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A Study On the Stability Analysis According to Hinge Condition of Micro Stage for Micro Cutting Machine

机译:微型切割机微台铰链条件下的稳定性分析研究

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摘要

Recently, the world is preparing for new revolution, called, 'IT(Information Technology), NT(Nano-Technology), and BT(Bio-Technology).' NT can be applied to various fields such as semiconductor-micro technology. Ultra precision processing is required for NT in the field of mechanical engineering. Because of radical advancement of electronic and photonics industry, necessity of ultra precision processing is on the increase for the manufacture of various kernel parts. In this paper, stability of ultra precision cutting unit is investigated and this unit is the kernel unit in ultra precision processing machine. According to alteration of shape and material of hinge, stability investigation is performed. Hinge shapes of micro stage in UPCU (Ultra Precision Cutting Unit) are designed in two types, where, hinge shapes are composed of round and rectangularity. Elasticity and strength are analyzed on micro stage with respect to hinge shapes by FE analysis. The micro stage in ultra precision processing machine has to keep hinge shape under cutting condition with 3-component force (cutting component, axial component, and radial component) and to reduce modification against cutting force. Then we investigated its elasticity and strength under these conditions. The material of the micro stage is generally used for duralumin with small thermal deformation. Since the elasticity and the strength quiet become important, the stability of the micro stage is investigated. Used materials are composed of aluminum of low strength and cooper with medium strength and spring steel with high strength. Through this stability investigation, trials and errors are reduced in design and manufacture at the same time, and we are accumulated foundation data for a unit control.
机译:最近,世界正在为称为“ IT(信息技术),NT(纳米技术)和BT(生物技术)”的新革命做准备。 NT可以应用于各种领域,例如半导体微技术。机械工程领域的NT需要超精密加工。由于电子和光子工业的根本发展,制造各种内核零件的超精密加工的必要性正在增加。本文研究了超精密切削单元的稳定性,该单元是超精密加工机的核心单元。根据铰链形状和材料的变化,进行稳定性研究。 UPCU(超精密切割单元)中的微型平台的铰链形状设计为两种类型,其中铰链形状由圆形和矩形组成。通过有限元分析,就铰链形状在微观阶段分析了弹性和强度。超精密加工机中的微型平台必须在切削条件下以三分量力(切削分量,轴向分量和径向分量)保持铰链形状,并减少针对切削力的变形。然后我们研究了它们在这些条件下的弹性和强度。微型台的材料通常用于硬质合金,热变形小。由于弹性和强度安静性变得重要,因此研究了微台的稳定性。用过的材料由低强度的铝和中等强度的铜和高强度的弹簧钢组成。通过这种稳定性调查,可以减少设计和制造过程中的反复试验,并为单元控制积累基础数据。

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