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Influence of combination of compatibilizer and crosslinking agent on the mechanical properties of waste rubber tire powder/LLDPE blends
关键字:Waste rubber tire powder; Liner low density polyethene; Mechanical properties
Results concerning the influence of combination of compatibilizer and crosslinking agent on the mechanical properties of WRT (waste rubber tire) powder/LLDPE (liner low density polyethene) blends are given.
http://www.polymer.cn/research/dis_info4979
 
APPLICATION STUDY ON THE TECHNOLOGY OF SURFACE-MODIFIED ULTRAFINE POWDER WEIGHTING FOR DRILLING AND COMPLETION FLUID
关键字:high density drilling fluid; ultrafine powder; surface modification;rheological behavior;reservior formation protection
With the increased activities in exploiting the deep and ultra-deep reservoirs, the application of high densitydrilling & completion fluid is becoming one of the key technologies to ensure drilling safety.
http://www.polymer.cn/research/dis_info16153
 
Influence of combination of compatibilizer and crosslinking agent on the mechanical properties of waste rubber tire powder/LLDPE blends
关键字:Waste rubber tire powder; Liner low density polyethene; Mechanical properties
Results concerning the influence of combination of compatibilizer and crosslinking agent on the mechanical properties of WRT (waste rubber tire) powder/LLDPE (liner low density polyethene) blends are given.
http://www.polymer.cn/research/dis_info4979
 
Redispersible Cellulose Nano-whisker Powder Prepared by Combining Gel Formation and Supercritical Sc-CO2 Drying
Due to its unique properties, such as high strength, high specific surface area, good biodegradation and easy availability, cellulose nano-whisker has been considered as one type of novel and promising reinforcing agent for natural&nbs...
http://www.polymer.cn/research/dis_info16122
 
The dynamic rheological behavior of polyimide (P84) spinning solution
关键字:P84 powder,spinning solution,dynamic rheological behavior,pseudoplastic fluid
In this research, different contents of P84-NMP solution were prepared. The dynamic rheological behavior of P84 solution was studied by using plate rheometer. Experimental results indicated that the storage modulus G′ and loss modulus...
http://www.polymer.cn/research/dis_info11490
 
sol-gel 法CoTiO3粉体的合成和特征
关键字:CoTiO3;sol-gel;powder
Ultrafine ilmenite CoTiO3 powders were prepared with sol-gel method. DSC pattern of the dried precursor showed only peakat 565.8℃. The effects of preheat treat on the formation and morphology of powders were studied using XRD&nbs...
http://www.polymer.cn/research/dis_info6943
 
preparation of polymer/carbon nanotubes composite powder through a solid state mechanochemical pulverization process
关键字:Carbon nanotubes; Mechanochemistry; Composites
carbon nanotubes (cnt)/polymer composites open up opportunities for new multi-functional materials with broad applications. however, preparation of such materials faces challenges:
http://www.polymer.cn/research/dis_info5379
 
Redispersible Cellulose Nano-whisker Powder Prepared by Combining Gel Formation and Supercritical Sc-CO2 Drying
Due to its unique properties, such as high strength, high specific surface area, good biodegradation and easy availability, cellulose nano-whisker has been considered as one type of novel and promising reinforcing agent for natural&nbs...
http://www.polymer.cn/research/dis_info16122
 
The dynamic rheological behavior of polyimide (P84) spinning solution
关键字:P84 powder,spinning solution,dynamic rheological behavior,pseudoplastic fluid
In this research, different contents of P84-NMP solution were prepared. The dynamic rheological behavior of P84 solution was studied by using plate rheometer. Experimental results indicated that the storage modulus G′ and loss modulus...
http://www.polymer.cn/research/dis_info11490
 
sol-gel 法CoTiO3粉体的合成和特征
关键字:CoTiO3;sol-gel;powder
Ultrafine ilmenite CoTiO3 powders were prepared with sol-gel method. DSC pattern of the dried precursor showed only peakat 565.8℃. The effects of preheat treat on the formation and morphology of powders were studied using XRD&nbs...
http://www.polymer.cn/research/dis_info6943
 
 
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