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The Stress and Strain Concentrations Associated with Two Interacting Holes in a Finite Thickness Elastic Plate Subjected to Tensile Stress

机译:在经过拉伸应力的有限厚度弹性板中的两个相互作用孔相关的应力和应变浓度

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The elastic stress and strain fields of a finite-thickness plate containing two interacting holes are systematically investigated using the finite element method. The maximum stress and strain concentrations occur on the mid plane only in the thin plates. They do not occur on the mid plane and their locations are different in the same plate for the thick plates. The values of the maximum stress and the strain concentration factor and their locations depend on the distance between the two holes and the plate thickness. The stress and the strain concentration factor are different, even if in an elastic state. The stress concentration factor and the strain concentration factor on the plate surface decrease rapidly with increasing thickness and becomes lower than the values corresponding to the plane stress state and the values of the mid plane. They are too low to reflect the overall stress concentrations as the plate thickness increases. The differences between the maximum value and the surface value of the stress concentration factor, the strain concentration factor increase rapidly and tend to their respective constant values with increasing plate thickness. These constant values depend on the distance between the two holes and the difference of the stress concentration factor is larger than that of the strain concentration factor in the same plate.
机译:使用有限元法系统地研究了包含两个相互作用孔的有限厚度板的弹性应力和应变场。在薄板中仅在中间平面上发生最大应力和应变浓度。它们在中间平面上不会发生,并且它们的位置在相同的板中为厚板。最大应力和应变浓度因子及其位置的值取决于两个孔和板厚度之间的距离。即使以弹性状态,压力和应变浓度因子也不同。压力浓度因子和板表面上的应变浓度因子随着厚度的增加而快速降低,并且变得低于与平面应力状态对应的值和中平面的值。随着板厚度的增加,它们太低而无法反映整体应力浓度。应力集中因子的最大值和表面值之间的差异,应变浓度因子迅速增加,并且倾向于具有增加的板厚度的各自的恒定值。这些恒定值取决于两个孔之间的距离和应力浓度因子的差异大于同一板中的应变浓度因子的差异。

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