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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Blade geometry effects on the boring of valve seats of internal combustion engines
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Blade geometry effects on the boring of valve seats of internal combustion engines

机译:叶片几何形状对内燃机气门座镗孔的影响

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摘要

The boring of valve seats of internal combustion engines is done approximately 25 million times per year in Brazil. Excessive vibrations during this operation are common and can adversely affect dimensional and geometrical tolerances of the valve seats. The sealing of the combustion chamber is prejudiced, resulting in loss of power and higher emission of pollutant gases, harming the environment. The raw material of the valve seats is sintered steel of 370-410 HB hardness and is machined with expensive polycrystalline cubic boron nitride blades. In order to avoid the generation of excessive vibration or chatter during machining, operators reduce cutting speed and feed rate, which consequently causes reduction of productivity. In this context, investigation of the process was performed with the objective of minimizing the vibrations during the valve seat boring through changes in the tool holder design and in geometry of the cutting blades. The proposed modifications resulted in a remarkable reduction in magnitude of the resultant cutting force, vibrations, and roundness deviations of the valve seat. Hence, the sealing between the valve and the seat was improved and the emission of gases from the motor could be reduced, with gains in efficiency. The results also showed that the cutting blade edge must have a 60-μm honing, and the best cutting parameters are in the range: cutting speed 80-100 m/min and feed rate 0.04-0.08 mm/rev/tooth.
机译:在巴西,内燃机气门座的镗孔每年大约进行2500万次。在此操作过程中,过度振动是普遍现象,可能会对阀座的尺寸和几何公差产生不利影响。燃烧室的密封受到损害,导致动力损失和污染物气体的更高排放,从而危害环境。阀座的原材料是硬度为370-410 HB的烧结钢,并使用昂贵的多晶立方氮化硼叶片进行机加工。为了避免在加工过程中产生过度的振动或颤动,操作员降低了切割速度和进给速度,从而导致生产率降低。在这种情况下,对工艺进行了研究,目的是通过改变刀架设计和切削刀片的几何形状,将阀座镗削期间的振动降至最低。提出的修改方案显着降低了阀座的切削力,振动和圆度偏差的大小。因此,改善了阀和阀座之间的密封,并且可以减少电动机的气体排放,从而提高了效率。结果还表明,切削刃的边缘必须具有60μm的珩磨,并且最佳切削参数在以下范围内:切削速度80-100 m / min和进给速度0.04-0.08 mm / rev /齿。

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