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A study on the mechanical and electricity properties of cement mortar added with GGBFS and piezoelectric powder

机译:掺GGBFS和压电粉的水泥砂浆的力学和电学性能研究。

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摘要

Environmental concerns regarding energy savings and carbon reduction have been promoted worldwide to mitigate the greenhouse effect. Taiwan, which is located in the plate junction, experiences frequent earthquakes, abundant rainfall during the typhoon season, and frequent natural disasters. Improvements in the intelligent disaster prevention functions of buildings are imperative. This study employs the volumetric method. In the control group, cement was replaced by ground granulated blast furnace slag (GGBFS); in the PZT group, 5% of the fine aggregate was replaced with piezoelectric powder to create cement mortar. The mechanical and electricity properties were tested to assess the correlations among flow, compressive strength, water absorption, and electricity at 50 V and 100 V. At the curing age of 28 days, the compressive strength of the control group was in the range of 29.1-1.7 MPa, whereas the compressive strength of PZT was in the range of 26.8-30.0 MPa. The control group exhibited higher results (1786-2075 Ω) in the electricity property test under 50 V, whereas PZT exhibited lower results (1368-1562 Ω). The compressive strength and results of the electricity property tests demonstrated that the compressive strength and electrical resistance decreased as the replacement of GGBFS increased. The strength of the control group was higher than the strength of PZT because 5% of the fine aggregate was replaced by the piezoelectric material and the piezoelectric material was water-resistant. Thus, the piezoelectric material could not be effectively combined with fine aggregate and cement.
机译:关于节能和减碳的环境问题已在全球范围内得到推广,以减轻温室效应。台湾位于板块交界处,地震频发,台风季节降雨充沛,自然灾害频发。必须改善建筑物的智能防灾功能。本研究采用体积法。在对照组中,水泥被高炉矿渣(GGBFS)代替;在PZT组中,将5%的细骨料用压电粉末代替,制成水泥砂浆。测试了机械和电性能,以评估流量在50 V和100 V时的流动性,抗压强度,吸水率和电之间的相关性。在固化28天时,对照组的抗压强度在29.1的范围内-1.7 MPa,而PZT的抗压强度在26.8-30.0 MPa的范围内。对照组在50 V下的电性能测试中显示较高的结果(1786-2075Ω),而PZT显示较低的结果(1368-1562Ω)。抗压强度和电性能测试结果表明,随着GGBFS的增加,抗压强度和电阻降低。对照组的强度高于PZT的强度,因为5%的细集料被压电材料代替,并且压电材料是耐水的。因此,压电材料不能有效地与细骨料和水泥结合。

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