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Propriétés mécaniques et durée de vie de bétons réfractaires

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80 A.D. PAPARGYRIS, R.G. COOKE, S.A. PAPARGYRI, A.I. BOTIS. The acoustic<br />

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83 M. OHTSU, D<strong>et</strong>ermination of crack orientation by acoustic emission, Materials<br />

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84 M. OHTSU, Simplified moment tensor analisys and unified <strong>de</strong>composition of AE<br />

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85 W. SUARIS, J.G.M. VAN MIER, Acoustic emission source characterisation in<br />

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86 S. YUYAMA, T. OKAMOTO, M. SHIGEISHI, M. OHTSU, Cracking process<br />

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87 C. OUYANG, E. LANDIS, S.P. SHAH, Damage assessment in concr<strong>et</strong>e using<br />

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88 A.K. MAJI, C. OUYANG, S.P. SHAH, Fracture mechanisms of quasi-brittle<br />

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89 TOMOKI SHIOTANI, MITSUHIRO SHIGEISHI, MASAYASU OHTSU, Acoustic<br />

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90 A. NIELSEN, Acoustic emission source based on pencil lead breaking, The danish<br />

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91 H. LEMAISTRE, Etu<strong>de</strong> <strong>de</strong>s propriétés thermo<strong>mécaniques</strong> <strong>de</strong> divers <strong>réfractaires</strong>,<br />

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92 S. HUGUET, Application <strong>de</strong> classificateurs aux données d’émission acoustique :<br />

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93 R. H. DAUSKARDT, A frictional – wear mechanism for fatigue – crack growth in<br />

grain bridging ceramics, Acta. M<strong>et</strong>all. Mater., 1993, Volume 41, N°9, Pages 2765-<br />

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94 S. HORIBE, R. HIRAHARA, Cyclic fatigue of ceramics materials : influence of<br />

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95 J. CHEVALIER, Etu<strong>de</strong> <strong>de</strong> la propagation <strong>de</strong>s fissures dans une zircone 3Y-TZP<br />

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