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2 edition of Tensile-property characterization of thermally aged cast stainless steels found in the catalog.

Tensile-property characterization of thermally aged cast stainless steels

Tensile-property characterization of thermally aged cast stainless steels

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Published by Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, Supt. of Docs., U.S. G.P.O. [distributor] in Washington, DC .
Written in English

    Subjects:
  • Steel, Stainless -- Effect of temperature on.,
  • Steel, Cast -- Effect of temperature on.,
  • Light water reactors -- Materials -- Effect of temperature on.

  • Edition Notes

    Other titlesTensile property characterization of thermally aged cast stainless steels.
    Statementprepared by W.F. Michaud ... [et al.].
    ContributionsU.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering., Argonne National Laboratory.
    The Physical Object
    FormatMicroform
    Paginationviii, 61, 181, 2 p.
    Number of Pages181
    ID Numbers
    Open LibraryOL14699375M

    They range from the 1–2 wt. % Cr or Ni in some low alloy steels to the 15–18 wt. % Cr content of many stainless steels. The topic of alloy steels contains both the common and alloys to more exotic alloys such as the Hadfield steels. i Maraging steels ii Related titles: Titanium alloys: Modelling of microstructure, properties and applications (ISBN ) Computer-based modelling of material properties and microstructure is a very fast growing area of research and the use of titanium is growing rapidly in many applications.

      Chromium-Makes stainless steel stainless. USGS Publications Warehouse. Kropschot, S.J.; Doebrich, Jeff. Chromium, a steely-gray, lustrous, hard metal that takes a high polish and has a high melting point, is a silvery white, hard, and bright metal plating on steel and other material. Commonly known as chrome, it is one of the most important and indispensable industrial metals. Free essays, homework help, flashcards, research papers, book reports, term papers, history, science, politics.

    The steels having a reduction of area more than 25 % are S1, S2, S3 steels austenitized at oC and S1, S3 steels austenitized at oC in the range of tempering temperature from oC to oC. Among the S1 ~ S3 steels meeting the desired value of reduction of area, the steels having tensile strength more than MPa are S1, S3 steels. For example, early PCBN pins designed to friction stir weld stainless steels consisted of a truncated cone with three ats at the tip (Fig. ). Also, Loftus et al. used a featureless cylindrical pin to friction stir weld mm ( in.) thick beta 21S Ti (Ref 42).


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Tensile-property characterization of thermally aged cast stainless steels Download PDF EPUB FB2

Genre/Form: Government publications: Additional Physical Format: Tensile-property characterization of thermally aged cast stainless steels viii, 61,2 p. Additional Physical Format: Tensile-property characterization of thermally aged cast stainless steels viii, 61,2 p (OCoLC) Material Type.

Chen Y. et al. () Microstructure and Deformation Behavior of Thermally Aged Cast Austenitic Stainless Steels. In: Jackson J., Paraventi D., Wright M. (eds) Proceedings of the 18th International Conference on Environmental Degradation of Author: Y.

Chen, C. Xu, X. Zhang, W.-Y. Chen, J.-S. Park, J. Almer, M. Li, Z. Li, Y. Yang, A. Rao, B. Ale. Cast stainless steels (CASSs) are highly corrosion-resistant Fe-Cr-Ni alloys with mostly austenite(γ)–ferrite(δ) duplex structure and have been used for a variety of large components in nuclear power plants, such as valve bodies, pump casings, primary coolant piping, and elbows.1–9 The CASSs are one of the most important alloy groups in light water reactor (LWR) systems as only the Cited by: Thermally-aged cast austenitic stainless steels (CASS) CF8 was irradiated with 1 MeV Kr ions atand °C to × ions/m2 (∼3 dpa) at the IVEM-Tandem Facility at the Argonne.

This paper investigates effect of thermal aging on reduction of fracture toughness of CF8 M cast stainless steel. To predict fracture toughness of un-aged and aged materials by numerical analyses, finite element damage analysis is used in conjunction with strain-based fracture : J.

Jeon, Yun-Jae Kim, J. Kim, S. Lee. Methodology for Estimating Thermal and Neutron Embrittlement of Cast Austenitic Stainless Steels During Service in Light Water Reactors O.

Chopra. Tensile-Property Characterization of Thermally Aged Cast Stainless Steels,” Argonne National Laboratory Embrittlement of Cast Austenitic Stainless Steel Reactor Internals Components Cited by: 6. Methodology for Estimating Thermal and Neutron Embrittlement of Cast Austenitic Stainless Steels During Service in Light Water Reactors J.

Pressure Vessel Technol (August, ) Autogenous Tungsten Inert Gas and Gas Tungsten Arc With Filler Welding of Cited by: 6. In this paper, we report the effects of low temperature aging ( K) up to 18 months on the mechanical and fracture properties of cast CF-8 stainless steel in the range of – K.

to low alloy steels of similar carbon content, while those in Table illustrate the mass effect in cast type Ni-Cr-Mo steel with carbon contents be- tween and %.

Product Requirements. The mechanical property requirements which individual cast steel grades must meet are listed in the applicable casting specifications.

Ti-based alloys show much lower elastic modulus than other metallic alloys such as Co-Cr alloy and L stainless steel.

However, current used implant materials such as stainless steels (– GPa), Co-Cr alloys (– GPa) and Ti-based alloys (55– GPa) exhibit a much larger elastic modulus than the tissues they are by: Full text of "Materials studies for magnetic fusion energy applications at low temperatures - II" See other formats.

Introduction. In recent years, biomedical Co-Cr-Mo (CCM) alloys have been widely used as orthopedic implants, such as artificial knee and hip joints, owing to their high biocompatibility, good mechanical properties, and superior wear and fatigue resistances [, ].These alloys generally contain minor elements such as carbon, nitrogen, and other impurity elements conforming to the ASTM F75 Cited by: 6.

The metallurgy and processing science of metal additive manufacturing Downloaded by [Oak Ridge National Laboratory] at 07 March W. Sames∗ 1,2, F. List2,3, S. Pannala4, R. Dehoff2,3 and S. Babu2,5 Additive manufacturing (AM), widely known as 3D printing, is a method of manufacturing that forms parts from powder, wire.

Due to its higher Mo content with additions of some tungsten, alloy 50 (Ni bal, Mo 12%, W 2%, Fe %) would be an excellent filler metal, not only for welding 6% Mo alloys, duplex, and superduplex stainless steels, but also for low nickel alloys such as alloysL, 20, and even stainless steels.

Author's personal copy N. Farabi et al. / Materials Science and Engineering A () Table 2 Welding parameters selected in the present study. Laser machine Laser source Laser power (kW) Welding speed (m/min) Focal length (cm) Beam dimension (mm Cited by: Effect of Organic Capping on the Magnetic Properties of Au Nanoparticles (English) Compatibility Evaluation for Application of Lean Duplex Stainless Steels to Seawater Systems in Nuclear Power Plants.

Chang, H.Y. / Park, H.B. / Kim, Study on Tensile Property and Fracture of Welded Joint of TiAl-2Zr-1Mo-1V Alloy by Hydrogen Processing.

Full text of "Materials studies for magnetic fusion energy applications at low temperatures, IV / edited by R.P.

Reed and N.J. Simon ; sponsored by Department of. The La(Mn, Fe)O 3+λ catalyst, a novel rare earth perovskite composite oxide catalyst for catalytic combustion, was prepared by sol-gel method, which was at natural gas automobile exhaust catalytic purification, smoke gas catalytically desulfurization and other fields had broad application prospects [1–2].

The newly developed catalysts were characterized by several complementary techniques. Plate, Bar, and Structural Steels WED AM F 98 Stainless and High Alloy Steels WED PM F MON AM D 41 MON AM E 44 Iron and Steel (Ferrous Alloys) Advanced High Strength Steel Design / Technological Exploitation.

Stainless steels are widely used in various fields of engineering: architecture, construction, transport engineering, medicine, food industry, energy [1]. An important role is played stainless.年三大索引网络版收录我校论文情况汇编 - 图书馆 三大索引(网络版) 收录西北工业大学论文统计 ( 年) 西北工业大学图书馆 年 4 月 年三大索引(网络版)收录西北工业大学论文统计 前 言 《科学引文索引》、《科技会议录索引》、《工程索引》是国际著名的三大检索系统,统称.Comments.

Transcription. Giesserei Literaturschau.