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Modeling of Non-Stationary Processes When Cutting Hard-to-Process Materials

机译:切割难以处理材料时的非平稳过程建模

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In the conditions of high-speed processing of parts of complex configuration, with a large end and longitudinal length, from hard-to-work steels and alloys, it is difficult to ensure the wear resistance of the cutting tool in the aisles of one technological passage. To ensure the appropriate quality indicators of the surface layer, it is impossible to replace a worn-out cutting tool. In connection with the above, the problem of ensuring the operability (wear resistance) of the cutting tool is acute. The results of theoretical and experimental studies of contact phenomena in blade cutting based on the thermodynamics of non – equilibrium processes and from the standpoint of self-organization of the tribosystem are presented. the developed thermodynamic model of blade processing with variable cutting modes (non-stationary) allows to minimize the wear of the cutting tool and generally increase production efficiency by accelerating the drive of the main movement of the metal-cutting machine.
机译:在高速复杂的配置的部分的加工,具有大的端部和纵向长度的条件下,从难以工作钢和合金,则难以确保一个技术的过道的切削工具的耐磨损性通道。为了确保表面层的适当质量指标,它是不可能替换磨损的切削工具。在与上述连接,确保切削工具的可操作性(耐磨损性)的问题是严重。的接触现象的理论和实验研究,在基于非的热力学刀片切割的结果 - 平衡过程,并从摩擦系统的自组织的观点来看,被呈现。叶片处理的具有可变切割模式(非静止的)的开发热力学模型允许最小化切削工具的磨损并且通常通过加速金属切削机的主要运动的驱动提高生产效率。

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