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New method to measure the rapid chloride migration coefficient of chloride-contaminated concrete

机译:测量氯离子污染混凝土快速氯离子迁移系数的新方法

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The apparent chloride diffusion coefficient, D_(app) which is obtained by fitting chloride profiles as the result of time-consuming immersion tests can be substituted in a model on chloride ingress by the rapid chloride migration (RCM) coefficient of concrete, D_(RCM), which is determined under electrically accelerated conditions. Until now, it was not possible to measure D_(RCM) of chloride-contaminated concrete, as already inherent chlorides interfere with the common colorimetric indicator used for penetration depth measurements. Furthermore, carbonation may also interfere with the penetration depth reading. To overcome these problems, the regular test has been modified by using iodide as penetrating ion and iodate-starch acetic acid as indicator. A strong linear relationship between the regular RCM test and the newly developed Rapid Iodide Migration (RIM) Test was found. Carbonated specimens can be tested using the RIM test without additional interference. Thus, the new method enables the quantification of the actual concrete quality sampled from existing structures during a condition assessment.
机译:通过耗时的浸入试验,通过拟合氯化物轮廓获得的表观氯化物扩散系数D_(app)可以用混凝土的快速氯化物迁移(RCM)系数D_(RCM)代替氯化物进入模型。 ),这是在电加速条件下确定的。到目前为止,由于已经固有的氯化物会干扰用于渗透深度测量的通用比色指示剂,因此无法测量受氯化物污染的混凝土的D_(RCM)。此外,碳酸化也可能会影响穿透深度读数。为了克服这些问题,通过使用碘化物作为渗透离子和碘酸盐-淀粉乙酸作为指示剂对常规测试进行了改进。发现常规RCM测试与新开发的快速碘化物迁移(RIM)测试之间存在很强的线性关系。碳化样品可以使用RIM测试进行测试,而不会产生其他干扰。因此,该新方法能够对状态评估期间从现有结构中采样的实际混凝土质量进行量化。

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