Challenges and opportunities in corrosion of steel in concrete
This paper summarizes the grand societal, economic, technological, and educational challenges related to corrosion of steel in concrete, and presents the state-of-the-art of the most relevant issues in the field. The enormous financial impact of infrastructure corrosion seems to be inadequately bala...
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description | This paper summarizes the grand societal, economic, technological, and educational challenges related to corrosion of steel in concrete, and presents the state-of-the-art of the most relevant issues in the field. The enormous financial impact of infrastructure corrosion seems to be inadequately balanced by educational and research activities. This presents a unique opportunity in many countries for maintaining or improving their competitiveness, given the major technological challenges can be solved. The main technological challenges are (1) the ever-increasing need to cost-effectively maintain existing, ageing reinforced concrete structures, and (2) designing durable, thus sustainable new structures. The first challenge arises mainly in industrialized countries, where there is a need to abandon conservative, experience-based decision taking and instead move to innovative, knowledge-based strategies. The second challenge regards mainly emerging countries expanding their infrastructures and where thus a major beneficial environmental impact can still be made by providing long-lasting solutions. This means to be able to reliably predict the long-term corrosion performance of reinforced concrete structures in their actual environments, particularly for modern materials and in the absence of long-term experience. During the second half of the last century, civil engineers, materials scientists, and chemists have in many countries made considerable attempts towards understanding corrosion of steel in concrete, but many of the approaches got bogged down in empiricism. From reviewing the state-of-the-art one can conclude that transport modeling in concrete is relatively well-advanced, at least in comparison with understanding corrosion
initiation
and corrosion
propagation
, where many questions are still open. This presents a number of opportunities in scientific research and technological development that are discussed in this paper. |
doi_str_mv | 10.1617/s11527-017-1131-6 |
format | Article |
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initiation
and corrosion
propagation
, where many questions are still open. This presents a number of opportunities in scientific research and technological development that are discussed in this paper.</description><identifier>ISSN: 1359-5997</identifier><identifier>EISSN: 1871-6873</identifier><identifier>DOI: 10.1617/s11527-017-1131-6</identifier><language>eng</language><publisher>Dordrecht: Springer Netherlands</publisher><subject>Building construction ; Building Materials ; Chemists ; Civil Engineering ; Civil engineers ; Concrete ; Concrete structures ; Corrosion ; Education ; Engineering ; Environmental impact ; Machines ; Manufacturing ; Materials Science ; Original Article ; Processes ; Reinforced concrete ; Reinforcing steels ; Solid Mechanics ; State-of-the-art reviews ; Theoretical and Applied Mechanics</subject><ispartof>Materials and structures, 2018-02, Vol.51 (1), p.1-20, Article 4</ispartof><rights>RILEM 2018</rights><rights>Materials and Structures is a copyright of Springer, (2018). All Rights Reserved.</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c422t-d1663205549f2384011899ed27c1dab7236988a58dcfaf4eb88c5720a478b6423</citedby><cites>FETCH-LOGICAL-c422t-d1663205549f2384011899ed27c1dab7236988a58dcfaf4eb88c5720a478b6423</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktopdf>$$Uhttps://link.springer.com/content/pdf/10.1617/s11527-017-1131-6$$EPDF$$P50$$Gspringer$$Hfree_for_read</linktopdf><linktohtml>$$Uhttps://link.springer.com/10.1617/s11527-017-1131-6$$EHTML$$P50$$Gspringer$$Hfree_for_read</linktohtml><link.rule.ids>314,780,784,27924,27925,41488,42557,51319</link.rule.ids></links><search><creatorcontrib>Angst, Ueli M.</creatorcontrib><title>Challenges and opportunities in corrosion of steel in concrete</title><title>Materials and structures</title><addtitle>Mater Struct</addtitle><description>This paper summarizes the grand societal, economic, technological, and educational challenges related to corrosion of steel in concrete, and presents the state-of-the-art of the most relevant issues in the field. The enormous financial impact of infrastructure corrosion seems to be inadequately balanced by educational and research activities. This presents a unique opportunity in many countries for maintaining or improving their competitiveness, given the major technological challenges can be solved. The main technological challenges are (1) the ever-increasing need to cost-effectively maintain existing, ageing reinforced concrete structures, and (2) designing durable, thus sustainable new structures. The first challenge arises mainly in industrialized countries, where there is a need to abandon conservative, experience-based decision taking and instead move to innovative, knowledge-based strategies. The second challenge regards mainly emerging countries expanding their infrastructures and where thus a major beneficial environmental impact can still be made by providing long-lasting solutions. This means to be able to reliably predict the long-term corrosion performance of reinforced concrete structures in their actual environments, particularly for modern materials and in the absence of long-term experience. During the second half of the last century, civil engineers, materials scientists, and chemists have in many countries made considerable attempts towards understanding corrosion of steel in concrete, but many of the approaches got bogged down in empiricism. From reviewing the state-of-the-art one can conclude that transport modeling in concrete is relatively well-advanced, at least in comparison with understanding corrosion
initiation
and corrosion
propagation
, where many questions are still open. This presents a number of opportunities in scientific research and technological development that are discussed in this paper.</description><subject>Building construction</subject><subject>Building Materials</subject><subject>Chemists</subject><subject>Civil Engineering</subject><subject>Civil engineers</subject><subject>Concrete</subject><subject>Concrete structures</subject><subject>Corrosion</subject><subject>Education</subject><subject>Engineering</subject><subject>Environmental impact</subject><subject>Machines</subject><subject>Manufacturing</subject><subject>Materials Science</subject><subject>Original Article</subject><subject>Processes</subject><subject>Reinforced concrete</subject><subject>Reinforcing steels</subject><subject>Solid Mechanics</subject><subject>State-of-the-art reviews</subject><subject>Theoretical and Applied 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China</collection><jtitle>Materials and structures</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Angst, Ueli M.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Challenges and opportunities in corrosion of steel in concrete</atitle><jtitle>Materials and structures</jtitle><stitle>Mater Struct</stitle><date>2018-02-01</date><risdate>2018</risdate><volume>51</volume><issue>1</issue><spage>1</spage><epage>20</epage><pages>1-20</pages><artnum>4</artnum><issn>1359-5997</issn><eissn>1871-6873</eissn><abstract>This paper summarizes the grand societal, economic, technological, and educational challenges related to corrosion of steel in concrete, and presents the state-of-the-art of the most relevant issues in the field. 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This means to be able to reliably predict the long-term corrosion performance of reinforced concrete structures in their actual environments, particularly for modern materials and in the absence of long-term experience. During the second half of the last century, civil engineers, materials scientists, and chemists have in many countries made considerable attempts towards understanding corrosion of steel in concrete, but many of the approaches got bogged down in empiricism. From reviewing the state-of-the-art one can conclude that transport modeling in concrete is relatively well-advanced, at least in comparison with understanding corrosion
initiation
and corrosion
propagation
, where many questions are still open. This presents a number of opportunities in scientific research and technological development that are discussed in this paper.</abstract><cop>Dordrecht</cop><pub>Springer Netherlands</pub><doi>10.1617/s11527-017-1131-6</doi><tpages>20</tpages><oa>free_for_read</oa></addata></record> |
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subjects | Building construction Building Materials Chemists Civil Engineering Civil engineers Concrete Concrete structures Corrosion Education Engineering Environmental impact Machines Manufacturing Materials Science Original Article Processes Reinforced concrete Reinforcing steels Solid Mechanics State-of-the-art reviews Theoretical and Applied Mechanics |
title | Challenges and opportunities in corrosion of steel in concrete |
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