| Literature DB >> 28773824 |
Weimin Song1, Jian Yin2.
Abstract
Fiber reinforcement is an important method to enhance the performance of concrete. In this study, the compressive test and impact test were conducted, and then the hybrid effect between steel fiber (SF) and carbon fiber (CF) was evaluated by employing the hybrid effect index. Compressive toughness and impact toughness of steel fiber reinforced concrete (SFRC), carbon fiber reinforced concrete (CFRC) and hybrid fiber reinforced concrete (HFRC) were explored at steel fiber volume fraction 0.5%, 1%, 1.5% and carbon fiber 0.1%, 0.2%, 0.3%. Results showed that the addition of steel fiber and carbon fiber can increase the compressive strength. SF, CF and the hybridization between them could increase the compressive toughness significantly. The impact test results showed that as the volume of fiber increased, the impact number of the first visible crack and the ultimate failure also increased. The improvement of toughness mainly lay in improving the crack resistance after the first crack. Based on the test results, the positive hybrid effect of steel fiber and carbon fiber existed in hybrid fiber reinforced concrete. The relationship between the compressive toughness and impact toughness was also explored.Entities:
Keywords: carbon fiber; compressive toughness; hybrid effect; hybrid fiber reinforced concrete; impact toughness; steel fiber
Year: 2016 PMID: 28773824 PMCID: PMC5512526 DOI: 10.3390/ma9080704
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Chemical components of the cement and fly ash.
| Components | Cement | Fly Ash |
|---|---|---|
| 21.38 | 50.15 | |
| 5.63 | 30.51 | |
| 3.56 | 2.08 | |
| 63.72 | 12.5 | |
| 2.15 | 0.088 | |
| 1.75 | 0.4 | |
| 1.02 | 1.32 | |
| LOI (%) | 0.79 | 1.13 |
| Total (%) | 100 | 98.2 |
Where LOI is the abbreviation of Loss on Ignition.
Figure 1Aggregate gradation.
Figure 2Steel fiber and carbon fiber.
Properties of steel fiber and carbon fiber.
| Fiber | Density | Length | Elastic Modulus | Tensile Strength |
|---|---|---|---|---|
| SF | 7.9 | 18 | 200 | 1150 |
| CF | 1.83 | 10 | 276 | 3000 |
Properties of steel fiber and carbon fiber.
| No. | C | FA | W | S | G | Sp | SF | CF | Slump |
|---|---|---|---|---|---|---|---|---|---|
| NC | 370 | 50 | 192 | 767 | 1071 | 4.2 | – | – | 165 |
| SF0.5 | 370 | 50 | 192 | 767 | 1071 | 4.2 | 40 | – | 153 |
| SF1.0 | 370 | 50 | 192 | 767 | 1071 | 4.2 | 80 | – | 129 |
| SF1.5 | 370 | 50 | 192 | 767 | 1071 | 4.2 | 120 | – | 104 |
| CF0.1 | 370 | 50 | 192 | 767 | 1071 | 4.2 | – | 2 | 129 |
| CF0.2 | 370 | 50 | 192 | 767 | 1071 | 4.2 | – | 4 | 115 |
| CF0.3 | 370 | 50 | 192 | 767 | 1071 | 4.2 | – | 6 | 94 |
| SF0.5-CF0.1 | 370 | 50 | 192 | 767 | 1071 | 4.2 | 40 | 2 | 118 |
| SF0.5-CF0.2 | 370 | 50 | 192 | 767 | 1071 | 4.2 | 40 | 4 | 101 |
| SF1.0-CF0.1 | 370 | 50 | 192 | 767 | 1071 | 4.2 | 80 | 2 | 98 |
| SF1.0-CF0.2 | 370 | 50 | 192 | 767 | 1071 | 4.2 | 80 | 4 | 94 |
| SF1.5-CF0.1 | 370 | 50 | 192 | 767 | 1071 | 4.2 | 120 | 2 | 86 |
Annotation: C—cement; FA—fly ash; W—water; S—sand; G—gravel aggregate; Sp—superplasticizer; SF—steel fiber; CF—carbon fiber; SF1.5-CF0.1 represents the concrete with 1.5% steel fiber and 0.1% carbon fiber addition.
Figure 3Hydraulic servo testing machine.
Figure 4Stress-strain curve.
Figure 5Impact test.
Figure 6Compressive strength.
Figure 7Compressive toughness.
Figure 8Linear regression between volume fiber and compression toughness.
Figure 9Hybrid effect index of compression toughness.
Figure 10Test result of impact test.
Figure 11Impact toughness difference.
Figure 12Linear regression bewteen volumes and impact toughness.
Figure 13Hybrid effect index of impact toughness.
Figure 14Relationship between compression toughness and impact toughness.