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Erschienen in: Journal of Materials Engineering and Performance 11/2017

25.10.2017

Tribological Characterization of SiC and B4C Manufactured by Plasma Pressure Compaction

verfasst von: Felice Rubino, Mario Pisaturo, Adolfo Senatore, Pierpaolo Carlone, Tirumalai S. Sudarshan

Erschienen in: Journal of Materials Engineering and Performance | Ausgabe 11/2017

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Abstract

The objective of the present study was to assess the tribological properties and the wear behavior of silicon carbide and boron carbide ceramics, produced by the plasma pressure compaction sintering process. Reciprocating sliding tests were executed to evaluate the tribological behavior of silicon carbide and boron carbide. Samples of each material with distinct values of surface roughness Ra were tested. Wear mass loss, coefficients of friction and wear mechanism of the boron carbide and silicon carbide were evaluated by means of microscopes and an energy-dispersive spectroscopy probe. The coefficient of friction of the evaluated boron carbide was found to be 0.8, and the surface roughness affects only the starting transient, while for silicon carbide the steady-state value ranges from 0.5 to 0.8 depending on the roughness value Ra.

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Literatur
1.
Zurück zum Zitat F. Thevenot, Boron Carbide—A Compressive Review, J. Eur. Ceram. Soc., 1990, 6, p 205–225CrossRef F. Thevenot, Boron Carbide—A Compressive Review, J. Eur. Ceram. Soc., 1990, 6, p 205–225CrossRef
2.
Zurück zum Zitat V. Presser and V.G. Nickel, Silica on Silicon Carbide, Crit. Rev. Solid State Mater. Sci., 2008, 33, p 1–99CrossRef V. Presser and V.G. Nickel, Silica on Silicon Carbide, Crit. Rev. Solid State Mater. Sci., 2008, 33, p 1–99CrossRef
3.
Zurück zum Zitat Z. Zahariev and D. Radev, Properties of Polycrystalline Boron Carbide Sintered in the Presence of W2B5 Without Pressing, J. Mater. Sci. Lett., 1988, 7(7), p 695–696CrossRef Z. Zahariev and D. Radev, Properties of Polycrystalline Boron Carbide Sintered in the Presence of W2B5 Without Pressing, J. Mater. Sci. Lett., 1988, 7(7), p 695–696CrossRef
4.
Zurück zum Zitat A.K. Suri, C. Subramanian, J.K. Sonber, and T.S.R. Ch, Murthy, Synthesis and Consolidation of Boron Carbide: A Review, Int. Mater. Rev., 2010, 55(1), p 4–40CrossRef A.K. Suri, C. Subramanian, J.K. Sonber, and T.S.R. Ch, Murthy, Synthesis and Consolidation of Boron Carbide: A Review, Int. Mater. Rev., 2010, 55(1), p 4–40CrossRef
5.
Zurück zum Zitat M. Chen, J.W. McCauley, and K.J. Hemker, Shock-Induced Localized Amorphization in Boron Carbide, Science, 2003, 299(5612), p 1563–1566CrossRef M. Chen, J.W. McCauley, and K.J. Hemker, Shock-Induced Localized Amorphization in Boron Carbide, Science, 2003, 299(5612), p 1563–1566CrossRef
6.
Zurück zum Zitat T. Sano, M. Shaeffer, L. Vargas-Gonzalez, J. Pomerantz, High Strain Rate Performance of Pressureless Sintered Boron Carbide, Dynamic Behavior of Materials, vol. 1, ch. 2, ed. by B. Song et al. in Proceedings of the 2013 Annual Conference on Experimental and Applied Mechanics X, 496, (ed.), 120, 2014. ISBN: 978-3-319-00770-0 T. Sano, M. Shaeffer, L. Vargas-Gonzalez, J. Pomerantz, High Strain Rate Performance of Pressureless Sintered Boron Carbide, Dynamic Behavior of Materials, vol. 1, ch. 2, ed. by B. Song et al. in Proceedings of the 2013 Annual Conference on Experimental and Applied Mechanics X, 496, (ed.), 120, 2014. ISBN: 978-3-319-00770-0
7.
Zurück zum Zitat J. Gerard LeCompte, U.S. Patent US5704825 A, 6 gen 1998 J. Gerard LeCompte, U.S. Patent US5704825 A, 6 gen 1998
8.
Zurück zum Zitat T. Han, Z. Zhao, B. Gillispie, J. Smith, U.S. Patent US20050214474 A1, 29 set 2005 T. Han, Z. Zhao, B. Gillispie, J. Smith, U.S. Patent US20050214474 A1, 29 set 2005
9.
Zurück zum Zitat R.A. Alliegro, L.B. Coffin, and J.R. Tinklepaugh, Pressure-Sintered Silicon Carbide, J. Am. Ceram. Soc., 1956, 39(11), p 386–389CrossRef R.A. Alliegro, L.B. Coffin, and J.R. Tinklepaugh, Pressure-Sintered Silicon Carbide, J. Am. Ceram. Soc., 1956, 39(11), p 386–389CrossRef
10.
Zurück zum Zitat T. Doi, E. Uhlmann, and I.D. Marinescu, Handbook of Ceramics Grinding and Polishing, Norwich, William Andrew, 2015 T. Doi, E. Uhlmann, and I.D. Marinescu, Handbook of Ceramics Grinding and Polishing, Norwich, William Andrew, 2015
11.
Zurück zum Zitat C.K. Narula, Ceramic Precursor Technology and Its Application, Mc-Graw-Hill, New York, 1995 C.K. Narula, Ceramic Precursor Technology and Its Application, Mc-Graw-Hill, New York, 1995
12.
Zurück zum Zitat M. Willander, M. Friesel, Q. Wahab, and B. Straumal, Silicon Carbide and Diamond for High Temperature Device Applications, J. Mater. Sci. Mater. Electron., 2006, 17, p 1–25CrossRef M. Willander, M. Friesel, Q. Wahab, and B. Straumal, Silicon Carbide and Diamond for High Temperature Device Applications, J. Mater. Sci. Mater. Electron., 2006, 17, p 1–25CrossRef
13.
Zurück zum Zitat Y.W. Kim, M. Mitomo, and H. Hirotsuru, Grain-Growth and Fracture-Toughness of Fine-Grained Silicon-Carbide Ceramics, J. Am. Ceram. Soc., 1995, 78, p 3145–3148CrossRef Y.W. Kim, M. Mitomo, and H. Hirotsuru, Grain-Growth and Fracture-Toughness of Fine-Grained Silicon-Carbide Ceramics, J. Am. Ceram. Soc., 1995, 78, p 3145–3148CrossRef
14.
Zurück zum Zitat K.Y. Lim, Y.W. Kim, and K.J. Kim, Mechanical Properties of Electrically Conductive Silicon Carbide Ceramics, Ceram. Int., 2014, 40(7B), p 10577–10582CrossRef K.Y. Lim, Y.W. Kim, and K.J. Kim, Mechanical Properties of Electrically Conductive Silicon Carbide Ceramics, Ceram. Int., 2014, 40(7B), p 10577–10582CrossRef
15.
Zurück zum Zitat S. Prochazka, Ceramics for High-Performance Applications, in Proceedings of 2nd Army Materials Technology Conference, Hyannis, MS, 1973, pp. 239–252 S. Prochazka, Ceramics for High-Performance Applications, in Proceedings of 2nd Army Materials Technology Conference, Hyannis, MS, 1973, pp. 239–252
16.
Zurück zum Zitat M. Omori and H. Takei, Pressureless Sintering of SiC, J. Am. Ceram. Soc., 1982, 65(6), p c80–c96CrossRef M. Omori and H. Takei, Pressureless Sintering of SiC, J. Am. Ceram. Soc., 1982, 65(6), p c80–c96CrossRef
17.
Zurück zum Zitat H.W. Kim, Y.H. Koh, and H.E. Kim, Densification and Mechanical Properties of B4C with Al2O3 as a Sintering Aid, J. Am. Ceram. Soc., 2000, 83(11), p 2863–2865CrossRef H.W. Kim, Y.H. Koh, and H.E. Kim, Densification and Mechanical Properties of B4C with Al2O3 as a Sintering Aid, J. Am. Ceram. Soc., 2000, 83(11), p 2863–2865CrossRef
18.
Zurück zum Zitat L. Levin, N. Frage, and M.P. Dariel, A Novel Approach for the Preparation of B4C-Based Cermets, Int. J. Refract. Met. Hard Mater., 2000, 18, p 131–135CrossRef L. Levin, N. Frage, and M.P. Dariel, A Novel Approach for the Preparation of B4C-Based Cermets, Int. J. Refract. Met. Hard Mater., 2000, 18, p 131–135CrossRef
19.
Zurück zum Zitat S. Mondal and A.K. Banthia, Low Temperature Synthetic Route for Boron Carbide, J. Eur. Ceram. Soc., 2005, 25, p 287–291CrossRef S. Mondal and A.K. Banthia, Low Temperature Synthetic Route for Boron Carbide, J. Eur. Ceram. Soc., 2005, 25, p 287–291CrossRef
20.
Zurück zum Zitat R. Angers and M. Beauvy, Hot-Pressing of Boron Carbide, Ceram. Int., 1983, 10(2), p 49–55CrossRef R. Angers and M. Beauvy, Hot-Pressing of Boron Carbide, Ceram. Int., 1983, 10(2), p 49–55CrossRef
21.
Zurück zum Zitat H.T. Larker, L. Hermansson, and J. Adlerborn, Hot Isostatic Pressing and Its Applicability to Silicon Carbide and Boron Carbide, Mater. Sci. Monogr., 1987, 38(A), p 795–803 H.T. Larker, L. Hermansson, and J. Adlerborn, Hot Isostatic Pressing and Its Applicability to Silicon Carbide and Boron Carbide, Mater. Sci. Monogr., 1987, 38(A), p 795–803
22.
Zurück zum Zitat B.M. Moshtaghioun, D. Gomez-Garcia, A. Dominguez-Rodriguez, and R.I. Todd, Grain Size Dependence of Hardness and Fracture Toughness in Pure Near Fully-Dense Boron Carbide Ceramics, J. Eur. Ceram. Soc., 2016, 36(7), p 1829–1834CrossRef B.M. Moshtaghioun, D. Gomez-Garcia, A. Dominguez-Rodriguez, and R.I. Todd, Grain Size Dependence of Hardness and Fracture Toughness in Pure Near Fully-Dense Boron Carbide Ceramics, J. Eur. Ceram. Soc., 2016, 36(7), p 1829–1834CrossRef
23.
Zurück zum Zitat H. Lee and R.F. Speyer, Pressureless Sintering of Boron Carbide, J. Am. Ceram. Soc., 2003, 86(9), p 1468–1473CrossRef H. Lee and R.F. Speyer, Pressureless Sintering of Boron Carbide, J. Am. Ceram. Soc., 2003, 86(9), p 1468–1473CrossRef
24.
Zurück zum Zitat R. Belon, G. Antou, N. Pradeilles, A. Maître, and D. Gosset, Mechanical Behaviour at High Temperature of Spark Plasma Sintered Boron Carbide Ceramics, Ceram. Int., 2017, 43(1), p 6631–6635CrossRef R. Belon, G. Antou, N. Pradeilles, A. Maître, and D. Gosset, Mechanical Behaviour at High Temperature of Spark Plasma Sintered Boron Carbide Ceramics, Ceram. Int., 2017, 43(1), p 6631–6635CrossRef
25.
Zurück zum Zitat T.Y. Cho, Y.W. Kim, and K.J. Kim, Thermal, Electrical, and Mechanical Properties of Pressureless Sintered Silicon Carbide Ceramics with Yttria-Scandia-Aluminum Nitride, J. Eur. Ceram. Soc., 2016, 36(11), p 2659–2665CrossRef T.Y. Cho, Y.W. Kim, and K.J. Kim, Thermal, Electrical, and Mechanical Properties of Pressureless Sintered Silicon Carbide Ceramics with Yttria-Scandia-Aluminum Nitride, J. Eur. Ceram. Soc., 2016, 36(11), p 2659–2665CrossRef
26.
Zurück zum Zitat Y.W. Kim, T.Y. Cho, and K.J. Kim, Effect of Grain Growth on Electrical Properties of Silicon Carbide Ceramics Sintered with Gadolinia and Yttria, J. Eur. Ceram. Soc., 2015, 35(15), p 4137–4142CrossRef Y.W. Kim, T.Y. Cho, and K.J. Kim, Effect of Grain Growth on Electrical Properties of Silicon Carbide Ceramics Sintered with Gadolinia and Yttria, J. Eur. Ceram. Soc., 2015, 35(15), p 4137–4142CrossRef
27.
Zurück zum Zitat M.F. Toksoy, W. Rafaniello, K.Y. Xie, L. Ma, K.J. Hemker, and R.A. Haber, Densification and Characterization of Rapid Carbothermal Synthesized Boron Carbide, Int. J. Appl. Ceram. Technol., 2017, 14, p 443–453CrossRef M.F. Toksoy, W. Rafaniello, K.Y. Xie, L. Ma, K.J. Hemker, and R.A. Haber, Densification and Characterization of Rapid Carbothermal Synthesized Boron Carbide, Int. J. Appl. Ceram. Technol., 2017, 14, p 443–453CrossRef
28.
Zurück zum Zitat D. Ghosh, G. Subhash, R. Radhakrishnan, and T.S. Sudarshan, Scratch-Induced Microplasticity and Microcracking in Zirconium Diboride–Silicon Carbide Composite, Acta Mater., 2008, 56, p 3011–3022CrossRef D. Ghosh, G. Subhash, R. Radhakrishnan, and T.S. Sudarshan, Scratch-Induced Microplasticity and Microcracking in Zirconium Diboride–Silicon Carbide Composite, Acta Mater., 2008, 56, p 3011–3022CrossRef
29.
Zurück zum Zitat B.R. Klotz, K.C. Cho, and R.J. Dowding, Sintering Aids in the Consolidation of Boron Carbide (B4C) by the Plasma Pressure Compaction (P2C) Method, Mater. Manuf. Process., 2004, 19(4), p 631–639CrossRef B.R. Klotz, K.C. Cho, and R.J. Dowding, Sintering Aids in the Consolidation of Boron Carbide (B4C) by the Plasma Pressure Compaction (P2C) Method, Mater. Manuf. Process., 2004, 19(4), p 631–639CrossRef
30.
Zurück zum Zitat D. Ghosh, G. Subhash, T.S. Sudarshan, R. Radhakrishnan, and X.L. Gao, Dynamic Indentation Response of Fine-Grained Boron Carbide, J. Am. Ceram. Soc., 2007, 90(6), p 1850–1857CrossRef D. Ghosh, G. Subhash, T.S. Sudarshan, R. Radhakrishnan, and X.L. Gao, Dynamic Indentation Response of Fine-Grained Boron Carbide, J. Am. Ceram. Soc., 2007, 90(6), p 1850–1857CrossRef
31.
Zurück zum Zitat M.G. Bothara, P. Vijay, S.V. Atre, S.J. Park, R.M. German, T.S. Sudarshan, and R. Radhakrishnan, Design of Experiment Approach for Sintering Study of Nanocrystalline SiC Fabricated Using Plasma Pressure Compaction, Source of the Document Science of Sintering, Sci. Sinter., 2009, 41(2), p 125–133CrossRef M.G. Bothara, P. Vijay, S.V. Atre, S.J. Park, R.M. German, T.S. Sudarshan, and R. Radhakrishnan, Design of Experiment Approach for Sintering Study of Nanocrystalline SiC Fabricated Using Plasma Pressure Compaction, Source of the Document Science of Sintering, Sci. Sinter., 2009, 41(2), p 125–133CrossRef
32.
Zurück zum Zitat B.G. Ravi, O.A. Omotoye, T.S. Srivatsan, M. Petrorali, and T.S. Sudarshan, The Microstructure and Hardness of Silicon Carbide Synthesized by Plasma Pressure Compaction, J. Alloys Compd., 2000, 299, p 292–296CrossRef B.G. Ravi, O.A. Omotoye, T.S. Srivatsan, M. Petrorali, and T.S. Sudarshan, The Microstructure and Hardness of Silicon Carbide Synthesized by Plasma Pressure Compaction, J. Alloys Compd., 2000, 299, p 292–296CrossRef
33.
Zurück zum Zitat M.G. Bothara, P. Vijay, S.V. Atre, S.J. Park, R.M. German, T.S. Sudarshan, and R. Radhakrishnan, Sintering Behavior of Nanocrystalline Silicon Carbide Using a Plasma Pressure Compaction System: Master Sintering Curve Analysis, Metall. Mater. Trans. A, 2010, 41(12), p 3252–3261CrossRef M.G. Bothara, P. Vijay, S.V. Atre, S.J. Park, R.M. German, T.S. Sudarshan, and R. Radhakrishnan, Sintering Behavior of Nanocrystalline Silicon Carbide Using a Plasma Pressure Compaction System: Master Sintering Curve Analysis, Metall. Mater. Trans. A, 2010, 41(12), p 3252–3261CrossRef
34.
Zurück zum Zitat T.S. Srivatsan, B.G. Ravi, A.S. Naruka, L. Riester, M. Petraroli, and T.S. Sudarshan, The Microstructure and Hardness of Molybdenum Powders Consolidated by Plasma Pressure Compaction, Powder Technol., 2001, 114, p 136–144CrossRef T.S. Srivatsan, B.G. Ravi, A.S. Naruka, L. Riester, M. Petraroli, and T.S. Sudarshan, The Microstructure and Hardness of Molybdenum Powders Consolidated by Plasma Pressure Compaction, Powder Technol., 2001, 114, p 136–144CrossRef
35.
Zurück zum Zitat L. Chu-Cheng, K. Ming-Guang, Z. Hui-Ying, H. Li-Ping, Z. Xue-Bin, and Z. Yi, Tribological Behavior of Vacuum Plasma Sprayed B4C-Mo Composite Coating, J. Inorg. Mater., 2016, 31(1), p 100–106CrossRef L. Chu-Cheng, K. Ming-Guang, Z. Hui-Ying, H. Li-Ping, Z. Xue-Bin, and Z. Yi, Tribological Behavior of Vacuum Plasma Sprayed B4C-Mo Composite Coating, J. Inorg. Mater., 2016, 31(1), p 100–106CrossRef
36.
Zurück zum Zitat K. Miyoshi, D. Buckley, M. Srinivasan, Tribological Properties of—Sintered Polycrystalline and Single Crystal Silicon Carbide, in Eighty-Fourth Annual Meeting of the American Ceramic Society Cincinnati, Ohio, May 2–5, 1982 K. Miyoshi, D. Buckley, M. Srinivasan, Tribological Properties of—Sintered Polycrystalline and Single Crystal Silicon Carbide, in Eighty-Fourth Annual Meeting of the American Ceramic Society Cincinnati, Ohio, May 2–5, 1982
37.
Zurück zum Zitat ISO/IEC GUIDE 98-3:2008. Uncertainty of Measurement—Part 3: Guide to the Expression of Uncertainty in Measurement (GUM:1995) ISO/IEC GUIDE 98-3:2008. Uncertainty of Measurement—Part 3: Guide to the Expression of Uncertainty in Measurement (GUM:1995)
38.
Zurück zum Zitat ASTM G133—05(2016) Standard Test Method for Linearly-Reciprocating Ball-on-Flat Sliding Wear ASTM G133—05(2016) Standard Test Method for Linearly-Reciprocating Ball-on-Flat Sliding Wear
39.
Zurück zum Zitat ASTM G99—17 Standard Test Method for Wear Testing with a Pin-on-Disk Apparatus ASTM G99—17 Standard Test Method for Wear Testing with a Pin-on-Disk Apparatus
40.
Zurück zum Zitat P. Larsson, N. Axen, and S. Hogmark, Tribofilm Formation on Boron Carbide in Sliding Wear, Wear, 1999, 236, p 73–80CrossRef P. Larsson, N. Axen, and S. Hogmark, Tribofilm Formation on Boron Carbide in Sliding Wear, Wear, 1999, 236, p 73–80CrossRef
41.
Zurück zum Zitat F. Wu, L.S. Wang, J.S. Zhang, Y. Fan, B.W. Liu, and Y. Gao, Tribological Properties of Hot Pressed Boron Carbide Ceramic, Trans. Nonferr. Met. Soc. China (Engl. Ed.), 2001, 11(1), p 119–122 F. Wu, L.S. Wang, J.S. Zhang, Y. Fan, B.W. Liu, and Y. Gao, Tribological Properties of Hot Pressed Boron Carbide Ceramic, Trans. Nonferr. Met. Soc. China (Engl. Ed.), 2001, 11(1), p 119–122
42.
Zurück zum Zitat B.M. Moshtaghioun, D. Gomez-Garcia, A. Dominguez-Rodriguez, and R.I. Todd, Abrasive Wear Rate of Boron Carbide Ceramics: Influence of Microstructural and Mechanical Aspects on Their Tribological Response, J. Eur. Ceram. Soc., 2016, 36, p 3925–3928CrossRef B.M. Moshtaghioun, D. Gomez-Garcia, A. Dominguez-Rodriguez, and R.I. Todd, Abrasive Wear Rate of Boron Carbide Ceramics: Influence of Microstructural and Mechanical Aspects on Their Tribological Response, J. Eur. Ceram. Soc., 2016, 36, p 3925–3928CrossRef
43.
Zurück zum Zitat J.K. Sonber, P.K. Limaye, TSRCh Murthy, K. Sairam, A. Nagaraj, N.L. Soni, R.J. Patel, and J.K. Chakravartty, Tribological Properties of Boron Carbide in Sliding Against WC Ball, Int. J. Refract. Met. Hard Mater., 2015, 51, p 110–117CrossRef J.K. Sonber, P.K. Limaye, TSRCh Murthy, K. Sairam, A. Nagaraj, N.L. Soni, R.J. Patel, and J.K. Chakravartty, Tribological Properties of Boron Carbide in Sliding Against WC Ball, Int. J. Refract. Met. Hard Mater., 2015, 51, p 110–117CrossRef
44.
Zurück zum Zitat A.M. Turatti and A.S. Pereira, Wear Resistant Boron Carbide Compacts Produced by Pressureless Sintering, Ceram. Int., 2017, 43(11), p 7970–7977CrossRef A.M. Turatti and A.S. Pereira, Wear Resistant Boron Carbide Compacts Produced by Pressureless Sintering, Ceram. Int., 2017, 43(11), p 7970–7977CrossRef
45.
Zurück zum Zitat B.M. Moshtaghioun, D. Gomez-Garcia, A. Dominguez-Rodriguez, and R.I. Todd, Abrasive Wear Rate of Boron Carbide Ceramics: Influence of Microstructural and Mechanical Aspects on Their Tribological Response, J. Eur. Ceram. Soc., 2016, 36(16), p 3925–3928CrossRef B.M. Moshtaghioun, D. Gomez-Garcia, A. Dominguez-Rodriguez, and R.I. Todd, Abrasive Wear Rate of Boron Carbide Ceramics: Influence of Microstructural and Mechanical Aspects on Their Tribological Response, J. Eur. Ceram. Soc., 2016, 36(16), p 3925–3928CrossRef
46.
Zurück zum Zitat K. Umeda, Y. Enomoto, A. Mitsui, and K. Mannami, Friction and Wear of Boride Ceramics in Air and Water, Wear, 1993, 169, p 63–68CrossRef K. Umeda, Y. Enomoto, A. Mitsui, and K. Mannami, Friction and Wear of Boride Ceramics in Air and Water, Wear, 1993, 169, p 63–68CrossRef
47.
Zurück zum Zitat M. Cengiz, B. Yavas, Y. Celik, G. Goller, O. Yucel, F.C. Sahin, Spark Plasma Sintering of Boron Carbide Ceramics Using Different Sample Geometries and Dimensions, Acta Physica Polonica A, 2014, 125, in proceedings of the 3° International Congress APMAS2013, April 24–28, 2013, Antalya, Turkey. M. Cengiz, B. Yavas, Y. Celik, G. Goller, O. Yucel, F.C. Sahin, Spark Plasma Sintering of Boron Carbide Ceramics Using Different Sample Geometries and Dimensions, Acta Physica Polonica A, 2014, 125, in proceedings of the 3° International Congress APMAS2013, April 24–28, 2013, Antalya, Turkey.
48.
Zurück zum Zitat K.Y. Xie, M.F. Toksoy, K. Kuwelkar, B. Zhang, J.A. Krogstad, R.A. Haber, and K.J. Hemker, Effect of Alumina on the Structure and Mechanical Properties of Spark Plasma Sintered Boron Carbide, J. Am. Ceram. Soc., 2014, 97(11), p 3710–3718CrossRef K.Y. Xie, M.F. Toksoy, K. Kuwelkar, B. Zhang, J.A. Krogstad, R.A. Haber, and K.J. Hemker, Effect of Alumina on the Structure and Mechanical Properties of Spark Plasma Sintered Boron Carbide, J. Am. Ceram. Soc., 2014, 97(11), p 3710–3718CrossRef
49.
Zurück zum Zitat T.N. Nazarchuk and L.N. Mekhanoshina, The Oxidation of Boron Carbide, Powder Metall. Met. Ceram., 1964, 3(2), p 123–1267CrossRef T.N. Nazarchuk and L.N. Mekhanoshina, The Oxidation of Boron Carbide, Powder Metall. Met. Ceram., 1964, 3(2), p 123–1267CrossRef
51.
Zurück zum Zitat S.P. Murzin and V.B. Balyakin, Microstructuring the Surface of Silicon Carbide Ceramic by Laser Action for Reducing Friction Losses in Rolling Bearings, Opt. Laser Technol., 2017, 88, p 96–98CrossRef S.P. Murzin and V.B. Balyakin, Microstructuring the Surface of Silicon Carbide Ceramic by Laser Action for Reducing Friction Losses in Rolling Bearings, Opt. Laser Technol., 2017, 88, p 96–98CrossRef
52.
Zurück zum Zitat Y. Aono, S. Ando, and A. Hirata, Microtribological Modification of Silicon Carbide Surface by Laser Irradiation, Precis. Eng., 2016, 43, p 270–276CrossRef Y. Aono, S. Ando, and A. Hirata, Microtribological Modification of Silicon Carbide Surface by Laser Irradiation, Precis. Eng., 2016, 43, p 270–276CrossRef
53.
Zurück zum Zitat D.C. Cranmer, Friction and Wear Properties of Monolithic Silicon-Based Ceramics, J. Mater. Sci., 1985, 20, p 2029–2037CrossRef D.C. Cranmer, Friction and Wear Properties of Monolithic Silicon-Based Ceramics, J. Mater. Sci., 1985, 20, p 2029–2037CrossRef
54.
Zurück zum Zitat S. Lafon-Placette, K. Delbé, J. Denape, and M. Ferrato, Tribological Characterization of Silicon Carbide and Carbon Materials, J. Eur. Ceram. Soc., 2015, 35, p 1147–1159CrossRef S. Lafon-Placette, K. Delbé, J. Denape, and M. Ferrato, Tribological Characterization of Silicon Carbide and Carbon Materials, J. Eur. Ceram. Soc., 2015, 35, p 1147–1159CrossRef
55.
Zurück zum Zitat G. Ervin Jr., Oxidation Behavior of Silicon Carbide, J. Am. Ceram. Soc., 1958, 41(9), p 347–352CrossRef G. Ervin Jr., Oxidation Behavior of Silicon Carbide, J. Am. Ceram. Soc., 1958, 41(9), p 347–352CrossRef
56.
Zurück zum Zitat J.A. Costello and R.E. Tressler, Oxidation Kinetics of Hot-Pressed and Sintered α-SiC, J. Am. Ceram. Soc., 1981, 64(6), p 327–331CrossRef J.A. Costello and R.E. Tressler, Oxidation Kinetics of Hot-Pressed and Sintered α-SiC, J. Am. Ceram. Soc., 1981, 64(6), p 327–331CrossRef
57.
Zurück zum Zitat J. Roy, S. Chandra, S. Das, and S. Maitra, Oxidation Behaviour of Silicon Carbide—A Review, Rev. Adv. Mater. Sci., 2014, 38, p 29–39 J. Roy, S. Chandra, S. Das, and S. Maitra, Oxidation Behaviour of Silicon Carbide—A Review, Rev. Adv. Mater. Sci., 2014, 38, p 29–39
58.
Zurück zum Zitat Starke et al., High Quality Iron Silicide films by Simultaneous Deposition of Iron and Silicon on Si (111), J. Appl. Phys., 2002, 91(9), p 6154–6161CrossRef Starke et al., High Quality Iron Silicide films by Simultaneous Deposition of Iron and Silicon on Si (111), J. Appl. Phys., 2002, 91(9), p 6154–6161CrossRef
Metadaten
Titel
Tribological Characterization of SiC and B4C Manufactured by Plasma Pressure Compaction
verfasst von
Felice Rubino
Mario Pisaturo
Adolfo Senatore
Pierpaolo Carlone
Tirumalai S. Sudarshan
Publikationsdatum
25.10.2017
Verlag
Springer US
Erschienen in
Journal of Materials Engineering and Performance / Ausgabe 11/2017
Print ISSN: 1059-9495
Elektronische ISSN: 1544-1024
DOI
https://doi.org/10.1007/s11665-017-3016-9

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