2021
DOI: 10.1007/s11665-021-05620-8
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Insight into the Mechanical Properties and Fracture Behavior of Pt3Al Coating by Experiment and Theoretical Simulation

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Cited by 23 publications
(9 citation statements)
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“…In order to investigate the mechanical parameters of Zr 4 C 4 , bulk modulus B (Pa), shear modulus G (Pa), Young's modulus E (Pa), Poisson's ratio ν , G / B ratio, Cauchy pressure C′ (Pa), universal anisotropy index A u , hardness H (Pa), and machinability index μ M for a polycrystalline material with cubic crystal system can be calculated from by using Voigt–Reuss–Hill approximations [48–55], as follows: Bgoodbreak=BVgoodbreak=BRgoodbreak=C11+2C123 GVgoodbreak=C11C12+3C445 GRgoodbreak=5()C11goodbreak−C120.25emC444C44+3()C11goodbreak−C12 Ggoodbreak=GV+GR2 Egoodbreak=9italicBG3B+G vgoodbreak=3B2G2()3Bgoodbreak+G Cgoodbreak=C12C442 Augoodbreak=5GnormalVGnormalRgoodbreak+BnormalVBnormalRgoodbreak−6 …”
Section: Resultsmentioning
confidence: 99%
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“…In order to investigate the mechanical parameters of Zr 4 C 4 , bulk modulus B (Pa), shear modulus G (Pa), Young's modulus E (Pa), Poisson's ratio ν , G / B ratio, Cauchy pressure C′ (Pa), universal anisotropy index A u , hardness H (Pa), and machinability index μ M for a polycrystalline material with cubic crystal system can be calculated from by using Voigt–Reuss–Hill approximations [48–55], as follows: Bgoodbreak=BVgoodbreak=BRgoodbreak=C11+2C123 GVgoodbreak=C11C12+3C445 GRgoodbreak=5()C11goodbreak−C120.25emC444C44+3()C11goodbreak−C12 Ggoodbreak=GV+GR2 Egoodbreak=9italicBG3B+G vgoodbreak=3B2G2()3Bgoodbreak+G Cgoodbreak=C12C442 Augoodbreak=5GnormalVGnormalRgoodbreak+BnormalVBnormalRgoodbreak−6 …”
Section: Resultsmentioning
confidence: 99%
“…As shown in Table 3, our theoretical elastic constants are consistent with the experimental values [45,46] and other theoretical results [34,35,47]. By comparing the three elastic constants, we find that C In order to investigate the mechanical parameters of Zr 4 C 4 , bulk modulus B (Pa), shear modulus G (Pa), Young's modulus E (Pa), Poisson's ratio ν, G/B ratio, Cauchy pressure C 0 (Pa), universal anisotropy index A u , hardness H (Pa), and machinability index μ M for a polycrystalline material with cubic crystal system can be calculated from by using Voigt-Reuss-Hill approximations [48][49][50][51][52][53][54][55], as follows:…”
Section: Mechanical and Thermal Propertiesmentioning
confidence: 99%
“…51,52 The valence electron contributions of Mo, Ta, Si, and C were 4d 5 5s, 1 5d 3 6s, 2 3s 2 p 2 , and 2s 2 2p. 2 To ensure the accuracy, the cutoff can be set to 400 eV. The Monkhorst-pack scheme is applied to the k points of the grid dividing the Brillouin zone.…”
Section: Model and Calculation Methodsmentioning
confidence: 99%
“…With the development of the aerospace and automotive industries, the traditional Ni-based superalloys are difficult to meet the requirements of the future hightemperature materials with the high melting point and excellent mechanical properties. [1][2][3][4][5][6][7][8][9] Therefore, it is necessary to explore novel high-temperature structural materials that can be used in higher operating temperatures. [10][11][12][13] Among these high-tempera materials, transition metal silicides have attracted much attention as candidate materials to replace Ni-based superalloys.…”
Section: Introductionmentioning
confidence: 99%
“…Among these high-temperature materials, transition metal aluminides have been intensively studied due to the high-temperature strength, low density, and good oxidation resistances [14][15][16][17][18][19]. Obviously, the aluminides not only improve the oxidation resistance of high-temperature materials, but also reduce the density and cost [20,21].…”
Section: Introductionmentioning
confidence: 99%