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Soochow University & Textile and Clothing Engineering School
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Overview of Soochow University Main Research Area Overview of School Education system of school
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Soochow University was founded in 1900 and developed greatly during past one century. 1. Introduction of Soochow University
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Located in the ancient city of Suzhou known as " Paradise on Earth“ in China. There are 7 campuses in the university Key comprehensive university in Jiangsu Province One of top 100 universities under the “Project 211” directed by the Education Ministry of China.
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25 schools 111 undergraduate programs 244 master programs 21 professional master degree programs 167 doctor programs and 20 post-doctoral programs Disciplinary development and Scientific Research
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4 national key disciplines 6 provincial primary key disciplines 22 provincial key disciplines. 1 national engineering laboratory 1 incubator for national key laboratory 3 national public service platforms 2 national experimental teaching demonstration centers 24 provincial laboratories and engineering centers.
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25,873 undergraduate students 10,214 postgraduate students more than 12,638 part time students. More than 1000 international students. more than 50,000 students are studying at Soochow University :
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2112 Full-time teachers 381 Professors 636 Associate professors 741Lecturers 3 Members of the China Academy of Engineering 174 Doctor program supervisors 559 Master program supervisors 51 Researcher 415 Laboratory Technicians and Librarians more than 4000 academic staffs in University :
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196 master programs 10 professional master degree programs 72 doctor programs and 6 post-doctoral programs 10,214 postgraduate students The academic programs cover almost all disciplines of learning. 2. Introduction of Graduate School
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Departments : Textile Engineering Dying and Finishing Clothing Design and Engineering Non-Woven Engineering 2. College of Textile & Clothing Engineering
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Staff and Student: Full time staffprofessor Associate professor 902125 Undergraduate students Postgraduate students masterPhD 111524542
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Key disciplines and degree programs Name of disciplinesGrade Degree level Textile EngineeringNational key disciplinePh.D Textile Materials and Textiles Design Provincial primary discipline Ph.D Textile Chemistry and Dyeing & Finishing Engineering Provincial primary discipline Ph.D Clothing Engineering and Design Provincial primary discipline Ph.D
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Scientific Research and Teaching Platform National Engineering Laboratory for Modern Silk (approved by the National Development and Reform Commission in 2008) State Level Experimental Teaching Demonstration Center of Textile and Apparel Design (approved by The Ministry of Education in 2009) Key Laboratory of Jiangsu Provincial Silk Engineering (approved by The Provincial Education Department of Jiangsu in 1998)
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Suzhou silk technology development center (approved by The Provincial Department of Science and Technology of Jiangsu in 2008) Research Center of Jiangsu Province Energy Saving and Emission Reduction Clean Production Engineering in Textile and Dyeing & Printing (approved by The National Development and Reform Commission of Jiangsu Province in 2009) Jiangsu provincial Innovation experiment base for talent fostering mode (approved by The Provincial Education Department of Jiangsu in 2010)
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Instruments and Equipment
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Textile Science & Engineering 3. Textile & Clothing Engineering Education system Professional system Graduate programs undergraduate programs Textile Engineering Textile Materials and Textiles Design Textile Engineering Textile Chemistry and Dyeing & Finishing Apparel Design and Engineering Light Chemistry Engineering Apparel Design and Engineering Nonwoven Material and Engineering International program for textile engineering
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Textile science and engineering Textile Engineering textile material & design Textile Chemistry and Dyeing & Finishing Clothing design & engineering academic master professional master Master of Engineering Ph.D Sectional disciplines Training system Graduate training mode
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4. Main Research Areas Silk Biology Engineering Eco-Textiles Development Functional Textile and Clothing Silk Protein for Medical Uses Nano-Fiber Composite Material Digital Pattern Design and Weaving
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Silk Biology Engineering 1.Improvement of silk quality by use of titanium oxide and rare earth elements. 2.Fluorescence distinguishable cocoon variety. 3.Genetic operation platform and protein molecular design for silkworm. 4.Environmental friendly degumming solution and recyclable sericin protein. 5.Genetic-base of silk worm and high quality silk development.
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Cocoon under white light Cocoon under Fluorescence light
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Expression profile of genes across GeneChip hybridization
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protein molecular design and silk worm cultivation 1.Innovation of breeding technology for advanced silk worm cultivation. 2.Integration and application of ecotypic silk worm cultivation system. 3.Critical gene in the diapause of silkworm, Bombyx mori 4.Varaiations of hydrogen peroxide and catalase expression in Bombyx eggs during diapause initiation and termination 5.Variation in glutathione status associated with induction and initiation of diapause in eggs of the bivoltine strain of the silkworm Bombyx mori.
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Colored cocoon and silk products
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Textile Mechanics 1.Bubble spinning. 2.Minimized resistance of swimming wear. 3.Textiles used in critical environment. 4.Porous textile for traffic. 5.Effect of temperature on metabolic rates of virus and host cells,
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A New Device for Single Bubble Electrospinning
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principle of sandbank and shark skin used for minimized resistance swimming wear
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1. Degradation mechanism and control of silk fibroin. 2. Silk fibroin electrogelation mechanisms. 3. Surface immobilization of antibody on silk fibroin through conformational transition. 4. Mechanisms and control of silk-based electrospinning. 5. Nanoscale Control of Silks for Porous Scaffold Formation. Silk self-assembly mechanism and control
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Fresh silk fibroinConcentrated 5 days scaffold Freeze drying
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1. Enzymatic Degradation of Silk Fibroin 3D Scaffolds and Fibers. 2. Preliminary Biocompatibility of Regenerated Silk Fibroin. 3. The Influential Factors on the Gelation Velocity and Structure of Silk Fibroin. 4. Preparation of braided silk as a tubular tissue engineering scaffold. 5. Effects of Gamma Irradiation on The Structure and Mechanical Properties of Wild Silkworms and Bombyx Mori Silk Fibroin Films Silk Fibroin for Medical Materials
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Multichannel Silk Fibroin Material
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Silk fibroin/PCL minor-caliber tube
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Silk Fibroin Wound Repair Membrane
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Advanced Fibers and Products 1. Effect of spinning conditions on the mechanical properties of nanofiber filaments 2. Nanocomposites Preparation for Spinningd 3. Electrospinning technology and mechanical properties of spidroin/PLLA nano-scale fiber mat 4. Hydrophilic modification of electrospun polysulfone fiber mat 5. Microstructure and properties of polypropylene/glass fiber composites grafted with poly(pentaerythritol triacrylate 6. Reinforcement of electrospun nonwovens
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Grafting modification of polypropylene
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Finishing and Chemicals for Functional Textiles 1.Functional finishing Processes for Textiles. 2.Non-isothermal crystallization kinetics of Kaolin modified polyester 3.Nano material applied in silk dying and finishing. 4.Hemicyanine -Based Polymers 5.Preparation, structure and properties of multi- functional silk. 6.electrospun fluorescent nanofiber webs doped with hemicyanine dye
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Polyurethane treated textile composite
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Fabric and clothing Dyed and Finished from Microcrystal material
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1. Substitute water by CO 2 liquid for textile dying processes. 2. The key technology of production and dying machinery of Water –free Eco-dying progress. Water –free Eco-dying
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The fabric produced by Water –free Eco-dying process The machine developed for Water –free Eco-dying process
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1. Dying and finishing processes for Silk mixed polyester, polyamide, cotton and other man-made fiber fabrics were developed. 2. Low temperature pre-dying process. 3. Technology of Multi-color dying, color changeable silk dying, color control dying 4. Agents and techniques for functional finishing. Dying & Finishing of Multi-fiber Fabric
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Clothing made from Multi-fiber Fabric
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Textile Design and Production 1. Textile pattern design based on multi-rules. 2. Composition and explicit/implicit effect of woven texture. 3. Prediction model of regional fabric price. 4. Recognition of fabric structures. 5. High speed shuttleless loom devices
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Portable Environment and Functional Clothing 1. The Measurement and Analysis of Clothing Pressure, 2. Evaluation on Heat-moisture Comfort Performance of Knitted Underwear 3. Mechanical interaction between clothing and human body 4. Performance of Electromagnetic Protective Clothing 5. Correlation between Body Measurement Data and Pattern Plate Data
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Effects of fabric shear load on blood velocity
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SE measurement for clothing
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