首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >A multi-degradation test rig for studying the synergy effects of tribocorrosion interacting with 4-point static and cyclic bending
【24h】

A multi-degradation test rig for studying the synergy effects of tribocorrosion interacting with 4-point static and cyclic bending

机译:用于研究摩擦腐蚀与4点静态和循环弯曲相互作用的协同效应的多降解试验台

获取原文
获取原文并翻译 | 示例
           

摘要

Many offshore and marine components are exposed to wear in a corrosive environment, called tribo-corrosion exposure. These components are usually structural elements, also supporting applied static and/or cyclic tensile stresses. There are no test apparatus or methodologies described in the literature for studying the multi-degradation mechanisms and performance of such complex degradation scenarios and engineered surface materials. The present work presents a new test apparatus developed to reproduce the multi-degradation phenomena at lab scale, by exposing test specimens to any combination of cyclic and static 4-point bending and reciprocating ball-on-plate sliding contact in a corrosive environment under electrochemical control. Initial multi-degradation tests of a 22% Cr duplex stainless steel show that the level of applied cyclic or static surface strain significantly changes the material loss and degradation mechanisms. The tribocorrosion test setup for these multi-degradation testing has been performed at open circuit potential (OCP). The reciprocating sliding action of an alumina counterpart (O 4.76 mm) has been established with an applied normal force of 70 N at a sliding frequency of 1 Hz. The multi-degradation tests have been conducted for 2 h at 90% and 12% of the yield strength during static straining. The cyclic strain testing was performed at a maximum stress of 90% and 60% of yield strength, with 9000 cycles applied at a 4-point bending frequency of 1.25 Hz. OCP, coefficient of friction and stresses were logged during testing.
机译:许多海上和海洋组件在腐蚀性环境中会遭受磨损,称为摩擦腐蚀暴露。这些组件通常是结构元件,也支持施加的静态和/或循环拉伸应力。文献中没有描述用于研究这种复杂降解情况和工程表面材料的多重降解机理和性能的测试装置或方法。本工作提出了一种新的测试设备,该设备通过在电化学环境下在腐蚀环境下使试样暴露于循环和静态四点弯曲以及往复球对板滑动接触的任意组合下,以在实验室规模再现多降解现象。控制。最初对22%Cr双相不锈钢进行的多次降解试验表明,施加的循环或静态表面应变水平显着改变了材料损失和降解机理。在开路电势(OCP)下执行了用于这些多次降解测试的摩擦腐蚀测试设置。在70 Hz的法向力下,以1 Hz的滑动频率建立了氧化铝对应物(O 4.76 mm)的往复滑动作用。在静态应变期间,已在屈服强度的90%和12%的条件下进行了2 h的多次降解测试。循环应变测试是在最大应力为屈服强度的90%和屈服强度的60%的条件下进行的,在1.25 Hz的4点弯曲频率下施加了9000个循环。测试期间记录了OCP,摩擦系数和应力。

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