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Experimental analysis of boring process on automotive engine cylinders

机译:汽车发动机气缸体镗孔过程的实验分析

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摘要

In this article, mechanics of boring process on cast iron automotive engine cylinders is explored experimentally. In order to shorten the boring cycle time and to improve quality of the cylinder holes, effects of various cutting conditions as spindle speed, feedrate, inserts, and coatings are investigated. Real-time cutting forces are measured with dynamometer during the process. Surface roughness on the engine cylinders, flank, and crater tool wears are measured and compared in various cutting conditions. It is concluded that by selecting proper cutting conditions, cutting forces can be controlled below a threshold value, cycle time can be shortened, tool life and part quality can be increased; therefore, the cost of automotive engine boring process can be reduced significantly.
机译:在本文中,通过实验探索了铸铁汽车发动机气缸上镗孔过程的力学。为了缩短镗孔时间并提高气缸孔的质量,研究了各种切削条件(如主轴转速,进给率,刀片和涂层)的影响。在此过程中,用测力计测量实时切削力。在各种切削条件下,测量并比较发动机气缸上的表面粗糙度,侧面和弹坑工具的磨损。结论是,通过选择适当的切削条件,可以将切削力控制在阈值以下,可以缩短循环时间,可以提高刀具寿命和零件质量。因此,可以大大降低汽车发动机镗孔过程的成本。

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