Zhao Yanchun
Lanzhou University of Technology
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Featured researches published by Zhao Yanchun.
Rare Metal Materials and Engineering | 2012
Liu Guangqiao; Kou Shengzhong; Li Chunyan; Zhao Yanchun
Abstract Zr 53.9 Cu 29.4 Ni 4.9 Al 9.8 Fe 2 alloy sample with the diameter of 3 mm was prepared by Cu mold suction casting at different temperatures. The effect of casting temperature on mechanical properties and microstructure of the as-cast alloy was investigated. It is found that there is a critical casting temperature for the fully amorphous structure, below which the crystallization phase might be precipitated. Experiment results show that the compressive strength increases and the compressive plasticity slightly decreases when the casting temperature increases to certain extent. However, the compressive strength and the compressive plasticity simultaneously increase when the casting voltage increases to 9 kV, and the compressive plasticity is 2.62%. Mechanical properties of BMG can be tailored to certain extent by controlling the casting temperature, which is correlated with free volume and residual stresses.
Rare Metal Materials and Engineering | 2017
Zhao Yanchun; Ma Wenlong; Zhao Zhiping; Huang Mingyuan; Kou Shengzhong; Li Chunyan; Yuan Zizhou
Abstract Ti40Ni40Cu20 amorphous matrix composite plate specimens were fabricated by the levitation suspend melting-water cooled Cu mold process. The specimens were pre-compressed at different degrees with a universal testing machine and then annealed at 150 °C for 30 min. The effects of pre-deformation annealing processes on the microstructure and mechanical properties of Ti40Ni40Cu20 alloy system were studied by a metallographic microscope, X-ray diffraction (XRD) and scanning electron microscope (SEM). The results show the martensitic phase transformation that of the austenite phase under external force occurs. The phase transition induced by the deformation coupled with the annealing release of residual thermal stress plays a role in enhancing both strength and toughness of the amorphous matrix composite. Both martensite phases and austenite phases are increased with the increase with the degrees of pre-deformation increasing, and martensite phases are increased faster. Thus, the yield strength of the composite increases, while the ductility declines. Therefore the controllable yield strength in the pre-compression stage for shaping can be realized.
Rare Metal Materials and Engineering | 2017
Zhao Yanchun; Zhao Zhiping; Ma Wenlong; Huang Mingyuan; Kou Shengzhong; Li Chunyan; Yuan Zizhou
Abstract Ti-Ni-based amorphous composite samples (Ti0.5Ni0.5)100-xCux with different Cu contents but the same diameter which has been prepared by the copper mold suction casting. The effect of the Cu contents (x=0, 10, 15, 20, 25, 30, 35, 40, at%) on the microstructures and mechanical properties of the amorphous composites was studied. Results show that both fracture strength and plastic strain of the alloy are very high when the copper content is x=20. Meanwhile the alloy exhibits the best comprehensive properties. As the x value increases, the glass forming ability of (Ti0.5Ni0.5)100-xCux alloy shows a waveform change from increasing to decreasing and then to increasing, but following an overall trend towards decreasing. The plasticity of Ti-Ni-based amorphous materials can be improved by adding Cu element in modest quantities (x≈25) to the Ti-Ni-based composites; however, adding more Cu (i.e., x>30) neither can improve the amorphous forming ability nor can enhance its strength. When x=15, the alloy has the highest breaking strength of 2440 MPa while gets the higher yield strength of 1471 MPa causing 17.15% plastic strain. The data are pretty high with respect to other amorphous systems or other alloy systems with memory of their shapes. When x=25, there is a certain increase in the alloy plastic strain with 21.35% plastic deformation.
Rare Metal Materials and Engineering | 2015
Zhao Yanchun; Kou Shengzhong; Yuan Xiaopeng; Li Chunyan; Yu Peng; Pu Yongliang; Xu Jiao
Abstract Cu46Zr44Al5Nb5 amorphous alloys were fabricated by suspend melting under an argon atmosphere using water-cooled Cu mould suction casting. Glass forming ability and mechanical properties of the alloys were studied. The analyses of DSC curves, X-ray diffraction (XRD) patterns and electron diffraction taken from the rods of Cu46Zr44Al5Nb5 with different diameters (3, 4, 6 mm) indicate that the critical diameter can be up to 6 mm at least. And the best glass former exhibits an undercooled liquid region ΔT of 52 K, and reduced glass transition temperature Trg of 0.60. The critical cooling rate (Rc) calculated from TTT (Time-Temperature-Transformation) curves of Cu46Zr44Al5Nb5 forming glassy alloy is 3.985 K/s. The intensity of broad peaks from X-ray diffraction patterns, the crystallization enthalpy and the fracture strength of the amorphous rods with different diameters, exhibit obvious difference, which is related to the variation of the cooling rate of solidification for the rods with different size.
Archive | 2013
Zhao Yanchun; Kou Shengzhong; Yuan Xiaopeng; Li Chunyan; Pu Yongliang; Li Chao; Jiang Weike; Xu Jiao
Archive | 2013
Zhao Yanchun; Kou Shengzhong; Yuan Xiaopeng; Li Chunyan; Pu Yongliang; Xu Jiao; Zhang Yajuan
Rare Metal Materials and Engineering | 2017
Yuan Xiaopeng; Zhao Yanchun; Kou Shengzhong; Zhao Zhiping; Li Chunyan; Yuan Zizhou
Archive | 2017
Li Chunyan; Yin Jinfeng; Kou Shengzhong; Zhao Yanchun; Zhu Fuping; Ding Juanqiang
Xiyou Jinshu Cailiao yu Gongcheng | 2016
Yao Pei; Kou Shengzhong; Li Chunyan; Zhao Yanchun; Yuan Xiaopeng; Pu Yongliang; Xie Qihui; Gao Jipeng
Xiyou Jinshu Cailiao Gongcheng | 2015
Zhao Yanchun; Kou Shengzhong; Yuan Xiaopeng; Li Chunyan; Pu Yongliang; Xu Jiao; Yu Peng