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Improved Relief Grinding Method of Gear Hob with Equal Relief Angle 被引量:4
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作者 LI Guolong SUN Menghui +2 位作者 LI Xianguang LIU Fei HUANG Chao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2011年第5期842-850,共9页
The regrinding error is the main factor affecting the eligible length of hob tooth,how to decrease the regrinding error is a hot issue in the research area of hob grinding.At present,researches focus on changing the t... The regrinding error is the main factor affecting the eligible length of hob tooth,how to decrease the regrinding error is a hot issue in the research area of hob grinding.At present,researches focus on changing the trajectory of relief moving,because of no unified relief grinding path planning method,the research result is restricted in the practical application.For solving the problem,the calculation model of the hob relief angle is established with the Archimedes relieving motion to analyze the interaction between the increasing relief angle of the hob and the accelerating tooth profile errors.Based on it,the improved relief grinding method of gear hob is proposed with equal relief angle(ERA).Furthermore,the relief grinding method with ERA is developed with the following two steps.Firstly,the convergence numerical solution algorithm of the tooth top curve is designed to form the wheel motion path which is compared with that of traditional grinding.The second step is to establish the solution model of ERA grinding wheel.In order to verify the effect of the method,hob grinding simulation system of 3D solid was built under the AutoCAD environment.The regrinding errors is analyzed by intercepting the hob axial profiles of the various regrinding angles with Boolean operations and further converting it to basic rack tooth,then the simulation example of zero rake straight flute hob is used to compare the regrinding errors between ERA grinding and traditional grinding.Finally,the experiments were implemented on the five-axis CNC relief grinder with the relief motion of ERA grinding driven by cam.The results of experiments show that the method can effectively reduce the regrinding errors of hob and grind expediently gear hob of AA rank and over.This research provide an effective model of relief moving path plan reducing regrinding error,and have practicable value in CNC relief grinder. 展开更多
关键词 gear hob relief grinding grinding wheel regrinding error simulation
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滚刀径向整体铲磨砂轮精确计算 被引量:6
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作者 刘丰林 秦大同 +1 位作者 徐晓刚 陈就 《重庆大学学报(自然科学版)》 EI CAS CSCD 北大核心 2009年第12期1374-1380,共7页
中等模数以下滚刀齿形的全齿面以及齿顶和齿底圆弧要求一次铲磨形成,铲磨砂轮截形需要精确计算。分析滚刀径向铲磨运动,以整体精确铲磨出滚刀设计齿形为目标,依据齿面啮合原理,建立滚刀铲磨砂轮廓形的数学模型。再由砂轮截面廓形及铲磨... 中等模数以下滚刀齿形的全齿面以及齿顶和齿底圆弧要求一次铲磨形成,铲磨砂轮截形需要精确计算。分析滚刀径向铲磨运动,以整体精确铲磨出滚刀设计齿形为目标,依据齿面啮合原理,建立滚刀铲磨砂轮廓形的数学模型。再由砂轮截面廓形及铲磨时砂轮与滚刀的啮合条件,建立滚刀实际铲背曲面模型,并给出滚刀重磨后齿形与理想齿形的偏差计算方法。对一种直槽零前角剃前滚刀、一种螺旋槽零前角圆弧滚刀进行铲背砂轮截形及滚刀重磨误差计算,结果表明该方法精确、有效。可用于计算滚刀径向铲磨砂轮数控修整的时砂轮截形和确定滚刀铲磨工艺参数。 展开更多
关键词 滚刀铲磨 砂轮 重磨误差 数学模型
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