...
首页> 外文期刊>Journal of Materials Science >The examination of the fracture toughness of concretes with diverse structure
【24h】

The examination of the fracture toughness of concretes with diverse structure

机译:各种结构混凝土断裂韧性的检验

获取原文
获取原文并翻译 | 示例

摘要

Examination of fracture toughness of concretes was made using Mode I (tension at bending) and Mode II (shearing) fracture. Subjected to examination were gravel and dolomite concretes in their natural states and the same concretes as made from paraffinated aggregates. Gravel and dolomite conretes with diverse water-cement (W-C) ratios were also examined. The values of the stress intensity factors, K-c and K-parallel to c, and those of fracture energy, J(c) and J(parallel to c), were determined. In the case of concretes with variable W/C ratios, regression equations were also determined that described the dependence of the stress intensity factors and fracture energies on the W-C ratio. The paraffination of aggregates resulted in a considerable drop in the stress intensity factors studied as compared with those of concretes made from non-paraffinated aggregates. This drop was 34% for gravel as examined according to Mode I fracture, and 27% as examined according to Mode II fracture. For dolomite concrete drops were 19 and 28%, respectively. An increased W-C ratio caused a dramatic drop of both stress intensity factors. By addition of a super-plasticizer to the concrete mixture an evident improvement in the strength properties of both types of concrete occurred. Microstructural examinations performed have clearly confirmed the relationship between the type of aggregate used for concrete making and the microstructure of the concrete, particularly within the area of the contact layer between the aggregate and the cement paste. (C) 1998 Chapman & Hall. [References: 15]
机译:使用模式I(弯曲张力)和模式II(剪切)断裂进行混凝土的断裂韧性测试。接受检查的是自然状态下的砾石和白云石混凝土,以及与石蜡集料制成的混凝土相同的混凝土。还检查了具有不同水灰比(W-C)的砾石和白云石混凝土。确定了应力强度因子K- c和K平行于c的值,以及断裂能J( c)和J(平行于c)的值。对于W / C比可变的混凝土,还确定了回归方程,该方程描述了应力强度因子和断裂能对W-C比的依赖性。与用非石蜡骨料制成的混凝土相比,骨料的石蜡化导致所研究的应力强度因子大大降低。根据I型骨折检查,砾石的下降为34%,根据II型骨折检查的下降为27%。对于白云石,混凝土的落差分别为19%和28%。 W-C比增加导致两个应力强度因子急剧下降。通过向混凝土混合物中加入高效减水剂,两种类型混凝土的强度性能都得到了明显改善。进行的微结构检查清楚地证实了用于混凝土制造的集料的类型与混凝土的微观结构之间的关系,特别是在集料和水泥浆之间的接触层区域内。 (C)1998查普曼和霍尔。 [参考:15]

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