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The Effect of Surface Stresses on the Critical Debonding Stress Around Nanoparticles

机译:表面应力对纳米颗粒周围临界剥离应力的影响

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摘要

With the aid of an energy analysis and the surface elasticity theory, this work provides a closed form solution for the critical debonding stress of a rigid nanoparticle embedded in an elastic matrix subjected to a remote hydrostatic stress. It is proved that the debonding stress depends on the particle radius, the matrix elastic properties and the fracture energy per unit surface. The solution allows quantifying the effects of surface elastic constants, also showing that the smaller the particle size the more significant those effects are.
机译:借助能量分析和表面弹性理论,这项工作为封闭的纳米颗粒的临界脱粘应力提供了一种封闭形式的解决方案,该刚性纳米颗粒嵌入在承受远距离静水压力的弹性基质中。事实证明,剥离应力取决于颗粒半径,基体弹性和单位表面的断裂能。该解决方案可以量化表面弹性常数的影响,还表明粒径越小,这些影响越显着。

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