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Optical 3D measuring apparatus used for measuring chamber volume of a cylinder head and chamber volume correcting method for a cylinder head of an engine

机译:用于测量气缸盖的腔室容积的光学3D测量设备以及用于发动机的气缸盖的腔室容积校正方法

摘要

A 3D volume measuring apparatus using an optical measuring technique performs an accurate measurement by using a common master clock signal to move a slit beam and to perform a measuring operation using the slit beam. An optical sensor has a slit beam source which projects the slit beam onto a surface of an object. A video camera receives an image of the optical cutting line. A master clock pulse generating unit is provided for generating master clock pulses. The slit beam is scanned on the object in synchronization with the master clock pulses. Information of the image of the optical cutting line is obtained in synchronization with the master clock pulses, so that the contour of the vertical section corresponding to the optical cutting line is obtained. A chamber volume correcting method using the 3D volume measuring apparatus is provided in which method an exact cutting depth for a cylinder head can be calculated so that a chamber of the cylinder head has an exact target volume. The cutting depth is determined in accordance with the measured volume of the chamber before a finish machining is performed.
机译:使用光学测量技术的3D体积测量设备通过使用公共主时钟信号来移动狭缝束并且使用该狭缝束执行测量操作来执行精确的测量。光学传感器具有狭缝束源,其将狭缝束投射到物体的表面上。摄像机接收光学切割线的图像。提供了主时钟脉冲产生单元,用于产生主时钟脉冲。与主时钟脉冲同步,在物体上扫描狭缝光束。与主时钟脉冲同步地获得光学切割线的图像的信息,从而获得与光学切割线相对应的垂直截面的轮廓。提供了一种使用3D体积测量设备的腔室体积校正方法,其中可以计算出气缸盖的精确切削深度,从而使气缸盖的腔室具有精确的目标体积。切削深度是根据进行精加工之前测得的腔室容积确定的。

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