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Some Discussions on the Improvements in the English-Chinese Dictionary (unabridged) 被引量:2
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作者 Dian 'en Zhang 《Sino-US English Teaching》 2004年第2期70-77,共8页
Based on the comparison between the improvements in the English-Chinese Dictionary and A New English-Chinese Dictionary some discussions are made on the improvements in the English'Chinese Dictionary in terms of macr... Based on the comparison between the improvements in the English-Chinese Dictionary and A New English-Chinese Dictionary some discussions are made on the improvements in the English'Chinese Dictionary in terms of macrostructure and microstructure. Therefore, some differences are highlighted, with which users can make better use of the English-Chinese Dictionaries. 展开更多
关键词 differences macrostructure microstructure
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Microstructure of Differently Annealed NanocrystallineFe_(72.7)Cu_1Nb_(1.8)Mo_2Si_(13)B_(9.5) Alloy
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作者 YanZhong ZHANG and Huijuan JIN (Shanghai Key Lab. of Metallic Functional Materials, Shanghai Iron and Steel Research Institute,Shanghai 200940, China) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1998年第4期327-330,共4页
The microstructure of differently annealed nanocrystalline Fe72.7Cu1Nb1.8Mo2Si13B9.5 alloy was investigated by using Mssbauer spectroscopy and transmission electron microscope. The specimens were isochronally annealed... The microstructure of differently annealed nanocrystalline Fe72.7Cu1Nb1.8Mo2Si13B9.5 alloy was investigated by using Mssbauer spectroscopy and transmission electron microscope. The specimens were isochronally annealed at temperatures between 480℃ and 600℃ for 0.5 h. The experimental results show that the microstructure mainly consists of the nanoscale bcc α-Fe(Si) grains and the residual amorphous matrix phase. A trace paramagnetic phase was found for annealing about above 500℃. The volume fraction of cr-Fe(Si) grain increases with increasing annealing temperature, whereas the average size of grain is almost unchanged above 480℃ up to 580℃. The calculated thickness of the intergranular layer of the residual amorphous matrix clearly decreases with increasing annealing temperature. 展开更多
关键词 Mo2Si Microstructure of Differently Annealed NanocrystallineFe SI ALLOY Cu1Nb
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Effects of Cooling Paths on Through-Thickness Microstructure and Mechanical Properties of Heavy Gauge X80 Pipeline Steel
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作者 Xu-Dong Li Cheng-Ning Li +1 位作者 Guo Yuan Guo-Dong Wang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2017年第5期483-492,共10页
The effects of various cooling paths on uniformity of through-thickness microstructure and mechanical properties of X80 pipeline steel of 22.0 mm in thickness were studied. The finite difference method was employed to... The effects of various cooling paths on uniformity of through-thickness microstructure and mechanical properties of X80 pipeline steel of 22.0 mm in thickness were studied. The finite difference method was employed to calculate the temperature field during cooling. It was confirmed by the experimental result and temperature field calculation that the optimizing process was achieved by the ultra-fast cooling with medium cooling capacity(cooling rate of *23 K/s)followed by ultimate cooling capacity(cooling rate of *50 K/s). After optimization, the experimental steel displayed much uniform microstructure and the deviation of through-thickness hardness was controlled within 20 HV. In addition,the yield strength, tensile strength and elongation of the experimental steel were 621, 728 MPa and 21.5%, respectively,meeting the requirements of the API standard for X80 pipeline steels. 展开更多
关键词 X80 pipeline steel Ultra-fast cooling Cooling path Finite difference method Microstructure Mechanical properties
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