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Sound and light technology in printmaking device
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作者 lihui cai 《International Journal of Technology Management》 2014年第1期102-104,共3页
With the development of sound and light technology, they are increasingly being applied to art exhibitions and creations, and even become an indispensable part of the work of art. Installation art prints are more orna... With the development of sound and light technology, they are increasingly being applied to art exhibitions and creations, and even become an indispensable part of the work of art. Installation art prints are more ornamental interesting, appealing and shocking when being promoted by sound and light technology, but also providing more ideas and methods for creators. The creators but also should pay attention to rational use of sound and light technology to achieve better performance results. 展开更多
关键词 Sound and light technology printmaking device use.
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Fabrication and oxidation resistance of mullite/yttrium silicate multilayer coatings on C/SiC composites 被引量:10
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作者 Qingsong MA lihui cai 《Journal of Advanced Ceramics》 SCIE CAS CSCD 2017年第4期360-367,共8页
A tri-layer coating of mullite/Y_(2)Si_(2)O_(7)/(70wt%Y_(2)Si_(2)O_(7)+30wt%Y_(2)SiO_(5))was prepared on carbon fiber reinforced silicon carbide(C/SiC)composite substrate through dip-coating route for the sake of impr... A tri-layer coating of mullite/Y_(2)Si_(2)O_(7)/(70wt%Y_(2)Si_(2)O_(7)+30wt%Y_(2)SiO_(5))was prepared on carbon fiber reinforced silicon carbide(C/SiC)composite substrate through dip-coating route for the sake of improving oxidation resistance of C/SiC composites.An Al_(2)O_(3)-SiO_(2) sol with high solid content was selected as raw material for mullite,and a slurry of Y_(2)O_(3) powder filled silicone resin was used to synthesize yttrium silicate.The microstructure,phase composition,and oxidation resistance of the coating were investigated.The as-fabricated coating shows high density and favorable bonding to C/SiC substrate.After oxidation at 1400 and 1500℃for 30 min under static air,the flexural strengths of coated C/SiC composite were both increased by~30%.The desirable thermal stability and the further densification are responsible for excellent oxidation resistance.With the additional help of compatible thermal expansion coefficients among substrate and sub-layers in coating,the coated composite retained 111.2%of original flexural strength after 12 times of thermal shock in air from 1400℃ to room temperature.The carbothermal reaction at 1600℃ between free carbon in C/SiC substrate and rich SiO_(2) in mullite resulted in severe frothing and desquamation of coating and obvious degradation in oxidation resistance. 展开更多
关键词 oxidation resistance thermal shock resistance COATINGS MULLITE yttrium silicate C/SiC composites
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