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This is the free Material Data Center Datasheet of ULTEM™ Resin HU2310 - PEI-GF30 - Saudi Basic Industries Corporation (SABIC)

Material Data Center offers the following functions for ULTEM™ Resin HU2310:
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材料文字说明
ULTEM HU2310 resin is an improved flow, 30% glass fiber reinforced polyetherimide resin. The intended use for this material is in medical devices and pharmaceutical applications. The material offers biocompatibility (ISO 10993 or USP Class VI) and Healthcare management of change applies. The material may offer Steam-, Hydrogen Peroxide-, Gamma-, EtO-, UV-C- and E-beam resistance for repeated sterilization cycles. It may offer global food compliance (FDA, CN, EC). The material is RoHS compliant and is intrinsically flame retardant without the use of FR modifiers. It offers UL94 V0 and 5VA ratings. The material can also offer excellent dimension stability, strength, stiffness and creep resistance up to high temperature due to its high glass transition temperature of 217°C. The material is opaque and can be custom colored.
加工/物理特性价值单位Test Standard
ISO数据
熔体体积流动速度, MVR 8 cm³/10min ISO 1133
温度 360 °C -
载荷 5 kg -
ASTM数据
熔融指数, MFI 7.6 g/10min ASTM D 1238
温度 337 °C -
负载 6.6 kg -
机械性能价值单位Test Standard
ISO数据
拉伸模量 10500 MPa ISO 527
断裂应力 175 MPa ISO 527
断裂伸长率 2.4 % ISO 527
弯曲模量, 23°C 9600 MPa ISO 178
简支梁冲击强度, +23°C 40 kJ/m² ISO 179/1eU
简支梁冲击强度, -30°C 40 kJ/m² ISO 179/1eU
简支梁缺口冲击强度, +23°C 10 kJ/m² ISO 179/1eA
简支梁缺口冲击强度, -30°C 10 kJ/m² ISO 179/1eA
Izod冲击强度, +23°C 40 kJ/m² ISO 180/1U
悬臂梁缺口冲击强度, +23°C, 4mm 10 kJ/m² ISO 180/1A
悬臂梁缺口冲击强度, -30°C, 4mm 10 kJ/m² ISO 180/1A
悬臂梁缺口冲击强度, +23°C 10 kJ/m² ISO 180/1A
悬臂梁缺口冲击强度 10 kJ/m² ISO 180/1A
悬臂梁缺口冲击强度 - 温度 -30 °C -
洛克硬度 M 110 - ISO 2039-2
球压硬度 165 MPa ISO 2039-1
ASTM数据
拉伸模量 10400 MPa ASTM D 638
断裂拉伸强度 175 MPa ASTM D 638
断裂伸长率 2.5 % ASTM D 638
弯曲模量 9700 MPa ASTM D 790
洛克硬度 M 114 - ASTM D 785
悬臂梁缺口冲击强度, 1/8 in 90 J/m ASTM D 256
低温悬臂梁缺口冲击强度, Low-Temperature 80 J/m ASTM D 256
温度 -30 °C -
Izod冲击强度, 1/8 in 600 J/m ASTM D 256
热性能价值单位Test Standard
ISO数据
热变形温度, 1.80 MPa 210 °C ISO 75-1/-2
热变形温度, 0.45 MPa 215 °C ISO 75-1/-2
维卡软化温度, A 225 °C ISO 306
维卡软化温度, B 213 °C ISO 306
维卡软化温度, 120°C/h 50N 220 °C ISO 306
线性热膨胀系数, 平行 17 E-6/K ISO 11359-1/-2
线性热膨胀系数, 垂直 49 E-6/K ISO 11359-1/-2
厚度为h时的燃烧性 V-0 class IEC 60695-11-10
测试用试样的厚度 0.2 mm -
Yellow Card 现存 是的 - -
厚度为h时的5V燃烧性 5VA class IEC 60695-11-20
测试用试样的厚度 1.2 mm -
Yellow Card 现存 是的 - -
燃烧性-氧指数 48 % ISO 4589-1/-2
灼热丝燃烧指数 (GWFI) 960 °C IEC 60695-2-12
GWFI - 测试用试样厚度 2 mm -
灼热丝引燃温度 (GWIT) 900 °C IEC 60695-2-13
GWIT - 测试用试样厚度 2 mm -
ASTM数据
热释放速率, 平行 19 E-6/K ASTM D 696
热释放速率, 垂直 41 E-6/K ASTM D 696
DTUL @ 66 psi 215 °C ASTM D 648
DTUL @ 264 psi 211 °C ASTM D 648
维卡温度 227 °C ASTM D 1525
氧指数 50 % ASTM D 2863
电性能价值单位Test Standard
ISO数据
相对介电常数, 1MHz 3.4 - IEC 62631-2-1
介质损耗因子, 1MHz 25 E-4 IEC 62631-2-1
体积电阻率 1E13 Ohm*m IEC 62631-3-1
表面电阻率 >1E15 Ohm IEC 62631-3-2
介电强度 35 kV/mm IEC 60243-1
相对漏电起痕指数 150 - IEC 60112
ASTM数据
电介质强度, 短时 24.8 kV/mm ASTM D 149
体积电阻率 3E16 Ohm*cm ASTM D 257
耐电弧性 90 s ASTM D 495
其它性能价值单位Test Standard
吸水性 0.9 % 类似ISO 62
吸湿性 0.5 % 类似ISO 62
密度 1510 kg/m³ ISO 1183
吸水率, 24小时 0.16 % ASTM D 570
吸水率, 平衡 0.9 % ASTM D 570
密度 1510 kg/m³ ASTM D 792
加工推荐(注塑)价值单位Test Standard
预干燥-温度 150 °C -
预干燥-时间 4 - 6 h -
加工湿度 ≤0.02 % -
注塑熔体温度 350 - 410 °C -
模具温度 135 - 180 °C -
加料温度 80 - 120 °C -
1区 330 - 400 °C -
2区 340 - 410 °C -
3区 345 - 420 °C -
螺杆转速 40 - 70 rpm -
背压 0.3 - 1.5 MPa -
典型数据
加工方法
注塑, 异型材挤出成型, 片材挤出成型, 其它挤出成型
特殊性能
阻燃的, 无卤, 经耐紫外线处理的/耐气候的, 经热稳处理的/耐热的, Opaque, 消毒, 环氧乙烷灭菌(EtO), 蒸汽灭菌, Gamma irradiation sterilization, Electron beam (e-beam) sterilization
特征
无定形, 防蠕变, 好粘附性能, 低烟量
耐化学试剂
通用耐化学性, 水解稳定, 抗辐射性
Certifications
可食品接触的, FDA 21 CFR认证, 医用级, Biocompatibility ISO 10993, US药物六级认证, RoHS
应用
药物
地区供应
北美, 欧洲, 亚太, 中南美洲
权利义务的法律声明
Copyright Altair Engineering GmbH. Altair Engineering GmbH assumes no liability for the system to be free of errors. The user takes sole responsibility for the use of this data under the exclusion of every liability from Altair Engineering GmbH; this is especially valid for claims of compensation resulting from consequential damages. Altair explicitly points out that any decision about the application of materials must be double checked with the producer of this material. This includes all contents of this system. Copyright laws are applicable for the content of this system.
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