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Mechanical Properties of Steel Fiber-Reinforced Magnesium Phosphate Cement Mortar

机译:钢纤维增强镁磷酸盐水泥砂浆机械性能

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摘要

A new cement-based mortar with high early strength and toughness was developed by adding micro steel fibers (MSF) in magnesium phosphate cement (MPC) mortar. The compressive and flexural tests were carried out to investigate the effect of curing time, MSF volume fraction, sand-cement mass ratio, and water-cement mass ratio on the strength and flexural toughness of MSF-reinforced MPC mortar (MSFRMM). Also, the flexural toughness and ductility of MSFRMM were evaluated according to ASTM C1609. The results of this study showed that the addition of MSF from 0% to 1.6% by volume significantly improved the compressive strength of MSFRMM. The MSFRMM showed high early strength, especially during the first 3 days. The addition of MSFs changed the flexural failure mode of MPC-based mortar from brittleness to ductility, and the flexural toughness of MSFRMM remarkably increased with the increase of MSF volume fraction from 0% to 1.6%. The toughness and ductility of MSFRMM slightly increased with the increase of the dosage of cement. The toughness and ductility of MSFRMM increased with the decrease of the water-cement mass ratio due to the improved density of the mortar caused by the reduction of water.
机译:通过在磷酸镁水泥(MPC)砂浆中添加微钢纤维(MSF),开发了一种具有高早期强度和韧性的新的水泥基砂浆。进行压缩和弯曲试验以研究固化时间,MSF体积分数,砂水泥质量比和水水泥质量比对MSF增强MPC砂浆(MSFRMM)的强度和抗弯曲件的影响。而且,根据ASTM C1609评价MSFRMM的抗韧性和延展性。该研究的结果表明,从0%到1.6%的MSF的添加显着提高了MSFRMM的抗压强度。 MSFRMM显示出高早期强度,特别是在前3天内。添加MSFS将基于MPC的砂浆的弯曲失效模式从延续到延展性改变,并且MSFRMM的抗弯韧性随着MSF体积分数的增加而显着增加,从0%达到1.6%。随着水泥剂量的增加,MSFRMM的韧性和延展性略有增加。由于通过减少水引起的砂浆的密度提高,MSFRMM的韧性和延展性随着水水泥质量比的降低而增加。

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