Journal of Liaoning Petrochemical University
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Creep Life Prediction of GH4169 Based on the Modified θ Projection Method
Zhang Shuang, Liu Feng, Li Ronghua, Zhang Guoming
Abstract370)   HTML    PDF (1073KB)(250)      
Based on modified θ projection method, creep experiments were carried out on GH4169 superalloy under different temperature and stress conditions,the creep data under different parameters were obtained and corresponding creep curves were drawn.The modified θ projection method was used to perform nonlinear fitting of the obtained experimental curve,and creep equations related to temperature and stress were established.The creep life curve of GH4169 superalloy is verified by the creep equations,and the results are in good agreement,so as to reach the effect of creep life prediction.
2020, 40 (3): 69-73. DOI: 10.3969/j.issn.1672-6952.2020.03.013
Research Progress of Reduce-Viscosity Technology for Heavy Oil by Aquathermolysis Technologies
Rong Qingshan, Li Shengke,Zhang Shuang,Zhao Yue,Cai Yaorong,Shi Yan
Abstract784)      PDF (1543KB)(306)      
With the decline of conventional crude oil production, the exploitation and application of heavy oil has gradually attracted attention. However, heavy oil with high density, large viscosity and difficult mining is the problem faced by heavy oil production. There are many ways to reduce the viscosity of heavy oil, among which upgrading visbreaking reaction and non-upgrading visbreaking reaction are two important ways to reduce the viscosity of heavy oil. The latter include heating and viscosity reduction, thinning and viscosity reduction, and chemical viscosity reducing and so on. There are two methods for upgrading visbreaking reaction, namely mild thermal cracking and aquathermolysis. The aquathermolysis viscosity reduction technique is a more efficient method of viscosity reduction based on thermal cracking. Under the appropriate reaction conditions and suitable catalyst conditions, the viscosity of heavy crude oil can be greatly reduced, which is a heavy oil mining technology with good application prospects.
2018, 38 (06): 17-20. DOI: 10.3969/j.issn.1672-6952.2018.06.003