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The Effect of the Changing State of Stress Around the Crack Tip on the Determination of Stress Intensity Factors by the Method of Caustics

机译:裂纹尖端周围应力变化的影响对焦腐蚀方法测定应力强度因子的测定

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The state of stress in the vicinity of the crack tip changes from plane strain at the tip to plane stress at a critical distance (about half the specimen thickness) from the tip through an intermediate region where the state of stress is three-dimensional. In the optical method of caustics, the caustic is the image of a circle on the specimen centered at the crack tip, and, therefore, yields information on the stress state along this circle. In the method conditions of plane stress are assumed along this circle. This condition imposes restrictions on the geometrical dimensions of the optical arrangement, specimen thickness, crack length and applied loads for the correct determination of stress intensity factors. In the present work the limits of applicability of the method of caustics are studied. The use of optically anisotropic materials is introduced to obtain a double caustic which provides the correct state of stress (plane strain, plane stress or three-dimensional) along the initial curve. When the state of stress is known the proper values of stress-optical constants can be used for the correct determination of stress intensity factors.
机译:裂缝尖端附近的应力状态从尖端的平面应变从尖端(大约一半的样品厚度)的平面应力从尖端通过中间区域从尖端的突出距离(约一半)的压力发生变化,其中应力状态是三维的。在刻变的光学方法中,刻录物是在裂纹尖端的标本上的圆圈的图像,因此,沿着该圆的应力状态产生信息。在该圆圈中假设平面应力的方法中。该条件对光学布置的几何尺寸,试样厚度,裂缝长度和施加的负载施加限制,用于正确测定应力强度因子。在本工作中,研究了苛性耐用方法的适用性。引入光学各向异性材料的使用以获得沿着初始曲线提供正确的应力(平面应变,平面应力或三维)的双苛性痕。当应力状态已知时,应力 - 光学常数的适当值可用于正确测定应力强度因子。

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