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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Concave edge-based part decomposition for hybrid rapid prototyping
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Concave edge-based part decomposition for hybrid rapid prototyping

机译:基于凹边的零件分解,用于混合快速成型

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As one of the solutions to the limitations of the current layered manufacturing, hybrid rapid prototyping systems that perform both machining and deposition are being introduced. In the hybrid rapid prototyping, a part of a complicated shape is realized by adding layers of a simpler shape, each of which is obtained by machining a sheet of constant thickness from its top and bottom surfaces. Thus it is desired to decompose a given part into the minimum number of layers while guaranteeing each layer to be fabricated from the given sheets using a 3-axis milling machine. To satisfy these requirements, a concave edge-based approach is proposed to decompose a part into layers by considering the tool accessibility, the total number of layers, and the allowable sheet thickness. In this approach, for a given build-up direction, the undercut edges, which cause a part to be inaccessible by a tool, are extracted and classified into two types and eliminated in two decomposition steps.
机译:作为解决当前分层制造局限性的解决方案之一,正在引入同时进行机械加工和沉积的混合快速原型系统。在混合快速原型制作中,复杂形状的一部分是通过添加较简单形状的层实现的,每个层都是通过从顶部和底部表面加工厚度恒定的薄片而获得的。因此,期望将给定的零件分解成最小数量的层,同时保证使用三轴铣床从给定的片材制造出每个层。为了满足这些要求,提出了一种基于凹边的方法,通过考虑工具的可及性,层的总数和允许的板厚,将零件分解为层。在这种方法中,对于给定的堆积方向,将导致零件无法通过工具接近的底切边缘提取出来并分类为两种类型,并在两个分解步骤中将其消除。

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