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Effect of Heat-Insulating Layer Thickness on Melting Rate of Ice Fixed Abrasives Polishing Pad 被引量:1

Effect of Heat-Insulating Layer Thickness on Melting Rate of Ice Fixed Abrasives Polishing Pad
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摘要 The formula of the thickness of the heat-insulating layer is deduced via heat transfer analysis,according to the principle of heat transfer in limited space.Polishing experiments are carried out using the same technological parameters.Compared with the polishing experimental results,the heat transfer model is proved to be correct.As validated by the experimental results,polyurethane heat-insulating layer can effectively improve the service life of the ice fixed abrasive pad and alleviate the melting rate in the polishing process to improve the polishing quality proposed.The heat transfer model provides theoretical basis for research of temperature field of ice fixed abrasive polishing. The formula of the thickness of the heat-insulating layer is deduced via heat transfer analysis,according to the principle of heat transfer in limited space.Polishing experiments are carried out using the same technological parameters.Compared with the polishing experimental results,the heat transfer model is proved to be correct.As validated by the experimental results,polyurethane heat-insulating layer can effectively improve the service life of the ice fixed abrasive pad and alleviate the melting rate in the polishing process to improve the polishing quality proposed.The heat transfer model provides theoretical basis for research of temperature field of ice fixed abrasive polishing.
出处 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2015年第4期415-420,共6页 南京航空航天大学学报(英文版)
基金 supported by the National Natural Science Foundation of China(No.51375237) the Natural Science Foundation of Jiangsu Province(No.BK2012796) the Scientific Research Start Project of Talent Introduction of NUAA(No.1005-56YAH)
关键词 ice fixed abrasive heat-insulating layer unsteady-state conduction ice fixed abrasive heat-insulating layer unsteady-state conduction
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