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混凝土粘结面粗糙度测试方法研究 被引量:5
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作者 张启明 张雷顺 《河南科学》 2002年第4期411-413,共3页
通过 30组混凝土立方体试块 ,分别对人工凿毛及劈拉试验试件的断开面两种类型分别采用自制量测仪法与灌砂法进行了粘结面粗糙度测试研究。给出了两种量测方法测试混凝土粘结面粗糙度回归公式且具有较好的相关性。该量测仪操作简单、使... 通过 30组混凝土立方体试块 ,分别对人工凿毛及劈拉试验试件的断开面两种类型分别采用自制量测仪法与灌砂法进行了粘结面粗糙度测试研究。给出了两种量测方法测试混凝土粘结面粗糙度回归公式且具有较好的相关性。该量测仪操作简单、使用方便、造价低 ,特别适合实际工程加固中混凝土粘结面粗糙度测量 ,为工程加固中提供了一种好的混凝土粘结面粗糙度测试方法。 展开更多
关键词 混凝土粘结面 粗糙度 测试方法 混凝土结构 结构加固 灌砂法 分数维法
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冻融环境下废旧纤维混凝土与旧混凝土粘结面劈拉试验 被引量:1
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作者 李妍 贺柱国 《吉林建筑大学学报》 2020年第2期19-22,42,共5页
采用工业废旧纤维混凝土与旧混凝土粘结立方体试件,通过慢速冻融试验探讨工业废旧纤维混凝土与旧混凝土粘结面在水饱和状态下纤维掺量、冻融循环次数对粘结面劈裂抗拉强度的影响,界面剂选用水泥砂浆,纤维掺量为0%,0.5%,1.0%和1.5%.试验... 采用工业废旧纤维混凝土与旧混凝土粘结立方体试件,通过慢速冻融试验探讨工业废旧纤维混凝土与旧混凝土粘结面在水饱和状态下纤维掺量、冻融循环次数对粘结面劈裂抗拉强度的影响,界面剂选用水泥砂浆,纤维掺量为0%,0.5%,1.0%和1.5%.试验结果表明,粘结面的劈裂抗拉强度随着冻融循环次数的增加而降低,废旧纤维的掺入能够提高复合立方体粘结面的抗冻劈拉性能且随着纤维体积率的增加而提高. 展开更多
关键词 工业废旧纤维 纤维掺量 冻融循环 劈拉强度 新旧混凝土粘结面
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外贴纤维与混凝土结合面的粘结滑移关系 被引量:34
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作者 曹双寅 潘建伍 +1 位作者 陈建飞 孙宁 《建筑结构学报》 EI CAS CSCD 北大核心 2006年第1期99-105,共7页
本文在外贴纤维复合材料(FRP)与混凝土结合面双剪试验中,采用电子散斑干涉技术(ESPI)对FRP-混凝土结合面的变形场进行了测试,重点研究了结合面的粘结滑移关系。试验结果表明,FRP-混凝土结合面的粘结滑移关系曲线的发展过程由非线性上升... 本文在外贴纤维复合材料(FRP)与混凝土结合面双剪试验中,采用电子散斑干涉技术(ESPI)对FRP-混凝土结合面的变形场进行了测试,重点研究了结合面的粘结滑移关系。试验结果表明,FRP-混凝土结合面的粘结滑移关系曲线的发展过程由非线性上升段和不稳定下降段两部分组成,峰值应力与混凝土强度有关,达到应力峰值时的滑移和极限滑移受混凝土强度和FRP的形式(板或布)等的影响不大。通过结合面滑移刚度衰减规律的分析,本文提出了FRP-混凝土结合面粘结滑移本构关系的基本模式,该模式基于FRP-混凝土结合面的初始(弹性)滑移刚度,力学概念明确。 展开更多
关键词 FRP FRP-混凝土粘结面 滑移 粘结滑移关系 电子散斑干涉
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Double pull specimen more suitable for measuring bond-slip relationship of FRP-to-concrete interface 被引量:1
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作者 杨奇飞 陆小华 熊光晶 《Journal of Central South University》 SCIE EI CAS 2010年第2期400-405,共6页
A new "conceptual" design named "double pull" specimen was proposed in order to measure the bond-slip(δ-τ) relationship of fiber reinforced polymer(FRP)-to-concrete interface more accurately.A fi... A new "conceptual" design named "double pull" specimen was proposed in order to measure the bond-slip(δ-τ) relationship of fiber reinforced polymer(FRP)-to-concrete interface more accurately.A finite element analysis(FEA) was performed for preliminarily evaluating the suitability of the proposed conceptual double pull specimen.Through the FEA,it was indicated that the FRP-to-concrete interface of the proposed conceptual specimen might subject to a much higher load level than that of the most commonly used simple shear specimen,showing a great potential for measuring δ-τ relationship more accurately.In the light of the conceptual specimen,a kind of "practical" double pull specimen was developed and proved to be more suitable for measuring δ-τ relationship through an exploratory experimental study with 20 specimens.Consequently,an experimental program with 10 double pull specimens was performed for measuring the ultimate slip δu which was difficult to capture by using the existing specimens.It is shown that the range of δu is 0.31-0.52 mm based on the test results.The suggestion for improving the measure method is also put forward. 展开更多
关键词 fiber reinforced polymer (FRP) concrete BOND-SLIP ultimate slip double pull specimen EXTENSOMETER
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Effects of Al_2O_3 nanoparticles on properties of self compacting concrete with ground granulated blast furnace slag (GGBFS) as binder 被引量:9
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作者 Ali NAZARI Shadi RIAHI 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第9期2327-2338,共12页
In this work, strength assessments and percentage of water absorption of self compacting concrete containing ground granulated blast furnace slag (GGBFS) and A1203 nanoparticles as binder have been investigated. Por... In this work, strength assessments and percentage of water absorption of self compacting concrete containing ground granulated blast furnace slag (GGBFS) and A1203 nanoparticles as binder have been investigated. Portland cement was replaced by different amounts of GGBFS and the properties of concrete specimens were investigated. Although it negatively impacts the physical and mechanical properties of concrete at early ages of curing, GGBFS was found to improve the physical and mechanical properties of concrete up to 45 wt% at later ages. A1203 nanoparticles with the average particle size of 15 nm were added partially to concrete with the optimum content of GGBFS and physical and mechanical properties of the specimens were measured. A1203 nanoparticle as a partial replacement of cement up to 3.0 wt% could accelerate C-S-H gel formation as a result of increased crystalline Ca(OH)2 amount at the early ages and hence increase strength and improve the resistance to water permeability of concrete specimens. The increase of the A1203 nanoparticles' content by more than 3.0 wt% would cause the reduction of the strength because of the decreased crystalline Ca(OH)2 content required for C-S-H gel formation. Several empirical relationships have been presented to predict flexural and split tensile strength of the specimens by means of the corresponding compressive strength at a certain age of curing. Accelerated peak appearance in conduction calorimetry tests, more weight loss in thermogravimetric analysis and more rapid appearance of the peaks related to hydrated products in X-ray diffraction results, all indicate that A1203 nanoparticles could improve mechanical and physical properties of the concrete specimens. 展开更多
关键词 CONCRETE ground granulated blast furnace slag (GGBFS) Al203 nanoparticles compressive strength flexural and splittensile strength pore structure thermogravimetric analysis conduction calorimetry
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TiO_2 nanoparticles' effects on properties of concrete using ground granulated blast furnace slag as binder 被引量:7
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作者 NAZARI Ali RIAHI Shadi 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第11期3109-3118,共10页
In the present study, compressive strength, pore structure, thermal behavior and microstrncture characteristics of concrete containing ground granulated blast furnace slag and TiO2 nanoparticles as binder were investi... In the present study, compressive strength, pore structure, thermal behavior and microstrncture characteristics of concrete containing ground granulated blast furnace slag and TiO2 nanoparticles as binder were investigated. Portland cement was replaced by different amounts of ground granulated blast furnace slag and the properties of concrete specimens were investigated. Al- though it negatively impacts the properties of concrete at early ages, ground granulated blast furnace slag up to 45 wt% was found to improve the physical and mechanical properties of concrete at later ages. TiO2 nanoparticles with the average particle size of 15 nm were partially added to concrete with the optimum content of ground granulated blast furnace slag and physical and mechanical properties of the specimens were measured. TiO2 nanoparticle as a partial replacement of cement up to 3 wt% could accelerate C-S-H gel formation as a result of increased crystalline Ca(OH)2 amount at the early age of hydration and hence increase compressive strength of concrete. The increased TiO2 nanoparticles' content of more than 3 wt% may cause reduced compressive strength because of the decreased crystalline Ca(OH)2 content required for C-S-H gel formation and unsuitable dispersed nanoparticles in the concrete matrix. TiO2 nanoparticles could improve the pore structure of concrete and shift the distributed pores to harmless and less-harm pores. 展开更多
关键词 CONCRETE ground granulated blast furnace slag TiO2 nanoparticles compressive strength pore structure
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