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Erschienen in: Journal of Failure Analysis and Prevention 5/2017

01.10.2017 | Technical Article---Peer-Reviewed

Stress Intensity Factor K I and T-Stress Determination in HDPE Material

verfasst von: Mohammed A. Bouchelarm, Mohamed Mazari, Noureddine Benseddiq

Erschienen in: Journal of Failure Analysis and Prevention | Ausgabe 5/2017

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Abstract

For the characterization of high-density polyethylene (HDPE) pipes according to the operating conditions, the Nol ring test is an adequate method to rapidly and inexpensively determine the mechanical properties with good effectiveness. In this work, Nol ring tests will be carried out on HDPE material with different crack depth ratios. Based on these results, the brittle fracture of HDPE will be studied and a new experimental technique for measuring stress intensity factor (SIF) and T-stress under mode I conditions is developed. The formulation of the normal strains, close to the crack tip, is given using the first five terms of the generalized Westergaard formulation. Then, in a second step, these formulations are applied to analytically determine the optimum locations for the rectangular rosette to eliminate the errors due to higher order terms of the asymptotic expansion.

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Literatur
1.
Zurück zum Zitat ISO 6259: Thermoplastic Pipes-Determination of Tensile Properties—Part 3: Polyolefin Pipes (1997) ISO 6259: Thermoplastic Pipes-Determination of Tensile PropertiesPart 3: Polyolefin Pipes (1997)
2.
Zurück zum Zitat I. ISO 6259: Thermoplastic Pipes-Determination of Tensile Properties—Part 1: General Test Method (1997) I. ISO 6259: Thermoplastic Pipes-Determination of Tensile PropertiesPart 1: General Test Method (1997)
3.
Zurück zum Zitat Metallic Materials Tube Ring Expanding Test, International Standard ISO 8495-8496 Metallic Materials Tube Ring Expanding Test, International Standard ISO 8495-8496
4.
Zurück zum Zitat ASTM D2290-12: Standard Test Method for Apparent Hoop Tensile Strength of Plastic or Reinforced Plastic Pipe by Split Disk Method. ASTM International, West Conshohocken, PA, 2016. www.astm.org ASTM D2290-12: Standard Test Method for Apparent Hoop Tensile Strength of Plastic or Reinforced Plastic Pipe by Split Disk Method. ASTM International, West Conshohocken, PA, 2016. www.​astm.​org
5.
Zurück zum Zitat S. Arsène, J. Bai, A new approach to measuring transverse properties of structural tubing by a ring test. J. Test. Eval. 24(6), 386–391 (1996)CrossRef S. Arsène, J. Bai, A new approach to measuring transverse properties of structural tubing by a ring test. J. Test. Eval. 24(6), 386–391 (1996)CrossRef
6.
Zurück zum Zitat S. Arsène, J. Bai, A new approach to measuring transverse properties of structural tubing by a ring test—experimental investigation. J. Test. Eval. 26(1), 26–30 (1998)CrossRef S. Arsène, J. Bai, A new approach to measuring transverse properties of structural tubing by a ring test—experimental investigation. J. Test. Eval. 26(1), 26–30 (1998)CrossRef
7.
Zurück zum Zitat R. Mehan, L. Jackson, M.R. Rairden, J.R. Rairden, W. Carter, The use of a ring tensile test to evaluate plasma-deposited materials. J. Mater. Sci. 22(12), 4478–4483 (1987)CrossRef R. Mehan, L. Jackson, M.R. Rairden, J.R. Rairden, W. Carter, The use of a ring tensile test to evaluate plasma-deposited materials. J. Mater. Sci. 22(12), 4478–4483 (1987)CrossRef
8.
Zurück zum Zitat C. Kaynak, E.S. Erdiller, L. Parnas, F. Senel, Use of split-disk tests for the process parameters of filament wound epoxy composite tubes. Polym. Test. 24(5), 648–655 (2005)CrossRef C. Kaynak, E.S. Erdiller, L. Parnas, F. Senel, Use of split-disk tests for the process parameters of filament wound epoxy composite tubes. Polym. Test. 24(5), 648–655 (2005)CrossRef
9.
Zurück zum Zitat S. Kim, J. Bang, D. Kim, I. Lim, Y. Yang, K. Song, D. Kim, Hoop strength and ductility evaluation of irradiated fuel cladding. Nucl. Eng. Des. 239(2), 254–260 (2009)CrossRef S. Kim, J. Bang, D. Kim, I. Lim, Y. Yang, K. Song, D. Kim, Hoop strength and ductility evaluation of irradiated fuel cladding. Nucl. Eng. Des. 239(2), 254–260 (2009)CrossRef
10.
Zurück zum Zitat M. Sanchez, S. Louis, C.-E. Bruzek, M. Rozental-Evesque, K.G.B. Rabaud, Development of a “Nol Ring” test to study polyethylene pipe degradation and its implementation on field house connection pipes, in: Proceedings of the Edinburgh International Conference Centre, United Kingdom (2008) M. Sanchez, S. Louis, C.-E. Bruzek, M. Rozental-Evesque, K.G.B. Rabaud, Development of a “Nol Ring” test to study polyethylene pipe degradation and its implementation on field house connection pipes, in: Proceedings of the Edinburgh International Conference Centre, United Kingdom (2008)
11.
Zurück zum Zitat ASTM D1559-05: Standard Test Method for Resistance to Short-Time Hydraulic Pressure of Plastic Pipe, Tubing, and Fittings (ASTM International, West Conshohocken, PA, 2005). www.astm.org ASTM D1559-05: Standard Test Method for Resistance to Short-Time Hydraulic Pressure of Plastic Pipe, Tubing, and Fittings (ASTM International, West Conshohocken, PA, 2005). www.​astm.​org
12.
Zurück zum Zitat M. Rozental-Evesque, B. Rabaud, M. Sanchez, S. Louis, C.-E. Bruzek, The Nol Ring test: an improved tool for characterising the mechanical degradation of non-failed polyethylene pipes house connections, in Proceedings of Plastic Pipes Congress, Budapest, Hungary, pp. 22–24 (2008) M. Rozental-Evesque, B. Rabaud, M. Sanchez, S. Louis, C.-E. Bruzek, The Nol Ring test: an improved tool for characterising the mechanical degradation of non-failed polyethylene pipes house connections, in Proceedings of Plastic Pipes Congress, Budapest, Hungary, pp. 22–24 (2008)
13.
Zurück zum Zitat L. Laiarinandrasana, C. Devilliers, S. Oberti, E. Gaudichet, B. Fayolle, J. Lucatelli, Ring tests on high-density polyethylene: full investigation assisted by finite element modelling. Int. J. Press. Vessels Pip. 88(1), 1–10 (2011)CrossRef L. Laiarinandrasana, C. Devilliers, S. Oberti, E. Gaudichet, B. Fayolle, J. Lucatelli, Ring tests on high-density polyethylene: full investigation assisted by finite element modelling. Int. J. Press. Vessels Pip. 88(1), 1–10 (2011)CrossRef
14.
Zurück zum Zitat Y. Zhang, P.Y. Ben Jar, Quantitative assessment of deformation-induced damage in polyethylene pressure pipe. Polym. Test. 47, 42–50 (2015)CrossRef Y. Zhang, P.Y. Ben Jar, Quantitative assessment of deformation-induced damage in polyethylene pressure pipe. Polym. Test. 47, 42–50 (2015)CrossRef
15.
Zurück zum Zitat T.M.A.A. EL-Bagory, T.A.R. Alkanhal, M.Y.A. Younan, Effect of specimen geometry on the predicted mechanical behavior of polyethylene pipe material. J. Press. Vessels Technol. 137(6), 061202 (2015)CrossRef T.M.A.A. EL-Bagory, T.A.R. Alkanhal, M.Y.A. Younan, Effect of specimen geometry on the predicted mechanical behavior of polyethylene pipe material. J. Press. Vessels Technol. 137(6), 061202 (2015)CrossRef
16.
Zurück zum Zitat L. Laiarinandrasana, C. Devilliers, J.M. Lucatelli, E. Gaudichet-Maurin, J.M. Brossard, Experimental study of the crack depth ratio threshold to analyze the slow crack growth by creep of high density polyethylene pipes. Int. J. Press. Vessels Pip. 122, 22–30 (2014)CrossRef L. Laiarinandrasana, C. Devilliers, J.M. Lucatelli, E. Gaudichet-Maurin, J.M. Brossard, Experimental study of the crack depth ratio threshold to analyze the slow crack growth by creep of high density polyethylene pipes. Int. J. Press. Vessels Pip. 122, 22–30 (2014)CrossRef
17.
Zurück zum Zitat M.L. Williams, On the stress distribution at the base of a stationary crack. J. Appl. Mech. 24, 109–114 (1957) M.L. Williams, On the stress distribution at the base of a stationary crack. J. Appl. Mech. 24, 109–114 (1957)
18.
Zurück zum Zitat Y.J. Chao, S. Liu, B.J. Broviak, Brittle fracture: variation of fracture toughness with constraint and crack curving under mode I conditions. Exp. Mech. 41(3), 232–241 (2001)CrossRef Y.J. Chao, S. Liu, B.J. Broviak, Brittle fracture: variation of fracture toughness with constraint and crack curving under mode I conditions. Exp. Mech. 41(3), 232–241 (2001)CrossRef
19.
Zurück zum Zitat Richardson, D.E., Goree, J.G.: Experimental verification of a new two-parameter fracture model, in Fracture Mechanics: Twenty-Third Symposium (ASTM International, 1993), pp. 738–750 Richardson, D.E., Goree, J.G.: Experimental verification of a new two-parameter fracture model, in Fracture Mechanics: Twenty-Third Symposium (ASTM International, 1993), pp. 738–750
20.
Zurück zum Zitat G.R. Irwin: Discussion of the dynamic stress distribution surrounding a running crack—a photoelastic analysis, in: Proceedings of the Society for Experimental Stress Analysis, vol. 16, no. 1 (1957), pp. 93–96 G.R. Irwin: Discussion of the dynamic stress distribution surrounding a running crack—a photoelastic analysis, in: Proceedings of the Society for Experimental Stress Analysis, vol. 16, no. 1 (1957), pp. 93–96
21.
Zurück zum Zitat S.G. Larsson, A. Carlsson, Influence of non-singular stress terms and specimen geometry on small-scale yielding at crack-tips in elastic–plastic materials. J. Mech. Phys. Solids 21(4), 263–277 (1973)CrossRef S.G. Larsson, A. Carlsson, Influence of non-singular stress terms and specimen geometry on small-scale yielding at crack-tips in elastic–plastic materials. J. Mech. Phys. Solids 21(4), 263–277 (1973)CrossRef
22.
Zurück zum Zitat J.R. Rice, Limitations to the small scale yielding approximation for crack tip plasticity. J. Mech. Phys. Solids 22(1), 17–26 (1974)CrossRef J.R. Rice, Limitations to the small scale yielding approximation for crack tip plasticity. J. Mech. Phys. Solids 22(1), 17–26 (1974)CrossRef
23.
Zurück zum Zitat B. Cotterell, Notes on the paths and stability of cracks. Int. J. Fract. 2(3), 526–533 (1966)CrossRef B. Cotterell, Notes on the paths and stability of cracks. Int. J. Fract. 2(3), 526–533 (1966)CrossRef
24.
Zurück zum Zitat S. Melin, The influence of the T-stress on the directional stability of cracks. Int. J. Fract. 114(3), 259–265 (2002)CrossRef S. Melin, The influence of the T-stress on the directional stability of cracks. Int. J. Fract. 114(3), 259–265 (2002)CrossRef
25.
Zurück zum Zitat T. Fett, D. Munz, T-stress and crack path stability of DCDC specimens. Int. J. Fract. 124, L165–L170 (2003)CrossRef T. Fett, D. Munz, T-stress and crack path stability of DCDC specimens. Int. J. Fract. 124, L165–L170 (2003)CrossRef
26.
Zurück zum Zitat R.J. Sanford, Principles of Fracture Mechanics (Prentice Hall, New York, 2003) R.J. Sanford, Principles of Fracture Mechanics (Prentice Hall, New York, 2003)
27.
Zurück zum Zitat R.M. Bonesteel, D.E. Piper, A.T. Davinroy, Compliance and KI calibration of double cantilever beam (DCB) specimens. Eng. Fract. Mech. 10(2), 425–428 (1978)CrossRef R.M. Bonesteel, D.E. Piper, A.T. Davinroy, Compliance and KI calibration of double cantilever beam (DCB) specimens. Eng. Fract. Mech. 10(2), 425–428 (1978)CrossRef
28.
Zurück zum Zitat J.C. Newman, Stress-intensity factors and crack-opening displacements for round compact specimens. Int. J. Fract. 17(6), 567–578 (1981)CrossRef J.C. Newman, Stress-intensity factors and crack-opening displacements for round compact specimens. Int. J. Fract. 17(6), 567–578 (1981)CrossRef
29.
Zurück zum Zitat E.E. Gdoutos, P.S. Theocaris, A photoelastic determination of mixed-mode stress-intensity factors. Exp. Mech. 18(3), 87–96 (1978)CrossRef E.E. Gdoutos, P.S. Theocaris, A photoelastic determination of mixed-mode stress-intensity factors. Exp. Mech. 18(3), 87–96 (1978)CrossRef
30.
Zurück zum Zitat T.H. Hyde, N.A. Warrior, An improved method for the determination of photoelastic stress intensity factors using the Westergaard stress function. Int. J. Mech. Sci. 32(3), 265–273 (1990)CrossRef T.H. Hyde, N.A. Warrior, An improved method for the determination of photoelastic stress intensity factors using the Westergaard stress function. Int. J. Mech. Sci. 32(3), 265–273 (1990)CrossRef
31.
Zurück zum Zitat M. Mahinfalah, L. Zackery, Photoelastic determination of mixed mode stress intensity factors for sharp reentrant corners. Eng. Fract. Mech. 52(4), 639–645 (1995)CrossRef M. Mahinfalah, L. Zackery, Photoelastic determination of mixed mode stress intensity factors for sharp reentrant corners. Eng. Fract. Mech. 52(4), 639–645 (1995)CrossRef
32.
Zurück zum Zitat P.S. Theocaris, Local yielding around a crack tip in plexiglas. J. Appl. Mech. : ASME 37, 409–415 (1970)CrossRef P.S. Theocaris, Local yielding around a crack tip in plexiglas. J. Appl. Mech. : ASME 37, 409–415 (1970)CrossRef
33.
Zurück zum Zitat M. Konsta-Gdoutos, Limitations in mixed-mode stress intensity factor evaluation by the method of caustics. Eng. Fract. Mech. 55(3), 371–382 (1996)CrossRef M. Konsta-Gdoutos, Limitations in mixed-mode stress intensity factor evaluation by the method of caustics. Eng. Fract. Mech. 55(3), 371–382 (1996)CrossRef
34.
Zurück zum Zitat X.F. Yao, W. Xu, M.Q. Xu, K. Arakawa, T. Mada, K. Takahashi, Experimental study of dynamic fracture behavior of PMMA with overlapping offset-parallel cracks. Polym. Test. 22(6), 663–670 (2003)CrossRef X.F. Yao, W. Xu, M.Q. Xu, K. Arakawa, T. Mada, K. Takahashi, Experimental study of dynamic fracture behavior of PMMA with overlapping offset-parallel cracks. Polym. Test. 22(6), 663–670 (2003)CrossRef
35.
Zurück zum Zitat W. Xu, X.F. Yao, M.Q. Xu, G.C. Jin, H.Y. Yeh, Fracture characterizations of V-notch tip in PMMA polymer material. Polym. Test. 23(5), 509–515 (2004)CrossRef W. Xu, X.F. Yao, M.Q. Xu, G.C. Jin, H.Y. Yeh, Fracture characterizations of V-notch tip in PMMA polymer material. Polym. Test. 23(5), 509–515 (2004)CrossRef
36.
Zurück zum Zitat W. Liu, S. Wang, X. Yao, Experimental study on stress intensity factor for an axial crack in a PMMA cylindrical shell. Polym. Test. 56, 36–44 (2016)CrossRef W. Liu, S. Wang, X. Yao, Experimental study on stress intensity factor for an axial crack in a PMMA cylindrical shell. Polym. Test. 56, 36–44 (2016)CrossRef
37.
Zurück zum Zitat Y. Zhongwen, S. Yao, Y. Renshu, Y. Qiang, Comparison of caustics and the strain gage method for measuring mode I stress intensity factor of PMMA material. Polym. Test. 59, 10–19 (2017)CrossRef Y. Zhongwen, S. Yao, Y. Renshu, Y. Qiang, Comparison of caustics and the strain gage method for measuring mode I stress intensity factor of PMMA material. Polym. Test. 59, 10–19 (2017)CrossRef
38.
Zurück zum Zitat J.W. Dally, R.J. Sanford, Strain-gage methods for measuring the opening-mode stress intensity factor, KI. Exp. Mech. 27(4), 381–388 (1987)CrossRef J.W. Dally, R.J. Sanford, Strain-gage methods for measuring the opening-mode stress intensity factor, KI. Exp. Mech. 27(4), 381–388 (1987)CrossRef
39.
Zurück zum Zitat S. Swamy, M.V. Srikanth, K.S.R.K. Murthy, P.S. Robi, Determination of complex stress intensity factors of complex configurations using strain gages. J. Mech. Mater. Struct. 3(7), 1239–1255 (2008)CrossRef S. Swamy, M.V. Srikanth, K.S.R.K. Murthy, P.S. Robi, Determination of complex stress intensity factors of complex configurations using strain gages. J. Mech. Mater. Struct. 3(7), 1239–1255 (2008)CrossRef
40.
Zurück zum Zitat M.Y. Dehnavi, S. Khaleghian, A. Emami, M. Tehrani, N. Soltani, Utilizing digital image correlation to determine stress intensity factors. Polym. Test. 37, 28–35 (2014)CrossRef M.Y. Dehnavi, S. Khaleghian, A. Emami, M. Tehrani, N. Soltani, Utilizing digital image correlation to determine stress intensity factors. Polym. Test. 37, 28–35 (2014)CrossRef
41.
Zurück zum Zitat I. Eshraghi, M.R.Y. Dehnavi, N. Soltani, Effect of subset parameters selection on the estimation of mode-I stress intensity factor in a cracked PMMA specimen using digital image correlation. Polym. Test. 37, 193–200 (2014)CrossRef I. Eshraghi, M.R.Y. Dehnavi, N. Soltani, Effect of subset parameters selection on the estimation of mode-I stress intensity factor in a cracked PMMA specimen using digital image correlation. Polym. Test. 37, 193–200 (2014)CrossRef
42.
Zurück zum Zitat R.J. Sanford, A critical re-examination of the Westergaard method for solving opening-mode crack problems. Mech. Res. Commun. 6(5), 289–294 (1979)CrossRef R.J. Sanford, A critical re-examination of the Westergaard method for solving opening-mode crack problems. Mech. Res. Commun. 6(5), 289–294 (1979)CrossRef
43.
Zurück zum Zitat J.W. Dally, J.R. Berger, A strain gage method for determining KI and KII in a mixed mode stress field, in The Proceedings of the 1986 SEM Spring Conference on Experimental Mechanics. New Orleans, LA (1986), pp. 603–612 J.W. Dally, J.R. Berger, A strain gage method for determining KI and KII in a mixed mode stress field, in The Proceedings of the 1986 SEM Spring Conference on Experimental Mechanics. New Orleans, LA (1986), pp. 603–612
44.
Zurück zum Zitat J.W. Dally, D.B. Barker, Dynamic measurements of initiation toughness at high loading rates. Exp. Mech. 28(3), 298–303 (1988)CrossRef J.W. Dally, D.B. Barker, Dynamic measurements of initiation toughness at high loading rates. Exp. Mech. 28(3), 298–303 (1988)CrossRef
45.
Zurück zum Zitat A. Shukla, B.D. Agarwal, B. Bhushan, Determination of stress intensity factor in orthotropic composite materials using strain gages. Eng. Fract. Mech. 32(3), 469–477 (1989)CrossRef A. Shukla, B.D. Agarwal, B. Bhushan, Determination of stress intensity factor in orthotropic composite materials using strain gages. Eng. Fract. Mech. 32(3), 469–477 (1989)CrossRef
46.
Zurück zum Zitat S.K. Khanna, A. Shukla, Development of stress field equations and determination of stress intensity factor during dynamic fracture of orthotropic composite materials. Eng. Fract. Mech. 47(3), 345–359 (1994)CrossRef S.K. Khanna, A. Shukla, Development of stress field equations and determination of stress intensity factor during dynamic fracture of orthotropic composite materials. Eng. Fract. Mech. 47(3), 345–359 (1994)CrossRef
47.
Zurück zum Zitat J. Wei, J.H. Zhao, A two-strain-gage technique for determining mode I stress intensity factor. Theor. Appl. Fract. Mech. 28(2), 135–140 (1997)CrossRef J. Wei, J.H. Zhao, A two-strain-gage technique for determining mode I stress intensity factor. Theor. Appl. Fract. Mech. 28(2), 135–140 (1997)CrossRef
48.
Zurück zum Zitat J.H. Kuang, L.S. Chen, A single strain gage method for KI measurement. Eng. Fract. Mech. 51(5), 871–908 (1995)CrossRef J.H. Kuang, L.S. Chen, A single strain gage method for KI measurement. Eng. Fract. Mech. 51(5), 871–908 (1995)CrossRef
49.
Zurück zum Zitat A. Dorogoy, D. Rittel, Optimum location of a three strain gauge rosette for measuring mixed mode stress intensity factors. Exp. Mech. 75(14), 4127–4139 (2008) A. Dorogoy, D. Rittel, Optimum location of a three strain gauge rosette for measuring mixed mode stress intensity factors. Exp. Mech. 75(14), 4127–4139 (2008)
50.
Zurück zum Zitat H. Sarangi, K.S.R.K. Murthy, D. Chakraborty, Radial locations of strain gages for accurate measurement of mode I stress intensity factor. Mater. Des. 31(6), 2840–2850 (2010)CrossRef H. Sarangi, K.S.R.K. Murthy, D. Chakraborty, Radial locations of strain gages for accurate measurement of mode I stress intensity factor. Mater. Des. 31(6), 2840–2850 (2010)CrossRef
51.
Zurück zum Zitat H. Sarangi, K.S.R.K. Murthy, D. Chakraborty, Optimum strain gage location for evaluating stress intensity factors in single and double ended cracked configurations. Eng. Fract. Mech. 77(16), 3190–3203 (2010)CrossRef H. Sarangi, K.S.R.K. Murthy, D. Chakraborty, Optimum strain gage location for evaluating stress intensity factors in single and double ended cracked configurations. Eng. Fract. Mech. 77(16), 3190–3203 (2010)CrossRef
52.
Zurück zum Zitat H. Sarangi, K.S.R.K. Murthy, D. Chakraborty, Experimental verification of optimal strain gage locations for the accurate determination of mode I stress intensity factors. Eng. Fract. Mech. 110, 189–200 (2013)CrossRef H. Sarangi, K.S.R.K. Murthy, D. Chakraborty, Experimental verification of optimal strain gage locations for the accurate determination of mode I stress intensity factors. Eng. Fract. Mech. 110, 189–200 (2013)CrossRef
53.
Zurück zum Zitat P.S. Leevers, J.C. Radon, Inherent stress biaxiality in various fracture specimen geometries. Int. J. Fract. 19(4), 311–325 (1982)CrossRef P.S. Leevers, J.C. Radon, Inherent stress biaxiality in various fracture specimen geometries. Int. J. Fract. 19(4), 311–325 (1982)CrossRef
54.
Zurück zum Zitat A.P. Kfouri, Some evaluations of the elastic T-term using Eshelby’s method. Int. J. Fract. 30(4), 301–315 (1986)CrossRef A.P. Kfouri, Some evaluations of the elastic T-term using Eshelby’s method. Int. J. Fract. 30(4), 301–315 (1986)CrossRef
55.
Zurück zum Zitat T.L. Sham, The theory of higher order weight functions for linear elastic plane problems. Int. J. Solids Struct. 25(4), 357–380 (1989)CrossRef T.L. Sham, The theory of higher order weight functions for linear elastic plane problems. Int. J. Solids Struct. 25(4), 357–380 (1989)CrossRef
56.
Zurück zum Zitat T.L. Sham, The determination of the elastic T-term using higher order weight functions. Int. J. Fract. 48(2), 81–102 (1991)CrossRef T.L. Sham, The determination of the elastic T-term using higher order weight functions. Int. J. Fract. 48(2), 81–102 (1991)CrossRef
57.
Zurück zum Zitat Y.Y. Wang, D.M. Parks, Evaluation of the elastic T-stress in surface-cracked plates using the line-spring method. Int. J. Fract. 56(1), 25–40 (1992)CrossRef Y.Y. Wang, D.M. Parks, Evaluation of the elastic T-stress in surface-cracked plates using the line-spring method. Int. J. Fract. 56(1), 25–40 (1992)CrossRef
58.
Zurück zum Zitat T. Nakamura, D.M. Parks, Determination of elastic T-stress along three-dimensional crack fronts using interaction integral. Int. J. Solids Struct. 29(13), 1597–1611 (1992)CrossRef T. Nakamura, D.M. Parks, Determination of elastic T-stress along three-dimensional crack fronts using interaction integral. Int. J. Solids Struct. 29(13), 1597–1611 (1992)CrossRef
59.
Zurück zum Zitat B.S. Henry, A.R. Luxmoore, Three-dimensional evaluation of the T-stress in centre cracked plates. Int. J. Fract. 70(1), 35–50 (1995)CrossRef B.S. Henry, A.R. Luxmoore, Three-dimensional evaluation of the T-stress in centre cracked plates. Int. J. Fract. 70(1), 35–50 (1995)CrossRef
60.
Zurück zum Zitat B. Yang, K. Ravi-Chandar, Evaluation of elastic T-stress by stress difference method. Eng. Fract. Mech. 64(5), 589–601 (1999)CrossRef B. Yang, K. Ravi-Chandar, Evaluation of elastic T-stress by stress difference method. Eng. Fract. Mech. 64(5), 589–601 (1999)CrossRef
61.
Zurück zum Zitat M.R. Ayatolahi, M.J. Pavier, D.J. Smith, Determination of T-stress from finite element analysis for mode I and mixed mode I/II loading. Int. J. Fract. 91(3), 283–298 (1998)CrossRef M.R. Ayatolahi, M.J. Pavier, D.J. Smith, Determination of T-stress from finite element analysis for mode I and mixed mode I/II loading. Int. J. Fract. 91(3), 283–298 (1998)CrossRef
62.
Zurück zum Zitat M.J. Maleski, M.S. Kirugulige, H.V. Tippur, A method for measuring mode I crack tip constraint under static and dynamic loading conditions. Exp. Mech. 44(5), 522–532 (2004)CrossRef M.J. Maleski, M.S. Kirugulige, H.V. Tippur, A method for measuring mode I crack tip constraint under static and dynamic loading conditions. Exp. Mech. 44(5), 522–532 (2004)CrossRef
63.
Zurück zum Zitat M. Zanganeh, R.A. Tomlinson, J.R. Yates, T-stress determination using thermoelastic stress analysis. J. Strain Anal. Eng. 43(6), 529–537 (2008)CrossRef M. Zanganeh, R.A. Tomlinson, J.R. Yates, T-stress determination using thermoelastic stress analysis. J. Strain Anal. Eng. 43(6), 529–537 (2008)CrossRef
64.
Zurück zum Zitat M. Hadj Meliani, Z. Azari, G. Pluvinage, Y.G. Matvienko, The effective T-stress estimation and crack paths emanating from U-notches. Eng. Fract. Mech. 77(11), 1682–1692 (2010)CrossRef M. Hadj Meliani, Z. Azari, G. Pluvinage, Y.G. Matvienko, The effective T-stress estimation and crack paths emanating from U-notches. Eng. Fract. Mech. 77(11), 1682–1692 (2010)CrossRef
71.
Zurück zum Zitat Y.G. Matvienko, V.S. Pisarev, S.I. Eleonsky, A.V. Chernov, Determination of fracture mechanics parameters by measurements of local displacements due to crack length increment. Fatigue Fract. Eng. Mater. Struct. 37(12), 1306–1318 (2014). doi:10.1111/ffe.12195 CrossRef Y.G. Matvienko, V.S. Pisarev, S.I. Eleonsky, A.V. Chernov, Determination of fracture mechanics parameters by measurements of local displacements due to crack length increment. Fatigue Fract. Eng. Mater. Struct. 37(12), 1306–1318 (2014). doi:10.​1111/​ffe.​12195 CrossRef
72.
Zurück zum Zitat V.S. Pisarev, Y.G. Matvienko, S.I. Eleonsky, I.N. Odintsev, Combining the crack compliance method and speckle interferometry data for determination of stress intensity factors and T-stresses. Eng. Fract. Mech. 179, 348–374 (2017). doi:10.1016/j.engfracmech.2017.04.029 CrossRef V.S. Pisarev, Y.G. Matvienko, S.I. Eleonsky, I.N. Odintsev, Combining the crack compliance method and speckle interferometry data for determination of stress intensity factors and T-stresses. Eng. Fract. Mech. 179, 348–374 (2017). doi:10.​1016/​j.​engfracmech.​2017.​04.​029 CrossRef
76.
Zurück zum Zitat A. Campagnolo, G. Meneghetti, F. Berto, Rapid finite element evaluation of the averaged strain energy density of mixed-mode (I + II) crack tip fields including the T-stress contribution. Fatigue Fract. Eng. Mater. Struct. 39(8), 982–998 (2016). doi:10.1111/ffe.12439 CrossRef A. Campagnolo, G. Meneghetti, F. Berto, Rapid finite element evaluation of the averaged strain energy density of mixed-mode (I + II) crack tip fields including the T-stress contribution. Fatigue Fract. Eng. Mater. Struct. 39(8), 982–998 (2016). doi:10.​1111/​ffe.​12439 CrossRef
77.
80.
Zurück zum Zitat M. Ben Amara, J. Capelle, Z. Azari, G. Pluvinage, Use of a ring DWTT specimen for determination of steel NDT from pipe of diameter less than DN500. J. Fail. Anal. Prev. 16(6), 941–950 (2016). doi:10.1007/s11668-016-0194-y CrossRef M. Ben Amara, J. Capelle, Z. Azari, G. Pluvinage, Use of a ring DWTT specimen for determination of steel NDT from pipe of diameter less than DN500. J. Fail. Anal. Prev. 16(6), 941–950 (2016). doi:10.​1007/​s11668-016-0194-y CrossRef
81.
Zurück zum Zitat L. Alimi, W. Ghabeche, W. Chaoui, K. Chaoui, Étude des propriétés mécaniques à travers la paroi d’un tube HDPE-80 extrudé destiné à la distribution du gaz naturel. Matériaux & Techniques 100(1), 79–86 (2012)CrossRef L. Alimi, W. Ghabeche, W. Chaoui, K. Chaoui, Étude des propriétés mécaniques à travers la paroi d’un tube HDPE-80 extrudé destiné à la distribution du gaz naturel. Matériaux & Techniques 100(1), 79–86 (2012)CrossRef
82.
Zurück zum Zitat J. Rosakis, K. Ravi-Chandar, On crack-tip stress state: an experimental evaluation of three-dimensional effects. Int. J. Solids Struct. 22(2), 121–134 (1986)CrossRef J. Rosakis, K. Ravi-Chandar, On crack-tip stress state: an experimental evaluation of three-dimensional effects. Int. J. Solids Struct. 22(2), 121–134 (1986)CrossRef
Metadaten
Titel
Stress Intensity Factor K I and T-Stress Determination in HDPE Material
verfasst von
Mohammed A. Bouchelarm
Mohamed Mazari
Noureddine Benseddiq
Publikationsdatum
01.10.2017
Verlag
Springer US
Erschienen in
Journal of Failure Analysis and Prevention / Ausgabe 5/2017
Print ISSN: 1547-7029
Elektronische ISSN: 1864-1245
DOI
https://doi.org/10.1007/s11668-017-0322-3

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