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Influence of quenching conditions on texture and mechanical properties of ultra-high-strength steels

机译:淬火条件对超高强度钢材质地和力学性能的影响

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摘要

Direct quenching of thermomechanically processed low-carbon steels is a preferred production route to increase strength and toughness of ultra-high-strength steels and thus enhance the payload-to-weight ratio, e.g., of mobile cranes. However, during hot rolling, certain crystallographic textures emerge, which can generate unfavorable mechanical properties or mechanical anisotropy. In order to investigate the role of the processing route and the effect of micro-alloying elements on the texture formation and its relationship to differences between different testing directions, four different ultra-high-strength steels were subjected to various quenching procedures. It was found that despite equiaxed prior austenite grains after re-austenitization, differences in the longitudinal and transverse directions remain. The extinction of a rolling texture after re-austenitization is dependent on the austenitization condition and the addition of micro-alloying elements. In particular, Nb promotes the formation of rolling texture components and prevents the extinction thereof even through intense austenitization treatments. However, remaining preferred orientations exhibit only little influence on the anisotropy of the mechanical properties.
机译:热机械加工的低碳钢的直接淬火是提高超高强度钢的强度和韧性的优选生产途径,从而提高了移动起重机的有效载荷 - 重量比。然而,在热轧期间,某些晶体纹理出现,可以产生不利的机械性能或机械各向异性。为了研究加工路线的作用和微合金化元素对纹理形成的影响及其与不同测试方向之间的差异的关系,对各种淬火程序进行四种不同的超高强度钢。发现,尽管在重新审于化之后,尽管在重新允许之后等于先前的奥氏体晶粒,但仍然存在纵向和横向的差异。再奥氏体化后的轧制质地的消灭取决于奥氏体化条件和添加微合金化元素。特别地,Nb促进了轧制纹理组分的形成,并通过强烈的奥氏体化处理来防止其消失。然而,剩余的优选取向对机械性能的各向异性影响很小。

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