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Measuring Concentricity and Coaxial Tolerance of Nozzle and Cavity With Tool Microscope

机译:用工具显微镜测量喷嘴和腔的同心度和同轴公差

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While the equipment of Micro-jet wave-guided laser was assembled, high-precision of concentricity and coaxiality between nozzle and cavity are required, which directly or indirectly influent the laser coupling precision of nozzle, the micro-jet stability and the steady length of micro-jet as well. As a result, the measurement of concentricity and coaxiality is important to improve the processing quality of Micro-jet wave-guided laser Through the new digital universal tool microscope measuring both ends of micro nozzle and diameter of nozzle, more resolution the other hand,the backlight detection the edge of nozzle is utilized. When the position of the center of a circle is indirect measured and then find out the concentricity through the uncertainty of the measurement and calculation method. V shaped groove is utilized to make certain its position. Otherwise, digital imaging through setting fixture and the use of new digital universal tool microscope and processed by software, which will cause to reduce measurement human error in tradition, after that, error theory analysis will be carried out, uncertainty theory will be utilized to make the experiment more sure at the same time. Above all, the reliability of data is obtained, compared with the traditional measurement methods are more accurate. Therefore, the processing quality of laser drilling will be enhanced significantly.
机译:在组装微射流波导激光器的设备时,需要高精度的喷嘴与腔体之间的同心度和同轴度,这直接或间接地影响喷嘴的激光耦合精度,微射流的稳定性和稳定的长度。微型喷气机也是如此。因此,同心度和同轴度的测量对于提高微射流引导激光的加工质量非常重要。通过新型的数字万用工具显微镜可以测量微喷嘴的两端和喷嘴直径,而分辨率更高。背光检测利用了喷嘴的边缘。当间接测量圆心位置,然后通过测量和计算方法的不确定性找出同心度。 V型槽用于确定其位置。否则,通过设置夹具进行数字成像,并使用新型的数字万能工具显微镜并由软件进行处理,这将减少传统上的测量人为误差,其后进行误差理论分析,利用不确定性理论进行测量。同时可以更确定地进行实验。最重要的是,获得了数据的可靠性,与传统的测量方法相比更加准确。因此,激光钻孔的加工质量将大大提高。

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