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Synergistic effect of glass fibre and Al powder on the mechanical properties of glass-ceramics

机译:玻璃纤维和铝粉对玻璃陶瓷力学性能的协同作用

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To explore the synergistic effect of glass fibre and Al powder on the mechanical properties of glass-ceramics, blast furnace slag was chosen as the main material, and glass fibre and Al powder as reinforcement materials. The phase compositions, microstructures, compressive properties, and apparent density of the glass-ceramics with varying quantities of glass fibre and Al powder were investigated. The experimental results indicated that Al powder could exist as a simple substance in glass-ceramics and form a dense net coating on the surface of blast furnace slag to improve the plasticity of the glass-ceramic. The glass fibre had better reinforcement effect than Al powder because of its extremely high mechanical strength. The plasticity of glass-ceramics, however, severely decreased; the glass-ceramics exhibited brittle failure during compression. A slight increase in the content of CaSi2 and SiO2 in the glass-ceramics was closely related to the addition of glass fibre. Considering safety and economy, glass-ceramics with 6% Al and 14% glass fibre (S4) have the best mechanical properties. The compressive strength, strain at maximum force, and apparent density were 40 MPa, 19% and 1.974 g/cm(3), respectively.
机译:为了探讨玻璃纤维和Al粉末对玻璃陶瓷力学性能的协同作用,选择高炉渣作为主要材料,以及玻璃纤维和铝粉作为加固材料。研究了具有不同数量的玻璃纤维和Al粉末的玻璃陶瓷的相组合物,微观结构,压缩性能和表观密度。实验结果表明,Al粉末可以作为玻璃陶瓷中的简单物质存在,并在高炉炉渣表面上形成密集的净涂层,以提高玻璃陶瓷的可塑性。由于其极高的机械强度,玻璃纤维具有比Al粉末更好的增强效果。然而,玻璃陶瓷的可塑性严重降低;玻璃陶瓷在压缩过程中表现出脆性失效。玻璃陶瓷中CasI2和SiO 2的含量轻微增加与添加玻璃纤维密切相关。考虑到安全性和经济,具有6%Al和14%玻璃纤维的玻璃陶瓷(S4)具有最佳的机械性能。压缩强度,最大力的应变,表观密度分别为40MPa,19%和1.974g / cm(3)。

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