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Relationship between contact stiffness, contact depth, and mechanical properties for indentation in linear viscoelastic solids using axisymmetric indenters

机译:使用轴对称压头在线性粘弹性固体中压痕的接触刚度,接触深度和机械性能之间的关系

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摘要

We derive a relationship between the initial unloading slope, contact depth, and the instantaneous relaxation modulus for indentation in linear viscoelastic solids by a rigid indenter with an arbitrary axisymmetric smooth profile. Although the same expression is well known for indentation in elastic and in elastic–plastic solids, we show that it is also true for indentation in linear viscoelastic solids, provided that the unloading rate is sufficiently fast. Finite element calculations are used to illustrate the relationship for indentation using conical and spherical indenters. These results help provide a sound basis for using the relationship for determining properties of viscoelastic solids using micro- and nano-indentation techniques. Copyright © 2005 John Wiley & Sons, Ltd.
机译:我们推导了初始卸载斜率,接触深度和通过具有任意轴对称光滑轮廓的刚性压头在线性粘弹性固体中压痕的瞬时松弛模量之间的关系。尽管对于弹性和弹塑性固体中的压痕来说,相同的表达式是众所周知的,但我们证明,对于线性粘弹性固体中的压痕,只要卸载速率足够快,也适用。有限元计算用于说明使用锥形和球形压头的压痕关系。这些结果为使用该关系通过微压痕和纳米压痕技术确定粘弹性固体的性质提供了坚实的基础。版权所有©2005 John Wiley&Sons,Ltd.

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