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Simulation of stress fields in brazed joints from dissimilar materials

机译:异种材料钎焊接头的应力场模拟

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Finite element method was used to study the geometry and combination of properties on the stress fields in two- and three-layer joints of bar type. It is found that longitudinal stresses have maximal values on the interface, maximal stresses do not depend on the dimensions and extent of the joints and are quite accurately defined by the equations based on the plane section hypothesis. Transverse stresses are concentrated on the free (side) surface in the immediate vicinity of the joint surface. Reduction of the modulus of elasticity of at least one of the materials being joined, is a quite effective method of lowering the level of stresses in the entire component. Maximal tangential stresses depend to the greatest degree on the thickness of the intermediate layer and can be reduced by up to two time.
机译:使用有限元方法研究了杆式两层和三层接头的应力场的几何形状和特性组合。发现纵向应力在界面上具有最大值,最大应力不取决于接头的尺寸和程度,并且由基于平面截面假设的方程式非常准确地定义。横向应力集中在紧邻关节表面的自由(侧)表面上。降低至少一种被连接材料的弹性模量是降低整个组件中应力水平的一种非常有效的方法。最大切向应力最大程度地取决于中间层的厚度,并且最多可减少两次。

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