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Online since: November 2011
Authors: Wei Wu, Chao Zhang, Yong Li
Multilayer ceramic composite structure was formed by 7-layer materials and the section size was 240 × 60mm.
Front panel and back panel materials both were 685 steel and their thicknesses were 6mm and 20mm.
Physical and mechanics parameters of materials were selected based on literature [3,4].
Hefei: University of Science and Technology of China, 2003
Numerical analysis of the ballistic performance of confined ceramic composite targets against long rod penetrators: Journal of University of Science and Technology of China, 2007, 37(7): 727~731.
Online since: June 2011
Authors: Fu Chi Wang, Yong Biao Yang, Zhi Min Zhang, Jian Wei Han
Materials Science and Engineering A, Vol. 464 (2007) , p1 [3] Barnett MR.
Materials Science and Engineering A Vol. 527 (2010) , p5728 [6] Matthew T.
Materials Science and Engineering A, Vol. 527 (2010) , p2915 [9] Lan Jiang, Jonas J J.
Materials Science and Engineering A, Vol. 445 (2007) , p302 [10] Yoo.M H.
Materials Science and Engineering A, Vol. 462 (2007) , p29 [13] Gillman J J.
Online since: August 2014
Authors: Gui Hong Geng, Wei Ye Chen, Cheng Lu Zou
Table 2 shows the performance comparisons among conventional aluminum alloys, aluminum-lithium alloys and composite materials.
These materials have special properties and usage.
(3) Select proper crucible materials.
[8] Guangjie Huang, Lingyun Wang: Development Application and Prospect of Aluminum-Lithium Alloys, Materials Review, 1997, 11, 21-24
[12] Grushko O.E: Lithium aluminium alloy ingot metallurgy, Journal Of Aeronautical Materials, 1994, 14, 45-53
Online since: January 2011
Authors: Li Ning Sun, Min Xiu Kong, Wei You, Chan Chan Guo
The proposed control system is applied in control of a kind of high payload material handling robots with complex compound control algorithms.
Heimann: International Journal of Robotics Research Vol. 21 (2002), pp. 45-60 [2] S.
Taghirad: Asian Journal of Control Vol. 8 (2006), pp. 332-344 [4] M.
Primault: Journal of Intelligent & Robotic Systems Vol. 34 (2002), pp. 381-414 [5] F.
Buttner: Computing & Control Engineering Journal Vol. 15 (2004), pp. 16-21 [9] Information on http://www.beckhoff.com [10] B.
Online since: February 2013
From which 211 papers have been accepted for presentation at the conference and will be published by TTP, in Applied Mechanics and Materials (AMM) Journal (ISSN: 1660-9336), which is online available in full text via the platform www.scientific.net.
Melia, Cisco Systems, Switzerland Liming Shi, Chinese Academy of Science, China.
Yongji Wang, Huazhong University of Science and Technology, China.
Xuejun Li, Hunan University of Science and Technology, China Pengjun Mao, Henan University of Science and Technology, China.
Lin, Norwegian University of Science and Technology, Norwegian Y.W.
Online since: June 2012
Authors: Ming Ming Zhou, Ming Jie Guan, Qi Sheng Zhang
Introduction Bamboo is a natural polymer material with excellent performance.
Materials and Methods Ultrasonic dip treatment.
[3] Li, J., Wood Science, Ha erbin(In Chinese), 1994
[4] Li, X.R., The methods of decay and mold of wood and bamboo, Science and Technology of Xiamen.
[5] Sun, F.L., Mao, S.F., Wen, G.F., The antifungal properties of bamboo after different kinds of dipping, Journal of Zhejiang Forest College (In Chinese). 2 (2006) 135-139
Online since: June 2014
Authors: Xue Feng Shu, Guo Zheng Yuan, Xia Chen
To edge combined the chip package, different combine material have different influence on the service life[2].
Acknowledgments The project supported by Youth Foundation of Taiyuan University of Technology ( No. 2012L093 ), the National Natural Science Foundation of China (Grant No. 11172195) , the Natural Science Foundation of Hebei Province, China(Grant No.
A2012201003), the Natural Science Foundation of Shanxi Province, China(Grant No. 2012011019-4).
[4] Zhou C Y, Yu C X, Lee S W, Drop/impact tests and analysis of typical portable electronic devices, J.International Journal of Mechanical Sciences, Vol. 50, No. 5(2008), pp. 905-917
[5] Wong E H, Seah S K W, Selvanayagam C S, et al, High-speed cyclic bend tests and board-level drop tests for evaluating the robustness of solder joints in printed circuit board assemblies, J.Journal of Electronic Materials, Vol. 38, No. 6(2009), pp. 884-895
Online since: December 2024
Authors: T. Surya, K Supraja, G. Sai Kumar, A. Vignesh, T. Nikhil, E. Narasimhulu
The results of this study should add to our understanding of environmentally friendly building materials, especially as it relates to concrete manufacturing.
Materials Cement: Cement is a crucial binding agent used in construction and building materials to create concrete, mortar, and other applications.
Fineness of cement 3% Fine aggregate Fine aggregate, in the context of construction materials, refers to granular materials that pass through a sieve with a nominal maximum size of 4.75 millimetres (No. 4 sieve).
References [1] Ajithaa V, SasiRega M, Gowrishankar R- “A Study on Concrete Incorporated with Zeolite and Fly Ash”, International Journal of Research in Engineering and Science (IJRES) Volume 11 Issue 5, May 2023, PP. 810-814
Construction and Building Materials, 13: 427 – 432”
Online since: February 2021
Authors: I Wayan Guna Wijaya, Ni Made Dewi Dian Sukmawati, I Wayan Surata, Tjokorda Gde Tirta Nindhia
Widiana: Key Engineering Materials, Vol 705(2016), pp. 368-373
Wardana: Materials Science and Engineering, Vol. 201(2017),pp. 1-5
Journal of Engineering Research and Application, Vol. 7, Issue 4, ( Part -3) April 2017, pp.49-56
Kee, Journal of Engine, Vol. 102(1993), pp.1903-1910
Cus, Journal of Achievements in Materials and Manufacturing Engineering, Vol.36(2009),pp. 192-198
Online since: January 2010
Authors: Nina von der Höh, Arne Lucas, Fritz Thorey, Andrea Meyer-Lindenberg, Dirk Bormann
Contrary to common materials, smooth surfaces seem to be favorable.
Windhagen: Journal of biomedical materials research Vol. 86 (2007), p. 1041-1047 [13] A.
Staiger: Journal of materials science.
Materials in medicine Vol. 19 (2008), p. 407-415 [14] A.
Yang: Journal of biomedical materials research Vol. 83 (2007), p. 703-711