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纤维及工艺对高膨松性非织造布性能的影响
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作者 任杰 李勇进 hans schreiber 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 1999年第1期111-114,共4页
采用双组分热熔聚酯纤维粘合法制得高膨松性非织造布 ,讨论了所用纤维性能及加工工艺参数对非织造布力学性能的影响 ,并探讨了利用双组分热熔纤维粘合法生产非织造布的工艺参数的选择 ,结果表明对于皮层熔点低的双组分纤维其加工温度范... 采用双组分热熔聚酯纤维粘合法制得高膨松性非织造布 ,讨论了所用纤维性能及加工工艺参数对非织造布力学性能的影响 ,并探讨了利用双组分热熔纤维粘合法生产非织造布的工艺参数的选择 ,结果表明对于皮层熔点低的双组分纤维其加工温度范围较宽 ,而对皮层熔点高的双组分纤维最佳加工温度约比其多 1 5℃ . 展开更多
关键词 高膨松性 非织造布 双组分热熔纤维 撕裂强度
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纤维性能及工艺参数对用双组份聚酯纤维粘合制造的高膨松性非织造布性能的影响
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作者 任杰 李勇进 hans schreiber 《合成纤维》 CAS 1998年第6期3-6,共4页
本文采用双组份热熔聚酯纤维粘合法制得高膨松性非织造布,讨论了所用纤维性能及加工工艺参数对非织布力学性能的影响;并探讨了利用双组份热熔纤维粘合法生产非织造布的工艺参数的选择,结果表明对于皮层熔点低的双组份纤维其加工温度范... 本文采用双组份热熔聚酯纤维粘合法制得高膨松性非织造布,讨论了所用纤维性能及加工工艺参数对非织布力学性能的影响;并探讨了利用双组份热熔纤维粘合法生产非织造布的工艺参数的选择,结果表明对于皮层熔点低的双组份纤维其加工温度范围较宽;而对皮层熔点高的双组份纤维最佳加工温度约比其高15℃。 展开更多
关键词 高膨松性 非织造布 拉伸 强度 聚酯纤维 粘合法
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Influence of Fiber Properties and Processing Parameters on Properties of Highloft Nonwoven Bonded by Bicomponent Polyester Fibers
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作者 任杰 顾书英 hans schreiber 《Journal of Donghua University(English Edition)》 EI CAS 2001年第4期84-87,共4页
Highloft nonwoven was produced by heat bonding of bicomponent polyester fibers. The effect of fiber properties and processing parameters on the mechanical properties of the nonwoven was investigated. The heat bonding ... Highloft nonwoven was produced by heat bonding of bicomponent polyester fibers. The effect of fiber properties and processing parameters on the mechanical properties of the nonwoven was investigated. The heat bonding processing parameters for the nonwoven were optimized. The results show that the range of processing temperature is wider while the shell melting point of the bicomponent fibers (Tm1) is lower. The best processing temperature is about 15℃ higher than Tm1 while the shell melting point (Tm1) is higher. 展开更多
关键词 highloft nonwoven bicomponent POLYESTER fiber tear strength INTERLAYER TEAR FORCE
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TCR–pMHC bond conformation controls TCR ligand discrimination
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作者 Dibyendu KSasmal Wei Feng +10 位作者 Sobhan Roy Peter Leung Yanran He Chufan Cai Guoshuai Cao Huada Lian Jian Qin Enfu Hui hans schreiber Erin JAdams Jun Huang 《Cellular & Molecular Immunology》 SCIE CAS CSCD 2020年第3期203-217,共15页
A major unanswered question is how a TCR discriminates between foreign and self-peptides presented on the APC surface.Here,we used in situ fluorescence resonance energy transfer(FRET)to measure the distances of single... A major unanswered question is how a TCR discriminates between foreign and self-peptides presented on the APC surface.Here,we used in situ fluorescence resonance energy transfer(FRET)to measure the distances of single TCR–pMHC bonds and the conformations of individual TCR–CD3ζreceptors at the membranes of live primary T cells.We found that a TCR discriminates between closely related peptides by forming single TCR–pMHC bonds with different conformations,and the most potent pMHC forms the shortest bond.The bond conformation is an intrinsic property that is independent of the binding affinity and kinetics,TCR microcluster formation,and CD4 binding.The bond conformation dictates the degree of CD3ζdissociation from the inner leaflet of the plasma membrane via a positive calcium signaling feedback loop to precisely control the accessibility of CD3ζITAMs for phosphorylation.Our data revealed the mechanism by which a TCR deciphers the structural differences among peptides via the TCR–pMHC bond conformation. 展开更多
关键词 Bond conformation T cell receptor Single molecule FRET ligand discrimination
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