【24h】

Effect of the type of superplasticizer on the properties of cementitious systems incorporating slag

机译:超增生剂类型对包含炉渣的水泥系统性能的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Superplasticizers have become an integral ingredient in the formulation of concretes. After 40 years, their use and dosage remain uncertain due to variations in their compositions and those of cement. In addition, the substitution of cement by supplementary cementitious materials having different chemical compositions exacerbates the problem without counting the multiplicity of superplasticizers to choose from. The present work consists of a study of the rheological and mechanical properties of cementitious systems containing slag and various types of superplasticizers. The tests were carried out on pastes, mortars and concretes incorporating slag in partial cement replacement and four superplasticizers types, polynaphthalene sulphonate (PNS) and three polycarboxylates (PC). The results of this study demonstrate that the viscosity and the yield stress increase with the rate of incorporation of the slag. The air increases with the polycarboxylates but this effect is less perceptible in the presence of the slag. Polycarboxylates improve workability more than PNS. The use of polycarboxylates reduces the viscosity and the yield stress. The compressive strength of concretes containing slag is low at early age but high at long run. They exhibit good resistances to scaling. The permeability to chloride ions is considerably reduced in the presence of the slag independently of the type of superplasticizer, suggesting good durability of these concretes in potentially aggressive external environments.
机译:超塑性剂已成为混凝土配方中的一体成分。 40年后,由于其组合物和水泥的变化,它们的使用和剂量仍然不确定。此外,通过具有不同化学组成的补充水泥材料取代水泥的替代加剧了该问题而不计算超级塑化剂的多种选择。目前的工作包括研究含有炉渣和各种类型的超塑料的水泥系统的流变和力学性能。在粘贴浆料,砂浆和混凝土中进行测试,该浆料在部分水泥置换替代品中含有炉渣和四种超级塑化剂类型,多萘磺酸盐(PNS)和三种多元羧酸盐(PC)。该研究的结果表明,粘度和产量应力随炉渣的掺入速率而增加。空气随多羧酸盐而增加,但在炉渣存在下这种效果不太可察觉。多羧酸盐比PNS提高了可加工性。使用聚羧酸盐可降低粘度和屈服应力。含有炉渣的混凝土的抗压强度在休眠状态下低,但长期高。它们对缩放表现出良好的电阻。在炉渣的存在下独立于过度塑化剂的类型,氯离子的渗透性显着降低,这表明这些混凝土的良好耐久性在可能的侵略性外部环境中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号