The True Stress-strain Properties of Brittle Materials to Very High Temperatures

The True Stress-strain Properties of Brittle Materials to Very High Temperatures PDF Author:
Publisher:
ISBN:
Category : Aluminum oxide
Languages : en
Pages : 94

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The True Stress-strain Properties of Brittle Materials to Very High Temperatures

The True Stress-strain Properties of Brittle Materials to Very High Temperatures PDF Author:
Publisher:
ISBN:
Category : Aluminum oxide
Languages : en
Pages : 94

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The True Stress-strain Properties of Brittle Materials to 5000° F

The True Stress-strain Properties of Brittle Materials to 5000° F PDF Author:
Publisher:
ISBN:
Category : Aluminum oxide
Languages : en
Pages : 106

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The True Stress-Strain Properties of Brittle Materials to 5000F. Tenth Monthly Report

The True Stress-Strain Properties of Brittle Materials to 5000F. Tenth Monthly Report PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Runs on the zirconia-coated graphite established that the ultimate strength of this material is 30 to 100% greater than previously reported. This greater strength was apparently obtained because the gas bearings eliminate all bending moments in the specimens and the radiant heating provides more even and measurable temperatures. The ultimate strength of one pyrolytic graphite specimen was found to be over 33,600 psi at 4000 deg F. The performance of the resistance-heated furnace was very satisfactory. The gas bearings were dismounted, cleaned, plated, and are being reinstalled. Some limit switches were added to the load frame to provide protection from overtravel. (auth).

Atomic Energy Research Reports for Sale by the U.S. Department of Commerce, Office of Technical Services

Atomic Energy Research Reports for Sale by the U.S. Department of Commerce, Office of Technical Services PDF Author: Business and Defense Services Administration
Publisher:
ISBN:
Category :
Languages : en
Pages : 68

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Summaries of Fuels and Materials Development Program

Summaries of Fuels and Materials Development Program PDF Author: William L. R. Rice
Publisher:
ISBN:
Category : Nuclear fuels
Languages : en
Pages : 286

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Summaries of Fuels and Materials Development Programs

Summaries of Fuels and Materials Development Programs PDF Author: William L. R. Rice
Publisher:
ISBN:
Category : Nuclear fuel elements
Languages : en
Pages : 278

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Engineering Materials List

Engineering Materials List PDF Author:
Publisher:
ISBN:
Category : Materials
Languages : en
Pages : 62

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Government-wide Index to Federal Research & Development Reports

Government-wide Index to Federal Research & Development Reports PDF Author:
Publisher:
ISBN:
Category : Government publications
Languages : en
Pages : 980

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Engineering Physics of High-Temperature Materials

Engineering Physics of High-Temperature Materials PDF Author: Nirmal K. Sinha
Publisher: John Wiley & Sons
ISBN: 1119420482
Category : Technology & Engineering
Languages : en
Pages : 436

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Book Description
ENGINEERING PHYSICS OF HIGH-TEMPERATURE MATERIALS Discover a comprehensive exploration of high temperature materials written by leading materials scientists In Engineering Physics of High-Temperature Materials: Metals, Ice, Rocks, and Ceramics distinguished researchers and authors Nirmal K. Sinha and Shoma Sinha deliver a rigorous and wide-ranging discussion of the behavior of different materials at high temperatures. The book discusses a variety of physical phenomena, from plate tectonics and polar sea ice to ice-age and intraglacial depression and the postglacial rebound of Earth’s crust, stress relaxation at high temperatures, and microstructure and crack-enhanced Elasto Delayed Elastic Viscous (EDEV) models. At a very high level, Engineering Physics of High-Temperature Materials (EPHTM) takes a multidisciplinary view of the behavior of materials at temperatures close to their melting point. The volume particularly focuses on a powerful model called the Elasto-Delayed-Elastic-Viscous (EDEV) model that can be used to study a variety of inorganic materials ranging from snow and ice, metals, including complex gas-turbine engine materials, as well as natural rocks and earth formations (tectonic processes). It demonstrates how knowledge gained in one field of study can have a strong impact on other fields. Engineering Physics of High-Temperature Materials will be of interest to a broad range of specialists, including earth scientists, volcanologists, cryospheric and interdisciplinary climate scientists, and solid-earth geophysicists. The book demonstrates that apparently dissimilar polycrystalline materials, including metals, alloys, ice, rocks, ceramics, and glassy materials, all behave in a surprisingly similar way at high temperatures. This similarity makes the information contained in the book valuable to all manner of physical scientists. Readers will also benefit from the inclusion of: A thorough introduction to the importance of a unified model of high temperature material behavior, including high temperature deformation and the strength of materials An exploration of the nature of crystalline substances for engineering applications, including basic materials classification, solid state materials, and general physical principles Discussions of forensic physical materialogy and test techniques and test systems Examinations of creep fundamentals, including rheology and rheological terminology, and phenomenological creep failure models Perfect for materials scientists, metallurgists, and glaciologists, Engineering Physics of High-Temperature Materials: Metals, Ice, Rocks, and Ceramics will also earn a place in the libraries of specialists in the nuclear, chemical, and aerospace industries with an interest in the physics and engineering of high-temperature materials.

Reactor Core Materials

Reactor Core Materials PDF Author:
Publisher:
ISBN:
Category : Nuclear reactors
Languages : en
Pages : 316

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