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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Integrated CAD tolerancing model based on difficulty coefficient evaluation and Lagrange multiplier
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Integrated CAD tolerancing model based on difficulty coefficient evaluation and Lagrange multiplier

机译:基于难度系数评估和拉格朗日乘数的集成CAD公差模型

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摘要

Tolerance allocation is a very important assignment. In fact, knowing how to allocate efficiently tolerances for assembly parts in a computer-aided design (CAD) and computer-aided manufacturing (CAM) system is a very key issue because the cost and quality depend directly on dimension tolerances. The traditional optimization approaches complain about a lack regarding the evaluation of manufacturing difficulty to solve tolerance allocation problem. In this paper, a new approach based on difficulty coefficient evaluation (DCE) and Lagrange multiplier (LM) method is presented to obtain an economical tolerance allocation. In fact, DCE technique, based on the failure mode, effects and criticality analysis (FMECA) tool, is used to quantify the manufacturing difficulty of mechanical parts, as well as the LM method is developed to optimize the proposed approach while respecting the functions and manufacturing requirements. A case study is established to verify the highlights of this work. Indeed, the computed result shows that the method can produce tolerance allocation economically and accurately according to difficulty requirements. Consequently, the proposed method is performed to exploit fully design for manufacturing and assembly (DFMA). For this, an integrated CAD/tolerancing model based on manufacturing difficulty (ICADTMD) is developed using graphical user interface (GUI) in MATLAB.
机译:公差分配是一个非常重要的任务。事实上,了解如何在计算机辅助设计(CAD)和计算机辅助制造(CAM)系统中有效地分配用于装配部件的装配零件是一个非常关键的问题,因为成本和质量直接取决于尺寸公差。传统的优化方法抱怨缺乏关于解决宽容分配问题的制造难度的评估。本文提出了一种基于难度系数评估(DCE)和拉格朗日乘法器(LM)方法的新方法以获得经济的公差分配。实际上,基于故障模式,效果和临界分析(FMECA)工具的DCE技术用于量化机械部件的制造难度,并且开发了LM方法以优化所提出的方法,同时尊重功能和制造要求。建立案例研究以验证这项工作的亮点。实际上,计算结果表明,该方法可以根据难度要求经济和准确地产生公差分配。因此,执行所提出的方法以利用完全设计制造和组装(DFMA)。为此,使用Matlab中的图形用户界面(GUI)开发了一种基于制造难度(ICADTMD)的集成CAD /公差模型。

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