Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: December 2014
Authors: Liang Wang, Bin Zhao, Yao Yao, Ming De Li
Among them, natural polymer materials have been attached great attention.
Experimental Materials.
Journal of Colloid and Interface Science, 2003, 264: 30-38
Journal of Colloid and Interface Science, 2013, 410: 52-58
Journal of Hazardous Materials, 2008, 155: 253-260
Experimental Materials.
Journal of Colloid and Interface Science, 2003, 264: 30-38
Journal of Colloid and Interface Science, 2013, 410: 52-58
Journal of Hazardous Materials, 2008, 155: 253-260
Online since: January 2013
Authors: Tian You Huang, Ji Yu Ma, Jin Wu Kang, Yi Sen Hu
Meek: Materials Science and Engineering A-Structural Materials Properties Microstructure and Processing.
Yan: Journal of Iron and Steel Research.
Li: Journal of University of Science and Technology Beijing.
Song: Journal of Hubei Polytechnic University.
Chen: Journal of South China University of Technology (Natural Science Edition).
Yan: Journal of Iron and Steel Research.
Li: Journal of University of Science and Technology Beijing.
Song: Journal of Hubei Polytechnic University.
Chen: Journal of South China University of Technology (Natural Science Edition).
Online since: January 2013
Authors: Hui Min Xu
Tang [6] used the statistical mechanics to consider inhomogeneity of concrete materials and mechanical properties, and make component materials of the mesoscopic element mechanics properties satisfy the Weibull distribution.
The maximum principal stress criterion and the maximum principal strain criterion are always used to simulate the fracture materials.
Micromechanical modeling of concrete response under static loading-Part 1: Model development and validation, ACI Materials Journal, 1999, 96(2):196-203
Construction and Building Materials, 2002, 16(8): 453-463
Materials Science and Engineering: a, 2009, 499(1/2): 271-274.
The maximum principal stress criterion and the maximum principal strain criterion are always used to simulate the fracture materials.
Micromechanical modeling of concrete response under static loading-Part 1: Model development and validation, ACI Materials Journal, 1999, 96(2):196-203
Construction and Building Materials, 2002, 16(8): 453-463
Materials Science and Engineering: a, 2009, 499(1/2): 271-274.
Online since: February 2014
Authors: You Guo Li
Yarn material is modeled as Kelvin element.
The yarn material model as the Kelvin is considered.
Journal of Sound and Vibration. 2007, 299(1-2): 348-354
Journal of Sound and Vibration. 2005, 284(3-5): 879-891
Journal of Sound &Vibration. 1997, 203(5): 815-832
The yarn material model as the Kelvin is considered.
Journal of Sound and Vibration. 2007, 299(1-2): 348-354
Journal of Sound and Vibration. 2005, 284(3-5): 879-891
Journal of Sound &Vibration. 1997, 203(5): 815-832
Online since: October 2015
Authors: Ajay Vasudeo Rane, Amit Vasudeo Rane, Rane Uday, Nikesh Samarth, Vinayak Kamble, V.K. Abitha
The science and technology of synthetic polymers has undergone explosive growth in the last few decades and the number of different polymeric materials in our built environment increases almost daily.
Materials and Methods 2.1 Materials The Ethylene Propylene Diene Rubber (EPDM) used in this study was supplied by B.P.Chemicals, Mumbai.
Both types of interaction contribute to the reinforcement of polymeric materials.
The formation of chemical bonds in filling materials generates many of their physical properties.
Lopez-Quintanilla, Effect of Nanometric Metallic Hydroxides on the Flame Retardant Properties of HDPE Composites, Journal of Nanomaterials (2014)pp 1-11 [4] Weili Wu, and Lei Tian, Preparation of EPDM Flame-resistant Cable Materials, Applied Mechanics and Materials Vol. 151 (2012) pp 240-244 [5] A.V.Rane, Abitha V K, Study of Mechanical, Thermal and Micro structural Properties of EPDM/Polypropylene/Nano clay Composites with Variable Compatibilizer Dosage, Journal of Materials and Environmental Science, 6 (2015) 60-69 [6] Reza Hashemi Farzad, A.
Materials and Methods 2.1 Materials The Ethylene Propylene Diene Rubber (EPDM) used in this study was supplied by B.P.Chemicals, Mumbai.
Both types of interaction contribute to the reinforcement of polymeric materials.
The formation of chemical bonds in filling materials generates many of their physical properties.
Lopez-Quintanilla, Effect of Nanometric Metallic Hydroxides on the Flame Retardant Properties of HDPE Composites, Journal of Nanomaterials (2014)pp 1-11 [4] Weili Wu, and Lei Tian, Preparation of EPDM Flame-resistant Cable Materials, Applied Mechanics and Materials Vol. 151 (2012) pp 240-244 [5] A.V.Rane, Abitha V K, Study of Mechanical, Thermal and Micro structural Properties of EPDM/Polypropylene/Nano clay Composites with Variable Compatibilizer Dosage, Journal of Materials and Environmental Science, 6 (2015) 60-69 [6] Reza Hashemi Farzad, A.
Online since: November 2020
Authors: Jian Guo Tang, Dong Ni Han, Ze Yuan, Guo Rong Sun, Yao Wang, Qiao Wang, Zhong Yi Hu
Surface Modification of CdSe Quantum Dots/Titanium Dioxide Heterostructures by Conjugated Organic Ligands
Zhongyi Hu, Dongni Han, Qiao Wang, Ze Yuan, Guorong Sun, Yao Wang and Jianguo Tang*
Institute of Hybrid Materials, National Center of International Joint Research for Hybrid Materials Technology, National Base of International Sci. & Tech.
Cooperation on Hybrid Materials, College of Materials Science and Engineering, Qingdao University, 308 Ningxia Road, Qingdao 266071, P.
The TiO2 film of this thickness can fully absorb a sufficient amount of CdSe QDs to ensure sufficient photosensitive materials.
Maximize the absorption capacity of photosensitized materials.
Talapin, The surface science of nanocrystals, Nature materials. 15 (2016) 141-153
Cooperation on Hybrid Materials, College of Materials Science and Engineering, Qingdao University, 308 Ningxia Road, Qingdao 266071, P.
The TiO2 film of this thickness can fully absorb a sufficient amount of CdSe QDs to ensure sufficient photosensitive materials.
Maximize the absorption capacity of photosensitized materials.
Talapin, The surface science of nanocrystals, Nature materials. 15 (2016) 141-153
Online since: August 2014
Authors: Jian Lv, De Ming Zeng, Shu Long Hu, Feng Ying Lu, Hua Shan Liu
The results will facilitate applications of ordered meso-porous materials to high performance composite materials.
Experimental Section Materials.
Turov, A.V Turov: Central European Journal of Chemistry, Vol.5 (2007), P.420-454
Knowles: Microporous and Mesoporous Materials, Vol.186 (2014), P.84–93
Yanglong: Journal of Rare earths, Vol.26 (2008), P. 59-65
Experimental Section Materials.
Turov, A.V Turov: Central European Journal of Chemistry, Vol.5 (2007), P.420-454
Knowles: Microporous and Mesoporous Materials, Vol.186 (2014), P.84–93
Yanglong: Journal of Rare earths, Vol.26 (2008), P. 59-65
Online since: December 2012
Authors: Hong Xia Zhang, Li Xia Fan, Zhe Feng Wang, Pei Lin Yang, Xin Qiu Yu, Yu Xian Chen
The matching design of fashion accessories combined with the patterns, colors, styles, materials, functions and so on.
Materials reflect the basis of shape and color, and different material with the characteristic of itself.
Idea of the shape and material selection.
Acknowledgments This work was financially supported by the research fund from Hangzhou Science & Technology Development Program(20121731P02).
Wu, Hefei University of Technology press (2011), p.9 [2] Q.S.Wu: submitted to Journal of Beijing Institute Of Fashion Technology (2003) [3] J.
Materials reflect the basis of shape and color, and different material with the characteristic of itself.
Idea of the shape and material selection.
Acknowledgments This work was financially supported by the research fund from Hangzhou Science & Technology Development Program(20121731P02).
Wu, Hefei University of Technology press (2011), p.9 [2] Q.S.Wu: submitted to Journal of Beijing Institute Of Fashion Technology (2003) [3] J.
Online since: April 2014
Authors: Yu Ping Ren, Jia Jia Cai, Yu Dong Mei, Feng Cao, Song Li, Gao Wu Qin, Jian Sheng Wang
Zhang, Advanced Materials, 24 (2012) 6199-6203
Domen, Advanced Materials, 25 (2013) 125-131
Fan, ACS Applied Materials & Interfaces, 4 (2012) 2295-2302
Wang, International Journal of Electrochemical Science, 8 (2013) 3721-3730
Ishio, Journal of Materials Science & Technology, 27 (2011) 398-402
Domen, Advanced Materials, 25 (2013) 125-131
Fan, ACS Applied Materials & Interfaces, 4 (2012) 2295-2302
Wang, International Journal of Electrochemical Science, 8 (2013) 3721-3730
Ishio, Journal of Materials Science & Technology, 27 (2011) 398-402
Online since: November 2013
Authors: Evgenii V. Murashkin, Marina V. Polonik
Introduction
The mathematical description of the processes of thermomechanical treatment of contracture materials is faced with the need to consider the elastic properties of materials at all stages of the product life cycle.
Murashkin, On the residual stresses in the vicinity of a cylindrical discontinuity in a viscoelastoplastic material, Journal of Applied Mechanics and Technical Physics. 47(2006) 241-248
Levitas, Large deformation of materials with complex rheological properties at normal and high Pressure, New York, Nova Science Publishers. 1996
[8] Chengyu Jiang, Geng Liu, Dinghua Zhang and Xipeng Xu, Kinematic Modeling and Error Analysis for a 3DOF Parallel-Link Coordinate Measuring Machine, Materials Science Forum. 532-533(2006) 313-316
Bruhns, A thermodynamically consistent Eulerian description of finite elastoplasticity, Key Engineering Materials. 340-341(2007) 787-794
Murashkin, On the residual stresses in the vicinity of a cylindrical discontinuity in a viscoelastoplastic material, Journal of Applied Mechanics and Technical Physics. 47(2006) 241-248
Levitas, Large deformation of materials with complex rheological properties at normal and high Pressure, New York, Nova Science Publishers. 1996
[8] Chengyu Jiang, Geng Liu, Dinghua Zhang and Xipeng Xu, Kinematic Modeling and Error Analysis for a 3DOF Parallel-Link Coordinate Measuring Machine, Materials Science Forum. 532-533(2006) 313-316
Bruhns, A thermodynamically consistent Eulerian description of finite elastoplasticity, Key Engineering Materials. 340-341(2007) 787-794