期刊文献+

Nickel Release Rate of Several Nickel-containing Stainless Steels for Jewelries 被引量:1

Nickel Release Rate of Several Nickel-containing Stainless Steels for Jewelries
原文传递
导出
摘要 Nickel-containing stainless steels have been widely applied in watch and jewelry production,and their responses to the Nickel Directive become a universal concern in the industry.The nickel release rates and corrosion behaviors of types 316 L,304,303 and 201stainless steels under the conditions of solid solution and mirror polishing were studied by artificial sweat soaking and electrochemical methods.The results show that the weekly nickel release rates in artificial sweat do not strictly correspond to the nickel contents,which present a descending order as 303 stainless steel of 2.06μg/cm2,201 stainless steel of 1.51μg/cm2,304 stainless steel of 0.08μg/cm2 and 316 L stainless steel of 0.02μg/cm2.Both the nickel release rates of type 303 and 201stainless steels significantly exceed the threshold values regulated in EN1811∶2011;therefore,they should be avoided to be used as watch and jewelry materials owing to the risk of nickel sensitization.The nickel release rates of 316 Land 304stainless steels meet the requirements of the standard.Sulfide inclusions in stainless steel become the sources of pitting and exacerbate the damage of the passivation membrane,which is the significant cause to enhance the nickel release rates. Nickel-containing stainless steels have been widely applied in watch and jewelry production, and their re- sponses to the Nickel Directive become a universal concern in the industry. The nickel release rates and corrosion be- haviors of types 316L, 304, 303 and 201 stainless steels under the conditions of solid solution and mirror polishing were studied by artificial sweat soaking and electrochemical methods. The results show that the weekly nickel release rates in artificial sweat do not strictly correspond to the nickel contents, which present a descending order as 303 stainless steel of 2.06 μg/cm2 , 201 stainless steel of 1.51 μg/cm2 , 304 stainless steel of 0.08μg/cm2 and 316L stainless steel of 0.02 μg/cm2. Both the nickel release rates of type 303 and 201 stainless steels significantly exceed the threshold values regulated in EN1811 : 2011 ; therefore, they should be avoided to be used as watch and jewelry materials owing to the risk of nickel sensitization. The nickel release rates of 316L and 304 stainless steels meet the requirements of the standard. Sulfide inclusions in stainless steel become the sources of pitting and exacerbate the damage of the passivation membrane, which is the significant cause to enhance the nickel release rates.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2015年第1期72-77,共6页 钢铁研究学报(英文版)
基金 financially supported by the foundation of Jewelry Engineering Technology Development Center of Guangdong Colleges and Universities(item No.131,Yue Edu.Sci)
关键词 304不锈钢 含镍 316L不锈钢 释放量 释放速率 首饰 人工汗液 电化学方法 jewelry nickel-containing stainless steel nickel release rate nickel allergy
  • 相关文献

参考文献17

  • 1J. P. Yuan, W. Li, C. Wang, Mater. Sci. Eng. C 33 (2013) 446-452.
  • 2C. Lidfn, Brit. J. Dermatol 169 (2013) 733.
  • 3J. P. Thyssen, T. Menne, Chem. Res. Toxicol 23 (2010) 309- 318.
  • 4European Communities, Off. J. Europ. Commun. 37 (1994) 1- 2.
  • 5EN1811 ." 1998, Reference Test Method for Release of Nickel from Products Intended to Come into Direct Prolonged Contact with the Skin, European Committee for Standardization, Brus- sel, 1998.
  • 6The Commission of European Communities, Off. J. Europ. Union 301 (2004) 51 52.
  • 7EN 1811 1998+A1 2008, Reference Test Method for Re lease of Nickel from Products Intended to Come into Direct and Prolonged Contact with the Skin, European Committee {or Standardization, Brussel, 2008.
  • 8EN 1811 : 2011, Reference Test Method for Release of Nickel from All Post Assemblies which are Inserted into Pierced Parts of the Human Body and Articles Intended to Come into Direct and Prolonged Contact with the Skin, European Committee for Standardization, Brussel, 2011.
  • 9J. P. Yuan, W. Li, W.X. Guo, Adv. Mater. Res. 241 (2011) 3284 3289.
  • 10H.S. Khatak, B. Raj, Corrosion of Austenitic Stainless Steels Mechanism, Mitigation and Monitoring, Woodhead Publishing Ltd., UK, 2002.

同被引文献6

引证文献1

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