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Department of Polymer Science and Engineering, Yamagata University | 論文
- Uniaxial Elongational Flow Behaviour of SBS Block Copolymer Melts Treated at High Temperature : The Correlation of Crosslinking and Strain-Hardening
- Effect of Ultrasound Frequency on Sonochemical Luminescence under Well-Determined Sound Pressure
- Melt Strength and Extrudate Swell of High-Melt-Strength Polypropylene
- MEASUREMENT OF YOUNG'S MODULUS AND POISSON'S RATIO OF POLYMERS UNDER HIGH PRESSURE
- STRESS RELAXATION OF POLYMER MELTS IN BIAXIAL AND PLANAR ELONGATIONS
- The effect of ultrahigh molecular weight polymers on the nonlinear response in uniaxial elongational viscosity
- Liquid Crystal Droplets Dispersed in Ferroelectric Copolymer of Vinylidene Fluoride and Trifluoroethylene
- Acoustic Holography Using Omnidirectional Copolymer Array Transducer : Ultrasonic Imaging and Microscopy
- Improvement of Mechanical Properties for Poly (L-lactic acid) Film through Drawing Process Optimization
- Structural Change of High-Speed Spun Poly(ethylene 2,6-naphthalene dicarboxylate)Fibers with Annealing (特集 繊維と結晶)
- Novel Electro-responsive Property of Polyether-polycarbamate Solution
- Fine Structure of the Lingual Dorsal Epithelium of the Japanese Toad, Bufo japonicus (Anura: Bufonidae) : Cell Biology
- Effects of Droplet Size and Volume Fraction on Relaxation Modulus of Immiscible Polymer Blends: Inclusion of Interface Velocity Term
- Phase Diagram of the Nematic-Smectic A Transition of the Binary Mixture of Parallel Hard Cylinders of Different Lengths
- Theoretical Study of the Dynamics of the Nematic-Smectic A Phase Transition
- Head-Tail Asymmetry of a Molecule as a Microscopic Origin of the Successive Phase Transitions in Chiral Smectics
- Microwave Enhancement of Elasticity in Poly(propylene)-Carbon Nanotube Composites
- Effects of Microwave Radiation on Proteins Coexisting with Carbon Nanotubes
- Theoretical Tool for Optimum Design of Mixer, and Visualization and Quantification of Mixing Performance
- Unidirectional Alignment of Carbon Nanotube Aggregates Using Friction-transferred Polymeric Films