首页> 外文会议>ASME/ISCIE international symposium on flexible automation 2012 >3D MODEL CONSTRUCTION OF CUTTING TOOLS AND IDENTIFICATION OF WORKPIECES USING MACHINE VISION FOR VIRTUAL MACHINING SIMULATION
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3D MODEL CONSTRUCTION OF CUTTING TOOLS AND IDENTIFICATION OF WORKPIECES USING MACHINE VISION FOR VIRTUAL MACHINING SIMULATION

机译:用于虚拟加工模拟的切削刀具的3D模型构建和工件识别

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摘要

In virtual machining simulation to verify NC programs for machining operation, construction of 3D (three-dimensional) models of cutting tools to be used and identification of posture and position of workpiece to be machined are quite important to achieve reliable verification. Especially, a 3D model construction of cutting tools requires skill-full operations and it takes much time and cost. Several geometric parameters to define cutting tool shapes are needed to construct precise 3D models for virtual machining simulation. Even though, careless mistake to set parameters of tool diameter and length causes machining troubles. Therefore, no trouble was happened in virtual machining simulation, it is still required to check machining troubles through the trial-cutting on actual NC machine tools. In this paper, new methods to construct 3D models of cutting tools and identification of posture and position of workpiece are proposed. Experimental measurement of cutting tool shape is performed on the machine tool using a CCD camera, and a 3D model of cutting tool was constructed successfully. By this method, setting of invalid parameters to define cutting tool shapes can be avoided. Also, posture and position of the workpiece can be identified successfully. These parameters can be used to detect wrong setup operation before actual machining operation.
机译:在验证加工程序的NC程序的虚拟加工仿真中,要使用的切削刀具的3D(三维)模型的构造以及要加工的工件的姿态和位置的识别对于实现可靠的验证非常重要。尤其是,切削工具的3D模型构建需要熟练的操作,并且需要大量时间和成本。需要几个几何参数来定义切削刀具的形状,以构建用于虚拟加工仿真的精确3D模型。即使粗心地设置刀具直径和长度参数也会导致加工麻烦。因此,在虚拟加工仿真中不会发生任何故障,仍然需要通过在实际的数控机床上进行试切来检查加工故障。本文提出了建立刀具3D模型和识别工件姿态和位置的新方法。使用CCD摄像机在机床上进行切削刀具形状的实验测量,并成功构建了切削刀具的3D模型。通过这种方法,可以避免设置无效参数来定义切削刀具形状。另外,可以成功地识别出工件的姿势和位置。这些参数可用于在实际加工之前检测错误的设置操作。

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  • 来源
  • 会议地点 St. Louis MO(US)
  • 作者单位

    Department of Mechanical Engineering Graduate School of Engineering Kobe University, Kobe, Japan;

    Department of Mechanical Engineering Graduate School of Engineering Kobe University, Kobe, Japan;

    Department of Mechanical Engineering Graduate School of Engineering Kobe University, Kobe, Japan;

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  • 正文语种 eng
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