首页> 外文会议>Conference on Early Age Cracking in Cementitious Systems - EAC'01, Mar 12-14, 2001, Haifa, Israel >DETERMINATION OF INITIAL DEGREE OF HYDRATION BY ULTRA-SONIC PULSE TECHNIQUE
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DETERMINATION OF INITIAL DEGREE OF HYDRATION BY ULTRA-SONIC PULSE TECHNIQUE

机译:超声脉冲技术测定水合初始度

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During the first hours after mixing, the properties of concrete vary and change within a wide range of behaviour. Fresh concrete is more or less a Newtonian fluid which gradually changes into a Bingham type of material, finally attaining solid body properties with considerable compressive strength and stiffness. The development of mechanical properties can be described by the degree of hydration. For the prediction of mechanical properties of early age concrete as well as for the prediction of stresses caused by differences of temperature and autogenous shrinkage, it is essential to know the initial degree of hydration, from which on the development of strength and stiffness begins. This paper deals with the determination of the end of the dormant phase by using ultrasonic pulse velocity techniques. Using compression wave and shear wave transducers the hardening of concrete is observed under adiabatic curing conditions. From the development of the dynamic Young's modulus and Poisson's ratio, a model of the initial degree of hydration is derived to improve existing models of the development of tensile strength and modulus of elasticity for very early age concrete. A procedure to determine an upper and lower bound for the end of setting time is presented. Typical results are presented for different concrete compositions, especially for high strength concrete.
机译:在混合后的最初几个小时内,混凝土的性能会在很大范围内变化和变化。新鲜混凝土或多或少是牛顿流体,逐渐变成宾汉姆类型的材料,最终获得具有相当大的抗压强度和刚度的固体特性。机械性能的发展可以用水合度来描述。对于预测早期混凝土的机械性能以及预测由温度和自发收缩差异引起的应力,必须了解初始水合度,从此开始水化强度和刚度的发展。本文利用超声脉冲速度技术来确定休眠阶段的终点。使用压缩波和剪切波换能器,可在绝热固化条件下观察到混凝土的硬化。从动态杨氏模量和泊松比的发展中,得出了初始水合度的模型,以改进现有的发展非常早期混凝土的拉伸强度和弹性模量的模型。介绍了确定设置时间结束时的上限和下限的过程。给出了针对不同混凝土组成的典型结果,尤其是针对高强度混凝土。

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