Shengcheng Mao
Beijing University of Technology
128 Papers
127 Citations
Shengcheng Mao is an academic researcher from Beijing University of Technology. The author has contributed to research in topics: Dislocation & Superalloy. The author has an hindex of 19, co-authored 96 publications.
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Papers
Microstructural and compositional design of Ni-based single crystalline superalloys ― A review
TL;DR: In this paper, a review on the effects of some common alloying elements on the microstructural and mechanical property stability control of Ni-based superalloys is presented, including base elements, mechanical strengthening elements, long term stability elements and the oxidation resistance elements.
396
A Transforming Metal Nanocomposite with Large Elastic Strain, Low Modulus, and High Strength
Shijie Hao,Lishan Cui,Daqiang Jiang,Xiaodong Han,Yang Ren,Jiang Jiang,Yong Liu,Zhenyang Liu,Shengcheng Mao,Yandong Wang,Yan Li,Xiaobing Ren,Xiaobing Ren,Xiangdong Ding,Shan Wang,Cun Yu,Xiaobin Shi,Minshu Du,Feng Yang,Yanjun Zheng,Ze Zhang,Ze Zhang,Xiaodong Li,Dennis E. Brown,Ju Li,Ju Li +25 more
TL;DR: By engineering the microstructure and residual stress to couple the true elasticity of Nb nanowires with the pseudoelasticity of a NiTi shape-memory alloy, this work developed an in situ composite that possesses a large quasi-linear elastic strain of over 6%, a low Young's modulus of ~28 gigapascals, and a high yield strength of ~1.65 gigapASCals.
297
In-situ EBSD study of the active slip systems and lattice rotation behavior of surface grains in aluminum alloy during tensile deformation
TL;DR: In this paper, an in-situ study of the plastic deformation behavior of surface grains in a polycrystalline aluminum alloy, in particular the active slip systems and lattice rotation, by means of the electron backscattered diffraction method, was conducted at a spatial resolution of 1μm, thus allowing detailed analysis at subgrain levels, enabling elucidation of fine details of the deformation process that are not commonly seen in the literature.
164
EBSD studies of the stress-induced B2–B19′ martensitic transformation in NiTi tubes under uniaxial tension and compression
TL;DR: In this article, a crystallographic model of the critical transformation stress and transformation strain for polycrystalline NiTi under tension and compression was proposed to interpret the observed tension-compression asymmetry.
154
Cloning Nacre's 3D Interlocking Skeleton in Engineering Composites to Achieve Exceptional Mechanical Properties
Hewei Zhao,Yonghai Yue,Lin Guo,Juntao Wu,Youwei Zhang,Xiaodong Li,Shengcheng Mao,Xiaodong Han +7 more
TL;DR: Ceramic/polymer composite equipped with 3D interlocking skeleton (3D IL) is developed through a simple freeze-casting method, exhibiting exceptionally light weight, high strength, toughness, and shock resistance.
140