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Propagation of sound waves in stressed elasto-plastic material

机译:声波在应力弹塑性材料中的传播

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Acoustoelasticity approach is a method of non-destructive testing and it is based upon the theory of propagation of ultrasonic longitudinal and transverse waves of different polarization in solids. This approach is able to uniquely determine the value of the principal stress in the case of no plastic deformation. An elastoplastic material with hardening is taken and the problem of propagation of a plane acoustic wave in a homogeneous prismatic elastic-plastic body that is uniaxially prestressed in the direction perpendicular to the wave propagation direction is solved. The sound velocities for the transverse and longitudinal waves are obtained for different approximations in terms of the first and second order of smallness. A strong dependence of the velocities from the hardening factor and component of the deviatoric stress tensor was detected. The study provides a number of closed-form expressions required for solving the practical problem of technical diagnostics of structures exposing plasticity.
机译:声弹性方法是一种无损检测方法,它基于固体中不同极化的超声波纵向和横向波的传播理论。在没有塑性变形的情况下,这种方法能够唯一确定主应力的值。采取了一种具有硬化作用的弹塑性材料,并解决了平面声波在垂直于波传播方向的方向上被单轴预应力的均匀棱柱形弹塑性体内传播的问题。对于第一阶和第二阶小阶,对于不同的近似值,可以获得横波和纵波的声速。检测到速度强烈依赖于硬化因子和偏应力张量的分量。该研究提供了解决封闭结构可塑性暴露技术诊断中的实际问题所需的许多封闭形式的表达式。

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