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3D Re-Engineering: a comprehensive process for solving production assembly fit problems

机译:3D重新设计:解决生产大会适应问题的全面过程

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Dimensional Management (DM) is a methodology to predict and control the impact of variation on assembly from fit and function. Application of Dimensional Management tools and other modeling and simulation techniques are combined in a process called 3D Re-Engineering for application to existing production designs. Analytical techniques for predicting the impact of variation on assembly fit, and corresponding methods for controlling variation are presented, as used in a production environment for root cause corrective action on existing assembly fit problems. Assembly variation analysis is typically performed early in the product development phases, by coordinating datums, assembly sequences, assembly methods, and detail part tolerances across the product development team. The 3D Re-Engineering process employs variation analysis techniques, along with other 3D modeling and simulation tools, to determine root causes of assembly fit problems, and to provide improved product and process definition. Analytical results show ability to meet specification given a process's capability (Monte Carlo simulations), and contributors to variation which are causing the assembly fit problems (Pareto ranking), which also may be candidates for Key Characteristics, along with methods used for product build such as integrated Quality Plans.3D Re-Engineering techniques have been applied to several key production programs which have experienced recurring fit problems, and have resulted in a comprehensive solution to solving such problems. Solutions range from engineering nominal changes, coordinating tooling datums, implementing process capability, improved work instructions, and others. With the application of 3D Re-Engineering techniques, reductions in assembly rework, reduced engineering, planning, and tooling changes, and reduced assembly cycle time can be demonstrated on existing production programs.
机译:尺寸管理(DM)是一种方法,可以预测和控制变化对装配和功能的变化的影响。维度管理工具和其他建模和仿真技术的应用在一个名为3D重新工程的过程中,用于应用于现有生产设计的过程中。提出了用于预测变化变化的影响的分析技术,以及用于控制变化的相应方法,如在根本原因对现有装配问题上的纠正措施的纠正措施。组装变异分析通常在产品开发阶段的早期进行,通过协调基准,组装序列,组装方法和整个产品开发团队的细节部分公差。 3D重新工程过程采用变化分析技术以及其他3D建模和仿真工具,以确定装配拟合问题的根本原因,并提供改进的产品和过程定义。分析结果表明,给定规范的能力给定流程的能力(蒙特卡罗模拟),以及导致组装拟合问题的变化的贡献者(Pareto排名),这也可以是关键特性的候选者,以及用于产品的方法作为综合质量计划.3D重新工程技术已应用于经历过重复拟合问题的几个关键生产计划,并导致解决此类问题的全面解决方案。解决方案范围从工程标称更改,协调工具基准,实现流程能力,改进的工作说明等。随着3D重新工程技术的应用,组装返工减少,减少工程,规划和工具更改,并且可以在现有的生产计划上展示减少的装配周期时间。

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