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Erschienen in: Strength of Materials 3/2014

01.05.2014

Mechanical Behavior of Ceramics and Glass During Specimen Edge Fracture Caused by Rockwell Indentor

verfasst von: V. V. Khvorostyanyi

Erschienen in: Strength of Materials | Ausgabe 3/2014

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Abstract

Mechanical behavior of ceramics and glass under local loading of specimens by an indentor is studied experimentally by a proposed test procedure. The effect of scratching on fracture resistance is assessed by comparing the test results obtained by two methods – edge fracture under scratching (S+EF method) and without scratching (EF method). Based on the analysis of experimental findings, the fracture mechanism of these brittle materials under such test conditions is discussed.

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Literatur
1.
Zurück zum Zitat E. Almond and N. McCormick, “Constant geometry edge flaking of brittle materials,” Nature, 321, 53–55 (1986).CrossRef E. Almond and N. McCormick, “Constant geometry edge flaking of brittle materials,” Nature, 321, 53–55 (1986).CrossRef
2.
Zurück zum Zitat N. McCormick and E. Almond, “Edge flaking of brittle materials,” J. Hard Mater., 1, 25–51 (1990). N. McCormick and E. Almond, “Edge flaking of brittle materials,” J. Hard Mater., 1, 25–51 (1990).
3.
Zurück zum Zitat R. Morrell and A. Gant, “Edge chipping – what does it tell us?” in: J. R. Varuer and G. D. Quinn (Eds.), Fractography of Glasses and Ceramics IV, American Ceramic Society, Westerville (2001), pp. 23–41. R. Morrell and A. Gant, “Edge chipping – what does it tell us?” in: J. R. Varuer and G. D. Quinn (Eds.), Fractography of Glasses and Ceramics IV, American Ceramic Society, Westerville (2001), pp. 23–41.
4.
Zurück zum Zitat G. Gogotsi, S. Mudrik, and A. Rendtel, “Sensitivity of silicon carbide and other ceramics to edge fracture: method and results,” in: E. Lara-Curzio and M. J. Readey (Eds.), 28th Int. Conf. Advanced Ceramics and Composites B: Ceramic Engineering and Science Proceedings, Vol. 25, Issue 4, American Ceramic Society, Westerville (2004), pp. 237–246. G. Gogotsi, S. Mudrik, and A. Rendtel, “Sensitivity of silicon carbide and other ceramics to edge fracture: method and results,” in: E. Lara-Curzio and M. J. Readey (Eds.), 28th Int. Conf. Advanced Ceramics and Composites B: Ceramic Engineering and Science Proceedings, Vol. 25, Issue 4, American Ceramic Society, Westerville (2004), pp. 237–246.
5.
Zurück zum Zitat G. Gogotsi, S. Mudrik, and V. Galenko, “Evaluation of fracture resistance of ceramics: Edge fracture tests,” Ceram. Int., 33, 315–320 (2007).CrossRef G. Gogotsi, S. Mudrik, and V. Galenko, “Evaluation of fracture resistance of ceramics: Edge fracture tests,” Ceram. Int., 33, 315–320 (2007).CrossRef
6.
Zurück zum Zitat J. Quinn, L. Su, L. Flanders, and I. Lloyd, “Edge toughness and material properties related to the machining of dental ceramics,” Mach. Sci. Technol., 4, 291–304 (2000).CrossRef J. Quinn, L. Su, L. Flanders, and I. Lloyd, “Edge toughness and material properties related to the machining of dental ceramics,” Mach. Sci. Technol., 4, 291–304 (2000).CrossRef
7.
Zurück zum Zitat G. A. Gogotsi, D. Yu. Ostrovoi, B. I. Ozerskii, and Yu. G. Gogotsi, “Mechanical test procedures and equipment for nanostructured and other brittle materials,” in: Proc. of Int. Conf. “Modern Materials Science. Advances and Problems” (Sept. 26–30, 2005, Kiev), Kiev (2005), pp. 907–908. G. A. Gogotsi, D. Yu. Ostrovoi, B. I. Ozerskii, and Yu. G. Gogotsi, “Mechanical test procedures and equipment for nanostructured and other brittle materials,” in: Proc. of Int. Conf. “Modern Materials Science. Advances and Problems” (Sept. 26–30, 2005, Kiev), Kiev (2005), pp. 907–908.
8.
Zurück zum Zitat G. A. Gogotsi, V. I. Galenko, S. P. Mudrik, et al., “Glass fracture in edge flaking,” Strength Mater., 39, No. 6, 639–645 (2007).CrossRef G. A. Gogotsi, V. I. Galenko, S. P. Mudrik, et al., “Glass fracture in edge flaking,” Strength Mater., 39, No. 6, 639–645 (2007).CrossRef
9.
Zurück zum Zitat L. A. Flanders, J. B. Quinn, O. C. Wilson, Jr., and I. K. Lloyd, “Scratch hardness and chipping of dental ceramics under different environments,” Dental Mater., 19, 716–724 (2003).CrossRef L. A. Flanders, J. B. Quinn, O. C. Wilson, Jr., and I. K. Lloyd, “Scratch hardness and chipping of dental ceramics under different environments,” Dental Mater., 19, 716–724 (2003).CrossRef
10.
Zurück zum Zitat M. P. Markovets, Determination of Mechanical Properties of Materials by Hardness [in Russian], Mashinostroenie, Moscow (1979). M. P. Markovets, Determination of Mechanical Properties of Materials by Hardness [in Russian], Mashinostroenie, Moscow (1979).
11.
Zurück zum Zitat N. N. Davidenkov, Dynamic Strength and Brittleness of Metals [in Russian], Vol. 1, Naukova Dumka, Kiev (1981). N. N. Davidenkov, Dynamic Strength and Brittleness of Metals [in Russian], Vol. 1, Naukova Dumka, Kiev (1981).
12.
Zurück zum Zitat L. L. Burman and V. V. Rogov, “Assessment of machinability of brittle materials by their scratch hardness,” Sverkhtverd. Mater., No. 2, 56–59 (1981). L. L. Burman and V. V. Rogov, “Assessment of machinability of brittle materials by their scratch hardness,” Sverkhtverd. Mater., No. 2, 56–59 (1981).
13.
Zurück zum Zitat F. Petit, P. Descamps, J. P. Erauw, and F. Cambier, “Toughness (KIc ) measurement by a sliding indentation method,” Key Eng. Mater., 206-213, 629–632 (2002).CrossRef F. Petit, P. Descamps, J. P. Erauw, and F. Cambier, “Toughness (KIc ) measurement by a sliding indentation method,” Key Eng. Mater., 206-213, 629–632 (2002).CrossRef
14.
Zurück zum Zitat H. Chai and B. Lawn, “A universal relation for edge chipping from sharp contacts in brittle materials: A simple means of toughness evaluation,” Acta Mater., 55, 2555–2561 (2007).CrossRef H. Chai and B. Lawn, “A universal relation for edge chipping from sharp contacts in brittle materials: A simple means of toughness evaluation,” Acta Mater., 55, 2555–2561 (2007).CrossRef
15.
Zurück zum Zitat F. Petit, V. Vandeneede, and F. Cambier, “Ceramic toughness assessment through edge chipping measurements – influence of interfacial friction,” J. Eur. Ceram. Soc., 29, 2135–2141 (2009).CrossRef F. Petit, V. Vandeneede, and F. Cambier, “Ceramic toughness assessment through edge chipping measurements – influence of interfacial friction,” J. Eur. Ceram. Soc., 29, 2135–2141 (2009).CrossRef
16.
Zurück zum Zitat V. G. Bar’yakhtar (Ed.), Solid State Physics. Encyclopedic Dictionary [in Russian], Vol. 1, Naukova Dumka, Kiev (1996). V. G. Bar’yakhtar (Ed.), Solid State Physics. Encyclopedic Dictionary [in Russian], Vol. 1, Naukova Dumka, Kiev (1996).
17.
Zurück zum Zitat I. Yu. Lebedenko, V. I. Khvan, M. S. Deev, and A. I. Lebedenko, “Zirconium, zircon, zirconia,” Ros. Stomat. Zhurn., No. 4, 50–54 (2008). I. Yu. Lebedenko, V. I. Khvan, M. S. Deev, and A. I. Lebedenko, “Zirconium, zircon, zirconia,” Ros. Stomat. Zhurn., No. 4, 50–54 (2008).
18.
Zurück zum Zitat A. Arora, D. B. Marshall, B. R. Lawn, and M. V. Swain, “Indentation deformation / fracture of normal and anomalous glasses,” J. Non-Cryst. Sol., 31, 415–428 (1979).CrossRef A. Arora, D. B. Marshall, B. R. Lawn, and M. V. Swain, “Indentation deformation / fracture of normal and anomalous glasses,” J. Non-Cryst. Sol., 31, 415–428 (1979).CrossRef
19.
Zurück zum Zitat Z. Burghard, A. Zimmermann, J. Rodel, et al., “Crack opening profiles of indentation crack in normal and anomalous glasses,” Acta Mater., 52, 293–297 (2004).CrossRef Z. Burghard, A. Zimmermann, J. Rodel, et al., “Crack opening profiles of indentation crack in normal and anomalous glasses,” Acta Mater., 52, 293–297 (2004).CrossRef
20.
Zurück zum Zitat GOST 111-2001. Plate Glass. Specification [in Russian], GUP TsPP, Moscow (2002). GOST 111-2001. Plate Glass. Specification [in Russian], GUP TsPP, Moscow (2002).
21.
Zurück zum Zitat GOST 15130-86. Silica Optical Glass. General Specifications [in Russian], Izd. Standartov, Moscow (1987). GOST 15130-86. Silica Optical Glass. General Specifications [in Russian], Izd. Standartov, Moscow (1987).
22.
Zurück zum Zitat G. A. Gogotsi, V. I. Galenko, S. P. Mudrik, et al., “Fracture resistance estimation of elastic ceramics in edge flaking: EF baseline,” J. Eur. Ceram. Soc., 30, 1223–1228 (2010).CrossRef G. A. Gogotsi, V. I. Galenko, S. P. Mudrik, et al., “Fracture resistance estimation of elastic ceramics in edge flaking: EF baseline,” J. Eur. Ceram. Soc., 30, 1223–1228 (2010).CrossRef
23.
Zurück zum Zitat O. A. Batanova, G. A. Gogotsi, and Yu. G. Matvienko, “Numerical analysis of edge chipping test results,” Zavod. Lab. Diagn. Mater., 77, No. 7, 53–56 (2011). O. A. Batanova, G. A. Gogotsi, and Yu. G. Matvienko, “Numerical analysis of edge chipping test results,” Zavod. Lab. Diagn. Mater., 77, No. 7, 53–56 (2011).
24.
Zurück zum Zitat O. A. Batanova, G. A. Gogotsi, and Yu. G. Matvienko, “Numerical analysis of fracture resistance test results for silicon nitride based structural ceramics,” in: Proc. Int. Sci.-Techn. Conf. “Durability and Structural Materials Science” (Oct. 22–24, 2012, Moscow), Moscow (2012), pp. 16–25. O. A. Batanova, G. A. Gogotsi, and Yu. G. Matvienko, “Numerical analysis of fracture resistance test results for silicon nitride based structural ceramics,” in: Proc. Int. Sci.-Techn. Conf. “Durability and Structural Materials Science” (Oct. 22–24, 2012, Moscow), Moscow (2012), pp. 16–25.
25.
Zurück zum Zitat R. R. Mavlyutov, Stress Concentration in Aircraft Structural Elements [in Russian], Nauka, Moscow (1981). R. R. Mavlyutov, Stress Concentration in Aircraft Structural Elements [in Russian], Nauka, Moscow (1981).
26.
Zurück zum Zitat G. A. Gogotsi and S. P. Mudrik, “Fracture barrier estimation by the edge fracture test method,” Ceram. Int., 35, 1871–1875 (2009).CrossRef G. A. Gogotsi and S. P. Mudrik, “Fracture barrier estimation by the edge fracture test method,” Ceram. Int., 35, 1871–1875 (2009).CrossRef
27.
Zurück zum Zitat G. A. Gogotsi, “Fracture behaviour of Mg-PSZ ceramics: Comparative estimates,” Ceram. Int., 35, 2735–2740 (2009).CrossRef G. A. Gogotsi, “Fracture behaviour of Mg-PSZ ceramics: Comparative estimates,” Ceram. Int., 35, 2735–2740 (2009).CrossRef
28.
Zurück zum Zitat G. A. Gogotsi, V. I. Galenko, S. P. Mudrik, et al., “Fracture behaviour of Y-TZP ceramics: New outcomes,” Ceram. Int., 36, 345–350 (2010).CrossRef G. A. Gogotsi, V. I. Galenko, S. P. Mudrik, et al., “Fracture behaviour of Y-TZP ceramics: New outcomes,” Ceram. Int., 36, 345–350 (2010).CrossRef
29.
Zurück zum Zitat E. S. Ventsel’, The Theory of Probability [in Russian], Nauka, Moscow (1969). E. S. Ventsel’, The Theory of Probability [in Russian], Nauka, Moscow (1969).
30.
Zurück zum Zitat M. N. Stepnov, Statistical Methods for Processing Mechanical Test Results. Handbook [in Russian], Mashinostroenie, Moscow (1985). M. N. Stepnov, Statistical Methods for Processing Mechanical Test Results. Handbook [in Russian], Mashinostroenie, Moscow (1985).
Metadaten
Titel
Mechanical Behavior of Ceramics and Glass During Specimen Edge Fracture Caused by Rockwell Indentor
verfasst von
V. V. Khvorostyanyi
Publikationsdatum
01.05.2014
Verlag
Springer US
Erschienen in
Strength of Materials / Ausgabe 3/2014
Print ISSN: 0039-2316
Elektronische ISSN: 1573-9325
DOI
https://doi.org/10.1007/s11223-014-9560-8

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