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The study of ultrasonic pulse velocity on plain and reinforced damaged concrete

机译:普通钢筋混凝土破损混凝土的超声脉冲速度研究。

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An ultrasonic pulse velocity (UPV) test is often applied to determine the quality of concrete structures. It is well known that there are several factors which can influence the reading of ultrasonic velocity in concrete. One of the factors is the presence of steel reinforcement. Therefore, this paper is intended to evaluate the ultrasonic pulse velocity propagation either in plain or reinforced damaged concrete. A study on sound concrete is also provided as a comparison. Three mixes of concrete were provided, with 25 MPa, 35 MPa, and 45 MPa target compressive strengths. The specimens were 200x200x200 mm cube concrete specimens and 100x150x1100 mm reinforced concrete beam specimens. Each specimen was examined for velocity readings in sound and damaged concrete (25% and 50% of maximum load). In all concrete grades of both plain and reinforced concrete, the ultrasonic velocity decreases as the damage level increases. During intact conditions, the velocity of reinforced concrete is around 4.5% higher than that of plain concrete. However, damaged reinforced concrete has a lower velocity than plain damaged concrete. Furthermore, a new equation for predicting ultrasonic pulse velocity in reinforced concrete is proposed.
机译:通常使用超声波脉冲速度(UPV)测试来确定混凝土结构的质量。众所周知,有几个因素会影响混凝土中超声波速度的读数。因素之一是钢筋的存在。因此,本文旨在评估超声脉冲速度在普通或钢筋混凝土中的传播。作为比较,还提供了对混凝土的研究。提供了三种混凝土混合物,目标抗压强度分别为25 MPa,35 MPa和45 MPa。标本是200x200x200 mm的立方体混凝土标本和100x150x1100 mm的钢筋混凝土梁标本。检查每个样本在健全和受损混凝土中的速度读数(最大载荷的25%和50%)。在普通混凝土和钢筋混凝土的所有级别的混凝土中,超声波速度都随着损伤程度的增加而降低。在完好无损的情况下,钢筋混凝土的速度比普通混凝土的速度高约4.5%。但是,受损的钢筋混凝土的速度低于普通受损混凝土的速度。此外,提出了预测钢筋混凝土中超声脉冲速度的新公式。

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