用ZhS6合金耐热工具搅拌摩擦焊接Ti-5Al-3Mo-1V合金焊接接头的成形特征

IF 0.4 Q4 METALLURGY & METALLURGICAL ENGINEERING Obrabotka Metallov-Metal Working and Material Science Pub Date : 2022-12-15 DOI:10.17212/1994-6309-2022-24.4-53-63
A. Amirov, E. Moskvichev, A. Ivanov, A. Chumaevskii, V. Beloborodov
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引用次数: 1

摘要

介绍。在电弧或气焰焊接过程中,由于残余应力和变形大,焊接接头质量低,使钛合金制造产品的工艺过程变得复杂。成功解决这一问题的一个例子是开发和实施了搅拌摩擦焊等金属连接的高科技工艺,而不涉及熔合连接的方法。搅拌摩擦焊是一种先进的焊接技术,用于获得“软”金属材料(如铝)的接头。对于“硬”金属材料,由于对焊接工具的要求很高,搅拌摩擦焊一直受到限制。本工作的目的是研究在Ti-5Al-3Mo-1V钛合金的搅拌摩擦焊接中使用镍基耐热合金ZhS6U制成的工具的可能性。结果和讨论。光学和扫描电镜结果表明,焊缝结构为典型的梯度焊接,由热影响区、热机械影响区和具有破碎结构的搅拌区组成。当焊接参数变化时,焊缝的缺陷更大程度上受工具上的轴向载荷的影响,这是由材料热效应的显著差异引起的。金相分析方法表明,在不可拆卸接头的搅拌区有焊接工具材料碎片的溶解。断口形貌分析表明,焊接区的断口是延性的,尽管在这种情况下存在脆性桥。改变搅拌摩擦焊接的参数可以获得不溶接头,其强度至少为母材的90%。
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Formation features of a welding joint of alloy Ti-5Al-3Mo-1V by the friction stir welding using heat-resistant tool from ZhS6 alloy
Introduction. The technological process of fabrication products from titanium alloys is often complicated by low quality of welded joints during electric arc or gas-flame welding operations due to high residual stresses and deformations. An example of a successful solution to this problem is the development and implementation of such high-tech processes of metal joining as friction stir welding, which does not refer to the methods of fusion joining. Friction stir welding as an advanced technology is used to obtain joints of “soft” metallic materials, such as aluminum. For “hard” metallic materials, friction stir welding has been limited due to the high demands on welding tools. The aim of this work is investigation of the possibility of using a tool made of the nickel-based heat-resistant alloy ZhS6U in friction stir welding of the titanium alloy Ti-5Al-3Mo-1V. Results and discussion. Optical and scanning electron microscopy results revealed that the structure of the weld is typical of this type of welding, gradient, consisting of a heat-affected zone, thermo-mechanical affected zone and a stir zone with a fragmented structure. When varying welding parameters, it is shown that the defectiveness of the weld is affected to a greater extent by the axial load on the tool, which is caused by a significant difference in the thermal effect on the material. Metallographic analysis methods revealed dissolution of welding tool material fragments in the stir zone of the non-detachable joint. Fractographic analysis of the fracture surface shows that the fracture in the weld zone is ductile, although in this case there are brittle bridges. Varying the parameters of friction stir welding made it possible to obtain an indissoluble joint with at least 90 % of the strength of the base metal.
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来源期刊
Obrabotka Metallov-Metal Working and Material Science
Obrabotka Metallov-Metal Working and Material Science METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
50.00%
发文量
26
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