Sun et al., 2024 - Google Patents
Evaluation of flexural toughness of polyurethane concrete incorporating various steel fiber length and contentSun et al., 2024
View PDF- Document ID
- 10003237543026406518
- Author
- Sun Z
- Sun Q
- Liu Y
- Wang Y
- Leng S
- Cui H
- Xu B
- Publication year
- Publication venue
- Journal of Asian Architecture and Building Engineering
External Links
Snippet
Polyurethane concrete has excellent mechanical properties, rapid solidification and durability, but brittle damage is easy to occur at room temperature. To solve the problem of insufficient bending toughness of polyurethane concrete, steel fibers were added into the …
- 239000000835 fiber 0 title abstract description 236
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Ombres | Concrete confinement with a cement based high strength composite material | |
Zaman et al. | A review on FRP composites applications and durability concerns in the construction sector | |
Larrinaga et al. | Non-linear analytical model of composites based on basalt textile reinforced mortar under uniaxial tension | |
Tavares et al. | Creep behaviour of FRP-reinforced polymer concrete | |
Liu et al. | Bond behavior between BFRP bar and recycled aggregate concrete reinforced with basalt fiber | |
Deng et al. | A study of tensile and compressive properties of hybrid basalt‐polypropylene fiber‐reinforced concrete under uniaxial loads | |
Wang et al. | Stress–strain behaviour of hybrid-fibre engineered cementitious composite in compression | |
Gopinath et al. | Behaviour of reinforced concrete beams strengthened with basalt textile reinforced concrete | |
Fallah-Valukolaee et al. | Experimental study for determining applicable models of compressive stress–strain behavior of hybrid synthetic fiber-reinforced high-strength concrete | |
Sena-Cruz et al. | Bond between glulam and NSM CFRP laminates | |
Salih et al. | Concrete beams strengthened with jute fibers | |
Aljazaeri et al. | Flexure performance of RC one-way slabs strengthened with composite materials | |
Sena-Cruz et al. | Bond behavior between glulam and GFRP’s by pullout tests | |
Xu et al. | An indoor laboratory simulation and evaluation on the aging resistance of polyether polyurethane concrete for bridge deck pavement | |
Xiao et al. | Long-term loading behavior of a full-scale glubam bridge model | |
Hassan et al. | Behaviour of concrete beams reinforced using basalt and steel bars under fire exposure | |
Yan et al. | Slender CFST columns strengthened with textile-reinforced engineered cementitious composites under axial compression | |
Ju et al. | Response of glass fiber reinforced polymer (GFRP)-steel hybrid reinforcing bar in uniaxial tension | |
Gao et al. | Study on fatigue test and life prediction of polyurethane cement composite (PUC) under high or low temperature conditions | |
Liu et al. | Experimental investigation on the performance of the asphalt mixture with ceramic fiber | |
Zhu et al. | Laboratory Evaluation on Performance of Fiber‐Modified Asphalt Mixtures Containing High Percentage of RAP | |
Wang et al. | Road Performance of Calcium Sulfate Whisker and Polyester Fiber Composite‐Modified Asphalt Mixture | |
Wang et al. | Investigation of interfacial bonding properties of polyurethane concrete and cement concrete/steel reinforcement | |
Aboutalebi Esfahani et al. | Optimum parafibre length according to mechanical properties in hot mix asphalt | |
Sun et al. | Evaluation of flexural toughness of polyurethane concrete incorporating various steel fiber length and content |