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Influence of the Constitutive Contact Law on the Anisotropic Material Parameters of Sheet-Layered Lamination Stacks

机译:构成接触法对片层层叠层叠层各向异性材料参数的影响

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The specific design of components like rotor and stator as sheet-layered lamination stacks results in a structural behavior that is heavily dependent on the sheet interactions on the microscale. Due to the manufacturing process, these thin laminations may be just stacked and held together e.g. by welding or clamps, such that frictional contact of rough surfaces between single sheets is taking place and significantly affects the overall deformation behavior. Here, the elastic anisotropic, more precisely transversely isotropic, material parameters describing these lamination stacks are identified with the help of the homogenization taking efficiently care of the microstructure. For this purpose, different constitutive contact laws in normal direction capturing the sheet interactions by a penalty formulation and their effect on the macroscopic quantities are presented to emphasize the importance of this model parameter. Furthermore, it is shown that the derived stress-strain relation is identical to results of a numerical homogenization, where a representative volume element is simulated by the Finite-Element method incorporating Zero-Thickness elements for the contact simulation. The numerical results are finally compared to experiments showing a good accordance.
机译:像片层层叠堆叠的转子和定子等组件的具体设计导致结构行为,其严重依赖于微观尺寸上的纸张相互作用。由于制造工艺,这些薄叠层可以堆叠并保持在一起。通过焊接或夹具,使得单片之间的粗糙表面的摩擦接触正在发生并且显着影响整体变形行为。这里,利用均质化的均质化以有效地照顾微观结构,鉴定了描述这些层叠堆叠的弹性各向异性,更精确的各向同性的材料参数。为此目的,提出了正常方向上的不同组成型接触定律捕获惩罚制剂的纸张相互作用及其对宏观量的影响,以强调该模型参数的重要性。此外,示出了导出的应力 - 应变关系与数值均匀化的结果相同,其中通过结合用于接触仿真的零厚度元件的有限元方法模拟代表性体积元件。最终将数值结果与显示良好的实验相比。

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