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A CAPP framework with optimized process parameters for rotational components

机译:具有针对旋转组件的优化工艺参数的CAPP框架

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Process planning, as a critical stage integrating the design and manufacturing phase in a manufacturing environment, has been automated to meet the needs for higher productivity and lower production cost. Being an input to various systems such as scheduling and routing, process planning results are of great importance in the manufacturing stage. Though feature extraction and sequence optimization have been given much attention, the process parameters are rarely dealt with. This paper focuses on the development of a new generative computer aided process planning (CAPP) framework for rotational components. The developed framework includes modules for feature extraction based on CAD application programming interfaces, determination of the optimum sequence and generation of optimum process parameters. The optimization of the machining operations is achieved using the evolutionary technique. The approach resulted in the reduction and prediction of machining time and cost. The framework is demonstrated with a case study.
机译:作为在制造环境中整合设计和制造阶段的关键阶段,过程计划已实现自动化,以满足更高生产率和更低生产成本的需求。作为计划和路由等各种系统的输入,过程计划结果在制造阶段非常重要。尽管特征提取和序列优化已受到广泛关注,但很少处理过程参数。本文着重于开发一种用于旋转部件的新型计算机辅助过程计划(CAPP)框架。开发的框架包括用于基于CAD应用程序编程接口进行特征提取,确定最佳顺序并生成最佳过程参数的模块。使用进化技术可以实现加工操作的优化。该方法减少了加工时间和成本,并降低了预测成本。通过案例研究演示了该框架。

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