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Effects of Al particles and thin layer on thermal expansion and conductivity of Al-Y_2Mo_3O_(12) cermets
Institution:1. Henan Key Laboratory of Photovoltaic Materials and Laboratory of Low Dimensional Materials Science, School of Physics and Electronics, Henan University, Kaifeng 475004, China;2. School of Physical Science & Engineering and Key Laboratory of Materials Physics of Ministry of Education of China, Zhengzhou University, Zhengzhou 450051, China;3. Zhongyuan University of Technology, Zhengzhou 450007, China
Abstract:Low thermal expansion composites are difficult to obtain by using Al with larger positive thermal expansion coefficient(TEC) and the materials with smaller negative TECs. In this investigation, Y_2Mo_3O_(12) with larger negative TEC is used to combine with Al to obtain a low thermal expansion composite with high conductivity. The TEC of Al is reduced by 19%for a ratio Al:Y_2Mo_3O_(12) of 0.3118. When the mass ratio of Al:Y_2Mo_3O_(12) increases to 2.0000, the conductivity of the composite increases so much that a transformation from capacitance to pure resistance appears. The results suggest that Y_2Mo_3O_(12) plays a dominant role in the composite for low content of Al(presenting isolate particles), while the content of Al increases enough to contact each other, the composite presents mainly the property of Al. For the effect of high content Al, it is considered that Al is squeezed out of the cermets during the uniaxial pressure process to form a thin layer on the surface.
Keywords:negative thermal expansion  low thermal expansion  conductivity  composite  
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