将耐热合金钢基体进行活化处理后,以Ni Co Cr Al Y为粘接过渡层,采用等离子喷涂法和喷枪快速喷涂工艺相结合制备包覆复合粉体Al_2O_3-Zr O_2/Y_2O_3和未包覆粉体Zr O_2/Y_2O_3的2种不同厚度的热障涂层材料样品,通过涂层的结合强度试验...将耐热合金钢基体进行活化处理后,以Ni Co Cr Al Y为粘接过渡层,采用等离子喷涂法和喷枪快速喷涂工艺相结合制备包覆复合粉体Al_2O_3-Zr O_2/Y_2O_3和未包覆粉体Zr O_2/Y_2O_3的2种不同厚度的热障涂层材料样品,通过涂层的结合强度试验、涂层微观结构和高温隔热试验比较相同厚度的2种陶瓷涂层的结合强度及隔热效果,并探讨涂层厚度与隔热效果的关系。结果表明:采用纳米Al_2O_3包覆Zr O_2/Y_2O_3粉体制备的热障涂层其结构和性能都优于未包覆粉体Zr O_2/Y_2O_3制备的热障涂层,且该热障涂层隔热性能随涂层厚度的增加而提高,温度越高性能优势越明显。展开更多
The P2-type Na_(2/3)Fe_(1/2)Mn_(1/2)O_(2)materials were synthesized by an ultrasonic spray pyrolysis followed by solid-state sintering method.The structures,morphologies and electrochemical performances of Na_(2/3)Fe_...The P2-type Na_(2/3)Fe_(1/2)Mn_(1/2)O_(2)materials were synthesized by an ultrasonic spray pyrolysis followed by solid-state sintering method.The structures,morphologies and electrochemical performances of Na_(2/3)Fe_(1/2)Mn_(1/2)O_(2)materials were characterized thoroughly by means of X-ray diffractometer,scanning electron microscope and electrochemical charge/discharge instruments.Moreover,a thin layer of Al_(2)O_(3),which was formed on the surface of Na_(2/3)Fe_(1/2)Mn_(1/2)O_(2),can enhance the storage performance by preventing the formation of Na_(2)CO_(3)·H_(2)O,which is believed to enhance the electrochemical performances of Na_(2/3)Fe_(1/2)Mn_(1/2)O_(2)materials.This facile surface modification method may pave a way to synthesize advanced cathode materials for sodium-ion batteries.展开更多
文摘将耐热合金钢基体进行活化处理后,以Ni Co Cr Al Y为粘接过渡层,采用等离子喷涂法和喷枪快速喷涂工艺相结合制备包覆复合粉体Al_2O_3-Zr O_2/Y_2O_3和未包覆粉体Zr O_2/Y_2O_3的2种不同厚度的热障涂层材料样品,通过涂层的结合强度试验、涂层微观结构和高温隔热试验比较相同厚度的2种陶瓷涂层的结合强度及隔热效果,并探讨涂层厚度与隔热效果的关系。结果表明:采用纳米Al_2O_3包覆Zr O_2/Y_2O_3粉体制备的热障涂层其结构和性能都优于未包覆粉体Zr O_2/Y_2O_3制备的热障涂层,且该热障涂层隔热性能随涂层厚度的增加而提高,温度越高性能优势越明显。
基金financially supported by the Natural Science Foundation of Hunan Province,China(No.2020JJ5755)the National Natural Science Foundation of China(Nos.51804344,51704332,51874360)the Innovation and Entrepreneurship Project of Hunan Province,China(No.2018GK5026)。
文摘The P2-type Na_(2/3)Fe_(1/2)Mn_(1/2)O_(2)materials were synthesized by an ultrasonic spray pyrolysis followed by solid-state sintering method.The structures,morphologies and electrochemical performances of Na_(2/3)Fe_(1/2)Mn_(1/2)O_(2)materials were characterized thoroughly by means of X-ray diffractometer,scanning electron microscope and electrochemical charge/discharge instruments.Moreover,a thin layer of Al_(2)O_(3),which was formed on the surface of Na_(2/3)Fe_(1/2)Mn_(1/2)O_(2),can enhance the storage performance by preventing the formation of Na_(2)CO_(3)·H_(2)O,which is believed to enhance the electrochemical performances of Na_(2/3)Fe_(1/2)Mn_(1/2)O_(2)materials.This facile surface modification method may pave a way to synthesize advanced cathode materials for sodium-ion batteries.