Source CSV:
06_lab_position/by_lee_publication_mapping.csv| paper_id | year | title | journal | doi | extension_theme | related_atlas_nodes | key_position | source_note | paper_card | original_pdf_status |
|---|---|---|---|---|---|---|---|---|---|---|
| alemu_2022_self_healing_of_portland_and_slag | 2022 | Self-healing of Portland and slag cement binder systems incorporating circulating fluidized bed combustion bottom ash | Construction and Building Materials | 10.1016/j.conbuildmat.2021.125571 | cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; sustainability / cost / low-carbon positioning | 04_material_systems/self_healing_ecc.md; 04_material_systems/green_ecc.md; 05_experiments/crack_width_distribution.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/alemu-2022-self-healing-of-portland-and-slag_source_note.md | 03_papers/by_lee_lab_publications/alemu-2022-self-healing-of-portland-and-slag_paper_card.md | pending_user_pdf |
| alemu_2023_on_crack_healing_in_fiber_reinforced | 2023 | On crack healing in fiber-reinforced cementitious composites incorporating mineral-based healing agent and superabsorbent polymer: Evaluation using modified permeability test method | Cement and Concrete Composites | 10.1016/j.cemconcomp.2023.105111 | self-healing and crack recovery; sustainability / cost / low-carbon positioning | 04_material_systems/self_healing_ecc.md; 02_concepts/permeability.md; 04_material_systems/green_ecc.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: self-healing and crack recovery; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/alemu-2023-on-crack-healing-in-fiber-reinforced_source_note.md | 03_papers/by_lee_lab_publications/alemu-2023-on-crack-healing-in-fiber-reinforced_paper_card.md | pending_user_pdf |
| alemu_2025_effect_of_self_healing_of_cracks | 2025 | Effect of self-healing of cracks in chloride ion diffusion and corrosion of engineered cementitious composites | Journal of Materials Research and Technology | 10.1016/j.jmrt.2025.01.037 | self-healing and crack recovery; sustainability / cost / low-carbon positioning | 04_material_systems/self_healing_ecc.md; 02_concepts/transport_properties.md; 05_experiments/crack_width_distribution.md; 04_material_systems/green_ecc.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: self-healing and crack recovery; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/alemu-2025-effect-of-self-healing-of-cracks_source_note.md | 03_papers/by_lee_lab_publications/alemu-2025-effect-of-self-healing-of-cracks_paper_card.md | pending_user_pdf |
| choi_2015_bonding_properties_of_basalt_fiber | 2015 | Bonding Properties of Basalt Fiber and Strength Reduction According to Fiber Orientation | Materials | 10.3390/ma8105335 | fiber / interface / micromechanics; structural / impact / repair application | 02_concepts/interface_properties.md; 02_concepts/fiber_bridging_law.md; 02_concepts/strain_hardening_criteria.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: fiber / interface / micromechanics; structural / impact / repair application | 00_sources/by_lee_lab_publications/source_notes/choi-2015-bonding-properties-of-basalt-fiber_source_note.md | 03_papers/by_lee_lab_publications/choi-2015-bonding-properties-of-basalt-fiber_paper_card.md | pending_user_pdf |
| choi_2015_rheological_and_mechanical_properties_of | 2015 | Rheological and mechanical properties of fiber-reinforced alkali-activated composite | Construction and Building Materials | 10.1016/j.conbuildmat.2015.07.182 | cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 02_concepts/processing_rheology.md; 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 02_concepts/interface_properties.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/choi-2015-rheological-and-mechanical-properties-of_source_note.md | 03_papers/by_lee_lab_publications/choi-2015-rheological-and-mechanical-properties-of_paper_card.md | pending_user_pdf |
| choi_2016_composite_properties_of_high_strength_polyethylene | 2016 | Composite properties of high-strength polyethylene fiber-reinforced cement and cementless composites | Composite Structures | 10.1016/j.compstruct.2015.11.046 | cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 02_concepts/fiber_bridging_law.md; 05_experiments/direct_tensile_test.md; 05_experiments/crack_width_distribution.md; 03_durability/transport_properties.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/choi-2016-composite-properties-of-high-strength-polyethylene_source_note.md | 03_papers/by_lee_lab_publications/choi-2016-composite-properties-of-high-strength-polyethylene_paper_card.md | pending_user_pdf |
| choi_2019_effects_of_aging_on_the | 2019 | Effects of Aging on the Tensile Properties of Polyethylene Fiber-Reinforced Alkali-Activated Slag-Based Composite | Advances in Materials Science and Engineering | 10.1155/2019/7573635 | cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 02_concepts/interface_properties.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/choi-2019-effects-of-aging-on-the_source_note.md | 03_papers/by_lee_lab_publications/choi-2019-effects-of-aging-on-the_paper_card.md | pending_user_pdf |
| choi_2019_strain_hardening_and_high_ductile_behavior_of | 2019 | Strain-Hardening and High-Ductile Behavior of Alkali-Activated Slag-Based Composites with Added Zirconia Silica Fume | Materials | 10.3390/ma12213523 | cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 04_material_systems/high_strength_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/choi-2019-strain-hardening-and-high-ductile-behavior-of_source_note.md | 03_papers/by_lee_lab_publications/choi-2019-strain-hardening-and-high-ductile-behavior-of_paper_card.md | pending_user_pdf |
| choi_2020_mechanical_and_fiber_bridging_behavior_of | 2020 | Mechanical and Fiber-Bridging Behavior of Slag-Based Composite with High Tensile Ductility | Applied Sciences | 10.3390/app10124300 | cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 02_concepts/strain_hardening_criteria.md; 02_concepts/interface_properties.md; 04_material_systems/green_ecc.md; 05_experiments/crack_width_distribution.md; 05_experiments/single_fiber_pullout.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/choi-2020-mechanical-and-fiber-bridging-behavior-of_source_note.md | 03_papers/by_lee_lab_publications/choi-2020-mechanical-and-fiber-bridging-behavior-of_paper_card.md | pending_user_pdf |
| choi_2021_composite_properties_of_calcium_based_alkali_activated | 2021 | Composite properties of calcium-based alkali-activated slag composites reinforced by different types of polyethylene fibers and micromechanical analysis | Construction and Building Materials | 10.1016/j.conbuildmat.2020.121760 | cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 02_concepts/interface_properties.md; 02_concepts/strain_hardening_criteria.md; 04_material_systems/green_ecc.md; 05_experiments/crack_width_distribution.md; 05_experiments/single_fiber_pullout.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/choi-2021-composite-properties-of-calcium-based-alkali-activated_source_note.md | 03_papers/by_lee_lab_publications/choi-2021-composite-properties-of-calcium-based-alkali-activated_paper_card.md | pending_user_pdf |
| choi_2021_effects_of_fiber_hybridization_on | 2021 | Effects of fiber hybridization on mechanical properties and autogenous healing of alkali-activated slag-based composites | Construction and Building Materials | 10.1016/j.conbuildmat.2021.125280 | cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 04_material_systems/self_healing_ecc.md; 04_material_systems/green_ecc.md; 02_concepts/interface_properties.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/choi-2021-effects-of-fiber-hybridization-on_source_note.md | 03_papers/by_lee_lab_publications/choi-2021-effects-of-fiber-hybridization-on_paper_card.md | pending_user_pdf |
| choi_2022_highly_ductile_behavior_and_sustainability | 2022 | Highly ductile behavior and sustainability of engineered cementitious composites reinforced by PE based selvage fibers | Cement and Concrete Composites | 10.1016/j.cemconcomp.2022.104729 | recycled / waste-derived material ECC; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: recycled / waste-derived material ECC; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/choi-2022-highly-ductile-behavior-and-sustainability_source_note.md | 03_papers/by_lee_lab_publications/choi-2022-highly-ductile-behavior-and-sustainability_paper_card.md | pending_user_pdf |
| choi_2022_resistance_of_hybrid_layered_composite | 2022 | Resistance of hybrid layered composite panels composed of fiber-reinforced cementitious composites against high-velocity projectile impact | Composite Structures | 10.1016/j.compstruct.2021.114993 | structural / impact / repair application; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 04_material_systems/high_strength_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: structural / impact / repair application; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/choi-2022-resistance-of-hybrid-layered-composite_source_note.md | 03_papers/by_lee_lab_publications/choi-2022-resistance-of-hybrid-layered-composite_paper_card.md | pending_user_pdf |
| hwang_2025_from_textile_waste_to_high_performance | 2025 | From textile waste to high-performance composites: investigating the role of selvage fibers in engineered cementitious composites | Journal of Building Engineering | 10.1016/j.jobe.2025.112964 | recycled / waste-derived material ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 05_experiments/single_fiber_pullout.md; 02_concepts/fiber_bridging_law.md; 02_concepts/strain_hardening_criteria.md; 04_material_systems/green_ecc.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: recycled / waste-derived material ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/hwang-2025-from-textile-waste-to-high-performance_source_note.md | 03_papers/by_lee_lab_publications/hwang-2025-from-textile-waste-to-high-performance_paper_card.md | pending_user_pdf |
| hyun_2018_composite_properties_and_micromechanical_analysis | 2018 | Composite Properties and Micromechanical Analysis of Highly Ductile Cement Composite Incorporating Limestone Powder | Applied Sciences | 10.3390/app8020151 | fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 02_concepts/interface_properties.md; 02_concepts/fiber_bridging_law.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/hyun-2018-composite-properties-and-micromechanical-analysis_source_note.md | 03_papers/by_lee_lab_publications/hyun-2018-composite-properties-and-micromechanical-analysis_paper_card.md | pending_user_pdf |
| kang_2016_control_of_tensile_behavior_of | 2016 | Control of Tensile Behavior of Ultra-High Performance Concrete Through Artificial Flaws and Fiber Hybridization | International Journal of Concrete Structures and Materials | 10.1007/s40069-016-0155-6 | fiber / interface / micromechanics | 04_material_systems/high_strength_ecc.md; 02_concepts/strain_hardening_criteria.md; 02_concepts/fiber_hybridization.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: fiber / interface / micromechanics | 00_sources/by_lee_lab_publications/source_notes/kang-2016-control-of-tensile-behavior-of_source_note.md | 03_papers/by_lee_lab_publications/kang-2016-control-of-tensile-behavior-of_paper_card.md | pending_user_pdf |
| kang_2016_hybrid_effects_of_steel_fiber | 2016 | Hybrid effects of steel fiber and microfiber on the tensile behavior of ultra-high performance concrete | Composite Structures | 10.1016/j.compstruct.2016.02.075 | general ECC/SHCC contribution | 04_material_systems/high_strength_ecc.md; 02_concepts/fiber_hybridization.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: general ECC/SHCC contribution | 00_sources/by_lee_lab_publications/source_notes/kang-2016-hybrid-effects-of-steel-fiber_source_note.md | 03_papers/by_lee_lab_publications/kang-2016-hybrid-effects-of-steel-fiber_paper_card.md | pending_user_pdf |
| kim_2018_response_of_uhpfrc_and_hdfrc | 2018 | Response of UHPFRC and HDFRC under static and high-velocity projectile impact loads | Construction and Building Materials | 10.1016/j.conbuildmat.2018.08.135 | structural / impact / repair application; sustainability / cost / low-carbon positioning | 04_material_systems/high_strength_ecc.md; 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: structural / impact / repair application; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/kim-2018-response-of-uhpfrc-and-hdfrc_source_note.md | 03_papers/by_lee_lab_publications/kim-2018-response-of-uhpfrc-and-hdfrc_paper_card.md | pending_user_pdf |
| kwon_2018_tensile_strain_hardening_behaviors_and_crack | 2018 | Tensile strain-hardening behaviors and crack patterns of slag-based fiber-reinforced composites | Computers and Concrete | 10.12989/cac.2018.21.3.231 | cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 02_concepts/interface_properties.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/kwon-2018-tensile-strain-hardening-behaviors-and-crack_source_note.md | 03_papers/by_lee_lab_publications/kwon-2018-tensile-strain-hardening-behaviors-and-crack_paper_card.md | pending_user_pdf |
| lee_2009_quantitative_evaluation_technique_of_polyvinyl | 2009 | Quantitative evaluation technique of Polyvinyl Alcohol (PVA) fiber dispersion in engineered cementitious composites | Cement & Concrete Composites | 10.1016/j.cemconcomp.2009.04.002 | fiber / interface / micromechanics | 02_concepts/fiber_dispersion.md; 02_concepts/processing_rheology.md; 02_concepts/fiber_bridging_law.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: fiber / interface / micromechanics | 00_sources/by_lee_lab_publications/source_notes/lee-2009-quantitative-evaluation-technique-of-polyvinyl_source_note.md | 03_papers/by_lee_lab_publications/lee-2009-quantitative-evaluation-technique-of-polyvinyl_paper_card.md | pending_user_pdf |
| lee_2010_micromechanics_based_fiber_bridging_analysis_of_strain_hardening | 2010 | Micromechanics-Based Fiber-Bridging Analysis of Strain-Hardening Cementitious Composite Accounting for Fiber Distribution | CMES: Computer Modeling in Engineering & Sciences | 10.3970/cmes.2010.061.111 | fiber / interface / micromechanics | 02_concepts/fiber_bridging_law.md; 02_concepts/strain_hardening_criteria.md; 02_concepts/interface_properties.md; 02_concepts/fiber_dispersion.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: fiber / interface / micromechanics | 00_sources/by_lee_lab_publications/source_notes/lee-2010-micromechanics-based-fiber-bridging-analysis-of-strain-hardening_source_note.md | 03_papers/by_lee_lab_publications/lee-2010-micromechanics-based-fiber-bridging-analysis-of-strain-hardening_paper_card.md | pending_user_pdf |
| lee_2010_prediction_of_ecc_tensile_stress_strain | 2010 | Prediction of ECC tensile stress-strain curves based on modified fiber bridging relations considering fiber distribution characteristics | Computers and Concrete | 10.12989/cac.2010.7.5.455 | fiber / interface / micromechanics | 02_concepts/fiber_bridging_law.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: fiber / interface / micromechanics | 00_sources/by_lee_lab_publications/source_notes/lee-2010-prediction-of-ecc-tensile-stress-strain_source_note.md | 03_papers/by_lee_lab_publications/lee-2010-prediction-of-ecc-tensile-stress-strain_paper_card.md | pending_user_pdf |
| lee_2012_flexural_performance_and_fiber_distribution | 2012 | Flexural performance and fiber distribution of an extruded DFRCC panel | Computers and Concrete | 10.12989/cac.2012.10.2.105 | structural / impact / repair application | 02_concepts/fiber_dispersion.md; 02_concepts/strain_hardening_criteria.md; 02_concepts/fiber_bridging_law.md; 02_concepts/processing_rheology.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: structural / impact / repair application | 00_sources/by_lee_lab_publications/source_notes/lee-2012-flexural-performance-and-fiber-distribution_source_note.md | 03_papers/by_lee_lab_publications/lee-2012-flexural-performance-and-fiber-distribution_paper_card.md | pending_user_pdf |
| lee_2012_strain_hardening_fiber_reinforced_alkali_activated | 2012 | Strain hardening fiber reinforced alkali-activated mortar – A feasibility study | Construction and Building Materials | 10.1016/j.conbuildmat.2012.06.007 | cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/sustainability.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md; 05_experiments/crack_width_distribution.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/lee-2012-strain-hardening-fiber-reinforced-alkali-activated_source_note.md | 03_papers/by_lee_lab_publications/lee-2012-strain-hardening-fiber-reinforced-alkali-activated_paper_card.md | pending_user_pdf |
| lee_2017_effects_of_a_defoamer_on | 2017 | Effects of a defoamer on the compressive strength and tensile behavior of alkali-activated slag-based cementless composite reinforced by polyethylene fiber | Composite Structures | 10.1016/j.compstruct.2017.03.097 | cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/processing_rheology.md; 02_concepts/interface_properties.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/lee-2017-effects-of-a-defoamer-on_source_note.md | 03_papers/by_lee_lab_publications/lee-2017-effects-of-a-defoamer-on_paper_card.md | pending_user_pdf |
| li_2023_mechanism_of_pva_fiber_influence | 2023 | Mechanism of PVA Fiber Influence in Foam Concrete: From Macroscopic to Microscopic View | Journal of Materials in Civil Engineering | 10.1061/JMCEE7.MTENG-16124 | fiber / interface / micromechanics | 04_material_systems/lightweight_ecc.md; 02_concepts/fiber_dispersion.md; 02_concepts/flaw_design.md; 02_concepts/interface_properties.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: fiber / interface / micromechanics | 00_sources/by_lee_lab_publications/source_notes/li-2023-mechanism-of-pva-fiber-influence_source_note.md | 03_papers/by_lee_lab_publications/li-2023-mechanism-of-pva-fiber-influence_paper_card.md | pending_user_pdf |
| luong_2021_effects_of_crumb_rubber_particles | 2021 | Effects of crumb rubber particles on mechanical properties and sustainability of ultra-high-ductile slag-based composites | Construction and Building Materials | 10.1016/j.conbuildmat.2020.121959 | cementless / alkali-activated / geopolymer ECC; recycled / waste-derived material ECC; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; recycled / waste-derived material ECC; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/luong-2021-effects-of-crumb-rubber-particles_source_note.md | 03_papers/by_lee_lab_publications/luong-2021-effects-of-crumb-rubber-particles_paper_card.md | pending_user_pdf |
| luong_2023_extremely_ductile_alkali_activated_slag_based_composite_with | 2023 | Extremely-ductile alkali-activated slag-based composite with a tensile strain capacity up to 22% | Ceramics International | 10.1016/j.ceramint.2022.12.057 | cementless / alkali-activated / geopolymer ECC; extreme ductility and tensile strain-hardening; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; extreme ductility and tensile strain-hardening; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/luong-2023-extremely-ductile-alkali-activated-slag-based-composite-with_source_note.md | 03_papers/by_lee_lab_publications/luong-2023-extremely-ductile-alkali-activated-slag-based-composite-with_paper_card.md | pending_user_pdf |
| luong_2025_achieving_ultra_ductility_exceeding_13 | 2025 | Achieving ultra-ductility exceeding 13 % and cost efficiency with rubberized alkali-activated slag-based cement-free composites | Developments in the Built Environment | 10.1016/j.dibe.2025.100677 | cementless / alkali-activated / geopolymer ECC; recycled / waste-derived material ECC; sustainability / cost / low-carbon positioning | 04_material_systems/cementless_composites.md; 04_material_systems/green_ecc.md; 02_concepts/flaw_design.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; recycled / waste-derived material ECC; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/luong-2025-achieving-ultra-ductility-exceeding-13_source_note.md | 03_papers/by_lee_lab_publications/luong-2025-achieving-ultra-ductility-exceeding-13_paper_card.md | pending_user_pdf |
| nguyen_2018_self_healing_properties_of_cement_based_and | 2018 | Self-healing properties of cement-based and alkali-activated slag-based fiber-reinforced composites | Construction and Building Materials | 10.1016/j.conbuildmat.2018.01.023 | cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; sustainability / cost / low-carbon positioning | 02_concepts/self_healing_mechanisms.md; 04_material_systems/green_ecc.md; 05_experiments/crack_width_distribution.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2018-self-healing-properties-of-cement-based-and_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2018-self-healing-properties-of-cement-based-and_paper_card.md | pending_user_pdf |
| nguyen_2019_effects_of_the_type_of | 2019 | Effects of the type of activator on the self-healing ability of fiber-reinforced alkali-activated slag-based composites at an early age | Construction and Building Materials | 10.1016/j.conbuildmat.2019.07.113 | cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; sustainability / cost / low-carbon positioning | 02_concepts/self_healing_mechanisms.md; 04_material_systems/green_ecc.md; 05_experiments/crack_width_distribution.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2019-effects-of-the-type-of_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2019-effects-of-the-type-of_paper_card.md | pending_user_pdf |
| nguyen_2019_mechanical_properties_and_self_healing_capacity | 2019 | Mechanical properties and self-healing capacity of eco-friendly ultra-high ductile fiber-reinforced slag-based composites | Composite Structures | 10.1016/j.compstruct.2019.111401 | cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; extreme ductility and tensile strain-hardening; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/self_healing_mechanisms.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; extreme ductility and tensile strain-hardening; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2019-mechanical-properties-and-self-healing-capacity_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2019-mechanical-properties-and-self-healing-capacity_paper_card.md | pending_user_pdf |
| nguyen_2020_autogenous_healing_of_high_strength | 2020 | Autogenous healing of high strength engineered cementitious composites (ECC) using calcium-containing binders | Construction and Building Materials | 10.1016/j.conbuildmat.2020.120857 | self-healing and crack recovery | 02_concepts/self_healing_mechanisms.md; 04_material_systems/high_strength_ecc.md; 05_experiments/crack_width_distribution.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: self-healing and crack recovery | 00_sources/by_lee_lab_publications/source_notes/nguyen-2020-autogenous-healing-of-high-strength_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2020-autogenous-healing-of-high-strength_paper_card.md | pending_user_pdf |
| nguyen_2021_ultra_ductile_behavior_of_fly_ash_based | 2021 | Ultra-ductile behavior of fly ash-based engineered geopolymer composites with a tensile strain capacity up to 13.7% | Cement and Concrete Composites | 10.1016/j.cemconcomp.2021.104133 | cementless / alkali-activated / geopolymer ECC; extreme ductility and tensile strain-hardening; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 02_concepts/interface_properties.md; 05_experiments/crack_width_distribution.md; 05_experiments/single_fiber_pullout.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; extreme ductility and tensile strain-hardening; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2021-ultra-ductile-behavior-of-fly-ash-based_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2021-ultra-ductile-behavior-of-fly-ash-based_paper_card.md | pending_user_pdf |
| nguyen_2023_mechanical_and_autogenous_healing_properties | 2023 | Mechanical and autogenous healing properties of high-strength and ultra-ductility engineered geopolymer composites reinforced by PE-PVA hybrid fibers | Cement and Concrete Composites | 10.1016/j.cemconcomp.2023.105155 | cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 04_material_systems/self_healing_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; self-healing and crack recovery; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2023-mechanical-and-autogenous-healing-properties_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2023-mechanical-and-autogenous-healing-properties_paper_card.md | pending_user_pdf |
| nguyen_2023_micromechanical_and_mineralogy_analyses_on | 2023 | Micromechanical and mineralogy analyses on extremely ductile engineered geopolymer composites with different activator pretreatments | Journal of Building Engineering | 10.1016/j.jobe.2023.108093 | cementless / alkali-activated / geopolymer ECC; extreme ductility and tensile strain-hardening; sustainability / cost / low-carbon positioning | 02_concepts/strain_hardening_criteria.md; 02_concepts/flaw_design.md; 04_material_systems/green_ecc.md; 04_material_systems/lightweight_ecc.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; extreme ductility and tensile strain-hardening; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2023-micromechanical-and-mineralogy-analyses-on_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2023-micromechanical-and-mineralogy-analyses-on_paper_card.md | pending_user_pdf |
| nguyen_2023_optimization_of_fly_ash_based_polyethylene | 2023 | Optimization of fly ash-based polyethylene fiber-reinforced engineered cement-free composites with low-density and ultra-ductility using Taguchi robust design method | Journal of Building Engineering | 10.1016/j.jobe.2023.105946 | cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2023-optimization-of-fly-ash-based-polyethylene_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2023-optimization-of-fly-ash-based-polyethylene_paper_card.md | pending_user_pdf |
| nguyen_2024_crack_healing_of_cost_effective_engineered_cementitious | 2024 | Crack-healing of cost-effective engineered cementitious composites reinforced by recycled selvage fiber | Cement and Concrete Composites | 10.1016/j.cemconcomp.2024.105776 | recycled / waste-derived material ECC; self-healing and crack recovery; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 04_material_systems/self_healing_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: recycled / waste-derived material ECC; self-healing and crack recovery; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2024-crack-healing-of-cost-effective-engineered-cementitious_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2024-crack-healing-of-cost-effective-engineered-cementitious_paper_card.md | pending_user_pdf |
| nguyen_2024_influential_factor_analysis_of_slag_based | 2024 | Influential factor analysis of slag-based engineered cementitious composites using Taguchi robust method | Journal of Structural Integrity and Maintenance | 10.1080/24705314.2024.2317529 | cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/flaw_design.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2024-influential-factor-analysis-of-slag-based_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2024-influential-factor-analysis-of-slag-based_paper_card.md | pending_user_pdf |
| nguyen_2026_ambient_temperature_curing_stimulated_one_part | 2026 | Ambient Temperature Curing Stimulated One-Part Engineered Geopolymer Composites with Extremely High Ductility and Low Thermal Conductivity | Journal of Materials in Civil Engineering | 10.1061/JMCEE7.MTENG-22099 | cementless / alkali-activated / geopolymer ECC; temperature and residual performance; sustainability / cost / low-carbon positioning | 04_material_systems/cementless_composites.md; 04_material_systems/green_ecc.md; 02_concepts/flaw_design.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; temperature and residual performance; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/nguyen-2026-ambient-temperature-curing-stimulated-one-part_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2026-ambient-temperature-curing-stimulated-one-part_paper_card.md | pending_user_pdf |
| nguyen_2026_combined_effect_of_hybrid_pe_pbo | 2026 | Combined effect of hybrid PE-PBO fiber reinforcement on the mechanical properties of lightweight fly ash-slag-based engineered geopolymer composites at ambient temperature and after exposure to elevated temperatures | Developments in the Built Environment | 10.1016/j.dibe.2026.100938 | cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; temperature and residual performance | 04_material_systems/cementless_composites.md; 02_concepts/fiber_hybridization.md; 02_concepts/flaw_design.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; fiber / interface / micromechanics; temperature and residual performance | 00_sources/by_lee_lab_publications/source_notes/nguyen-2026-combined-effect-of-hybrid-pe-pbo_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2026-combined-effect-of-hybrid-pe-pbo_paper_card.md | pending_user_pdf |
| nguyen_2026_ice_cooled_ultra_high_performance_engineered_geopolymer | 2026 | Ice-cooled ultra-high performance engineered geopolymer composites for ambient temperature curing: Formulation, properties, and microscale investigation | Developments in the Built Environment | 10.1016/j.dibe.2026.100972 | cementless / alkali-activated / geopolymer ECC; temperature and residual performance | 04_material_systems/cementless_composites.md; 04_material_systems/high_strength_ecc.md; 02_concepts/flaw_design.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; temperature and residual performance | 00_sources/by_lee_lab_publications/source_notes/nguyen-2026-ice-cooled-ultra-high-performance-engineered-geopolymer_source_note.md | 03_papers/by_lee_lab_publications/nguyen-2026-ice-cooled-ultra-high-performance-engineered-geopolymer_paper_card.md | pending_user_pdf |
| park_2022_comparison_of_mechanical_and_crack_healing | 2022 | Comparison of Mechanical and Crack-Healing Properties of PE-PVA Hybrid Fiber-Reinforced SHCCs in Natural and Underwater Conditions | Materials | 10.3390/ma15186339 | self-healing and crack recovery; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 04_material_systems/self_healing_ecc.md; 04_material_systems/green_ecc.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: self-healing and crack recovery; fiber / interface / micromechanics; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/park-2022-comparison-of-mechanical-and-crack-healing_source_note.md | 03_papers/by_lee_lab_publications/park-2022-comparison-of-mechanical-and-crack-healing_paper_card.md | pending_user_pdf |
| park_2023_cementless_ultra_ductile_composites_reinforced_by | 2023 | Cementless ultra-ductile composites reinforced by polyethylene-based short selvedge fibers for sustainable and resilient infrastructure | Journal of Building Engineering | 10.1016/j.jobe.2023.106198 | cementless / alkali-activated / geopolymer ECC; recycled / waste-derived material ECC; extreme ductility and tensile strain-hardening; sustainability / cost / low-carbon positioning | 04_material_systems/green_ecc.md; 02_concepts/strain_hardening_criteria.md; 05_experiments/crack_width_distribution.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: cementless / alkali-activated / geopolymer ECC; recycled / waste-derived material ECC; extreme ductility and tensile strain-hardening; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/park-2023-cementless-ultra-ductile-composites-reinforced-by_source_note.md | 03_papers/by_lee_lab_publications/park-2023-cementless-ultra-ductile-composites-reinforced-by_paper_card.md | pending_user_pdf |
| park_2025_length_effects_of_pe_based_selvage | 2025 | Length effects of PE-based selvage fibers on fresh, fiber dispersion, and tensile properties of engineered cementitious composites | Journal of Sustainable Cement-Based Materials | 10.1080/21650373.2024.2441432 | recycled / waste-derived material ECC; sustainability / cost / low-carbon positioning | 02_concepts/fiber_dispersion.md; 05_experiments/crack_width_distribution.md; 04_material_systems/green_ecc.md; 05_experiments/direct_tensile_test.md | Maps Bang Yeon Lee lab publication into global ECC/EGC Atlas themes: recycled / waste-derived material ECC; sustainability / cost / low-carbon positioning | 00_sources/by_lee_lab_publications/source_notes/park-2025-length-effects-of-pe-based-selvage_source_note.md | 03_papers/by_lee_lab_publications/park-2025-length-effects-of-pe-based-selvage_paper_card.md | pending_user_pdf |