首页> 外文期刊>Journal of the Mechanics and Physics of Solids >The energy-release rate and 'self-force' of dynamically expanding spherical and plane inclusion boundaries with dilatational eigenstrain
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The energy-release rate and 'self-force' of dynamically expanding spherical and plane inclusion boundaries with dilatational eigenstrain

机译:具有膨胀特征应变的动态扩展球形和平面包含边界的能量释放速率和“自力”

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In the context of the linear theory of elasticity with eigenstrains. the radiated field including inertia effects of a spherical inclusion with dilatational eigenstrain radially expanding is obtained on the basis of the dynamic Green's function, and one of the half-space inclusion boundary (with dilatational eigenstrain) moving from rest in general subsonic motion is obtained by a limiting process from the spherically expanding inclusion as the radius tends to infinity while the eigenstrain remains constrained, and this is the minimum energy solution. The global energy-release rate required to move the plane inclusion boundary and to create an incremental region of eigenstrain is defined analogously to the one for moving cracks and dislocations and represents the mechanical rate of work needed to be provide for the expansion of the inclusion. The calculated value, which is the "self-force" of the expanding inclusion, has a static component plus a dynamic one depending only on the current value of the velocity, while in the case of the spherical boundary, there is an additional contribution accounting for the jump in the strain at the farthest part at the back of the inclusion having the time to reach the front boundary, thus making the dynamic "self-force" history dependent.
机译:在本征弹性线性理论的背景下。在动态格林函数的基础上,得到了具有扩张本征径向扩展的球形夹杂物的包括惯性效应在内的辐射场,并获得了在一般亚音速运动中从静止运动的半空间夹杂边界(具有扩张本征应变)的其中之一。由于半径趋于无穷大,而本征应变仍然受约束,因此球形扩展夹杂物的限制过程是有限的,这是最小的能量解。定义移动平面夹杂物边界并创建特征应变增量区域所需的总能量释放速率,类似于移动裂纹和位错所需的总能量释放速率,它表示为扩展夹杂物所需的机械功速率。计算值是膨胀夹杂物的“自力”,它有一个静态分量加一个动态分量,仅取决于速度的当前值,而在球面边界的情况下,还有一个额外的贡献说明因为夹杂物后面最远部分的应变跳跃有时间到达前边界,因此使动态“自力”历史依赖。

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