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    Cold Bitumen Emulsion Mixtures with Waste Glass: A Laboratory-Driven Investigation into Performance

    Source: Journal of Materials in Civil Engineering:;2025:;Volume ( 037 ):;issue: 001::page 04024438-1
    Author:
    Mohammad Iqbal Malik
    ,
    Mohammad Shafi Mir
    ,
    Bijayananda Mohanty
    DOI: 10.1061/JMCEE7.MTENG-17875
    Publisher: American Society of Civil Engineers
    Abstract: Global road development accelerates environmental harm, resource depletion, and fossil fuel consumption due to conventional aggregate and hot mix asphalt (HMA) use. To combat this, sustainable pavement construction is vital. cold bitumen emulsion mixtures (CBEMs), a type of cold mix asphalt (CMA), offer a sustainable path forward. Incorporating waste materials as fine aggregates in cold mix asphalt addresses waste issues and flexible pavement development. Our research pioneers using crushed waste glass (WG) as a fine aggregate substitute in CBEM’s binder layer, emphasizing unique microstructural analysis to uncover strength improvement mechanisms not explored before in binder layer gradation. This study replaces virgin fine aggregate with WG at varying percentages (0% to 100%, in 20% increments) and evaluated mechanical performance, including Marshall stability/flow, indirect tensile strength (ITS), resilient modulus (ITSM), dynamic modulus, flow number, fatigue life, and durability (retained Marshall stability). CBEM-WG mixes with around 60% WG content exhibited mechanical performance comparable to normal CBEM (NCBEM)/conventional HMA and showed improved performance beyond 60% dosage and maximum at 100% WG content. Moisture damage resistance decreases with increasing WG content but remains comparable to HMA.
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      Cold Bitumen Emulsion Mixtures with Waste Glass: A Laboratory-Driven Investigation into Performance

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4309652
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    contributor authorMohammad Iqbal Malik
    contributor authorMohammad Shafi Mir
    contributor authorBijayananda Mohanty
    date accessioned2026-02-16T21:44:11Z
    date available2026-02-16T21:44:11Z
    date copyright2025/01/01
    date issued2025
    identifier otherJMCEE7.MTENG-17875.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4309652
    description abstractGlobal road development accelerates environmental harm, resource depletion, and fossil fuel consumption due to conventional aggregate and hot mix asphalt (HMA) use. To combat this, sustainable pavement construction is vital. cold bitumen emulsion mixtures (CBEMs), a type of cold mix asphalt (CMA), offer a sustainable path forward. Incorporating waste materials as fine aggregates in cold mix asphalt addresses waste issues and flexible pavement development. Our research pioneers using crushed waste glass (WG) as a fine aggregate substitute in CBEM’s binder layer, emphasizing unique microstructural analysis to uncover strength improvement mechanisms not explored before in binder layer gradation. This study replaces virgin fine aggregate with WG at varying percentages (0% to 100%, in 20% increments) and evaluated mechanical performance, including Marshall stability/flow, indirect tensile strength (ITS), resilient modulus (ITSM), dynamic modulus, flow number, fatigue life, and durability (retained Marshall stability). CBEM-WG mixes with around 60% WG content exhibited mechanical performance comparable to normal CBEM (NCBEM)/conventional HMA and showed improved performance beyond 60% dosage and maximum at 100% WG content. Moisture damage resistance decreases with increasing WG content but remains comparable to HMA.
    publisherAmerican Society of Civil Engineers
    titleCold Bitumen Emulsion Mixtures with Waste Glass: A Laboratory-Driven Investigation into Performance
    typeJournal Article
    journal volume37
    journal issue1
    journal titleJournal of Materials in Civil Engineering
    identifier doi10.1061/JMCEE7.MTENG-17875
    journal fristpage04024438-1
    journal lastpage04024438-15
    page15
    treeJournal of Materials in Civil Engineering:;2025:;Volume ( 037 ):;issue: 001
    contenttypeFulltext
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