纤维学会2009春季国际会议论文集

出版时间:2009-5  出版社:东华大学纺织学院 中国纺织出版社 (2009-05出版)  作者:东华大学纺织学院 编  

内容概要

  《纤维学会2009春季国际会议论文集(英文)(套装上下册)》是与2009国际纤维学会年会配套出版的论文集,本次会议由美国纤维学会主办,东华大学协办。论文集共收录了国内外四百余篇关于纺织纤维、材料等方面的最新研究动态及成果论文,分上下两卷,共由9部分组成,分别是高分子及纳米技术,纺织加工技术,印染、后整理和生物技术,医用纺织品,功能和智能纺织品,纺织检测,产业用纺织品,时装设计、纺织史与纺织美学,零售、市场营销与管理。全部采用英文编写,并由IsTP收录。可供从事纺织、纤维材料、印染等行业的科研、教育等相关人士阅读、参考。

书籍目录

Section A  Industrial TextilesFibre- to- fibre Contacts in NonwovensFiltration Behavior of An Original Two - layered Nonwoven GeotextileMechanical Properties of Novel Stitched 3D Hybrid Basalt CompositeMechanical Properties of Novel Different Stitched Density 3D Hybrid Basalt CompositeThe Study on the Air Content of Electrospun Nanofiber Nonwoven FabricDetermine Pore Size Distribution in Nonwoven FabricsMeasurement of the Dynamic Permeability of Airbag FabricsPorous Characteristics of Electrospun PLLA Microfiber/Nonwoven Fibrous Filter Composite MatsLiquid Absorption Properties of Super Absorbent Fiber Based on Acrylic CopolymersSynthesis and Characterization of Sulfonated Polysulfone Proton Exchange Membrane for Fuel CellsStudy of Adhesion Property between PTFE Films and Polypropylene Spunbond Nonwoven MaterialsThe Ageing of Polypropylene Geotextiles under Outdoor EnvironmentScenario Simulations of Nonwoven Webs and FabricsStability Analysis of Nonlinear Transverse Vibration of Paper Making FeltResearch on Shear Performance of Tackified Woven FabricsOptimization of Fibrous InsulationProcessing, Structure and Properties of Melt Blown Poly Lactic Acid Nonwoven FabricsFiltration Performance Optimization of Multi - layered Nonwoven MaterialsThermal Bonding of PolypropyleneImproving Phosphate Glass Fibre Performance in CompositesImproved Performance of Bag Filters Through Fabric Surface ModificationEffct of High Frequency Vibration on the Drawing Behavior of Staple Fiber StrandsHigh - performance Synthetic Ropes for TugsStudy of Physical Characteristics of Industrial Filter BagMorphology Effects on Effective Properties of Multiphase MaterialsSection B  Processing TechnologyAerodynamic Analysis for the Venturi of Pneumatic Yarn Knotting DevicesAnalysis on Tensile Property of Polyester/Cotton/Silk Tri - component Sirofil Composite YarnApplication of an Adaptive Neuro - fuzzy System for Predicting Rotor Spinning Yam Quality PropertiesCharacteristics and Technology Optimizing of Core - spun Yarns on Rotor Spinning FrameDesign and Weaving of the Shape - woven Preform Fabrics Used for Integral Composite Pressure Vessel WindingDifferences in the Structure and Thermal Properties of Natural Colored Cottons and Bombax CottonEffect of Calcium Salt Treatment on the Structure and Properties of Tussah Silk and Mulberry SilkESR Signals from Wool Fibers Treated by DBD PlasmaInvestigation of the Mechanical and Thermodynamic Properties of a Modified PAN Fiber - Fe (III) ComplexNew Development of Whisk Broom Fiber and Its Use in Composite ProductsNumerical Study of Field Strength at Compact Groove in Compact Spinning with Inspiratory GroovePreparation of Cellulose/Soy Protein Isolate Blend Bio - fibers via Direct Dissolving ApproachPreparation of Wool - Fe (III) Complex Catalyst and Its Application in Degradation of Acid BlackResearch on Enzyme Boiling Out and Bleaching Technology Based on Flax RovingSpinability of Demestic New Star Fine Denier Meta - aramid Fibre……

章节摘录

插图:Three-point flexural test resultsAs shown in figure 4, for the deflection alongthe wale direction and course direction, thecomposite PKFW is observed with biggestdeflection among the three composites, which isattributed to the larger deformation subjected tothe flexural load at the center of sample,compared with woven fabric.For the flexural stress along the two directions,composite WFPK is observed with the higherflexural stress than that of composite PKFW, andboth of them are lower along the wale directionand higher in course direction than that ofcomposite WFOK.There exists one difference between flexuralspecific energy along the wale direction andcourse direction. Composite WFPK shows thehigher flexural specific energy than composite WFOK in wale direction and lower in coursedirection, however, Composite PKFW ranksbetween them two along both wale direction andcourse direction.In all the curves including the wale direction andcourse direction, the stair-like deformation trendcan be observed when subjected to the threepoint flexural tests. This exactly represents thefailure process from the beginning to break. Atthe beginning, the sample undergoes one lineardeformation. From then on the slope the curveslows down due to the cracks occurred and grewon the matrix. One sharp drop is observed afterthe peak stress because of the break of wovenlayer with the comparatively lower strain atbreak. The flexural stress increases a littleduring the break of knitting layer reinforcementwhereas some curves show this wholly and somepartly.

编辑推荐

《纤维学会2009春季国际会议论文集(英文)(套装共2册)》:Host by,The Fiber Society, USA,Donghua University, PR China,Organized by,College of Textiles, Donghua University,Key Laboratory of Textile Science and Technology, Ministry of Education, China,Engineering Research enter for Industrial Textiles, Ministry of Education, China,Co-organized by,State Key Laboratory for Modification of Chemical Fibers,Key Laboratory of Science & Technology of Eco-Textiles, Ministry of Education, China,National Engineering Research Center for Dyeing & Finishing of Textiles.

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