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Virtual prototyping for a parallel-link coordinate measuring machine

机译:并行链接坐标测量机的虚拟样机

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摘要

Compared with the conventional coordinate measuring machine (CMM), the parallel-link CMM has a simple structure, a higher measuring accuracy, a flexible probe posture, etc. However, the design for a physical prototype of the parallel-link CMM is very difficult because there is a nonlinear relationship between the probe position and the actuating variables applied through three parallel links. For this reason, the paper reports an approach by constructing the virtual prototype for a parallel-link CMM. Firstly, the structure and the working theory of the parallel-link CMM are introduced, and then the kinematic model of it is established. On the basis of that, the three-dimensional geometric model for the virtual prototype is constructed on computer screen, and the realistic visual effect is achieved by using the strong colouring process function available in the OpenGL graphic library. After that, the kinematic simulation for the virtual prototype is realized in the virtual environment by combining organically the spatial kinematic mechanics and the graphic transformation functions, such as rotation and translation, included in OpenGL. Finally, an example of measurement simulation is given. Thereby, the correctness of the kinematic model is further verified in a virtual environment. This research lays the foundation for manufacturing the real prototype of the parallel-link CMM.
机译:与传统的坐标测量机(CMM)相比,并联CMM具有结构简单,测量精度高,探针姿态灵活等优点。然而,为并联CMM的物理原型设计很难因为探头位置和通过三个平行链接施加的致动变量之间存在非线性关系。因此,本文报告了一种通过构造并行链接CMM的虚拟原型的方法。首先介绍了并联三坐标测量机的结构和工作原理,然后建立了其运动学模型。在此基础上,在计算机屏幕上构建虚拟原型的三维几何模型,并使用OpenGL图形库中强大的着色处理功能实现逼真的视觉效果。之后,通过将OpenGL中包含的空间运动学机制和图形转换功能(例如旋转和平移)有机地结合起来,在虚拟环境中实现了虚拟原型的运动学模拟。最后,给出了一个测量仿真的例子。由此,在虚拟环境中进一步验证了运动学模型的正确性。这项研究为制造并联CMM的真实原型奠定了基础。

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