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Determination of Optimal Conditions for Flat Grinding of 20 Kh Steel Workpieces

机译:20 kH钢工件平面磨削最佳条件的测定

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Flat peripheral grinding of 20 Kh steel, samples are studied. The authors propose a method of determining optimal conditions for grinding sample surfaces that guarantees obtaining the predefined quality requirements to the machined surface (surface roughness parameter Ra, the absence of grinding burns), while ensuring the maximum efficiency of the process. The mathematical models of the cutting force components reduced to the width of the sample, grinding ratio, and roughness of the machined surface (Ra parameter) are obtained by the method of full factorial experiment of the 24 type, where 4 is the number of factors. The input factors (grinding wheel hardness, depth of grinding, table feed speed, and run reduced to the width of the machined surface) are considered as the optimization parameters of the grinding process. The mathematical models of the output factors are used to limit the range of allowable values of the optimization parameters. The resulted efficiency is an objective function. The optimization of parameters in the range of allowable values is carried out with the view of ensuring maximum efficiency of the process.
机译:研究了20kH钢,样品的扁平外围磨削。作者提出了一种确定用于研磨样品表面的最佳条件的方法,该样品表面可以保证获得加工表面的预定义质量要求(表面粗糙度参数RA,没有研磨烧伤),同时确保该过程的最大效率。通过24型的完整因子实验的方法获得减少到样品,研磨比和加工表面(RA参数)的宽度的宽度的数学模型,其中4是因素的数量。输入因子(研磨轮硬度,研磨深度,表进料速度和运行减小到加工表面的宽度)被认为是研磨过程的优化参数。输出因子的数学模型用于限制优化参数的允许值范围。产生的效率是目标函数。通过确保该过程的最大效率的观点来执行允许值范围内的参数的优化。

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