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Cross-Wedge Rolling of PTA-Welded Hybrid Steel Billets with Rolling Bearing Steel and Hard Material Coatings

机译:PTA焊接混合钢坯与滚动轴承钢和硬质材料涂层交叉楔形钢筋

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Within the Collaborative Research Centre 1153 "Tailored Forming" a process chain for the manufacturing of hybrid high performance components is developed. Exemplary process steps consist of deposit welding of high performance steel on low-cost steel, pre-shaping by cross-wedge rolling and finishing by milling. Hard material coatings such as Stellite 6 or Delcrome 253 are used as wear or corrosion protection coatings in industrial applications. Scientists of the Institute of Material Science welded these hard material alloys onto a base material, in this case C22.8, to create a hybrid workpiece. Scientists of the Institut für Integrierte Produktion Hannover have shown that these hybrid workpieces can be formed without defects (e.g. detachment of the coating) by cross-wedge rolling. After forming, the properties of the coatings are retained or in some cases even improved (e.g. the transition zone between base material and coating). By adjustments in the welding process, it was possible to apply the 100Cr6 rolling bearing steel, as of now declared as non-weldable, on the low-cost steel C22.8. 100Cr6 was formed afterwards in its hybrid bonding state with C22.8 by cross-wedge rolling, thus a component-integrated bearing seat was produced. Even after welding and forming, the rolling bearing steel coating could still be quench-hardened to a hardness of over 60 HRC. This paper shows the potential of forming hybrid billets to tailored parts. Since industrially available standard materials can be used for hard material coatings by this approach, even though they are not weldable by conventional methods, it is not necessary to use expensive, for welding designed materials to implement a hybrid component concept.
机译:在协作研究中心1153“定制成型”中,开发了混合高性能组件的制造过程链。示例性工艺步骤由高性能钢的高性能钢沉积焊接组成,通过铣削通过交叉楔形轧制预成型。硬质材料涂层如粗糙的6或含量253用作工业应用中的磨损或腐蚀保护涂层。材料科学研究所的科学家焊接这些硬质材料合金到基材上,在这种情况下,C22.8,以产生混合工件。 Institut的科学家FürdentierteProduktion汉诺威表明,可以通过交叉楔形轧制形成这些混合工件而没有缺陷(例如涂层的拆卸)。形成后,涂层的性质被保留或在某些情况下甚至改善(例如,基材和涂层之间的过渡区)。通过调节焊接工艺,可以在低成本钢C222.8上涂布100Cr6滚动轴承钢,如今被称为不可焊接。之后通过交叉楔形轧制以与C22.8的混合粘合状态之后形成100CR6,因此制备了组分 - 整体轴承座。即使在焊接和成型之后,轧制轴承钢涂层仍然可以淬火硬度超过60HRC的硬度。本文显示了将混合坯料形成为量身定制的零件的可能性。由于工业上可获得的标准材料通过这种方法可用于硬质材料涂层,即使它们不通过常规方法可焊接,因此不需要使用昂贵,用于焊接设计的材料来实现混合分量概念。

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