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Impact of unrestrained Delayed Ettringite Formation-induced expansion on concrete mechanical properties

机译:无约束的延缓钙矾石地层诱导膨胀对混凝土力学性能的影响

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摘要

The consequences of Delayed Ettringite Formation (DEF) on the mechanical properties of concrete still remain imperfectly known. It is generally recognised that this pathology can decrease the strength of the material and its Young modulus. The comparative study between the expansion of concrete and the evolution of its dynamic modulus carried out in this study on a great number of samples, demonstrates that two types of swelling behaviours can be observed: a linear and a sigmoidal. A relationship between modulus and expansion rate is highlighted but it only remains in the case of linear swelling, which does not generate any significant damage. In the case of sigmoidal swelling, the damage process starts for expansions greater than 0.1 percent that can consequently reduce by 60 percent the dynamic modulus and by 65 percent the compressive strength. The relationship between modulus and expansion rate established for linear swelling cases is temporary verified for sigmoid swelling ones at the inflection point At this point, the supersaturation is assumed to be mostly consumed and cannot further damage the matrix. Thereafter, the phase of stabilization of the expansion begins, and can be concomitant with a rehealing of the matrix induced by the continuation of cement hydration.
机译:延迟钙矾石形成(DEF)对混凝土力学性能的影响仍然不完全清楚。一般认为,这种病理会降低材料的强度及其杨氏模量。在这项研究中,对大量样品进行的混凝土膨胀与动态模量演变之间的比较研究表明,可以观察到两种类型的膨胀行为:线性和S型。突出显示了模量和膨胀率之间的关系,但仅在线性膨胀的情况下才保留,不会产生任何重大损坏。如果发生S型膨胀,则破坏过程开始于大于0.1%的膨胀,从而使动态模量降低60%,抗压强度降低65%。线性膨胀情况下建立的模量与膨胀率之间的关系已在拐点处暂时被乙状结肠膨胀验证了。在这一点上,过饱和被假定为主要消耗且不能进一步破坏基质。此后,膨胀的稳定阶段开始,并且可以伴随由水泥水化的持续而引起的基质的修复。

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