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Mechanical properties of vertical vibration compacted lime-fly ash-stabilized macadam material

机译:垂直振动压实石灰粉煤灰稳定型丙代材料的力学性能

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This paper studies the mechanical properties of the lime-fly ash-stabilized macadam (LFASM) fabricated via the vertical vibration compaction method (VVCM). First, the reliability of VVCM with respect to the production of LFASMs was evaluated, and their mechanical properties, including unconfined compressive strengths, splitting strengths, and resilient moduli, were studied. Then, the influences of the lime-fly ash (LFA) content, curing time, and gradation type on the mechanical properties of the LFASMs fabricated via the VVCM were discussed. Furthermore, mechanical strength growth equations and relation models were established among the mechanical indexes of the VVCM-fabricated LFASMs. Results reveal that the ratios of the mechanical strength between the laboratory-VVCM-fabricated LFASMs and on-site cores were above 90%. With an increase in LFA contents, the unconfined compressive strength and resilient modulus of the LFASMs increased at first and then gradually decreased, while the splitting strength increased drastically at first and then gently. The aforementioned mechanical properties of the LFASMs increased non-linearly with an increase in the curing times, with potential for improvement via skeleton-dense gradation. The mechanical strength growth properties of the LFASMs can be accurately predicted via the established strength growth equations. Furthermore, the relation models established between the aforementioned mechanical parameters are useful for evaluating the remaining mechanical parameters under the limited test conditions. This study provides a novel alternative for designing and constructing the LFASM base. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文研究了通过垂直振动压实法(VVCM)制造的石灰粉煤灰稳定的型麦唑(LFASM)的机械性能。首先,评估了VVCM对LFASMS产生的可靠性,并研究了它们的机械性能,包括非整合的抗压强度,分裂强度和弹性模态。然后,讨论了石灰粉煤灰(LFA)含量,固化时间和灰度型对通过VVCM制造的LFASMS的力学性能的影响。此外,在VVCM制造的LFASMS的机械指标之间建立了机械强度生长方程和关系模型。结果表明,实验室 - VVCM制造的LFASMS和现场核心的机械强度比率高于90%。随着LFA含量的增加,LFASMS的无束缚的抗压强度和弹性模量首先增加,然后逐渐降低,而分裂强度首先急剧增加,然后轻轻地增加。 LFASMS的上述机械性能随着固化时间的增加而增加,具有通过骨架密集灰度的改善潜力。通过建立的强度的生长方程可以精确地预测LFASMS的机械强度生长性能。此外,在上述机械参数之间建立的关系模型可用于评估在有限的测试条件下的剩余机械参数。本研究提供了一种设计和构建LFASM基础的新型替代品。 (c)2020 elestvier有限公司保留所有权利。

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