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Computer aided process planning for high-speed milling of thin-walled parts : strategy-based support

机译:薄壁零件高速铣削的计算机辅助工艺规划:基于策略的支持

摘要

Technological developments have made high-speed milling economically attractive. It is now a manufacturing technology that can competitively manufacture thin-walled parts. Such parts however can require a lot of material to be machined. With high-speed milling, this can take a lot of toolpaths. Process planning such products is difficult and time-consuming due to the vast amount of paths to program and the low stiffness of the final part. The workpiece at one point becomes the weakest element during machining, and its stiffness properties change as machining progresses. This thesis presents an error avoidance based approach for computer aided process planning for these parts, to help automate process planning and make it more reliable.udThe core of process planning thin-walled parts is ensuring that thin workpiece geometry is sufficiently supported at the point of machining. In the approach in this thesis, the support comes from remaining workpiece material. This makes the order of material removal crucial. Material removal strategies can be needed on different levels, depending on the scope of the thinness, and can differ for different shapes. This support-based planning has therefore been detailed differently on different levels, in a feature-based, knowledge-based form. To separate stiffness issues from machining process issues where possible, stiffness features are introduced in addition to machining features.udDue to the nature of the parts and the process planning approach – process planning based on the support principle requires control over more or less the whole workpiece – manufacturing strategies need to consider a larger environment. This makes the strategies and knowledge to apply more complex. Therefore, it becomes considerably more difficult to increase the level of automation.udThe approach and concepts have been implemented into software, based on an existing feature-based, knowledge-based CAPP package. The core steps of planning the volumes to remove, how to machine them, and in which order, have been automated in a knowledge-based way. Also supplementary software utilities and functionality have been implemented. From evaluation of the resulting application for industrial practice, the automatic determination of the machining sequence for thin-walled geometry and the improved overview of the process plan were considered great benefits.
机译:技术的发展使高速铣削在经济上具有吸引力。现在,它是一种可以竞争性地制造薄壁零件的制造技术。但是,这样的零件可能需要大量的材料进行加工。使用高速铣削,这可能需要很多刀具路径。由于要编写大量的程序路径以及最终零件的刚性较低,因此对此类产品进行工艺计划既困难又费时。在加工过程中,工件在某一点成为最弱的元素,其刚度特性会随着加工的进行而变化。本文为这些零件的计算机辅助工艺规划提出了一种基于避免错误的方法,以帮助实现工艺规划的自动化并使其更加可靠。 ud加工薄壁零件的核心是确保在该点处充分支撑薄工件几何形状加工。在本文的方法中,支撑来自剩余的工件材料。这使得材料去除的顺序至关重要。取决于厚度的范围,可能需要在不同级别上采用材料去除策略,并且对于不同形状可能会有所不同。因此,基于支持的计划已在不同级别上以基于功能,基于知识的形式进行了详细介绍。为了在可能的情况下将刚度问题与加工过程问题区分开,除了加工特征之外,还引入了刚度特征。 ud由于零件的性质和过程计划方法–基于支撑原理的过程计划需要对整个或多或少的整体进行控制工件–制造策略需要考虑更大的环境。这使得应用的策略和知识变得更加复杂。因此,提高自动化水平变得非常困难。 ud基于现有的基于功能,基于知识的CAPP程序包,方法和概念已实现到软件中。计划要删除的卷,如何对其进行加工以及以何种顺序进行的核心步骤已通过基于知识的方式实现了自动化。补充软件实用程序和功能也已实现。通过评估最终的工业实践应用,可以自动确定薄壁几何形状的加工顺序并改进工艺计划,这被认为是非常有益的。

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