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Statistical Analysis of Concrete Compressive Strengths for California Highway Bridges

机译:加州公路桥梁混凝土抗压强度的统计分析

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This investigation presents results of the statistical and probabilistic analyses of 3,269 normal weight concrete cylinder compression tests used for recently constructed highway bridges in California. A new model for in-place strength of concrete structures is proposed as a function of the specified compressive strength, the normalized 28-day cylinder strength, and age of the structure based on a realistic strength-age relation for hardened concrete. The model prediction indicates that concretes in cast-in-place bridge structures designed with specified compressive strengths of 25 MPa (3.6 ksi), 28 MPa (4.0 ksi), and 35 MPa (5.0 ksi) reach their maximum strengths at about 40 years, with approximately 98% of the maximum strength occurring during the first 10 years. Also, through significance testing on the 28-day cylinder strengths, it was established that the California Department of Transportation practice of using an expected concrete strength instead of the specified strength for seismic design of bridge components is justified. An expression for predicting the 28-day strength of concrete cylinders as a function of the strength of companion cylinders, also proposed herein, could prove a useful tool for quality control of concrete during construction.
机译:这项调查提供了3269个正常重量的混凝土圆柱体压缩测试的统计和概率分析结果,这些测试用于加利福尼亚州最近修建的公路桥梁。根据硬化混凝土的实际强度-年龄关系,根据指定的抗压强度,标准化的28天圆柱强度和结构的年龄,提出了一种新的混凝土结构现场强度模型。模型预测表明,按指定抗压强度分别为25 MPa(3.6 ksi),28 MPa(4.0 ksi)和35 MPa(5.0 ksi)设计的现浇桥梁结构中的混凝土在大约40年时达到其最大强度,最大强度的约98%发生在前10年。此外,通过对28天圆柱强度的显着性测试,可以确定加利福尼亚交通运输部门采用预期的混凝土强度代替指定强度进行桥梁构件抗震设计的做法是合理的。本文中还提出了一种用于预测混凝土圆柱体的28天强度作为配套圆柱体强度的函数的表达式,可以证明是在施工过程中对混凝土进行质量控制的有用工具。

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