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Microstructure of the Ductile Phase in Intermetallic Compound Ni_(50)Al_(20)Fe_(30)
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作者 lianlong he Shuhe WANG +1 位作者 Jianting GUO and hengqiang YE (Lab. of Atomic Imaging of Solids, Institute of Metal Research, Academia Sinica, Shenyang, 110015, China)(To whom correspondence should be addressed) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1994年第5期341-346,共6页
The microstructure of the single hot extruded and annealed Ni50Al20Fe30Y0.003 intermetallic compound alloys has been examined by means of high resolution electron microscopy (HREM). In these extruded and annealed allo... The microstructure of the single hot extruded and annealed Ni50Al20Fe30Y0.003 intermetallic compound alloys has been examined by means of high resolution electron microscopy (HREM). In these extruded and annealed alloys. the ductile phase is of a mixture of the disordered fcc γ matrix and or dered γ' precipitates. This fact well interprets the reason why the degree of annealing treatment can influence the strength and ductility of these alloys. The HREM observation revealed directly that there was some strain concentration at γ'-γ interfaces, due to the presence of more iron atoms in these two phases. The fixed orientation relationship between the γ phase and γ' precipitates was identified to be {001}γ||{00 }γ' and <100 >γ|| < 100 > γ' 展开更多
关键词 FE Figure Microstructure of the Ductile Phase in Intermetallic Compound Ni AL
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Arc-Discharge Synthesis and Microstructure Characterization of AIN Nanowires
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作者 Zhijie LI Zhiqi SheN +1 位作者 Fu WANG lianlong he 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第1期113-116,共4页
AIN nanowires with a hexagonal structure were synthesized using an improved arc-discharge method and their microstructures were characterized using a high-resolution transmission electron microscope. The synthesized A... AIN nanowires with a hexagonal structure were synthesized using an improved arc-discharge method and their microstructures were characterized using a high-resolution transmission electron microscope. The synthesized AIN nanowires were of various shapes. Their diameters ranged from 20 to 110 nm and the lengths were up to 20 μm. Most of the AIN nanowires were coated by an amorphous layer of aluminum oxide. Fabrication yield was about several grams. The growth mechanism was considered to be a vapor-liquid-solid process and an AI droplet formed on the top of as-grown AIN nanowire played a role of catalyst. 展开更多
关键词 ARC-DISCHARGE NANOWIRE High-resolution transmission electron microscope(HRTEM)
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Microstructure Characterization of Long W Core SiC Fiber 被引量:1
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作者 Changyou GUO Caibei ZHANG +2 位作者 lianlong he Baohong JIN Nanlin SHI 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2007年第5期677-684,共8页
Microstructure of SiC fiber manufactured by chemical vapor deposition (CVD) onto tungsten (W) wire core was investigated by analytical electron microscopy (AEM). The results reveal that the fiber consists of W c... Microstructure of SiC fiber manufactured by chemical vapor deposition (CVD) onto tungsten (W) wire core was investigated by analytical electron microscopy (AEM). The results reveal that the fiber consists of W core, SiC sheath and C-coating. SiC sheath could be subdivided into two parts according to whether containing C rich stripe, or not. An emphasis was put on W/SiC interfacial reaction products and the transition zone between sub-layers in SiC sheath. The W/SiC interface consists of three layers of reaction production, namely, W2C, W5Si3 and WC. And there are amounts of facet faults existing in (100) face of WC crystalline and two classes of stack faults in WC have been revealed. The formation essence of different sublayers in SiC sheath was also discussed. 展开更多
关键词 SiC fiber Chemical vapor deposition (CVD) Analytical electronmicroscopy (AEM) C-rich zone Reaction products
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PHASE TRANSFOR MATION INDUCED BY DEFORMATION IN TiAl(Cr)INTERMETALLICS AT ROOM TEMPERATURE
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作者 lianlong he Rong Yu +2 位作者 Lichun Zhang Huayong Pan hengqiang Ye 《中国有色金属学会会刊:英文版》 CSCD 1999年第S1期65-68,共4页
The phase transformation induced by deformation in TiAl(Cr) intermetallics at room temperature has been studied by means of TEM and HREM observations and nanoprobe analysis. The results showed that, twinning is a prim... The phase transformation induced by deformation in TiAl(Cr) intermetallics at room temperature has been studied by means of TEM and HREM observations and nanoprobe analysis. The results showed that, twinning is a primary deformation mechanism at room temperature, when plastic deformation is small twinning takes place on {111} planes and when plastic deformation is great two sets twins takes place usually from intersection region, where the atomic structure changes to hexagonal structure with the composition of Ti 55.7 2Al 42.2 8Cr 1.7 . 展开更多
关键词 TiAl(Cr) phase transformation DEFORMATION structural evolution
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