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Investigation of cold pressure welding: cohesion coefficient of copper

机译:冷压焊接研究:铜的凝聚力系数

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Joining materials by forming is an interesting approach to the manufacture of hybrid (multi material) parts. By establishing a cold pressure weld between metallic surfaces, high quality joints with superior properties can be achieved. Reliable cold welding conditions are difficult to set up, however, since the weld initiation requires extraordinary clean, virtually sheer surfaces. Until today such conditions could only be achieved under a high vacuum conditions. Various studies on cold pressure welding reported that under vacuum welds can be established at significantly lower deformation than in a normal atmosphere. Since adverse deformation is currently needed in industrial cold pressure welding processes like the cold roll cladding of metal bands, a new process with in-line electrochemical surface treatment, is investigated. The ECUF process is intended to supply clean and thereby highly activated surfaces to the cold pressure welding process. This paper presents first results on the weld-ability of copper specimens with regard to the influence of the welding environment: air, argon and KCl solution. Butt welds were made by pressure welding of previously fractured specimens.
机译:通过形成连接材料是制造杂种(多材料)部件的有趣方法。通过在金属表面之间建立冷压焊,可以实现具有优异性能的高质量接头。然而,由于焊接启动需要非凡的清洁,几乎纯粹的表面,因此难以建立可靠的冷焊接条件。直到今天,这种情况只能在高真空条件下实现。关于冷压焊接的各种研究报告说,在真空焊接下可以在比正常气氛中的变形明显降低。由于目前在工业冷压焊接工艺中目前需要不利变形,因此研究了金属带的冷轧覆盖物,因此研究了一种新的电化学表面处理的新方法。 ECUF工艺旨在提供清洁,从而为冷压焊接过程提供高度激活的表面。本文首先展示了焊接环境影响的铜标本的焊接能力:空气,氩气和KCl溶液。对接焊缝是通过先前裂缝标本的压力焊接制成的。

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