| Literature DB >> 36233868 |
Michał Marcin Bakalarz1, Paweł Grzegorz Kossakowski1.
Abstract
This paper presents the results of experimental research on full-size laminated veneer lumber (LVL) beams unreinforced and reinforced with CFRP sheets. The nominal dimensions of the tested beams were 45 mm × 200 mm × 3400 mm. The beams were reinforced using the so-called U-type reinforcement in three configurations, differing from each other in the thickness of the reinforcement and the side surface coverage. An epoxy resin adhesive was used to bond all the components together. A four-point static bending test was performed according to the guidelines in the relevant European standards. The effectiveness of the reinforcement increased with the level of coverage of the side surface and the level of reinforcement. The average increases of bending resistance were 42%, 51% and 58% for configurations B, C and D, respectively. The average value of bending stiffness increased for the beams of series B, C and D by 15%, 31% and 43%, respectively. Their failure mode changed from brittle fracture initiated in the tensile zone for unreinforced beams to more ductile fracture, initiated in the compression zone. The influence of the coverage of the side surface by the CFRP sheet and reinforcement ratio on the mechanism of failure and effectiveness of strengthening was studied in the article.Entities:
Keywords: carbon fiber; composites; load-bearing capacity; reinforcement; stiffness; wood structures
Year: 2022 PMID: 36233868 PMCID: PMC9572062 DOI: 10.3390/ma15196526
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.748
Selected mechanical and physical properties of LVL [32].
| Parameter | Value |
|---|---|
| Bending strength (edgewise condition) | 44 |
| Modulus of elasticity (parallel to grain) | 14 |
| Tension strength (parallel to grain) | 36 |
| Compression strength (parallel to grain) | 40 |
| Mean value of density | 550 |
Material parameters of CFRP sheet [33].
| Parameter | Value |
|---|---|
| Modulus of elasticity | 265 |
| Tensile strength | 5100 |
| Density | 1800 |
| Elongation at rupture | 1.7–1.9 |
| Design thickness | 0.333 |
Technical data of epoxy resin [33].
| Parameter | Value |
|---|---|
| Modulus of elasticity | 3200 |
| Density | 1200–1300 |
| Compressive strength | 100 |
Figure 1Strengthening configurations and schematic of the test setup.
Figure 2Image of the test setup.
Average moisture content value of laminated veneer lumber in each series.
| Series | A | B | C | D |
|---|---|---|---|---|
| Moisture content [%] | 14.0 | 14.1 | 12.7 | 13.8 |
Figure 3Load-deflection curves of B series beams.
Figure 4Load-deflection curves of C series beams.
Figure 5Load-deflection curves of D series beams.
Series A test results.
| Parameter | Beam | Mean Value | ||||
|---|---|---|---|---|---|---|
| A1 | A2 | A3 | A4 | A5 | ||
| 36.87 | 35.33 | 38.89 | 42.36 | 36.08 | 37.91 ± 1.90 | |
| 16.59 | 15.90 | 17.50 | 19.06 | 16.24 | 17.06 ± 1.27 | |
| - | 36.06 | 39.10 | 43.56 | - | 39.57 ± 3.77 | |
| Failure mode | Tension | Tension | Tension | Tension | Tension | - |
Series B test results.
| Parameter | Beam | Mean Value | ||||
|---|---|---|---|---|---|---|
| B1 | B2 | B3 | B4 | B5 | ||
| 53.39 | 52.83 | 54.39 | 55.88 | 53.27 | 53.96 ± 1.22 (+42%) | |
| 24.03 | 23.77 | 24.48 | 25.15 | 23.97 | 24.28 ± 0.55 (+42%) | |
| 58.20 | 56.64 | 53.44 | 58.07 | 54.87 | 56.24 ± 2.07 (+42%) | |
| Failure mode | Compression + tension + rupture of CFRP sheet | Compression (lateral torsional buckling) | Compression + tension + rupture of CFRP sheet | Compression (lateral torsional buckling) | Compression (lateral torsional buckling) | - |
Series C test results.
| Parameter | Beam | Mean Value | ||||
|---|---|---|---|---|---|---|
| C1 | C2 | C3 | C4 | C5 | ||
| 53.32 | 62.21 | 54.86 | 61.01 | 54.27 | 57.13 ± 4.14 (+51%) | |
| 23.99 | 27.99 | 24.69 | 27.45 | 24.42 | 25.71 ± 1.86 (+51%) | |
| 49.93 | 56.64 | 53.79 | 55.60 | 45.53 | 52.89 ± 5.05 (+34%) | |
| Failure mode | Compression (lateral torsional buckling) | Compression + delamination of CFRP sheet | Compression + delamination of CFRP sheet | Compression + shear of CFRP sheet | Compression + delamination of CFRP sheet | - |
Series D test results.
| Parameter | Beam | Mean Value | ||||
|---|---|---|---|---|---|---|
| D1 | D2 | D3 | D4 | D5 | ||
| 58.33 | 63.87 | 59.99 | 62.48 | 55.18 | 59.97 ± 3.43 (+58%) | |
| 26.25 | 28.74 | 26.99 | 28.11 | 24.83 | 26.98 ± 1.55 (+58%) | |
| 59.23 | 57.22 | 48.24 | 51.88 | 46.39 | 52.59 ± 5.55 (+33%) | |
| Failure mode | Compression + shear of CFRP sheet | Compression + delamination of CFRP sheet | Compression + shear of CFRP sheet | Compression + rupture of CFRP sheet | Compression + delamination of CFRP sheet | - |
Average values of stiffness coefficient k.
| Parameter | Series | |||
|---|---|---|---|---|
| A | B | C | D | |
| 0.900 ± 0.022 | 1.036 ± 0.046 (+15%) | 1.182 ± 0.025 (+31%) | 1.283 ± 0.101 (+43%) | |
Figure 6Failure modes: (a) tension (beam A4); (b) compression (beam C2); (c) compression + tension + rupture of CFRP sheet (beam B3); (d) shear of composite sheet + compression (beam D3); (e) compression + sheet delamination (beam D2).
Figure 7Transformed cross section of beam B3
Analytical analysis results.
| Parameter | Series | |||
|---|---|---|---|---|
| A | B | C | D | |
| 0.100 | 0.108 | 0.114 | 0.108 | |
| 3.45 × 10−7 | 3.45 × 10−7 | 3.84 × 10−7 | 4.54 × 10−7 | |
| 57.83 | 72.33 | 68.20 | 59.97 | |