The effects of blending different dosages of amorphous alloy fiber on the fluidity, compressive and flexural strengths of cement mortar were researched through a comparative study of steel fiber. An empirical formula for predicting the flexural strength of cement reinforced by amorphous alloy fiber(AAF) was proposed and the state of bonding between fiber and base material was observed by using scanning electron microscope(SEM). Results indicate that AAF better improves the mechanical properties of cement mortar than steel fiber does. In comparison with specimens without fiber at curing age of 28 d, the compressive and flexural strengths of mortar reinforced by AAF with blending ratio of 1.0% increase by 28.6% and 51.9%, respectively. In comparison with mortar reinforced by steel fiber with equal blending ratio, the two numbers are 9.9% and 14.5%, AAF has advantages such as high tensile strength, strong corrosion resistance and good bonding properties with mortar. It disperses evenly in the mortar, and even at low blending ratio, it could obviously improve the compressive and flexural strengths and toughness of mortar.
Key words
amorphous alloy fiber /
steel fiber /
mechanical property /
cement mortar /
ratio of compressive strength to flexural strength /
strength prediction
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References
[1] 张亚坤, 侯黎黎. 纤维混凝土在水利工程中的应用[J]. raybet体育在线
院报, 2012, 29(10): 114-117.
[2] 张 缜.塑钢纤维与钢纤维增强轻骨料混凝土力学性能的试验研究[D].内蒙古包头:内蒙古科技大学,2012.
[3] 宋 晖, 朱正吼. FeSiB非晶带材的制备及其力学性能[J]. 新技术新工艺, 2005, (2): 47-48.
[4] 余 鹏, 孙保安, 白海洋, 等. 探索塑性金属玻璃[J]. 物理, 2008, 37(6): 421-425.
[5] BANTHIA N, TROTTIER J F, PIGEON M. Fiber Pullout Mechanisms[C]∥Proceedings of the International Conference on Recent Developments in Fibre Reinforced Cements and Concretes. Cardiff, UK, September 18-20,1989: 136-145.
[6] 程庆国, 高路彬, 徐蕴贤, 等. 钢纤维混凝土理论及应用[M]. 北京: 中国铁道出版社, 1999.
[7] 彭书成, 陈美兰, 侯正昌. 改性金属玻璃带材料混凝土复合材料的制备方法: 中国, 200710052162.X[P]. 2007-10-10.
[8] WON J P, HONG B T, CHOI T J, et al . Flexural Behaviour of Amorphous Micro-steel Fibre-reinforced Cement composites[J]. Composite Structures, 2012, 94(4): 1443-449.
[9] WON J P, HONG B T, LEE S J, et al . Bonding Properties of Amorphous Micro-steel Fibre-reinforced Cementitious Composites[J]. Composite Structures, 2013, 102(4): 101-109.
[10] WU Z W, LU Z C, NI X J, et al . Effect of Heat Treatment on Corrosion Behaviour of Amorphous Metal Fibers[J]. Journal of Iron and Steel Research, 2014, 21(11): 1030-1034.
[11] CHEN B, LIU J. Contribution of Hybrid Fibres on the Properties of the Highstrength Lightweight Concrete Having Good Workability[J]. Cement & Concrete Research, 2005, 35(5): 913-917.
[12] 许清风, 傅传国, 蒋永生. 钢纤维砂浆强度的试验研究[J]. 东南大学学报, 1999, 29(4): 113-116.
[13] THOMAS J, RAMASWAMY A. Mechanical Properties of Steel Fiber-reinforced Concrete[J]. Journal of Materials in Civil Engineering, 2007, 19(5): 385-392.
[14] WON J P, HONG B T, CHOI T J, et al . Flexural Behaviour of Amorphous Micro-steel Fibre-reinforced Cement Composites[J]. Composite Structures, 2012, 94(4): 1443-1449.