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Mechanical Properties and Shrinkage of Ultrahigh-Performance Concrete Containing Lithium Carbonate and Nano-Calcium Carbonate

机译:含碳酸锂和纳米碳酸钙的超高性能混凝土机械性能和收缩

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Early strength generation is essential for the successful application and usage of Ultrahigh-Performance Concrete (UHPC) in reinforcing concrete structures. The work contained in this paper focused on evaluating the effects of lithium carbonate (Li 2 CO 3 , denoted as LC) and nano-calcium carbonate (NC) on the early mechanical properties and autogenous shrinkage of UHPC under normal temperature curing conditions. In the study, scanning electron microscope (SEM) was utilized to investigate and quantify the morphology of the early hydration products. The corresponding results indicated that the 1-day comprehensive strength of the UHPC increased significantly with the addition of Li2CO3 and NC. Likewise, the addition of NC mitigated the loss of the 28-day compressive strength. For the materials evaluated, the 1-day compressive and flexural strengths reached peak values of 72.1 and 13.9?MPa, respectively, for optimum dosages of 0.075%~0.1% Li 2 CO 3 and 3%~4% NC, respectively. The results also indicated that the combined LC-NC dosage had profound effects on the early autogenous shrinkage of UHPC, which could, however, be minimized by adjusting the Li 2 CO 3 and NC dosages. That is, the combined dosage of the two early strength enhancers shortens the hydration induction period of cement whilst concurrently accelerating the hydration rate of the cement. The early strength agent increases the number of crystals in the hydration product and the crystal grain size becomes larger. These make the microstructure of the slurry more compact after hardening and therefore improve the overall performance of UHPC.
机译:早期强度一代对于钢筋混凝土结构中的超高性能混凝土(UHPC)的成功应用和使用是必不可少的。本文中所含的作品,重点是评估碳酸锂(Li 2 CO 3,表示为LC)和纳米碳酸钙(NC)对常温固化条件下uHPC的早期机械性能和自生收缩的影响。在该研究中,利用扫描电子显微镜(SEM)来研究和量化早期水合产物的形态。相应的结果表明,通过添加Li2CO3和NC,UHPC的1天综合强度显着增加。同样地,增加了NC减少了28天抗压强度的损失。对于评价的材料,分别为0.075%〜0.1%Li 2 CO 3和3%〜4%NC的最佳剂量分别达到72.1和13.9℃的峰值的峰值。结果还表明,组合的LC-NC剂量对UHPC的早期自生物收缩产生了深远的影响,但是通过调节Li 2 CO 3和NC剂量可以最小化。也就是说,两种早期强度增强剂的组合剂量缩短了水泥的水合诱导期,同时加速水泥的水合速率。早期强度剂增加了水合产物中的晶体的数量,晶粒尺寸变大。这些使得硬化后更紧凑的浆料的微观结构,从而提高UHPC的整体性能。

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