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Online since: October 2018
Authors: Yu.Yu. Galkin, S.A. Udodov
Journal of the American Ceramic Society. 69 (1986) 74-82
Baiburin, Technology of the early age concrete loading, Procedia Engineering. 150 (2016) 2157-2162
Coussy Strenght growth as chemo – plastic hardening in early age concrete, ASCE journal of engineering mechanics. 122 (1996) 1123-1132
Vasil'eva, The phase composition and properties of aluminate cements after early loading, Magazine of Civil Engineering. 7 (2017) 114-122
Ma, Investigations on phase constitution, mechanical properties and hydration kinetics of aluminous cements containing magnesium aluminate spinel, Ceramics international. 39 (2013) 8394-8400.
Online since: May 2007
Authors: S.J. Park, S.G. Chung, Hae Do Jeong
Jeong3,c 1 Department of Mechanical and Precision Engineering, Pusan National University, San30, Jangjeon-Dong, Gumjeong-Gu, Pusan, 609-735, Korea 2 LG Production engineering Research Center, 19-1 Cheongho-ri, Jinwuy-myun, Pyungtaek-si, Kyunggi-do, 451-713, Korea 3 School of Mechanical Engineering, Pusan National University, San30, Jangjeon-Dong, Gumjeong-Gu, Pusan, 609-735, Korea a sosachol@pusan.ac.kr, b sichung@lge.com, chdjeong@pusan.ac.kr Keywords: Microreplication technique, Barrier ribs, Pattern of a rectangular, Helical gear, Life-span of mold Abstract: In this paper, a new replication technique for 1D, 2D, and 3D microstructure was introduced, in which a master pattern was made of photo-curable epoxy using microstereolithography technology, an etching process, and a dicing process.
Introduction In recent years, applications in semiconductor, electronic, optics, microelectromechanical systems, and biomedical and tissue engineering have demanded the ability to pattern over contoured surfaces and to form real 3D structures.
Vasile: Microelectronic Engineering, Vol.35 (1997) No.1-4, pp.367-372
Bang: International Journal of Machine Tools and Manufacture, Vol.43 (2003) No.6, pp.551-558
Huang: International journal of machine tools and manufacture, Vol.42 (2002) No.10, pp.1105-1112
Online since: August 2019
Authors: Betül Gürünlü, Mahmut Bayramoğlu
The authors acknowledge specialists Adem Sen and Ahmet Nazım from the Materials Engineering Department of GTU for providing XRD and SEM measurements, and specialist Dr.
[2] Bhuyan M S A, Uddin M N, Bipasha F A, Islam M M, Hossain S S. 2015 International Journal of Innovation and Scientific Research 17 303–315
[10] Zhang L, Ji B, Wang K, Song J 2014 Materials Science and Engineering B 185 129-133
[16] Qu J, Luo C, Zhang Q, Cong Q, Yuan X. 2013 Materials Science and Engineering: B 178 380-382
[17] Li Y, Chen Q, Xu K, Kaneko T, Hatakeyama V R 2013 Chemical Engineering Journal 215–216 45-49 [18] Andonovic B, Grozdanov A, Paunović P, Dimitrov, A T. 2015 IET Micro & Nano Letters 10 683-685
Online since: September 2018
Authors: Augusto César Cavalcanti Gomes, Lucimar Pacheco Gomes da Rocha, Andrea de Vasconcelos Ferraz
The results of these angles and their attributions were obtained using the databank of the International Centre for Diffraction Data (ICDD).
Ahn: Chemical Engineering Journal Vol. 317 (2017), p. 821
Singh: Journal of Environmental Chemical Engineering Vol. 4 (2016), p. 1460
Hums: Minerals Engineering Vol. 53 (2013), p. 9
Sun: Journal of Hazardous Materials Vol. 155 (2008), p. 58
Online since: January 2013
Authors: Yong Jun Zhang, Jing Liu, Gang Gao, Jing Tao Han, Hui Feng Wang
Preparation technology of 45steel/60Si2CrA multilayer composite armor plate Jing Liu1, a, Gang Gao,1,2,b , Jingtao Han1,c , Yongjun Zhang1,d , Huifeng Wang 1,e 1 School of material science and engineering; University of Science and Technology Beijing, Beijng, China 2 Patent Examination Cooperation Center of SIPO, Jiangsu, China aliujing@mater.ustb.edu.cn, bclockorange112@gmail.com, chanjt@ustb.edu.cn,dzhangyj@mater.ustb.edu.cn,e wanghuifeng@126.com Keywords: multilayer composite plate, armor steel, mechanical property, bulletproof Abstract.
The faceplate which is composed of ceramic material or hard alloy metal can passivate the bullet or form shock wave in the bullet and the backplate which is made up of metal with good toughness or reinforced fiber has the ability to capture the remnants fragments of bullet.
References: [1] Chuanzeng Li, Shushan Wang, Rong Zhu: Journal of Vibration and Shock.
Vol.4( 2011),P.91(In Chinese) [2] Changhai Chen, Xi Zhu, Hanliang Hou, et al: Explosion and Shock Waves, Vol.31(2011),P.11(In Chinese) [3] Jun Zhao, Xing Ai, Jianhua Zhang:Materials Review, Vol.11(1997),P.57(In Chinese) [4] Yaoquan Zhou, Qing Zhou, Zuoguang Zhang, et al: Acta Materiae Compositae Sinica, Vol.20(2003),P.133(In Chinese) [5] Chuanyuan Xu, Peiqun Chen, Qiang Li: Ordnance Material Science and Engineering, (1984), P.8(In Chinese) [6] Yu‘an Jing, Shiju Guo, Jingtao Han: Journal of University of Science and Technology Beijing, Vol.29(2007),P.402(In Chinese) [7] Zhi Guo, Weiyan Li, Shutao Ge:Pressure Vessel Technology,Vol.27(2010),P.32(In Chinese) [8] Huu-Tai Thai, Seung-Eock Kim.
International Journal of Mechanical Sciences, Vol.52, (2010), P.626 [9] Zonghong Xie, Lei Zhang, Ni Su, et al: Journal of Materials Engineering, 2011,P. 42(In Chinese)
Online since: March 2015
Authors: Zhi Chao Meng, Fei Huan, Bin Sun, Wen Shuang He, Jin Feng Leng
Influence of Substrate Temperature on the Al and Zr Co-doped ZnO Thin Films Prepared by RF Magnetron Sputtering Fei Huan a, Jinfeng Lengb*, Zhichao Mengc, Bin Sund and Wenshuang Hee School of Material Science and Engineering, University of Jinan.
In this paper, ZAZO transparent conductive thin films were prepared by magnetron sputtering with Al2O3 (1.5 wt %) and ZrO2 (2.5 wt %) co-doped ZnO ceramic target in Ar ambient.
Experimental A sintered ceramic sputter target with a mixture of ZnO (99.99% purity), Al2O3 (99.99% purity) and ZrO2 (99.99% purity) was employed as source material.
Li, ZnO thin films produced by magnetron sputtering, Ceramics International. 30(2004) 1155-1159
Guo, Comparison of Preparation and performance between Ti-doped ZnO Thin Films and Ti-Al Co-doped ZnO Thin Films, Journal of Synthetic Crystals. 39(2010) 1152-1155.
Online since: September 2012
Authors: Liang Han, Lei Xiang Zhang, Jia Li
Design and Study on the Automatic Extrusion Device for Curved Chassis of Vibratory Feeder HAN Lianga, LI Jiab and ZHANG Lei-xiangc School of Mechanical Engineering, Southeast University, Jiangning District, Nanjing 211189, China amelhan@seu.edu.cn, blijia02009107@gmail.com, cleixiang.zh@163.com Keywords: Vibratory feeder; Chassis; Cold extrusion forming; Structural design; Finite element; Electro-hydraulic proportional control Abstract.
Introduction Vibratory feeder is a typical product which applies the technology of vibratory feeding to the industrial automation control system, and its main principle is to directionally arrange workpieces in disorder and transfer them to the next working procedure with the tray driven by the vibration generated by the electromagnet, piezoelectric crystal slice or piezoelectric ceramic piece.
Square steel is hollow strip steel, which has lighter weight when bending strength and torsional strength are the same, and it is widely used in machinery parts and engineering structure.
Journal of Manufacturing Systems, 1994, 13(3): 190-195 [4] Kok-Meng Lee, Yifei Qian.
Nanjing: School of Mechanical Engineering Southeast University, 2011 [6] W.
Online since: July 2011
Authors: Wei Ling Zhao, Jin Hui Liu, Wen Juan Xie, Jia Zhang
Discussion on Binding Additives and Binding Process in Selective Laser Sintering Xiewenjuan 1,a Zhaoweiling 1,b Zhang Jia1,c Liujinhui 1,d 1Heilongjiang Institute of Science and Technology,Modern Manufacture Engineering Center, Harbin, Heilongjiang 150027,China a xiewenjuan2008@qq.com, b weilingzhao@126.com, c565284634@qq.com, dbackmyself@126.com Keywords: selective laser sintering; binding additives; thermal properties; interface action Abstract.
Several categories of materials, such as polymer, ceramic and metal, can be used in SLS technology.
Jing: International Journal of Advanced Manufacturing Technology Vol. 48 (2010), p.155 [3] Jinhui Liu, Yusheng Shi, Zhongliang Lu, Yang Xu and Shuhuai Huang: Advanced Engineering Materials Vol.8 ( 2006), p.988
Huang: Materials Science and Engineering A Vol.444(2007), p.146 [5] Liu Jinhui: Doctoral Dissertation, Huazhong University of Sci & Tech.
Online since: July 2015
Authors: C.M. Mardziah, Nor Azrina Resali, M.N. Berhan, Koay Mei Hyie
Introduction Engineering materials are heat treated under controlled sequence of heating and cooling to alter their physical and mechanical properties to meet desired engineering applications.
Akanbi, Effect of Heat Treatment on Mechanical Properties and Microstructure of NST 37-2 Steel, Journal of Minerals and Materials Characterization and Engineering. 10 (3), March 2011
Srinivasan, Effect of Hardness and Microstructure on En 353 Steel by Heat Treatment, Research Inventy: International Journal Of Engineering And Science. 2 (11) (2013) 01-05
Camacho-Montes, Sintering: Fundamentals and Practice, The American Ceramic Society.
Soboyejo, Compression–compression fatigue of open cell aluminum foams: macro-/micro- mechanisms and the effects of heat treatment, Journal: Materials Science and Engineering A-structural Materials Properties Microstructure and Processing - Mater Sci Eng A-Struct Mater. 369 (1) (2004) 23-35.
Online since: March 2006
Authors: Moh. Syaifuddin, Kwang Joon Yoon, Hoon Cheol Park, Nam Seo Goo
Syaifuddin 1, a , Hoon Cheol Park2,b, Kwang Joon Yoon3,c , and Nam Seo Goo4,d 1, 2, 3, 4 Artificial Muscle Research Center, 1 Department of Advanced Technology Fusion 2, 3, 4 Department of Aerospace Engineering, Konkuk University 1 Hwayang-dong, Gwangjin-gu, Seoul 143-701, Korea a moh_syaifuddin@hotmail.com, b hcpark@konkuk.ac.kr, c kjyoon@konkuk.ac.kr, cnsgoo@konkuk.ac.kr Keywords: Flapping wing, insect flight, four-bar linkage, LIPCA Abstract.
Therefore, we can evaluate and adopt their findings for engineering design of flapping wings.
References [1] Bandyopadhyay, P.R., "Trends in Biorobotic Autonomous Undersea Vehicles," IEEE Journal of Oceanic Engineering, Vol. 29, 2004 (in press)
[5] Park, H.C., Lee, S.Y., Lee, S.K., Yoon, K.J., and Goo, N.S., "Design and demonstration of flapping wing device powered by LIPCA," SPIE's 11th Annual International Symposium on Smart Structures and Material, 14-18 March 2004, San Diego, USA
[6] Park, H.C., Kim, K.J., Lee, S.K., and Chah, Y.J., "Electromechanical flapping produced by ionic polymer-metal composites," SPIE's 11th Annual International Symposium on Smart Structures and Material, 14-18 March 2004, San Diego, USA
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