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Effects of C/B4 C ratio on microstructure and property of Fe-based alloy coatings reinforced with in situ synthesized TiB2 -TiC
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作者 江少群 王刚 +2 位作者 吕长月 王泽华 周泽华 《China Welding》 EI CAS 2015年第1期6-12,共7页
The Fe-based alloy coatings reinforced with in situ synthesized TiB2-TiC were prepared on Q235 steel by reactive plasma cladding using Fe901 alloy, Ti, B4C, and graphite (C) powders us raw materials. The effects of ... The Fe-based alloy coatings reinforced with in situ synthesized TiB2-TiC were prepared on Q235 steel by reactive plasma cladding using Fe901 alloy, Ti, B4C, and graphite (C) powders us raw materials. The effects of C/B4C weight percentage ratio (0 - 1. 38 ) on the microstructure , microhardness , and wet sand abrasion resistance of the coatings were investigated. The results show that the coatings consist of ( Fe, Cr ) solid solution, TiC, TiB2, Ti8C5 , and Fe3 C phases. The decrease of C/B4 C ratio is propitious to the formation of TiB2 and Tis C5. Increasing the C/B4 C ratio can help to refine the microstructure of the coatings. However, the microhardness of the middle-upper of the coatings and the wet sand abrasion resistance of the coatings degenerate with the increase of C/B4C ratio. The coating exhibits the best wet sand abrasion resistance at C/BaC =0 and its average mass loss rate per unit wear distance is 0. 001 2%/m. The change of the wet sand abrasion resistance of the coatings with the C/B4C ratio can be mainly attributed to the combined action of the changes of microhardness and the volume percentage of the ceramic reinforcements containing titanium in the coatings. 展开更多
关键词 plasma cladding fe-based alloy coating tib2-tic in situ synthesis ABRASION
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原位合成含钛陶瓷相增强Fe基合金熔覆层研究 被引量:1
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作者 王刚 江少群 +3 位作者 王泽华 谢言 周泽华 易于 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2016年第9期2342-2346,共5页
以Fe901、Ti、B_4C和h-BN粉为原料,采用反应等离子熔覆方法在Q235钢基本上原位合成了含钛陶瓷相增强Fe基合金熔覆层。研究表明:相比B_4C,Fe更易与h-BN反应形成铁硼化物,当同时添加B_4C和h-BN时,B_4C/h-BN比减小至一定值后将导致熔覆层中... 以Fe901、Ti、B_4C和h-BN粉为原料,采用反应等离子熔覆方法在Q235钢基本上原位合成了含钛陶瓷相增强Fe基合金熔覆层。研究表明:相比B_4C,Fe更易与h-BN反应形成铁硼化物,当同时添加B_4C和h-BN时,B_4C/h-BN比减小至一定值后将导致熔覆层中Fe B含量升高和Ti_2N、Ti B等中间产物形成,但却可抑制陶瓷相长大。熔覆层显微组织均具有梯度分布特征,Ti B_2大小和形态受熔池温度和成分影响。熔覆层显微硬度随h-BN添加量增加而降低,Ti:B_4C:BN摩尔比为3:1:0时熔覆层近表面层HV_(0.2)显微硬度可高达11.26 GPa。 展开更多
关键词 fe基合金涂层 等离子熔覆 原位合成 tib2-tic tib2-TiN
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