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Laser welding of additively manufactured medium manganese steel alloy with conventionally manufactured dual-phase steel

机译:具有常规制造的双相钢的加载介质锰钢合金的激光焊接

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摘要

Additive manufacturing (AM) of vehicle components is becoming increasingly important for faster development and economic reasons. The challenge lies in joining additively manufactured structures with conventionally manufactured components. For this purpose, a new steel alloy additive powder with medium manganese concept has been developed, which mimics the properties of automotive dual-phase steel. The focus of this paper lies on the investigation of laser weldability of this AM powder in order to achieve hybrid structures that fulfill both economic and mechanical requirements. AM test specimens of the developed alloy were manufactured using a laser-powder-bed-process. Starting with the welding of similar types of additive-powder-alloy, the combination of additive and conventional galvanized steel (HCT780XD) was considered for investigation. The resulting microstructures and the determined mechanical properties indicate a good weldability of this material. The results show laser typical and low-distortion weld seams, whereby hardening occurs in the weld seam. Moreover, the high roughness of the AM components assists a complete zinc-outgassing.
机译:对于更快的发展和经济原因,车辆组件的添加剂制造(AM)变得越来越重要。挑战在于加入常规制造的部件的加入制造的结构。为此,已经开发出一种新的钢合金添加剂,具有中锰概念,模仿汽车双相钢的性能。本文的重点在于对该AM粉末的激光可焊性进行调查,以实现满足经济和机械要求的混合结构。使用激光粉末床工艺制造显式合金的AM试样。从类似类型的添加剂 - 粉末合金的焊接开始,认为添加剂和常规镀锌钢(HCT780XD)的组合被认为进行研究。所得到的微观结构和确定的机械性能表示该材料的良好可焊性。结果显示激光典型和低失真焊缝,由此在焊缝中发生硬化。此外,AM组分的高粗糙度有助于完整的锌除气。

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