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面料性格与服装设计 被引量:2
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作者 杨贤春 《丝绸》 CAS 北大核心 2000年第11期37-38,共2页
从服装材料的角度论述了面料的不同性格及其形成因素 。
关键词 服装面料 服装设计 面料性格
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麻面料在服装设计中的运用 被引量:2
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作者 陶辉 伍雪艳 鄢硕 《艺术科技》 2015年第9期11-12,共2页
本文分析了麻面料的性能特征,指出麻面料在服装设计中的特色和存在问题以及应对方法,同时通过对麻文化的追溯,分析了麻类服装在当下及未来的发展趋势。随着国内消费者对麻面料的逐渐认知,以及消费能力的提升,特别是一些知名服装品牌运... 本文分析了麻面料的性能特征,指出麻面料在服装设计中的特色和存在问题以及应对方法,同时通过对麻文化的追溯,分析了麻类服装在当下及未来的发展趋势。随着国内消费者对麻面料的逐渐认知,以及消费能力的提升,特别是一些知名服装品牌运用麻面料而设计了许多时尚新颖的服装,将极大促进麻面料服饰的消费以及麻面料性能的创新。 展开更多
关键词 面料性格 文化特征 服饰品牌
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Interface,lattice strain and dislocation density of SiC_p/Al composite consolidated by equal channel angular pressing and torsion 被引量:5
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作者 钱陈豪 李萍 薛克敏 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第6期1744-1751,共8页
Powder mixture of pure A1 and oxidized SiC was consolidated into 10% (mass fraction) SiCp/AI composites at 523 K by equal channel angular pressing and torsion (ECAP-T). The interfacial bonding of the composites wa... Powder mixture of pure A1 and oxidized SiC was consolidated into 10% (mass fraction) SiCp/AI composites at 523 K by equal channel angular pressing and torsion (ECAP-T). The interfacial bonding of the composites was characterized by transmission electron microscopy (TEM) and high resolution transmission electron microscopy (HRTEM). The selected area electron diffraction (SAED) for the interface was investigated. The elements at the interface were scanned by energy dispersive spectroscopy (EDS) and the EDS mapping was also obtained. X-ray diffraction (XRD) analysis was carried out for the composites fabricated by 1 pass, 2 passes and 4 passes ECAP-T. According to the XRD analysis, the influences of ECAP-T pass on the Bragg angle and interplanar spacing for AI crystalline planes were studied. The results show that after ECAP-T, the interface between A1 and SiC within the composites is a belt of amorphous SiO2 containing a trace of A1, Si and C which diffused from the matrix and the reinforcement. With the growing ECAP-T pass, the Bragg angle decreases and interplanar spacing increases for A1 crystalline planes, due to the accumulated lattice strain. The increasing lattice strain of A1 grains also boosts the density of the dislocation within A1 grains. 展开更多
关键词 metal matrix composites severe plastic deformation INTERFACE lattice strain dislocation density
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