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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A re-configurable cross-sectional imaging system for reverse engineering based on a CNC milling machine
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A re-configurable cross-sectional imaging system for reverse engineering based on a CNC milling machine

机译:基于数控铣床的用于逆向工程的可重构截面成像系统

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This paper presents a novel reverse engineering digitizing system for full part geometry, which is based on a cross-sectional imaging device built in a NC milling machine. The system successively captures a picture for each planar cross-section contour of the part by end-milling and CCD imaging, and builds the geometry for both external and internal surfaces of the complex 3D part based on a set of the vectored cross-sectional contours. The system mainly consists of three components: a NC milling machine, a cross-sectional imaging device and a computer control unit. Some issues involving the principle and process flow of the system, encasing materials, cross-sectional imaging and NC code generation, etc. are described in detail. Built on an existing NC milling machine, a portable device for capturing the cross-sectional images is designed, which includes an isolated light source, a digital camera, a protective case, a rigid arm and a robust tripod. The device, connected to a computer control unit, serves as a highly flexible accessory for the NC milling machine, constructing the cross-sectional imaging system for reverse engineering. Furthermore, the error analysis and accuracy assessment of the system are also addressed. A typical case is discussed in detail to illustrate the applications of the system. Such a re-configurable digitizing system for reverse engineering offers a number of advantages, such as the functional extension of an existing NC milling machine, low costs, and rapid construction. As a result, this system provides a feasible and useful scheme for many enterprises to construct their own reverse measuring system based on existing equipment to aid in rapid product development and extend the function of existing equipment.
机译:本文提出了一种新颖的用于全零件几何形状的逆向工程数字化系统,该系统基于内置于NC铣床中的横截面成像设备。该系统通过端铣和CCD成像连续捕获零件的每个平面横截面轮廓的图片,并基于一组矢量化的横截面轮廓为复杂3D零件的内外表面建立几何形状。该系统主要由三部分组成:数控铣床,横截面成像设备和计算机控制单元。详细介绍了涉及系统原理和流程,包装材料,横截面成像和NC代码生成等问题。在现有的数控铣床的基础上,设计了一种用于捕获横截面图像的便携式设备,其中包括隔离光源,数​​码相机,保护壳,刚性臂和坚固的三脚架。该设备连接到计算机控制单元,用作NC铣床的高度灵活的附件,构造了用于反向工程的横截面成像系统。此外,还讨论了系统的错误分析和准确性评估。详细讨论了一种典型情况,以说明系统的应用。这种用于逆向工程的可重新配置的数字化系统具有许多优点,例如现有数控铣床的功能扩展,低成本和快速构造。因此,该系统为许多企业在现有设备的基础上构建自己的反向测量系统提供了一种可行且有用的方案,以帮助快速的产品开发和扩展现有设备的功能。

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