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Featured researches published by Zhengzhi Zhao.


International Journal of Minerals Metallurgy and Materials | 2014

Mechanical properties and characteristics of nanometer-sized precipitates in hot-rolled low-carbon ferritic steel

Xiao-pei Wang; Aimin Zhao; Zhengzhi Zhao; Yao Huang; Liang Li; Qing He

The microstructures and properties of hot-rolled low-carbon ferritic steel have been investigated by optical microscopy, field-emission scanning electron microscopy, transmission electron microscopy, and tensile tests after isothermal transformation from 600°C to 700°C for 60 min. It is found that the strength of the steel decreases with the increment of isothermal temperature, whereas the hole expansion ratio and the fraction of high-angle grain boundaries increase. A large amount of nanometer-sized carbides were homogeneously distributed throughout the material, and fine (Ti, Mo)C precipitates have a significant precipitation strengthening effect on the ferrite phase because of their high density. The nanometer-sized carbides have a lattice parameter of 0.411–0.431 nm. After isothermal transformation at 650°C for 60 min, the ferrite phase can be strengthened above 300 MPa by precipitation strengthening according to the Ashby-Orowan mechanism.


International Journal of Minerals Metallurgy and Materials | 2012

Microstructures and mechanical properties of C-Mn-Cr-Nb and C-Mn-Si-Nb ultra-high strength dual-phase steels

Zhi-gang Wang; Aimin Zhao; Zhengzhi Zhao; Jie-yun Ye; Di Tang; Guosen Zhu

The microstructures and mechanical properties of C-Mn-Cr-Nb and C-Mn-Si-Nb ultra-high strength dual-phase steels were studied by scanning electron microscopy (SEM), transmission electron microscopy (TEM), and tensile test. The results show that Si can promote the transformation of austenite (γ) to ferrite (α), enlarge the (α+γ) region, and increase the aging stability of martensite by inhibiting carbide precipitation. Adding Cr leads to the formation of retained austenite and martensite/austenite (M/A) constituents, as well as the decomposition of martensite during the overaging stage. Both of the steels show higher initial strain-hardening rates and two-stage strain-hardening characteristics. The C-Mn-Si-Nb steel shows the higher strain-hardening rate than the C-Mn-Cr-Nb steel in the first stage; however, there is no significant difference in the second stage. Although the tensile strength and elongation of the two steels both exceed 1000 MPa and 15%, respectively, the comprehensive mechanical properties of the C-Mn-Si-Nb steel are superior.


Transactions of Nonferrous Metals Society of China | 2009

Microstructure evolution and mechanical properties of 1 000 MPa cold rolled dual-phase steel

Zhengzhi Zhao; Guangcan Jin; Feng Niu; Di Tang; Ai-min Zhao

Abstract The microstructure evolution of 1 000 MPa cold rolled dual-phase (DP) steel at the initial heating stages of the continuous annealing process was analyzed. The effects of different overaging temperatures on the microstructures and mechanical properties of 1 000 MPa cold rolled DP steel were investigated using a Gleeble–3500 thermal/mechanical simulator. The experimental results show that ferrite recovery and recrystallization, pearlite dissolution and austenite nucleation and growth take place in the annealing process of ultra-high strength cold rolled DP steel. When being annealed at 800 °C for 80 s, the tensile strength and total elongation of DP steel can reach 1 150 MPa and 13%, respectively. The microstructure of DP steel mainly consists of a mixture of ferrite and martensite. The steel exhibits low yield strength and continuous yielding which is commonly attributed to mobile dislocations introduced during cooling process from the intercritical annealing temperature.


Archive | 2010

1000MPa grade cold rolling hot dip galvanizing two-phase steel and manufacturing method thereof

Aiming Xiong; Lan Su; Yinli Chen; Zhang Jun; Jiquan Sun; Di Tang; Jian Zhou; Guangcan Jin; Haiquan Wang; Zhengzhi Zhao; Lixin Zhu; Benhai Li; Aimin Zhao; Guangming Liu


Archive | 2011

Continuous casting slab high-temperature oxidation resistant coatings and preparation process thereof

Zhenli Mi; Yan Wang; Biqiang Zuo; Zhengzhi Zhao; Lan Su; Yinli Chen; Aimin Zhao; Di Tang; Jiquan Sun


Archive | 2009

Niobium and titanium composite added ultra-low carbon baking hardening steel plate and manufacturing method thereof

Yinli Chen; Benhai Li; Lan Su; Guangming Liu; Lei Wu; Zhang Jun; Zhengzhi Zhao; Guosen Zhu; Aimin Zhao; Aiming Xiong; Di Tang; Junping Xue; Huaxiang Teng


Archive | 2009

TRIP steel plate for high strength cold rolling hot dip galvanizing and preparation thereof

Aimin Zhao; Benhai Li; Yuguang Zhang; Lixin Zhu; Zhengzhi Zhao; Guangming Liu; Yinli Chen; Jian Zhou; Lan Su; Fei Li; Jiquan Sun; Zhang Jun; Di Tang; Ruifeng Yang


Archive | 2010

440MPa grade niobium-containing high-strength IF steel and manufacturing method thereof

Aiming Xiong; Jiquan Sun; Aimin Zhao; Guosen Zhu; Lixin Zhu; Di Tang; Benhai Li; Yaobing Li; Fei Li; Libin Liu; Yinli Chen; Lan Su; Zhengzhi Zhao


Archive | 2010

Method and device for adjusting strip steel transverse warping by using pinch rolls

Jiquan Sun; Yanzhen Guo; Zhenli Mi; Zhengzhi Zhao; Lan Su; Yinli Chen; Aimin Zhao; Di Tang


Archive | 2012

Manufacturing method of transformation induced plasticity steel containing V hot rolling

Aimin Zhao; Xutao Gao; Di Tang; Zhengzhi Zhao; Mingming Zhang

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Aimin Zhao

University of Science and Technology Beijing

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Di Tang

University of Science and Technology Beijing

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Lan Su

University of Science and Technology Beijing

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Yinli Chen

University of Science and Technology Beijing

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Zhenli Mi

University of Science and Technology Beijing

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Guangcan Jin

University of Science and Technology Beijing

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Huibin Wu

University of Science and Technology Beijing

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Mingming Zhang

University of Science and Technology Beijing

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Zhi-gang Wang

University of Science and Technology Beijing

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Ai-min Zhao

University of Science and Technology Beijing

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