3D打印 60微米 EOS PA2200 Top Speed 1.0
EOS PA 2200 Top Speed 1.0
Polyamide 12
EOS GmbH
产品说明:
This whitish fine powder PA 2200 on the basis of polyamide 12 serves with its very well-balanced property profile a wide variety of applications. Laser-sintered parts made from PA 2200 possess excellent material properties:
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high strength and stiffness
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excellent long-term constant behaviour
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high selectivity and detail resolution
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various finishing possibilities (e.g. metallisation, stove enamelling, vibratory grinding, tub colouring, bonding, powder coating, flocking)
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bio compatible according to EN ISO 10993-1 and USP/level VI/121 °C
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approved for food contact in compliance with the EU Plastics Directive 2002/72/EC (exception: high alcoholic foodstuff)
Typical applications of the material are fully functional plastic parts of highest quality. Due to the excellent mechanical properties the material is often used to substitute typical injection moulding plastics. The biocompatibility allows its use e.g. for prostheses, the high abrasion resistance allows e.g. the realisation of movable part connections.
180 μm layer thickness:
TopSpeed is a very economical parameter set for parts with medium to high requirements of quality and mechanical load and high cost pressure. Particularly large and relatively thick-walled parts can usually profit from this layer thickness, mostly without any noticeable impairment from the fast build-up rates.
物性信息:
基本信息
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特性
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刚性,高
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高强度
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良好耐磨损性
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耐化学性良好
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生物兼容性
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食品接触的合规性
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用途
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机构评级
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ISO 10993
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USP 第VI类
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欧洲 2002/72/EC
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外观
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形式
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加工方法
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3D Printing, Laser Sintering/Melting
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物理性能
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额定值
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单位制
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测试方法
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密度
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0.930
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g/cm3
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内部方法
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Thickness - Layer
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180.0
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μm
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硬度
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额定值
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单位制
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测试方法
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肖氏硬度 (邵氏 D, 15 秒)
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75
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ISO 868
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机械性能
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额定值
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单位制
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测试方法
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拉伸模量 1
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1500
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MPa
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ISO 527-2
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拉伸应力
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-- 2
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38.0
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MPa
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ISO 527-2
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-- 3
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45.0
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MPa
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ISO 527-2
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拉伸应变
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断裂 4
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18
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%
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ISO 527-2
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断裂 5
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3.0
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%
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ISO 527-2
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弯曲模量 6(23°C)
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1500
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MPa
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ISO 178
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冲击性能
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额定值
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单位制
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测试方法
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简支梁缺口冲击强度 7(23°C)
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4.8
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kJ/m2
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ISO 179/1eA
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简支梁无缺口冲击强度 8(23°C)
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53
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kJ/m2
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ISO 179/1eU
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悬壁梁缺口冲击强度 (23°C)
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4.4
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kJ/m2
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ISO 180/1A
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热性能
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额定值
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单位制
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测试方法
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维卡软化温度
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163
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°C
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ISO 306/B50
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熔融温度
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176
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°C
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ISO 11357
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...