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STABILITY AND VIBRATION SIGNAL ANALYSIS IN HARD TURNING

机译:硬盘上的稳定性和振动信号分析

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The machining of hardened materials has attracted a great interest as an alternative to conventional grinding processes. Also, the machining of hardened materials without coolant offers many possible benefits such as lowered costs, environmental friendly production and better surface integrity. Hard turning applications have been remaining slow due to the existence of surface damage such as chatter marks. Prediction of stable cutting regions is a critical requirement for hard turning operations. The chatter marks on a machined component surface could be found only after machining. This postprocess scenario imposes a potential danger to subsequent product performance such as fatigue life. Therefore, real-time monitoring of hard turning operation has significant economical and durability importance. Hard turning creates high pulsating pressures on the insert seat and shim. The shim acts as a shock absorber for the insert and workpiece. The shim protects both insert and tool holder from damage due to high cutting forces. In this research, the shim material is replaced with different damping materials. Also in this study an attempt is made to develop a chatter model for predicting chatter stability conditions in hard turning. A linear model is developed and stability analysis based on Tlusty and Polacek mode-coupling theory is used to determine the critical stability parameters. To validate the model a series of experiments have been carried out to determine the stability limits. The improvement in quality of surface finish is investigated by real time observations using the vibration data collector. The experimental results show that the surface finish of the workpiece is significantly improved after replacing Carbide shim with constrained layer damping and Poly tetra Fluoro Ethylene coated Brass shim.
机译:硬化材料的加工引起了常规研磨过程的替代品的兴趣。此外,没有冷却剂的硬化材料的加工提供了许多可能的益处,例如降低成本,环保生产和表面完整性更好。由于诸如喋喋不休标记的表面损坏,硬转向应用仍然缓慢。稳定切割区域的预测是硬转动操作的关键要求。机加工组件表面上的颤音标记只能在加工后找到。这种后处理场景对随后的产品性能(如疲劳寿命)施加了潜在的危险。因此,对硬车削操作的实时监测具有显着的经济性和耐用性。硬盘在插入座和垫片上产生高脉动压力。垫片充当插入件和工件的减震器。垫片通过高切割力造成损伤,垫片保护刀片和刀架。在本研究中,垫片材料被不同的阻尼材料代替。同样在该研究中,尝试开发一种用于预测硬转动中的颤动稳定条件的抗抖动模型。开发了线性模型,基于Tlusty和Polacek模式耦合理论的开发和稳定性分析用于确定关键稳定性参数。为了验证模型,已经进行了一系列实验以确定稳定性限制。通过使用振动数据收集器的实时观察来研究表面光洁度质量的提高。实验结果表明,用受约束层阻尼和聚四氟乙烯涂覆的黄铜垫片代替碳化物垫片后,工件的表面光洁度显着提高。

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