...
首页> 外文期刊>Journal of Materials Research and Technology >Cross-effect of surface finishing and deep cryogenic treatment on corrosion resistance of AISI M35 steel
【24h】

Cross-effect of surface finishing and deep cryogenic treatment on corrosion resistance of AISI M35 steel

机译:表面整理的跨效应和深浊度处理对AISI M35钢耐腐蚀性的影响

获取原文

摘要

The improvement of corrosion lifetime of commonly used steels is an important characteristic that is required for development of steel products for usage in non-traditional corrosion environments and specialized applications such as oil and gas industry. In order to achieve the required enhancements in a versatile manner, a combination of material and surface processing schemes can be used. In this research, the effect of surface finishing (original, polished, etched and immersed in LN2) on corrosion behavior of steel AISI M35 is investigated. Furthermore, the change of corrosion properties with the application of deep cryogenic treatment (DCT) is researched and compared with the effect of conventional heat treatment (CHT). The various surface finishing induce modified corrosion product development and degradation of material. The surface finishing with contributing nitrogen presence (etching and immersion in LN2) display significant suppression in development of corrosion products related to the formation of green rust. On the other hand, DCT induces microstructural and mechanical changes, which also influence the corrosion dynamics. DCT is confirmed to reduce exfoliation of the corrosion product layer due to reduced surface cracking induced by residual stress-of the microstructure. Additionally, DCT reduces pitting formation and growth, resulting from the changed alloying element concentration and microstructure. The cross-effect of both nitrogen-introducing surface finishing and DCT have the most positive influence on corrosion properties of steel AISI M35. The modifications lead to improved self-corrosion protection and stability of the surface resulting in increased durability of AISI M35 in saline corrosive media.
机译:常用钢的腐蚀寿命的改善是在非传统腐蚀环境和石油和天然气行业等专业应用中使用钢铁产品所需的重要特征。为了以通用方式实现所需的增强,可以使用材料和表面处理方案的组合。在本研究中,研究了表面精加工(原始,抛光,蚀刻和浸入LN2)对钢AISI M35腐蚀行为的影响。此外,研究并与常规热处理(CHT)的效果进行了研究和比较了腐蚀性能的变化。各种表面精加工诱导改性腐蚀产品的开发和材料的降解。通过有助于氮的存在(LN2中的蚀刻和浸渍)的表面精加工显示出在与绿色生锈形成有关的腐蚀产品的发展中显着抑制。另一方面,DCT诱导微观结构和机械变化,这也影响了腐蚀动态。确认DCT以减少由于通过微结构的残余应力诱导的表面裂缝而降低腐蚀产物层的剥离。另外,DCT降低了蚀地形成和生长,由改变的合金元素浓度和微观结构产生。氮气引入表面精加工和DCT的横向对钢AISI M35的腐蚀性质的影响最大。该改进导致改善了表面的自腐蚀保护和稳定性,从而提高了盐水腐蚀介质中AISI M35的耐久性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号