Have a personal or library account? Click to login
Cavitation Erosion Resistance Influence of Material Properties Cover

Cavitation Erosion Resistance Influence of Material Properties

Open Access
|Dec 2019

References

  1. 1. Chahine G. L., Franc J.-P., Karimi A.: Advanced Experimental and Numerical for Cavitation Erosion Prediction. Kim K., Chahine G. L., Franc J.-P., Karimi A. [eds], Springer International Publishing, Dordrecht, 2014.
  2. 2. Krella A. K.: Influence of cavitation intensity on X6CrNiTi18-10 stainless steel, Wear 258 (2005) 604-613.10.1016/j.wear.2004.11.025
  3. 3. Heymann F. J.: Erosion by liquids – The mysterious murderer of metals, Mach. Des. 1970.
  4. 4. Kumar P., Saini R. P.: Study of cavitation in hydro turbines – A review, Renewable and Sustainable Energy Reviews 14 (2010) 374-383.10.1016/j.rser.2009.07.024
  5. 5. Brennen Ch.E.: Cavitation and bubble Dynamics. Oxford University Press, New York, 1977.
  6. 6. Hubballi B. V., Sondur V. B.: A Review on the prediction on cavitation erosion inception in hydraulic control valves, IJETAE 3.1 (2013) 110-119.
  7. 7. Ozonek J.: Application of Hydrodynamic Cavitation in Environmental Engineering. Taylor & Francis Group, London, 2012.10.1201/b11825
  8. 8. Gogate P. R., Kabadi A. M.: A review of applications of cavitation in biochemical engineering/biotechnology, Biochemical Engineering Journal 44 (2009) 60-72.10.1016/j.bej.2008.10.006
  9. 9. Karimi A., Martin J. L.: Cavitation erosion of materials. International Metals Reviews 31 (1986) 1-26.10.1179/imtr.1986.31.1.1
  10. 10. Espitia L. A., Dong H., Li X. Y., Pinedo C. E., Tschiptschin A. P.: Cavitation erosion resistance and wear mechanisms of active Green low temperature plasma nitrided AISI 410 martensitic stainless steel, 332-333 (2015) 1070-1079.10.1016/j.wear.2014.12.009
  11. 11. Jasionowski R., Zasada D., Grabin J.: Mechanizm niszczenia stopów intermetalicznych poddanych erozji kawitacyjnej, Zeszyty Naukowe Akademii Morskiej w Szczecinie, 5 (2005) 257-266.
  12. 12. Feller H. G., Kharrazi Y.: Cavitation erosion of metals and alloys, Wear 93 (1984) 249-260.10.1016/0043-1648(84)90199-6
  13. 13. Thiruvengadam A., Waring S. J.: Mechanical properties of metals and their cavitation damage resistance, Journal of Ship Res 10 (1966) 1-9.10.5957/jsr.1966.10.1.1
  14. 14. Lin C., Zhao Q., Zhao X., Yang Y.: Cavitation erosion of metallic materials. IJGE 4 (2018) 1-8.10.15273/ijge.2018.01.001
  15. 15. Richman R. H., McNaughton W. P.: Correlation of cavitation properties of metals erosion behavior with mechanical properties of metals. Wear 140 (1990) 63-82.10.1016/0043-1648(90)90122-Q
  16. 16. Chang S. C., Weng W. H., Chen H. C., Lin S. J., Chung P. C. K.: The cavitation erosion of Fe-Mn-Al. Alloys. Wear (181-183 (1995) 511-515.10.1016/0043-1648(95)90165-5
  17. 17. Kwok C. T., Man H. C., Cheng F. T.: Cavitation erosion and damage mechanisms of alloys with duplex structures. Materials Science and Engineering A242 (1998) 108-120.10.1016/S0921-5093(97)00514-5
  18. 18. Tzanakis I., Bolzoni L., Eskin D. G., Hadfield M.: Evaluation of cavitation erosion behavior of commercial steel grades used in the design of fluid machinery. Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science 48 (2017) 2193-2206.10.1007/s11661-017-4004-2
  19. 19. Hattori S., Ishikura R., Zhang Q.: Construction of database on cavitation erosion and analyses of carbon steel data. Wear 257 (2004) 1022-1029.10.1016/j.wear.2004.07.002
  20. 20. Hattori S., Ishikura R.: Revision of cavitation erosion database and analysis of stainless steel data. Wear 268 (2010) 109-116.10.1016/j.wear.2009.07.005
  21. 21. Howard, R.L., Ball, A.: Mechanisms of cavitation erosion of TiAl-based titanium alumine intermetalic alloys. Acta Metallurgica 44 (1996) 3157-316810.1016/1359-6454(95)00419-X
  22. 22. Hattori S., Kitagawa T.: Analysis of cavitation erosion resistance of cast iron and nonferrous metals based on database and comparison with carbon steel data. Wear 269 (2010) 443–44810.1016/j.wear.2010.04.031
  23. 23. Szkodo M.: Erozja kawitacyjna materiałów konstrukcyjnych, Gdańsk, 2008.
  24. 24. Garcia R., Hammit F. G.: Cavitation damage and correlations with material and fluid properties. Journal of Basic Enineering 89 (1967) 753-763.10.1115/1.3609699
  25. 25. Bregliozzi G., Di Schino A., Ahmed S. I. U., Kenny J. M., Haefke H.: Cavitation wear behaviour of austenitic stainless steel with different grain sizes. Wear 258 (2005) 503-510.10.1016/j.wear.2004.03.024
  26. 26. Chauhan A. K., Goel D. B., Prakash S.: Erosion behavior of hydroturbine steel. Bulletin of Materials Science 31 (2008) 115-120.10.1007/s12034-008-0020-6
  27. 27. Niederhofer P., Huth S.: Cavitation erosion resistance of high interstinal CrMnCN austenitic stainless steel. Wear 301 (2013) 457-466.10.1016/j.wear.2012.12.050
  28. 28. Thapliyal S., Dwivedi D. K.: On cavitation erosion behavior of friction processed surface of cast nickel aluminium bronze. Wear 376-377 (2017) 1030-1042.10.1016/j.wear.2017.01.030
  29. 29. Wantang F., Yangzeng Z., Xiaokui H.: Resistance of a high nitrogen austenitic steel to cavitation erosion. Wear 249 (2001) 788-791.10.1016/S0043-1648(01)00811-0
  30. 30. Sreedhar B.K., Albert S. K., Pandit A.B.: Cavitation damage and measurements – A review. Wear 372-373 (2017) 177-196.10.1016/j.wear.2016.12.009
  31. 31. Peng K., Kang C., Li G., Matsuda K., Soyama H.: Effect of heat treatment on the cavitation erosion resistance of stainless steel. Materials and Corrosion (2017) 1-9.10.1002/maco.201709818
  32. 32. Nair R. B., Arora H.S., Mukherjee S., Singh S., Grewal H. S.: Exceptionally high cavitation erosion and corrosion resistance of a high entropy alloy. Ultrasonics Sonochemistry 41 (2018) 252-260.10.1016/j.ultsonch.2017.09.044
  33. 33. Mann B.S.: Boronizing of cast martensitic chromium nickel stainless steel and its abrasion and cavitation-erosion behaviour. Wear 208 (1997) 125–131.10.1016/S0043-1648(96)07374-7
  34. 34. Singh R., Tiwari S. K., Mishra S. K.: Cavitation erosion In hydraulic turbine components and mitigation by coatings: current status and future needs. Materials Engineering and Performance 21 (2012) 1539-1551.10.1007/s11665-011-0051-9
  35. 35. Będkowski W., Gasiak G., Lachowicz C., Lichtarowicz A., Łagoda T., Macha E.: Relations between cavitation erosion resistance of materials and their fatigue strength under random loading. Wear 230 (1999) 201-209.10.1016/S0043-1648(99)00105-2
  36. 36. Knapp R. T., Daily J. W., Hammit F.G.: Cavitation, McGraw-Hill, New York 1970.
  37. 37. Richman R. H., McNaughton W. P.: A metallurgical approach to improved cavitation-erosion resistance. Materials Engineering And Performance 6 (1997) 633-641.10.1007/s11665-997-0057-5
  38. 38. Chen W., Gu C., Zhao K., Shen F.: Correlation of cavitation erosion resistance and mechanical properties of some engineering steels. Materials Science 41 (2006) 2151-2153.10.1007/s10853-006-5209-8
  39. 39. Hattori S., Takamoto I.: Cavitation erosion resistance of plastics. Wear 271 (2011) 1103-1108.10.1016/j.wear.2011.05.012
  40. 40. Fortes Patella R., Choffat T., Jean-Luc Reboud J-L, Archer A.: Mass loss simulation in cavitation erosion: Fatigue criterion approach. Wear 300 (2013) 205–215.10.1016/j.wear.2013.01.118
  41. 41. Krella A.K., Krupa A.: Effect of cavitation intensity on degradation of X6CrNiTi18-10 stainless steel. Wear 408–409 (2018) 180–189.10.1016/j.wear.2018.05.015
  42. 42. Di Schino A., Barteri M., Kenny J. M.: Effects of grain size on the properties of a low nickel austenitic stainless steel. Journal of Materials Science 38 (2003) 4725-4733.10.1023/A:1027470917858
  43. 43. Wang Z., Zhang X., Cheng J., Lin J., Zhou Z.: Cavitation erosion resistance of Fe-based amorphous/nanocrystal coatings prepared by high-velocity arc spraying. Journal of Thermal Spray Technology 23 (2014) 742-749.10.1007/s11666-014-0074-5
  44. 44. Hajian M., Abdollah-Zadeh A., Razaei-Nejad S. S., Assadi H., Hadavi S. M. M., Chung K., Shokouhimehr M.: Improvement in cavitation erosion resistance of AISI 316 L stainless steel by friction stir processing. Applied Surface Science 308 (2014) 184-192.10.1016/j.apsusc.2014.04.132
  45. 45. Liu W., Zheng Y. G., Liu C. S., Yao Z. M., Ke W.: Cavitation erosion behaviour of Cr-n-N stainless steel in comparison with 0Cr13Ni5Mo stainless steel. Wear 254 (2003) 713-722.10.1016/S0043-1648(03)00128-5
  46. 46. Lin J., Wang Z., Cheng J., Kang M. Fu X., Hong S.: Effect of initial surface roughness on cavitation erosion resistance of arc-spayed Fe-based amorphous/nanocrystalline coating. Coatings 7 (2017) 200-209.10.3390/coatings7110200
  47. 47. Xiaojun Z., Procopiak L.A.J., Souza N. C., d’Oliveira A.S.C.M.: Phase transformation during cavitation erosion of Co stainless steel. Materials Science and Engineering A 358 (2003) 199-2014.10.1016/S0921-5093(03)00297-1
  48. 48. Li D. G., Chen D. R., Liang P.: Enhancement of cavitation erosion resistance of 316L stainless steel by adding molybdenum. Ultrasonics Sonochemistry 35 (2017) 375-381.10.1016/j.ultsonch.2016.10.015
  49. 49. Allenstein A. N., Lepienski C. M., Buschinelli A. J. A., Brunatto S. F.: Improvement of the cavitation erosion resistance for low-temperature plasma nitrided Ca-6NM martensitic stainless steel. Wear 309 (2014) 159-165.10.1016/j.wear.2013.11.002
  50. 50. Verma S., Dubey P., Selokar A. W., Dwivedi D. K., Chandra R.: Cavitation erosion behaviour of nitrogen ion implanted 13Cr4Ni steel. Transaction of the Indian Institute of Metals 70 (2017) 957-965.10.1007/s12666-016-0887-7
  51. 51. Lamana M. S. Pukasiewicz A. G. M., Sampath S.: Influence of kobalt kontent and HVOF deposition process on the cavitation erosion resistance of WC-Co coatings. Wear 398-399 (2017) 209-219.10.1016/j.wear.2017.12.009
  52. 52. Lavigne S., Pougoum F., Savoie S., Martinu L., Klemberg-Sapiecha E., Schulz R.: Cavitation erosion behaviour of HVOF CaviTec Coatings. Wear 386-387 (2017) 90-98.10.1016/j.wear.2017.06.003
  53. 53. Kumar A., Sharma A., Goel S. K.: Erosion behaviour of WC-10Co-4Cr on 23-8-N nitronic steel by HVOF thermal spraying. Applied Surface Science 370 (2016) 418-426.10.1016/j.apsusc.2016.02.163
  54. 54. Momeni S., Tillmann W., Pohl M.: Composite cavitation resistant PVD coatings based on NiTi thin films. Materials and Design 110 (2016) 830-838.10.1016/j.matdes.2016.08.054
  55. 55. Krella A.: An experimental parameter of cavitation erosion resistance for TiN coatings. Wear 270 (2011) 252–257.10.1016/j.wear.2010.10.065
  56. 56. Krella A.: Cavitation erosion of TiN and CrN coatings deposited on different substrates. Wear 297 (2013) 992-997.10.1016/j.wear.2012.11.049
  57. 57. Stella J., Schüller E., Heßing C., Hamed O. A., Pohl M., Stöver D.: Cavitation erosion of plasma-sprayed NiTi coating. Wear 260 (2006) 1020-1027.10.1016/j.wear.2005.06.002
  58. 58. Wang Y., Liu J., Kang N., Darut G., Poirier T., Stella J., Liao H., Planche M. P.: Cavitation erosion of plasma-sprayed CoMoCrSi coatings. Tribology International 102 (2016) 429-435.10.1016/j.triboint.2016.06.014
  59. 59. Godoy C., Mancosu R. D., Lima M. M., Brandao D., Housden J., Avelar-Batista J. C.: Influence of plasma nitriding and PAPVD Cr1-xNx coating on the cavitation erosion resistance of an AISI 1045 steel. Surface Coatings Technology 200 (2006) 5370-5378.10.1016/j.surfcoat.2005.06.012
  60. 60. Kim J., Lee M.: A study on cavitation erosion and corrosion behaviour of Al-, Zn-, Cu-, and Fe-based coatings prepared by arc spraying. Journal of Thermal Spray Technology 19 (2010) 1224-1230.10.1007/s11666-010-9521-0
  61. 61. Lo K. H., Cheng F. T., Kwok C- T., Man H. C.: Improvement of cavitation erosion resistance of AISI 316 stainless steel by laser surface alloying using fine WC powder. Surface and Coatings Technology 165 (2003) 258-267.10.1016/S0257-8972(02)00739-9
  62. 62. Wu Y., Hong S., Zhang J., He Z., Guo W., Wang Q., Li G.: Microstructure and cavitation erosion behaviour of WC-Co-Cr coating 1Cr18Ni9Ti stainless steel by HVOF thermal starying. International Journal of Refractory Metals and Hard Materials 32 (2012) 21-26.10.1016/j.ijrmhm.2012.01.002
  63. 63. Taillon G., Pougoum F., Lavigne S., Ton-That L., Schulz R., Bousser E., Savoie S., Martinu L., Klemberg-Sapiecha E.: Cavitation erosion mechanisms in stainless steel and in composite metal-ceramic HVOF coating. Wear 364-365 (2016) 201-210.10.1016/j.wear.2016.07.015
  64. 64. Wang Y., Stella J., Darut G., Poirier T., Liao H., Planche M. P.: APS prepared NiCrBSi-YSZ composite coatings for protection against cavitation erosion. Journal of Alloys and Compounds 699 (2017) 1095-1103.10.1016/j.jallcom.2017.01.034
  65. 65. Zhang H., Gong Y., Chen X., McDonald A., Li H.: A comparative study of cavitation erosion resistance of several HVOF-sprayed coatings in deionized water and artificial seawater. Journal of Thermal Spray Technology 28 (2019) 1060-1071.10.1007/s11666-019-00869-x
  66. 66. Hou G., Ren Y., Zhang X., Dong F., An Y., Zhao X., Zhou H., Chen J.: Cavitation erosion mechanisms in Co-based coatings exposed to seawater. Ultrasonics-Sonochemistry 60 (2020) 1047-59.10.1016/j.ultsonch.2019.104799
  67. 67. Szala M., Walczak M., Pasierbiewicz K., Kamiński M.: Cavitation erosion and sliding wear mechanisms of AlTiN and TiAlN films deposited on stainless steel substrate. Coatings 9 340 (2019).10.3390/coatings9050340
  68. 68. Deng W., Zhao X., Ren Y., Hao E., Han J., An Y., Zhou H., Chen J.: Influence of epoxy resin on the microstructure and cavitation erosion of as-sprayed 8YSZ coating. Ceramics International 45 (2019) 5693-5702.10.1016/j.ceramint.2018.12.034
  69. 69. Krella A.K.: An approach to evaluate the resistance of hard coatings to shock loading. Surface & Coatings Technology 205 (2010) 2687–2695.10.1016/j.surfcoat.2010.10.033
  70. 70. Rudolf P., Julis M., Klakurkova L., Gejdos P., Hudec M.: Cavitation erosion testing of different cavitation-resistant materials and coatings using the cavitating jet method. IOP Conf. Series: Earth and Enviromental Science 240 (2019) 57-62.10.1088/1755-1315/240/6/062057
  71. 71. Ding H., Jiang S., Xu J.: Cavitation erosion resistance of ZrC nanoceramic coating. Journal of Engineering Tribology (2019) 1-9.
  72. 72. Qiao L., Wu Y., Hong S., Zhang J., Shi W., Zheng Y.: Relationships between spray parameters, microstructure and ultrasonic cavitation erosion behavior of HVOF sprayed Fe-based amphous/nanocrystalline coating. Ultrasonics – Sonochemistry 39 (2017) 39-46.10.1016/j.ultsonch.2017.04.011
  73. 73. Matikainen V., Peregrina S. R., Ojala N., Koivuluoto H., Schubert J., Houdkova S., Vuoristo P.: Erosion wear performance of WC-10Co4Cr and Cr3C2-25NiCr coatings sprayed with high-velocity thermal spray processes. Surface & Coatings 370 (2019) 196-212.10.1016/j.surfcoat.2019.04.067
DOI: https://doi.org/10.2478/adms-2019-0019 | Journal eISSN: 2083-4799 | Journal ISSN: 1730-2439
Language: English
Page range: 18 - 34
Published on: Dec 31, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 D. E. Zakrzewska, A. K. Krella, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.