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E-Modulus and Creep Coefficient of Self-Compacting Concretes and Concretes with some Mineral Additives

机译:具有一些矿物添加剂的自压制混凝土和混凝土的E模量和蠕变系数

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The applicability of a proposed model similar to a well-known Hirsch's model for predicting the E-modulus of concrete and the creep coefficient of concrete depending on the composition of the concrete, the properties of the components of concrete mix and the possible effect of the superplasticizer on the deformation properties of cement stone both under short-term and long-term loading is proved. Value of the E-modulus of self-compacting concrete can be reduced to 20% with respect to the ordinary concrete of equal compressive strength, which is confirmed by the model calculation data and some experimental data. For concretes with mineral additives, the influence of mineral additives on the E-modulus was not established. Both an increase and decrease in the E-modulus is possible. The effect depends on the type of additive. The creep coefficient of self-compacting concrete, obtained by calculation according to the model, due to the increased content of cement stone and the possible influence of superplasticizer on the creep of cement stone, can be from 1.3 to 1.8 of the coefficient of creep of ordinary concrete. This result agrees well with some experimental data. The creep coefficient of concrete with mineral additives (silica fume, white ash and metakaolin), obtained by calculation according to the model, can be from 0.5 to 0.6 of the coefficient of creep of ordinary concrete. This result agrees well with some experimental data.
机译:提出模型的适用性类似于众所周知的HIRSCH模型,用于预测混凝土的混凝土E模量和混凝土的蠕变系数,这取决于混凝土的组成,混凝土组件的性能及可能的效果证明了在短期和长期载荷下水泥石石变形性能的超塑化剂。相对于相等压缩强度的普通混凝土,自压力混凝土的E模量的值可以通过模型计算数据和一些实验数据来证实,可以减少到20%。对于具有矿物添加剂的混凝土,未建立矿物添加剂对E模量的影响。 E模量的增加和降低都是可能的。效果取决于添加剂的类型。自压制混凝土的蠕变系数,根据该模型的计算获得,由于水泥石石的含量增加以及超级塑化剂在水泥石蠕变上的可能影响,可以从1.3到1.8的蠕变系数的蠕变系数普通混凝土。这结果与一些实验数据一致。通过根据该模型计算获得的矿物添加剂(二氧化硅烟灰,白灰和偏塔林)混凝土的蠕变系数可以是普通混凝土蠕变系数的0.5至0.6。这结果与一些实验数据一致。

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