应力腐蚀破裂:机制,材料挑战和工程解决方案
Lincoln Pinoski1, Subin Antony Jose1, Pradeep L Menezes1
1Department of Mechanical Engineering, University of Nevada-Reno, Reno, NV 89557, USA.
Materials (Basel, Switzerland)
|March 14, 2026
概括
应力腐蚀裂纹 (SCC) 是工程元件的关键故障机制. 本综述综合了SCC机制,材料易感性,环境因素,测试和工程师的缓解策略.
科学领域:
- 材料科学与工程 材料科学与工程
- 腐蚀科学 腐蚀科学
背景情况:
- 应力腐蚀裂纹 (SCC) 是关键基础设施中一个重要的故障模式.
- 它是由拉力应力和腐蚀性环境的联合影响造成的.
- SCC影响了航空航天,核,石油和天然气以及海洋工程等行业.
研究的目的:
- 为应力腐蚀裂纹 (SCC) 提供全面的审查.
- 综合目前对SCC机制,材料易感性,环境影响,测试方法和缓解策略的理解.
- 为机械工程师提供可操作的见解,用于设计和维护针对SCC的组件.
主要方法:
- 关于SCC机制的文献综合 (膜破裂,脆化,吸附诱导的裂变).
- 在各种合金 (钢,Al,Ni基,Ti,HEAs) 中对材料易受性的评估.
- 检查环境因素 (化学,温度,pH,气体) 和先进的测试方法 (SSRT,电化学监测,显微镜).
主要成果:
- 确定了关键的SCC机制和影响环境因素.
- 在一系列合金中评估材料易受性,包括新兴的高合金.
- 突出了先进的测试技术和工程减轻策略 (材料选择,减压,表面处理,环境控制).
结论:
- SCC是一个复杂的现象,需要采取多方面的缓解方法.
- 机器学习和增材制造等新兴趋势显示出预测和预防SCC的前景.
- 这次审查为工程师提供了在苛刻环境中保护组件的知识.
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