The use of AE technique for identifying ductility degradation against cryogenic on flexural performance of UHPC at various temperature conditions
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[1] Lik-ho Tam,et al. Finite element analysis of shear performance of UHPFRC-encased steel composite beams: Parametric study , 2022, Engineering Structures.
[2] Chengchao Guo,et al. Identification of damage mechanisms of polymer-concrete in direct shearing tests by acoustic emission , 2022, Construction and Building Materials.
[3] Y. Bai,et al. Mechanical properties and damage mechanisms of concrete under four temperature gradients combined with acoustic emission method , 2022, Journal of Building Engineering.
[4] S. Fayed,et al. Effectiveness of SHCC strips reinforced with glass fiber textile mesh layers for shear strengthening of RC beams: Experimental and numerical assessments , 2022, Construction and Building Materials.
[5] Shanshan Ji,et al. Research on dynamic splitting damage characteristics and constitutive model of basalt fiber reinforced concrete based on acoustic emission , 2022, Construction and Building Materials.
[6] Qingyuan Wang,et al. Strength and toughness of ambient-cured geopolymer concrete containing virgin and recycled fibres in mono and hybrid combinations , 2021, Construction and Building Materials.
[7] K. Khayat,et al. Prediction of fiber orientation and flexural performance of UHPC based on suspending mortar rheology and casting method , 2021 .
[8] A. Arora,et al. Characterization of toughening mechanisms in UHPC through image correlation and inverse analysis of flexural results , 2021 .
[9] Genda Chen,et al. A review: Material and structural properties of UHPC at elevated temperatures or fire conditions , 2021 .
[10] Vivian W. Y. Tam,et al. Durability deterioration of concrete under marine environment from material to structure: A critical review , 2021 .
[11] S. Fayed,et al. Effect of interfacial surface preparation technique on bond characteristics of both NSC-UHPFRC and NSC-NSC composites , 2021 .
[12] Walid Mansour. Numerical analysis of the shear behavior of FRP-strengthened continuous RC beams having web openings , 2021 .
[13] I. Hakeem,et al. UHPC evolution, development, and utilization in construction: a review , 2021 .
[14] Zheng-wu Jiang,et al. Effects of fibers on flexural strength of ultra-high-performance concrete subjected to cryogenic attack , 2020 .
[15] J. Xie,et al. Pull-out behaviour of headed studs embedded in normal weight concrete at low temperatures , 2020 .
[16] Qingyuan Wang,et al. Deterioration of ambient-cured and heat-cured fly ash geopolymer concrete by high temperature exposure and prediction of its residual compressive strength , 2020 .
[17] Bruno Briseghella,et al. Review of ultra-high performance concrete and its application in bridge engineering , 2020 .
[18] Jun-Yan Wang,et al. Damage mechanism of ultra-high performance fibre reinforced concrete at different stages of direct tensile test based on acoustic emission analysis , 2020 .
[19] Zheng-wu Jiang,et al. Effects of redispersible polymer powders on the structural build-up of 3D printing cement paste with and without hydroxypropyl methylcellulose , 2020 .
[20] Zheng-wu Jiang,et al. State-of-the-art review on properties evolution and deterioration mechanism of concrete at cryogenic temperature , 2020 .
[21] R. T. Thorstensen,et al. The influence of steel fibres on compressive and tensile strength of ultra high performance concrete: A review , 2020 .
[22] Q. Yuan,et al. Durability of ultra-high performance concrete – A review , 2020, Construction and Building Materials.
[23] Dooyeol Yoo,et al. Analysis on enhanced pullout resistance of steel fibers in ultra-high performance concrete under cryogenic condition , 2020 .
[24] S. Fayed,et al. Flexural strengthening of RC one way solid slab with Strain Hardening Cementitious Composites (SHCC) , 2020 .
[25] Dooyeol Yoo,et al. Cryogenic pullout behavior of steel fibers from ultra-high-performance concrete under impact loading , 2020 .
[26] N. Banthia,et al. Self-healing capability of ultra-high-performance fiber-reinforced concrete after exposure to cryogenic temperature , 2019, Cement and Concrete Composites.
[27] Shakeel Ahmed,et al. Composites for Environmental Engineering , 2019 .
[28] S. Laurens,et al. A comprehensive study of the spatial distribution of the galvanic protection current supplied by zinc layer anodes applied to steel-reinforced concrete structures , 2019, Corrosion Science.
[29] K. Tan,et al. Synergistic effects of hybrid polypropylene and steel fibers on explosive spalling prevention of ultra-high performance concrete at elevated temperature , 2019, Cement and Concrete Composites.
[30] J. Xie,et al. Experimental and numerical studies on bonded prestressed concrete beams at low temperatures , 2018, Construction and Building Materials.
[31] Chengqing Wu,et al. Development of ultra-high performance concrete with high fire resistance , 2018, Construction and Building Materials.
[32] Dooyeol Yoo,et al. Effect of cryogenic temperature on the flexural and cracking behaviors of ultra-high-performance fiber-reinforced concrete , 2018, Cryogenics.
[33] E. Garboczi,et al. Freeze-thaw crack determination in cementitious materials using 3D X-ray computed tomography and acoustic emission , 2018 .
[34] N. Banthia,et al. Effects of fiber geometry and cryogenic condition on mechanical properties of ultra-high-performance fiber-reinforced concrete , 2018 .
[35] Feng Xing,et al. Recent Advances in Intrinsic Self‐Healing Cementitious Materials , 2018, Advanced materials.
[36] Qing Chen,et al. Chemical and mineralogical alterations of concrete subjected to chemical attacks in complex underground tunnel environments during 20–36 years , 2018 .
[37] Tarek M. Khalifa,et al. Behavior of RC beams strengthened in shear with ultra-high performance fiber reinforced concrete (UHPFRC) , 2018 .
[38] Zhenghong Yang,et al. Acoustic characterization of damage and healing of microencapsulation-based self-healing cement matrices , 2017 .
[39] J. Xie,et al. Experimental studies on mechanical properties of steel reinforcements under cryogenic temperatures , 2017 .
[40] Weiqiang Zhang,et al. Studying the dynamic damage failure of concrete based on acoustic emission , 2017 .
[41] Doo-Yeol Yoo,et al. Effects of fiber shape, aspect ratio, and volume fraction on flexural behavior of ultra-high-performance fiber-reinforced cement composites , 2017 .
[42] Young Soo Yoon,et al. Nonlinear finite element analysis of ultra-high-performance fiber-reinforced concrete beams , 2017 .
[43] P. Prem,et al. Acoustic emission and flexural behaviour of RC beams strengthened with UHPC overlay , 2016 .
[44] Caijun Shi,et al. Effects of steel fiber content and shape on mechanical properties of ultra high performance concrete , 2016 .
[45] E. Masad,et al. Non-destructive evaluation of concrete mixtures for direct LNG containment , 2015 .
[46] Yaghoob Farnam,et al. Acoustic emission waveform characterization of crack origin and mode in fractured and ASR damaged concrete , 2015 .
[47] Zhengwu Jiang,et al. Influence of mineral additives and environmental conditions on the self-healing capabilities of cementitious materials , 2015 .
[48] Xinglin Lei,et al. Laboratory acoustic emission study for earthquake generation process , 2014 .
[49] E. Masad,et al. Relating damage evolution of concrete cooled to cryogenic temperatures to permeability , 2014 .
[50] Young Soo Yoon,et al. Effect of fiber length and placement method on flexural behavior, tension-softening curve, and fiber distribution characteristics of UHPFRC , 2014 .
[51] Fabio Matta,et al. Acoustic Emission Monitoring of Reinforced Concrete under Accelerated Corrosion , 2013 .
[52] Zeyang Sun,et al. Experimental study on flexural behavior of concrete beams reinforced by steel-fiber reinforced polymer composite bars , 2012 .
[53] S. S. Kumar,et al. An experimental study on cracking evolution in concrete and cement mortar by the b-value analysis of acoustic emission technique , 2012 .
[54] R. Vidya Sagar,et al. A review of recent developments in parametric based acoustic emission techniques applied to concrete structures , 2012 .
[55] D. Aggelis. Classification of cracking mode in concrete by acoustic emission parameters , 2011 .
[56] Masayasu Ohtsu,et al. Crack classification in concrete based on acoustic emission , 2010 .
[57] N. Barkoula,et al. Acoustic emission behavior of steel fibre reinforced concrete under bending , 2009 .
[58] Antoine E. Naaman,et al. Comparative flexural behavior of four fiber reinforced cementitious composites , 2008 .
[59] B. Mobasher,et al. Analytical simulation of tensile response of fabric reinforced cement based composites , 2006 .
[60] P. Richard,et al. Composition of reactive powder concretes , 1995 .