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Online since: July 2011
Authors: Hui Wang, Shu Long Zheng, Qi Tang
And the temperature of the contact materials is set for room temperature T0.
Fig.3 is the contact surface temperature differences between human body and the materials.
Fig. 3 Contact surface temperature Fig. 4 Contact surface temperatures and the differences of the materials temperature differences of the materials at 22 ℃{TTP}8451 Fig. 4 displays contact surface temperatures and the temperature differences for human body contacted with different materials at 22 ℃{TTP}8451 .
(Applied Science Publishers Ltd., London 1976) [5] J.M.
Zi: Journal of Clinical Electroneurophysiology Vol. 12 (2002), p. 224-226 Chinese
Online since: October 2014
Authors: Yuan Liang, Dan Huang, You Qing Liu, Xiang Mao
Acknowledgements This work was financially supported by Graduate Student Innovation Fund of Sichuan University of Science &Engineering(26), The Breeding Program of Sichuan University of Science &Engineering (2013PY08).
[3]Zhou Ping, Lv Xiao-ling ,  Yao Xiu-ling: Journal of Tianjing University of Science & Technology, 2007,22(2): 72~75, In Chinese
[4]Huang Wei: Chinese Journal of Spectroscopy Laboratory, 2008, 25(4): 714~717, In Chinese
[5]Xing Junbo, Li Huijun, Li Ping: Chinese Journal of Modern Applied Pharmacy, 2002,19(3): 169, In Chinese
[6] Du Gui cai, Wang Su-jun, Yang Hong: Journal of Qingdao university, 2003,18(4): 67~69, In Chinese.
Online since: September 2013
Authors: Narendra Girase, Supriya Sarkar, Olle Wijk, Palla V. Sivaprasad
Stainless steels of different types and grades are being developed world over to meet ever increasing demand for enhanced materials performance.
A robust manufacturing programme demands a comprehensive understanding of both the materials and the related manufacturing processes.
It is important to understand the possibility of extrusion of two different materials together for making compound tube.
Brian Thomas, Metallurgical and Materials Transactions B, 33b (2002) 795 [3] Lang Yuan, Georgi Djambazov, Peter D.
Journal of Powder Metallurgy 42 (2006) 23-32
Online since: November 2012
Authors: Guo Liang Liu, Jian Feng Li, Li Qin Wang
Research on Simulation Data Management of Complicated Mechanical Product Jianfeng Li1, a, Guoliang Liu1, b and Liqin Wang2, c 1 Luoyang Institute of Science and Technology, Louyang Henan 471023, China 2 China Airborne Missile Academy, Louyang 471009, China ajevonslivip@163.com, bmrlgl@163.com, cwangliqin0629@sina.com Keywords: collaborative simulation; complicated product; simulation data management; simulation process; visualization Abstract.
In domestic aspect, with continuous in-depth application of simulation technology, many colleges and universities, research institutions and CAE software company also has engaged on active research and exploration of simulation data management; some results have been produced, for example, under the joint development of China Aerospace Science & Industry Corp., Tsinghua University, as well as Beihang University, a HLA-based multidisciplinary collaborative simulation platform-CoSim system can partly realize the simulation data management functions.
References [1] Kumar, Rupesh; Allada, Venkat, International Journal of Production Research, v45, n24, p5687-5714, December (2007) [2] Li Jia, Yang Yunbin, Wei, Fayuan, Advanced Materials Research, v466-467, p1135-1139, (2012) [3] Lim, Soon, Chong Johnson, Advanced Engineering Informatics, v25, n2, p147-161, April (2011) [4] Tao Jing ,Wu Qing-Ming, Sun Chuan ,Journal of Shanghai Jiaotong University (Science), v14, n6, p720-724, December (2009) [5] Danchevskaya, M.N., Ivakin, Journal of Materials Science, v41, n5, p1385-1390, March (2006) [6] Wang Hong-Wei, Zhang He-Ming, Computer Integrated Manufacturing Systems, v15, n1, p12-20, January (2009) [7] Information on http://www. siemens-home.cn/
Online since: September 2013
Authors: Kui Dong Huang, Hua Zhang, Kun Bu, Liang Zhang
Mao: Chinese Journal of Scientific Instrument Vol. 26 (2005), p. 157-163
Hu: Journal of Chongqing University of Posts and Telecommunications (Natural Science) Vol. 19 (2007), p. 745-747
Yu: Applied Mechanics and Materials Vol. 229-231 (2012), p. 1858-1861
Zha: Journal of Northwestern Polytechnical University Vol. 29 (2011), p. 68-73
Zhang: Applied Mechanics and Materials Vol. 229-231 (2012), p. 1819-1822.
Online since: February 2013
Authors: Hua Guang Li, Hua Liu, Jie Sun, Su Liu
Materials Main materials.
Sposknikovan was made in our Life Science Research Center.
Acknowledgements This work was financially supported by Hebei Education Department (Z2010224) and Zhangjiakou Science and Technology Board (0801006D).
References [1] Gao Yongli.Journal of Shanxi Medical University,2004;35(2):216-218.In Chinese [2] Xu Xiaofei,Jiang Li,Tang Jian,et al.
Information on Traditional Chinese Medicine,2003;20(4):23.In Chinese [4] Li Li,Zhou Yong,Zhang Li,et al.Journal of Beijing University of Traditional Chinese Medicine,1999;22(3):38-40.In Chinese [5] Liu Hua,Tian Jiaming,Sun Li,et al.Chinese Journal of Tissue Engineering Research,2008, 12(18): 3475-3478.In Chinese [6] Ariel A, Timor O.
Online since: May 2014
Authors: Wan Rosli Wan Sulaiman, Mohd Johari Kamaruddin, Ramli Mat, Anwar Johari, Asmadi Ali, Mohamad Awang
Polymer blend is a simple and efficient method for designing new materials to improve performance of the hydrophobic membranes.
Materials and Methods Materials.
All materials used were of analytical grade.
Madaeni, Polyethersulfone (PES)/cellulose acetate phthalate (CAP) blend ultrafiltration membranes: preparation, morphology, performance and antifouling properties, Journal of Membrane Science. 305 (2007) 299-312
European Polymer Journal. 40 (2004) 751-762.
Online since: May 2014
Authors: Jorge Fernandez Dos Santos, Paul A. Colegrove, Hua Wang
Science and Technology of Welding and Joining, 2003. 8(3): p. 165-174
Science and Technology of Welding and Joining, 2007. 12(4): p. 324-333
Science and Technology of Welding and Joining, 2007. 12(4): p. 284-297
Proceedings of 4th International Friction Stir Welding Symposium, 2003(Journal Article)
Suxing Gongcheng Xuebao/Journal of Plasticity Engineering, 2008. 15: p. 284-197.
Online since: June 2017
Authors: Hui Jiang, Yi Ping Lu, Xiao Xue Chang, Dong Xu Qiao, Ting Ju Li
Therefore, refractory HEAs get a lot of attention as a new candidate for aerospace materials and aircraft material.
Advanced Engineering Materials. 2004, 6: 299-303
Materials Science and Engineering: A. 2004, 375-377: 213-218
Microstructure and wear behavior of a refractory high entropy alloy.International Journal of Refractory Metals and Hard Materials. 2016, 57: 50-63
Materials & Design. 2015, 83: 651-660
Online since: August 2016
Authors: Emanuela Affronti, Marion Merklein, Matthias Lenzen, Martin Rosenschon
Therefore, the automotive industry promotes the reduction of car weight through lightweight materials.
Thereby, more accurate material characterisation especially at complex states of stress with respect to the rate dependence of various materials has to be done.
Both materials showed a dependency under both tensile and shear load at comparable deformation velocities.
Lechner, Numerical optimisation of a shear specimen geometry, Key Engineering Materials 549 (2013), pp. 317-324
Maniatty, Strain rate sensitivity of the commercial aluminum alloy AA5182-O, Materials Science and Engineering A 390 (2005), pp. 334-343