reviewTop 1% cited
High-strength titanium alloys for aerospace engineering applications: A review on melting-forging process
Materials Science and Engineering A · 2022 · Vol. 845 · pp. 143260–143260
Qinyang Zhao(Chang'an University)Qiaoyan Sun(Xi'an Jiaotong University)Shewei Xin(Northwest Institute For Non-Ferrous Metal Research)Yongnan Chen(Chang'an University)Cong Wu(Xi'an Jiaotong University)Huan Wang(Northwestern Polytechnical University)Jianwei Xu(Northwestern Polytechnical University)Mingpan Wan(Guizhou University)Weidong Zeng(Northwestern Polytechnical University)Yongqing Zhao✉(Northwest Institute For Non-Ferrous Metal Research)
Titanium Alloys Microstructure and PropertiesIntermetallics and Advanced Alloy PropertiesAdvanced materials and compositesForgingMaterials scienceAerospaceToughnessMicrostructureTitaniumDuctility (Earth science)Titanium alloyMetallurgyMechanical engineering
Citations
693
FWCI
48.38
field-weighted impact
References
290
Percentile
100%
vs. same field & year
Citations per year
References
The conflicts between strength and toughness
Nature Materials · 2011 · 3,721 citations
Perspectives on Titanium Science and Technology
Acta Materialia · 2013 · 2,816 citations
A comparative study of the mechanical properties of high-strength β-titanium alloys
Journal of Alloys and Compounds · 2007 · 393 citations
Influence of processing on microstructure and mechanical properties of (α+β) titanium alloys
Materials Science and Engineering A · 1998 · 1,408 citations
Thermomechanical processing of beta titanium alloys—an overview
Materials Science and Engineering A · 1998 · 795 citations
General approach to phase stability and elastic properties of β-type Ti-alloys using electronic parameters
Scripta Materialia · 2006 · 733 citations
Additive manufacturing of strong and ductile Ti–6Al–4V by selective laser melting via in situ martensite decomposition
Acta Materialia · 2014 · 1,194 citations
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