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Systematic solving of machining deformation and process optimization for complex thin-walled parts

机译:复杂薄壁零件的加工变形和工艺优化的系统求解

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Complex thin-walled parts are widely used in various fields. But they are prone to deform in machining process because of their unique structures. At present, there is a lack of suitable methods to systematically solve this problem and form a universal and optimized machining process. This paper proposed a systematic method to solve the problem of machining deformation for complex thin-walled parts, and provided an optimized machining process using this method. First of all, this paper found out the machining conflicts through analyzing root causes of deformation, and got the principles of invention which .mean the possible directions of problem solving. Then, mis paper established the substance-field models based on machining conflicts, and got the corresponding standard solutions which mean the possible way of problem solving. After mat, the combination of one standard solution and one principle of invention which are most is selected through computing the semantic similarity between them. This combination of standard solution and principle of invention can be regarded as the conceptual solution which points out the solving direction and solving way. Finally, an optimized and versatile solution of machining process is proposed through using the conceptual solution. The optimized machining process is verified with a machining instance of complex thin-walled part.
机译:复杂的薄壁部分广泛用于各个领域。但由于其独特的结构,它们易于在加工过程中变形。目前,缺乏系统地解决这一问题的合适方法,并形成通用和优化的加工过程。本文提出了一种解决复杂薄壁部件的加工变形问题的系统方法,并提供了使用该方法的优化加工过程。首先,本文通过分析变形的根本原因,发现了加工冲突,并获得了本发明的原理。emean解决问题的可能方向。然后,MIS纸建立了基于加工冲突的物质 - 现场模型,并获得了相应的标准解决方案,这意味着解决问题的可能方法。在垫子之后,通过计算它们之间的语义相似性来选择一个标准解决方案和最重要的发明原理。这种标准解决方案和发明原理的组合可以被视为指出求解方向和求解方式的概念解决方案。最后,通过使用概念解决方案提出了一种优化和多功能的加工过程解决方案。通过复杂薄壁部分的加工实例验证优化的加工过程。

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