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Diffusion bonding of sialon and stainless steelHussain, Patthi Bin January 1997 (has links)
No description available.
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High strain rate, high temperature deformation of stainless steelColas Ortiz, Rafael January 1983 (has links)
In order to clarify the dependence of strain localisation on different parameters, a literature survey is presented covering the theory and observations of instability formation during deformation, dynamic recovery processes, mechanical testing, adiabatic heating and shear band formation. Several series of experiments were carried out, on titanium bearing steel and on an austenitic stainless steel , to determine the reasons of the inversion of the dependence of the strain to the peak in flow stress on strain rate observed at high strain rates. The materials were deformed under conditions of plane strain and axisymmetric compression, and torsion. Special techniques were developed in order to measure the distribution of strain and temperature within deforming plane strain specimens. In the strain distribution analysis, it was observed that the range of local strains is dependent on nominal strain rates, but the average value of the local strain either in the whole deforming region or the slip line bands depends only on the value of nominal strain. When the plane strain specimens were deformed with inserted thermocouples, it was found that both the overall temperature increase and the difference in temperature between different local regions of the specimen, increased with the nominal strain rate. It was shown that, at high strain rates, the stress-strain curve of any material will develop a peak in stress as a result of the increase of temperature due to deformational heating, without the occurrence of any strain instability. The results emphasise the complexity of deformation under plane strain compression, particularly at high strain rate, but it was possible to compare stress-strain curves obtained under plane strain and axisymmetric compression conditions when the effects of strain and stress distribution and of temperature localisation were taken into account.
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Peroxygen disinfection of Pseudomonas aeruginosa and Staphylococcus aureus biofilmsBlanchard, Alex Paul January 2000 (has links)
No description available.
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Evaluation of laser surface melting to mitigate chloride stress corrosion cracking in an austenitic stainless steel /Brady, Michael P. January 1990 (has links)
Thesis (M.S.)--Virginia Polytechnic Institute and State University, 1990. / Vita. Abstract. Includes bibliographical references (leaves 69-74). Also available via the Internet.
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Mechanical behavior and structure of passive films on austenitic stainless steelsAl-Amr, Abdulaziz, January 2005 (has links) (PDF)
Thesis (Ph.D.)--Washington State University. / Includes bibliographical references.
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Effects of hydrogen environment on the creep and rupture properties of type 302 stainless steelCrawford, James Alan. January 1964 (has links)
Thesis (M.S.)--University of Wisconsin--Madison, 1964. / eContent provider-neutral record in process. Description based on print version record. Bibliography: l. 42-43.
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Interfacial morphology and descaling of reheated stainless steelQuagraine, Nana-Araba. January 2001 (has links)
Thesis (M. Eng.)(Metallurgical)--University of Pretoria, 2001. / Summaries in Afrikaans and English.
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The sensitivity of stainless steels to hydrogen environmentHolmes, Edward Walter, January 1965 (has links)
Thesis (M.S.)--University of Wisconsin--Madison, 1965. / eContent provider-neutral record in process. Description based on print version record. Bibliography: l. 30-31.
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The impact toughness and fatigue strength of austempered and quenched and tempered 5150 and 1060Salerno, Joseph Steven. January 1983 (has links)
Thesis (M.S.)--University of Wisconsin--Madison, 1983. / Typescript. eContent provider-neutral record in process. Description based on print version record. Includes bibliographical references (leaves 68-73).
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Development of nano/sub-micron grain structures in metastable austenitic stainless steelsRajasekhara, Shreyas, January 1900 (has links)
Thesis (Ph. D.)--University of Texas at Austin, 2007. / Vita. Includes bibliographical references.
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