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Influence of Surface Preparation on Cracking Phenomena in TIG-Welded High and Medium Entropy Alloys

机译:表面处理对TIG焊接中高熵合金开裂现象的影响

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摘要

Multi-element systems with defined entropy (HEA—high entropy alloy or MEA—medium entropy alloy) are rather new material concepts that are becoming increasingly important in materials research and development. Some HEA systems show significantly improved properties or combinations of properties, e.g., the overcoming of the trade-off between high strength and ductility. Thus, the synthesis, the resulting microstructures, and properties of HEA have been primarily investigated so far. In addition, processing is crucial to achieve a transfer of potential HEA/MEA materials to real applications, e.g., highly stressed components. Since fusion welding is the most important joining process for metals, it is of vital importance to investigate the weldability of these materials. However, this has rarely been the subject of research to date. For that reason, in this work, the weldability depending on the surface preparation of a CoCrFeMnNi HEA and a CoCrNi MEA for TIG welding is investigated. The fusion welding of longer plates is described here for the first time for the CoCrNi alloy. The welds of both materials showed distinct formation of cracks in the heat affected zone (HAZ). Optical and scanning electron microscopy analysis clearly confirmed an intergranular fracture topography. However, based on the results, the crack mechanism cannot be conclusively identified as either a liquid metal embrittlement (LME) or hot cracking-like liquid film separation.
机译:具有确定熵的多元素系统(HEA-高熵合金或MEA-中熵合金)是相当新的材料概念,在材料研究和开发中变得越来越重要。一些高熵合金系统显示出显着改善的性能或性能组合,例如,克服了高强度和延展性之间的权衡。因此,迄今为止主要研究了高熵合金的合成、由此产生的微观结构和性质。此外,加工对于实现潜在的HEA/MEA材料向实际应用(例如高应力部件)的转移至关重要。由于熔焊是金属最重要的连接工艺,因此研究这些材料的可焊性至关重要。然而,迄今为止,这很少成为研究的主题。因此,在这项工作中,研究了用于TIG焊接的CoCrFeMnNi HEA和CoCrNi MEA的表面处理的可焊性。这里首次描述了钴铬Ni合金的较长板的熔焊。两种材料的焊缝在热影响区(HAZ)中明显形成裂纹。光学和扫描电子显微镜分析清楚地证实了晶间断裂形貌。然而,根据结果,裂纹机理不能最终确定为液态金属脆化(LME)或热裂纹样液膜分离。

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