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Modeling of Deformation Processes for Conditions of Ultrasonic Frequency Impulse Impact on the Surface Layer of Metals and Alloys

机译:超声波频率脉冲条件对金属和合金表面层的变形过程建模

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The efficiency of applying electrophysical impacts in technological methods of machine part cutting to a great extent depends on the understanding of the processes forming the basis of these impacts. As a rule a specific nature of these processes is characterized by their high intensity, locality of the impact and an impulse mode. The understanding of a certain process is necessary both for its efficient use in technological processes and for the development of new technologies based on the combination with other electrophysical impacts. The paper presents the results of mathematical modeling of deformation processes under ultrasonic frequency impulse plastic impact of a deformer on the surface layer of metals and alloys. Based on the mathematical modeling of the process of ultrasonic deformation of materials, operating parameters of the impact defining the field of application of this method are found. Quantitative relationships between basic characteristics of the deformation process and operating parameters of an ultrasonic impact are established.
机译:在很大程度上在很大程度上施加技术方法的技术方法的效率取决于对形成这些冲击基础的过程的理解。通常,这些过程的特定性质的特征在于它们的高强度,冲击的局部性和脉冲模式。对某种过程的理解是在技术过程中有效使用和基于与其他电神法影响的组合的新技术的实现必要的。本文介绍了超声波频率脉冲型在金属和合金表面层的超声波频率脉冲撞击下变形过程的数学建模结果。基于材料超声波变形过程的数学建模,发现了定义该方法应用领域的影响的操作参数。建立了超声波变形过程基本特征与超声波冲击的操作参数之间的定量关系。

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