轴承箱工艺规程及模具设计

Z. Cong
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摘要

合理的工艺规程和工装夹具可以保证零件加工的高效率和企业的经济性。我从数据收集开始,然后是零件分析,然后是工艺设计,然后是工艺规范设计,最后是夹具设计。在工艺设计中,我根据生产现场的经验得出了最佳的工艺路线,达到了节省时间,提高劳动生产率的效果。根据生产方案进行工艺规范设计,确定生产类型,编制工艺规范。因此编制了零件工艺卡和零件加工工艺卡。夹具设计是为轴承箱车模和轴承箱钻模设计两套刀具。轴承箱车模具是以加工过的大曲面为基础,用两个直角面作为定位面。工件用螺栓和螺母紧固。其它大表面尺寸可达70、φ180H7孔;轴承箱钻孔模具以加工过的大表面为基础,定位在φ180H7孔处。工件用螺栓和螺母紧固,并钻6-φ13孔以改善零件。加工效率高,保证零件加工质量。综上所述,采用上述专用夹具设计方案,保证零件批量生产要求,提高劳动效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bearing Box Process Specification and Tooling Design
Reasonable process regulations and fixtures can ensure the high efficiency of parts processing and the economy of the enterprise. I started with data collection, then part analysis, then process design, then process specification design, and finally fixture design. In the process design, I obtained the best process route based on the experience of the production site to achieve the effect of saving time and increasing labor productivity. The design of the process specification was based on the production program, the production type was determined, and the process specification was compiled. Production, so the process card of parts and the card of machining process of parts were compiled. The fixture design is to design two sets of tools for the bearing box car mold and the bearing box drilling mold. The bearing box car mold is based on the processed large surface and the two right angle surfaces are used as positioning surfaces. The workpiece is fastened with bolts and nuts. The other large surface is up to size 70, φ180H7 holes; the bearing box drilling mold is based on the processed large surface, and is positioned at φ180H7 holes. The workpiece is fastened with bolts and nuts, and 6-φ13 holes are drilled to improve the part. Processing efficiency to ensure the quality of parts processing. In summary, the above-mentioned special fixture design scheme is adopted to ensure the production requirements of parts in batches and improve labor efficiency.
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