文章摘要
张秀芳,胡少伟,胡晓威.混凝土双K断裂韧度的率相关性[J].水利学报,2016,47(10):1287-1297
混凝土双K断裂韧度的率相关性
Rate dependence of concrete double-K fracture toughnesses
投稿时间:2015-12-05  
DOI:10.13243/j.cnki.slxb.20151205
中文关键词: 应变率  中央带穿透裂缝的立方体劈拉试件  混凝土  双K断裂韧度  临界裂缝扩展率
英文关键词: strain loading rate  central-notched split-tension cube specimens  concrete  double-K fracture toughness  critical crack propagation rate
基金项目:国家杰出青年基金项目(51325904);国家自然科学基金项目(51478078);水利部公益性行业科研专项(201201038);中央高校基本科研业务费专项基金(DUT15LK39)
作者单位
张秀芳 大连理工大学 土木工程学院, 辽宁 大连 116024 
胡少伟 南京水利科学研究院 材料结构研究所, 江苏 南京 210029 
胡晓威 大连理工大学 土木工程学院, 辽宁 大连 116024 
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中文摘要:
      采用中央带穿透裂缝的立方体劈拉试件几何形式,本文研究了应变率对混凝土双K断裂韧度的影响。试验采用的应变率范围为10-5/s~10-2/s。结果表明:双K断裂计算理论可由拟静态进一步拓展到地震加载率;随应变率增加,起裂断裂韧度线性增加,失稳断裂韧度先增加后保持不变;应变率不高于10-3/s时,高应变率作用下的试件会产生较大的临界裂缝扩展长度,临界裂缝扩展率较为缓慢,但应变率高于10-3/s时,临界裂缝扩展长度反而减小,临界裂缝扩展率呈指数迅速增加。最后,引入名义起裂强度率和临界裂缝扩展率两参数分别建立了起裂断裂韧度和失稳断裂韧度的率相关模型。
英文摘要:
      This paper presents a study on the effects of loading rate on double-K fracture toughness using central-notched split-tension cube geometry. Fracture tests were carried out under four different strain load-ing rates varying from 10-5/s to 10-2/s. The results show that double-K fracture calculation theory, devel-oped previously for quasi-static strain loading rate, can be further extended to seismic loading rate. It was also shown that, as strain loading rate increases, the initiation fracture toughness lineally increases but the unstable fracture toughness first increases then maintains a nearly invariant trend. In the case of strain load-ing rate no more than 10-3/s, specimens with higher strain loading rate presented a bigger critical crack propagation Δac and slower critical crack propagation rate. However,in the case of strain loading rate great-er than 10-3/s,critical crack propagation Δac reduced for specimens with higher strain loading rate and criti-cal crack propagation rate sharply increased. Subsequently, two models to predict the influence of the load-ing rates on the initiation fracture toughness and unstable fracture toughness were proposed by introducing the nominal cracking strength rate and critical crack propagation rate,respecitively.
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