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Online since: July 2011
Authors: Chao Cheng Chang, Dinh Hiep Nguyen, Hsin Sheng Hsiao
Acknowledgements The authors would like to acknowledge the financial support of the National Science Council of Taiwan (Grant No. 99-2221-E- 151-033-MY2).
Bruschi: CIRP Journal of Manufacturing Science and Technology Vol. 1 (2008), p. 2 [3] U.
Wang: Journal of Materials Processing Tech.
Segal: Materials Science & Engineering A Vol. 197 (1995), p. 157 [6] V.M.
Segal: Materials Science & Engineering A Vol. 386 (2004), p. 269
Online since: February 2022
Authors: Makram A. Fakhri, Uda Hashim, Sara M. Tariq
In this way, the use of nanostructured materials has given analytical sciences a new and interesting perspective.
Series: Materials Science and Engineering 454(1) (2018) 012173 [4] LC.
A Fakhri, An Overview of Au & Photonic Crystal Fiber of Sensors, Materials Science Forum, 1002 (2020) 282-289 [29] D.R.
Agool, Synthesis of SnO2 nanostructures employing Nd:YAG laser, Applied Physics A: Materials Science and Processing 120(2) (2015) 725-730
Al-Hadethy, Transparent and conducting ZnO films prepared by reactive pulsed laser deposition, Journal of Materials Science: Materials in Electronics 18(4) (2007) 397-400.
Online since: February 2011
Authors: Hai Liang Wang, Zhuo Cui, Chuan Li, Ru Cang Bao
Introduction About the research on building materials by explosion, we studied explosive lining from three aspects of theoretical analysis, experimental investigation and numerical simulation from 1997.
The problems for expansion lining surrounded with two kinds of materials for the round shaft and the spherical cavity are analytically solved for the first time by elastic-plastic mechanics[4].
Applying DYNA-2D to simulate the physical process of explosive lining, we gain the varying regularity of the stress and the displacement of the building materials and the soil with time[6-7].
In the explosive lining tests, the explosion impacted on building materials was carried out in an enclosed area.
References [1] Hailiang Wang, Changgen Feng, Liqiong Wang: Chinese Journal of Explosives & Shock Vol. 24 (2) (2001), p.12 (in Chinese) [2] Hailiang Wang, Changgen Feng, Liqiong Wang, Zhenbiao Wang: Chinese Journal of Explosion & Shock, Vol. 21(4) (2001), P.291 (in Chinese) [3] Hailiang Wang, Huizhe Ding, Min Ma, Xinming Li, in: Proceeding of the 2007 International Autumn Seminar on Propellants, Explosive and Pyrotechnics, edited by Ping HUANG, Yajun WANG and Shengcai LI, volume 7 of Theory and Practice of Energetic Materials, Section, 3, Science Press (2007) [4] Hailiang Wang, Huifeng Su, Qingzhi Liu, Min Ma, in Proceedings of the 2007 international conference on mine hazards prevention and control, eited by Chun-qin Wang, Wei-jia Guo, and Jiu-long Cheng, Mine Hazards Prevention and Control Technology, Part, 2, Science Press 2007 [5] Hailiang Wang, Xinming Li, Huizhe Ding, Changwei Zhao: Science & Technology Review Vol.25 (2007), p.38 (in Chinese) [6] Changgen Feng, Hailiang Wang,
Online since: October 2010
Authors: Ji Wen Li, Ai Qin Wang, Jing Pei Xie, W.Y. WANG
Journal of Materials Processing Technology Vol. 135 (2003), p.271-277 [3] S.P.
Materials Science and Engineering A, Vol. 390 (2005), p. 63–69 [4] Zhonghua Zhang, Xiufang Bian, Zhenqing Wang, et al.
New Metallic materials of Non-equilibrium solidification(Science Press, China 2004), p. 96-140(In Chinese) [6] Das S K,Perepezko J H,Wu R I,et al.
Materials Science and Engineering A, Vol. 304-306(2001), p. 159-165 [7] Hongwen Zhang, Jianqiang Wang, Ke Lu.
Chinese journal of materials research, Vol. 10 (2000) No.6, p.815 [9] Gengxiang Hu, Miaogen Qian.
Online since: June 2021
Authors: Vitali Podgursky, Andrei Bogatov, Illia Krasnou, Abrar Hussain, Dmitri Goljandin, Mart Viljus, Maksim Antonov
The fabric manufacturing and additional treatments originate variations in roughness of fabric materials which initiate yarn irregularities [4].
Acknowledgements This study was financially supported by project KIK 19019 "Developing of textile waste shredding technology and innovative materials to adding value to textile waste and support the circular economy”.
International journal of clothing science and technology. 2002
Mazal, Image analysis method of surface roughness evaluation, International Journal of Clothing Science and Technology. 2007
Kumar, Designing and development of denim fabrics: Part 1 - study the effect of fabric parameters on the fabric characteristics for women's wear, Journal of Textile Science and Engineering. 6(4) (2016) 1-5
Online since: May 2007
Authors: Gang Yao Zhao, Yu Li Liu, He Yang
Yang c College of Materials Science and Engineering, Northwestern Polytechnical University, P.O.
Welo: Journal of Materials Processing Technology.
Vol. 43(2001), p1283 [4] T Welo, F Paulsen and T J Brobak: Journal of Materials Processing Technology.
Welo: International Journal of Mechanical Sciences.
Langseth: Materials and Design.
Online since: October 2010
Authors: Yi Jian Jiang, Ling Fei Ji, Yong Bao, Xiao Chuan Chen
For further increased laser power, the kerf width would not increase due to the balance between the recoil pressure and the vapor pressure of melt materials.
Molian: Journal of Manufacturing Science and Engineering Vol. 130 (2008), p. 031008-1-10 [3] C.
Chen: Journal of Manufacturing Science and Engineerin (2003) Vol. 125, p.519-528 [4] F.
Sanchez-Soto: Materials Letters Vol. 55 (2002) p. 274-280 [9] C.
Chen: Journal of Material Processing Technology (2003) Vol. 136 p. 166-173 [10] L.
Online since: December 2022
Authors: Simeon Agathopoulos, Konstantinos Dimitriadis
Selective Laser Melting-Sintering Technology: From Dental Co-Cr Alloys to Dental Ceramic Materials Konstantinos Dimitriadis1,a* and Simeon Agathopoulos2,b 1Division of Dental Technology, Department of Biomedical Sciences, University of West Attica, Greece 2Department of Materials Science and Engineering, University of Ioannina, Greece adimitriadiskonstantinos@hotmail.com, bsagat@uoi.gr Keywords: CAD/CAM; Selective Laser Melting; Co-Cr alloys; dental ceramics; dental prosthesis Abstract.
Shen, Laser sintering of ceramics, Journal of Asian Ceramic Societies 1 (2013) 315–321
Shi, Microstructure and mechanical properties of 3Y-TZP dental ceramics fabricated by selective laser sintering combined with cold isostatic pressing, International Journal of Lightweight Materials and Manufacture 1 (2018) 239-245
Sing, Review of selective laser melting: Materials and applications.
Greil, Additive manufacturing of ceramic-based materials.
Online since: July 2011
Authors: Xin Hao, Mei Ling Pan, Xiao Fei Liu
Effect of Cerium on Microstructure and Wearing Resistance of 5CrMnMo Hot Working Die Steel Xin Hao 1, 2, a, Meiling Pan1, b and Xiaofei Liu 1,c 1College of materials science and engineering, Inner Mongolia University of technology,Inner Mongolia, Huhot 010051,China;2Key Laboratory of Materials Processing﹠Control Engineering of Inner Mongolia Autonomous Region, Inner Mongolia University of Technology, Inner Mongolia ,Huhot, 010051 ahaoxin2008@163.com, b953588576@qq.com, cliuxiaof@126.com Keywords: Cerium, 5CrMnMo, Structure, Worn-out Appearance, Wearing Resistance, Rare Earths Abstract.
During wear procedure, high plasticity material may make some bond wearing so that the wear effects are reduced [11].
Effect of rare earth elements on growth dynamics in 60crmnmo steel [J].Journal of rare earths, 1999, 17(1):46
Experimental Research on the Anti-wear Properties of the Steel NM360 [J].Journal of Wuhan University of Technology (transportation science and engineering), 2006, 30(3):395 [9] Hu Zhenqian, Zhang Wenhua.Effect of rare earths on the wear resistance and high temperature oxidation resistance of H13 steel surface treated with S N C Co diffusion [J].Journal of rare earths, 1998, 16(3):13
Effect of RENb on the strength and toughness of 3cr2moniwv cast hot working die steel [J].Journal of materials science, 2006, 32(7):4185
Online since: October 2010
Authors: Zhao Lin Zhan, Jian Xiong Liu, Zheng Yu Wu, Hui Mian Li, Jun Hong Li
Research for Transverse Tension Distribution on Steel Strip in Continuous-annealing Furnace Based on ANSYS Jianxiong LIU 1,a,Huimian LI1,b,Junhong LI2,c,Zhengyu WU 3,a ,Zhaolin ZHAN 1,d 1 Faculty of Materials Science and Engineering, Kunming University of Science and Technology, Kunming 650093, (P.
China) 3 Faculty of science, Kunming University of Science and Technology, Kunming 650093, (P.
Material Model[4-6]
Chang: Journal of University of Science and Technology Beijing, Vol. 14 (2007) No.6, pp.580-584
Jin: Journal of Plasticity Engineering, Vol. 6 (1999) No.4, pp: 1-9 (In Chinese) [6] X.Q.