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Studies on the influence of embossing on the mechanical properties of high-strength sheet metal

机译:压花对高强度金属板力学性能影响的研究

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In sheet metal forming, the embossing technique can be used to strengthen sheet metal materials and to improve their properties. Increase in strength is achieved by strain hardening and residual stresses induced as a result of the embossing process, which locally influence the mechanical properties of the sheet metal blanks such as yield and tensile stress. Through specifically inducing these effects into a blank, the process window of a deep drawing process can be enlarged and the operating performance of sheet metal components under quasi-static and cyclic loading can be significantly improved. In particular, this relates to the fatigue strength and characteristics of these components under different operating conditions. In the study presented in this paper, dual-phase DP600 grade steel sheets having a thickness of 1.2 mm were subjected to near-surface unilateral embossing. Here the influence of different embossing patterns and embossing depths on the stresses and strains acting in the sheet metal was investigated. In order to evaluate the effects of the focused embossing parameters on the mechanical properties, forming behavior and influence of locally induced pre-strengthening of sheet metal, tensile tests were conducted with embossed sheet specimens. An essential finding of this study is that the increase in yield strength is significantly dependent on the distances between individual embossings.
机译:在金属板形成中,压花技术可用于加强金属板材并改善其性质。通过压花工艺产生的应变硬化和残余应力来实现强度的增加,该压花工艺局部地影响诸如产量和拉应力的金属板坯的机械性能。通过特别地将这些效果诱导成空白,可以扩大深层拉伸过程的过程窗口,并且可以显着改善在准静态和循环负载下的金属板组件的操作性能。特别地,这涉及在不同的操作条件下这些组分的疲劳强度和特性。在本文提出的研究中,厚度为1.2mm的双相DP600级钢板受到近表面单侧压花。这里研究了不同压花图案和压花深度对在金属板中作用作用的应力和菌株的影响。为了评估聚焦压花参数对机械性能的影响,用压花片样品进行拉伸试验的局部诱导的局部诱导的局部诱导的预加强的影响。本研究的重要发现是产量强度的增加显着取决于个体压印之间的距离。

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