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Modeling Impact Energy Transfer through Closed Chamber Filled with Fluid

机译:通过封闭室充满液体的冲击能量转移

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摘要

Different models of a hammering system with impact energy transfer in a closed chamber filled with fluid are analyzed. It is proved that the piston and the tool in the model can be represented by solid nondeformable bodies while the fluid-filled chamber by an inertialess elastic element. Based on the analyses, the forces in the fluid-filled chamber and at the tool-and-rock contact, as well as the impact energy transfer ratio are related with the chamber parameters and the rock-tool contact stiffness. The algorithm is proposed to calculate such system dynamics with regard to fluid leaks, variable viscosity and bulk modulus of elasticity.
机译:分析了在填充有流体的闭合室中具有冲击能量的锤击系统的不同模型。 事实证明,该模型中的活塞和工具可以由固体不形式的体表示,而惯性弹性元件通过填充的腔室。 基于分析,流体填充室中的力和工具 - 岩石接触,以及冲击能量传递比与腔室参数和岩石工具接触刚度有关。 提出了该算法以计算出在流体泄漏,可变粘度和体积弹性模量方面的这种系统动态。

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