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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Transmission of elastic stress through circular and elliptic cross sections of microstructural elements embedded in a matrix material
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Transmission of elastic stress through circular and elliptic cross sections of microstructural elements embedded in a matrix material

机译:通过嵌入基质材料中的微结构元件的圆形和椭圆形截面传递弹性应力

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摘要

With the use of contact stress theory and complex variable methods in two dimensions, the transmission of a compressive stress through a circular cross section of a small material particle is calculated in the infinite plane of material below the circular cross section. The circular cross section of the particle is embedded in and completely bonded to an infinite plane of matrix material. It is shown that part of the stress is transmitted with a dependence of 1/r, where r is a radial coordinate. Additionally, the stress is calculated in two dimensions for the interior of an ellipse that could model a cross section of a grain or particle. The boundary of the ellipse is loaded with the stress holding an elliptic kernel in place in an elastic matrix material after the kernel has undergone a small rotation under an applied tensile load. The resulting stresses are shown in contour plots for elliptic cross sections of varying shapes and orientations.
机译:利用二维接触应力理论和复杂变量方法,可以在圆形截面下方无限大的材料平面中计算压缩应力通过小材料颗粒的圆形截面的传递。粒子的圆形横截面嵌入并完全粘结到基质材料的无限平面中。结果表明,部分应力以1 / r的依赖性传递,其中r是径向坐标。此外,在椭圆内部二维地计算应力,该椭圆可以模拟晶粒或颗粒的横截面。在椭圆形的边界在施加的拉伸载荷下经历小旋转之后,椭圆形的边界将承受应力,该应力将椭圆形的内核保持在弹性基质材料中。在形状和方向不同的椭圆形横截面的等高线图中显示了所产生的应力。

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