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首页> 外文期刊>Journal of Materials Processing Technology >Wire arc additive manufacturing of hot work tool steel with CMT process
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Wire arc additive manufacturing of hot work tool steel with CMT process

机译:CMT工艺的热工床钢丝电弧添加剂制造

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摘要

This study presents investigations on the additive manufacturing of hot work steel with the energy-reduced gas metal arc welding (GMAW) process, which is a cold metal transfer (CMT) process. The paper analyses the influence of arc energy and the thermal field on the resulting mechanical properties and microstructure of the material. The investigations were carried out with hot work tool steel X37CrMoV 5-1, which is used for the manufacturing of plastic moulds, hot extrusion dies, and forging dies. The results show that this steel can be used to generate 3D metal components or structures with high reproducibility, near-net-shaped geometry, absence of cracks, and a deposition rate of up to 3.6 kg/h. The variation of the wire feed speed and the welding speed enables the production of weld beads of width up to 9.4 mm. The mechanical properties of the generated structures can be adapted by the dominant thermal field, which in turn is influenced by the bypass temperature and the electric arc energy. A determining factor to describe the main variables of the welding process is represented by energy per unit length E-L. If the bypass temperature is above the martensite start temperature (M-s), there is a homogeneous hardness level along the height of the additively manufactured structure height as long as the energy produced by the welding arc is enough to keep the temperature of all layers above M-s.
机译:本研究提出了对热工作钢添加剂制造的调查,通过降低的气体金属弧焊(GMAW)工艺,这是一种冷金属转移(CMT)工艺。本文分析了电弧能量和热场对材料的施加力学性能和微观结构的影响。采用热加工工具钢X37Crmov 5-1进行调查,用于制造塑料模具,热挤出模具和锻造模具。结果表明,该钢可用于产生高再现性,近净形几何形状,裂缝的近净形状的3D金属成分或结构,以及高达3.6kg / h的沉积速率。送丝速度和焊接速度的变化使得宽度的焊珠的生产高达9.4毫米。所产生的结构的机械性能可以由显性热场调整,这又受到旁路温度和电弧能的影响。确定焊接过程的主变量的确定因素由每单位长度E-L的能量表示。如果旁路温度高于马氏体开始温度(MS),则只要通过焊接弧产生的能量足以使所有层的温度保持在MS上方的所有层的温度即可,存在沿着加成型结构高度的均匀硬度水平。 。

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