ASSESSMENT OF THE IMPACT OF THE CONDITIONS OF THE DISK MICROSAMPLE FIXATION ON THE PUNCH TEST DIAGRAM, TAKING INTO ACCOUNT THE FRACTURE PROCESS (Eng)

R. Kravchuk
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Abstract

One of the key parameters, used for the current control of the equipment state to provide its reliable operation is mechanical characteristics of the construction materials, in particular, strength characteristics. The most correct method of their determination is distractive test for uni-axial tension of the samples, manufactured from the investigated materials. The cutting of a certain volume of the material, needed for the fabrication of the sample can be critical for the carrying capacity of the construction. That is why, the indirect methods of the mechanical characteristics determination are developed to minimize the volume of the material, used for samples manufacture. Small punch test can be refereed to these methods. As this method is not standardized, the conditions of the tests are chosen by the researchers at their discretion. The given research considers the impact of the selection of one of the parameters, namely, the clamping force, on the results of the study. Steel 45 was chosen as the model material. Numerical modeling was carried out without taking into account and taking into account sample clamping force, equaled 5, 7.5 and 10 kN. The value of the von Mises equivalent stress in the clamped zone of the sample did not exceed 264 MPa. To take into account the fracture process Gurson – Tvergaard – Needleman (GTN) model was used. The problems was simulated in the dynamic formulation, using the explicit integration scheme. Diagrams of disk microsample punching in the coordinates «load» – «deflection» at the given conditions of fixing is given. By the results of the study it was determined that the force of sample clamping does not influence greatly the punching diagram, that is why, to decrease the time, needed for the numerical calculations it can be neglected. In the course of the experimental tests it was recommended to select the clamping force of the sample so that to avoid plastic deformation of the sample in the area of the clamping.
考虑断裂过程的圆盘微样品固定条件对冲孔测试图的影响评估(英文版)
用于当前控制设备状态以提供其可靠运行的关键参数之一是建筑材料的机械特性,特别是强度特性。测定它们的最正确的方法是用所研究的材料制成的样品进行单轴拉伸的分散试验。切割样品制造所需的一定体积的材料对结构的承载能力至关重要。这就是为什么,机械特性测定的间接方法被开发,以尽量减少材料的体积,用于样品制造。小冲孔试验可参照这些方法。由于该方法没有标准化,测试条件由研究人员自行选择。本研究考虑了其中一个参数,即夹紧力的选择对研究结果的影响。钢45被选为模型材料。分别进行了不考虑和考虑试样夹紧力的数值模拟,分别为5、7.5和10 kN。试样夹紧区von Mises等效应力值不超过264 MPa。为考虑断裂过程,采用Gurson - Tvergaard - Needleman (GTN)模型。采用显式积分法对问题进行了动态模拟。给出了给定固定条件下圆盘微试样在“载荷”-“挠度”坐标下的冲孔图。研究结果表明,试样夹紧力对冲孔图的影响不大,为减少数值计算所需的时间,可以忽略夹紧力的影响。在试验过程中,建议选择试样的夹紧力,以避免试样在夹紧区域发生塑性变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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