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玻璃纤维毡增强聚丙烯在压缩模塑流动过程中的纤维分布 被引量:3
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作者 周晓东 潘敏 +1 位作者 孙斌 戴干策 《中国塑料》 CAS CSCD 北大核心 2001年第11期39-42,共4页
通过测定玻璃纤维毡增强聚丙烯经挤压流动后不同区域的纤维含量 ,研究了基体树脂、增强材料的结构与性质、坯料设计、模具温度及坯料的预热温度等对玻璃纤维毡增强聚丙烯在压缩模塑流动过程中纤维分布的影响。结果表明 ,适当提高基体的... 通过测定玻璃纤维毡增强聚丙烯经挤压流动后不同区域的纤维含量 ,研究了基体树脂、增强材料的结构与性质、坯料设计、模具温度及坯料的预热温度等对玻璃纤维毡增强聚丙烯在压缩模塑流动过程中纤维分布的影响。结果表明 ,适当提高基体的粘度及采用多层坯料叠层的坯料设计方法 ,有利于制品内纤维的均匀分布 ;针刺密度适当的连续针刺毡及由短切纤维组成的复合针刺毡与聚丙烯形成的复合材料 (GMT) ,在压缩模塑的流动过程中纤维分布的均匀性较好 ,随着针刺密度的增加 ,纤维分布的均匀性下降 ;用粘结剂粘结而成的连续原丝毡与聚丙烯复合得到的GMT材料 ,纤维分布的均匀性较差 ,经适当针刺以后 ,纤维分布的均匀性得到一定程度的改善 ;过低的模具温度及坯料预热温度 ,会引起材料充模流动能力下降 ,但模具温度及坯料预热温度过高时 ,流动前沿区域的树脂富集现象将加剧。 展开更多
关键词 聚丙烯 玻璃纤维毡增强热塑性聚合物 压缩模塑流动 纤维发布 GMT
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新的挤注模塑工艺在SAN超重塑模成型中的应用
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作者 李建科 《电源技术》 CAS CSCD 北大核心 1992年第5期25-27,30,共4页
关键词 超容量模塑 流动模塑 塑化
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Simulations of Bingham plastic flows with the multiple-relaxation-time lattice Boltzmann model 被引量:4
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作者 CHEN SongGui SUN QiCheng +1 位作者 JIN Feng LIU JianGuo 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第3期532-540,共9页
Fresh cement mortar is a type of workable paste, which can be well approximated as a Bingham plastic and whose flow behavior is of major concern in engineering. In this paper, Papanastasiou's model for Bingham fluids... Fresh cement mortar is a type of workable paste, which can be well approximated as a Bingham plastic and whose flow behavior is of major concern in engineering. In this paper, Papanastasiou's model for Bingham fluids is solved by using the multiple- relaxation-time lattice Boltzmann model (MRT-LB). Analysis of the stress growth exponent m in Bingham fluid flow simulations shows that Papanastasiou's model provides a good approximation of realistic Bingham plastics for values of m 〉 108. For lower values of m, Papanastasiou's model is valid for fluids between Bingham and Newtonian fluids. The MRT-LB model is validated by two benchmark problems: 2D steady Poiseuille flows and lid-driven cavity flows. Comparing the numerical results of the velocity distributions with corresponding analytical solutions shows that the MRT-LB model is appropriate for studying Bingham fluids while also providing better numerical stability. We further apply the MRT-LB model to simulate flow through a sudden expansion channel and the flow surrounding a round particle. Besides the rich flow structures obtained in this work, the dynamics fhi d force on the round particle is calculated. Results show that both the Reynolds number Re and the Bingham number Bn affect the drag coefficients Co, and a drag coefficient with Re and Bn being taken into account is proposed. The relationship of Bn and the ratio of unyielded zone thickness to particle diameter is also analyzed. Finally, the Bingham fluid flowing around a set of randomly dispersed particles is simulated to obtain the apparent viscosity and velocity fields. These results help simulation of fresh concrete flowing in porous media. 展开更多
关键词 Bingham fluids multiple-relaxation-time lattice Boltzmann model tbw profiles drag coefficient
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