期刊文献+

BSSF钢渣特种型砂作为非金属磨料的优势分析 被引量:5

The Advantage Analysis of BSSF Steel Slag as a Non-metallic Abrasive
下载PDF
导出
摘要 本文主要对某钢铁企业滚筒法(BSSF)处理的钢渣作为非金属磨料进行理化性能、环保性等分析。总结出BSSF钢渣作为非金属磨料具有硬度高、游离结晶硅含量低等优点,并提出钢渣特种型砂作为非金属磨料存在的常见问题和解决方案。 This paper mainly analyses the physical and chemical properties,environmental protection of Baosteel steel slag processing by BSSF as non-metallic abrasives, find that the BSSF steel slag has the advantages of high hardness,low content of free crystalline silicion (quartz, cristobalite, calcite), also propose the common problems and solutions of special type grit of steel slag as non-metallic abrasives.
出处 《造船技术》 2012年第6期41-43,共3页
关键词 钢渣 非金属磨料 滚筒法 游离结晶硅 环保性 Steel slag Non-metallic abrasvies BSSF Free crystalline silicon Environmental protection
  • 相关文献

参考文献2

二级参考文献2

共引文献5

同被引文献47

  • 1宗燕兵,苍大强,甄云璞,李宇,白皓.Component modification of steel slag in air quenching process to improve grindability[J].中国有色金属学会会刊:英文版,2009,19(S3):834-839. 被引量:4
  • 2赵三银,李伟升,林永权,赵旭光,余其俊.转炉钢渣粉磨动力学的实验研究[J].水泥工程,2006(2):5-8. 被引量:12
  • 3YAMAMOTO T, KITAJIMA K, IZAWA M. A Fundamental Study of Dry Blasting Effects of Abrasive Grains on Surface Roughness [ J ]. Key Engineering Materials, 2003,238 : 93- 98.
  • 4HOLT W S, AUSTIN D M. How Nozzle Pressure and Feed Rate Affect the Productivity of Dry Abrasive Blasting[ J ]. Journal of Protective Coatings and Linings,2001,18( 10): 82-104.
  • 5BAE H J, BAEK J J, LEE C S, et al. Optimizing Blasting Parameters to Achieve High Yiehts [ J ]. Materials Perfor- mance ,2008,47 ( 1 ) :48-52.
  • 6KAMBHAM K, SANGAMESWARAN S, DATAR S. et al. E-valuation of Total Particulate Matter Emission Factors for Copper Slag in Dry Abrasive Blasting [ J ]. International Journal of Environment and Pollution, 2009,37 ( 4 ) : 422- 436.
  • 7KAMBHAM K, SANGAMESWARAN S, DATAR S R, et al. Copper Slag: Optimization of Productivity and Consumption for Cleaner Production in Dry Abrasive Blasting[ J]. Journal of Cleaner Production,2007,15 (5) :465---473.
  • 8张同生,刘福田,王建伟,李义凯,周宗辉,程新.钢渣安定性与活性激发的研究进展[J].硅酸盐通报,2007,26(5):980-984. 被引量:113
  • 9Karnbharn K, Sangameswaran S, Datar S R, et al. Copper slag:optimization of productivity and consumption for cleaner product tion in dry abrasive blasting[J]. Journal of Cleaner Production, 2007, 15(5):465-473.
  • 10Yamamoto T, Kitajima K, Izawa M. A Fundamental study of dry blasting:effects of abrasive grains on surface roughness[J]. Key Engineering Materials, 2003, 238:93-98.

引证文献5

二级引证文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部