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Solid Solution Sm_(1+x)Ba_(2-x)Cu_3O_y and Effect of Quench Temperature on SmBa_2Cu_3O_y

Xianran XING , Zhiyu QIAO , Wenxia YUAN and Shoukun WEI (University of Science and Technology Beijing , Beijing , 100083 , China)(To whom correspondence should be addressed)Xiaolong CHEN , Guanghui RAO and Jingkui LIANG (Institute of Physics , Chinese Academy o

材料科学技术(英文)

By X-ray powder diffraction technique and oxygen content analysis, a solid solution Sm1+xBa2-xCu3Oy has been determined in the range 0≤x≤0.4. When x<0.25. the Sm1+xBa2-xCu3Oy presents orthorhombic symmetry, and the orthorhombic-tetragonaJ transition ocCurs at x = 0.25. With the increase of x, TC decreases and finally breaks. The correlation between ox ygen content and phase structure at different quench temperatures related to Sm Ba2Cu3Oy has been investigated as well

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Damping Behaviour and Mechanism of Graphite Particulate Reinforced Metal Matrix Composites

Yongchang LIU , Gencang YANG and Yili LU(State Key Lab. of Solidification Processing , Northwestern Polytechnic University , Xi'an 710072 , China)Zhengang ZHU(Lab. of Internal Friction and Defects in Solids , Institute of Solid State Physics , Chinese Academy o

材料科学技术(英文)

The effect of graphite particulate reinforcement on the resultant damping behaviour of ZA27metal matrix composites (MMCs) has been investigated in an effort to develop a new functional material. The MMCs were processed by a spray atomization and deposition technique. The damping capacity, as well as the relative dynamic modulus, was measured at frequencies of 1and 4 Hz in the 30 to 200℃ temperature range. There exists a transformation point at 55℃in the internal friction and temperature spectrum of the MMCs. It is shown from microstructural analysis that the damping capacity of ZA27 can be significantly improved by the addition of graphites particulates through spray deposition processing. Finally, the operative damping mechanism is discussed in light of the data obtained from characterization of microstructure and damping capacity.

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