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On the realization of the bulk modulus bounds for two-phase viscoelastic composites

机译:关于两相粘弹性复合材料体积模量界限的实现

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摘要

Materials with good vibration damping properties and high stiffness are of great industrial interest. In this paper the bounds for viscoelastic composites are investigated and material microstructures that realize the upper bound are obtained by topology optimization. These viscoelastic composites can be realized by additive manufacturing technologies followed by an infiltration process. Viscoelastic composites consisting of a relatively stiff elastic phase, e.g. steel, and a relatively lossy viscoelastic phase, e.g. silicone rubber, have non-connected stiff regions when optimized for maximum damping. In order to ensure manufacturability of such composites the connectivity of the matrix is ensured by imposing a conductivity constraint and the influence on the bounds is discussed. © 2013 Elsevier Ltd. All rights reserved.
机译:具有良好的减振性能和高刚度的材料具有很大的工业价值。本文研究了粘弹性复合材料的边界,并通过拓扑优化获得了实现该上限的材料微观结构。这些粘弹性复合材料可以通过增材制造技术以及随后的渗透工艺来实现。粘弹性复合材料,由相对较硬的弹性相组成,例如钢和相对有损耗的粘弹性相,例如硅橡胶经过优化以获得最大阻尼时,具有未连接的刚性区域。为了确保这种复合材料的可制造性,通过施加电导率约束来确保矩阵的连通性,并讨论了对边界的影响。 ©2013 ElsevierLtd。保留所有权利。

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