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Shock and materials/ by Stepan S. Batsanov,

By: Material type: TextTextLanguage: English Publication details: Singapore : Springer, 2018.Description: x, 242p. 23 c.mISBN:
  • 9789811078859
Subject(s): DDC classification:
  • 620.1125 BAT/S
Summary: This book highlights how the properties and structure of materials are affected by dynamic high pressures generated by explosions, projectile impacts, laser compression, electric discharge or ball milling. Starting with the basics of shock-wave physics and an outline of experimental techniques, it then surveys dynamic compressibility and equations of state of various substances, phase transitions and syntheses of novel compounds under shock. It covers various industrial applications including hardening of metals and grinding (fragmentation) of solids, saturation of solids with defects for use as catalysts, production of superhard materials (synthetic diamond, BN (boron nitride)) and nanomaterials, especially nanodiamond, and discusses state-of-the-art techniques such as combining dynamic and static compression to obtain monolithic materials.
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Holdings
Item type Current library Home library Call number Status Date due Barcode Item holds
Text Book Text Book Central Library, IIT Bhubaneswar Central Library, IIT Bhubaneswar 620.1125 BAT/S (Browse shelf(Opens below)) Available TB8893
Total holds: 0


This book highlights how the properties and structure of materials are affected by dynamic high pressures generated by explosions, projectile impacts, laser compression, electric discharge or ball milling. Starting with the basics of shock-wave physics and an outline of experimental techniques, it then surveys dynamic compressibility and equations of state of various substances, phase transitions and syntheses of novel compounds under shock. It covers various industrial applications including hardening of metals and grinding (fragmentation) of solids, saturation of solids with defects for use as catalysts, production of superhard materials (synthetic diamond, BN (boron nitride)) and nanomaterials, especially nanodiamond, and discusses state-of-the-art techniques such as combining dynamic and static compression to obtain monolithic materials.

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