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Principles of elementary non-wave theory of field of ultrasonic transducers used for pulse-amplitude defectometry

机译:用于脉冲振幅缺陷测量的超声换能器的基本非波场原理

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With the exception of the symmetry of problems, fields, structures and boundaries, the asymmetry of conditions of field spreading is also important: in medium without a sound attenuation (perfect medium) and also in medium with its sound attenuation (real medium). ENTF is based on a common method of higher mathematics under initial conditions, eliminating a wave nature of processes of excitation, spreading and reflection of sound pulses. Therefore, the theory is called elementary. The direct problem of UST, solved usually using ADD-diagrams, is generally accepted to be called defectoscopy (work in the energy of field) and the inverse problem, for the solution of which the DDA-diagram has not yet been used, is called defectometry (work in the geometry of field).
机译:除了问题,场,结构和边界的对称性之外,场扩展条件的不对称性也很重要:在没有声音衰减的介质(完美介质)和在有声音衰减的介质(真实介质)中。 ENTF基于初始条件下的高等数学方法,消除了声脉冲的激发,扩散和反射过程的波动性质。因此,该理论被称为基础。 UST的直接问题通常使用ADD图解决,通常被认为是缺陷检查法(场功),而反问题(尚未使用DDA图的解决方案)被称为缺陷测量(在场几何中工作)。

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