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(217) ENGINEERING DESIGN PROJECT OF A GRIPPER FOR ROBOTS MANUFACTURED BY A 3D PRINTER

机译:(217)3D打印机制造的机器人夹具的工程设计项目

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3D printing technology allows simple and fast production of technical components. It can be easily used for manufacturing testing prototypes and for components with a special inner composition. Different types of plastic materials can be used thanks to the possibilities of FDM (fused deposition modelling) printers. Designed parts are usually verified by FEM (finite element method) analysis. The technical components to be printed must meet the requirements of the production technology, material properties and also the ecological aspects. 3D printing technology is used here by students in student developmental projects. A student developmental project starts systematically from the designing of a 3D model then is followed by FEM analyses and manufacturing of prototypes by 3D printers. 3D printing is the easiest method to use for student projects from the point of view of manufacturing technology. In this case, the paper focuses on a student's development of gripper components for robotic manipulators. Individual stages of the student project are thoroughly described in the paper. An example of grippers designed by students are then used to demonstrate the work of robotic manipulators.
机译:3D打印技术允许简单快捷地生产技术部件。它可以很容易地用于制造测试原型和具有特殊内部组成的部件。由于FDM(熔融沉积建模)打印机的可能性,可以使用不同类型的塑料材料。设计零件通常由FEM(有限元方法)分析验证。要印刷的技术部件必须满足生产技术,材料特性以及生态方面的要求。 3D印刷技术在这里由学生发展项目中的学生使用。学生发展项目系统从3D模型的设计系统地开始,然后通过3D打印机进行有限元分析和制造原型。 3D打印是从制造技术的角度来看用于学生项目的最简单方法。在这种情况下,该文件侧重于学生对机器人操纵器的夹具组件的发展。本文彻底描述了学生项目的个别阶段。然后,由学生设计的夹具示例用于展示机器人操纵器的工作。

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