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Online since: June 2015
Authors: Anders Hallén, Sethu Saveda Suvanam, David M. Martin, Carl Mikael Zetterling
., Materials Science Forum, Vol. 457-460, pp. 1309-1312, 2004 [3] F.
Schöner, Materials Science Forum, Vol. 483-485, pp 693-696, 2005 [4] A.
Constant et al., Journal of the Electrochemical Society, Vol. 157, pp.
Yates Jr., Journal of Applied Physics, Vol. 60, pp. 3601-3603 , 1986
Online since: June 2014
Authors: Bo Wei Chen, Jian Kang Wen, Gui Ying Zhou, Xing Yu Liu, Shuang Liu, Wen Juan Li
Introduction In certain operations high concentrations of dissolved ions, resulting from the dissolution of acid-leached gangue minerals in igneous ore materials, is one of the key factors affecting performance of bioleach heaps[1].
Materials and methods Microorganisms and reagents.
Acknowledgements This work was financially supported by the National Basic Research Program of China (2010CB630906), National High Technology Research and Development Program of China (SS2012AA060501, SS2012AA060502), and the National Natural Science Funds of China (50934002).
[6] GUAN Hao,YIN Hua-qun,LIU Jie,LUO Yan-jie,LIU Xue-duan and QIU Guan.zhou: Journal of Central South University(Science and Technology) Vol.40(2009), P.543.In Chinese
[8] WEISBURG W G, BARNS S M, PELLETIER D A and LANE D J: Journal of Bacteriology Vol.173(1991), P.697
Online since: July 2013
Authors: Tei Saburi, Shiro Kubota, Yuji Wada, Masatake Yoshida
A multidimensional analysis code for reactive shocks (MARS), which is developed to solve various problems in the physical hazard analysis of high energetic materials, has been applied to such complex problems as multi-material problem and sympathetic problem because it can employ various types of equations of state and a materials database.
MARS has many models of materials including various explosives, and employs equations of state (EOSs), and various burn models such as ignition and growth models.
The shock from an explosion of donor explosive propagates through a gap material, which is a known material and has a certain thickness, and impacts on the receptor explosive.
In the test In this case, both the donor and receptor charges are Composition C4 explosives and the gap material was mortar with 6m thickness.
[6] Liu, Z., Kubota, S., Otsuki, M., Yoshimura, K., Okada, K., Nakayama, Y., Akayama, Y., Yoshida, M., and Fujiwara, S., Development of a 2D eulerian code for reactive shock analysis using CIP scheme, Journal of the Japan Explosives Society, 63 5 (2002) 264-270
Online since: April 2023
Authors: B.K. Barakhtin, S.N. Perevislov, A.S. Zhukov, V.V. Madin, P.A. Kuznetcov
Shan et al., Multistable Architected Materials for Trapping Elastic Strain Energy, Advanced Materials. 27, issue 29 (2015) 4296-4301
Qiu et al., Influence of processing conditions on strut structure and compressive properties of cellular lattice structures fabricated by selective laser melting, Materials Science & Engineering.
Collins, Failure of materials in mechanical design: analysis, prediction, prevention, John Wiley & Sons, New York, 1981
Kuznetcov et al., Energy absorbing properties of the cellular structures with different wall thickness, produced by the selective laser melting, Materials Science Forum. 933 (2018) 330-336
Materials, Design, Technologies and Applications, Woodhead Publishing, Cambridge and Sawston, 2016
Online since: June 2014
Authors: Henry Egware, Harrison Itoje, Albert Obanor
Energy analysis is the traditional method of assessing the way energy is used in an operation involving the physical or chemical processing of materials and the transfer and/or conversion of energy.
Materials and Methods Data Collection: Data such as average daily power generated, mass flow rate (air, fuel and turbine exhaust), pressure and temperature (of different points as stated in Figures 1 and 2) used for this study were collected from the plant’s log book and Omotosho Power Station Phase I Final Report[7].
WM = Work done by the material component under study.
Moses, Computer Simulation of Gas Turbine Performance, Global Journal of Researches in Engineering, Vol.
Journal of Engineering Trends in Engineering and Applied Sciences (JETEAS) 2(2) (2011) 216 -218
Online since: November 2015
Authors: Miroslav Radovanović, Margareta Coteata, Miloš Madić, Predrag Janković, Dušan Petković
The high power density of the focused laser beam in the spot melts or evaporates material in a fraction of a second, and coaxial jet of an assist gas removes the evaporated and molten material from the affected zone [1].
Customer demands for cutting novel and difficult-to-machine materials of complex geometries and high demands regarding quality resulted in increased application of laser cutting in today’s industry.
The authors would like to thank to the Ministry of Education and Science, Republic of Serbia.
Manić, Analysis of correlations of multiple-performance characteristics for optimization of CO2 laser nitrogen cutting of AISI 304 stainless steel, Journal of Engineering Science and Technology Review. 7, 2 (2014) 16-21
Hossain, A review of modeling and simulation of laser beam machining, International Journal of Machine Tools & Manufacture. 85 (2014), 135-145
Online since: August 2014
Authors: Atsushi Moriai, Hiroshi Suzuki, Tamaki Suzuki, Teppei Okawa, Hiroshi Shimanuki, Tetsuro Nose, Noriaki Ohta
References [1] H.Tanaka, K.Akita, Y.Sano, S.Ohya, A.Moriai, K.Kajiwara, M.Sato, Non-destructive Measurement of Residual Stress Depth Distribution on Laser-peened Material, Proceedings of the Japan society of Materials science.(2005)155-156
[2] T.Kasuya, K.Sasaki, Flux Cored Wire for Steel Sheet with Fatigue Strength Improvement, Quarterly Journal of the Japan Welding Society. 27(2) .(2009)158s-162s
Moriai, Residual stress measurement of UIT(Ultrasonic Impact Treatment) treated steel plate by neutron diffraction method, Proceedings of The 44th Symposium on X-Ray Studies on Mechanical Behavior of Materials. (2010)56-60
Itou, K.Aizawa, Residual stress measurement of UIT(Ultrasonic Impact Treatment) treated steel plate by neutron diffraction method, Proceedings of The 45th Symposium on X-Ray Studies on Mechanical Behavior of Materials. (2011)83-87
[13] T.Nose, Ultrasonic Peenig Method for Fatigue Strength Improvement, Journal of the Japan Welding Society. (2008)210-213
Online since: October 2013
Authors: Jin Zhong Jiang, Yan Fen Huang, Chao Ying Wang, Cui Juan Ren, Chang Jiang Qian
Material and method Material The seeds used in the experiment were bought from Tree Farm Seed Limited Company in Chengdu city, Sichuan province, China, Dec. 2010.
Fetus butterfly scenario Fig 6: Raw materials for fetus butterfly production 1 2 tender bud tender bud cotyledon cotyledon When tea tree seeds were cultivated with water for 15-20days, the seeds cracked, and young bud and root grew out of seed.
Tea Science and Technology, 2011, (2):1-6 [6] Sun Weijiang, Zhang Cuixiang.
Journal of Tea Science, 2008, 28 (1): 4349 [8] Li J, Huo P, Yang H.
Journal of Hangzhou Institute of Applied Engineering, 2005, (4):285-289 [9] Yan Donghai, Luo Xianyang,Wei Jie,Chen Yuanan,Liu Hongmei.
Online since: November 2016
Authors: Maurizio Maldini, Dario Ripamonti, Giuliano Angella, Riccardo Donnini
Mechanical Behaviour of Materials During Creep with Changing Loads Giuliano Angella*, Riccardo Donnini, Dario Ripamonti, Maurizio Maldini Institute for Energy and Interphases (IENI) - National Research Council (CNR), Via R.
Angella, The shape of creep curves in Ni base superalloy C263, Kovove Materialy-Metallic Materials 42 (2004), pp. 283-292
Lupinc, Analysis of creep curves of a nickel base superalloy in a wide stress/temperature range, Material Science and Engineering A 462 (2007), pp. 463-440
Lupinc, Creep and Fracture of Engineering Materials and Structures.
Lupinc, Necking contribution to tertiary creep curve of strain softening materials, Scripta Metallurgica et Materialia 32 (1995), pp. 337-342
Online since: June 2014
Preface This conference is aimed to promote interaction between academia and industrialist by presenting and discussing their research and development work related to both fundamental and applications in a wide range of interdisciplinary domains which include material science and engineering, nanotechnology, environmental technologies, process systems engineering, separation technology and reaction engineering.
Usama Mohamed Nour El Demerdash Associate Professor Dr Ye Lwin Journal Publication : Dr.