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Online since: February 2014
Authors: Jia Ren, Ling Tao Zhang, Sheng Ming Chen, Yong Zhong Zhang, Jian Xin Su, Ying She Luo
There exist multi-field coupling effect in prefabricated defects polymer materials under loading.
It is important to understand the rheological properties of such pyromagnetic effect in the loading material with visco-elastic plastic damage, which would be valuable for rational use of materials, design of new materials, production safety, and accident prevention, etc. [1, 2 , 3, 4, 5, 6, 7].
Natural Science Journal of Xiangtan University, Vol.19(3) (1997), p.29-37 (in Chinese) [2] L.W.
Damage theory and its application of prefabricated defects rheological materials (Science Press, Beijing 2001).
Natural Science Journal of Xiangtan University, Vol.24(3) (2002), p. 60-63(in Chinese) [4] Y.Z.
It is important to understand the rheological properties of such pyromagnetic effect in the loading material with visco-elastic plastic damage, which would be valuable for rational use of materials, design of new materials, production safety, and accident prevention, etc. [1, 2 , 3, 4, 5, 6, 7].
Natural Science Journal of Xiangtan University, Vol.19(3) (1997), p.29-37 (in Chinese) [2] L.W.
Damage theory and its application of prefabricated defects rheological materials (Science Press, Beijing 2001).
Natural Science Journal of Xiangtan University, Vol.24(3) (2002), p. 60-63(in Chinese) [4] Y.Z.
Online since: August 2012
Authors: Dong Hui Huang, Hai Tao Zhao, Pan Xiu Wang, Qiao Li, Qing Ning
Multi-scale model support the design of new materials.
The proposed model predicts the aging elasticity of cement-based materials.
Multiscale modeling and simulation of composite materials and structures. 2007, Springer Science Business Media, LLC: New York
"Multi-scale digital-image-based modelling of cement-based materials."
[27] Lackner, R., "Multiscale prediction of viscoelastic properties of asphalt concrete," Journal of Materials in Civil Engineering, Vol. 21, pp.771-780, 2009.
The proposed model predicts the aging elasticity of cement-based materials.
Multiscale modeling and simulation of composite materials and structures. 2007, Springer Science Business Media, LLC: New York
"Multi-scale digital-image-based modelling of cement-based materials."
[27] Lackner, R., "Multiscale prediction of viscoelastic properties of asphalt concrete," Journal of Materials in Civil Engineering, Vol. 21, pp.771-780, 2009.
Online since: December 2013
Authors: Xian Li Liu, Chao Fang, Xiao Wang, Hai Zhong Zheng
[J].Journal of Materials Science.36(2001):5059-5072
Materials Science and Engineering, 2012, A 553:200-203
Materials Science and Engineering, 2008,A496(1-2):524-529
Journal of Materials Science: 2006,4(2):58-59
Journal of Material Science and Engineering. 2012,30(5):710-714
Materials Science and Engineering, 2012, A 553:200-203
Materials Science and Engineering, 2008,A496(1-2):524-529
Journal of Materials Science: 2006,4(2):58-59
Journal of Material Science and Engineering. 2012,30(5):710-714
Online since: May 2011
Authors: Zhi Hui Li, Jun Ping Shi, An Min Tang
Wang: Journal of Experimental Mechanics Vol.18 (2003), p. 440 (In Chinese)
Stephansson: International Journal of Rock Mechanics and Mining Sciences Vol.40 (2003), p. 355 [3]R.
Bruhns: Mechanics of Materials Vol.39 (2007), p. 291 [4]D.L.
Han: Journal of Xi'an University of Technology Vol.18 (2002), p. 22 (In Chinese)
You: Journal of Geomechanics Vol.8 (2002), p. 179 (In Chinese)
Stephansson: International Journal of Rock Mechanics and Mining Sciences Vol.40 (2003), p. 355 [3]R.
Bruhns: Mechanics of Materials Vol.39 (2007), p. 291 [4]D.L.
Han: Journal of Xi'an University of Technology Vol.18 (2002), p. 22 (In Chinese)
You: Journal of Geomechanics Vol.8 (2002), p. 179 (In Chinese)
Online since: July 2013
Authors: Yun Guang Bai, Jian Xiao Liu, Shu Sen Zhao, Hui Qun Yuan, Shen Li
Study on Virtual Material Method for Dynamic Features Analysis of Crank Connecting Rod Mechanism
Shen Li1, a, Yunguang Bai1,b, Jianxiao Liu2,c, Shusen Zhao3,d
and Huiqun Yuan4,e
1School of mechanical Engineering & Automation, Northeastern University, Shenyang, China
2China South Industries Group Corporation guided Air Ammuition Research and Development Center, Changsha, China
3Institute of Semiconductors, Chinese Academy of Sciences, Beijing, China
4College of sciences, Northeastern University, Shenyang, China
aemail: shli@mail.neu.edu.cn, bemail: byg031400@126.com, cemail: neu_ljx0731@163.com,
demail: zhaoshusen@semi.ac.cn, eemail: yuan_hq@163.com
Key words: Anisotropic virtual material method; Virtual material method; ANSYS; Dynamic features
Abstract.
Assuming the virtual materials meet linear elastic material relationship in all directions in order to reduce the calculation parameters.
Journal of North China Institute of Technology, 2005, 26 (2): 107-110
Journal of Materials Processing Technology, 2011, 211(3): 467-474
Journal of Chongqing University of Science and Technology (Natural Sciences Edition), 2010, 12(3): 164-167.
Assuming the virtual materials meet linear elastic material relationship in all directions in order to reduce the calculation parameters.
Journal of North China Institute of Technology, 2005, 26 (2): 107-110
Journal of Materials Processing Technology, 2011, 211(3): 467-474
Journal of Chongqing University of Science and Technology (Natural Sciences Edition), 2010, 12(3): 164-167.
Online since: April 2012
Authors: Hong Tao Guo, Xue Jun Zhang
Research of Simultaneous Measurement of Temperature and Strain of Fiber Optic Cable Material
Xue-jun ZHANG 1, a, Hong-tao GUO2, b
1College of Communication and Electronic Engineering, Hunan City University, Yiyang 413000, China
2Hunan Province Science and technology Agency, Changsha,410083, China
azhangxuejun21th@163.com bGuohongtao21th@163.com
Keywords: fiber optic cable material; simultaneous measurement; temperature
Abstract.
Wang: Journal of Transducer Technology (2001) [2] H.
Jia: Laser Journal (1999) [3] B.Guang: Chinese Journal Lasers(2001) [4] Y.
Qiao: Journal of Optoelectronics.Laser(2010) [7] H.
Deng:Journal of Experimental Mechanics(2009)
Wang: Journal of Transducer Technology (2001) [2] H.
Jia: Laser Journal (1999) [3] B.Guang: Chinese Journal Lasers(2001) [4] Y.
Qiao: Journal of Optoelectronics.Laser(2010) [7] H.
Deng:Journal of Experimental Mechanics(2009)
Online since: April 2011
Authors: Ge Zhang, Yun Fan Zhang, Fei Ma
Gas Diffusivity in Fractal - Characterized Porous Materials
ZHANG Ge 1, a, ZHANG Yunfan 1, b and MA Fei 1, c
1School of Mechanical Engineering, University of Science and Technology Beijing,
Beijing, 100083, China
a zhangger@foxmail.com, byunfanjang@gmail.com, cyeke@ustb.edu.cn
Keywords: porous material; fractal; VOC; diffusion coefficient
Abstract.
However, the materials studied in this paper are all isotropic.
Environmental Science & Technology, Vol. 34 (2000), pp. 4193-4198
Journal of Physics A: Mathematical and General, Vol.39 (2006), pp.151-157
Journal of Catalysis, Vol.102 (1986), pp. 401-418
However, the materials studied in this paper are all isotropic.
Environmental Science & Technology, Vol. 34 (2000), pp. 4193-4198
Journal of Physics A: Mathematical and General, Vol.39 (2006), pp.151-157
Journal of Catalysis, Vol.102 (1986), pp. 401-418
Online since: September 2013
Authors: Teik Cheng Lim
Stress Concentration Factors in Auxetic Rods and Plates
Teik-Cheng LIM
School of Science and Technology, SIM University, Singapore
alan_tc_lim@yahoo.com
Keywords: Auxetic materials; Plates; Rods; Stress concentration factors.
Lakes: Science Vol.235 (1987), p.1038
Lakes: Science Vol.238 (1987), p.551
Lim: Journal of Materials: Design and Applications Vol.227 (2013), p.111
Rouxel: Nature Materials Vol.10 (2011), p.823
Lakes: Science Vol.235 (1987), p.1038
Lakes: Science Vol.238 (1987), p.551
Lim: Journal of Materials: Design and Applications Vol.227 (2013), p.111
Rouxel: Nature Materials Vol.10 (2011), p.823
Online since: September 2013
Authors: Yan Guo Yin, Xiang Nan Jiao, Yun Yun Li, Guo Tao Zhang, Li Guang Yin
Test part
Test materials and preparation.
Materials Science and Engineering A, 2011, 529:275-281
The Chinese Journal of Nonferrous Metals, 2011, 21(5):1038-1044.
Journal of Japan Research Institute for Advanced Copper-base Materials and Technologic, 2002, 41(1):76-80
Materials Science and Engineering A, 2011, 529:275-281
Materials Science and Engineering A, 2011, 529:275-281
The Chinese Journal of Nonferrous Metals, 2011, 21(5):1038-1044.
Journal of Japan Research Institute for Advanced Copper-base Materials and Technologic, 2002, 41(1):76-80
Materials Science and Engineering A, 2011, 529:275-281
Online since: June 2007
Authors: David L. McDowell, Hae Jin Choi, Jitesh Panchal, Ryan Austin, Janet Allen, Farrokh Mistree
Introduction
Traditionally, materials are selected from a materials database in which properties of materials
are tabulated.
Systems-based materials design approach.
The approach is characterized by a confluence of engineering science and mechanics, materials science/physics, and systems engineering.
McDowell: Journal of ComputerAided Materials Design, Vol. 11, Nos. 2-3 (2005), p. 163. 11.
Benson: Journal of Computer-Aided Materials Design, Vol. 12, No. 1 (2005), p. 57. 12.
Systems-based materials design approach.
The approach is characterized by a confluence of engineering science and mechanics, materials science/physics, and systems engineering.
McDowell: Journal of ComputerAided Materials Design, Vol. 11, Nos. 2-3 (2005), p. 163. 11.
Benson: Journal of Computer-Aided Materials Design, Vol. 12, No. 1 (2005), p. 57. 12.