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Rotary ultrasonic machining of hard-to-machine materials.

机译:旋转超声加工难加工材料。

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摘要

Titanium alloy is one of the most important materials used in major segments of industries such as aerospace, automobile, sporting goods, medical and chemical. Market survey has stated that the titanium shipment in the USA has increased significantly in last two decades, indicating its increased usage. Industries are always under tremendous pressure to meet the ever-increasing demand to lower cost and improve quality of the products manufactured from titanium alloy. Similar to titanium alloys, silicon carbide and dental ceramics are two important materials used in many applications.;Rotary ultrasonic machining (RUM) is a non-traditional machining process that combines the material removal mechanisms of diamond grinding and ultrasonic machining. It comprises of a tool mounted on a rotary spindle attached to a piezo-electric transducer to produce the rotary and ultrasonic motion. No study has been reported on RUM of titanium alloy, silicon carbide and dental ceramics.;The goal of this research was to provide new knowledge of machining these hard-tomachine materials with RUM for further improvements in the machining cost and surface quality. A thorough research has been conducted based on the feasibility study, effects of tool variables, effects of machining variables and wheel wear mechanisms while RUM of titanium alloy. The effects of machining variables (such as spindle speed, feedrate, ultrasonic vibration power) and tool variables (grit size, diamond grain concentration, bond type) have been studied on the output variables (such as cutting force, material removal rate, surface roughness, chipping size) and the wheel wear mechanisms for titanium alloy. Feasibility of machining silicon carbide and dental ceramics is also conducted along with a designed experimental study.
机译:钛合金是在航空航天,汽车,体育用品,医疗和化学等主要行业中使用的最重要的材料之一。市场调查表明,过去二十年来,美国的钛运输量显着增加,表明其使用量有所增加。为了满足日益增长的降低成本和提高钛合金产品质量的需求,工业总是承受着巨大的压力。与钛合金相似,碳化硅和牙科陶瓷是许多应用中使用的两种重要材料。旋转超声加工(RUM)是一种非传统的加工工艺,结合了金刚石磨削和超声加工的材料去除机理。它包括一个安装在旋转主轴上的工具,该主轴连接到压电换能器上以产生旋转运动和超声波运动。关于钛合金,碳化硅和牙科陶瓷的RUM的研究尚未见报道;该研究的目的是为使用RUM加工这些难加工的材料提供新的知识,以进一步提高加工成本和表面质量。根据可行性研究,刀具变量的影响,加工变量的影响以及车轮磨损机理以及钛合金的RUM进行了深入研究。研究了加工变量(例如主轴转速,进给速度,超声振动功率)和刀具变量(粒度,金刚石晶粒浓度,粘结类型)对输出变量(例如切削力,材料去除率,表面粗糙度)的影响。 ,碎裂尺寸)和钛合金的车轮磨损机理。还进行了机械加工碳化硅和牙科陶瓷的可行性以及设计的实验研究。

著录项

  • 作者

    Churi, Nikhil.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:25

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