The fabrication processing of unidirectional short carbon and Nicalon fiberreinforced LAS composites was investigated.
研究了短纤维增强玻璃陶瓷基复合材料制备工艺中的短纤维分散和单向纤维预浸片制备。
The fabrication processing of unidirectional short carbon and Nicalon fiberreinforced LAS composites was investigated.
研究了短纤维增强玻璃陶瓷基复合材料制备工艺中的短纤维分散和单向纤维预浸片制备。
Ordered mesoporous silicas and its hybrid materials could open the door for new stationary phase of chromatography.
摘要系统地介绍了有序介及其复合材料的研究进展。
Complex analysis of anisotropic elasticity indicates that the degree of anisotropy (orthotropy) is characterized by two basic complex parameters.
正交各向异性可以表征复合材料的各向异性特征。
A boundary layer theory of shell buckling,which includes the effects of nonlinear prebuckling deformations, large .
将壳体屈曲的边界层理论推广到复合材料层合剪切圆柱曲板受侧压作用的情况。
Ultrasonic testing using the through transmission squirter technique remains the predominant method of inspection of composite materials.
超声波探伤法用的是穿透传输喷水术也是复合材料检测的主要方法。
PP and PA6 were blended and extruded with a single screw extruder, PA6 could fibrillated in the matrix.
以聚丙烯为基体、尼龙6为分散相共混得到分散相成纤的原位复合材料。
The composites with interpenetrating networks have good structure homogeneous and performance; also their mechanics, calorifics and tribology arc excellent.
网络互穿结构复合材料的组织结构及性能均匀性较好,具有优良的力学、热学和摩擦学性能。
Through to introduce equipments of vertical shaft the cautery ,compendiary introduce insufficiency of electricity-arc spray-paint to prevent cauterization.
对竖井井筒装备的腐蚀情况和电弧喷涂长效防腐术不足的了解,建议采用玻璃钢复合材料井筒装备来解决井筒装备的腐蚀问题。
Owing to the advantages of designability and weight reduction,the unsymmetric composite has got more and more concerns in recent years.
为了充分发挥复合材料的可设计性和减重作用,近年来不对称铺层复合材料受到了越来越多的关注。
By means of cyanoethylation and chlorination,wood sawdust was converted into thermoplastic material and then compounded with short sisal fibers.
氰乙基化反应,使木粉转化成为热塑性材料,再与短切剑麻纤维混合,热压制得植物纤维增强塑化植物纤维基复合材料。
The present work focuses on the microscopic elastoplasticity deformation andoverall elastoplastic behaviour of metal matrix composites reinforced by short fibers.
本文研究单向短纤维增强金属基复合材料的细现弹塑性变形和宏观弹塑性响应。
The material is pervaded with va rious performances of light weigh so und absorption,heat preservation,insulation,hig h-temperaure resistance,corrosio n resistance,noninflammability an d antibiosis.
该材料具有重量轻、吸音、保温、绝缘、耐高温、耐腐蚀、不燃优良特性,尤其具有良好的抗菌作用,是一种高性能的节能型的复合材料。
Since a mutual diffusion between adhesive layer and matrix and a innerstress on interfaces exist,there is a optimal thickness of adhesive layer in composites.
由于聚合物粘接层和基体聚合物的相互扩散以及界面内应力的存在,复合材料中存在一个最佳的聚合物粘接层。
It uses the high strength helenienne,weaving the grid gray cloth after the warp knitting of longitude and latitude direction,and through overlaying and processingprocesses to making geogrid.
玻璃纤维土工格栅、塑料土工格栅、经编涤纶土工格栅、钢塑土工格栅、土工布、高强度土工网、工程纤维及多种新型复合材料。
As a new kind of material, composite has the advantage of designable, the designable parameters include the type of the fiber and matrix, the percent of the volume, the direction of the laminate, etc.
复合材料作为一种具有复杂结构的新型材料,其主要优点和特点在于其内部结构可设计性。
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