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On the Post-Printing Heat Treatment of a Wire Arc Additively Manufactured ER70S Part

机译:电弧附加制造的ER70S零件的印刷后热处理

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摘要

Wire arc additive manufacturing (WAAM) is known to induce a considerable microstructural inhomogeneity and anisotropy in mechanical properties, which can potentially be minimized by adopting appropriate post-printing heat treatment. In this paper, the effects of two heat treatment cycles, including hardening and normalizing on the microstructure and mechanical properties of a WAAM-fabricated low-carbon low-alloy steel (ER70S-6) are studied. The microstructure in the melt pools of the as-printed sample was found to contain a low volume fraction of lamellar pearlite formed along the grain boundaries of polygonal ferrite as the predominant micro-constituents. The grain coarsening in the heat affected zone (HAZ) was also detected at the periphery of each melt pool boundary, leading to a noticeable microstructural inhomogeneity in the as-fabricated sample. In order to modify the nonuniformity of the microstructure, a normalizing treatment was employed to promote a homogenous microstructure with uniform grain size throughout the melt pools and HAZs. Differently, the hardening treatment contributed to the formation of two non-equilibrium micro-constituents, i.e., acicular ferrite and bainite, primarily adjacent to the lamellar pearlite phase. The results of microhardness testing revealed that the normalizing treatment slightly decreases the microhardness of the sample; however, the formation of non-equilibrium phases during hardening process significantly increased the microhardness of the component. Tensile testing of the as-printed part in the building and deposition directions revealed an anisotropic ductility. Although normalizing treatment did not contribute to the tensile strength improvement of the component, it suppressed the observed anisotropy in ductility. On the contrary, the hardening treatment raised the tensile strength, but further intensified the anisotropic behavior of the component.
机译:众所周知,电弧增材制造(WAAM)会在机械性能上引起相当大的微观结构不均匀性和各向异性,通过采用适当的印刷后热处理,可以将这种现象最小化。在本文中,研究了两个热处理循环(包括硬化和正火处理)对WAAM制造的低碳低合金钢(ER70S-6)的组织和力学性能的影响。发现印刷样品的熔池中的微观结构包含少量的沿层状铁素体晶界形成的层状珠光体,这是主要的微成分。在每个熔池边界的外围还检测到热影响区(HAZ)中的晶粒粗化,从而在加工后的样品中引起明显的微观结构不均匀性。为了改变微观结构的不均匀性,采用规范化处理以促进在整个熔池和热影响区中具有均匀晶粒尺寸的均匀微观结构。不同地,硬化处理促成两个非平衡微成分的形成,即针状铁素体和贝氏体,主要邻近层状珠光体相。显微硬度测试结果表明,归一化处理略微降低了样品的显微硬度。但是,在硬化过程中形成非平衡相会显着增加组件的显微硬度。在建筑和沉积方向对印刷零件的拉伸测试显示出各向异性的延展性。归一化处理虽然无助于部件的拉伸强度的提高,但抑制了延展性的观察到的各向异性。相反,硬化处理提高了拉伸强度,但是进一步增强了部件的各向异性行为。

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