首页> 外文会议>ASME international mechanical engineering congress and exposition >A SEMI-ANALYTICAL SOLUTION METHOD FOR THE ADHESIVE CONTACT BETWEEN A RIGID PUNCH AND MULTI-LAYERED FUNCTIONALLY GRADED MATERIAL
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A SEMI-ANALYTICAL SOLUTION METHOD FOR THE ADHESIVE CONTACT BETWEEN A RIGID PUNCH AND MULTI-LAYERED FUNCTIONALLY GRADED MATERIAL

机译:刚性冲头与多层功能梯度材料间胶粘接触的半解析解方法

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The current paper proposes a semi-analytical solution method which predicts both the sub-surface stress fields and pressures that result from adhesive contact between a multi- layered functionally graded material (FGM) and a rigid punch. The FGM is deemed to consist of a homogeneously elastic coating and substrate joined together by a transition layer whose shear modulus depends on the depth coordinate in some predetermined way. It is further assumed that the FGM is in a state of plane strain so that we may perform a two-dimensional analysis. We present analytical solutions for the horizontal and vertical displacements within the solid which hold when the applied surface pressure is known and then discuss how we may use these solutions to solve the contact problem. A selection of numerical results are then presented using this model and it is found that the algorithm proposed in this work is both accurate and computationally cheap to use.
机译:当前的论文提出了一种半解析解方法,该方法可以预测地下应力场和多层功能梯度材料(FGM)与刚性冲头之间的粘合剂接触所产生的压力。认为FGM由均质弹性涂层和基底组成,该基底和基底通过过渡层结合在一起,该过渡层的剪切模量以某种预定方式取决于深度坐标。进一步假设FGM处于平面应变状态,因此我们可以执行二维分析。我们提供了固体中水平和垂直位移的解析解,当已知施加的表面压力时,解析力将保持不变,然后讨论如何使用这些解来解决接触问题。然后使用该模型给出了数值结果的选择,并且发现在这项工作中提出的算法既准确又使用起来便宜。

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