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高速钢/结构钢双金属复合材料界面研究
引用本文:刘耀辉,刘海峰,于思荣,郭国超,洪家旺.高速钢/结构钢双金属复合材料界面研究[J].特种铸造及有色合金,2001(2):17-19.
作者姓名:刘耀辉  刘海峰  于思荣  郭国超  洪家旺
作者单位:1. 吉林大学
2. 福建南平水泥股份有限公司
基金项目:国家教委博士点基金(19990185107),吉林省科委资助项目(19990503-01)
摘    要:采用镶铸法,以液固结合的方式制备了高碳钡系高速钢/结构钢双金属复合材料。研究了不同结合条件下,双金属复合材料界面结构及形态。试验结果表明,镶铸是靠外层合金带入的过热热量来获得界面结合的,当外材与芯材在体积比大于8.0的条件下,才有可以获得界面结合,其界面结合为扩散结合,复合材料界面结构由芯材扩散层,激冷凝固层、方向性生长层和胞状晶粒层组成,外层材料凝固时有明显的方向性生长,其液固相线推移速度对在液固结合条件下外层材料的凝固组织具有明显影响,当外材与芯材体积比为1.25时,外层材料的凝固速度最快,出现了棒状伪共晶组织,随体积比的增长,凝固组织表现为沿径向传热方向拉长的胞状晶粒。

关 键 词:液固结合  高速钢  结构钢  双金属复合材料  界面
文章编号:1001-2449(2001)02-0017-03
修稿时间:2000年8月21日

Study on Interface of High Speed Steel/Structural Steel Bimetal Composite
Liu Yaohui,Liu Haifeng,Yu Sirong,Guo Guochao,Hong Jiawang.Study on Interface of High Speed Steel/Structural Steel Bimetal Composite[J].Special Casting & Nonferrous Alloys,2001(2):17-19.
Authors:Liu Yaohui  Liu Haifeng  Yu Sirong  Guo Guochao  Hong Jiawang
Abstract:High carbon vanadium alloyed high speed steel/structural steel series bimetal composite was prepared through liquid solid bonding by cast in insertion. The microstructure and morphology of interface of bimetal composite were studied under different bonding conditions. The results show that interface bonding is dependent on superheated outer layer alloys in cast in insertion. It is possible to obtain interface bonding in volume ratio of outer/core materials greater than 8.0, and the bonding mechanism is diffusion bonding. The interface structure of composite consists of core material diffusion layer, chilling solidified layer, directional growth layer, and cellular granular layer. The apparent directional growth is found during solidification process of outer material.The advanced velocity of liquidus solidus has obviously effect on solidification structure of outer material. With 1.25 volume ratio of outer/core material, the fastest solidification velocity of outer material exhibits the rod like pseudo eutectic microstructure in composite. HSS solidification microstructure changes into prolonged cellular grain along the radial heat transfer direction with the increase of volume ration.
Keywords:Liquid  solid Bonding  High Carbon Vanadium Alloyed High Speed Steel  Structural Steel  Bimetal Composite
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