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Opportunities and Challenges in Corrosion Education: Review of a National Research Council Assessment

机译:腐蚀教育中的机遇与挑战:国家研究委员会评估的回顾

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Corrosion includes the destructive oxidation of metals and nonmetallic materials resulting in the degradation of function due to exposure of materials to corrosive operational environment. An improvement in capability to better manage and reduce degradation of materials in engineered products requires a workforce educated and trained in the application of the tools, principles, and practices of corrosion engineering. One of the greatest enduring challenges in engineering education today is to make broadly available and attract students to classes covering subjects such as materials science, applied electrochemistry, and corrosion of engineered materials. The current level of effectiveness of corrosion engineering curricula in the U.S. is not sufficient to address the nation's need to improve safety, reliability, and reduce costs due to corrosion. To remedy this situation, corrosion engineering education, training, and research must be addressed at several levels: (1) short-term initiatives by universities, government, and industry and (2) long-term initiatives jointly taken by the federal government and the U.S. corrosion research community.
机译:腐蚀包括金属和非金属材料的破坏性氧化,由于材料暴露于腐蚀性工作环境而导致功能下降。为了更好地管理和减少工程产品中材料的降解,要想提高其能力,就需要在腐蚀工程的工具,原理和实践中接受过教育和培训的员工队伍。如今,工程教育中最大的持久挑战之一就是要广泛普及并吸引学生参加涵盖诸如材料科学,应用电化学和工程材料腐蚀等学科的课程。美国目前的腐蚀工程课程有效性水平不足以解决美国因腐蚀而提高安全性,可靠性和降低成本的需求。为了纠正这种情况,必须从多个层面解决腐蚀工程学的教育,培训和研究问题:(1)大学,政府和工业界的短期举措,以及(2)联邦政府和联邦政府联合采取的长期举措。美国腐蚀研究界。

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