首页> 外文期刊>Engineering failure analysis >Failure of a nickel aluminium bronze (NAB) canned motor pump impeller working under polluted sea water - Influence of material selection, section thickness dependent microstructure and temper annealing heat treatment
【24h】

Failure of a nickel aluminium bronze (NAB) canned motor pump impeller working under polluted sea water - Influence of material selection, section thickness dependent microstructure and temper annealing heat treatment

机译:镍铝青铜(NAB)屏蔽电动泵叶轮在受海水污染的情况下的故障-材料选择,取决于截面厚度的微观结构和回火退火热处理的影响

获取原文
获取原文并翻译 | 示例
       

摘要

In the present study, a damaged pump impeller working under highly polluted sea water was taken up for investigation on probable cause(s) for its failure. Major steps in the investigation were visual examination, thorough microstructural observation of the affected (surface and sub-surface) and unaffected portions of the base material at different locations on the impeller having varying section thickness. An effort has been made for correlating unaffected microstructural attributes to corroded features with respect to various section thicknesses. Failure of the impeller is found to be due to combined effect of a corrosion susceptible microstructure and highly polluted corroding medium that resulted in selective phase corrosion (SPC) of certain phases in the microstructure leading to surface roughening and perforation, predominantly through pitting mechanism governed by dealuminification initiated at phase interfaces. Networked alpha plus kappaIII eutectoids, Cu-O type of precipitates, dendritic Cu-Al phase and retained beta have been found to be corrosion susceptible microstructure. Principle corroding features in thick sections were found to be kappaII and alpha plus kappaIII eutectoids, while that in thin sections include severe cracking involving Cu-S-O rich coarse precipitate (of 15 mu m approx size), corrosion along interfaces of dendritic Cu-Al phase and retained beta with alpha matrix. Presence of alpha plus kappaIII eutectoids and retained beta has been the result of combined effect of improper selection of material (aluminium) composition, complex cast shape of the impeller and ineffective temper annealing treatment, while dendritic Cu-Al phase and high level of porosity are casting defects. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本研究中,研究了在高污染海水下工作的损坏的泵叶轮,以研究其故障的可能原因。研究的主要步骤是目视检查,在叶轮上不同位置,截面厚度各不相同的基础材料的受影响(表面和亚表面)和未受影响部分的彻底微观结构观察。已经进行了努力,以针对各种截面厚度将未受影响的微结构属性与腐蚀特征相关联。发现叶轮的故障是由于易腐蚀的微观结构和高度污染的腐蚀介质的共同作用所致,该腐蚀介质导致微观结构中某些相的选择性相腐蚀(SPC)导致表面变粗糙和穿孔,主要是通过点蚀机理控制在阶段接口启动脱铝。已发现网状的α+ kappaIII共析物,Cu-O型沉淀,树枝状Cu-Al相和保留的β是易腐蚀的微观结构。发现厚部分的主要腐蚀特征是kappaII和alpha加kappaIII的共析物,而薄部分的腐蚀主要包括严重的裂纹,该裂纹涉及富含Cu-SO的粗大析出物(约15μm),沿树枝状Cu-Al相界面的腐蚀。并保留带有alpha矩阵的beta。 α加kappaIII共析物和保留的β的存在是材料(铝)成分选择不当,叶轮铸件形状复杂以及回火退火处理无效的综合作用的结果,而树枝状Cu-Al相和高孔隙率是铸造缺陷。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 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