<Preliminary>The Influence of the Temperature Change Rate on the Humidity Control Effect of Wood
スポンサーリンク
概要
著者
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Morooka Toshiro
Laboratory of Active Bio-based Materials, RISH, Kyoto University
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Norimoto M
Faculty Of Engineering Doshisha University
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Norimoto Misato
Laboratory Of Property Enhancement Wood Research Institute Kyoto University
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HOMMA Yoko
Laboratory of Property Enhancement, WOOD RESEARCH INSTITUTE, KYOTO UNIVERSITY
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Morooka T
Research Institute For Sustainable Humanosphere Kyoto University
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Morooka Toshiro
Laboratory Of Active Bio-based Materials Research Institute For Sustainable Humanosphere Kyoto Unive
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Homma Yoko
Koshii & Co. Ltd.
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NORIMOTO Misato
Wood Physics Section, Wood Research Institute, Kyoto University
関連論文
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- Development of Wooden Eco House Utilizing Natural Building Materials(RECENT RESEARCH ACTIVITIES)
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- Some Mechanical Properties of Wood under Superheated Steam
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- Predicting the humidity control capacity of material based on a linear excitation-response relationship
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- The Influence of the Temperature Change Rate on the Humidity Control Effect of Wood
- Shrinkage Stresses Occurring in the Drying Process of Wood using Superheated Steam
- Modelling the Action of Water on Dynamic Mechanical Properties of Wood
- Three Dimensional Analysis of Elastic Constants of the Wood Cell Wall
- Cell wall thickness and tangential Young's modulus in coniferous early wood
- Transverse shrinkage anisotropy of coniferous wood investigated by the power spectrum analysis
- Elastic and Shrinkage Deformation of the Cell Wall in the Longitudinal Direction
- Dielectric Properties of (Cellulose Oligo-Oxymethylene Ether) Acylates
- On Dielectric Relaxation due to Oxycarbonyl Groups Present in Cellulose Triacylates
- Permanent Fixation of Transversely Compressed Wood by Steaming and its Mechanism
- The Large Compressive Deformation of Wood in the Transverse Direction : Difference of Deformation Pattern due to Species
- Permanent Fixation of Bending Deformation in Wood by Heat Treatment
- Dimensional Change of Wood by Chemical Treatment
- Thermal Softening of Wet Wood in the Temperature Range of 0 to 200℃
- Method of estimating humidity control capacity of materials(RECENT RESEARCH ACTIVITIES)
- Compressive deformation of wood impregnated with low molecular weight phenol formaldehyde (PF) resin V : effects of steam pretreatment
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