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Sample edge effects on tensile properties and sheet formability

机译:样品边缘对拉伸性能和片材成形性的影响

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It is well known that the condition of the edge, whether sheared or milled, can affect the results in edge formability tests (i.e. a hole expansion test). In the current investigation, two experimental studies were performed to evaluate the effects of edge condition on the results of tensile tests and a laboratory formability test for sheet steels. The first study evaluated the tensile properties of a QP980 steel with samples prepared by four different machining methods: wire electro-discharge machine (EDM); mechanical milling; laser cutting; and waterjet cutting. It was found that the EDM and milled samples produced statistically similar values for yield strength, ultimate tensile strength, uniform elongation and total elongation. The yield strength and tensile strength from samples prepared by laser cutting were statistically different. Water jet cutting produced statistically different values for almost all four properties when compared to the EDM and milled samples. In the second study a DP600 steel was subjected to an angular stretch bend formability test with samples prepared by either shearing or milling. It was found that the sheared samples required higher forces but smaller displacements to reach the formability limit. Fracture for the sheared samples initiated on the edge of the sample whereas for the milled sample necking and fracture initiated in the center of the sample, close to the plane-strain condition. Results from both of these studies clearly show the importance of the edge condition on reported mechanical properties and on the formability of the sheet.
机译:众所周知,边缘的条件,无论是剪切还是研磨,都会影响边缘可成型性测试的结果(即孔膨胀试验)。在目前的研究中,进行了两项实验研究,以评估边缘条件对拉伸试验结果的影响及片状钢的实验室可成型性试验。第一研究评价QP980钢的拉伸性能与四种不同加工方法制备的样品:电线电放电机(EDM);机械铣削;激光切割;和水射精切割。发现EDM和研磨样品产生统计上类似的屈服强度,最终拉伸强度,均匀伸长率和总伸长率。通过激光切割制备的样品的屈服强度和拉伸强度统计学不同。与EDM和研磨的样品相比,水射流切割在几乎所有四种性质上产生统计学不同的值。在第二研究中,将DP600钢进行了角拉伸弯曲成形性测试,用通过剪切或研磨制备的样品。发现剪切样品需要较高的力但较小的位移以达到可成形性极限。剪切样品的断裂在样品的边缘上发起,而在样品中心在样品中心发起的碾碎样品和断裂,接近平面 - 应变条件。这两项研究的结果清楚地表明了边缘条件对报告的机械性能和片材的成形性的重要性。

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