Skin-core structure
- 网络皮芯结构
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The multifunction magnetic fiber of skin-core structure material is studied .
研究一种具有皮芯结构的磁性纤维材料。
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Effect of Net-shaped and Skin-core Structure on the Evolution of Making High Performance Carbon Fibers
网状和皮芯结构对生产高性能碳纤维组织演变的影响
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The skin-core structure and mechanical property of injection-molded β - form polypropylene
β型聚丙烯注塑件的分层结构与力学性能
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The skin-core structure of the conductive fiber was proved by the optical microscope .
另外采用显微摄影法证明了该导电复合纤维是皮芯层结构。
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Study on the Cross Section Morphology and Skin-core Structure of PAN Fiber in Wet-spinning
湿法纺聚丙烯腈纤维的截面形貌与皮芯结构的研究
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The skin-core structure difference in strength carbon fiber was small , but large in high strength and high modulus carbon fiber .
高强度碳纤维皮芯结构差异小,高强高模碳纤维皮芯结构差异大。
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Effect of Coagulation Bath Conditions on Cross Section and Skin-Core Structure of PAN Nascent Fibers during Wet-Spinning
凝固浴条件对湿纺PAN初生纤维截面形状和皮芯结构的影响
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The skin-core structure in the rayon and its oxidizing fibers is another important feature of the morphological structure for the fibers .
皮芯结构是粘胶纤维形态学结构的另一重要情景。
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PPTA fibre is formed in a dry-wet process of liquid crystal spinning , the fibre so obtained has skin-core structure .
芳纶Ⅱ(PPTA)是采用干-湿法液晶纺丝成形的.这种纤维会产生皮芯结构。
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The SEM photos show that the composite fiber presents skin-core structure and polypyrrole concentrates on the skin which forms conducting passage .
电镜照片显示,复合导电纤维呈现皮芯结构,聚吡咯主要集中在皮层,形成导电通道。
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Polypropylene and polythene bicomponent fibre is skin-core structure , skin layer is low melting point polythene and core layer is high melting point polypropylene .
丙乙双组分复合纤维皮层为低熔点聚乙烯,芯层为高熔点聚丙烯,适宜加工非织造布。
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The images of SEM and TEM indicated that the skin-core structure of PAN precursor fibers was inherited from that of nascent fibers .
SEM和TEM分析表明,初生纤维的皮芯结构会遗传至PAN原丝。
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The different structures of polyaniline obtained under the different reactive conditions are measured by means of infrared spectrum method and the skin-core structure of the coated fiber is proved by the optical microscope .
用傅立叶红外光谱仪测试方法分析了不同反应条件得到的聚苯胺结构的不同,显微摄影法确认了导电纤维是皮芯层结构。
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The mechanical properties of carbon fibers are determined by the structural defects , such as misorientation and dislocation of crystallites , microvoids , skin-core structure and surface defects .
碳纤维是一种缺陷控制材料,其力学性能受控于微晶非取向与错位、孔隙、皮芯、表面损伤等结构缺陷。
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The influence of the composition of PAN , stereo regularity , crystallization and orientation , profile of cross-section and surface , skin-core structure , pore space and flaws on the properties is also discussed .
研究了PAN的组成、立体规整性、结晶结构、取向结构、横截面和表面形态、皮芯结构、孔隙及缺陷等对性能的影响规律;
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The structure and the dyeing property of the regenerated protein fiber are studied in this article . It points out that the regenerated protein fiber is the compound of the cellulose and protein , and pertains to the skin-core structure that protein enwraps the outside of the fiber .
通过研究再生蛋白纤维的成形、结构和染色性能,指出再生蛋白纤维是纤维素和蛋白质混合的一种复合纤维,属于皮芯结构,蛋白质包覆在纤维的外层。
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Study on ' skin-core ' structure of PAN-Based Carbon Fiber Precursor during coagulation
聚丙烯腈初生纤维凝固过程中皮·芯结构的研究