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Online since: February 2016
Authors: Marina V. Polonik, Egor E. Rogachev
The holding stage is simulated with creeping properties of materials.
Introduction In the manufacture and hardening of metal materials an accumulation of stresses takes place [1, 2], which are called residuals.
Polonik, Development of approaches to the creep process modeling under large deformations, Applied Mechanics and Materials, 249-250 (2013) 833-837.
Polonik, Determination of a Loading Pressure in the Metal Forming by the Given Movements, Advanced Materials Research, 842 (2014) 494-499.
Terletskiy, To the Formation of Residual Stress Field in the Vicinity of a Spherical Cavity Viscoelastoplastic Material, Far Eastern Mathematical Journal, 12(2) (2012) 146-159
Online since: October 2015
Authors: Mária Tóthová, Milan Balara, Ján Dubják
Krenický, Diagnostics of Production Systems Operation Based on Thermal Processes Evaluation, Applied Mechanics and Materials 308 (2013) 121-126
Journal of Mechanics 7/1 (2013) 385-392
Zálešák, Verification of Diffusion Mathematical Model for Long-term Materials Drying, International Journal of Mathematical Models and Methods in Applied Sciences 7/11 (2013) 907-914
Piteľ, The Mathematical Modeling of Bound Component Extraction, International Journal of Mathematical Models and Methods in Applied Sciences 9 (2015) 91-98
Journal of Mathematical Models and Methods in Applied Sciences 8 (2014) 1-8.
Online since: September 2011
Authors: Yan Lou, Wen Hua Wu
Introduction Magnesium alloys as a most light commercial metal structure material have a series of good properties such as high specific strength and stiffness, high damping performance, antimagnetic, shielding, fine heat emission and so on.
Acknowledgement The authors acknowledge gratefully the financial support from the Nation Science Foundation (No. 51075132), the Science Fund of State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body (No. 30815007).
References [1] I.Rieiro, V.Gutierrez, J.Castellanos, M.Carsi, M.T.Larrea and O.A.Ruano: Metallurgical and Materials Transactions A, Vol.41 (2010) No.9, p.2396 [2] Yong Qi Cheng, Hui Zhang, Zhen Hua Chen and Kui Feng Xian: Journal of Material Processing Technology, Vol.208 (2008) No.1-3, p.29 [3] N.Yazdipour, C.H.J.Davies, and P.D.Hodgson: Computational Materials Science, 2008, 44, p566 [4] D.Rabbe: The Simulation of Materials Microstructure and Properties (Wiely-VCH, 1998) [5] JIN Zhao-yang and CUI Zhen-shan: Journal Of Shanghai Jiaotong University, Vol.44 (2010) No.4, p.437 [6] Avrami M: Journal of Chemical Physis, 1939, (7), p.1103 [7] A.Laasraoui and J.J.Jonas: Metallurgical and Materials Transactions A, Vol.22 (1991) No.7, p.1545 [8] E.I.Poliak and J.J.Jonas: Acta Materialia, Vol.44 (1996) No.1, p.127 [9] Sellars CM and Mctegart WJ: Acta Metallurgica, 1966, 14(9), p.1136 [10] Zener C and Hollomon H.J: Appl Phys, 1944, 15(1), p.22
Online since: August 2011
Authors: Xiao Fei Zhao, De Nan Wu, Chun Xi Ma, Li Xin Liu, Jun Tao Du, Su Min Liu
Colloid and Polymer Science, Vol. 65 (2003), p 335 [2] Zh.
Russian Journal of Applied Chemistry, Vol. 82 (2009), p 2027 [3] Sagar Pal, D.
Colloid and Polymer Science, Vol. 282 (2004), p 722 [6] L.M.
International Journal of Polymeric Materials, Vol. 56 (2007), p 461 [10] Eutamene Mohamed, Benbakhti Abbes, Khodja Mohamed, et al.
Journal of Materials Science, Vol. 19 (2008), p 2247 [12] Lixin Liu, Liyan Cui, Xiaofei Zhao, et al.
Online since: January 2012
Authors: H. Wu, H.R. Geng, Z.X. Yang, Z.Q. Wang
Geng1 1 School of Materials Science and Engineering, University of Jinan, No.106, Jiwei Road, Jinan City, 250022, P.R.
Li, et al.: Materials Science and Technology Vol.19(2003), p.1709 [8] Qiaoli Lin, Ping Shen, Feng Qiu, et al.: Scripta Materialia Vol.60 (2009), p.960 [9] J.C.
Gonzalez et al.: Journal of Materials Science Vol.32 (1997), p.4559 [10] Z.Q.
Bian: Journal of Materials Science Vol.40(2005), p.1047 [11] B.Q.
Greer, J.Worth, et al.: Materials Science and Technology Vol.14(1995), p.394 [13] P.S.
Online since: May 2012
Authors: Ying Zi Ma, Hui Zhang, Rong Song, Zhi Yi Wang, Bo Hua Yang
Materials and Methods Materials.
Journal of Jiangsu Forestry Science & Technology, Vol. 31(2004), p. 6-12.
Journal of Central South University of Forestry & Technology(Social Sciences), Vol. 29(2009), p. 36-40.
Journal of Anhui Agricultral Science, Vol. 36(2008), p. 4074-4075.
Chinese Journal of Information on TCM.
Online since: June 2013
Authors: Ivani de Souza Bott, Antonio José Mendes Gomes, Jorge Carlos Ferreira Jorge, Luís Felipe Guimarães de Souza
Based on this scenario, the rules for materials used in the mooring components presents a set of very stringent requirements.
Ramirez: Welding Journal Vol. 88 n.1 (2009), pp. 32-38
Svensson: Microstructure and properties of high strength weld metals, Materials Science Forum. 539-543 (2007), pp. 3937-3942
Souza: Materials Characterization Vol. 47 (2001), pp. 195-205
Haerian: Journal of Materials Science Vol. 44 n.1 (2009), pp. 186-197
Online since: January 2006
Authors: Chih Hsing Chu
Previous experiments [3,4] have shown that geometric factors dominate the defect formation for specific materials with certain ductility.
Then a layer of material is to be removed in the milling experiments.
Blotter: ASME Journal of Engineering for Industry Vol. 98(1) (1976), p. 66
Dornfeld: ASME Journal of Manufacturing Science and Engineering Vol. 119 (1997), p. 170
Chen: International Journal of Production Research Vol. 43(4) 2005, p. 773
Online since: June 2011
Authors: Guang Jie Huang, Xiao Yu Zhong, Fang Fang He, Qing Liu
Mechanical Properties and Microstructure of AZ31 Magnesium Alloy Under Uni-axial Tensile Loading Xiaoyu Zhong1,Guangjie Huang1,2,a, Fangfang He1 and Qing Liu1,2 1College of Materials Science and Engineering, Chongqing University, Chongqing, 400044, China 2National Engineering Research Center for Magnesium Alloys, Chongqing University, Chongqing, 400044, China aemail: gjhuang@cqu.edu.cn Keywords: magnesium, AZ31B, microstructure, EBSD, DRX.
Introduction Magnesium alloys find great potential applications in structural materials due to their high specific strength and excellent damping properties [1-3].
Aghion: JOM Journal of the Minerals, Metals and Materials society • 1998 [3] Mustafa Kemal Kulekei: Int J Adv.
Agnew , O¨ zgu¨ r Duygulu: International Journal of Plasticity 21(2005) , p.1161–1193 [9] H.
Watanabe: Journal of materials science 40 (2005), p. 1577 – 1582 [11] F.J.
Online since: December 2014
Authors: Nina Vetríková, Michala Šimúnová
Algorithms and evolution diagrams application for determining the new assembly process sequences Nina Vetríková1, a and Michala Šimúnová1, b 1Institute of Production Systems and Applied Mechanics, Faculty of Materials Science and Technology in Trnava, Slovak University of Technology in Bratislava, Rázusova 2, 917 24, Trnava, Slovak republic anina.vetrikova@stuba.sk, bmichala.simunova@stuba.sk Keywords: algorithms, evolution, application, assembly, system Abstract.
Noe, “Sensing and acting in intelligent assembly systems” in Annual Reviews in Control, Volume 23, Published by Elsevier Science Ltd. 1999, pp. 171–176
In: Journal of Production Engineering, Vol. 14, Number 1, 2011, p. 31-34 ISSN 1821-4932 [9] Delgado Sobrino, D.R., Košťál, P., Mudriková, A, - Velíšek, K. & Vlášek, M, Introductory Design, Description and Analysis of the Material Flow at an Intelligent Manufacturing Cell.
In: Future Management Science and Engineering : 2011 International Conference on Future Management Science and Engineering.
In: Annals of Faculty of Engineering Hunedoara - Journal of Engineering. - ISSN 1584-2673. - Tom IX, Fasc. 4 (extra) (2011), s. 41-44
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