Magnetically applied pressure-shear : a new technique for direct strength measurement at high pressure (final report for LDRD project 117856). Metadata

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Title

  • Main Title Magnetically applied pressure-shear : a new technique for direct strength measurement at high pressure (final report for LDRD project 117856).

Creator

  • Author: Lamppa, Derek C.
    Creator Type: Personal
  • Author: Haill, Thomas A.
    Creator Type: Personal
  • Author: Alexander, C. Scott
    Creator Type: Personal
  • Author: Asay, James Russell
    Creator Type: Personal

Contributor

  • Sponsor: United States. Department of Energy.
    Contributor Type: Organization

Publisher

  • Name: Sandia National Laboratories
    Place of Publication: United States

Date

  • Creation: 2010-09-01

Language

  • English

Description

  • Content Description: A new experimental technique to measure material shear strength at high pressures has been developed for use on magneto-hydrodynamic (MHD) drive pulsed power platforms. By applying an external static magnetic field to the sample region, the MHD drive directly induces a shear stress wave in addition to the usual longitudinal stress wave. Strength is probed by passing this shear wave through a sample material where the transmissible shear stress is limited to the sample strength. The magnitude of the transmitted shear wave is measured via a transverse VISAR system from which the sample strength is determined.
  • Physical Description: 79 p.

Subject

  • Keyword: Pressure Range Mega Pa 10-100
  • Keyword: Power
  • STI Subject Categories: 75 Condensed Matter Physics, Superconductivity And Superfluidity
  • Keyword: Materials
  • Keyword: Uses
  • Keyword: Shear Properties
  • Keyword: Shear
  • Keyword: Magnetohydrodynamics
  • Keyword: Magnetic Fields

Collection

  • Name: Office of Scientific & Technical Information Technical Reports
    Code: OSTI

Institution

  • Name: UNT Libraries Government Documents Department
    Code: UNTGD

Resource Type

  • Report

Format

  • Text

Identifier

  • Report No.: SAND2010-6310
  • Grant Number: AC04-94AL85000
  • DOI: 10.2172/1005055
  • Office of Scientific & Technical Information Report Number: 1005055
  • Archival Resource Key: ark:/67531/metadc835472