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Role of Steel Plate Thickness on the Residual Stress Formation and Cracking Behavior During Flame Cutting

机译:钢板厚度对火焰切割残余应力形成和开裂行为的作用

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摘要

Thick wear-resistant steel plates are utilized in challenging applications, which require a high hardness and toughness. However, utilization of the thick plates is problematic as they often have nonuniform mechanical properties along the thickness direction due to the manufacturing-induced segregations. In addition, the processing of thick plates commonly involves flame cutting, which causes several challenges. Flame cutting forms a heat-affected zone and generates high residual stresses during the cutting process. In the worst case, flame cutting causes cracking of the cut edge. The aim of this study is to investigate the role of plate thickness on the residual stress formation and cracking behavior when utilizing flame cutting. Residual stress profiles are measured by X-ray diffraction, plates and cut edges and are mechanically tested and characterized by electron microscopy. The results show that thicker plates generate more unfavorable residual stress state during flame cutting. Thick plates also contain segregations, which have decreased mechanical properties. The combination of high residual tensile stresses and segregations increase the risk of cracking during flame cutting. To prevent the cracking, the residual stresses should be lowered by lower cutting speeds and preheating. In addition, manufacturing practices should be aimed at lowering segregation formation in thick plates.
机译:厚耐磨钢板用于具有挑战性的应用,需要高硬度和韧性。然而,厚板的利用是有问题的,因为由于制造诱导的偏析,它们通常具有沿厚度方向的不均匀的机械性能。此外,厚板的加工通常涉及火焰切割,这导致了几个挑战。火焰切割形成热影响的区域,并在切割过程中产生高残余应力。在最坏的情况下,火焰切割导致切割边缘的开裂。本研究的目的是研究板厚在利用火焰切割时对残留应力形成和开裂行为的作用。残余应力分布通过X射线衍射,板和切割边缘测量,并且通过电子显微镜检查并表征。结果表明,在火焰切割期间,较厚的板在火焰过程中产生更不利的残余应力状态。厚板还含有偏析,其具有降低的机械性能。高残余拉伸应力和偏析的组合增加了火焰切割过程中裂化的风险。为了防止裂缝,通过较低的切削速度和预热来降低残余应力。此外,制造实践应旨在降低厚板中的隔离形成。

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