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Surface and internal deterioration of concrete due to saline and non-saline freeze-thaw loads

机译:盐水和非盐水冻融荷载导致混凝土的表面和内部变质

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Concrete deterioration due to frost action in non-saline and saline environments was studied statistically. The most significant variables affecting the freeze-thaw durability of concrete were calculated statistically and contours of estimated response surface were produced. Water-cement ratio and air content of the concretes were the most dominant variables affecting the internal and surface damage caused by the freezing and thawing loads. In the non-saline environment, water curing improved the R2 values of the developed deterioration models in the surface scaling part of the tests. In the internal damage tests, the curing measures did not improve the statistical relevancy of the estimated response surfaces. In the saline freeze-thaw tests, high-strength concretes were studied. When water-binder ratio was below 0.42 internal deterioration was the governing freeze-thaw damage mechanism which needed larger air content compared to surface scaling.
机译:对非盐和盐环境中由于霜冻作用引起的混凝土劣化进行了统计研究。统计上影响混凝土冻融耐久性的最重要变量,并计算出估计响应面的轮廓。混凝土的水灰比和空气含量是影响冻结和解冻载荷引起的内部和表面损伤的最主要变量。在非盐环境中,水固化可改善测试的表面结垢部分中已开发的劣化模型的R2值。在内部损伤测试中,固化措施并未改善估计响应表面的统计相关性。在盐水冻融试验中,研究了高强度混凝土。当水粘合剂比率低于0.42时,内部劣化是主要的冻融破坏机理,与表面结垢相比,其需要更多的空气含量。

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