Search Results - "Cheng, Linian"
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Research and Prediction on the Properties of Concrete at Cryogenic Temperature Based on Gray Theory
Published in Journal of Wuhan University of Technology. Materials science edition (01-10-2023)“…To solve the cryogenic temperature problems faced by all-concrete liquefied natural gas (ACLNG) storage tanks during servicing, a low temperature resistant and…”
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Effect of Iron Tailings and Slag Powders on Workability and Mechanical Properties of Concrete
Published in Frontiers in materials (26-07-2021)“…Tailings are one of the largest solid wastes in stock at present. In order to improve the comprehensive utilization rate of tailings, especially to solve the…”
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Study on the flexural performance and brittle fracture characteristics of steel fiber-reinforced concrete exposed to cryogenic temperatures
Published in Construction & building materials (21-06-2024)“…This paper investigated the effects of steel fiber admixture (with volume fractions of 0%, 0.5%, 1.5%, and 2.5%) on the flexural performance of concrete by…”
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Research on the degradation mechanism of various composite cementitious materials exposed to cryogenic temperatures
Published in Construction & building materials (22-11-2024)“…Green composite cementitious materials based on low carbon requirements have broad application potential in the field of cryogenic engineering and…”
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Effect of alkali dosage and silicate modulus on the deterioration of alkali-activated concrete properties subjected to sodium chloride attack and freeze thaw cycles
Published in Construction & building materials (25-10-2024)“…The deterioration mechanism of alkali-activated slag-fly ash-steel slag concrete (AAC) under sodium chloride attack and freeze-thaw (SF-T) cycles was…”
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Rheological and mechanical properties of full-tailings backfill material prepared by ultrafine-iron-tailings-powder-based consolidation agent
Published in Construction & building materials (23-02-2024)“…On the basis of hydration by amorphous SiO2 and Al2O3 on the surface of ultrafine iron tailings powder (UITP) and its synergistic hydration with slag powder,…”
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Mechanical properties and degradation mechanism of LNG containment concrete material under cryogenic conditions
Published in Construction & building materials (12-09-2022)“…•Compressive strength and tensile strength of the concretes at cryogenic temperature were studied.•The damage degree of the concretes after cryogenic…”
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Study on the rheology, mechanical properties and microstructure of polypropylene fibers in different binder systems
Published in Journal of Building Engineering (01-08-2024)“…To explore the effects of polypropylene fiber (PPF) on the properties of different binder materials, the effects of PPF on the rheology, shrinkage, mechanical…”
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Pore structures and deterioration mechanism of concrete after cryogenic freeze-thaw cycles: Effects of moisture contents and aggregates
Published in Journal of Building Engineering (01-11-2024)“…With the popularization of all-concrete liquefied natural gas (ACLNG) storage tanks, the performance of concrete after cryogenic exposure (−170 °C) has…”
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A review on evolution laws and mechanism of concrete performance under cryogenic circumstance from multi-scale perspectives
Published in Journal of Building Engineering (01-04-2023)“…The surging demand for liquefied natural gas (LNG) has spurred the construction process of LNG storage tanks. As construction technologies and engineering…”
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Analysis of damage and fracture characteristics for concrete subjected to cryogenic freeze-thaw cycles: An acoustic emission and digital image correlation study
Published in Journal of Building Engineering (01-10-2024)“…This study examines concrete's performance under cryogenic (−170 °C) freeze-thaw cycles (CFTCs), inspired by the development of all-concrete liquefied natural…”
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Mechanism of performance deterioration of iron tailing powder concrete under the coupling effect of load and sulfate dry–wet cycle
Published in 工程科学学报 (01-08-2024)“…The application of iron tailing powder to concrete as a mineral admixture promotes high-value use of solid waste and energy saving and emission reduction…”
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