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Online since: October 2012
Authors: Chang Xiao, Huan Feng
On the other hand, the designer should make full use of applicability from all kinds of building materials, even if using the glass, metal or other modern materials, we can also show the modern Chinese style, and through contrasting the modern materials with traditional materials, we will not lack the whole Chinese style and enhance the modern breath at the same time.
For example, the Suzhou Museum, which is designed by Benjamin whom is the world famous architect, and it makes a harmonious docking between the Suzhou residence style and modern building, making a fusion between the ancient oriental civilization and the science and technologies of western modern in harmony.
Innovation is certainly not the copy of the elements oversimplified and changeless, but it is a deep understanding of the Chinese traditional culture and the modern design concepts, and it attaches important to the practicability and appreciation, and using modern materials and techniques to express the interior spaces which have the lasting appeal of tradition, and style.
In household design, the ancient Chinese style mainly use materials of wood and stone in technology of design and production, with the development of science and technology, there are emerging a lot of new technologies, new materials in the modern interior design, and how blend modern materials and modern elements into Chinese style decoration, has become a important symbol that measures whether the new Chinese style design is successful or not at present.
[4] Gang Li and Yueqin Zhao: submitted to Journal of Art and Design (2008).
For example, the Suzhou Museum, which is designed by Benjamin whom is the world famous architect, and it makes a harmonious docking between the Suzhou residence style and modern building, making a fusion between the ancient oriental civilization and the science and technologies of western modern in harmony.
Innovation is certainly not the copy of the elements oversimplified and changeless, but it is a deep understanding of the Chinese traditional culture and the modern design concepts, and it attaches important to the practicability and appreciation, and using modern materials and techniques to express the interior spaces which have the lasting appeal of tradition, and style.
In household design, the ancient Chinese style mainly use materials of wood and stone in technology of design and production, with the development of science and technology, there are emerging a lot of new technologies, new materials in the modern interior design, and how blend modern materials and modern elements into Chinese style decoration, has become a important symbol that measures whether the new Chinese style design is successful or not at present.
[4] Gang Li and Yueqin Zhao: submitted to Journal of Art and Design (2008).
Online since: May 2004
Authors: P.S. Uskoković, R. Aleksić, Lj. Brajović, Z. Mišković, I. Živković
Martin, Smart Materials and.
UskokoviL Advanced Engineering Materials, 3, 492 (2001) [7] P.S.
UskokoviL, Advanced Composite Materials, 9, 175 (2000) [8] S.R.
UskokoviL, Journal of Materials Science Letters, 17, 1589 (1998)
UskokoviL, Materials Science Forum, 282-283, 263 (1998)
UskokoviL Advanced Engineering Materials, 3, 492 (2001) [7] P.S.
UskokoviL, Advanced Composite Materials, 9, 175 (2000) [8] S.R.
UskokoviL, Journal of Materials Science Letters, 17, 1589 (1998)
UskokoviL, Materials Science Forum, 282-283, 263 (1998)
Online since: June 2007
Authors: Nobusuke Hattori, Cong Ling Zhou, Shinichi Nishida
Influence of Tensile Pre-strain on the Torsional Fatigue Crack Behaviors
of a Structural Steel
Congling Zhou1,a , Shin-ichi Nishida1,b and Nobusuke Hattori
1,c
1
Faculty of Science and Engineering, Saga University, Honjo-machi 1, Saga, 840-8502, Japan
azhoucongling@yahoo.com,
b
nishida@me.saga-u.ac.jp,
c hattori@me.saga-u.ac.jp
Keywords: Structural steel, Pre-strain, Plastic deformation, Torsional fatigue, Fatigue strength,
Work hardening, Mode II crack, Crack initiation, Crack propagation
Abstract: Structural steel is widely used in engineering even in nowadays and many new materials
have been developed or are under developing.
Material and Experimental Procedure The test material used in this study is a common structural steel, JIS S45C.
Firstly, the specimens were cut out from round bars (Φ25mm), and then they were normalized (990°C, 2hrs, twice), and the main mechanical properties of the test materials are listed in Table 2.
Fukuda: JSME International Journal, Vol.35 (1992), p. 354
Sun: Advance in Fracture and Strength, Key Engineering Materials, Vol.297-300 (2005), p. 1126.
Material and Experimental Procedure The test material used in this study is a common structural steel, JIS S45C.
Firstly, the specimens were cut out from round bars (Φ25mm), and then they were normalized (990°C, 2hrs, twice), and the main mechanical properties of the test materials are listed in Table 2.
Fukuda: JSME International Journal, Vol.35 (1992), p. 354
Sun: Advance in Fracture and Strength, Key Engineering Materials, Vol.297-300 (2005), p. 1126.
Online since: December 2010
Authors: J.K. Liu, Wei Zhao, Qiu Wei Yang
The uncertain information maybe involves the geometry, material properties, external loads, or boundary conditions of a structure.
Meshless approximations for a scalar function in terms of the material (Lagrangian) coordinates can be written as (5) where is the value vector of the shape function and is the nodal value vector at the particle located around position .
Acknowledgements This work is supported by the National Natural Science Foundation of China (10772202, 10972241 and 11032005), the Fundamental Research Funds for the Central Universities (21610314).
References [1] Z P Qiu, X J Wang, J Y Chen: International Journal of Solids and Structures Vol. 43 (2006), p.6574–6593
Meshless approximations for a scalar function in terms of the material (Lagrangian) coordinates can be written as (5) where is the value vector of the shape function and is the nodal value vector at the particle located around position .
Acknowledgements This work is supported by the National Natural Science Foundation of China (10772202, 10972241 and 11032005), the Fundamental Research Funds for the Central Universities (21610314).
References [1] Z P Qiu, X J Wang, J Y Chen: International Journal of Solids and Structures Vol. 43 (2006), p.6574–6593
Online since: July 2012
Authors: Hai Zhen Chen
Materials: Phenol, chloroform, potassium Hydroxide, methanol, bromophenol blue.
Acknowledgements This work was financially supported by the Scientific Research Fund of Zhejiang Provincial Education Department (Y201009960) and the Natural Science Foundation of Ningbo City (2011A610112).
Journal of Chemical Engineering of Chinese Universities[J].2011, 6:1051-1056
Acknowledgements This work was financially supported by the Scientific Research Fund of Zhejiang Provincial Education Department (Y201009960) and the Natural Science Foundation of Ningbo City (2011A610112).
Journal of Chemical Engineering of Chinese Universities[J].2011, 6:1051-1056
Online since: November 2012
Authors: Chao Da Chen, Si Qing Zhang, Chui Xin Chen
Wiener filter based on the image to blur
Chao Da Chen1,a, Si Qing Zhang2,b, Chui Xin Chen3,c
1Tianhe College of Guangdong Polytechnical Normal University,Guangdong Guangzhou 510540
2 Zhengzhou Institute of Science & Technology Henan zhengzhou 450064
3Tianhe College of Guangdong Polytechnical Normal University,Guangdong Guangzhou 510540
adage1979@126.com, bgugu0769@126.com, ccandy448@126.com
Keywords: Deconvolution, Image restoration, PSF, Autocorrelation function
Abstract.
An improved self-applicable to the image restoration algorithm [J] Computer Engineering,2010,10:213-215 [2]Chao da Chen.Temperature control in agricultural preservation application research[J].he International Journal of Advancements in Computing Technology, 2012,4(1):470-476 [3]Weng Wentian.
Applied Mechanics and Materials , vol.65, pp.332-335, 2011.
An improved self-applicable to the image restoration algorithm [J] Computer Engineering,2010,10:213-215 [2]Chao da Chen.Temperature control in agricultural preservation application research[J].he International Journal of Advancements in Computing Technology, 2012,4(1):470-476 [3]Weng Wentian.
Applied Mechanics and Materials , vol.65, pp.332-335, 2011.
Online since: May 2011
Authors: Shu Kai Zheng
The materials used for preparing TiO2 thin films were tetrabutyl titanate (Ti(OR)4), ethanol absolute (C2H5OH), acetic acid (CH3COOH) and de-ionized water (H2O).
Acknowledgement This work was financially supported by the Natural Science Research Foundation of Hebei University (No.2007-110) References [1] Wonyong Choi, Andreas Termin, Michaael R.
B Vol 187 (2002), p.479 [5] Jin Liguo,Zhou Hong: Journal of Harbin Univ.
Acknowledgement This work was financially supported by the Natural Science Research Foundation of Hebei University (No.2007-110) References [1] Wonyong Choi, Andreas Termin, Michaael R.
B Vol 187 (2002), p.479 [5] Jin Liguo,Zhou Hong: Journal of Harbin Univ.
Online since: June 2014
Authors: Narong Sangwaranatee
Sangwaranatee1,a
1Applied Physics, Faculty of Science and Technology, Suan Sunandha Rajabhat University, Bangkok 10300, Thailand
anarong.sa@ssru.ac.th
Keywords: Thermoelectric module, Waste Heat
Abstract.
Lertsatitthanakorn [4] investigated the feasibility of adding a commercial TE module made of bismuth-telluride based materials to the stove’s side-wall, thereby creating a TE generator system that utilizes a proportion of the stove’s waste heat.
International Journal of Innovations in Energy Systems and Power 2006; 1(1)
Lertsatitthanakorn [4] investigated the feasibility of adding a commercial TE module made of bismuth-telluride based materials to the stove’s side-wall, thereby creating a TE generator system that utilizes a proportion of the stove’s waste heat.
International Journal of Innovations in Energy Systems and Power 2006; 1(1)
Online since: June 2013
Authors: Yue Zhang, Xiang Yu, Lu Lu Guo, Bing Zhao Gao
Acknoledgement
This work is supported by the National Nature Science Foundation of China (61034001, 51005093), the Program for Changjiang Scholars and Innovative Research Team in University (No.
-J. and Wang, X., Parameters design of powertrain system of electric vehicle with two-speed gearbox, Journal of Chongqing University, Vol.34, No.1, Jan.2011.
-Z. and Chen, H., Gear shifting Control for Pure Electric Vehicle with Inverse-AMT, Applied Mechanics and Materials Vols. 190-191 (2012) pp 1286 - 1289
-J. and Wang, X., Parameters design of powertrain system of electric vehicle with two-speed gearbox, Journal of Chongqing University, Vol.34, No.1, Jan.2011.
-Z. and Chen, H., Gear shifting Control for Pure Electric Vehicle with Inverse-AMT, Applied Mechanics and Materials Vols. 190-191 (2012) pp 1286 - 1289
Online since: February 2012
Authors: Qin Qin, Di Ping Wu, Chong Yang He
Research on Genetic Characteristics of Slab
Bulge in Continuous Casting Process
Chongyang He1, a, Diping Wu1, b and Qin Qin1,c
1 School of Mechanical Engineering,
University of Science & Technology Beijing, Beijing 100083, China
ahechongyang0701@126.com, bwudiping@me.ustb.edu.cn, cqinqin@me.ustb.edu.cn
Keywords: FEA; bulge; creep; genetic characteristic
Abstract.
Main parameters of the model are described as follows: Slab’s dimension is 1900mm×250mm Roll pitch (L) is 400mm Shell thickness (H) is 50mm Roll radius (R) is 115mm Material of the model is Q235 Creep model is time-harding creep model [7] Shell’s outer surface temperature (TS) is 1200℃ Shell’s inner surface temperature (TSOL) is 1475℃ Slab withdrawing speed (v) is 0.01m/s The geometry model was shown in Fig.1.
Journal of Northeast Heavy Machinery Institute Vol. 17-3(1992), p.197-202
[6] Wu Diping, Li Jingjing, Qin Qin, et al: Research on creep material models and bulge of cast slab.
Main parameters of the model are described as follows: Slab’s dimension is 1900mm×250mm Roll pitch (L) is 400mm Shell thickness (H) is 50mm Roll radius (R) is 115mm Material of the model is Q235 Creep model is time-harding creep model [7] Shell’s outer surface temperature (TS) is 1200℃ Shell’s inner surface temperature (TSOL) is 1475℃ Slab withdrawing speed (v) is 0.01m/s The geometry model was shown in Fig.1.
Journal of Northeast Heavy Machinery Institute Vol. 17-3(1992), p.197-202
[6] Wu Diping, Li Jingjing, Qin Qin, et al: Research on creep material models and bulge of cast slab.