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Research on Properties of Metasilicate Bonded Carbon-free Basic Dry Vibration Mix
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作者 GU Huazhi WANG Houzhi ZHANG Wenjie ZHANG Meijie HUANG Ao 《China's Refractories》 CAS 2010年第3期5-9,共5页
Carbon-free basic dry vibration mix was prepared using middle grade magnesia and fused magnesia as main starting materials,metasilicate replacing phenolic resin as binder,adding a certain amount of medium and low temp... Carbon-free basic dry vibration mix was prepared using middle grade magnesia and fused magnesia as main starting materials,metasilicate replacing phenolic resin as binder,adding a certain amount of medium and low temperature intensifiers. Effects of binder,grain composition,and additives on basic dry vibration mix for tundish were studied,and the bonding mechanism was also analyzed. The results show that:(1) when using metasilicate as binder,the higher strength can be acquired; (2) the suitable grain composition is q=0.48,the critical granularity is 5 or 3 mm,the fines addition is 10%-20% (mass percent); (3) the strength and corrosion resistance of the basic dry vibration mix can be improved by the melting compound of metasilicate and additives; (4) with temperature rising,the bonding type in dry vibration mix changes from cohere bonding to reaction bonding,and then to ceramic bonding at last. 展开更多
关键词 Tundish dry vibration mix Inorganic salt bonding Carbon-free
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Vibration transmissibility characteristics of smart spring vibration isolation system
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作者 倪德 朱如鹏 +2 位作者 陆凤霞 鲍和云 付秋菊 《Journal of Central South University》 SCIE EI CAS 2014年第12期4489-4496,共8页
The objective of this work was to study the vibration transmissibility characteristics of the undamped and damped smart spring systems. The frequency response characteristics of them were analyzed by using the equival... The objective of this work was to study the vibration transmissibility characteristics of the undamped and damped smart spring systems. The frequency response characteristics of them were analyzed by using the equivalent linearization technique, and the possible types of the system motion were distinguished by using the starting and ending frequencies. The influences of system parameters on the vibration transmissibility characteristics were discussed. The following conclusions may be drawn from the analysis results. The undamped smart spring system may simultaneously have one starting frequency and one ending frequency or only have one starting frequency, and the damped system may simultaneously have two starting frequencies and one ending frequency. There is an optimal control parameter to make the peak value of the vibration transmissibility curve of the system be minimum. When the mass ratio is far away from the stiffness ratio, the vibration transmissibility is small. The effect of the damping ratio on the system vibration transmissibility is significant while the control parameter is less than its optimal value. But the influence of the relative damping ratio on the vibration transmissibility is small. 展开更多
关键词 vibration transmissibility characteristics smart spring dry friction stiffness damping vibration isolation base excitation
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Heat and Mass Transfer Enforcement of Vibrating Fluidized Bed
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作者 Chu Zhide Yang Junhong +1 位作者 Li Xuhui Song Yang(Department of Thermal Energy Engineering, Tianjin University, Tianjing 300072, China) 《Journal of Thermal Science》 SCIE EI CAS CSCD 1994年第4期257-262,共6页
This paper briefly introduces the development of vibrating fiuidized bed at home and abroad, elaborates the vibration properties of vibrating fluidized bed, the fluidizing velocity and pressure drop of the bed layer. ... This paper briefly introduces the development of vibrating fiuidized bed at home and abroad, elaborates the vibration properties of vibrating fluidized bed, the fluidizing velocity and pressure drop of the bed layer. It also deduces the non-steady state drying dynamic equations of vibrating fluidized bed,analyzes main factors which influence the drying rate and inquires into drying rules of fixed bed and vibrating fluidized bed. 展开更多
关键词 radiation drying vibrating fluidized drying optimized drying.
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