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熔剂对高频熔敷Cr13Ni2B耐磨层工艺性能的影响 被引量:9

Effect of Welding Fluxes on the Technologic Property of Depositing Wear-resisting Layer Crl3Ni2B with High Frequency Induction Heating
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摘要 采用高频感应加热在低碳钢表面熔敷一层铁基Cr13Ni2B耐磨材料,研究了熔剂配比对覆层与基体的结合、覆层表面成形和脱渣性等工艺性能的影响。结果表明:在高频熔敷铁基Cr13Ni2B耐磨层时,熔剂申的硼酐对其工艺性能影响比较显著,焊剂431次之,氟化物的影响不显著;加入适量的熔剂,可有效地去除粉料表面的氧化物,降低其熔点,使脱渣容易、表面成形美观,覆层厚度可达2.5 mm;适量熔剂可促使覆层与基体形成牢固的冶金结合;在铁基Cr13Ni2B合金粉末中加入3%硼酐、8%-12%焊剂431并配以1%左右的萤石或冰晶石时,高频熔敷效果最好。 High frequency induction heat has been used to obtain a wear-resisting layer Cr13Ni2B on the surface of mild steel. Effect of welding fluxes on technologic property such as the combination ability of the layer with the base metal, surface quality, detachability, were studied. The results show that the amount of boric anhydride produce a comparatively marked effect on the technologic property of the wear-resisting layer Cr13Ni2B, and then welding flux 431, and fluoride litde. Adding the right amount of fluxes can remove the oxide of powder material surface, and depress the melting point of the powder efficiently, and the slag on it can easily brush off, and finally get a wear-resisting layer whose surface is fine with expectant thickness which can get to 2. 5 mm. The right amount of fluxes can spur the layer firmly metallurgical joint the underside steel Adding 3wt% boric anhydride and 8wt%-12wt% welding flux 431 and 1wt% fluorite or cryolite into the alloy powder Cr13Ni2B, the effect of high frequency induction heating deposit is the best.
出处 《机械工程材料》 CAS CSCD 北大核心 2006年第10期96-98,共3页 Materials For Mechanical Engineering
基金 河南省自然科学基金资助项目(0411050200)
关键词 耐磨覆层 高频熔敷 熔剂 工艺性能 wear-resisting hyer high frequency induction heating deposit welding flux technologic propexty
作者简介 汤文博(1965-),男,河南睢县人,副教授,硕士.
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  • 1杨元修.几种国产合金粉末喷焊层耐磨性能的研究[J].焊接技术,1996,25(2):9-10. 被引量:10
  • 2王国佑 王万智.钢的化学热处理[M].北京:中国铁道出版社,1998..
  • 3邹僖.钎焊[M].北京:机械工业出版社,1988..
  • 4崔洪芝.自蔓延高温合成技术在表面冶金强化中的应用[J].机械工程材料,1996,(8):23-25.
  • 5Pelletier J M, et al.. Microstructure and Mechanical Properties of some Metal Matrix Composites Coatings by Laser Cladding [J]. Journal De Physique, 1994, 4(4):93-96.
  • 6Baker T N, et al. Design of Surface in Situ Metal- ceramic composite Formation via Laser Treatment [J]. Materials Science and Technology, 1994,10(6): 536-544.
  • 7Tjong S C, Ku J S, et al. Laser Surface alloying of ferritic Fe-40Cr alloy with ruthenium [J]. Surface and Coatings Technology,1997, 90, 203-209.
  • 8Deuis R L. Metal- matrix composite coatings by PTA surfacing[J]. Composites Science and Technology, 1998, 58: 299- 309.
  • 9Helmut Heinze. Corrosion resistant weld- surfacing layers on an iron basis with high wear resistance[J]. Welding & Cutting, 1999,( 5): E188- E191.
  • 10Nefedov and Lyalyakin. Development of plasma welding and surfacing abroad[J]. Welding International, 1998, 12( 9): 736- 741.

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