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Characterization and modeling of strain localization in aluminum foam using multiple face analysisWERTHER, D. J; HOWARD, A. J; INGRAHAM, J. P et al.Scripta materialia. 2006, Vol 54, Num 5, pp 783-787, issn 1359-6462, 5 p.Article

Incipient and regular kink bands in fully dense and 10 vol.% porous Ti2AlCZHOU, A. G; BARSOUM, M. W; BASU, S et al.Acta materialia. 2006, Vol 54, Num 6, pp 1631-1639, issn 1359-6454, 9 p.Article

A tri-modal aluminum based composite with super-high strengthJICHUN YE; HAN, Bing Q; LEE, Zonghoon et al.Scripta materialia. 2005, Vol 53, Num 5, pp 481-486, issn 1359-6462, 6 p.Article

Test set for compression package on dolphin gas projectPipeline & gas journal. 2005, Vol 232, Num 5, pp 32-34, issn 0032-0188, 2 p.Article

Influence of Oxidation Temperature and Cr Content on the Adhesion and Microstructure of Scale on Low Cr SteelsTAKEDA, Mikako; KUSHIDA, Hitoshi; ONISHI, Takashi et al.Oxidation of metals. 2010, Vol 73, Num 1-2, pp 1-13, issn 0030-770X, 13 p.Article

Three-dimensional analysis of a compression test on stone woolHILD, François; MAIRE, Eric; ROUX, Stéphane et al.Acta materialia. 2009, Vol 57, Num 11, pp 3310-3320, issn 1359-6454, 11 p.Article

Density dependence of the compressive properties of porous copper over a wide density rangeHAKAMADA, Masataka; ASAO, Yuuki; KUROMURA, Tetsumune et al.Acta materialia. 2007, Vol 55, Num 7, pp 2291-2299, issn 1359-6454, 9 p.Article

Microstructure and mechanical properties of porous Ti3SiC2SUN, Z. M; MURUGAIAH, A; ZHEN, T et al.Acta materialia. 2005, Vol 53, Num 16, pp 4359-4366, issn 1359-6454, 8 p.Article

Evolution of deformation mechanisms of Ti-22.4Nb-0.73Ta-2Zr-1.34O alloy during strainingYANG, Y; WU, S. Q; LI, G. P et al.Acta materialia. 2010, Vol 58, Num 7, pp 2778-2787, issn 1359-6454, 10 p.Article

The deformation of Gum Metal through in situ compression of nanopillarsWITHEY, E. A; MINOR, A. M; CHRZAN, D. C et al.Acta materialia. 2010, Vol 58, Num 7, pp 2652-2665, issn 1359-6454, 14 p.Article

Assessment of two different rapid compression tests for the evaluation of texture differences in osmo-air-dried apple ringsFARRIS, Stefano; GOBBI, Serena; TORREGGIANI, Danila et al.Journal of food engineering. 2008, Vol 88, Num 4, pp 484-491, issn 0260-8774, 8 p.Article

Direct, static measurement of single-crystal Young's moduli of the zeolite natrolite : Comparison with dynamic studies and simulationsLETHBRIDGE, Zoe A. D; WILLIAMS, Jennifer J; WALTON, Richard I et al.Acta materialia. 2006, Vol 54, Num 9, pp 2533-2545, issn 1359-6454, 13 p.Article

Stochastic nature of plasticity of aluminum micro-pillarsNG, K. S; NGAN, A. H. W.Acta materialia. 2008, Vol 56, Num 8, pp 1712-1720, issn 1359-6454, 9 p.Article

A simple pressing route to closed-cell microcellular ceramicsKIM, Young-Wook; JIN, Yong-Jae; CHUN, Yong-Seong et al.Scripta materialia. 2005, Vol 53, Num 8, pp 921-925, issn 1359-6462, 5 p.Article

Characterization and modeling of localized compaction in aluminum foamISSEN, K. A; CASEY, T. P; DIXON, D. M et al.Scripta materialia. 2005, Vol 52, Num 9, pp 911-915, issn 1359-6462, 5 p.Article

Multi-layer compression tests under hot forming conditionsBERNRATH, Gottfried; VOILES, Ralf; KOPP, Reiner et al.Steel research international. 2006, Vol 77, Num 4, pp 265-270, issn 1611-3683, 6 p.Article

An experimental investigation of how accurate simply supported boundary conditions can be achieved in compression testing panels. DiscussionFOK WING CHAU.Experimental mechanics. 1987, Vol 27, Num 4, pp 388-389, issn 0014-4851Article

Fracture toughness testing by means of the compact compression test specimen = Tests de compression compacte pour l'évaluation de la résistance à la ruptureBARR, B. I. G; SABIR, B. B.Magazine of Concrete Research. 1985, Vol 37, Num 131, pp 88-94, issn 0024-9831Article

Why not 3×6 inch cylinders for testing concrete compressive strength? = Pourquoi ne pas utiliser des cylindres de 3 sur 6 pouces (76×152 mm) pour mesurer la résistance à la compression du béton?NASSER, K. W; KENYON, J. C.Journal of the American Concrete Institute. 1984, Vol 81, Num 1, pp 47-53, issn 0002-8061Article

Note on the use of the diametral compression test for the strength measurement of ceramicsDEWITH, G.Journal of materials science letters. 1984, Vol 3, Num 11, pp 1000-1002, issn 0261-8028Article

Compressive testing of ceramicsAWAJI, H; WATANABE, T; NAGANO, Y et al.Ceramics international. 1994, Vol 20, Num 3, pp 159-167, issn 0272-8842Article

Application of the method of caustics to the centre-cracked diametral compression test specimenSINGH, D; SHETTY, D. K.Journal of materials science. 1988, Vol 23, Num 3, pp 968-976, issn 0022-2461Article

Mortier à maçonner portant la désignation «mortier à prise retardée»WEDER, C.Ingénieurs et architectes suisses. 1983, Num 19, pp 354-356, issn 0251-0979Article

Determination of strain-hardening exponent using double compression testEBRAHIMI, R; PARDIS, N.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2009, Vol 518, Num 1-2, pp 56-60, issn 0921-5093, 5 p.Article

An investigation into the effect of carbon on the kinetics of dynamic restoration and flow behavior of carbon steelsSERAJZADEH, Siamak; ALI KARIMI TAHERI.Mechanics of materials. 2003, Vol 35, Num 7, pp 653-660, issn 0167-6636, 8 p.Article

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