期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
Investigation of Sintering Technology for Composite of Stainless Steel and Partially Stabilized Zirconia
1
作者 Wenquan ZHANG, Jianxin XIE, Changjing ZHANG and Zhiguo YANGSchool of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2002年第1期10-12,共3页
The sintering technology for mixed powdered extrusion rods of different proportions of stainless steel to magnesia partially stabilized zirconia (PSZ) was investigated. The effects of some sintering parameters includi... The sintering technology for mixed powdered extrusion rods of different proportions of stainless steel to magnesia partially stabilized zirconia (PSZ) was investigated. The effects of some sintering parameters including holding time, atmosphere and protective gas pressure on shrinkage, relative density, microstructure, micro-Vickers hardness and compression strength of sintered samples were mainly researched. The experimental results are as follows: (1) The shrinkage and the relative density of the sintered samples decrease as increasing stainless steel content in the composite, except for the case containing 90 percent of stainless steel; (2) The porosity in PSZ matrix rises as increasing the stainless steel content in the composite; (3) Longer sintering holding time, higher sintering vacuum and gas-pressure sintering process not only enhance the relative density, but also improve microstructure of composite; (4) Micro-Vickers hardness of PSZ matrix decreases as increasing stainless steel content, while that of stainless steel particles in sintered samples varies unnoticeably. 展开更多
关键词 PSZ Stainless steel COMPOSITE sintering technology
下载PDF
PHLOGOPITE GLASS CERAMIC BY POWDER SINTERING PROCESS 被引量:2
2
作者 何峰 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 1998年第1期49-53,共5页
Phlogopite glass ceramics can be made by powder sintering technology. This paper now studies the factors which affect properties of the sintered phlogopite glass ceramic by X-ray diffraction in qualitative and quanti... Phlogopite glass ceramics can be made by powder sintering technology. This paper now studies the factors which affect properties of the sintered phlogopite glass ceramic by X-ray diffraction in qualitative and quantitative way, and discusses the method improved the machinable properties of phlogopite glass ceramic. (Author abstract) 展开更多
关键词 phlogopite glass ceramic sintering technology POWDER machinable properties
全文增补中
Production base of annual 3000 tons sintered NdFeB of SinoMagnetics Technology goes into operation
3
《China Rare Earth Information》 2018年第3期2-3,共2页
Sino magnetics technology is a high-tech enterprise specializing in R&D and production of rare earth permanent magnet materials.It is reported that the enterprise has accelerated the construction of annual3000 ton... Sino magnetics technology is a high-tech enterprise specializing in R&D and production of rare earth permanent magnet materials.It is reported that the enterprise has accelerated the construction of annual3000 tons of high performance sintered NdFeB production base,and the construction of the base has been completed and put into use. 展开更多
关键词 NDFEB Production base of annual 3000 tons sintered NdFeB of SinoMagnetics technology goes into operation
下载PDF
Water purification with sintered porous materials fabricated at 400℃ from sea bottom sediments 被引量:2
4
作者 DABWAN Ahmed H A IMAI Daizo +5 位作者 KANECO Satoshi SENMATSU Isamu NAKAHAMA Katsuyuki KATSUMATA Hideyuki SUZUKI Tohru OHTA Kiyohisa 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2008年第2期172-176,共5页
A sintering technology for preparing porous materials from sea bottom sediments was developed for use in water purification. The purpose of the present study was to develop methods for converting the sea bottom sedime... A sintering technology for preparing porous materials from sea bottom sediments was developed for use in water purification. The purpose of the present study was to develop methods for converting the sea bottom sediments dredged from Ago Bay into value-added recycled products. The sintered products fabricated at 400℃ were found to be very effective adsorbents for the removal of heavy metals. 展开更多
关键词 sintering preparation technology porous materials sea bottom sediments water purification heavy metals
下载PDF
A review of CNTs and graphene reinforced YSZ nanocomposites:Preparation,mechanical and anti-irradiation properties 被引量:1
5
作者 Xiaodong Zhang Chenkun Sun +6 位作者 Hongzhi Ji Mingqi Yang Haipeng Zhang Wei Tian Yiyong Wu Oleg V.Tolochko You Wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第36期27-49,共23页
Yttria stabilized zirconia(YSZ)ceramics have been widely applied in areas of high-temperature thermal protection and nuclear radiation protection during the past decades.Both carbon nanotubes(CNTs)and graphene are reg... Yttria stabilized zirconia(YSZ)ceramics have been widely applied in areas of high-temperature thermal protection and nuclear radiation protection during the past decades.Both carbon nanotubes(CNTs)and graphene are regarded as highly ideal reinforcements for YSZ ceramics due to their natural excellent properties.However,is still a controversial topic how to make YSZ composites obtain better performance after adding CNTs and graphene.In particular,dispersion and sintering processes of CNTs and graphene in YSZ,are critical to the performance of the YSZ composites.So far,there is not a thorough analy-sis of the impact of CNTs and graphene on the mechanical characteristics and irradiation resistance of YSZ.Therefore,this paper focuses on the dispersion methods and sintering technologies of CNTs/YSZ and graphene/YSZ nanocomposites,as well as the mechanical properties and anti-irradiation properties.Fur-thermore,the potential applications are also prospected for CNTs/YSZ and graphene/YSZ nanocomposites. 展开更多
关键词 CNTs/YSZ Graphene/YSZ Dispersion methods sintering technologies Mechanical properties Irradiation resistance
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部