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负温混凝土内部结构发展的无损监测
引用本文:杨英姿.负温混凝土内部结构发展的无损监测[J].哈尔滨工业大学学报,2009,41(6):43-47.
作者姓名:杨英姿
作者单位:哈尔滨工业大学,土木工程学院,哈尔滨,150001 
摘    要:为实现寒冷地区冬季施工中混凝土内部结构发展的无损监测,研究两种坍落度、两种防冻剂的混凝土在标准养护条件、恒负温养护条件及自然变负温养护下动弹性模量随龄期的变化规律.结果表明:标准养护条件下,高掺量防冻盐类的掺入给混凝土内部结构带来一定的损伤.在负温阶段,异常高的混凝土动弹性模量值是由混凝土内部含冰量所决定的.通过转入正温一定时间内动弹性模量的衰减值可以判断混凝土在负温阶段受冻损伤程度.转入正温条件下混凝土的动弹性模量的发展规律与混凝土强度发展规律是一致的.因此,这一无损检测方法可以应用于冬季施工中.

关 键 词:负温混凝土  动弹性模量  无损监测

Nondestructive Monitoring for Development of Internal Structure of Concrete at Subzero Temperature
YANG Ying-zi,GAO Xiao-jian,DENG Hong-wei,BA Heng-jing.Nondestructive Monitoring for Development of Internal Structure of Concrete at Subzero Temperature[J].Journal of Harbin Institute of Technology,2009,41(6):43-47.
Authors:YANG Ying-zi  GAO Xiao-jian  DENG Hong-wei  BA Heng-jing
Affiliation:Harbin Institute of Technology
Abstract:In order to realize the non-destructive monitoring for the development of internal structure of concrete in winter construction, the variation of the dynamic elastic modulus of concretes, cured under standard curing conditions, at constant negative temperature curing conditions and at outdoor varing negative temperature, with ages were investigated. The results show that the internal structures of concrete mainly develop within 7 days and the high-dosage of anti-freezing salts results in certain internal structure damage of concrete under standard curing conditions. In the negative temperature stage, the extraordinarily high value of dynamic elastic modulus of concrete is attributed to ice content in concrete. After removing concrete at subzero temperature into standard curing room for a certain period, the attenuation of dynamic elastic modulus can be applied to determine the damage degree of concrete during subzero temperature curing stage, and the development rule of dynamic elastic modulus of concrete accords with that of compressive strength of concrete. Therefore, this non-destructive testing method can be applied to concrete construction in winter.
Keywords:concrete  outdoor varied negative temperature  constant negative temperature  compressive strength  
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