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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The temperature field study on the three-dimensional surface moving heat source model in involute gear form grinding
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The temperature field study on the three-dimensional surface moving heat source model in involute gear form grinding

机译:渐开线齿轮磨削三维表面移动热源模型的温度场研究

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摘要

Form grinding is one of the most important finishing processes for obtaining high surface quality gears. Nevertheless, to avoid thermally induced burning and structural change poses a major challenge for this manufacturing technology. Based on the moving heat source model and the superposition principle of heat sources, a comprehensive analytical thermal model for analyzing the heat transfer mechanism of involute gear form grinding was derived. A three-dimensional distribution model of equivalent grinding heat source considering the non-linear distribution of tangential grinding force, grinding parameters, and heat partition ratio was proposed. The FEM (finite element method) simulation of the grinding temperature field was carried out to predict the grinding temperature field using a nested net heat flux equation. Research results have shown that the grinding temperature increases nonlinearly with the rolling angle increasing and the evident peak grinding zone temperature appearing near the tip of the tooth. Through the comparison with the previous experimental measurement results, it is found that the temperature distribution of analytical calculation and numerical simulation agrees well with the measured results.
机译:形式研磨是获得高表面质量齿轮的最重要的整理工艺之一。然而,为了避免热诱导的燃烧和结构变化对该制造技术构成了重大挑战。基于移动热源模型和热源的叠加原理,推导了一种综合分析热模型,用于分析渐开线齿轮型研磨的传热机理。提出了考虑切向研磨力,研磨参数和热分隔壁的非线性分布的等效研磨热源的三维分布模型。进行研磨温度场的FEM(有限元方法)模拟,以预测使用嵌套净热通量方程的研磨温度场。研究结果表明,磨削温度随着滚动角度的增加而增加,并且显着的峰值磨削区温度出现在牙齿尖端附近。通过与先前的实验测量结果进行比较,发现分析计算和数值模拟的温度分布与测量结果很好。

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