估算脱模前混凝土早龄抗压强度的新方法

Bayarjavkhlan Narantogtokh, Tomoya Nishiwaki, Fumiya Takasugi, Ken Koyama, Timo Lehmann, Anna Jagiello, Félix Droin, Yao Ding
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引用次数: 0

摘要

非破坏性测试有许多优点,例如能够在不破坏现有结构的情况下获取大量数据。然而,估算精度的可靠性和适用目标的有限范围仍然是一个问题。本研究提出了一种新颖的针入度测试方法,用于测定脱模前混凝土的龄期抗压强度。脱模和初期养护的时间是根据混凝土的强度发展来确定的。因此,在实际施工现场确定脱模前早期龄期抗压强度非常重要。我们对这种强度估算方法在实际施工中的适用性进行了研究。在实际施工现场的模具表面和模拟试样上预先准备了小测试孔(直径为 12 毫米)。将销钉插入这些测试孔中,以获得抗压强度与插入深度之间的关系。结果证实,针入试验法适合在实际施工现场测量早期抗压强度。这使得避免早期冻害所需的抗压强度基准值可以在施工现场的混凝土结构构件上直接验证。例如,抗压强度大于 5 兆帕和 10 兆帕可分别通过 8.0 毫米和 6.7 毫米或更小的渗透深度基准值来确认。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Methodology to Estimate the Early-Age Compressive Strength of Concrete before Demolding
Non-destructive testing has many advantages, such as the ability to obtain a large number of data without destroying existing structures. However, the reliability of the estimation accuracy and the limited range of applicable targets remain an issue. This study proposes a novel pin penetration test method to determine the early-age compressive strength of concrete before demolding. The timing of demolding and initial curing is determined according to the strength development of concrete. Therefore, it is important to determine the compressive strength at an early age before demolding at the actual construction site. The applicability of this strength estimation methodology at actual construction is investigated. Small test holes (12 mm in diameter) are prepared on the mold surface in real construction sites and mock-up specimens in advance. The pin is penetrated into these test holes to obtain the relationship between the compressive strength and the penetration depth. As a result, it is confirmed that the pin penetration test method is suitable for measuring the early-age compressive strength at the actual construction site. This allows the benchmark values for compressive strength, necessary to avoid early frost damage, to be directly verified on the concrete structural members at the construction site. For instance, the compressive strengths of greater than 5 MPa and 10 MPa can be confirmed by the penetration depths benchmark values of 8.0 mm and 6.7 mm or less, respectively.
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