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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Direct joining of 3D-printed thermoplastic parts to SLM-fabricated metal cellular structures by ultrasonic welding
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Direct joining of 3D-printed thermoplastic parts to SLM-fabricated metal cellular structures by ultrasonic welding

机译:通过超声波焊接将3D印刷热塑性零件直接连接到SLM制造的金属蜂窝结构

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摘要

The joining capability of metal cellular structures fabricated using the additive manufacturing (selective laser melting (SLM)) method is investigated herein. The metal cellular structures are composed of sub-millimeter holes and internal pores. The direct joining of 3D-printed ABS-M30i thermoplastic parts to metal cellular structures by ultrasonic welding is demonstrated. The SLM-fabricated structures comprised of partially melted powders provide micro-scale roughness, which enhances the micro-mechanical interlocking between joining parts. A shear strength 17.7?MPa and normal tensile strength of 15.2?MPa were obtained, up to 55 and 48% of ABS-M30i ultimate tensile strength, respectively. Moreover, normal tensile plastic strength up to 86% of the shear strength was obtained.
机译:本文研究了使用添加剂制造(选择性激光熔化(SLM))制造的金属细胞结构的连接能力。 金属蜂窝结构由亚毫米孔和内部孔组成。 证明了通过超声波焊接的3D印刷ABS-M30i热塑性零件的直接连接到金属蜂窝结构。 由部分熔融粉末组成的SLM制造的结构提供了微观粗糙度,其增强了连接部件之间的微机械互锁。 剪切强度17.7?MPa和正常拉伸强度为15.2〜MPa,高达55和48%的ABS-M30I极限拉伸强度。 此外,获得了高达86%的剪切强度的正常拉伸塑料强度。

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