Last edited by Kazigal
Friday, July 31, 2020 | History

4 edition of Creep Properties of Heat Resistant Steels and Superalloys (Landolt-Bornstein Numerical Data and Functional Relationships in Science and Technology - New Series) found in the catalog.

Creep Properties of Heat Resistant Steels and Superalloys (Landolt-Bornstein Numerical Data and Functional Relationships in Science and Technology - New Series)

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  • 37 Currently reading

Published by Springer .
Written in English

    Subjects:
  • Electricity, magnetism & electromagnetism,
  • Mathematics and Science,
  • Science,
  • Science/Mathematics,
  • Electronics - General,
  • Metallurgy,
  • Science / Physics,
  • austenitic stainless steels,
  • carbon steels,
  • creep data,
  • heat resistant steels,
  • high Cr steels,
  • low alloy steels,
  • rupture data,
  • superalloys,
  • Magnetism,
  • Creep,
  • Heat resistant alloys,
  • Steel, Heat resistant

  • Edition Notes

    ContributionsK. Yagi (Editor), G. Merckling (Editor), T.U. Kern (Editor), H. Irie (Editor), H. Warlimont (Editor)
    The Physical Object
    FormatHardcover
    Number of Pages365
    ID Numbers
    Open LibraryOL12775019M
    ISBN 103540428798
    ISBN 109783540428794

    Specialty Steels and Heat-Resistant Alloys. Eleven articles on wrought, cast, and powder metallurgy materials for specialty and/or high-performance applications make up this section. Alloy development and selection criteria as related to corrosion-resistant and heat 4/5(3). The article considers the low-alloy steels which are the creep-resistant steels with to % Mo combined with to % Cr and perhaps other carbide formers. The factors affecting mechanical properties of steels include the nature of strengthening mechanisms, the microstructure, the heat treatment, and the alloy composition. J.

    Heat-resistant Materials alloy and stainless steels; alloy cast irons; high-alloy cast steels; superalloys; titanium and titanium alloys; refractory metals and alloys; nickel-chromium and nickel-thoria alloys; structural intermetallics; structural ceramics, cermets, and cemented carbides; and carbon-composites. From inside the book. What. Creep Properties of Heat Resistant Steels and Superalloys Landolt–Bornstein Numerical Data and Functional Relationships in Science and Technology, Group VIII: Advanced Materials and Technologies by:

    The HR3C steel belongs to a modern group of creep-resistant austenitic steels. This steel was developed as a result of modification of the chemical composition of steel by adding the niobium and nitrogen microadditions and by optimizing the nickel content, which resulted in the growth of high-temperature creep strength and creep resistance while maintaining very high heat : Grzegorz Golański, Adam Zieliński, Marek Sroka, Jacek Słania. Ebooks list page: ; Creep-Resistant Steels; Creep Resistant Steels; Creep Properties of Heat Resistant Steels and Superalloys; [PDF] Cr Heat-Resistant Steels; Stainless Steels for Medical and Surgical Applications (Astm Special Technical Publication) - Symposium On Stainless Steels For Medical And Surgical Applications.


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Creep Properties of Heat Resistant Steels and Superalloys (Landolt-Bornstein Numerical Data and Functional Relationships in Science and Technology - New Series) Download PDF EPUB FB2

Creep Properties of Heat Resistant Steels and Superalloys. Editors: Yagi, K., Merckling, G., Kern, T.U This volume contains a compilation of long-term creep and rupture data and knowledge based on these data on heat resistant steels and superalloys, collected by three leading creep research organizations and agencies, namely: ECCC (European Brand: Springer-Verlag Berlin Heidelberg.

Creep Properties of Heat Resistant Steels and Superalloys (Landolt-Börnstein: Numerical Data and Functional Relationships in Science and Technology - New Series (2B)) [Yagi, K., Merckling, G., Kern, T.U., Irie, H., Warlimont, H.] on *FREE* shipping on qualifying offers.

Creep Properties of Heat Resistant Steels and Superalloys (Landolt-Börnstein: Numerical Data and Functional.

Creep Properties of Heat Resistant Steels and Superalloys by K. Yagi,available at Book Depository with free delivery worldwide. This volume contains a compilation of long-term creep and rupture data and knowledge based on these data on heat resistant steels and superalloys, collected by three leading creep research organizations and agencies, namely: ECCC (European Creep Collaborative Committee), GCC (German Creep Committee) and NIMS (National Institute for Materials.

This document is part of Subvolume B 'Creep Properties of Heat Resistant Steels and Superalloys' of Volume 2 'Materials' of Landolt-Börnstein Group VIII 'Advanced Materials and Technologies'. Creep Properties of Heat Resistant Steels and Superalloys.

Springer-Verlag Berlin Heidelberg. T.-U. Kern, G. Merckling, K. Yagi properties intermetallic composition analysis process blade fig steels You can write a book review and share your experiences. Other readers will always be interested in.

Creep Properties of Heat Resistant Steels and Superalloys: Yagi, K., Merckling, G., Kern, T.U., Irie, H., Warlimont, H.: Books - at: Hardcover.

Creep resistance is an extremely important characteristic to be evaluated for structural materials that have potential elevated temperature applications such as in aircraft gas turbine and spacecraft airframes.

Inspection of available literature reveals that incorporation of ceramic reinforcements into the matrix influences the creep behavior in a complex manner by altering the creep. Creep resistance is dependent on microstructure – creep-resistant steels contain large numbers of very fine precipitates in order to impede the motion of dislocations.

However, most of the precipitates coarsen with time, their distribution becomes less dense and thus they become less effective in. @article{osti_, title = {ASM specialty handbook{reg_sign}: Heat-resistant materials}, author = {Davis, J.R.}, abstractNote = {This latest handbook brings together in one volume a comprehensive reference source of information on engineering metallic and nonmetallic heat-resistant materials.

The volume covers the complete spectrum of technology dealing with heat-resistant materials. Pris: kr. Mixed media product, Skickas inom vardagar. Köp Creep Properties of Heat Resistant Steels and Superalloys av K Yagi, G Merckling, Torsten-Ulf Kern, H. In materials science, creep (sometimes called cold flow) is the tendency of a solid material to move slowly or deform permanently under the influence of persistent mechanical can occur as a result of long-term exposure to high levels of stress that are still below the yield strength of the material.

Creep is more severe in materials that are subjected to heat for long periods and. Buy Creep Properties of Heat Resistant Steels and Superalloys by K.

Yagi, G. Merckling from Waterstones today. Click and Collect from your local Book Edition: Ed. Abstract. This chapter surveys the properties of nickel and its alloys (Sect. ).It includes essential data tables covering the highly alloyed Ni-based materials (Sect.

) and Ni-based superalloys (Sect. ).Sectionwhich completes the chapter, covers Ni : Hans Warlimont. Specialty Steels and Heat-Resistant Alloys. Eleven articles on wrought, cast, and powder metallurgy materials for specialty and/or high-performance applications make up this section. Alloy development and selection criteria as related to corrosion-resistant and heat /5(5).

Abstract. Whereas the fundamental properties of all metallic elements are covered systematically and comprehensively in Chap. 4, this chapter treats iron as both a base and an alloying element of metallic properties of metallic materials depend sensitively not only on their chemical composition and on the electronic and crystal structure of the phases formed, but also to a large Author: Alfred Koethe, Hans Warlimont.

Abstract. In this book over alloys are organized by AISI number into 10 major sections: Irons, Carbon Steels, Alloy Steels, Low Alloy Constructional Steels, Ultra High Strength Steels, Tool Steels, Maraging Steels, Wrought Stainless Steels, Heat Resistnat Casting Alloys, and Iron Based Rought Superalloys.

A superalloy, or high-performance alloy, is an alloy with the ability to operate at a high fraction of its melting point. Several key characteristics of a superalloy are excellent mechanical strength, resistance to thermal creep deformation, good surface stability, and resistance to corrosion or oxidation.

The crystal structure is typically face-centered cubic (FCC) austenitic. Materials covered include carbon, alloy and stainless steels; alloy cast irons; high-alloy cast steels; superalloys; titanium and titanium alloys; refractory metals and alloys; nickel-chromium and nickel-thoria alloys; structural intermetallics; structural ceramics, cermets, 5/5(2).

The corrosion-resistant superalloys are widely used in extreme environments where tremendous heat and corrosion resistance is paramount to the integrity of the end product. Chemical and petrochemical processing, power plants, and oil and gas industries widely use these superalloys.

This Special Issue focuses on metallic materials that include creep resistant ferritic and austenitic steels, superalloys, titanium alloys, intermetallic compounds, and refractory metals. Researchers are, therefore, encouraged to submit a research paper on their recent work but also a review paper on the topics.SUPERALLOYS, THE MOST SUCCESSFUL ALLOY SYSTEM OF MODERN TIMES - PAST, PRESENT AND FUTURE Summary of Superalloy Properties Superalloys are all of the following, and more: The need for temperature resistant steels was driven by the industrial revolution and its outgrowth of products.

Ni, Cr and Co were added to iron before becoming its File Size: 1MB.Also included is information on property comparisons that allows ranking of alloy performance, effects of processing and microstructure on high-temperature properties, high-temperature oxidation and corrosion resistant coatings for superalloys, life-assessment methodology, and design guidelines for applications involving creep and/or oxidation.