Figure 1.
Pasting of strain gauges in the grooving method.
Figure 1.
Pasting of strain gauges in the grooving method.
Figure 2.
Force diagram of a rectangular section component.
Figure 2.
Force diagram of a rectangular section component.
Figure 3.
Rectangular section subjected to torsion.
Figure 3.
Rectangular section subjected to torsion.
Figure 4.
Shear stress distribution of rectangular section subjected to torsion.
Figure 4.
Shear stress distribution of rectangular section subjected to torsion.
Figure 5.
Rectangular section subjected to shear force.
Figure 5.
Rectangular section subjected to shear force.
Figure 6.
Steel bar position of rectangular section components.
Figure 6.
Steel bar position of rectangular section components.
Figure 7.
Configuration of test specimens.
Figure 7.
Configuration of test specimens.
Figure 8.
Design details of test specimens.
Figure 8.
Design details of test specimens.
Figure 9.
Axial compression test setup.
Figure 9.
Axial compression test setup.
Figure 10.
Pure torsion test setup.
Figure 10.
Pure torsion test setup.
Figure 11.
Bending-shear-torsion test setup.
Figure 11.
Bending-shear-torsion test setup.
Figure 12.
Groove cutting.
Figure 12.
Groove cutting.
Figure 13.
Meshing of the FE model.
Figure 13.
Meshing of the FE model.
Figure 14.
Stress release curve of normal stress.
Figure 14.
Stress release curve of normal stress.
Figure 15.
Stress release curve of shear stress.
Figure 15.
Stress release curve of shear stress.
Figure 16.
Curve of groove depth versus groove side length when shear stress is released to zero.
Figure 16.
Curve of groove depth versus groove side length when shear stress is released to zero.
Figure 17.
Arrangement of strain gauges for group C1.
Figure 17.
Arrangement of strain gauges for group C1.
Figure 18.
Test diagram of group C2.
Figure 18.
Test diagram of group C2.
Figure 19.
Residual strain rate of normal stress versus groove depth.
Figure 19.
Residual strain rate of normal stress versus groove depth.
Figure 20.
Test diagram of group C3.
Figure 20.
Test diagram of group C3.
Figure 21.
Test diagram of group C4.
Figure 21.
Test diagram of group C4.
Figure 22.
Residual strain rate of shear stress versus groove depth.
Figure 22.
Residual strain rate of shear stress versus groove depth.
Figure 23.
Test diagram of group C5.
Figure 23.
Test diagram of group C5.
Table 1.
Factors β1 and υ1 of rectangular section subjected to torsion.
Table 1.
Factors β1 and υ1 of rectangular section subjected to torsion.
a/b | 1 | 1.2 | 1.5 | 1.75 | 2.0 | 2.5 | 3 | 4 | 6 | 8 | 10 | ∞ |
---|
β1 | 0.208 | 0.219 | 0.231 | 0.239 | 0.246 | 0.258 | 0.267 | 0.282 | 0.299 | 0.307 | 0.312 | 0.333 |
υ1 | 1.000 | 0.930 | 0.859 | 0.820 | 0.795 | 0.766 | 0.753 | 0.745 | 0.743 | 0.742 | 0.742 | 0.742 |
Table 2.
Shear stress factor of the rectangular section.
Table 2.
Shear stress factor of the rectangular section.
a/b | 0.6 | 0.8 | 1.0 | 1.2 | 1.4 | 1.6 | 1.8 | 2.0 |
---|
| 0.125 | 0.067 | 0.035 | 0.019 | 0.010 | 0.005 | 0.003 | 0.002 |
Table 3.
Torsional position factor ηi of steel bars.
Table 3.
Torsional position factor ηi of steel bars.
b (mm) | Steel Bars |
---|
1# | 2# | 3# | 4# |
---|
100 | 0.002 | 0.130 | 0.195 | 0.200 |
200 | 0.002 | 0.264 | 0.523 | 0.593 |
250 | 0.002 | 0.269 | 0.566 | 0.665 |
300 | 0.002 | 0.270 | 0.589 | 0.709 |
350 | 0.002 | 0.269 | 0.602 | 0.738 |
400 | 0.002 | 0.269 | 0.611 | 0.757 |
450 | 0.002 | 0.268 | 0.617 | 0.770 |
500 | 0.002 | 0.268 | 0.621 | 0.779 |
Table 4.
Shear position factor λi of steel bars.
Table 4.
Shear position factor λi of steel bars.
b (mm) | Steel Bars |
---|
1# | 2# | 3# | 4# |
---|
100 | 0.291 | 0.291 | 0.745 | 0.994 |
200 | 0.283 | 0.289 | 0.738 | 0.983 |
250 | 0.278 | 0.289 | 0.735 | 0.978 |
300 | 0.273 | 0.289 | 0.732 | 0.973 |
350 | 0.267 | 0.288 | 0.730 | 0.969 |
400 | 0.261 | 0.288 | 0.727 | 0.964 |
450 | 0.255 | 0.288 | 0.725 | 0.960 |
500 | 0.249 | 0.287 | 0.723 | 0.956 |
Table 5.
Test contents.
Specimen Group | Force State | Concrete Strength Grade | Design Load | Test Objective |
---|
C1 | No external force | C20(C1-1) C30(C1-2) C40(C1-3) | — | |
C2 | Axial compression | C30(C2-1~3) | Fz = −437.5 kN | |
C3 | Bidirectional small eccentric compression | C30(C3-1~3) | Fz = −240 kN Mx = 15.6 kN·m My = 15.6 kN·m | |
C4 | Pure torsion | C30(C4-1~3) | Mz = 6.5 kN·m | |
C5 | Bending-shear-torsion | C30(C5-1~3) | Mx = −4.95 kN·m Fy = 9 kN Mz = 4.5 kN·m | |
Table 6.
Measured material properties.
Table 6.
Measured material properties.
Material | Compressive Strength (MPa) | Young’s Modulus (MPa) | Shear Modulus (MPa) | Poisson’s Ratio |
---|
C30 Concrete | 32.1 | 2.91 × 104 | 1.21 × 104 | 0.2 |
HRB335 Steel | — | 2.00 × 105 | 7.69 × 104 | — |
Table 7.
Normal stress at different groove depths.
Table 7.
Normal stress at different groove depths.
Groove Depth (mm) | 0 | 5 | 10 | 15 | 20 | 25 | 30 | 35 | 40 | 45 | 50 | 55 | 60 |
---|
Normal stress (MPa) | −6.326 | −5.483 | −3.545 | −1.458 | 0.019 | 1.037 | 1.418 | 1.455 | 1.309 | 1.088 | 0.854 | 0.648 | 0.438 |
Table 8.
Groove depths for different groove side lengths when normal stress is released to zero.
Table 8.
Groove depths for different groove side lengths when normal stress is released to zero.
Groove Side Length (mm) | 30 | 40 | 50 | 60 | 70 |
---|
Groove depth (mm) | 10 | 13.3 | 16.7 | 20.0 | 23.3 |
Depth/side length | 0.33 | 0.33 | 0.33 | 0.33 | 0.33 |
Table 9.
Shear stress at different groove depths.
Table 9.
Shear stress at different groove depths.
Groove Depth (mm) | 0 | 5 | 10 | 15 | 20 | 25 | 30 | 35 | 40 | 45 | 50 | 55 | 60 |
---|
Shear stress (MPa) | 2.785 | 2.683 | 2.374 | 1.897 | 1.367 | 0.887 | 0.511 | 0.247 | 0.037 | −0.023 | −0.073 | −0.092 | −0.093 |
Table 10.
Groove depths for different groove side lengths when shear stress is released to zero.
Table 10.
Groove depths for different groove side lengths when shear stress is released to zero.
Groove Side Length (mm) | 30 | 40 | 50 | 60 | 70 |
---|
Groove depth (mm) | 17.3 | 24.7 | 32.5 | 42.0 | 53.0 |
Depth/side length | 0.58 | 0.62 | 0.65 | 0.70 | 0.76 |
Table 11.
Relationship between residual strain rate (%) and groove depth under different reinforcement ratios.
Table 11.
Relationship between residual strain rate (%) and groove depth under different reinforcement ratios.
| Groove Depth (mm) | 0 | 10 | 20 | 30 | 40 | 50 | 60 |
---|
Reinforcement Ratio | |
---|
Normal strain | ρ = 2.56% | 100.0 | 59.1 | 0.0 | −23.7 | −22.3 | −14.3 | −7.5 |
ρ = 0.00% | 100.0 | 59.2 | 0.0 | −23.9 | −22.5 | −14.5 | −7.6 |
Shear strain | ρ = 2.56% | 100.0 | 86.6 | 50.0 | 17.7 | 1.5 | −3.8 | −4.2 |
ρ = 0.00% | 100.0 | 86.8 | 50.5 | 18.1 | 1.7 | −3.7 | −4.2 |
Table 12.
Mean values of disturbance strain (με).
Table 12.
Mean values of disturbance strain (με).
Specimen/Concrete Strength Grade | C1-1/C20 | C1-2/C30 | C1-3/C40 |
---|
Groove depth | 20 mm | 42 mm | 20 mm | 42 mm | 20 mm | 42 mm |
Normal strain | −24 | — | −17 | — | −13 | — |
Shear strain | — | −43 | — | −34 | — | −23 |
Table 13.
Residual strain rate of normal stress under different groove depths (%).
Table 13.
Residual strain rate of normal stress under different groove depths (%).
| Groove Depth (mm) | 0 | 5 | 10 | 15 | 20 | 25 | 30 | 35 | 40 |
---|
Number | |
---|
1# | 100 | 85.7 | 59.5 | 24.4 | −3.57 | −15.5 | −19.6 | −24.4 | −16.1 |
2# | 100 | 86.5 | 59.8 | 25.9 | 5.18 | −17.1 | −19.9 | −25.9 | −18.7 |
3# | 100 | 89.6 | 48.3 | 24.4 | 3.48 | −14.4 | −24.9 | −27.4 | −19.9 |
4# | 100 | 82.1 | 53.8 | 21.1 | −3.59 | −15.7 | −25.6 | −23.8 | −20.2 |
5# | 100 | 85.8 | 54.9 | 24.5 | 0.00 | −16.7 | −20.1 | −22.5 | −24.5 |
6# | 100 | 84.3 | 56.7 | 25.3 | 5.06 | −14.6 | −20.2 | −23.6 | −24.2 |
Table 14.
Results of calculated and modified released strain values (με) of group C2.
Table 14.
Results of calculated and modified released strain values (με) of group C2.
Strain Gauge Number | Released Strain | Disturbance Strain Correction | Modified Released Strain |
---|
7# | −204 | −17 | −221 |
8# | −149 | −17 | −166 |
9# | −183 | −17 | −200 |
10# | −204 | −17 | −221 |
11# | −208 | −17 | −225 |
12# | −158 | −17 | −175 |
Table 15.
Results of the axial force identification of group C2.
Table 15.
Results of the axial force identification of group C2.
Specimen Number | Actual Axial Force | Identified Axial Force | Error |
---|
C2-1 | Fz = 414.2 kN | Fz = 385.6 kN | 6.90% |
C2-2 | Fz = 414.2 kN | Fz = 419.4 kN | 1.30% |
C2-3 | Fz = 414.2 kN | Fz = 398.5 kN | 3.80% |
Table 16.
Results of calculated and modified released strain values (με) of group C3.
Table 16.
Results of calculated and modified released strain values (με) of group C3.
Strain Gauge Number | Released Strain | Disturbance Strain Correction | Modified Released Strain |
---|
1# | −315 | −17 | −332 |
2# | 92 | −17 | 75 |
3# | −324 | −17 | −341 |
4# | 68 | −17 | 51 |
5# | −315 | −17 | −332 |
6# | 69 | −17 | 52 |
7# | −339 | −17 | −356 |
8# | 85 | −17 | 68 |
9# | −304 | −17 | −321 |
10# | 78 | −17 | 61 |
11# | −286 | −17 | −303 |
12# | 82 | −17 | 65 |
Table 17.
Results of the internal force identification of group C3.
Table 17.
Results of the internal force identification of group C3.
Specimen Number | Actual Internal Force | Identified Internal Force | Error |
---|
C3-1 | Fz = 280.2 kN | Fz = 256.1 kN | 8.60% |
Mx = 18.2 kN·m | Mx = 16.9 kN·m | 7.10% |
My = 18.2 kN·m | My = 17.5 kN·m | 3.80% |
C3-2 | Fz = 275.5 kN | Fz = 287.0 kN | 4.20% |
Mx = 17.9 kN·m | Mx = 18.2 kN·m | 1.80% |
My = 17.9 kN·m | My = 16.5 kN·m | 7.80% |
C3-3 | Fz = 257.7 kN | Fz = 237.1 kN | 8.00% |
Mx = 16.8 kN·m | Mx = 15.8 kN·m | 6.00% |
My = 16.8 kN·m | My = 16.4 kN·m | 2.40% |
Table 18.
Residual strain rate of shear stress under different groove depths (%).
Table 18.
Residual strain rate of shear stress under different groove depths (%).
| Groove Depth (mm) | 0 | 5 | 10 | 15 | 20 | 25 | 30 | 35 | 40 | 45 | 50 | 55 | 60 |
---|
Number | |
---|
1# | 100 | 97.9 | 88.4 | 64.2 | 53.7 | 33.7 | 21.1 | 10.5 | 3.16 | −2.11 | −3.16 | −3.16 | −2.11 |
2# | 100 | 95.2 | 83.3 | 65.5 | 50.0 | 25.0 | 17.9 | 4.76 | −3.57 | −3.57 | −5.95 | −4.76 | −4.76 |
3# | 100 | 92.1 | 79.8 | 70.2 | 50.9 | 26.3 | 16.7 | 10.5 | 5.26 | −3.51 | −5.26 | −4.39 | −1.75 |
4# | 100 | 94.9 | 88.5 | 59.0 | 44.9 | 33.3 | 21.8 | 7.69 | −1.28 | −2.56 | −1.28 | −1.28 | −1.28 |
5# | 100 | 96.6 | 88.8 | 64.0 | 42.7 | 29.2 | 15.7 | 10.1 | 4.49 | −3.37 | −3.37 | −2.25 | −1.12 |
6# | 100 | 91.4 | 82.8 | 69.9 | 46.2 | 32.3 | 20.4 | 7.53 | 2.15 | −1.08 | −1.08 | −3.23 | −2.15 |
Table 19.
Results of calculated and modified released strain values (με) of group C4.
Table 19.
Results of calculated and modified released strain values (με) of group C4.
Strain Gauge Number | Released Strain | Disturbance Strain Correction | Modified Released Strain |
---|
7# | 101 | −34 | 67 |
8# | −72 | −34 | −106 |
9# | 119 | −34 | 85 |
10# | −80 | −34 | −114 |
11# | 103 | −34 | 69 |
12# | −80 | −34 | −114 |
Table 20.
Results of the torque identification of group C4.
Table 20.
Results of the torque identification of group C4.
Specimen Number | Actual Torque | Identified Torque | Error |
---|
C4-1 | Mz = 9.1 kN·m | Mz = 7.3 kN·m | 19.80% |
C4-2 | Mz = 9.1 kN·m | Mz = 8.4 kN·m | 7.70% |
C4-3 | Mz = 9.1 kN·m | Mz = 7.7 kN·m | 15.40% |
Table 21.
Results of calculated and modified released strain values (με) of group C5.
Table 21.
Results of calculated and modified released strain values (με) of group C5.
Strain Gauge Number | Released Strain | Disturbance Strain Correction | Modified Released Strain |
---|
1# | 95 | −17 | 78 |
2# | −76 | −17 | −93 |
3# | 76 | −34 | 42 |
4# | −12 | −34 | −46 |
5# | 79 | −34 | 45 |
6# | −10 | −34 | −44 |
7# | 86 | −17 | 69 |
8# | −88 | −17 | −105 |
9# | 129 | −34 | 95 |
10# | −13 | −34 | −47 |
11# | 82 | −34 | 48 |
12# | −5 | −34 | −39 |
13# | 89 | −17 | 72 |
14# | −74 | −17 | −91 |
15# | 68 | −34 | 34 |
16# | −2 | −34 | −36 |
17# | 77 | −34 | 43 |
18# | −2 | −34 | −36 |
Table 22.
Results of the internal force identification of group C5.
Table 22.
Results of the internal force identification of group C5.
Specimen Number | Actual Internal Force | Identified Internal Force | Error |
---|
C5-1 | Mx = 7.92 kN·m | Mx = 7.36 kN·m | 7.10% |
Mz = 7.2 kN·m | Mz = 6.61 kN·m | 8.20% |
Fy = 14.4 kN | Fy = 0.49 kN | — |
C5-2 | Mx = 7.92 kN·m | Mx = 7.49 kN·m | 5.40% |
Mz = 7.2 kN·m | Mz = 8.95 kN·m | 24.30% |
Fy = 14.4 kN | Fy = 4.43 kN | — |
C5-3 | Mx = 7.92 kN·m | Mx = 7.01 kN·m | 11.50% |
Mz = 7.2 kN·m | Mz = 5.72 kN·m | 20.60% |
Fy = 14.4 kN | Fy = 3.45 kN | — |