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Study on moisture performance of cement stabilized gravel under hydrodynamic pressure
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作者 邱志雄 李智 +1 位作者 刘涛 虞将苗 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2012年第2期47-52,共6页
The start point in this paper is dynamic load damage caused by hydrodynamic pressure to the inside void of cement stabilized macadam base considering the affect of gradation type,testing time and cracking simulation.T... The start point in this paper is dynamic load damage caused by hydrodynamic pressure to the inside void of cement stabilized macadam base considering the affect of gradation type,testing time and cracking simulation.Then the moisture damage rule of cement stabilized macadam was investigated in the lab by using the hydrodynamic pressure simulation device and testing system.Test results shows that the cement stabilized macadam with dense framework structure has better moisture-resistant performance than mixtures with suspend-dense structure.And the strength deterioration is just one-third of origin one when crack in base is loaded by hydrodynamic pressure. 展开更多
关键词 cement stabilized gravel BASE hydrodynamic pressure compressive strength loss rate
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Microcellular injection molding process for producing lightweight thermoplastic polyurethane with customizable properties 被引量:2
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作者 Thomas ELLINGHAM Hrishikesh KHARBAS +2 位作者 Mihai MANITIU Guenter SCHOLZ Lih-Sheng TURNG 《Frontiers of Mechanical Engineering》 SCIE CSCD 2018年第1期96-106,共11页
A three-stage molding process involving microcellular injection molding with core retraction and an "out-of-mold" expansion was developed to manufacture thermoplastic polyurethane into lightweight foams of varying l... A three-stage molding process involving microcellular injection molding with core retraction and an "out-of-mold" expansion was developed to manufacture thermoplastic polyurethane into lightweight foams of varying local densities, microstructures, and mechanical properties in the same microcellular injection molded part. Two stages of cavity expansion through sequential core retractions and a third expansion in a separate mold at an elevated temperature were carried out. The densities varied from 0.25 to 0.42 g/cm3 (77% to 62% weight reduction). The mechanical properties varied as well Cyclic com- pressive strengths and hysteresis loss ratios, together with the microstructures, were characterized and reported. 展开更多
关键词 thermoplastic polyurethane microcellularinjection molding cavity expansion compressive strength hysteresis loss ratio
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