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Original Articles

Microstructural Modeling and Process Control During Hot Working of Commercial Ti-6A1-4V: Response of Lamellar and Equiaxed Starting Microstructures

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Pages 581-604 | Published online: 19 Apr 2007

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Read on this site (2)

EhabA. El-Danaf, MahmoudS. Soliman & AbdulhakimA. Almajid. (2009) Effect of Solution Heat Treatment on the Hot Workability of Al–Mg–Si Alloy. Materials and Manufacturing Processes 24:6, pages 637-643.
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O. N. Senkov, J. J. Valencia, S. V. Senkova, M. Cavusoglu & F. H. Froes. (2002) Effect of cooling rate on microstructure of Ti-6Al-4V forging. Materials Science and Technology 18:12, pages 1471-1478.
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Articles from other publishers (14)

Diksha Mahadule, Deepak Kumar, Tushar R. Dandekar, Rajesh K. Khatirkar & Satyam Suwas. (2023) Modelling of flow stresses during hot deformation of Ti–6Al–4Mo–1V–0.1Si alloy. Journal of Materials Research 38:15, pages 3750-3763.
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Yuting Zhou, Jie Zhou, Qian Shu, Shishan Li, Fanjiao Gongye, Shuai Long & Heping Deng. (2020) Deformation Mechanism and Constitutive Consideration for Ti-5Al-5Mo-5V-3Cr-1Zr Alloy Compressed at Elevated Temperatures. Journal of Materials Engineering and Performance 29:8, pages 5104-5113.
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Victor F. Pereira, Eduardo B. Fonseca, Alex M.S. Costa, Jefferson Bettini & Eder S.N. Lopes. (2020) Nanocrystalline structural layer acts as interfacial bond in Ti/Al dissimilar joints produced by friction stir welding in power control mode. Scripta Materialia 174, pages 80-86.
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Z.X. Zhang, S.J. Qu, A.H. Feng, X. Hu & J. Shen. (2019) Microstructural mechanisms during multidirectional isothermal forging of as-cast Ti-6Al-4V alloy with an initial lamellar microstructure. Journal of Alloys and Compounds 773, pages 277-287.
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Zhixiong Zhang, Shoujiang Qu, Aihan Feng, Xin Hu & Jun Shen. (2018) The Low Strain Rate Response of As-Cast Ti-6Al-4V Alloy with an Initial Coarse Lamellar Structure. Metals 8:4, pages 270.
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Z.X. Zhang, S.J. Qu, A.H. Feng, J. Shen & D.L. Chen. (2017) Hot deformation behavior of Ti-6Al-4V alloy: Effect of initial microstructure. Journal of Alloys and Compounds 718, pages 170-181.
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R. K. Gupta, V. Anil Kumar & P. Ram Kumar. (2016) Effect of Variants of Thermomechanical Working and Annealing Treatment on Titanium Alloy Ti6Al4V Closed Die Forgings. Journal of Materials Engineering and Performance 25:6, pages 2551-2562.
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S.C.V. Lim, K.V. Yang, Y. Yang, Y. Cheng, A. Huang, X. Wu & C.H.J. Davies. (2016) Tracking microstructure, texture and boundary misorientation evolution of hot deformed and post-deformation annealed Ti–6Al–4V alloy. Materials Science and Engineering: A 651, pages 524-534.
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S. Javid Mirahmadi, Mohsen Hamedi & Mohammad Habibi Parsa. (2014) Investigation of Microstructural Uniformity During Isothermal Forging of Ti-6Al-4V. Journal of Materials Engineering and Performance 23:12, pages 4411-4420.
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Xing Jian Gao, Zheng Yi Jiang, Dong Bin Wei, Si Hai JiaoDeng Fu Chen. (2014) Study on Hot-Working Behavior of High Carbon Steel / Low Carbon Steel Composite Material Using Processing Map. Key Engineering Materials 622-623, pages 330-339.
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Ming Man Li, Qui Jian Xun & Shang Zhou Zhang. (2012) Hot Workability Map for Near-α Titanium Alloy Ti-5.6Al-4.8Sn-2Zr-1Mo-0.35Si-0.7Nd. Advanced Materials Research 482-484, pages 1453-1456.
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Yun-bin HE, Qing-lin PAN, Qin CHEN, Zhi-ye ZHANG, Xiao-yan LIU & Wen-bin LI. (2012) Modeling of strain hardening and dynamic recrystallization of ZK60 magnesium alloy during hot deformation. Transactions of Nonferrous Metals Society of China 22:2, pages 246-254.
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Mahmoud S. Soliman, Ehab El-Danaf & Abdulhakim A. Almajid. (2009) Effect of Heat Treatment Conditions on the High Temperature Deformation of 6082-Al Alloy. Advanced Materials Research 83-86, pages 407-414.
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Y. V. R. K. Prasad, T. Seshacharyulu, S. C. Medeiros & W. G. Frazier. (2001) A Study of Beta Processing of Ti-6Al-4V: Is it Trivial?. Journal of Engineering Materials and Technology 123:3, pages 355-360.
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