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Automated construction of gear racks, spur gears and helical gears using Matlab STL files for rapid manufacturing

机译:使用Matlab和STL文件自动构建齿轮齿条,正齿轮和斜齿轮,以实现快速制造

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Since rapid manufacturing (RM) technologies such as selective laser sintering (SLS) are on the edge to be used for the fabrication of fully functional components or even complete technical devices, we have to adapt the way we think of designing and assembling printable parts. RM makes it possible to realize complex geometrical structures with ease in small amounts at low cost. And it is possible to customize the geometry of e.g. a robot and simply print it according to the desired specifications. To make those technical possibilities available for any developer - no matter what technical background one has, from children to engineers, from hobby to professional use - it is important to automate basic design steps. In this paper we present a concept for the automated construction of gear boxes and our first step for achieving this goal: design algorithms for gear racks, spur gears and helical gears with internal and external involute toothing implemented in Matlab. The geometrical and mathematical description, the algorithms' concept and the creation of the STL files is explained. The gear wheels are designed to be compatible with all gear wheels according to ISO 2771.
机译:由于诸如选择性激光烧结(SLS)之类的快速制造(RM)技术即将用于制造功能齐全的部件甚至是完整的技术设备的边缘,因此我们必须适应设计和组装可印刷部件的思维方式。 RM使以低成本轻松实现少量的复杂几何结构成为可能。并且可以自定义例如机器人,然后根据需要的规格进行打印。为了使这些技术可能性对任何开发人员都可用,无论从儿童到工程师,从业余爱好到专业用途,无论开发人员具有何种技术背景,自动化基本的设计步骤都是很重要的。在本文中,我们提出了齿轮箱自动化构造的概念,以及实现这一目标的第一步:在Matlab中实现的带有内,外渐开线齿的齿条,正齿轮和斜齿轮的设计算法。解释了几何和数学描述,算法概念以及STL文件的创建。齿轮设计为与所有符合ISO 2771的齿轮兼容。

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