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A multi-perspective dynamic feature concept in adaptive NC machining of complex freeform surfaces

机译:复杂自由曲面的自适应数控加工中的多角度动态特征概念

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摘要

This paper presents a new concept of feature for freeform surface machining that defines the changes in feature status during real manufacturing situations which have not been sufficiently addressed by current international standards and previous research in feature technology. These changes are multi-perspective, including (i) changes in depth-of-cut: the geometry of a feature in the depth-of-cut direction changes during different machining operations such as roughing, semi-finishing and finishing; (ii) changes across the surface: a surface may be divided into different machining regions (effectively sub-features) for the selection of appropriate manufacturing methods for each region such as different cutting tools, parameters, set-ups or machine tools; and (iii) changes in resources or manufacturing capabilities may require the re-planning of depth-of-cuts, division of machining regions and manufacturing operations (machines, tools, set-ups and parameters). Adding the above dynamic information to the part information models in current CAD systems (which only represent the final state of parts) would significantly improve the accuracy, efficiency and timeliness of manufacturing planning and optimisation, especially for the integrated NC machining planning for complex freeform surfaces. A case study in an aircraft manufacturing company will be included in this paper.
机译:本文提出了一种用于自由曲面加工的特征的新概念,该概念定义了实际制造情况下特征状态的变化,而当前的国际标准和先前对特征技术的研究尚未充分解决这些变化。这些变化是多角度的,包括:(i)切削深度的变化:切削深度方向上特征的几何形状在不同的加工操作(例如粗加工,半精加工和精加工)中发生变化; (ii)整个表面的变化:可以将一个表面划分为不同的加工区域(有效地是子特征),以便为每个区域选择合适的制造方法,例如不同的切削刀具,参数,设置或机床; (iii)资源或制造能力的变化可能需要重新计划切割深度,划分加工区域和制造操作(机器,工具,设置和参数)。将上述动态信息添加到当前CAD系统中的零件信息模型中(仅代表零件的最终状态)将显着提高制造计划和优化的准确性,效率和及时性,尤其是对于复杂自由曲面的集成NC加工计划。本文将包括飞机制造公司的案例研究。

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