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Featured researches published by Yao Zhihao.


Acta Metallurgica Sinica | 2013

INVESTIGATIONS ON DISSOLUTION MECHANISM OF LAVES PHASE IN GH4169 ALLOY INGOT BASED ON CLASSICAL DYNAMICAL MODEL

Zhang Maicang; Cao Guoxin; Dong Jianxin; Zheng Lei; Yao Zhihao

It is an urgent thing how to control the quality of large size GH4169 ingots nowadays. The high Nb element content in this alloy can increase the tendency of freckle defect formation. Though almost all the investigators consider that the segregation of Nb-riched Laves phase is the key factor of the freckle defect, how to avoid this phenomenon is still a hard-to-solve problem in engineering practice. In this work, a new prototype system based on classical dynamical model related to basic metallurgy theory was established to simulate the dynamical dissolving process of precipites evolution in nickel base superalloys. In this prototype system, the parameters related to the thermodynamic equilibrium state can be got from thermodynamic software of Thermo-Calc, the solute element diffusion coefficient at any temperature and time iterative can be got from dynamic software of Dictra. By using this prototype system, the dissolution process of Laves phase during homogenization process with different initial particle sizes for GH4169 alloy was simulated, and then series remelting experiments with different cooling rates and different Laves phase distributions were carried out, and the calculated results were in good agreement with the experimental results. This newly developed prototype system may give great help to homogenization process design in engineering use.


Acta Metallurgica Sinica | 2014

INTEGRATED SIMULATION OF THE FORGING PROCESS FOR GH4738 ALLOY TURBINE DISK AND ITS APPLICATION

Li Linhan; Dong Jianxin; Zhang Maicang; Yao Zhihao

In order to control the grain size of forged turbine disk of wrought superalloy like GH4738 more effectively, constitutive equations and grain structure evolution models of GH4738 alloy are used in Deform 3DTM for achieving integrated simulation of whole forging process of GH4738 alloy turbine disk(from preheating billet for upsetting to die forging). By using of integrated simulation, the variation of temperature, average grain size,etc., during the whole forging process has been explored, making it possible to control these parameters quantitatively. Comparing with traditional simple stage simulation, results of integrated simulation are more consistent with corresponding experimental results of forged turbine disk(300 mm in diameter). Therefore, the reliability of the integrated simulation is verified. Finally, with the application of integrated simulation, GH4738 alloy turbine disk with a diameter of 1450 mm has been successfully forged by 8×104t forging press. This work provides a more practical simulation method for helping the process design of forging large turbine disk.


Acta Metallurgica Sinica | 2013

ELEMENTS DIFFUSION LAW OF DD407/FGH95 DIFFUSION BONDING UNDER HOT ISOSTATIC PRESSING I.Building Diffusion Bonding Model

Yao Yao; Ye Jianshui; Dong Jianxin; Yao Zhihao; Zhang Maicang; Guo Weimin

Turbine platform and blade are two main parts of aero engines and gas turbines. Due to different requirements in practice, platforms are always fabricated by single crystal superalloys, which have high temperature strength and resistance to hot corrosion and oxidation. The platforms employed at relatively lower temperatures can be made of powder superalloys. Therefore there is a great demand for bonding single crystal superalloys to powder superalloys. Because of high content offorming elements, traditional fusion welding methods employed in bonding the two materials are high susceptibility to cracking. Hot isostatic pressure (HIP) bonding is a preferable technique now to join nickel base superalloys. However, using experimental methods to explore appropriate HIP bonding parameters is time consuming and costly. This work puts forward a calculated method to simulate diffusion process and phase distribution of diffusion couples obtained by HIP diffusion bonding. In this work, the numerical model of HIP diffusion bonding was built, and distribution of elements and phases of DD407/FGH95 diffusion couples under different HIP temperature and bonding time were calculated


Acta Metallurgica Sinica | 2013

ELEMENTS DIFFUSION LAW OF DD407/FGH95 DIFFUSION BONDING UNDER HOT ISOSTATIC PRESSURE II.Model Verification and Experimental Analysis

Yao Yao; Dong Jianxin; Yao Zhihao; Zhang Maicang; Guo Weimin

Manufacturing dual superalloy turbine rotor is becoming an important direction of development in the field of aviation and aerospace.In order to improve working temperature and service life of turbine rotor,blade materials have been evolved to single crystal superalloys,turbine disc materials have also been developed to powder superalloys.Therefore the connection of these two materials has become key problem in improving turbine performance.Nowadays hot isostatic pressure(HIP) bonding is a preferable bonding technique due to no fusion and macroscopic deformation in bonding area.In HIP bonding process,elements diffusion is the key factor in forming microstructure of interface,and determining interfacial properties.At present,articles about HIP diffusion bonding mainly focused on interfacial microstructure and mechanical test of bonding couples,while few articles explored the relationship between elements diffusion and microstructure forming.In this work,diffusion couples of DD407 and FGH95 alloys were conducted under 1120,1170,1210℃ and 120 MPa HIP for 3 h,the microstructure and elements distribution of interface were studied to verify simulated resultsin the last article,and explore interface formation mechanism.Then the relationship between simulated phase distribution and actual microstructure of interface was built,which can be used to forecast interface morphology.And also the recrystallization in bonding zone was studied.Combining simulated and experimental results,this work put forwards principles for HIP bonding process controlling.


Archive | 2015

Method for achieving forming of GH4738 nickel-base superalloy turbine discs

Yao Zhihao; Dong Jianxin; Liu Zhiyuan


Archive | 2013

Hot-working method for GH864 Waspaloy with accurately controlled structure

Dong Jianxin; Yao Zhihao; Hong Chengmiao; Zhang Maicang


Archive | 2013

Method for forging and sleeve packaging of ultra-large type nickel-base superalloy turbine disc

Yao Zhihao; Dong Jianxin; Zhang Maicang; Li Pengchuan


Archive | 2015

Difficultly-deformed nickel-based superalloy superplastic forming method

Yao Zhihao; Yu Qiuying; Dong Jianxin; Zhang Maicang


Archive | 2015

GH4738 nickel base superalloy casting ingot homogenization treatment method

Yao Zhihao; Dong Jianxin; Zhang Maicang


Archive | 2016

Prediction method of long-term aging performance degradation of high-Nb type GH4169 alloy

Yao Zhihao; Dong Jianxin; Zhao Wei; Zhang Maicang; Ni Tongwei

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Dong Jianxin

University of Science and Technology Beijing

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Zhang Maicang

University of Science and Technology Beijing

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Yu Qiuying

University of Science and Technology Beijing

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Yao Yao

University of Science and Technology Beijing

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Li Linhan

University of Science and Technology Beijing

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Xie Xishan

University of Science and Technology Beijing

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