3D打印地聚合物层间黏结强度及力学各向异性研究

Mechanical anisotropy and interlayer bonding strength of 3D printing geopolymer

  • 摘要: 3D打印地聚合物是一种兼具资源化利用及智能建造的新型建筑材料,其试件各方向上的力学性能和层间的黏结强度是影响建筑可建造性和耐久性的重要因素。以粉煤灰、石英砂为主要原材料,无水硅酸钠为碱激发剂,矿粉为辅助性胶凝材料,硅酸镁铝为专用外加剂,制备了3D打印粉煤灰基地聚合物砂浆;在最适宜掺量和配比下,3D打印出粉煤灰基地聚合物3D打印试件,研究了其层间黏结强度与抗拉强度,并且通过力学性能及超声波速表征其力学各向异性性能。

     

    Abstract: 3D printing geopolymer is a new type of building way and material with both of resource utilization and intelligent building. The mechanical properties in all directions and the bonding strength between layers of components are important factors affecting the constructability and durability of buildings.3D printing geopolymer mortar was prepared with fly ash and quartz sand as main raw materials, anhydrous sodium silicate as alkali activator, slag powder as auxiliary cementitious material, magnesium aluminum silicate as special additive. The 3D printing component of fly ash-based geopolymer was prepared under the condition of the optimum dosage and proportion. The interlayer bonding strength and tensile strength were studied, and the mechanical anisotropy properties were characterized by mechanical properties and ultrasonic pulse velocity.

     

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