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Risstiefenmessung mit dem Gleichstrom-Potentialsondenverfahren = Measurement of the depth of cracks by the DC-potential probe-methodAluminium (Düsseldorf). 1984, Vol 60, Num 6, issn 0002-6689, 419Article

Monitoring stable crack growth using a combined a.c./d.c. potential drop technique = Messung stabilen Risswachstums unter Benutzung eines kombinierten Wechselstrom/Gleichstrom-PotentialsondenverfahrensDIETZEL, W; SCHWALBE, K.H.Materialprüfung. 1986, Vol 28, Num 11, pp 368-372, issn 0025-5300Article

An electric potential method of determining crack depth in contactless magnetizing = Bestimmung der Risstiefe durch ein elektrisches Potentialverfahren mit beruehrungsloser MagnetisierungDUBROV, V.A.The Soviet journal of nondestructive testing. 1984, Vol 20, Num 8, pp 506-510, issn 0038-5492Article

Wenn die Risse ...:Elektrische Risstiefenmessung in der Praxis = If cracks ..Zeitschrift für Werkstofftechnik. 1985, Vol 16, Num 11, issn 0049-8688Article

Theory of four-point alternating current potential drop measurements on a metal half-spaceBOWLER, Nicola.Journal of physics. D, Applied physics (Print). 2006, Vol 39, Num 3, pp 584-589, issn 0022-3727, 6 p.Article

Determination of mode of damage during creep-fatigue interactionJAVED HYDER, M.Journal of engineering materials and technology. 2006, Vol 128, Num 2, pp 248-252, issn 0094-4289, 5 p.Article

Problems of the theory of the electric potential method of nondestructive inspection using alternating currentMITROFANOV, V. A.Russian journal of nondestructive testing. 1998, Vol 34, Num 3, pp 183-189, issn 1061-8309Article

Messung des Rissfortschritts durch Zerruettung bei -70 C mit dem Gleichstrom-Potentialsonden-Verfahren = Measurement of fatigue crack propagation at -70 C with the d.c. potential probe methodSIEKMANN, G; BERNS, H.Materialprüfung. 1983, Vol 25, Num 1/2, pp 24-26, issn 0025-5300Article

A comparison of theoretical and experimental methods of calibrating the electrical potential drop technique for crack length determination = Ein Vergleich von theoretischen und experimentellen Verfahren zur Kalibrierung des Potentialsondenverfahrens zur RisslaengenbestimmungHICKS, M.A; PICKARD, A.C.International journal of fracture. 1982, Vol 20, Num 2, pp 91-101, issn 0376-9429Article

The ac field around a plane crack in a metal surface when the skin depth is largeMICHAEL, D.H; COLLINS, R.Journal of nondestructive evaluation. 1982, Vol 3, Num 1, pp 19-24, issn 0195-9298Article

A note on the Bohm criterion for electronegative gasesALLEN, J. E.Plasma sources science & technology (Print). 2004, Vol 13, Num 1, pp 48-49, issn 0963-0252, 2 p.Article

On-line monitoring system for single edge crack based on multi-terminal potential drop methodHAYASHI, M; OHTAKA, M.Zairyo. 1998, Vol 47, Num 7, pp 749-754, issn 0514-5163Article

A uniqueness result concerning the identification of a collection of cracks from finitely many electrostatic boundary measurementsBRYNA, K; VOGELIUS, M.SIAM journal on mathematical analysis. 1992, Vol 23, Num 4, pp 950-958, issn 0036-1410Article

Potentialsondenverfahren zum Pruefen auf Loetfehler = Potential drop method for testing soldered joint defectsRICHTER, H.MM. Maschinenmarkt. 1985, Vol 91, Num 31/32, pp 600-603, issn 0341-5775Article

Potentiometric nondestructive testing of surface-hardened materialsOMINI, M; IAZZI, F; RASTALDO, A et al.Review of scientific instruments. 1981, Vol 52, Num 7, pp 1054-1060, issn 0034-6748Article

A theoretical procedure for detection of simulated cracks in a pipe by the direct current-potential drop techniqueCHEN, Wen-Hwa; CHEN, Jen-Shiung; FANG, Huei-Lu et al.Nuclear engineering and design. 2002, Vol 216, Num 1-3, pp 203-211, issn 0029-5493Article

Conformal mapping and fracture mechanicsMEYERSON, M. D.Engineering fracture mechanics. 1992, Vol 41, Num 6, pp 951-953, issn 0013-7944Article

Probe characterization in ac field measurements of surface crack depthMIRSHEKAR-SYAHKAL, D.Journal of nondestructive evaluation. 1982, Vol 3, Num 1, pp 9-17, issn 0195-9298Article

Application of the electrical potential method to crack length measurements using Johnson's formulaSCHWALBE, K.H; HELLMANN, D.Journal of testing and evaluation. 1981, Vol 9, Num 3, pp 218-221, issn 0090-3973Article

ERMITTLUNG DER BRUCHZAEHIGKEIT BEI STATISTISCHER BELASTUNG UNTER EINBEZIEHUNG DER SCHALLEMISSIONSANALYSE UND DER POTENTIALMESSUNG = DETERMINATION OF THE FRACTURE TOUGHNESS AT STATIC LOAD BY THE ADDITIONAL USE OF THE SOUND EMISSION ANALYSES AND THE POTENTIAL MEASUREMENTMORGNER W; THEIS K; EGGERT J et al.1981; NEUE HUETTE; DDR; DA. 1981-09; VOL. 26; NO 9; PP. 352-353; BIBL. 6 REF.Article

RECENT ADVANCES IN THE DETECTION AND SIZING OF CRACKS USING ALTERNATING CURRENT FIELD MEASUREMENTS (A.C.F.M.)DOVER WD; COLLINS R.1980; BR. J. NON-DESTR. TEST.; GBR; DA. 1980-11; VOL. 22; NO 6; PP. 291-295; BIBL. 4 REF.Article

Quantitative Non-Destructive Testing of Metallic Foam Based on Direct Current Potential Drop MethodJING ZHANG; SHEJUAN XIE; XIAOJUAN WANG et al.IEEE transactions on magnetics. 2012, Vol 48, Num 2, pp 375-378, issn 0018-9464, 4 p.Conference Paper

Three-Dimensional Identification of Semi-Elliptical Crack on the Back Surface by Means of Direct-Current Electrical Potential Difference Method With Multiple-Probe Sensor (PVP2006-ICPVT-11-93359)TADA, Naoya; FUNAKOSHI, Akira.Journal of pressure vessel technology. 2009, Vol 131, Num 2, issn 0094-9930, 021501.1-021501.9Article

Utilization of two-directional AC current distribution for enhancing sizing ability of electromagnetic nondestructive testing methodsJANOUSEK, Ladislav; YUSA, Noritaka; MIYA, Kenzo et al.NDT & E international. 2006, Vol 39, Num 7, pp 542-546, issn 0963-8695, 5 p.Article

Optical and theoretical study of strong electron coupling in double GaN/AlN quantum wellsTCHERNYCHEVA, M; NEVOU, L; DOYENNETTE, L et al.Physica status solidi. B. Basic research. 2006, Vol 243, Num 7, pp 1630-1633, issn 0370-1972, 4 p.Conference Paper

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