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Method for joining steel to aluminum alloy components or titanium alloy components, and turbochargers obtained by the method

机译:将钢连接至铝合金部件或钛合金部件的方法以及通过该方法获得的涡轮增压器

摘要

Blanks or structural components of steel are joined to those of an aluminum alloy (a) or titanium alloy (b) by friction-welding with insertion of at least one transition layer of a ductile subgroup metal, in particular by applying, according to (a), a pure nickel layer to the steel by friction-welding and joining the surface of the nickel layer, after weld bead removal, to the aluminum alloy by friction-welding. According to (b), a copper layer is applied to the steel by friction- welding and a vanadium layer is applied to the titanium alloy by friction- welding. The copper and vanadium surfaces are, after weld bead removal, then joined to one another by friction-welding. In the case of steel which tends to form martensitic zones, a layer of austenitic steel is applied by friction-welding before the application of the copper layer. The process is especially suitable for joining the turbine wheel and shaft or fixing component for the shaft of a turbocharger.
机译:根据(a)的规定,通过插入至少一个延性亚族金属的过渡层,通过摩擦焊接将钢的毛坯或结构部件与铝合金(a)或钛合金(b)的坯件或结构部件连接在一起。 ),将纯镍层通过摩擦焊接连接到钢上,并在去除焊缝后将镍层的表面通过摩擦焊接连接到铝合金上。根据(b),通过摩擦焊接将铜层施加到钢上,并且通过摩擦焊接将钒层施加到钛合金上。去除焊缝后,将铜和钒的表面通过摩擦焊接彼此连接。对于趋于形成马氏体区的钢,在施加铜层之前先通过摩擦焊接来施加奥氏体钢层。该方法特别适合于连接涡轮机叶轮和轴或涡轮增压器轴的固定部件。

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