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Research on Design and Simulation of Biaxial Tensile-Bending Complex Mechanical Performance Test Apparatus

机译:双轴拉伸弯曲复杂力学性能测试仪的设计与仿真研究

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In order to realize a micro-mechanic performance test of biaxial tensile-bending-combined loading and solve the problem of incompatibility of test apparatus and observation apparatus, novel biaxial-combined tensile-bending micro-mechanical performance test apparatus was designed. The working principle and major functions of key constituent parts of test apparatus, including the servo drive unit, clamping unit and test system, were introduced. Based on the finite element method, biaxial tensile and tension-bending-combined mechanical performances of the test-piece were studied as guidance to learn the distribution of elastic deformation and plastic deformation of all sites of the test-piece and to better plan test regions. Finally, this test apparatus was used to conduct a biaxial tensile test under different pre-bending loading and a tensile test at different rates; the image of the fracture of the test-piece was acquired by a scanning electron microscope and analyzed. It was indicated that as the pre-bending force rises, the elastic deformation phase would gradually shorten and the slope of the elastic deformation phase curve would slightly rise so that a yield limit would appear ahead of time. Bending speed could exert a positive and beneficial influence on tensile strength but weaken fracture elongation. If bending speed is appropriately raised, more ideal anti-tensile strength could be obtained, but fracture elongation would decline.
机译:为了实现双轴拉伸弯曲联合加载的微机械性能测试,解决测试装置与观测装置不兼容的问题,设计了新型的双轴拉伸弯曲联合微机械性能测试装置。介绍了伺服驱动单元,夹紧单元和测试系统等测试设备关键组成部分的工作原理和主要功能。基于有限元方法,研究了试件的双轴拉伸和拉伸-弯曲结合力学性能,以指导了解试件所有部位的弹性变形和塑性变形的分布,并更好地规划试验区域。最后,该测试设备用于在不同的预弯曲载荷下进行双轴拉伸试验,并在不同的速率下进行拉伸试验。用扫描型电子显微镜得到试验片的断裂图像,并进行分析。结果表明,随着预弯力的增大,弹性变形相逐渐减小,弹性变形相曲线的斜率略有上升,从而导致屈服极限提前出现。弯曲速度可以对拉伸强度产生积极和有益的影响,但会削弱断裂伸长率。如果适当提高弯曲速度,则可以获得更理想的抗拉强度,但是断裂伸长率将下降。

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