Fundamental studies on enhancing heat transfer in contact zone during high efficiency grinding

来源 :Science in China(Series E:Technological Sciences) | 被引量 : 0次 | 上传用户:lllwan1
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On the basis of research on the thermal effect in grinding contact zone during high efficiency grinding, an idea of enhancing heat transfer in contact zone using high pressure water jet impinging is advanced. Fundamental heat transfer experiments on enhancing heat transfer with high pressure water jet impinging were completed. The maximum speed of jet impinging reaches 110m/s. The experimental results of transient and steady-state experiment prove that the critical heat flux and the heat-transfer coefficient of water jet impinging are 70 and 30 times those of the pool boiling, respectively. Furthermore, a new grinding fluid supply system was employed to enhance heat transfer in grinding zone by high-pressure water jet impingement during creep feed grinding. The experimental results show that high-pressure water jet impinging has remarkable cooling effect. The temperature of the workpiece surface can be steadily kept below 100℃, while the workpiece is badly burnt with conventional coolant supply. The stu On the basis of research on the thermal effect in grinding contact zone during high efficiency grinding, an idea of ​​enhancing heat transfer in contact zone using high pressure water jet impinging is advanced. Fundamental heat transfer experiments on enhancing heat transfer with high pressure water jet impinging The maximum speed of jet impinging reaches 110 m / s. The experimental results of transient and steady-state experiment prove that the critical heat flux and the heat-transfer coefficient of water jet impinging are 70 and 30 times those of the pool boiling , respectively. a new grinding fluid supply system was employed to enhance heat transfer in grinding zone by high-pressure water jet impingement during creep feed grinding. The experimental results show that high-pressure water jet impinging has remarkable cooling effect. The temperature of the workpiece surface can be steadily kept below 100 ℃, while the workpiece is badly burnt with conventional coo lant supply. The stu
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