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Home > Science, Technology & Agriculture > Mechanical engineering and materials > Materials science > High Damping Materials II: (Volume 319 Key Engineering Materials)
High Damping Materials II: (Volume 319 Key Engineering Materials)

High Damping Materials II: (Volume 319 Key Engineering Materials)


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About the Book

Volume is indexed by Thomson Reuters CPCI-S (WoS). In modern society, the demand for means of suppressing the vibration of machine parts and tools is increasing; due to the need to solve noise problems and to improve the accuracy of mechanical systems. The most direct way of coping with such vibration problems is to use high damping materials to make the critical parts.

Table of Contents:
Committees Preface I. Shape Memory Alloys Damping Properties of Vacuum Annealed and H-Doped NiTi Based Alloys at Low Stress Amplitudes Damping Characteristics of Cold-Rolled and Annealed Equiatomic TiNi Shape Memory Alloy Suppression of Martensitic Phase Transformation, Shape Memory and High Damping by Ion Implantation in Ni-Ti Thin Films Isothermal High Damping in Shape Memory Alloys Effect of Heat Treatments on the Damping Characteristics of TiNi-Based Shape Memory Alloys Internal Friction of Hydrogenated Ti (Ni,Cu) Shape Memory Alloys Amplitude Dependent Internal Friction of CuAlMn Shape Memory Alloys Internal Friction of Fe-Mn-Si-Based Shape Memory Alloys Containing Nb and C and Their Application as a Seismic Damping Material II. Alloys Effect of Thermal Cycling (γ<->ε) on Martensitic Transformation Kinetics and Damping Capacity of Fe –17mass%Mn Alloy Susceptibility of Damping Behavior to the Solidification Condition in the As-Cast M2052 High-Damping Alloy Effect of Chromium Addition on Damping Capacity, Mechanical Property, and Corrosion Resistance of Fe-18%Mn Alloy Different Damping Dependences on Volume Fractions of Thermal and Deformation-Induced ε Martensites in an Fe-Mn Alloy Influences of Si and Co Addition on Microstructure and Damping Capacity of Fe-Mn Alloy Fe-Cr-Mn-(Co) High Damping Stainless Alloy (HIDAS) The Resonant Vibration Fracture Characteristics of Al-xZn Alloy and Mg-xAl-Zn Alloy Low-Frequency High-Temperature Internal Friction in Ti-13Nb-13Zr Alloy Damping Behaviors of the Commercially Pure Al Prepared by ECAP Ultrasonic Attenuation Properties of Porous and Cellular Al Alloy with Spherical Pore Influence of Oxygen on the Damping Properties of Nb-Zr Alloys III. Metallic Glasses Hydrogen-Induced Damping Peak Temperatures in Bulk Metallic Glasses High Damping Performance of Hydrogenated Bulk Metallic Glasses Internal Friction and Mechanical Strength of Hydrogenated Ti-Rich Multicomponent Glassy Alloys Can Metallic Glass Damping Be Increased by Stress Training Treatment? Search for High Damping Metallic Glasses IV. Ceramics and Composites High Damping in Ferroelectric and Ferrimagnetic Ceramics Damping Mechanisms in Oxide Materials and Their Potential Applications Synthesis of Novel High Damping Ceramic-Polymer Composites and Its Application as Ceramic Musical Instruments Composite Damping Ceramic Coatings by Polymer Impregnation Anelastic Properties of Mg+3vol.%Gr Prepared by Ball Milling V. Applications and Measuring Technique Current Status of Japanese Passive Control Technology Using Various Damping Materials Applications of High Damping Stainless Alloy (HIDAS) Application of High-Damping Alloy M2052 Damping Mechanisms in High Damping Materials Advanced Techniques for Determining High and Extreme High Damping: OMI - A New Algorithm to Compute the Logarithmic Decrement


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Product Details
  • ISBN-13: 9783038130611
  • Publisher: Trans Tech Publications Ltd
  • Publisher Imprint: Trans Tech Publications Ltd
  • Language: English
  • Series Title: Volume 319 Key Engineering Materials
  • ISBN-10: 3038130613
  • Publisher Date: 15 Sep 2006
  • Binding: Digital download and online
  • No of Pages: 260


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