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Online since: January 2012
Authors: Xiao Jun Wang, Xiao Guang Fu
Yao: Tool Engineering Vol.41 (2007), p.83-84
Karabin: Materials Science Forum Vols.404-407 (2002), p. 6168
Tong: Materials Science and Engineering A Vol.499 (2009) No.1-2, p.230-233
Tang: Key Engineering Materials Vols.375-376 (2008), p.445-448
[10] H.Guo, D.W.Zuo, Y.W.Liu: Journal of Jilin University(Engineering and Technology Edition) Vol.37 (2008) No.1, p.84-88.
Karabin: Materials Science Forum Vols.404-407 (2002), p. 6168
Tong: Materials Science and Engineering A Vol.499 (2009) No.1-2, p.230-233
Tang: Key Engineering Materials Vols.375-376 (2008), p.445-448
[10] H.Guo, D.W.Zuo, Y.W.Liu: Journal of Jilin University(Engineering and Technology Edition) Vol.37 (2008) No.1, p.84-88.
Online since: May 2021
Authors: Igor V. Bessonov, Alexey D. Zhukov, E.A. Zinoveva, L.K. Bogomolova
Younes, Progress to global strategy for management of energy systems, Journal of Building Engineering.
Chernysheva, Thermal features of three-layer brick walls, XXV Polish-Russian -Slovak seminar “Theoretical Foundation of Civil Engineering” Procedia Engineering. 153 (2016) 805–809
Kozlov, The mathematical model and methodology for calculating the moisture state of structures”, Academy, Architecture and engineering, M.
Vol. 117 (2017) 0018426th R-S-P Seminar 2017 Theoretical Foundation of Civil Engineering, RSP 2017.
Advances in Intelligent Systems and Computing. vol 1116 (2019) 413-421.
Chernysheva, Thermal features of three-layer brick walls, XXV Polish-Russian -Slovak seminar “Theoretical Foundation of Civil Engineering” Procedia Engineering. 153 (2016) 805–809
Kozlov, The mathematical model and methodology for calculating the moisture state of structures”, Academy, Architecture and engineering, M.
Vol. 117 (2017) 0018426th R-S-P Seminar 2017 Theoretical Foundation of Civil Engineering, RSP 2017.
Advances in Intelligent Systems and Computing. vol 1116 (2019) 413-421.
Online since: March 2018
Authors: Dua O. Weraikat, Adnan I.O. Zaid
Introduction
In the last two decays, Zinc-Aluminum (Zn-Al) alloys in general and Zinc-Aluminum 5 (ZA5) alloy, in particular, have been widely used in industrial and engineering applications.
Histogram of Fatigue Data for ZA5 and its micro-alloys References [1] Budinski, K.G. (1992), "Engineering Materials Properties and Selection", 4th Edition, Prentice-Hall, Inc., New Jersey
[9] Zaid, A.I.O, (2006), "Grain Refinement of Zn-Al Alloys", Proc. of the 2nd International Conference on the Frontiers of Engineering Materials, FAEM-2006, Lahore, Pakistan
[12] Zaid, A.I.O and Al-Banna, M.A., (2002), PEDD-6, Proc. of the Sixth International Conference on Production Engineering Design and Development, Cairo, Egypt (2002)
[13] Zaid A.I.O and Al-Qawabha, (September 2003), “Effect of Ti and Ti+B on the Mechanical Strength and Fatigue Life of Zinc Aluminum Alloy -5 (ZA-5)”, Proceeding of the International Symposium on Advanced Material, ISAM-2003
Histogram of Fatigue Data for ZA5 and its micro-alloys References [1] Budinski, K.G. (1992), "Engineering Materials Properties and Selection", 4th Edition, Prentice-Hall, Inc., New Jersey
[9] Zaid, A.I.O, (2006), "Grain Refinement of Zn-Al Alloys", Proc. of the 2nd International Conference on the Frontiers of Engineering Materials, FAEM-2006, Lahore, Pakistan
[12] Zaid, A.I.O and Al-Banna, M.A., (2002), PEDD-6, Proc. of the Sixth International Conference on Production Engineering Design and Development, Cairo, Egypt (2002)
[13] Zaid A.I.O and Al-Qawabha, (September 2003), “Effect of Ti and Ti+B on the Mechanical Strength and Fatigue Life of Zinc Aluminum Alloy -5 (ZA-5)”, Proceeding of the International Symposium on Advanced Material, ISAM-2003
Online since: September 2014
Authors: Xin Hong Xiong, Dun Miao Quan, Qiao Xin Zhang, Yun Chen, Jia Lin Chen
Research on the Mechanical Properties and Corrosion Resistance
of Mg-RE and Mg-Zn-Cu Alloys
Xinhong Xiong1, a, Dunmiao Quan1,b, Jialin Chen 1,c ,
Qiaoxin Zhang2,d and Yun Chen1,e
1 School of Logistics Engineering, Wuhan University of Technology, Wuhan, 430063, P.R.China
2 School of Mechanical and Electronic Engineering, Wuhan University of Technology, Wuhan , 430070, P.R.China
axiongxh@whut.edu.cn, bquandm@whut.edu.cn, conlymrc@sina.cn, dzhangqx@whut.edu.cn
Keywords: magnesium alloy, rare earth elements,corrosion resistance
Abstract.
Foundry Technology, Vol.25 (2004), p.941 [7] Song Yulai, Liu Yaohui, Zhu Xianyong, Wang Suhuan: Advance in Studies on Corrosion Behavior of Die-Casting [J].
Rare Metal Materials and Engineering, Vol.43 (2014).p.636 [9] Zhang Fan, Huang Guoji, Du Zhihui, Zhang Hao, Zhang Xuhu: Influence of Gd, Y on Corrosion Behavior of ZK60 Magnesium Alloy [J].
Aerospace Materials & Technology, Vol.1 (2012), p.57 [10] D.eliezer, P.uzan, E.aghion: Materials Science Forum (2000), p.857- 866 [11] Wu Yujing, Ding Wenjiang, Peng Liming, Zeng Xiaoqing, Li Dongliang: Materials China, Vol.30 (2011), p.1-10 [12] Yuan G.Y, Kato H, Amiya K, et al.
Foundry Technology, Vol.25 (2004), p.941 [7] Song Yulai, Liu Yaohui, Zhu Xianyong, Wang Suhuan: Advance in Studies on Corrosion Behavior of Die-Casting [J].
Rare Metal Materials and Engineering, Vol.43 (2014).p.636 [9] Zhang Fan, Huang Guoji, Du Zhihui, Zhang Hao, Zhang Xuhu: Influence of Gd, Y on Corrosion Behavior of ZK60 Magnesium Alloy [J].
Aerospace Materials & Technology, Vol.1 (2012), p.57 [10] D.eliezer, P.uzan, E.aghion: Materials Science Forum (2000), p.857- 866 [11] Wu Yujing, Ding Wenjiang, Peng Liming, Zeng Xiaoqing, Li Dongliang: Materials China, Vol.30 (2011), p.1-10 [12] Yuan G.Y, Kato H, Amiya K, et al.
Online since: December 2010
Authors: Terence G. Langdon
Langdon1,2,a
1Departments of Aerospace & Mechanical Engineering and Materials Science
University of Southern California, Los Angeles, CA 90089-1453, U.S.A.
2Materials Research Group, School of Engineering Sciences
University of Southampton, Southampton SO17 1BJ, U.K.
It is instructive to note that Wootz steel has been specifically designated as an advanced material of the ancient world because of its high impact hardness and superplastic properties at elevated temperatures [3].
Furthermore, this listing includes the papers ranked in the #1 positions for Scripta Materialia and Materials Science and Engineering A.
Sci.Forum Vol. 503-504 (2006), p. 363 [3] S.
Ranganathan: India’s Legendary Wootz Steel: An Advanced Material of the Ancient World (National Institute of Advanced Studies and IISc, Bangalore, India, 2004) [4] O.D.
It is instructive to note that Wootz steel has been specifically designated as an advanced material of the ancient world because of its high impact hardness and superplastic properties at elevated temperatures [3].
Furthermore, this listing includes the papers ranked in the #1 positions for Scripta Materialia and Materials Science and Engineering A.
Sci.Forum Vol. 503-504 (2006), p. 363 [3] S.
Ranganathan: India’s Legendary Wootz Steel: An Advanced Material of the Ancient World (National Institute of Advanced Studies and IISc, Bangalore, India, 2004) [4] O.D.
Online since: December 2012
Authors: Bilal Mansoor, Ahmad Albakri, Marwan Khraisheh, Mohammad Albakri
Mulyukov, “Structure and properties of ultrafine-grained materials produced by severe plastic deformation,” Materials Science and Engineering: A, vol. 168, no. 2, pp. 141–148, Aug. 1993
Fuller, “Superplastic Forming of 7475 Al Sheet after Friction Stir Processing (FSP),” Materials Science Forum, vol. 447–448, pp. 505–512, 2004
Khraisheh, “Impact of Selective Grain Refinement on Superplastic Deformation: Finite Element Analysis,” Journal of Materials Engineering and Performance, vol. 17, no. 2, pp. 163–167, Dec. 2007
Khraisheh, “Simulation of Friction Stir Processing with Internally Cooled Tool,” Advanced Materials Research, vol. 445, pp. 560–565, Jan. 2012
Khraisheh, “Analysis of superplastic deformation of AZ31 magnesium alloy,” Advanced Engineering Materials, vol. 9, no. 9, pp. 777–783, 2007.
Fuller, “Superplastic Forming of 7475 Al Sheet after Friction Stir Processing (FSP),” Materials Science Forum, vol. 447–448, pp. 505–512, 2004
Khraisheh, “Impact of Selective Grain Refinement on Superplastic Deformation: Finite Element Analysis,” Journal of Materials Engineering and Performance, vol. 17, no. 2, pp. 163–167, Dec. 2007
Khraisheh, “Simulation of Friction Stir Processing with Internally Cooled Tool,” Advanced Materials Research, vol. 445, pp. 560–565, Jan. 2012
Khraisheh, “Analysis of superplastic deformation of AZ31 magnesium alloy,” Advanced Engineering Materials, vol. 9, no. 9, pp. 777–783, 2007.
Online since: February 2021
Authors: Djoko Sihono Gabriel, Roben Hotdysah Putra Saragih
El-Tawargy, Effect of recycling on the optical, mechanical and structural properties of polypropylene fibers, Optics and Lasers in Engineering, Vol. 51 no. 8 (2013) 994–1003
Law, Production, use, and fate of all plastics ever made, Science Advances, Vol. 3 no. 7 (2017) 25–29
Hapsari, Plastic packaging material value conservation and the structure of stakeholder role, Key Engineering Materials, Vol. 773 KEM (2018) 396–404
Jeremia, Plastic packaging material value conservation and evident of the consumers’ acceptance, Key Engineering Materials, Vol. 773 KEM (2018) 390–395
Ariño, Effects of injection-molding conditions on the gloss and color of pigmented polypropylene, Polymer Engineering Science, Vol. 45 no. 12 (2005) 1557–1567
Law, Production, use, and fate of all plastics ever made, Science Advances, Vol. 3 no. 7 (2017) 25–29
Hapsari, Plastic packaging material value conservation and the structure of stakeholder role, Key Engineering Materials, Vol. 773 KEM (2018) 396–404
Jeremia, Plastic packaging material value conservation and evident of the consumers’ acceptance, Key Engineering Materials, Vol. 773 KEM (2018) 390–395
Ariño, Effects of injection-molding conditions on the gloss and color of pigmented polypropylene, Polymer Engineering Science, Vol. 45 no. 12 (2005) 1557–1567
Online since: March 2010
Authors: Eric M. Taleff, Jon T. Carter, Paul E. Krajewski, Louis G. Hector
., Research and Development Laboratory, MC 480-106-212, 30500
Mound Road, Warren, MI 48090-9055, U.S.A.
2
The University of Texas at Austin, Department of Mechanical Engineering, 1 University
Station C2200, Austin, TX 78712-0292, U.S.A.
Forum Vols. 551-552 (2007), p. 3 [2] R.
PhD thesis, Mechanical Engineering Dept., The University of Texas at Austin, May 2004
Forum Vols. 243-245 (1997), p. 739 [12] Y.M.
Richter, in Advances in Superplastic Forming, N.
Forum Vols. 551-552 (2007), p. 3 [2] R.
PhD thesis, Mechanical Engineering Dept., The University of Texas at Austin, May 2004
Forum Vols. 243-245 (1997), p. 739 [12] Y.M.
Richter, in Advances in Superplastic Forming, N.
Online since: February 2011
Authors: Shi Xing Zhang, Gang Yi Cai
Due to its importance, grain growth has become a topic of much research interest in materials and engineering.
Accordingly, prediction of the final grain size distribution at HAZ is crucial for any welding engineer[1-4].
References [1] S.Jahanian, Wen Lei: Procceding of the 1999 ASME Design Engineering Technical Conferences, September 12-15,1999, Las Vegas, Nevada:1-12 [2] S.SISTA, Z.YANG: .Metallurgical and Materials Transactions Vol.31B(2000), p 529-535 [3] Rene Messina, Michele Soucail: Materials Science and Engineering Vol.
A308(2001), p.258-267 [4] Shixing Zhang, Shaokang Guan, et al: Materials Science Forum Vol. 575-578 (2008), p 627-632
In Chinese [8] Shixing Zhang, Gangyi Cai: Advanced Materials Research Vol. 97-101 (2010), p 3247-3251.
Accordingly, prediction of the final grain size distribution at HAZ is crucial for any welding engineer[1-4].
References [1] S.Jahanian, Wen Lei: Procceding of the 1999 ASME Design Engineering Technical Conferences, September 12-15,1999, Las Vegas, Nevada:1-12 [2] S.SISTA, Z.YANG: .Metallurgical and Materials Transactions Vol.31B(2000), p 529-535 [3] Rene Messina, Michele Soucail: Materials Science and Engineering Vol.
A308(2001), p.258-267 [4] Shixing Zhang, Shaokang Guan, et al: Materials Science Forum Vol. 575-578 (2008), p 627-632
In Chinese [8] Shixing Zhang, Gangyi Cai: Advanced Materials Research Vol. 97-101 (2010), p 3247-3251.
Online since: January 2012
Authors: Yoshikazu Nakai, Kenichi Nakagawa, Kohei Mikami
Nakagawa, Advanced Engineering Materials, Vol. 10 (2008), p.1026
Yoshioka, Materials Science Forum, Vol. 561-565 (2007), p.1279
Seki, Key Engineering Materials, Vol. 378-379 (2008), p.3017
Kim, Procedia Engineering, Vol. 2, Issue 1 (2010), p.147
Kawamoto, Transactions of the Japan Society of Mechanical Engineers, Vol. 7 (29-1) (1941), p.85
Yoshioka, Materials Science Forum, Vol. 561-565 (2007), p.1279
Seki, Key Engineering Materials, Vol. 378-379 (2008), p.3017
Kim, Procedia Engineering, Vol. 2, Issue 1 (2010), p.147
Kawamoto, Transactions of the Japan Society of Mechanical Engineers, Vol. 7 (29-1) (1941), p.85