Zhou Guorong
Shandong University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Zhou Guorong.
Journal of Physics: Condensed Matter | 2002
Zhao Fang; Wu Youshi; Zhang Chuanjiang; Zhu Zhiqian; Shi Yuanchang; Zhou Guorong
The small-angle information in the total structure factors and x-ray diffraction pattern have been investigated. Prepeaks were found to exist in the total structure factors in the Al90Ni5Ce5 liquid and amorphous alloys. The prepeak position is almost the same in the liquid alloys at different temperatures and are nearly identical when the liquid alloys were quenched to the amorphous state. The medium-range order clusters are formed in the liquid state and the structural unit can be preserved to the amorphous state. The amorphous Al90Ni5Ce5 alloys crystallize in two stages. The first stage corresponds to the precipitation of face-centred-cubic Al and in the second crystallization stage intermetallic compounds are formed. The structure corresponding to the prepeak is preserved, and even strengthened, during rapid solidification, but is not stable and decomposes at room temperature. The structural unit is like a large atom during rapid solidification, which may be the reason for the high glass forming ability in Al-Ni-Ce systems.
Journal of Physics: Condensed Matter | 2002
Zhao Fang; Wu Youshi; Shi Yuanchang; Xu Aihua; Zhu Zhiqian; Zhou Guorong
X-ray diffraction (XRD) and differential scanning calorimetry were used to investigate the crystallization process of amorphous Al90TMxCe10−x alloys. Ageing effects were also examined by means of XRD. The structure corresponding to the prepeak for amorphous Al90Fe5Ce5 alloys is more stable than the amorphous matrix. However, amorphous Al90Ni5Ce5 alloys are not stable during the first crystallization stage, and even decompose at room temperature. The crystallization onset temperature for amorphous Al–Fe–Ce alloys is much higher than that for amorphous Al–Ni–Ce alloys. This is probably caused by the different stability of the structure corresponding to the prepeak. The crystallization onset temperature increases as the Ce/Ni ratio increases in amorphous Al90NixCe10−x alloys. However, the crystallization onset temperature decreases as the Ce/Fe ratio increases in amorphous Al90FexCe10−x alloys. A better atomic packing results as the Ce content increases due to size mismatch in Al–Ni–Ce systems and as the Fe content increases due to the increasing size of structural units in Al–Fe–Ce systems.
Archive | 2016
Leng Jinfeng; Shao Wenyue; Zhou Guorong; Hu Jiemu
Archive | 2016
Leng Jinfeng; Zhou Qingbo; Chu Meijun; Teng Xinying; Zhou Guorong
Archive | 2013
Teng Xinying; Li Bo; Zhou Guorong; Liu Liyan; Zhang Dengwei; Liu Teng
Archive | 2016
Leng Jinfeng; Zhou Guorong; Teng Xinying; Geng Haoran
Archive | 2016
Leng Jinfeng; Hu Jiemu; Zhou Guorong; Wang Yingzi
Archive | 2016
Leng Jinfeng; Shan Guangle; Zhang Shaochen; Wang Yan; Zhou Guorong; Chen Guangli; Zhao Songfang
Archive | 2015
Leng Jinfeng; Zhou Qingbo; Chu Meijun; Teng Xinying; Zhou Guorong
Tezhong Zhuzao ji Youse Hejin | 2009
Zhou Guorong; Zhang Guoling; Wang Zhiming; Teng Xinying; Chen Guangli; Geng Haoran