Shaosong Jiang
Harbin Institute of Technology
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Publication
Featured researches published by Shaosong Jiang.
Journal of Materials Engineering and Performance | 2017
Shaosong Jiang; Yong Jia; Hongbin Zhang; Zhihao Du; Zhen Lu; Kaifeng Zhang; Yushi He; Ruizhuo Wang
The benefits of ultrasonic vibration auxiliary metal forming have been shown by many studies. In this study, a series of experiments were carried out to investigate the deformation behavior of Ti foils under ultrasonic vibration in tension, and the tensile properties of Ti foils with/without the application of ultrasonic vibration were investigated. Then, the microstructure of different tensile samples was analyzed by transmission electron microscopy (TEM). The results of the tensile experiments showed that the tensile strength of tensile samples was reduced when ultrasonic vibration was applied, while the elongation of these samples increased. The flow stress increased with increasing strain without applying ultrasonic vibration, while it decreased steeply when the ultrasonic vibration was applied, and this reduction of flow stress demonstrated the effect of acoustic softening on the properties of the material. Additionally, the range of flow stress reduction was inversely proportional to the time for which ultrasonic vibration was applied. The TEM images showed that there were remarkable differences in dislocation distribution and tangles with/without ultrasonic vibration. The dislocation distribution was inhomogeneous, and copious dislocation tangles were discovered without ultrasonic vibration. When it was applied, the parallel re-arrangement of dislocations could be observed and the mass of dislocation tangles was mostly absent.
Materials | 2017
Chengcheng Shi; Shaosong Jiang; Kaifeng Zhang
This paper focuses on the fabrication of as-forged Ti46.5Al2Cr1.8Nb-(W, B) alloy via pulse current auxiliary isothermal forging (PCIF). The starting material composed of near gamma (NG) microstructure was fabricated by adopting pre-alloyed powders via hot pressing sintering (HPS) at 1300 °C. Isothermal compression tests were conducted at a strain rate range of 0.001–0.1 s−1 and a temperature range of 1125–1275 °C to establish the constitutive model and processing map. The optimal hot deformation parameters were successfully determined (in a strain rate range of 10−3–2.5 × 10−3 s−1 and temperature range of 1130–1180 °C) based on the hot processing map and microstructure observation. Accordingly, an as-forged TiAl based alloy without cracks was successfully fabricated by PCIF processing at 1175 °C with a nominal strain rate of 10−3 s−1. Microstructure observation indicated that complete dynamic recrystallization (DRX) and phase transformation of γ→α2 occurred during the PCIF process. The elongation of as-forged alloy was 136%, possessing a good secondary hot workability, while the sintered alloy was only 66% when tested at 900 °C with a strain rate of 2 × 10−4 s−1.
Journal of Alloys and Compounds | 2015
Hongbin Zhang; Kaifeng Zhang; Shaosong Jiang; Haiping Zhou; Changhong Zhao; Xiaoli Yang
Journal of Materials Research | 2015
Hongbin Zhang; Kaifeng Zhang; Shaosong Jiang; Zhen Lu
Materials & Design | 2016
Zhihao Du; Shaosong Jiang; Kaifeng Zhang; Zhen Lu; Baoyong Li; Dalin Zhang
Metals | 2016
Zhen Lu; Zhenhan Huang; Shaosong Jiang; Wei Liu; Kaifeng Zhang
Journal of Alloys and Compounds | 2015
Zhaoxin Du; Jinrong Liu; Shaosong Jiang; Shulong Xiao; F.T. Kong; Y.Y. Chen
Vacuum | 2018
Zhihao Du; Kaifeng Zhang; Zhen Lu; Shaosong Jiang
Materials Characterization | 2018
Chengcheng Shi; Kaifeng Zhang; Shaosong Jiang; Zhenhan Huang
Journal of Materials Research | 2016
Zhenhan Huang; Zhen Lu; Shaosong Jiang; Kaifeng Zhang