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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Finite element analysis of burr formation and an automatic online micro-deburring method in precise end-face grinding process
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Finite element analysis of burr formation and an automatic online micro-deburring method in precise end-face grinding process

机译:精密末端磨削过程中毛刺形成的有限元分析及自动在线微量去毛刺法

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摘要

A new approach is presented in this article for modeling and analysis of precise end-face grinding burr formation. The aim of this approach is to develop an automatic online deburring method that utilizes a precision motion control mechanism and effective deburring tools. Servo valve cores widely used in aerospace industry were employed as the workpiece in this study. After precision external grinding process, as a rule, the way of end-face grinding is adopted to get qualified working edges; the precision of these edges are generally required to be micron level or higher. However, after end-face grinding, the outside circle of the working edges will have burrs whose heights range from a few to dozens of microns, and the manual offline burr removal method currently adopted is not only uneasy to control accuracy but also easy for the working edges of the workpiece to lose its integrity and lead to a high rejection rate. In this article, the burr modeling and analysis procedure were used to get the corresponding formation mechanism of burr, and the online precision burr removal equipment was designed reasonably. Therefore, the effective removal of arising micro-burr from end-face grinding and the accuracy of the working edges were very well guaranteed, so as to improve the production efficiency.
机译:本文提出了一种新的方法,用于对精确的端面磨削毛刺形成的建模和分析。这种方法的目的是开发一种自动在线去毛刺方法,利用精密运动控制机制和有效的去毛刺工具。广泛用于航空航天工业的伺服阀芯作为本研究的工件。在精密外部研磨过程之后,通常采用端面磨削方式获得合格的工作边缘;这些边缘的精度通常需要是微米水平或更高。然而,在末端磨削之后,工作边缘的外圈将具有毛刺,其高度范围从几十个微米的高度范围,目前采用的手动离线毛刺去除方法不仅对控制精度感到不安,而且还容易工件的工作边缘以失去其完整性并导致高拒绝率。在本文中,使用BURR建模和分析程序来获得BURR的相应形成机制,并且在线精密BURR去除设备的设计合理。因此,保证了从末端磨削的微毛刺产生微毛刺的有效移除,从而提高生产效率。

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