1,-2 | 45 |  | Strain at break | 5 mm/min | % | ISO 527-1,-2 | 15 |  | Tensile creep modulus | 1 h | MPa | ISO 899-1 | 3600 |  | Tensile creep modulus | 1000 h | MPa | ISO 899-1 | 2900 | | Flexural modulus | 2 mm/min | MPa | ISO 178 | 3600 | | Flexural strength | 2 mm/min | MPa | ISO 178 | 105 | | Flexural strain at flexural strength | 2 mm/min | % | ISO 178 | 5.8 | | Flexural stress at 3.5 % strain | 2 mm/min | MPa | ISO 178 | 95 |  | Charpy impact strength | 23 °C | kJ/m² | ISO 179-1eU | 150C(N) |  | Charpy impact strength | -30 °C | kJ/m² | ISO 179-1eU | 120C(N) | | Charpy impact strength | -60 °C | kJ/m² | ISO 179-1eU | 100C | | Charpy notched impact strength | 23 °C; 3 mm | kJ/m² | ISO 7391/b.o. ISO 179-1eA | 10C | | Izod notched impact strength | 23 °C; 3.2 mm | kJ/m² | b.o. ISO 180-A | 10C |  | Puncture maximum force | 23 °C | N | ISO 6603-2 | 4000 |  | Puncture maximum force | -30 °C | N | ISO 6603-2 | 3700 |  | Puncture energy | 23 °C | J | ISO 6603-2 | 25 |  | Puncture energy | -30 °C | J | ISO 6603-2 | 15 | | Ball indentation hardness | | N/mm² | ISO 2039-1 | 128 | Thermal properties |  | Temperature of deflection under load | 1.80 MPa | °C | ISO 75-1,-2 | 136 |  | Temperature of deflection under load | 0.45 MPa | °C | ISO 75-1,-2 | 142 |  | Vicat softening temperature | 50 N; 50 °C/h | °C | ISO 306 | 145 | | Vicat softening temperature | 50 N; 120 °C/h | °C | ISO 306 | 146 |  | Coefficient of linear thermal expansion, parallel | 23 to 55 °C | 10-4/K | ISO 11359-1,-2 | 0.4 |  | Coefficient of linear thermal expansion, transverse | 23 to 55 °C | 10-4/K | ISO 11359-1,-2 | 0.65 |  | Burning behavior UL 94 (1.5 mm)[UL recognition] | 1.5 mm | Class | UL 94 | V-0 |  | Burning behavior UL 94[UL recognition] | 0.75 mm | Class | UL 94 | V-2 |  | Burning behavior UL 94-5V[UL recognition] | 3.0 mm | Class | UL 94 | 5VA |  | Oxygen index | Method A | % | ISO 4589-2 | 35 | | Thermal conductivity | 23 °C | W/(m·K) | ISO 8302 | 0.22 | | Resistance to heat (ball pressure test) | | °C | IEC 60695-10-2 | 137 | | Relative temperature index (Tensile strength)[UL recognition] | 1.5 mm | °C | UL 746B | 125 | | Relative temperature index (Tensile impact strength)[UL recognition] | 1.5 mm | °C | UL 746B | 115 | | Relative temperature index (Electric strength)[UL recognition] | 1.5 mm | °C | UL 746B | 125 | | Glow wire test (GWFI)[UL recognition] | 0.75 mm | °C | IEC 60695-2-12 | 960 | | Glow wire test (GWFI)[UL recognition] | 1.5 mm | °C | IEC 60695-2-12 | 960 | | Glow wire test (GWFI)[UL recognition] | 3.0 mm | °C | IEC 60695-2-12 | 960 | | Glow wire test (GWIT)[UL recognition] | 0.75 mm | °C | IEC 60695-2-13 | 900 | | Glow wire test (GWIT)[UL recognition] | 1.5 mm | °C | IEC 60695-2-13 | 900 | | Glow wire test (GWIT)[UL recognition] | 3.0 mm | °C | IEC 60695-2-13 | 900 | | Application of flame from small burner | Method K and F; 2.0 mm | Class | DIN 53438-1,-3 | K1, F1 | | Application of flame from small burner | 2 mm | Class | DIN 4102 | B2 | | Needle flame test | Method K; 1.5 mm | s | IEC 60695-11-5 | 60 | | Needle flame test | Method K; 2.0 mm | s | IEC 60695-11-5 | 120 | | Needle flame test | Method K; 3.0 mm | s | IEC 60695-11-5 | 120 | | Needle flame test | Method F; 1.5 mm | s | IEC 60695-11-5 | 120 | | Needle flame test | Method F; 2.0 mm | s | IEC 60695-11-5 | 120 | | Needle flame test | Method F; 3.0 mm | s | IEC 60695-11-5 | 120 | | Burning rate (US-FMVSS) | >=1.0 mm | mm/min | ISO 3795 | passed | | Flash ignition temperature | | °C | ASTM D1929 | 470 | | Self ignition temperature | | °C | ASTM D1929 | 550 | Electrical properties (23 °C/50 % r. h.) |  | Relative permittivity | 100 Hz | - | IEC 60250 | 3.2 |  | Relative permittivity | 1 MHz | - | IEC 60250 | 3.2 |  | Dissipation factor | 100 Hz | 10-4 | IEC 60250 | 10 |  | Dissipation factor | 1 MHz | 10-4 | IEC 60250 | 90 |  | Volume resistivity | | Ohm·m | IEC 60093 | 1E14 |  | Surface resistivity | | Ohm | IEC 60093 | 1E16 |  | Electrical strength | 1 mm | kV/mm | IEC 60243-1 | 36 |  | Comparative tracking index CTI | Solution A | Rating | IEC 60112 | 175 | | Comparative tracking index CTI M | Solution B | Rating | IEC 60112 | 125M | | Electrolytic corrosion | | Rating | IEC 60426 | A1 | Other properties (23 °C) |  | Water absorption (saturation value) | Water at 23 °C | % | ISO 62 | 0.26 |  | Water absorption (equilibrium value) | 23 °C; 50 % r. h. | % | ISO 62 | 0.10 |  | Density | | kg/m³ | ISO 1183-1 | 1270 | | Glass fiber content | Method A | % | b.o. ISO 3451-1 | 10 | | Bulk density | Pellets | kg/m³ | ISO 60 | 640 | Processing conditions for test specimens |  | Injection molding-Melt temperature | | °C | ISO 294 | 300 |  | Injection molding-Mold temperature | | °C | ISO 294 | 110 |  | Injection molding-Injection velocity | | mm/s | ISO 294 | 200 | ISO简称:国际标准组织7391 - PC机,熔体流动,(,,)- 9月9日,GF10Property测试条件单位标准值 流变性能 熔体体积流动速率300℃;一点二千克厘米³ / 10分钟国际标准组织1133 6.5 成型收缩率,并行60x60x2; 500巴的0.55%ISO以上294-4 成型收缩率,正常60x60x2; 500巴的0.45%ISO以上294-4 成型收缩率,并行/正常值范围一般根据实际经验%博国际标准组织2577 0.4 - 0.6 熔体质量流动速率300℃;1.2公斤g/10分钟国际标准组织1133 7.0 机械性能(23 ° C/50%相对高等法院) 拉伸模量1毫米/分钟兆帕国际标准组织527-1,-2 3800 屈服应力5毫米/分钟兆帕国际标准组织527-1,-2 64 屈服应变5毫米/分钟%ISO以上527-1,-2 4.6 应力断裂5毫米/分钟兆帕国际标准组织527-1,-2 45 断裂伸长率5毫米/分钟%ISO以上527-1,-2月15日 1小时拉伸蠕变模量3600 MPa的国际标准组织899-1 1000小时拉伸蠕变模量2900 MPa的国际标准组织899-1 弯曲模量2毫米/分钟兆帕国际标准组织178 3600 抗弯强度2毫米/分钟兆帕国际标准组织178 105 在弯曲变形弯曲强度2毫米/分钟178 5.8%ISO以上 3.5%时的弯曲应力应变2毫米/ 95分钟178兆帕国际标准组织 简支梁冲击强度23℃千焦耳/平方米国际标准组织179 - 1eU 150度(N)的 简支梁冲击强度-30℃千焦耳/平方米国际标准组织179 - 1eU 120C(N)的 简支梁冲击强度-60℃千焦耳/平方米国际标准组织179 - 1eU 100℃ 夏比缺口冲击强度23℃; 3毫米千焦耳/平方米国际标准组织7391/bo国际标准组织179 - 1EA的10C条 Izod缺口冲击强度23℃; 3.2毫米千焦耳/平方米博国际标准组织180甲10C条 穿刺力最大23 ° C n的国际标准组织6603-2 4000 穿刺最大力量-30 ° C n的国际标准组织6603-2 3700 穿刺能源23℃?国际标准组织6603-2 25 穿刺能源-30℃?国际标准组织6603-2 15 球压痕硬度牛顿/平方毫米国际标准组织2039-1 128 热性能 载荷下挠曲温度的1.80兆帕斯卡° C间国际标准组织75-1,-2 136 载荷下挠曲温度的0.45兆帕斯卡° C间国际标准组织75-1,-2 142 维卡软化温度50氮; 50℃/ h的145 ° C间国际标准组织306 维卡软化温度50氮; 120℃/ h的146 ° C间国际标准组织306 线性热膨胀系数,并行23至55 ° C 10-4 / K的国际标准组织11359-1,-2 0.4 线性热膨胀系数,横向23至55 ° C 10-4 / K的国际标准组织11359-1,-2 0.65 燃烧性试验94(1.5毫米)[UL认可]1.5毫米类的UL 94 V - 0 燃烧性试验94 [UL认可]0.75毫米类的UL 94 V - 2 燃烧性试验94 - 5V [UL认可] 3.0毫米UL认证类94 5VA 氧指数法阿35%ISO以上4589-2 热导率23 °顺时针/(米度K)国际标准组织8302 0.22 耐热(球压试验)℃137符合IEC 60695-10-2 相对温度指数(拉伸强度)[UL认可] 1.5毫米UL认证746B 125 ° C间 相对温度指数(拉伸冲击强度)[UL认可] 1.5毫米UL认证746B 115 ° C间 相对温度指数(介电强度)[UL认可]1.5毫米125 ° C间UL认证746B 灼热丝燃烧指数(GWFI)[UL认可] 0.75毫米符合IEC 60695-2-12 960 ° C间 灼热丝燃烧指数(GWFI)[UL认可] 1.5毫米符合IEC 60695-2-12 960 ° C间 灼热丝燃烧指数(GWFI)[UL认可] 3.0毫米,符合IEC 60695-2-12 960 ° C间 灼热丝试验(GWIT)[UL认可] 0.75毫米符合IEC 60695-2-13 900 ° C间 灼热丝试验(GWIT)[UL认可] 1.5毫米符合IEC 60695-2-13 900 ° C间 灼热丝试验(GWIT)[UL认可]三点○毫米符合IEC 60695-2-13 900 ° C间 燃烧的火焰由小K和F的方法;二点零毫米符合DIN 53438-1级,-3的K1,F1的 火焰2毫米的应用符合DIN 4102 B2级小型点火器 针焰试验方法k的一点五毫米s符合IEC 60695-11-5 60 针焰试验方法k的2.0毫米s符合IEC 60695-11-5 120 针焰试验方法k的3.0毫米s符合IEC 60695-11-5 120 针焰试验方法F;符合IEC 60695-11-5 1.5毫米s 120 针焰试验方法F;符合IEC 60695-11-5 2.0毫米s 120 针焰试验方法F;三点〇毫米s符合IEC 60695-11-5 120 燃烧速度(美国FMVSS)> = 1.0毫米毫米/分钟国际标准组织3795通过 闪光点火温度° C美国ASTM D1929 470 自燃温度° C美国ASTM D1929 550 电气性能(23 ° C/50%相对高等法院) 相对介电常数100赫兹 - 符合IEC六点○二五万3.2 相对介电常数1兆赫 - 320符合IEC 6.025万 耗散因数100赫兹10-4符合IEC 6.025万10 耗散因子1兆赫10-4符合IEC 60250 90 体积电阻欧姆·并购符合IEC 60093 1E14 表面电阻欧姆符合IEC 60093 1E16 电气强度1毫米千伏/毫米符合IEC 60243-1 36 城市电讯解决方案的对比跟踪指数的评级符合IEC 60112 175 城市电讯M对比跟踪指数等级符合IEC 60112溶液B 1.25亿 等级符合IEC 60426电解腐蚀格A1 其他性能(23℃) 吸水率(饱和值)水在23 ° C 62 0.26%ISO以上 吸水率(平衡值)23℃; 50%河小时62 0.10%ISO以上 密度公斤/立方米国际标准组织1183-1 1270 玻璃纤维含量方法A%b.o.国际标准组织3451-1 10 堆积密度颗粒公斤/立方米国际标准组织60 640 测试试样的工艺条件 注塑成型熔温度° C国际标准组织294 300 注塑模内温度° C国际标准组织294 110 注塑,注塑速度毫米/ 200的ISO 294
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