The Influence of Surface Irregularities on the Mechanical Properties of Thin-Walled Wire and Arc Additively Manufactured Parts

IF 0.6
Denys Molochkov, Ruslan Kulykovskyi, Michail Brykov, Olaf Hesse
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引用次数: 0

Abstract

Wire and Arc Additive Manufacturing (WAAM) is a metal additive manufacturing process commonly used to deposition medium to large, near net-shaped parts. It can efficiently use materials and deposit objects with fewer assembly parts. The main disadvantage of WAAM is the surface quality. This work investigates the geometry shift defect that could be formed due to the wear of the welding contact tip. As a result of the wear, the filler wire deviates from the nominal position, and errors occur in the positioning of individual layers of printed parts. The main objective of this work is to investigate the influence of surface irregularities on the mechanical properties of as-deposited thin-walled WAAM parts. Finite element modeling of static and cyclic tensile and compressive tests showed that the surface waviness formed during layer-by-layer deposition increases the stress level under static loading applied transversely to the deposited layers. Surface waviness also significantly reduces the life of parts under cyclic loading. Replacement of a worn contact tip causes the layers to shift, and the resulting load eccentricity increases the stress level. Uneven stress distribution throughout the cross section means reduced material usage efficiency. During compressive loading, the load eccentricity destabilizes, causing the specimen to deform after exceeding the yield strength in stress concentration zones. The relationship between unmachined and machined walls with equivalent stresses was obtained, allowing the influence of surface waviness on the strength and durability of structures to be considered at the design stage.
表面不规则性对薄壁线材和电弧增材件力学性能的影响
线材和电弧增材制造(WAAM)是一种金属增材制造工艺,通常用于沉积介质到大型,近网形零件。它可以用更少的装配零件有效地利用材料和沉积物体。WAAM的主要缺点是表面质量。本文研究了由于焊接接触尖端磨损而可能形成的几何位移缺陷。由于磨损,填充线偏离标称位置,并且在印刷部件的各个层的定位中发生错误。本工作的主要目的是研究表面不规则性对沉积薄壁WAAM零件力学性能的影响。静态和循环拉压试验的有限元模拟表明,逐层沉积过程中形成的表面波纹增加了横向施加于沉积层的静载荷下的应力水平。表面波纹也显著降低了零件在循环载荷下的寿命。更换磨损的接触尖端会导致层移位,由此产生的负载偏心增加了应力水平。整个截面应力分布不均匀意味着材料使用效率降低。在压缩加载过程中,载荷偏心失稳,导致试样在应力集中区域超过屈服强度后发生变形。获得了具有等效应力的未加工和加工墙壁之间的关系,从而允许在设计阶段考虑表面波纹对结构强度和耐久性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.40
自引率
0.00%
发文量
15
审稿时长
12 weeks
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