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含负刚度夹杂复合材料中的极端阻尼。

Extreme damping in composite materials with negative-stiffness inclusions.

作者信息

Lakes R S, Lee T, Bersie A, Wang Y C

机构信息

Department of Engineering Physics, University of Wisconsin-Madison, Wisconsin 53706-1687, USA.

出版信息

Nature. 2001 Mar 29;410(6828):565-7. doi: 10.1038/35069035.

Abstract

When a force deforms an elastic object, practical experience suggests that the resulting displacement will be in the same direction as the force. This property is known as positive stiffness. Less familiar is the concept of negative stiffness, where the deforming force and the resulting displacement are in opposite directions. (Negative stiffness is distinct from negative Poisson's ratio, which refers to the occurrence of lateral expansion upon stretching an object.) Negative stiffness can occur, for example, when the deforming object has stored (or is supplied with) energy. This property is usually unstable, but it has been shown theoretically that inclusions of negative stiffness can be stabilized within a positive-stiffness matrix. Here we describe the experimental realization of this composite approach by embedding negative-stiffness inclusions of ferroelastic vanadium dioxide in a pure tin matrix. The resulting composites exhibit extreme mechanical damping and large anomalies in stiffness, as a consequence of the high local strains that result from the inclusions deforming more than the composite as a whole. Moreover, for certain temperature ranges, the negative-stiffness inclusions are more effective than diamond inclusions for increasing the overall composite stiffness. We expect that such composites could be useful as high damping materials, as stiff structural elements or for actuator-type applications.

摘要

当一个力使弹性物体发生形变时,实际经验表明,产生的位移将与力的方向相同。这种特性被称为正刚度。负刚度的概念则不太为人所熟知,即变形力与产生的位移方向相反。(负刚度与负泊松比不同,负泊松比是指物体在拉伸时发生横向膨胀的情况。)例如,当变形物体储存了(或被提供了)能量时,就会出现负刚度。这种特性通常是不稳定的,但理论上已经表明,负刚度夹杂物可以在正刚度基体中实现稳定。在这里,我们描述了通过在纯锡基体中嵌入铁弹性二氧化钒的负刚度夹杂物来实现这种复合方法的实验过程。由于夹杂物的变形程度超过了整个复合材料,从而产生了高局部应变,所得到的复合材料表现出极高的机械阻尼和刚度的大幅异常。此外,在特定温度范围内,负刚度夹杂物在提高复合材料整体刚度方面比金刚石夹杂物更有效。我们预计,这类复合材料可用作高阻尼材料、刚性结构元件或用于执行器类型的应用。

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