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Finite element analysis and process parameters optimization of ultrasonic vibration assisted turning (UVT)

机译:超声波振动辅助转动(UVT)的有限元分析和工艺参数优化

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In recent years, there have been many modern engineering materials introduced recently which are hard, brittle and difficult to machine. These materials are very difficult to machine with conventional turning methods. Ultrasonic assisted turning (UAT) is a new non-conventional technique, used to remove an unwanted material to produce a desired product. Ultrasonically assisted turning (UAT) is an advanced machining technique, where a high frequency of vibration (frequency f≈20±0.5 kHz, amplitude around a ≈ 20 μm) is superimposed on the movement of a cutting tool. In this method, high frequency electrical energy is converted into mechanical vibrations via a transducer or booster combination, which are transmitted through a horn or tool assembly. An ultrasonic vibratory tool (UVT) designed and analyzed using ANSYS~R (one of the FE code) for the calculation of its natural frequency and working amplitude of vibration. Taguchi with TOPSIS method is used to optimize both cutting force and surface roughness to find the best possible machining parameters under the used experimental working condition in UAT.
机译:近年来,最近介绍了许多现代工程材料,这是艰难的,脆弱而难以机器。这些材料非常难以通过传统转动方法机器。超声波辅助转动(UAT)是一种新的非常规技术,用于去除不需要的材料以产生所需的产品。超声辅助转动(UAT)是一种先进的加工技术,其中高频振动(频率为0×0.5kHz,左左≈20μm)叠加在切削工具的运动上。在该方法中,高频电能通过换能器或增压器组合转换成机械振动,换能器通过喇叭或工具组件传递。使用ANSYS〜R(FE代码之一)设计和分析的超声波振动工具(UVT),以计算其自然频率和振动的工作幅度。 TAGUCHI具有TOPSIS方法,用于优化切割力和表面粗糙度,以找到UAT中使用的实验工作状态下的最佳加工参数。

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