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用于检测混凝土试件受压时应变和损伤的碳纳米纤维水泥传感器

Carbon Nanofiber Cement Sensors to Detect Strain and Damage of Concrete Specimens Under Compression.

作者信息

Galao Oscar, Baeza F Javier, Zornoza Emilio, Garcés Pedro

机构信息

Department of Civil Engineering, University of Alicante, 03690 San Vicente del Raspeig, Spain

出版信息

Nanomaterials (Basel). 2017 Nov 24;7(12):413. doi: 10.3390/nano7120413.

Abstract

Cement composites with nano-additions have been vastly studied for their functional applications, such as strain and damage sensing. The capacity of a carbon nanofiber (CNF) cement paste has already been tested. However, this study is focused on the use of CNF cement composites as sensors in regular concrete samples. Different measuring techniques and humidity conditions of CNF samples were tested to optimize the strain and damage sensing of this material. In the strain sensing tests (for compressive stresses up to 10 MPa), the response depends on the maximum stress applied. The material was more sensitive at higher loads. Furthermore, the actual load time history did not influence the electrical response, and similar curves were obtained for different test configurations. On the other hand, damage sensing tests proved the capability of CNF cement composites to measure the strain level of concrete samples, even for loads close to the material's strength. Some problems were detected in the strain transmission between sensor and concrete specimens, which will require specific calibration of each sensor one attached to the structure.

摘要

含有纳米添加剂的水泥基复合材料因其功能应用,如应变和损伤传感,已得到广泛研究。碳纳米纤维(CNF)水泥浆体的性能已经过测试。然而,本研究聚焦于将CNF水泥基复合材料用作普通混凝土样品中的传感器。对CNF样品的不同测量技术和湿度条件进行了测试,以优化该材料的应变和损伤传感性能。在应变传感测试(压缩应力高达10MPa)中,响应取决于所施加的最大应力。该材料在较高载荷下更敏感。此外,实际载荷时间历程不影响电响应,不同测试配置得到了相似的曲线。另一方面,损伤传感测试证明了CNF水泥基复合材料能够测量混凝土样品的应变水平,即使对于接近材料强度的载荷也是如此。在传感器与混凝土试件之间的应变传递中发现了一些问题,这将需要对附着在结构上的每个传感器进行特定校准。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/386b/5746903/9624bcc5cbc5/nanomaterials-07-00413-g001.jpg

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