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    Recycled Concrete Aggregates in Roadways: Laboratory Examination of Self-Cementing Characteristics

    Source: Journal of Materials in Civil Engineering:;2015:;Volume ( 027 ):;issue: 010
    Author:
    Peerapong Jitsangiam
    ,
    Kornkanok Boonserm
    ,
    Tanapon Phenrat
    ,
    Suphat Chummuneerat
    ,
    Prinya Chindaprasirt
    ,
    Hamid Nikraz
    DOI: 10.1061/(ASCE)MT.1943-5533.0001245
    Publisher: American Society of Civil Engineers
    Abstract: This paper examines the self-cementing phenomenon of the road construction material known as recycled concrete aggregate (RCA). Two RCA types were selected as study materials: (1) high-grade RCA (HRCA), a quality RCA manufactured from relatively high-strength concrete structures; and (2) road base RCA (RBRCA), a high-grade RCA blend combined with brick and general clean rubble (road base material). Laboratory tests were performed to obtain the unconfined compressive strength, indirect tension dynamic modulus, and resilient modulus of the test samples to examine their hardening characteristics when subjected to varying curing periods. These tests were performed in conjunction with microstructure analyses from X-ray diffractometry (XRD) and scanning electron microscope (SEM) techniques. The HRCA samples, which were prepared and subjected to varying curing conditions, transformed from an initially unbound material into a bound (fully stabilized) material. The results of XRD and SEM analyses clearly demonstrate that secondary hydration occurred. The RBRCA samples were able to maintain their unbound granular properties, with nonsignificant self-cementing, thus supporting the hypothesis that the mixing of nonactive materials such as bricks and clean rubble into RCA will lessen the tendency of RCA toward self-cementing.
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      Recycled Concrete Aggregates in Roadways: Laboratory Examination of Self-Cementing Characteristics

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    http://yetl.yabesh.ir/yetl1/handle/yetl/72534
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    contributor authorPeerapong Jitsangiam
    contributor authorKornkanok Boonserm
    contributor authorTanapon Phenrat
    contributor authorSuphat Chummuneerat
    contributor authorPrinya Chindaprasirt
    contributor authorHamid Nikraz
    date accessioned2017-05-08T22:09:35Z
    date available2017-05-08T22:09:35Z
    date copyrightOctober 2015
    date issued2015
    identifier other35668050.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/72534
    description abstractThis paper examines the self-cementing phenomenon of the road construction material known as recycled concrete aggregate (RCA). Two RCA types were selected as study materials: (1) high-grade RCA (HRCA), a quality RCA manufactured from relatively high-strength concrete structures; and (2) road base RCA (RBRCA), a high-grade RCA blend combined with brick and general clean rubble (road base material). Laboratory tests were performed to obtain the unconfined compressive strength, indirect tension dynamic modulus, and resilient modulus of the test samples to examine their hardening characteristics when subjected to varying curing periods. These tests were performed in conjunction with microstructure analyses from X-ray diffractometry (XRD) and scanning electron microscope (SEM) techniques. The HRCA samples, which were prepared and subjected to varying curing conditions, transformed from an initially unbound material into a bound (fully stabilized) material. The results of XRD and SEM analyses clearly demonstrate that secondary hydration occurred. The RBRCA samples were able to maintain their unbound granular properties, with nonsignificant self-cementing, thus supporting the hypothesis that the mixing of nonactive materials such as bricks and clean rubble into RCA will lessen the tendency of RCA toward self-cementing.
    publisherAmerican Society of Civil Engineers
    titleRecycled Concrete Aggregates in Roadways: Laboratory Examination of Self-Cementing Characteristics
    typeJournal Paper
    journal volume27
    journal issue10
    journal titleJournal of Materials in Civil Engineering
    identifier doi10.1061/(ASCE)MT.1943-5533.0001245
    treeJournal of Materials in Civil Engineering:;2015:;Volume ( 027 ):;issue: 010
    contenttypeFulltext
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