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Vacuum mixing technology to improve the mechanical properties of ultra-high performance concrete

机译:真空混合技术改善了超高性能混凝土的力学性能

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摘要

Ultra-high performance concrete is an important evolution in concrete technology, enabled by the combination of a good particle packing density, a suitable mixing procedure and compatible binders and admixtures. In the last decades a lot of research has been performed to explore the boundaries of this new type of concrete. Mixers equipped with a vacuum pump able to lower the mixing pressure from 1,013 to 50 mbar are an interesting way to improve the performance by lowering the air content. Profound research is necessary, because little is known about this technique of air content reduction. The influence of a reduced air content on the mechanical properties of ultra-high performance concrete is tested at The Magnel Laboratory for Concrete Research. This paper reports the results of the compressive strength, the splitting and bending tensile strength and the modulus of elasticity. All the mechanical properties after 28 days curing are improved by reducing the air content in the ultra-high performance concrete. An increase in compressive strength between 7 and 22 % is measured. The bending tensile strength increases maximum with 17 % and the splitting tensile strength gains 3-22 % in performance. Furthermore, the modulus of elasticity improves with 3-8 %. In conclusion, the air content can be controlled and a higher performance can be achieved by vacuum mixing technology. Finally, it is shown that the vacuum technology is not as effective in a 75 l capacity vacuum mixer as it is for a smaller vacuum mixer with a capacity of 5 l.
机译:超高性能混凝土是混凝土技术的一个重要发展,这要归功于良好的颗粒堆积密度,合适的混合程序以及相容的粘结剂和掺合料。在过去的几十年中,进行了大量研究以探索这种新型混凝土的边界。配备有能够将混合压力从1,013降低到50 mbar的真空泵的混合器,是通过降低空气含量来提高性能的有趣方式。有必要进行深入的研究,因为对这种减少空气含量的技术知之甚少。减少的空气含量对超高性能混凝土力学性能的影响已在Magnel混凝土研究实验室进行了测试。本文报道了抗压强度,劈裂和弯曲抗张强度以及弹性模量的结果。通过减少超高性能混凝土中的空气含量,可以改善养护28天后的所有机械性能。测得的抗压强度增加了7%至22%。弯曲抗拉强度最大提高了17%,劈裂抗拉强度提高了3-22%。此外,弹性模量提高了3-8%。总之,通过真空混合技术可以控制空气含量并获得更高的性能。最后,结果表明,在75升容量的真空混合器中,真空技术不如在5升容量的较小的真空混合器中有效。

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