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- 2019
纤维对混凝土的损伤、裂缝曲折度及裂缝恢复的影响
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Abstract:
[1] | ARMANDEI M, DE SOUZA SANCHEZ FILHO E. Correlation between fracture roughness and material strength parameters in SFRCs using 2D image analysis[J]. Construction and Building Materials, 2017, 140:82-90. |
[2] | PICANDET V, KHELIDJ A, BELLEGOU H. Crack effects on gas and water permeability of concretes[J]. Cement & Concrete Research, 2009, 39(6):537-547. |
[3] | LANDIS E N, ZHANG T, NAGY E N, et al. Cracking, damage and fracture in four dimensions[J]. Materials and Structures, 2007, 40(4):357-364. |
[4] | American Society for Testing and Materials (ASTM). Standard test method for pulse velocity through concrete:ASTM C-597[S]. Philadelphia:ASTM, 2009. |
[5] | 中国工程建设标准化协会. 超声回弹综合法检测混凝土强度技术规程:CECS 02-2005[S]. 北京:中国标准出版社, 2005.China Association for Engineering Construction Standardization. Technical specification for testing concrete strength by ultrasonic-rebound combined method:CECS 02-2005[S]. Beijing:Standard Press of China, 2005(in Chinese). |
[6] | SEHER M, IN C W, KIM J Y, et al. Numerical and experimental study of crack depth measurement in concrete using diffuse ultrasound[J]. Journal of Nondestructive Evaluation, 2013, 32(1):81-92. |
[7] | ISMAIL M, TOUMI A, FRANCOIS R, et al. Effect of crack opening on the local diffusion of chloride in cracked mortar samples[J]. Cement and Concrete Research, 2008, 38(8):1106-1111. |
[8] | WANG K, JANSEN D C, SHAH S P, et al. Permeability study of cracked concrete[J]. Cement and Concrete Research, 1997, 27(3):381-393. |
[9] | QASRAWI H Y, MARIE I A. The use of USPV to anticipate failure in concrete under compression[J]. Cement and Concrete Research, 2003, 33(12):2017-2021. |
[10] | BANTHIA N, MAJDZADEH F, WU J, et al. Fiber synergy in hybrid fiber reinforced concrete (HyFRC) in flexure and direct shear[J]. Cement and Concrete Composites, 2014, 48:91-97. |
[11] | 任县伟. 纤维对混凝土力学性能及开裂后抗渗性能的影响[D]. 大连:大连理工大学, 2016.REN Xianwei. Effects of fibers on mechanical properties and permeability of cracked concrete[D]. Dalian:Dalian University of Technology, 2016(in Chinese). |
[12] | 王卿. 纤维对混凝土开裂后渗透性及裂缝形态的影响[D]. 大连:大连理工大学, 2017.WANG Qing. Effect of fibers on permeability and crack geometry of cracked concrete[D]. Dalian:Dalian University of Technology, 2017(in Chinese). |
[13] | TOROPOVS N, MONTE F L, WYRZYKOWSKI M, et al. Real-time measurements of temperature, pressure and moisture profiles in high-performance concrete exposed to high temperatures during neutron radiography imaging[J]. Cement & Concrete Research, 2015, 68:166-173. |
[14] | ACI. Control of cracking in concrete structures:ACI 224R-90[S]. USA:ACI, 2000:43. |
[15] | 王怀亮, 宋玉普. 不同尺寸混凝土试件受压状态下超声波传播特性研究[J]. 大连理工大学学报, 2007, 47(1):90-94.WANG Huailiang, SONG Yupu. Ultrasonic pulses behavior in various-size concrete specimens under compression[J]. Journal of Dalian University of Technology, 2007, 47(1):90-94(in Chinese). |
[16] | DESMETTRE C, CHARRON J P. Novel water permeability device for reinforced concrete under load[J]. Materials & Structures, 2011, 44(9):1713. |
[17] | YI S T, HYUN T Y, KIM J K. The effects of hydraulic pressure and crack width on water permeability of penetration crack-induced concrete[J]. Construction and Building Materials, 2011, 25(5):2576-2583. |
[18] | 中国工程建设协会. 纤维混凝土试验方法标准:CECS:2009[S]. 北京:中国计划出版社, 2010.China Association for Engineering Construction Standardization. Standard test methods for fiber reinfored concrete:CECS:2009[S]. Beijing:China Planning Press, 2010(in Chinese). |
[19] | HOSEINI M. Effect of compressive loading on transport properties of cement-based materials[D]. Edmonton:University of Alberta, 2013. |
[20] | 邓宗才. 混杂纤维增强超高性能混凝土弯曲韧性与评价方法[J]. 复合材料学报, 2016, 33(6):1274-1280.DENG Zongcai. Flexural toughness and characterization method of hybrid fibers reinforced ultra-high performance concrete[J]. Acta Materiae Compositae Sinica, 2016, 33(6):1274-1280(in Chinese). |