Papers by Author: Guo Chao Qiao

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Abstract: Based on the Kinematic analysis, the indentation fracture mechanics is used to build a force model of ultrasonic vibration mill-grinding. To verify the force model, experiments are carried out for silicon nitride ceramics with various machining parameters, meanwhile grinding forces are measured. Finally, comparison between predicted results with experimental results is presented.
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Abstract: An experimental investigation is reported of the temperature measurement for ultrasonic vibration mill-grinding of silicon nitride with infrared thermovision. The effects of machining parameters such as spindle speed, feed speed, cutting depth on the surface temperature of workpiece were investigated and the reasons for the trend of temperature changes were analyzed. From the analyses, it indicates that infrared imager technology is suitable for temperature measurement in ultrasonic vibration mill-grinding of ceramics and tool wear has an important effect on the measurement results.
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Abstract: In order to investigate the influences of machining parameters on surface roughness in ultrasonic vibration mill-grinding, the motion of abrasive grain is analyzed. The analysis indicates that grain and workpiece separate periodically which are beneficial for coolant entering into grinding zone to reduce grinding temperature and grinding force and improve surface quality. Experiments are carried out and detected by SEM and roughmeter, the results indicate that influences of spindle rate, feeding speed, cutting depth and amplitude decrease in turn. Through regression analysis, an empirical formula is obtained. The experiments indicate that material removal mode dominates surface roughness.
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