首页> 外文会议>ASME international pipeline conference 2008 >Integrity of 3LPE Pipeline Coatings - Residual Stresses and Adhesion Degradation
【24h】

Integrity of 3LPE Pipeline Coatings - Residual Stresses and Adhesion Degradation

机译:3LPE管道涂层的完整性-残余应力和附着力下降

获取原文
获取原文并翻译 | 示例

摘要

Both fusion bonded epoxy (FBE) and 3-layer polyolefin (3LPO) coating systems have been widely applied in the world as new-construction external pipeline coatings. 3LPO is regarded as a more damage resistant coating system while FBE is considered to be more compatible with the CP system. In the past few years, several incidences of coating disbondment at the FBE-steel interface of 3LPO have been reported in the literature. The coating disbondment issue has raised concerns over the use of 3LPO. The US Department of Transportation (DOT) initiated a research program to address these technical concerns. Our research program is funded by this DOT initiative with a team of pipeline coating experts participating in this research project. The integrity of the 3LPO pipeline coating is impacted by the residual stresses and adhesion degradation by water penetration. This paper examines the effect of coating thickness on residual stress, degradation of adhesion due to immersion in hot water and their combined affect on disbondment. The integrity of 3LPO is good when the coating is applied properly. Under the following conditions, the 3LPO may delaminate: (1) inadequate FBE coating formulation, (2) inadequate FBE coating application procedure and surface preparation, and (3) induced stress due to high volume shrinkage of PO layer.
机译:熔融粘合环氧树脂(FBE)和三层聚烯烃(3LPO)涂料系统已作为新型外部管道涂料在世界范围内得到广泛应用。 3LPO被认为是更具抗损伤性的涂层系统,而FBE被认为与CP系统更兼容。在过去的几年中,文献报道了在3LPO的FBE-钢界面处发生涂层剥离的几种情况。涂料脱粘问题引起了人们对使用3LPO的担忧。美国运输部(DOT)发起了一项研究计划,以解决这些技术问题。我们的研究计划是由DOT计划资助的,该小组的管道涂料专家小组参与了该研究项目。 3LPO管道涂层的完整性会受到残余应力的影响,并且会因水的渗透而降低附着力。本文研究了涂层厚度对残余应力的影响,由于浸入热水引起的粘合力下降以及它们对剥离的综合影响。正确涂覆涂料后,3LPO的完整性良好。在以下条件下,3LPO可能会分层:(1)FBE涂层配方不足,(2)FBE涂层施加步骤和表面处理不充分以及(3)PO层的高体积收缩引起的应力。

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