毕业设计外文翻译-----BSt_500s_钢筋抗腐蚀性能研究
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1、 本科毕业设计 ( 论文 ) 翻译 英文原文名 Tensile behavior of corroded reinforcing steel bars BSt 500s 中文译名 BSt 500s 钢筋抗腐蚀性能研究 班 级 姓 名 学 号 指导教师 填表日期 英文原文版出处 : EARTHQUAKE ENGINEERING AND STRUCTURAL DYNAMICS 译文成绩 : 指导教师签名: 原 文 : 1. Introduction Steel bars in reinforced concrete carry mainly tension loads. According to
2、the present day standards, e.g. 1, for involving reinforcing steel in concrete structures, certain minimum values for the mechanical properties modulus of elasticity (E), yield stress (Rp), ultimate stress (Rm) and elongation to failure (fu) of the steel are required. Furthermore, the standard sets
3、Rm/Rp 1.05 1. With increasing service life of a reinforced concrete structure damage accumulates gradually. Nowadays, significant resources are allocated worldwide for the repair and rehabilitation of deteriorating concrete structures. Recent reports indicate that the annual repair costs for the rei
4、nforced concrete structures of the network of highways in the USA alone amounts to 20 billion USD 2. The respective repair costs for reinforced concrete bridges in England and Wales amount to 615 million GBP 3. Yet, although in recent years the problem of the actual residual strength degradation of
5、ageing reinforced concrete structures has attracted considerable attention, it is far from being fully understood and, even less, resolved. It is worth noting that up to now, little work has been done to account for the effects of corrosion on the mechanical properties of the reinforcing steel bars
6、and hence on the degradation of the load bearing ability of a reinforced concrete element 4. Such effects are the reduction of the effective cross-section of the reinforcing steel, micro and macro cracking of concrete and finally the spalling of the concrete. The underestimation of the corrosion pro
7、blem arises from the fact that under normal circumstances, concrete provides protection to the reinforcing steel. Physical protection of the reinforcing steel against corrosion is provided by the dense and relatively impermeable structure of concrete. The thin oxide layer covering the reinforcement,
8、 during concrete hydration, ensures chemical protection. The oxide layer remains stable in the alkaline concrete environment (pH 13), but begins to deteriorate when the pH of the pore solution drops below 11 5 and 6. The rate of deterioration due to corrosion rises when the pH drops below 9. For cor
9、rosion to commence, the oxide film must be broken or depassivated. Depassivation may occur if the alkalinity of the pore solution in the concrete pores decreases and/or penetration of the chloride ions takes place. This may be caused by carbonation, especially in the proximity of cracks, or by water
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