Figure 1.
Micro-Indentation Load-Depth Curve Examples.
Figure 1.
Micro-Indentation Load-Depth Curve Examples.
Figure 2.
Thick Ni-P-NiTi cross-sectional EDS map. (a) Map including Ni, P, and Ti. (b) Map showing Ti exclusively.
Figure 2.
Thick Ni-P-NiTi cross-sectional EDS map. (a) Map including Ni, P, and Ti. (b) Map showing Ti exclusively.
Figure 3.
Micro-Indentation Load-Depth Curve Examples.
Figure 3.
Micro-Indentation Load-Depth Curve Examples.
Figure 4.
Vickers Indent on Coating Surface: (a) Monolithic Ni-P, (b) Ni-P-NiTi Composite Coating.
Figure 4.
Vickers Indent on Coating Surface: (a) Monolithic Ni-P, (b) Ni-P-NiTi Composite Coating.
Figure 5.
Rockwell Indentations on Ni-P Coating: (a) Radial and Hertzian Cracks, (b) Hertzian Cracks.
Figure 5.
Rockwell Indentations on Ni-P Coating: (a) Radial and Hertzian Cracks, (b) Hertzian Cracks.
Figure 6.
Rockwell Indentation on Ni-P-NiTi Coating.
Figure 6.
Rockwell Indentation on Ni-P-NiTi Coating.
Figure 7.
Micrographs of the Different Coatings’ Cross Sections: (a) 45 μm Thick Ni-P Coating, (b) 9 μm Thick Ni-P Coating, (c) 9 μm Thick Ni-P-NiTi Coating, (d) 4 μm Thick Ni-P-NiTi Coating.
Figure 7.
Micrographs of the Different Coatings’ Cross Sections: (a) 45 μm Thick Ni-P Coating, (b) 9 μm Thick Ni-P Coating, (c) 9 μm Thick Ni-P-NiTi Coating, (d) 4 μm Thick Ni-P-NiTi Coating.
Figure 8.
Micrographs of Wear Track from 50 Passes of the Sharp Indenter on 9 μm Thick Ni-P Coating.
Figure 8.
Micrographs of Wear Track from 50 Passes of the Sharp Indenter on 9 μm Thick Ni-P Coating.
Figure 9.
Micrographs of Wear Track from 50 Passes of the Spherical Indenter on 9 μm Thick Ni-P Coating.
Figure 9.
Micrographs of Wear Track from 50 Passes of the Spherical Indenter on 9 μm Thick Ni-P Coating.
Figure 10.
Wear Profiles from the Sharp Indenter on 9 μm Thick Ni−P Coating: (a) 1 Pass, (b) 25 Passes, (c) 50 Passes, (d) 75 Passes, (e) 100 Passes.
Figure 10.
Wear Profiles from the Sharp Indenter on 9 μm Thick Ni−P Coating: (a) 1 Pass, (b) 25 Passes, (c) 50 Passes, (d) 75 Passes, (e) 100 Passes.
Figure 11.
Wear Profiles from the Spherical Indenter on 9 μm Thick Ni−P Coating: (a) 1 Pass, (b) 25 Passes, (c) 50 Passes, (d) 75 Passes, (e) 100 Passes.
Figure 11.
Wear Profiles from the Spherical Indenter on 9 μm Thick Ni−P Coating: (a) 1 Pass, (b) 25 Passes, (c) 50 Passes, (d) 75 Passes, (e) 100 Passes.
Figure 12.
45 μm Thick Ni-P Coating 100 Passes of the Sharp Indenter.
Figure 12.
45 μm Thick Ni-P Coating 100 Passes of the Sharp Indenter.
Figure 13.
9 μm Thick Ni-P Coating 100 Passes of the Sharp Indenter.
Figure 13.
9 μm Thick Ni-P Coating 100 Passes of the Sharp Indenter.
Figure 14.
9 μm Thick Ni-P-NiTi Coating 100 Passes of the Sharp Indenter.
Figure 14.
9 μm Thick Ni-P-NiTi Coating 100 Passes of the Sharp Indenter.
Figure 15.
4 μm Thick Ni-P-NiTi Coating 100 Passes of the Sharp Indenter.
Figure 15.
4 μm Thick Ni-P-NiTi Coating 100 Passes of the Sharp Indenter.
Figure 16.
45 μm Thick Ni-P Coating 100 Passes of the Spherical Indenter.
Figure 16.
45 μm Thick Ni-P Coating 100 Passes of the Spherical Indenter.
Figure 17.
9 μm Thick Ni-P Coating 100 Passes of the Spherical Indenter.
Figure 17.
9 μm Thick Ni-P Coating 100 Passes of the Spherical Indenter.
Figure 18.
9 μm Thick Ni-P-NiTi Coating 100 Passes of the Spherical Indenter.
Figure 18.
9 μm Thick Ni-P-NiTi Coating 100 Passes of the Spherical Indenter.
Figure 19.
4 μm Thick Ni-P-NiTi Coating 100 Passes of the Spherical Indenter.
Figure 19.
4 μm Thick Ni-P-NiTi Coating 100 Passes of the Spherical Indenter.
Figure 20.
Volume Loss from the Sharp Indenter.
Figure 20.
Volume Loss from the Sharp Indenter.
Figure 21.
Volume Loss from the Spherical Indenter.
Figure 21.
Volume Loss from the Spherical Indenter.
Figure 22.
Wear Rates from Wear Tests.
Figure 22.
Wear Rates from Wear Tests.
Figure 23.
One hundred Passes of the Sharp Indenter on the Surface of: (a) 45 μm Thick Ni-P, (b) 9 μm Thick Ni-P, (c) 9 μm Thick Ni-P-NiTi, (d) 4 μm Thick Ni-P-NiTi.
Figure 23.
One hundred Passes of the Sharp Indenter on the Surface of: (a) 45 μm Thick Ni-P, (b) 9 μm Thick Ni-P, (c) 9 μm Thick Ni-P-NiTi, (d) 4 μm Thick Ni-P-NiTi.
Figure 24.
One hundred Passes of the Spherical Indenter on the Surface of: (a) 45 μm Thick Ni-P, (b) 9 μm Thick Ni-P, (c) 9 μm Thick Ni-P-NiTi, (d) 4 μm Thick Ni-P-NiTi.
Figure 24.
One hundred Passes of the Spherical Indenter on the Surface of: (a) 45 μm Thick Ni-P, (b) 9 μm Thick Ni-P, (c) 9 μm Thick Ni-P-NiTi, (d) 4 μm Thick Ni-P-NiTi.
Figure 25.
SEM Image of Hertzian Crack, Delamination, and Particle Removal on the 100 Pass Wear Track on the 4 μm Thick Ni-P-NiTi Coating.
Figure 25.
SEM Image of Hertzian Crack, Delamination, and Particle Removal on the 100 Pass Wear Track on the 4 μm Thick Ni-P-NiTi Coating.
Figure 26.
Illustration of Wear Debris from Intersecting Hertzian Crack and Subsurface Crack.
Figure 26.
Illustration of Wear Debris from Intersecting Hertzian Crack and Subsurface Crack.
Figure 27.
SEM Image of Material Layers on the 100 Pass Wear Track on the 4 μm Thick Ni-P-NiTi Coating.
Figure 27.
SEM Image of Material Layers on the 100 Pass Wear Track on the 4 μm Thick Ni-P-NiTi Coating.
Figure 28.
SEM Image of Delamination, Particle Removal and Particle-Crack Interaction on the 100 Pass Wear Track on the 4 μm Thick Ni-P-NiTi Coating.
Figure 28.
SEM Image of Delamination, Particle Removal and Particle-Crack Interaction on the 100 Pass Wear Track on the 4 μm Thick Ni-P-NiTi Coating.
Figure 29.
Image of Particle-Crack Interaction on the 100 Pass Wear Track on the 4 μm Thick Ni-P-NiTi Coating.
Figure 29.
Image of Particle-Crack Interaction on the 100 Pass Wear Track on the 4 μm Thick Ni-P-NiTi Coating.
Figure 30.
Representative Illustration of the Crack Deflection Mechanism During Sliding Wear.
Figure 30.
Representative Illustration of the Crack Deflection Mechanism During Sliding Wear.
Figure 31.
Representative Illustration of the Crack Around Particle Mechanism During Sliding Wear.
Figure 31.
Representative Illustration of the Crack Around Particle Mechanism During Sliding Wear.
Table 1.
Monolithic Ni-P Coating Vickers Hardness Measurement [
25].
Table 1.
Monolithic Ni-P Coating Vickers Hardness Measurement [
25].
Weight % | AISI 1018 | API X100 |
---|
C | 0.182 | 0.103 |
Mn | 0.754 | 1.221 |
Cu | 0.186 | 0.009 |
Cr | 0.181 | 0.070 |
Si | 0.095 | 0.121 |
P | 0.040 | 0.010 |
Fe | Balance | Balance |
Table 2.
Substrate Preparation.
Table 2.
Substrate Preparation.
1. Grinding | 240, 320, 400, and 600 grit SiC papers were used |
2. Polishing | 9 μm, 3 μm, and 1 μm diamond suspensions were used |
3. Alkali Cleaning | Submerged for 5 min in an alkaline solution that was heated to 85 °C The solution had a composition of 30 g/L Na3PO4, 50 g/L Na2CO3 and 30 g/L NaOH |
4. Acid Cleaning | Submerged for 10 s in room temperature 20%vol H2SO4 |
Table 3.
Coating Compositions from EDS Analysis.
Table 3.
Coating Compositions from EDS Analysis.
| Thin Ni-P | Thick Ni-P | Thin Ni-P-NiTi | Thick Ni-P-NiTi |
---|
Nickel | 95.49% | 94.31% | 92.51% | 92.365% |
Phosphorous | 4.595% | 5.69% | 6.125% | 6.015% |
Titanium | 0% | 0% | 1.365% | 1.62% |
Table 4.
Monolithic Ni-P Coating Vickers Hardness Measurement.
Table 4.
Monolithic Ni-P Coating Vickers Hardness Measurement.
Measurement Point ID | Hardness (GPa) | Elastic Modulus (GPa) | Maximum Indenter Depth |
---|
1 | 2.61 | 100.7 | 10 μm |
2 | 3.63 | 122.4 | 9 μm |
3 | 6.67 | 165.7 | 7 μm |
4 | 7.15 | 160.1 | 7 μm |
5 | 6.64 | 151.0 | 7 μm |
6 | 5.89 | 125.2 | 7 μm |
7 | 7.66 | 173.71 | 6.5 μm |
Average | 5.75 | 142.68 | 7.64 μm |
Table 5.
Ni-P-NiTi Composite Coating Vickers Hardness Measurements.
Table 5.
Ni-P-NiTi Composite Coating Vickers Hardness Measurements.
Measurement Point ID | Hardness (GPa) | Elastic Modulus (GPa) | Maximum Indenter Depth |
---|
1 | 3.44 | 108.22 | 9 μm |
2 | 2.53 | 88.14 | 11 μm |
3 | 2.60 | 70.96 | 11 μm |
4 | 3.67 | 102.48 | 9 μm |
5 | 4.12 | 111.36 | 9 μm |
6 | 4.97 | 117.64 | 8 μm |
Average | 3.55 | 99.80 | 9.5 μm |
Table 6.
Experimental Data Compared to Typical Values.
Table 6.
Experimental Data Compared to Typical Values.
| Hardness (GPa) | Elastic Modulus (GPa) |
---|
Experimental Ni-P | 5.75 ± 1.90 | 142.68 ± 26.89 |
Typical Ni-P | 5–6.5 | 140–160 |
Experimental Ni-P-NiTi | 3.55 ± 0.93 | 99.80 ± 17.31 |
Typical NiTi | 2.8–3.2 | 70–100 |
AISI 1018 | 1.7–2 | 200 |
Table 7.
Percent Difference in Wear Rate for Coating Thicknesses.
Table 7.
Percent Difference in Wear Rate for Coating Thicknesses.
| Sharp Indenter | Spherical Indenter |
---|
Monolithic Ni-P | 129.2% | 105.5% |
Nanocomposite Ni-P-NiTi | 155.4% | 137.0% |