隧道建设
隧道建設
수도건설
TUNNEL CONSTRUCTION
2011年
5期
573-576,592
,共5页
孙朋朋%赵铁军%金祖权%高祥壮%徐建光
孫朋朋%趙鐵軍%金祖權%高祥壯%徐建光
손붕붕%조철군%금조권%고상장%서건광
海洋环境%混凝土%氯离子%腐蚀
海洋環境%混凝土%氯離子%腐蝕
해양배경%혼응토%록리자%부식
marine environment%concrete%chloride iron%corrosion
为了解决海洋环境下混凝土结构过早腐蚀,达不到服役寿命的问题,通过对海洋环境下不同腐蚀区域、不同暴露时间的混凝土结构进行氯离子质量分数检测,研究了海洋环境下混凝土在不同区域、不同侵蚀时间的氯离子传输规律。结果表明:海洋环境下当侵蚀时间一定时,混凝土的氯离子质量分数由高到低依次为水下区、潮汐区、大气区,但潮汐区的混凝土外观损伤比水下区严重;当腐蚀区域相同时,混凝土中的氯离子质量分数随腐蚀时间的增加而增大,并随深度的增加而减小,最后趋于稳定;在腐蚀时间和腐蚀区域都相同的条件下,混凝土的抗氯离子侵蚀能力随水灰比的增大而减小。
為瞭解決海洋環境下混凝土結構過早腐蝕,達不到服役壽命的問題,通過對海洋環境下不同腐蝕區域、不同暴露時間的混凝土結構進行氯離子質量分數檢測,研究瞭海洋環境下混凝土在不同區域、不同侵蝕時間的氯離子傳輸規律。結果錶明:海洋環境下噹侵蝕時間一定時,混凝土的氯離子質量分數由高到低依次為水下區、潮汐區、大氣區,但潮汐區的混凝土外觀損傷比水下區嚴重;噹腐蝕區域相同時,混凝土中的氯離子質量分數隨腐蝕時間的增加而增大,併隨深度的增加而減小,最後趨于穩定;在腐蝕時間和腐蝕區域都相同的條件下,混凝土的抗氯離子侵蝕能力隨水灰比的增大而減小。
위료해결해양배경하혼응토결구과조부식,체불도복역수명적문제,통과대해양배경하불동부식구역、불동폭로시간적혼응토결구진행록리자질량분수검측,연구료해양배경하혼응토재불동구역、불동침식시간적록리자전수규률。결과표명:해양배경하당침식시간일정시,혼응토적록리자질량분수유고도저의차위수하구、조석구、대기구,단조석구적혼응토외관손상비수하구엄중;당부식구역상동시,혼응토중적록리자질량분수수부식시간적증가이증대,병수심도적증가이감소,최후추우은정;재부식시간화부식구역도상동적조건하,혼응토적항록리자침식능력수수회비적증대이감소。
Concrete structures are subject to corrosion under the marine environment, which reduces their service life. In this paper, the authors study on the rules of chloride iron ingression in concrete at different positions and within different durations under the marine environment, by testing on the chloride iron content in the samples that are exposed to corrosion at different positions and within different durations. Conclusions drawn are as follows: 1 ) Within the same cor- rosion duration, the chloride iron contents in the concrete decrease in the order from the concrete underwater, to the concrete in the tidal zone and finally to the concrete in the air zone, and the appearance defect of the concrete in the tidal zone is more serious than that underwater; 2) At the same corrosion position, the chloride iron content in the concrete increases with the corrosion duration, decreases with the depth and stabilizes finally; 3 ) Within the same corrosion duration and at the same corrosion position, the chloride iron corrosion resistance capability of concrete decreases with the increasing of the water/cement ratio of the concrete.