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A solitary wave-based sensor to monitor the setting of fresh concrete

机译:基于孤立波的传感器,可监控新拌混凝土的凝结

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摘要

We present a proof-of-principle study about the use of a sensor for the nondestructive monitoring of strength development in hydrating concrete. The nondestructive evaluation technique is based on the propagation of highly nonlinear solitary waves (HNSWs), which are non-dispersive mechanical waves that can form and travel in highly nonlinear systems, such as one-dimensional particle chains. A built-in transducer is adopted to excite and detect the HNSWs. The waves are partially reflected at the transducer/concrete interface and partially transmitted into the concrete. The time-of-flight and the amplitude of the waves reflected at the interface are measured and analyzed with respect to the hydration time, and correlated to the initial and final set times established by the penetration test (ASTM C 403). The results show that certain features of the HNSWs change as the concrete curing progresses indicating that it has the potential of being an efficient, cost-effective tool for monitoring strengths/stiffness development. © 2014 by the authors; licensee MDPI, Basel, Switzerland.
机译:我们提出了关于使用传感器对水合混凝土强度发展进行无损监测的原理研究。无损评估技术基于高度非线性的孤波(HNSW)的传播,该波是可以在高度非线性系统(例如一维粒子链)中形成并传播的非分散机械波。采用内置传感器来激发和检测HNSW。波在换能器/混凝土界面处部分反射,并部分传输到混凝土中。相对于水合时间测量和分析界面处反射的波的飞行时间和幅度,并将其与通过渗透测试(ASTM C 403)确定的初始和最终凝固时间相关。结果表明,随着混凝土养护的进行,HNSWs的某些特征会发生变化,这表明它有可能成为监测强度/刚度发展的有效,具有成本效益的工具。 ©2014作者瑞士巴塞尔的MDPI许可证持有者。

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