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Properties and microstructure of Ti6Al4V by deformation accelerated low temperature plasma nitriding 被引量:2
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作者 傅宇东 朱小硕 +1 位作者 李子峰 冷科 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第10期2609-2616,共8页
An integrated low-temperature nitriding process was carried out for Ti6Al4V to investigateitseffect on microstructure and properties.The process was designed to enhance the nitriding kinetics in low-temperature(500℃... An integrated low-temperature nitriding process was carried out for Ti6Al4V to investigateitseffect on microstructure and properties.The process was designed to enhance the nitriding kinetics in low-temperature(500℃) nitriding by deformation, and to strengthen Ti6Al4V alloybydispersionat the same time. Specimens of Ti6Al4V alloyweretreated through the process of solid solutionstrengthening-cold deformation-nitriding at 500℃. The white nitriding layeris formed after some time and then kept stable, changing little withthedeformationdegreeand time. The effect of aging on substrate is significant. Surface hardness and substrate hardnessincrease with deformation increasing. The construction was investigated by XRD.The surface nitridesare TiN, Ti2N, Ti4N3-Xand Ti3N1.29,and thenitridesin cross-section are Ti3N1.29and TiN0.3. The wear tests of specimens after nitriding, aging and deformation were carried out,andthetest data show that the nitrided pieces have the best wear resistance. 展开更多
关键词 TI6AL4V TI6AL4V low temperature nitriding cold deformation wear resistance
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Effect of Treatment Temperature on Iron Nitride Foils Irradiated with Nitrogen Plasma 被引量:1
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作者 K.Niizuma and Y. Utsushiforwa (College of Industrial Technology, Nihon University, Narashino, Chiba 275-8575, Japan) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2000年第2期143-144,共2页
We investigated the effect of treatment temperature on the magnetic property of iron nitride foils irradiated with nitrogen plasma. The iron nitride foils irradiated with nitrogen plasma were composed of ε-Fe2/3N, γ... We investigated the effect of treatment temperature on the magnetic property of iron nitride foils irradiated with nitrogen plasma. The iron nitride foils irradiated with nitrogen plasma were composed of ε-Fe2/3N, γ'-Fe4N and γ nitrogen austenite in α-Fe of the matrix. The saturation magnetization of the iron nitride foils decreased with increasing the surface temperature. The coercive force of the iron nitride foils increased with increasing the surface temperature. 展开更多
关键词 Effect of Treatment temperature on Iron Nitride Foils Irradiated with Nitrogen Plasma
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Wear resistance of TC4 by deformation accelerated plasma nitriding at 400 °C 被引量:3
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作者 朱小硕 傅宇东 +1 位作者 李子峰 冷科 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第11期2771-2776,共6页
An integrated low temperature nitriding process for TC4(Ti6Al4V) has been developed and the effect on wear resistance has been investigated. Through the process of solid solution strengthening—cold deformation—nit... An integrated low temperature nitriding process for TC4(Ti6Al4V) has been developed and the effect on wear resistance has been investigated. Through the process of solid solution strengthening—cold deformation—nitriding at 400℃, the TC4 alloy is nitrided on surface and dispersion strengthened in bulk at the same time. The white nitriding layer is formed after some time of nitriding. The nitriding speed increases with the deformation degree. The construction was investigated by XRD and the nitride is Ti3N(2-X). The wear test was carried out and results exhibit that the nitrided samples have better wear resistance. 展开更多
关键词 TC4(Ti6Al4V) low temperature nitriding cold deformation wear resistance TRIBOLOGY
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Synthesis of Nano-Size AlN Powders by Carbothermal Reduction from Plasma-Assisted Ball Milling Precursor 被引量:3
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作者 刘志杰 王文春 +2 位作者 杨德正 王森 戴乐阳 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第7期759-763,共5页
Nano-size aluminum nitride (A1N) powders have been successfully synthesized with a high efficiency method through annealing from milling assisted by discharge plasma (p-milling) alumina (Al2O3) precursors. The c... Nano-size aluminum nitride (A1N) powders have been successfully synthesized with a high efficiency method through annealing from milling assisted by discharge plasma (p-milling) alumina (Al2O3) precursors. The characterization of the p-milling Al2O3 powders and the synthesized AlN are investigated. Compared to conventional ball milling (c-milling), it can be found that the precursors by p-milling have a finer grain size with a higher specific surface area, which lead to a faster reaction efficiency and higher conversion to A1N at lower temperatures. The activation energy of p-milling Al2O3 is found to be 371.5 kJ/mol, a value that is much less than the reported value of the unmilled and the conventional milled Al2O3. Meanwhile, the synthesized AlN powders have unique features, such as an irregular lamp-like morphology with uniform particle distribution and fine average particle size. The results are attributed to the unique synergistic effect of p-milling, which is the effect of deformation, fracture, and cold welding of Al2O3 powders resulting from ball milling, that will be enhanced due to the introduction of discharge plasma. 展开更多
关键词 aluminum nitride ball milling thermal temperature plasma alumina
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Analysis of Magnetism in High Nitrogen Austenitic Stainless Steel and Its Elimination by High Temperature Gas Nitriding 被引量:3
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作者 Peng Wan Yibin Ren +1 位作者 Bingchun Zheng Ke Yang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2011年第12期1139-1142,共4页
Stable austenitic structure in medical stainless steels is basically required for surgical implantation. A weak magnetism was found in a high nitrogen nickel-free austenitic stainless steel for cardiovascular stent ap... Stable austenitic structure in medical stainless steels is basically required for surgical implantation. A weak magnetism was found in a high nitrogen nickel-free austenitic stainless steel for cardiovascular stent application. This magnetic behavior in high nitrogen stainless steel was investigated by optical microscopy, X-ray diffraction (XRD), electron probe microanalysis (EPMA) and superconducting quantum interference device (SQUID). The results showed that the magnetism came from the composition segregation of ferrite formation elements such as Cr and Mo in the steel and some 6-ferrites were locally formed during the pressurized electroslag remelting process. The magnetism of high nitrogen stainless steel could be eliminated by a proper high temperature gas nitriding (HTGN). 展开更多
关键词 High nitrogen stainless steel High temperature gas nitriding FERRITE MAGNETISM
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