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REDUCTION OF CHATTER USING A PROBABILISTIC APPROACH

机译:使用概率方法减少聊天

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Industrial robots are widely used in numerous industrial plants usually to perform repetitive, difficult or hazardous tasks such as polishing, grinding, milling, deburring, and welding. However, their relatively low stiffness prohibits the robots from machining of metallic materials accurately. Besides, the resulting vibration causes reduced tool life. One of the main problems with robot machining is chatter. Although many researchers have studied this problem for a while, they were not able to fully eliminate chatter due to the complexity of the problem which arises from many factors including cutting parameters, cutting tool and work-piece material. Several studies have been conducted to predict the occurrence of chatter. However, many of them lack the important element in predicting chatter: the element of uncertainty. It is important to consider uncertainty in predicting chatter since the parameters associated are inherently uncertain. This study implements probabilistic approach to predict chatter considering the uncertainty in machining parameters. The magnitude of cutting force is used to determine whether a chatter has occurred or not. The research question of this study is 'Can a probabilistic analysis be used to predict chatter occurrence?' To answer the research question, the following specific aims were developed: (1) develop a framework for predicting chatter occurrence, and (2) perform probabilistic analysis of chatter occurrence. The framework consists of a multibody modeling software (ADAMS), probabilistic analysis software (NESSUS) and MATLAB which is used as an interfacing platform. The probabilistic analysis implemented in the framework provides two important results. Firstly, it determines the probability of occurrence of chatter. Secondly, it provides sensitivity analysis that shows most important parameters which instigate chatter.
机译:工业机器人广泛用于许多工厂,通常执行重复,困难或危险的任务,例如抛光,研磨,铣削,去毛刺和焊接。然而,它们相对较低的刚度阻止了机器人精确地加工金属材料。此外,由此产生的振动会导致刀具寿命缩短。机器人加工的主要问题之一是颤振。尽管许多研究人员对此问题进行了一段时间的研究,但由于问题的复杂性(由切削参数,切削工具和工件材料等许多因素引起)的复杂性,他们仍无法完全消除抖动。已经进行了一些研究来预测颤动的发生。但是,它们中的许多缺乏预测颤动的重要元素:不确定性的元素。重要的是在预测颤动时要考虑不确定性,因为相关的参数天生就是不确定的。考虑到加工参数的不确定性,本研究采用概率方法来预测颤动。切削力的大小用于确定是否发生颤动。这项研究的研究问题是“是否可以使用概率分析来预测颤动的发生?”为了回答研究问题,提出了以下具体目标:(1)建立一个预测颤动发生的框架,以及(2)对颤动发生进行概率分析。该框架包括一个多体建模软件(ADAMS),概率分析软件(NESSUS)和MATLAB,它们被用作接口平台。在框架中执行的概率分析提供了两个重要的结果。首先,它确定发生颤动的可能性。其次,它提供了敏感性分析,该分析显示了引起颤动的最重要参数。

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