Casey Jones
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Doctoral student
Also affiliated: Kentucky Cabinet For Health and Family Services (1988); Arkansas Department of Agriculture (2025); Bryan College (2022–2023)
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Casey Jones's research investigates the chemical and physical properties of cementitious materials, focusing on durability and performance. Recent work has examined the formation and mitigation of calcium oxychloride, a compound known to cause deterioration in concrete. This research includes developing methods to prevent its formation using alternative supplementary cementitious materials and verifying thresholds for its occurrence in pastes containing fly ash. Jones has also studied the internal curing of concrete using lightweight aggregates and evaluated the structural performance of concrete bridge decks reinforced with specific steel bars. Additionally, research has addressed predicting fly ash dosage to mitigate alkali-silica reaction and assessing the performance of concrete produced with fluidized bed combustion ash residue.
Metrics
- h-index: 6
- Publications: 12
- Citations: 147
Positions
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Doctoral student publications 2019–2025University of Arkansas at Fayetteville Institution web page
Selected Publications
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Investigating the Impact of Specimen Size Relating to Calcium Oxychloride Deterioration in Concrete Mixtures (2025)
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Using compressive strength and mass change to verify the calcium oxychloride threshold in cementitious pastes with fly ash (2021)
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Investigating the Impact of Reducing the Cementitious Content in Bridge Deck Concrete (2021)
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Structural performance of concrete bridge decks reinforced with Grade-830 steel bars (2020)
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Calcium oxychloride: A critical review of the literature surrounding the formation, deterioration, testing procedures, and recommended mitigation techniques (2020)
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Examining soaking duration of coarse clay and shale lightweight aggregates for internal curing in conventional concrete (2020)
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A Modified Chemical Index to Predict Fly Ash Dosage for Mitigating Alkali-Silica Reaction (2019)
Collaboration Network
Top Collaborators
- Calcium oxychloride: A critical review of the literature surrounding the formation, deterioration, testing procedures, and recommended mitigation techniques
- Examining soaking duration of coarse clay and shale lightweight aggregates for internal curing in conventional concrete
- Using compressive strength and mass change to verify the calcium oxychloride threshold in cementitious pastes with fly ash
- Structural performance of concrete bridge decks reinforced with Grade-830 steel bars
- Investigating the Impact of Reducing the Cementitious Content in Bridge Deck Concrete
- Calcium oxychloride: A critical review of the literature surrounding the formation, deterioration, testing procedures, and recommended mitigation techniques
- Using compressive strength and mass change to verify the calcium oxychloride threshold in cementitious pastes with fly ash
- Investigating the Impact of Specimen Size Relating to Calcium Oxychloride Deterioration in Concrete Mixtures
- A Modified Chemical Index to Predict Fly Ash Dosage for Mitigating Alkali-Silica Reaction
- Investigating the Impact of Specimen Size Relating to Calcium Oxychloride Deterioration in Concrete Mixtures
- Calcium oxychloride: A critical review of the literature surrounding the formation, deterioration, testing procedures, and recommended mitigation techniques
- Using compressive strength and mass change to verify the calcium oxychloride threshold in cementitious pastes with fly ash
- A Modified Chemical Index to Predict Fly Ash Dosage for Mitigating Alkali-Silica Reaction
- A Modified Chemical Index to Predict Fly Ash Dosage for Mitigating Alkali-Silica Reaction
- Examining soaking duration of coarse clay and shale lightweight aggregates for internal curing in conventional concrete
- Structural performance of concrete bridge decks reinforced with Grade-830 steel bars
- Structural performance of concrete bridge decks reinforced with Grade-830 steel bars
- Structural performance of concrete bridge decks reinforced with Grade-830 steel bars
- Investigating the Impact of Reducing the Cementitious Content in Bridge Deck Concrete
- Using compressive strength and mass change to verify the calcium oxychloride threshold in cementitious pastes with fly ash
- Investigating the Impact of Specimen Size Relating to Calcium Oxychloride Deterioration in Concrete Mixtures
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