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Investigation of the processes of the acoustic apparatus with the processing technological environment power interaction

机译:声学设备与加工技术环境动力相互作用的过程研究

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The physical picture of the processes of the apparatus with the processing technological environment interaction is determined, the change in its rheological properties were taken into account. The effectiveness of cavitation effects from the initial to the final processing stage is caused by the contact pressure and the speed of its propagation. A lot of power characteristics and parameters were considered for the effective implementation of the cavitation process. On the basis of these parameters, the energy of the process is accumulated by expanding the bubble from the initial balanced to its maximum radius. The basis of accumulation is the tensile forces in the phase of desiccation of the acoustic wave. The graphs of the contact pressure dependence on the key parameters of the process and the determination of the regularity of its change are made. The modes and parameters for leakage of energy-efficient acoustic process of different environments processing were proposed. The directions of of research results application and their further development were determined.
机译:确定了与加工技术环境相互作用的设备过程的物理图景,并考虑了其流变性的变化。从初始到最终加工阶段的空化效果的有效性是由接触压力及其传播速度引起的。为了有效地执行空化过程,考虑了许多功率特性和参数。基于这些参数,通过将气泡从初始平衡状态扩展到其最大半径来积累过程的能量。累积的基础是声波干燥阶段的张力。制作了取决于过程关键参数的接触压力曲线图,并确定了其变化规律。提出了不同环境处理过程中高能效声学过程泄漏的模式和参数。确定了研究成果应用的方向及其进一步发展。

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