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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Multilevel structured NC machining process model based on dynamic machining feature for process reuse
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Multilevel structured NC machining process model based on dynamic machining feature for process reuse

机译:基于动态加工功能的多级结构化NC加工过程模型

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摘要

Towards the fourth industrial revolution or Industry 4.0 with intelligence as the soul, and data as the key, product manufacturing is facing new challenges in the ever-changing dynamic and competitive environment, and process data-driven intelligent NC machining process planning has become an enabling technology for high efficiency and quality manufacturing. However, existing methods are mainly based on static machining feature for the description of the process data, and they are difficult to represent the embedded multi-granularity process knowledge and experience of designers. In this paper, a multilevel structured NC machining process model based on dynamic machining feature for process reuse is proposed. First, the dynamic machining feature is introduced to make up the deficiency of process design intent capture based on static machining feature. Then, the interactions between 3D CAD model and CAM model are revealed to realize the association in the process data. Finally, the multilevel structured NC machining process model embodying multi-granularity process design intent is established to overcome the sematic gap between high-level macro-technological process and low-level micro-process parameters. A prototype system based on UG NX has been developed to verify the effectiveness of the proposed approach.
机译:走向第四个工业革命或行业4.0与智慧为灵魂,以及数据作为关键,产品制造正面临着不断变化的动态和竞争环境的新挑战,并处理数据驱动的智能NC加工过程规划已成为一个启用高效率和优质制造技术。然而,现有方法主要基于用于处理数据的描述的静态加工特征,并且它们难以代表设计人员的嵌入式多粒度过程知识和体验。本文提出了一种基于动态加工特征的多级结构化NC加工过程模型,用于处理重用的动态加工特征。首先,引入了动态加工功能,以弥补基于静电加工特征的过程设计意图捕获的缺陷。然后,揭示了3D CAD模型和凸轮模型之间的相互作用以实现过程数据中的关联。最后,建立了体现多粒度过程设计意图的多级结构的NC加工过程模型,以克服高级宏观技术过程与低级微工艺参数之间的神学间隙。已经开发了一种基于UG NX的原型系统来验证所提出的方法的有效性。

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