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  • 學位論文

鏟花工件表面鏟花技術開發

Development of a Scraping and Measuring Method for the Scraping-Workpiece

指導教授 : 覺文郁 邱國慶
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摘要


鏟花是一種傳統加工技術的名稱,目的是在工具機滑軌的滑動面上產生具有潤滑作用的油溝,長久以來此項加工技術優劣均由資深加工者的判斷作為標準。 本研究發展自動化量測與鏟花系統,此系統透過三角雷射探頭、自動鏟花裝置與三軸移動平台的結合,來達到快速量測與自動化鏟花的目的。利用三角雷射探頭投射光束至鏟花工件表面,由自行開發的LabVIEW軟體介面設定鏟花工件掃描路徑、範圍並執行表面掃描,來量測出鏟花工件表面輪廓,並可由100mm/s的平台移動速度,量測到5至20μm的鏟花深度以及提供具體的檢測參數;而鏟花加工方面,則透過自行開發的軟體介面來設定加工範圍與路徑規劃,並配合自動鏟花裝置的運作,達成自動化鏟花加工。

並列摘要


The scraping is a name of traditional manufacturing technology to produce lubrication oil grooves on the sliding surface of the machine tool slide rail. But until today the quality of this manufacturing technology was still determined by the senior processors. In this paper, an automatic measuring and scraping system is presented. The system is composed of a triangulation laser, an automatic scraping mechanism and a 3-axis moving stage, and is used for fast measuring and automatic scraping of the workpiece. A triangulation laser is setup on the Z-axis of 3-axis moving stage, and is utilized to measure the depth of the scraping workpiece. The developed on LabVIEW tool is used to setup moving path and detecting area, and is used to measure the variation of the scraping surface. The whole scraped profile can be scanned of depth about 5 to 20 μm under 100 mm/s moving velocity and provide the specific measuring parameters. In terms of automatic scraping, the scraping area and moving path are generated by the developed tool, and are used to operate the automatic scraping system to achieve the automatic scraping.

參考文獻


[13]周睿程,“一種對於鏟花工件表面輪廓的光學量測法”,國立台灣大學,機械工程學系碩士論文,2009。
[5]Lino Marques, Urbano Nunes and Anibal T. , “A new 3D optical triangulation sensor for robotics,” IEEE 1998.
[6]K. C. Fan, C. L. Chu, and J. I. Mou, “Development of a low-cost autofocusing probe for profile measurement,” Measurement Science and Technology, Vol.12, no12, December, pp2137-2146, 2001.
[8]K.H.Goha, N. Phillipsb, R. Bella, “The applicability of a laser triangulation probe to non-contacting inspection,” International Journal of Production Research, Vol.24, no.6, pp1331-1348, 1986.
[9]K. C. Fan, “A non-contact automatic measurement for free-form surface profiles,” Computer Integrated Manufacturing Systems, vol.10, no.4, pp277-285, 1997.

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