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MECHANICS AND DYNAMICS OF HARD TURNING PROCESS

机译:硬转向过程的力学与动态

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摘要

In precision machining, due to the recent developments on the cutting tools, machine tool structural rigidity and improved CNC controllers, hard turning is an emerging process as an alternative to some of the grinding processes by providing reductions in costs and cycle-times. In industrial environments, hard turning is established for geometry features of parts with low to medium requirements on part quality. Better and deeper understanding of cutting forces, stresses and temperature fields, temperature gradients created during the machining are very critical for achieving highest quality products and high productivity in feasible cycle times. In order to enlarge the capability profile of the hard turning process, this paper introduces to prediction models of mechanical and thermal loads during turning of 51CrV4 with hardness of 68 HRC by CBN tool. The shear flow stress, shear and friction angles are determined from the orthogonal cutting tests. Cutting force coefficients are determined from orthogonal to oblique transformations. Cutting forces and surface profiles are predicted and compared with experimental measurements.
机译:在精密加工中,由于在切削工具,机械工具的结构刚性的最近发展和改进的CNC控制器,硬车削是一个新兴的过程通过提供在成本和周期时间的减​​少替代一些研磨过程。在工业环境中,建立硬盘的几何特征,部分质量低至中等要求。更好地更深入地了解切割力,应力和温度场,加工过程中产生的温度梯度对于实现最高质量的产品和可行的循环时间的高生产率非常重要。为了通过CBN刀具68 HRC的硬度51CrV4转弯期间放大硬车削过程中,本文介绍了机械和热负荷的预测模型的能力简档。剪切流应力,剪切和摩擦角由正交切削测试确定。切割力系数由正交到倾斜变换确定。与实验测量相比,预测切割力和表面轮廓。

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