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HISTORICAL PROCEDURES AND G-DSG METHOD BASED MANUFACTURING PLANNING

机译:基于历史程序和基于G-DSG方法的制造计划

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摘要

Oriented to CAD/CAM seamless integration, this paper presents an idea for synthetically considering the qualitative history model, which represents the whole course of modeling, and the quantitative geometry model, which contains the extended Brep model, CSG and feature pedigree. History model building captures in background the dynamic interactive definition of engineering requirement and then explicitly conveys the original intention to successive application layers, which is conductive to the decision support of manufacturing planning in not only automatic geometry re-constructing but also machining set-up. G-DSG theory as an earlier achievement is applied to generate the topology-independent generalized mid-model as an input to manufacturing planning, which is therefore simplified and its accuracy is simultaneously improved. Manufacturing planning lays emphasis on optimizing the mapping in both geometry and function from part itself to detail machining scheme. Comparatively, process planning pays more attention to the mapping to those items like tool, fixture, etc. Theoretically, such an idea is also beneficial to realizing the parametric NC machining trajectory generation and maintaining its dynamic consistency with the update of the design model.
机译:面向CAD / CAM无缝集成,本文提出了一种综合考虑定性历史模型(代表整个建模过程)和定量几何模型(包含扩展的Brep模型,CSG和特征谱系)​​的思想。历史模型的建立在后台捕获了工程需求的动态交互定义,然后将原始意图明确传达给后续的应用程序层,这不仅对自动几何重构,而且对加工设置都有利于制造计划的决策支持。 G-DSG理论是一种较早的成就,可用于生成拓扑独立的广义中间模型作为制造计划的输入,因此简化了该模型,同时提高了其准确性。制造计划着重于优化从零件本身到详细加工方案的几何和功能映射。相对而言,过程计划更注重到工具,夹具等项目的映射。从理论上讲,这样的想法也有利于实现参数化NC加工轨迹的生成并在设计模型更新时保持其动态一致性。

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