Ji Lingkang
China National Petroleum Corporation
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Archive | 2014
Yang Kun; Huo Chunyong; Ji Lingkang; Li Yang; Zhang Jiming; Ma Qiurong
With the developing requirement of nature gas, the property needs of steel for pipe line are higher and higher, especially in strength and toughness. It is necessary to improve the steel grade in order to ensure economic demand and safety. However, with the rise of steel grade, the differences on properties in different orientations (anisotropic behaviors) become more and more obvious after the process of hot rolling, which may affect the prediction of fracture for the pipes seriously (Thinking of isotropic mechanical properties for material in traditional predict way). In order to get the reason for anisotropic mechanics, a series of tests are carried out for high grade steel pipes, including not only mechanical properties but also microstructures. Result indicates that there are obviously anisotropic behaviors for high grade steel pipes in two orientations (rolling orientation and transverse orientation). Strength is better in T orientation because Rm is higher and Rt 0.5 rises more in T orientation, and toughness is better in L orientation because of the higher Akv and SA in L orientation under a same temperature. Banded structures are formed in T orientation, and the spatial distribution of inclusion and precipitated phases are different in T, L and S orientation. The anisotropic arrangement for the matrix in space (banded structures), which is formed after the process of hot rolling, may affect the mechanical properties in different orientation. Moreover, the elasticity modulus of particles is different from the elasticity modulus of matrix, deformation between particles and matrix may cause stress concentration, and damage forms in this place. Because of the different distribution of particles in space, the level of damage is anisotropic in different orientations, and the anisotropic mechanical properties occur finally. Therefore, the anisotropic mechanical properties are determined by the anisotropic microstructures, both the anisotropic of matrix and the anisotropic of particles are included.
Archive | 2014
Huo Chunyong; Li Yang; Ji Lingkang
In past decades, with widely utilizing of Microalloying and Thermal Mechanical Control Processing (TMCP) technology, the good matching of strength, toughness, plasticity and weldability on pipeline steel has been reached so that oil and gas pipeline has been greatly developed in China to meet the demand of strong domestic consumption of energy. In this paper, development history of pipeline steel and gas pipeline in china is briefly reviewed. The microstructure characteristic and mechanical performance of pipeline steel used in some representative gas pipelines of china built in different stage are summarized. Through the analysis on the evolution of pipeline service environment, some prospective development trend of application of pipeline steel in China is also presented.
Archive | 2014
Li Yang; Zhang Weiwei; Wang Peng; Li He; Ji Lingkang; Chi Qiang; Huo Chunyong; Feng Yaorong
Archive | 2013
Zhang Weiwei; Ji Lingkang; Chen Hongyuan; Xiong Qingren; Gong Shaotao; Luo Deng; Xiong Xiangjiang; Chen Xiaowei; Fu Yanhong
Archive | 2013
Chen Hongyuan; Li Yanfeng; Ji Lingkang; Zuo Shuili; Feng Yaorong; Yang Yongming; Wang Haitao; Zou Haiping; Gong Shaotao
Archive | 2012
Xiong Qingren; Huo Chunyong; Zhao Wenzhen; Sun Liang; Ji Lingkang
Archive | 2014
Li Yang; Cheng Pengming; Liu Gang; Zhang Weiwei; Li He; Li Yanhua; Huang Chengshuai; Wang Haitao; Ji Lingkang; Chi Qiang
Archive | 2014
Ji Lingkang; Li Yanfeng; Chen Hongyuan; Zou Haiping; Feng Yaorong; Zuo Shuili; Gong Shaotao; Yang Yongming; Huang Chengshuai
Archive | 2013
Huang Chengshuai; Ji Lingkang; Chi Qiang; Chen Hongyuan; Wang Haitao; Li Yanhua; Wang Peng; Zhang Weiwei; Li He; Qi Lihua
Archive | 2015
Huang Chengshuai; Ji Lingkang; Chi Qiang; Chen Hongyuan; Wang Haitao; Wang Peng; Zhang Weiwei; Li He; Qi Lihua