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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Microstructure, hardness and mechanical properties of two different unalloyed tantalum wires deposited via wire plus arc additive manufacture
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Microstructure, hardness and mechanical properties of two different unalloyed tantalum wires deposited via wire plus arc additive manufacture

机译:通过电线加弧添加剂沉积两根不同未合金钽线的微观结构,硬度和机械性能

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摘要

An innovative way of producing large-scale unalloyed tantalum parts, based on the Wire + Arc Additive Manufacturing process, has been developed in this study. Two different unalloyed tantalum wires have been used to deposit 200-mm-long structures in tantalum. The effect of the wire chemistry on microstructure, hardness, porosity, mechanical properties and strain localisation has been investigated. The deposits showed high integrity and excellent mechanical properties, with yield strength, ultimate tensile strength and elongation as high as 234 MPa, 261 MPa, and 36%, respectively. Indeed, yield strength was higher than commercially available tantalum, even though, in this study, the grains were large and had a high aspect ratio. Wire + Arc Additive Manufacture has clearly shown the potential to produce tantalum components with relatively low cost and reduced lead time, thus offering a new robust and viable manufacturing route.
机译:本研究开发了一种基于线+弧添加制造工艺生产大型未合格钽零件的创新方式。 两根不同的未合金化钽丝已用于钽中占用200毫米长的结构。 研究了线材化学对微观结构,硬度,孔隙率,机械性能和应变局部的影响。 沉积物显示出高完整性和优异的机械性能,屈服强度,最终拉伸强度和高达234MPa,261MPa和36%的伸长率。 实际上,屈服强度高于商业上可获得的钽,即使在本研究中,晶粒也很大并且具有高纵横比。 电线+弧添加剂制造已经清楚地示出了产生具有相对较低成本和减少的延长时间的钽部件的潜力,从而提供了一种新的稳健和可行的制造路线。

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