以B C为硼源,以及MoFe粉和Fe粉为基础原料,采用真空液相烧结工艺制备三元硼化物金属陶瓷。研究了4 Mo FeB三元硼化物烧结过程中相变和微观组织的变化及力。结果表明:使用该种方法制备Mo FeB基三元硼化物金属陶2222瓷,随着烧结温度的升高...以B C为硼源,以及MoFe粉和Fe粉为基础原料,采用真空液相烧结工艺制备三元硼化物金属陶瓷。研究了4 Mo FeB三元硼化物烧结过程中相变和微观组织的变化及力。结果表明:使用该种方法制备Mo FeB基三元硼化物金属陶2222瓷,随着烧结温度的升高,晶粒形貌由近球形转变为方形,晶粒组织先聚集后分散,晶粒尺寸逐渐增大。在烧结温度为1350℃试样的综合性能最佳,其硬度可达HRC70.1。展开更多
The powders of Mo2FeB2 cermet were prepared with Mo powders, Fe-B alloy powders and Fe powders as raw materials. Mo2FeB2 cermet coatings were prepared on Q235 steel by reactive thermal spraying (RTS) method and heat...The powders of Mo2FeB2 cermet were prepared with Mo powders, Fe-B alloy powders and Fe powders as raw materials. Mo2FeB2 cermet coatings were prepared on Q235 steel by reactive thermal spraying (RTS) method and heated at 1 000 ℃ in vacuum oven of 1 kPa for 5 h. The properties of coatings were investigated. The results indicate that Fe2B appears after milling for 15 h in the powder at room temperature, a part of ternary borides (Mo2FeB2) are generated in powder sintered at 900 ℃. The coatings are composed of the major phases Mo2FeB2 and a-Fe, a little of Fe203, FeO and some pores. The bonding strength between the substrate and the ceramic coating is 32.73 MPa, the thermal-shock times is about 43 and the wear resistance is enhanced by approximately 5.28 times compared with that of the substrate, respectively. The comprehensive properties of Mo2FeB2 cermet coatings can be imoroved further after vacuum heat-treatment at 1 000 ℃ for 5 h.展开更多
文摘以B C为硼源,以及MoFe粉和Fe粉为基础原料,采用真空液相烧结工艺制备三元硼化物金属陶瓷。研究了4 Mo FeB三元硼化物烧结过程中相变和微观组织的变化及力。结果表明:使用该种方法制备Mo FeB基三元硼化物金属陶2222瓷,随着烧结温度的升高,晶粒形貌由近球形转变为方形,晶粒组织先聚集后分散,晶粒尺寸逐渐增大。在烧结温度为1350℃试样的综合性能最佳,其硬度可达HRC70.1。
基金Project(2007T069)supported by Liaoning Education Department Innovation Team,China
文摘The powders of Mo2FeB2 cermet were prepared with Mo powders, Fe-B alloy powders and Fe powders as raw materials. Mo2FeB2 cermet coatings were prepared on Q235 steel by reactive thermal spraying (RTS) method and heated at 1 000 ℃ in vacuum oven of 1 kPa for 5 h. The properties of coatings were investigated. The results indicate that Fe2B appears after milling for 15 h in the powder at room temperature, a part of ternary borides (Mo2FeB2) are generated in powder sintered at 900 ℃. The coatings are composed of the major phases Mo2FeB2 and a-Fe, a little of Fe203, FeO and some pores. The bonding strength between the substrate and the ceramic coating is 32.73 MPa, the thermal-shock times is about 43 and the wear resistance is enhanced by approximately 5.28 times compared with that of the substrate, respectively. The comprehensive properties of Mo2FeB2 cermet coatings can be imoroved further after vacuum heat-treatment at 1 000 ℃ for 5 h.