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1

Klar, Erhard. Powder metallurgy stainless steels. ASM International, 2007.

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2

N, Gunn Robert, ed. Duplex stainless steels: Microstructure, properties and applications. Abington Publishing, 1997.

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3

American Society of Mechanical Engineers. Winter Meeting. Properties of stainless steels in elevated temperature service: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Boston, Massachusetts, December 13-18, 1987. ASME, 1987.

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4

Ordelt, Thomas. Corrosion properties of brazed stainless steel heat exchangers. UMIST, 1994.

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5

Wood, Gregory John. Tribological properties of surface engineered martensitic stainless steel. University of Birmingham, 1991.

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6

K, Mundali U., and Raj Baldev 1947-, eds. High nitrogen steels and stainless steel: Manufacturing properties and applications. Narosa, 2002.

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7

Lis, Andrzej K. Stale o strukturze wielofazowej. Wydawn. Politechniki Częstochowskiej, 2010.

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8

J, Shack W., Argonne National Laboratory, and U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research., eds. Mechanical properties of thermally aged cast stainless steels from Shippingport Reactor components. Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1995.

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9

G, Atteridge D., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering., and Oregon Graduate Institute of Science and Technology. Dept. of Materials Science and Engineering., eds. Quantitative measurement and modeling of sensitization development in stainless steel. Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1992.

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10

Feridoonian, Sadegh. An investigation of the electrical properties of stainless steel fibre-filled polypropylene composites. Brunel University, 1986.

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11

Ciaś, Andrzej. Development and properties of Fe-Mn-(Mo)-(Cr)-C sintered structural steels. Wydawnictwa AGH, 2004.

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12

Presuel-Moreno, Francisco. Identification of commercially available alloys for corrosion-resistant metallic reinforcement and test methods for evaluating corrosion-resistant reinforcement. Virginia Transportation Research Council, 2008.

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13

Corrosion, European Federation of, and Institute of Materials, Minerals, and Mining, eds. Self-healing properties of new surface treatments. Published for the European Federation of Corrosion by Maney Pub. on behalf of the Institute of Materials, Minerals & Mining, 2011.

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14

Lee, A. S. Buckling analysis of spent fuel basket. Division of Industrial and Medical Nuclear Safety, Office of Nuclear Material Safety and Safeguards, U.S. Nuclear Regulatory Commission, 1995.

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15

Klar, Erhard. Powder Metallurgy Stainless Steels: Processing, Microstructures, and Properties. A S M International, 2007.

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16

Powder Metallurgy Stainless Steels: Processing, Microstructures, and Properties. ASM International, 2007.

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17

The Effect of aging at 343⁰C on the microstructure and mechanical properties of type 308 stainless steel weldments. U.S. Nuclear Regulatory Commission, 2000.

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18

Francis, Roger. The Corrosion of Duplex Stainless Steels: A Practical Guide for Engineers. NACE International, The Worldwide Corrosion Authority15835 Park Ten Place, Houston, TX 77084, 2018. https://doi.org/10.5006/37636.

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Duplex stainless steels (DSSs) were first invented in the early part of the 20th century, but it was not until the 1970s and 80s, with the introduction of argon oxygen decarburization (AOD) melting and the recognition of the benefits of nitrogen additions, that DSSs became attractive for widespread industrial use. DSSs have found applications in most industries, including oil and gas, marine, desalination, power, chemical and process, pulp and paper, and mineral processing. DSSs have been adopted by many industries to varying degrees. They are the workhorse corrosion resistant alloy (CRA) of t
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19

Pramanik, Alokesh, and Animesh Kumar Basak. Stainless Steel: Microstructure, Mechanical Properties and Methods of Application. Nova Science Publishers, Incorporated, 2015.

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20

High nitrogen steels and stainless steels: Manufacturing, properties and applications. Alpha Science International, 2004.

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21

Raj, Baldev, and U. K. Mudali. High Nitrogen Steels And Stainless Steel: Manufacturing Properties And Applications. Alpha Science International, Ltd, 2004.

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22

Measurement of tensile and fracture toughness properties using small punch test. Bhabha Atomic Research Centre, 2005.

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23

Gunn, Robert N. Duplex Stainless Steels, Microstructure, properties and applications. Woodhead Publishing, 1997.

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24

Ulrich, Heubner, ed. Nickel alloys and high alloy special stainless steels: Properties, manufacturing, application. 3rd ed. 2003.

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25

Mishra, Rajiv S. Friction Stir Welding and Processing. A S M International, 2007.

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26

Assessment of thermal embrittlement of cast stainless steels. Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1994.

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27

Rolling contact fatigue of surface modified 440C using a "GE-polymet" type disc rod test rig. National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1990.

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28

Al-Zoubi, N. Chapter 1 Alloy Steel: Properties and Use First-Principles Quantum Mechanical Approach to Stainless Steel Alloys. InTechOpen, 2011.

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29

Effect of Work Hardening on the Fatigue Properties of Ferritic Stainless Steel at Elevated Temperature. Creative Media Partners, LLC, 2021.

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30

Nauche, R., and D. Hanriet. Surface Treatments for Stainless Steel State of the Art - Developments and Trends: Technical Steel Research: Technical Steel Research [series]: Properties and Service Performance. European Communities / Union (EUR-OP/OOPEC/OPOCE), 1996.

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31

The Effect of aging at 343⁰C on the microstructure and mechanical properties of type 308 stainless steel weldments. U.S. Nuclear Regulatory Commission, 2000.

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32

Haggag, F. M. Effects of Thermal Aging and Neutron Irradiation on the Mechanical Properties of Three-wire Stainless Steel Weld Overlay Cladding. United States Government Printing Office, 1997.

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33

Effect of Aging at 343 Degrees C on the Microstructure and Mechanical Properties Of Type 308 Stainless Steel Weldments. United States Government Printing Office, 2000.

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34

Deformation and fracture in structural PM materials: Proceedings of the international conference held in the Hotel Academia, the High Tatras, Slovakia, October 13-16, 1996. Institute of Materials Research of the Slovak Academy of Sciences, 1996.

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35

Jansons, Ernests. Influence of Humidity, Air and Ice Temperature on Sliding Ability Characteristics of Friction Pair Stainless Steel-ice. RTU Press, 2022. http://dx.doi.org/10.7250/9789934227240.

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The influence of environmental parameters (air humidity, air and ice temperature) on the friction pair stainless steel-ice sliding ability is studied in the dissertation. Based on empirical measurements, a sliding time prediction model, depending on environmental conditions and measurement and prediction methodology, was developed. The texture and mechanical properties of the ice surface and the surface texture of steel samples were studied. The macrogeometry of the experimental samples was measured, the factors influencing the measurement accuracy in on-field experiments were analysed, and th
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36

Narayan, Roger J., ed. Additive Manufacturing in Biomedical Applications. ASM International, 2022. http://dx.doi.org/10.31399/asm.hb.v23a.9781627083928.

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Volume 23A provides a comprehensive review of established and emerging 3D printing and bioprinting approaches for biomedical applications, and expansive coverage of various feedstock materials for 3D printing. The Volume includes articles on 3D printing and bioprinting of surgical models, surgical implants, and other medical devices. The introductory section considers developments and trends in additively manufactured medical devices and material aspects of additively manufactured medical devices. The polymer section considers vat polymerization and powder-bed fusion of polymers. The ceramics
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37

Campbell, F. C., ed. Metals Fabrication. ASM International, 2013. http://dx.doi.org/10.31399/asm.tb.mfub.9781627083089.

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Metals Fabrication: Understanding the Basics describes the practices, processes, and procedures used throughout industry to produce metal products and goods. It begins with a review of primary mill processes and the basic steps for making iron, steel, aluminum, and titanium. It then covers nearly every subsequent fabrication process, starting with casting followed by forging, forming, machining, heat treating, finishing, and coating as well as powder-metal part production. The book provides a thorough review of each process, discussing typical implementations, material requirements, design con
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38

Mohamed Salleh, Siti Hawa, Mohd Tajuddin Mohd Idris, Nor Bahiyah Baba, et al. METALURGI UNTUK BUKAN AHLI METALURGI. 2024th ed. PENERBIT UNIVERSITI MALAYSIA PERLIS, 2024. http://dx.doi.org/10.58915/bk2023.022.

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Metallurgy for Non-Metallurgists is a book that explains the basic concepts of metallurgical processes for individuals who do not have a background in the field. This book provides an introduction to the basic concepts of metallurgy including the structure of metals, the properties of different elements, and the classification of metals. It explains the relationship between atomic structure and the mechanical, thermal, and chemical properties of metals, making them easy to understand for non-metallurgists. This book covers extraction methods such as mining, investment, and refining. The proces
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