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Comprehensive analysis of tribological factor influence on stress-strain and thermal state of workpiece during titanium alloys machining

机译:钛合金加工过程中工件应力 - 应变和热状态的综合分析

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The article describes how different friction coefficients under certain cutting conditions and parameters affect the formation of the stress-strain and thermal states of the product when titanium alloy machining. A new research methodology is used for the study. Firstly, in the initial data for simulation, each time a different declared coefficient of friction is proposed, and every such task of the cutting process modelling is solved for various cutting parameters. The second stage analyzes how these coefficients influence the stress-strain and thermodynamic state of the workpiece and tool during cutting, as well as the tool wear dynamics. In the third stage of the study, ways for ensuring these analytically-grounded tribological cutting conditions are proposed. The analysis of different wear criteria in the simulation models of titanium alloys cutting is carried out. Experimental studies confirm simulation results.
机译:本文介绍了在某些切割条件下不同的摩擦系数和参数影响产品的应力 - 应变和当钛合金加工时的热状态。 新的研究方法用于研究。 首先,在模拟的初始数据中,提出了各种不同声明的摩擦系数,并且为各种切割参数解决了切割过程建模的每一个任务。 第二阶段分析这些系数如何影响工件和工具在切割过程中的应力 - 应变和热力学状态,以及工具磨损动力学。 在研究的第三阶段,提出了确保这些分析接地的摩擦切削条件的方法。 进行了钛合金切割模拟模型中不同磨损标准的分析。 实验研究确认仿真结果。

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