Analysis of the Microstructure and Mechanical Properties of Austenitic Stainless Steel 310 Manufactured via WAAM. [PDF]
Cipriano A +5 more
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The effects of boriding on kinetic, microstructure and corrosive behavior of Ramor 500 and Ramor 550 steels. [PDF]
Tan HO.
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Real-Time Adaptive Nanofluid-Based Lubrication in Stainless Steel Turning Using an Intelligent Auto-Tuned MQL System. [PDF]
Singh M +4 more
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Influence of Cutting-Edge Micro-Geometry on Material Separation and Minimum Cutting Thickness in the Turning of 304 Stainless Steel. [PDF]
Zou Z, Xin Y, Ma C.
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Al<sub>2</sub>O<sub>3</sub>/Ag nanostructured substrates prepared by ALD/CVD for matrix-free laser desorption/ionization mass spectrometry. [PDF]
Pałczyńska J +9 more
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Enhancing the Resistance Welding of GF/PEI Composites via a PECVD-Deposited HMDSO Coating on a Heating Element. [PDF]
Marques LFB +6 more
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Metallurgy, Properties and Applications of Superaustenitic Stainless Steels-SASSs. [PDF]
Malandruccolo A +2 more
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Oxidation of AISI 304 and AISI 439 stainless steels
Materials Science and Engineering: A, 2007The oxidation behaviour of AISI 304 and AISI 439 stainless steels was studied at high temperatures, under various oxygen pressures and in the presence or not of water vapour. Thermogravimetric analyses were conducted in isothermal conditions from 850 to 950 ◦C for 50 h and microstructural and chemical analyses of the oxide films grown by oxidation were
Huntz, Anne-Marie +6 more
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Comparing the Formability of AISI 304 and AISI 202 Stainless Steels
Journal of Materials Engineering and Performance, 2011The formability of AISI 202 austenitic stainless steel was compared with that of type AISI 304 stainless steel. Type 202 is a low-nickel austenitic stainless steel alloyed with manganese and nitrogen. In this study, the formability of the two grades was examined using Erichsen cupping tests and room temperature uniaxial tensile tests performed at ...
Du Toit, Madeleine, Steyn, Herman G
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Synergistic corrosion and oxidation can accelerate the wear phenomenon in aggressive environments such as machinery operating in mining industries. The main purpose of this article is to study the erosion wear behavior of the AISI 201LN austenitic stainless steel toward an erosive wear process simulating the flow of particles in chutes.
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