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Results 1 to 25 of 975

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Anticorrosion Potential of 4-Amino-3-methyl-1,2,4-triazole-5-thione Derivatives (SAMTT and DBAMTT) on Mild Steel in Hydrochloric Acid SolutionKUMAR, Moorthy Saravana; KUMAR, Saravana Loganathan Ashok; SREEKANTH, Anandaram et al.Industrial & engineering chemistry research. 2012, Vol 51, Num 15, pp 5408-5418, issn 0888-5885, 11 p.Article

Anticorrosion Potential of 2-Mesityl-1H-imidazo[4,5-f][1,10]-phenanthroline on Mild Steel in Sulfuric Acid Solution: Experimental and Theoretical StudyOBOT, I. B; OBI-EGBEDI, N. O; ESEOLA, A. O et al.Industrial & engineering chemistry research. 2011, Vol 50, Num 4, pp 2098-2110, issn 0888-5885, 13 p.Article

Electrochemical investigation of Substituted Pyranopyrazoles Adsorption on Mild Steel in Acid SolutionDILEEP KUMAR YADAV; QURAISHI, M. A.Industrial & engineering chemistry research. 2012, Vol 51, Num 24, pp 8194-8210, issn 0888-5885, 17 p.Article

Inhibition of Mild Steel Corrosion in Hydrochloric Acid Solution by 3-4-((Z)-tndo)in-3-yideneaminophenyiminoindolin-2-oneASHISH KUMAR SINGH.Industrial & engineering chemistry research. 2012, Vol 51, Num 8, pp 3215-3223, issn 0888-5885, 9 p.Article

Chemistry and Structure of the Passive Film on Mild Steel in CO2 Corrosion EnvironmentsJIABIN HAN; YOUNG, David; COLIJN, Hendrik et al.Industrial & engineering chemistry research. 2009, Vol 48, Num 13, pp 6296-6302, issn 0888-5885, 7 p.Article

Adsorption and Inhibitory Mechanism of 1H-1,2,4-Triazol-l-yl-methyl-2-(4-chlorophenoxy) Acetate on Corrosion of Mild Steel in Acidic SolutionZHIHUA TAO; SHENGTAO ZHANG; WEIHUA LI et al.Industrial & engineering chemistry research. 2011, Vol 50, Num 10, pp 6082-6088, issn 0888-5885, 7 p.Article

An analysis of axi-symmetric axial collapse of round tubesGUPTA, N. K; VELMURUGAN, R.Thin-walled structures. 1995, Vol 22, Num 4, pp 261-274, issn 0263-8231Article

Corrosion Inhibition and Adsorption Behavior of Punica granatum Extract on Mild Steel in Acidic Environments: Experimental and Theoretical StudiesCHIDIEBERE, Maduabuchi A; OGUKWE, Cynthia E; OGUZIE, Kanayo L et al.Industrial & engineering chemistry research. 2012, Vol 51, Num 2, pp 668-677, issn 0888-5885, 10 p.Article

Aluminum- and mild steel-binding peptides from phage displayRONGJUN ZUO; ÖRNEK, Dogan; WOOD, Thomas K et al.Applied microbiology and biotechnology. 2005, Vol 68, Num 4, pp 505-509, issn 0175-7598, 5 p.Article

The unlubricated sliding wear behavior of polyetheretherketone against smooth mild-steel counterfacesOVAERT, T. C; CHENG, H. S.Journal of tribology. 1991, Vol 113, Num 1, pp 150-157, issn 0742-4787, 8 p.Article

Neutrophilic Iron-Oxidizing Zetaproteobacteria and Mild Steel Corrosion in Nearshore Marine EnvironmentsMCBETH, Joyce M; LITTLE, Brenda J; RAY, Richard I et al.Applied and environmental microbiology (Print). 2011, Vol 77, Num 4, pp 1405-1412, issn 0099-2240, 8 p.Article

Methanogen population in a marine biofilm corrosive to mild steelZHANG, T; FANG, H. H. P; KO, B. C. B et al.Applied microbiology and biotechnology. 2003, Vol 63, Num 1, pp 101-106, issn 0175-7598, 6 p.Article

Grinding surface characterization by CEST (computer evaluation of surface topography)HUANG, Y. Y; WU, S. M.International journal of machine tool design & research. 1986, Vol 26, Num 4, pp 431-441, issn 0020-7357Article

Diallyl-1,12-diaminododecane-Based Cyclopolymers and Their Use as Inhibitors for Mild Steel CorrosionALI, Shaikh A; SAEED, M. T; EL-SHARIF, Asma M. Z et al.Polymer engineering and science. 2012, Vol 52, Num 12, pp 2588-2596, issn 0032-3888, 9 p.Article

Surface-breaking fatigue crack detection using laser ultrasoundSHAN, Q; DEWHURST, R. J.Applied physics letters. 1993, Vol 62, Num 21, pp 2649-2651, issn 0003-6951Article

Experimental verification of some up-to-date concepts of mild carbon steel corrosion under boiler feedwater conditionsSIROTA, A. M.Wärme- und Stoffübertragung. 1991, Vol 26, Num 6, pp 307-313, issn 0042-9929Article

Inhibiting mild steel corrosion from sulfate-reducing and iron-oxidizing bacteria using gramicidin-S-producing biofilmsRONGJUN ZUO; WOOD, Thomas K.Applied microbiology and biotechnology. 2004, Vol 65, Num 6, pp 747-753, issn 0175-7598, 7 p.Article

Numerical simulation of ultrasonic surface treatmentBALOKHONOV, R. R; MAKAROV, P. V; ROMANOVA, V. A et al.Journal de physique. IV. 1997, Vol 7, Num 3, pp C3.55-C3.60, issn 1155-4339Conference Paper

The corrosion behaviour of mild steel and type 304 stainless steel in media from an anaerobic biodigestorENGLERT, G. E; MÜLLER, I. L.International biodeterioration & biodegradation. 1996, Vol 37, Num 3-4, pp 173-180, issn 0964-8305Article

Lagrangian simulation of linear shaped demolition charge formationGAZONAS, G. A.International conference on structures under shock and impact. 1996, pp 361-372, isbn 1-85312-400-1Conference Paper

Work-hardening behavior of mild steel under cyclic deformation at finite strainsZAIQIAN HU.Acta metallurgica et materialia. 1994, Vol 42, Num 10, pp 3481-3491, issn 0956-7151Article

Research into fracture behavior of mild steel with residual stressXIANGQIAO YAN; WEISHENG LEI.Scripta metallurgica et materialia. 1993, Vol 29, Num 6, pp 793-796, issn 0956-716XArticle

Corrosion of mild steel underneath aerobic biofilms containing sulfate reducing bacteria. I: At low dissolved oxygen concentrationWHONCHEE LEE; LEWANDOWSKI, Z; OKABE, S et al.Biofouling (Print). 1993, Vol 7, Num 3, pp 197-216, issn 0892-7014Article

Bonding process of copper brazed high chromium cast iron and mild steelSASGURI, N; MATSUBARA, Y; OGI, K et al.Imono. 1993, Vol 65, Num 4, pp 319-325, issn 0021-4396Article

Effect of pH on anaerobic mild steel corrosion by methanogenic bacteriaBOOPATHY, R; DANIELS, L.Applied and environmental microbiology (Print). 1991, Vol 57, Num 7, pp 2104-2108, issn 0099-2240Article

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