202255 · In this work, we studied a near-alpha Ti-6321 titanium alloy which was deformed in the bi-phase region and then post-annealed at various temperatures. The
contact202051 · The microstructure, mechanical properties, and texture characteristics of marine titanium alloy Ti6321 sheets with four different initial microstructures were
contact202327 · The formation and evolution of adiabatic shear behaviors, as well as the corresponding mechanical properties of a near-Ti-6Al-3Nb-2Zr-1Mo (Ti-6321) alloy
contact201023 · Beta C TB11 Ti-15Mo TC1 Ti-2Al-1.5Mn OT4-1 TC2 Ti-4Al-1.5Mn OT4 TC3 Ti-5Al-4V GB/T ASTM ΓOCT JIS DIN BS
contact202255 · In this work, we studied a near-alpha Ti-6321 titanium alloy which was deformed in the bi-phase region and then post-annealed at various temperatures. The microstructure and macrozone evolution, accompanied with phase ratio change was observed through scanning electron microscopy (SEM) and electron backscatter
contact202252 · The stress–strain curves of Ti alloys show that the continuous flow softening occurs, while the broad oscillations induced by adiabatic shear bands exist above strain rates of 1.0 s−1. The ...
contactThis page cover the NBR 6321 Grade A/NBR6321GradeA Chemical element, Mechanical Properties, NBR6321GradeA Datasheet, Cross Reference of NBR6321GradeA Mainly used for Standard specification for seamless carbon steel pipe for high temperatures services.
contact20221115 · In this work, the bonding surfaces of Ti-6321 and TC4 alloys are microscopically uneven, which provides geometrical and microstructural heterogeneity. Meanwhile, the hexagonal close-packed (hcp) α-phase always shows intrinsically severe strain incompatibility due to the lack of five independent slip systems to achieve
contactTi-6321 titanium alloy billets have been heated in (α β) phase region and forged at the deformation range of 50%~80% and undergone conventional annealing, we can find that the microtructure types of original billets have not been changed, but the elongated α
contact2021428 · The results showed that the Ti-6321 alloy revealed no SCC susceptibility in this range, and the material exhibited softening effect when hydrogen content was 65wppm and a hardening effect when hydrogen content exceeded 65wppm. With the increase of hydrogen concentration, the elongation increased because the mobility of dislocations
contact2023320 · Alpha-beta titanium alloy: Example – Grade 5 (Ti-6Al-4V) Beta titanium alloy. Watch this short interactive video on Titanium Welding Guide: Titanium has the particular advantages of high strength to weight
contact2021428 · The results showed that the Ti-6321 alloy revealed no SCC susceptibility in this range, and the material exhibited softening effect when hydrogen content was 65wppm and a hardening effect when hydrogen content exceeded 65wppm. With the increase of hydrogen concentration, the elongation increased because the mobility of dislocations
contact2007111 · The microstructure and microtexture evolution of a near-alpha titanium alloy Ti-6321 during the post-annealing process after the hot-rolling were investigated. The microstructure of the hot-rolled plate developed differently at distinct annealing temperatures and the macrozone sizes and morphologies changed at the same time. The results
contactThe Ti-6Al-3Nb-2Zr-1Mo (Ti6321) alloy, a newfound near-α Ti alloy, mainly serves as an exceptional structural material in various corrosive conditions, where the service life of any Ti6321 part ...
contactDownload scientific diagram | | TEM images of Ti6321 alloy and alloy element contents of α and β phases: (A1, A2) Hot rolled microstructure; (B1, B2) Equiaxed microstructure; (C1, C2) Bimodal ...
contact202327 · The formation and evolution of adiabatic shear behaviors, as well as the corresponding mechanical properties of a near-Ti-6Al-3Nb-2Zr-1Mo (Ti-6321) alloy during dynamic compression process, were systematically investigated by the split Hopkinson pressure bar (SHPB) compression tests in this paper. T
contact2021311 · Mechanical Properties and Ballistic Performance of Ti-6321 Alloy HUANG Junhao 1 , WANG Lin 1,2,3 , LIU Xiaopin 4 , XU Xuefeng 1 , LIU Anjin 1 , Tayyeb Ali 1 , ZHOU Zhe 1 , NING Zixuan 1 , YANG Jiabin 1 , ZHANG Binbin 5 , CHENG Xingwang 1,2,3
contact(Ti6321) alloy joints by Electron beam welding (EBW). The results show that the microstructure of the weld metal (WM) is composed of a mixture of acicular a, acicular a0, and b. The heat affected ...
contactThe stress corrosion cracking (SCC) behavior of gaseous-hydrogenated near-alpha titanium alloy Ti-6321 in the range of 20 ∼ 210 wppm (ppm by weight) was investigated using slow strain rate test (SSRT). Optical Microscopy (OM), Scanning Electron Microscopy (SEM), as
contactThis page cover the NBR 6321 Grade A/NBR6321GradeA Chemical element, Mechanical Properties, NBR6321GradeA Datasheet, Cross Reference of NBR6321GradeA Mainly used for Standard specification for seamless carbon steel pipe for high temperatures services.
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contact2022711 · The amount of molybdenum added to an alloy spans from as little as 0.1% in HSLA steels to around 9% in Oct 19, 2017 · High Strength Low Alloy steel (HSLA steel) and tool steel account for a further 11% and 10% of total consumption. These four pillars of molease at apound annual growth rate of 3.2% to 3.8% between 2016 and 2025.
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