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首页> 外文期刊>International Journal Precision Engineering Manufacturing-Green Technology >Integration of Forming Operations on Hybrid Additive Manufacturing Systems Based on Fusion Welding
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Integration of Forming Operations on Hybrid Additive Manufacturing Systems Based on Fusion Welding

机译:基于熔融焊接的混合添加剂制造系统形成运算的整合

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摘要

This paper is focused on the integration of metal forming operations in hybrid systems that combine additive manufacturing (AM) by gas metal wire arc and subtractive manufacturing by machining. The investigation is carried out in AISI 316L stainless steel wire and draws from tensile testing to incremental sheet forming of truncated conical shapes. Commercial sheets from the same material are utilized for comparison purposes. Thickness measurements, digital image correlation (DIC), circle grid analysis (CGA) and microstructural and scanning electron microscopy (SEM) observations are carried out to understand how different is the mechanical behaviour of the deposited metal from that of commercial metal sheets and how significant is the influence of the deposited metal microstructure on its overall formability. Results confirm that integration of metal forming operations in hybrid AM routes is feasible despite the formability of deposited metal being smaller than that of the commercial metal sheets due to the strong anisotropy induced by the dendritic based microstructure of the deposited metal. Incremental forming of two deposited parts also allows concluding that integration of metal forming operations in hybrid AM systems is a step towards green and sustainable manufacturing by extending their field of applicability to the fabrication of complex ready-to-use parts requiring combination of different processes.
机译:本文集中于将金属成型操作的整合在混合系统中,通过加工将添加剂制造(AM)结合的添加剂制造(AM)和减肥制造。该研究在AISI 316L不锈钢线上进行,并从拉伸测试中汲取,以增加截头圆锥形状的增量片。来自相同材料的商业板用于比较目的。进行厚度测量,数字图像相关性(DIC),圆形电网分析(CGA)和微观结构和扫描电子显微镜(SEM)观察,以了解沉积金属的机械行为与商业金属板的机械行为有多有意义是沉积的金属微观结构对整体成形性的影响。结果证实,尽管沉积金属的成形性小于沉积金属的微结构诱导的强源性诱导的强源性,但是,尽管沉积金属的可成形性小于商业金属板的成形性,但是在混合动力轴路中的整合是可行的。两种沉积部件的增量形成还允许结束性,即通过将适用性的适用性延伸到需要组合不同方法的复杂现成部件的制造领域,致杂合物AM系统中金属成型操作的集成是朝向绿色和可持续制造的一步。

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