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Macro-Scale Strength and Microstructure of ZrW2O8 Cementitious Composites with Tunable Low Thermal Expansion

机译:可调谐低热膨胀ZrW2O8水泥复合材料的宏观规模强度和微观结构

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摘要

Concretes with engineered thermal expansion coefficients, capable of avoiding failure or irreversible destruction of structures or devices, are important for civil engineering applications, such as dams, bridges, and buildings. In natural materials, thermal expansion usually cannot be easily regulated and an extremely low thermal expansion coefficient (TEC) is still uncommon. Here we propose a novel cementitious composite, doped with ZrW2O8, showing a wide range of tunable thermal expansion coefficients, from 8.65 × 10−6 °C−1 to 2.48 × 10−6 °C−1. Macro-scale experiments are implemented to quantify the evolution of the thermal expansion coefficients, compressive and flexural strength over a wide range of temperature. Scanning Electron Microscope (SEM) imaging was conducted to quantify the specimens’ microstructural characteristics including pores ratio and size. It is shown that the TEC of the proposed composites depends on the proportion of ZrW2O8 and the ambient curing temperature. Macro-scale experimental results and microstructures have a good agreement. The TEC and strength gradually decrease as ZrW2O8 increases from 0% to 20%, subsequently fluctuates until 60%. The findings reported here provide a new routine to design cementitious composites with tunable thermal expansion for a wide range of engineering applications.
机译:具有工程化热膨胀系数的混凝土,能够避免故障或不可逆转的结构或设备破坏,对于土木工程应用,例如水坝,桥梁和建筑物很重要。在天然材料中,通常不能容易地调节热膨胀,并且极低的热膨胀系数(TEC)仍然罕见。在这里,我们提出了一种新型水泥复合材料,掺杂有ZrW2O8,显示出各种可调热膨胀系数,从8.65×10-6°C-1到2.48×10-6°C-1。实施宏观规模实验以在广泛的温度范围内量化热膨胀系数,压缩和弯曲强度的演变。进行扫描电子显微镜(SEM)成像以量化包括孔径和尺寸的样品的微观结构特性。结果表明,所提出的复合材料的TEC取决于ZrW2O8和环境固化温度的比例。宏观规模的实验结果和微观结构具有良好的一致性。随着ZrW2O8从0%增加到20%的增加,TEC和强度逐渐降低,随后波动至60%。此处报告的调查结果提供了一种新的常规,用于设计具有可调热膨胀的水泥复合材料,可用于各种工程应用。

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