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基于金属粉末微波烧结技术的研究现状
郑孝英,李毅恒,何奥希,冯康露,陈晋,陈菓
(昆明冶金高等专科学校,云南省跨境民族地区生物质资源清洁利用国际联合研究中心,云南省跨境民族地区生物质资源清洁利用国际联合研究中心,云南省跨境民族地区生物质资源清洁利用国际联合研究中心,云南省跨境民族地区生物质资源清洁利用国际联合研究中心,昆明冶金高等专科学校;云南省跨境民族地区生物质资源清洁利用国际联合研究中心;云南省高校民族地区资源清洁转化重点实验室;钒钛资源综合利用国家重点实验室)
Microwave sintering technology and research status based on metal powder
ZHENG Xiaoying,LI Yiheng,HE Aoxi,FENG Kanglu,CHEN Jin and CHEN Guo
(Kunming Metallurgy College,Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University,Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University,Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University,Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University,Kunming Metallurgy College;China;Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University;China;Key Laboratory of Resource Clean Conversion in Ethnic Regions,Education Department of Yunnan,Yunnan Minzu University,Kunming,Yunnan ,China;State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization,Pangang Group Research Institute Co,Ltd;PR China)
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投稿时间:2017-09-01 修订日期:2017-09-12
中文摘要: 由于微波具有高温、高焓、高的化学反应活性、反应气氛及反应温度可控等特点,非常适合制备纯度高、粒度小且粒度分布均匀的新性能材料。本文综述了微波烧结技术对合金性能的影响因素,重点阐述了微波烧结铁基材料、微波烧结软磁铁氧体材料、微波烧结高密度合金、微波烧结硬质合金和微波烧结难融金属对个材料的性能的影响。结果表明:微波烧结相对于常规烧结大大的加快了反应的速度,且烧结材料的各项性能都远远高于常规烧结,且烧结过程的生产周期变短,降低了能耗,提高了生产的效率。
Abstract:Due to microwave has high temperature, high enthalpy, high chemical reactivity, reaction atmosphere and controllable reaction temperature, it is very suitable for the preparation of new performance materials with high purity, small particle size and uniform particle size distribution. This paper summarizes the influence factors of microwave sintering technology on the properties of the alloy, focusing on microwave sintering of iron-based materials and microwave sintering of soft ferrite materials, microwave sintering of high density alloy, Microwave sintering of cemented carbide and microwave sintering of metal melting difficult to influence the performance of the material. The results show that compared with the conventional sintering, microwave sintering can greatly accelerate the reaction speed, and the properties of sintered materials are far higher than that of conventional sintering and sintering process, short production cycle, reduce energy consumption, improve production efficiency.
文章编号:20170901002 中图分类号: 文献标志码:
基金项目:国家自然科学资助(51504110,51404114)
Author Name | Affiliation | E-mail |
ZHENG Xiaoying | Kunming Metallurgy College | 377691776@qq.com |
LI Yiheng | Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University | |
HE Aoxi | Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University | |
FENG Kanglu | Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University | |
CHEN Jin | Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University | |
CHEN Guo | Kunming Metallurgy College China Joint Research Centre for International Cross-border Ethnic Regions Biomass Clean Utilization in Yunnan,Yunnan Minzu University China Key Laboratory of Resource Clean Conversion in Ethnic Regions,Education Department of Yunnan,Yunnan Minzu University,Kunming,Yunnan ,China State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization,Pangang Group Research Institute Co,Ltd PR China | guochen@kmust.edu.cn |
引用文本:
郑孝英,李毅恒,何奥希,冯康露,陈晋,陈菓.基于金属粉末微波烧结技术的研究现状[J].矿冶,2018,27(4):61~65.