首页> 外文会议>2002 ASME Design Engineering Technical Conferences and Computers and Information in Engineering Conference, Sep 29-Oct 2, 2002, Montreal, Canada >IDENTIFYING VARIABLE EFFECTS ON THE DIMENSIONAL QUALITY OF COMPLIANT ASSEMBLY, USING COMPUTER EXPERIMENTS
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IDENTIFYING VARIABLE EFFECTS ON THE DIMENSIONAL QUALITY OF COMPLIANT ASSEMBLY, USING COMPUTER EXPERIMENTS

机译:使用计算机实验确定对合规组件尺寸质量的各种影响

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摘要

Compliant sheet metal assemblies are often used as support structures in automobiles, airplanes and appliances. These structures not only provide a metrology frame for other modules to be assembled, but also give the product its aesthetic form. For this reason, the dimension quality of the assemblies is a very important factor to control, in order to make sure that the product will function as planned and continuously keep the product cost low. The assembly is influenced by variations in the component parts and the assembly processes. Tolerance analysis, as conducted in most industries today, is normally based on the assumption of rigid parts and is thus not always valid for sheet metal assemblies, due to their compliance. This paper will present a method, based on finite element analysis (FEA) and design of computer experiments, of identifying the influence of input variables on the final geometry variation of the assembly. The influence and the interactions among the input variables are analyzed with a response model that has been constructed, using the simulation results. This response model could be used to identify the important variables that need to be controlled in assembly. An example application is included, in order to demonstrate the simulation model and response model construction. Analysis of the results from the simulations can facilitate the design of the assembly process, in order to control the dimensional quality of the product.
机译:兼容的钣金组件通常用作汽车,飞机和电器中的支撑结构。这些结构不仅为要组装的其他模块提供了度量衡框架,而且还赋予了产品美观的外观。因此,组件的尺寸质量是控制非常重要的因素,以确保产品按计划运行并持续降低产品成本。组装受零件和组装过程中的变化影响。正如当今大多数行业中所进行的公差分析一样,公差分析通常基于对刚性零件的假设,因此,由于其合规性,因此不适用于钣金装配。本文将提出一种基于有限元分析(FEA)和计算机实验设计的方法,用于识别输入变量对组件最终几何形状变化的影响。使用模拟结果,使用已构建的响应模型分析输入变量之间的影响和相互作用。该响应模型可用于识别装配中需要控制的重要变量。包含一个示例应用程序,以演示仿真模型和响应模型的构建。对仿真结果的分析可以简化装配过程的设计,从而控制产品的尺寸质量。

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