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Detection Of Stress Corrosion Cracking Of High-strength Steel Used In Prestressed Concrete Structures By Acoustic Emission Technique

机译:声发射技术检测预应力混凝土结构用高强度钢的应力腐蚀开裂

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The stress corrosion cracking (SCC) of high-strength steel used in prestressed concrete structures was studied by acoustic emission technique (AE). A simulated concrete pore (SCP) solution at high-alkaline (pH ≈ 12) contaminated by sulphate, chloride, and thiocyanate ions was used. The evolution of the acoustic activity recorded during the tests shows the presence of several stages related respectively to cracks initiation due to the local corrosion imposed by corrosives species, cracks propagation and steel failure. Microscopic examinations pointed out that the wires exhibited a brittle fracture mode. The cracking was found to propagate in the transgranular mode. The role of corrosives species and hydrogen in the rupture mechanism of high-strength steel was also investigated. This study shows promising results for an potential use in situ of AE for real-time health monitoring of eutectoid steel cables used in prestressed concrete structures.
机译:通过声发射技术(AE)研究了用于预应力混凝土结构的高强度钢的应力腐蚀开裂(SCC)。使用了在高碱性(pH≈12)下被硫酸根,氯离子和硫氰酸根离子污染的模拟混凝土孔隙(SCP)溶液。在测试过程中记录的声活动的演变表明,由于腐蚀剂种类引起的局部腐蚀,裂纹扩展和钢破坏,分别与裂纹萌发相关的几个阶段的存在。显微镜检查指出,导线表现出脆性断裂模式。发现裂纹以穿晶模式传播。还研究了腐蚀性物质和氢在高强度钢断裂机理中的作用。这项研究显示出有希望的结果,表明AE可用于预应力混凝土结构中的共析钢电缆的实时健康状况实时监测。

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