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Rhombohedral Boron-doped Nickel Β- Kobaltita and Physical and Mechanical Properties

By Liu, Pearl

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Book Id: WPLBN0003841693
Format Type: PDF eBook :
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Reproduction Date: 2015

Title: Rhombohedral Boron-doped Nickel Β- Kobaltita and Physical and Mechanical Properties  
Author: Liu, Pearl
Volume:
Language: Georgian
Subject: Georgian, Chemistry & Allied Sciences, Boron
Collections: National Library of Georgia
Historic
Publication Date:
2012
Publisher: Library of Georgia

Citation

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Liu, P. (2012). Rhombohedral Boron-doped Nickel Β- Kobaltita and Physical and Mechanical Properties. Retrieved from http://hawaiilibrary.net/


Table of Contents
TOC: List of tables; List of Drawings; Introduction; 1. Literature Review; 1.1. Boris Making Methods; 1.2. Boris Structural Modifications; 1.2.1. Rhombohedral Boron Α-; 1.2.2. Tetragonal Boron; 1.2.3. Rhombohedral Boron Β-; 1.3. Structural Defects in the Boer; 1.4. Boron Doping Methods; 1.5. Physical and Mechanical Properties of Boron-Doped; 1.5.1. Electrical Conductivity; 1.5.2. Heat Conductivity; 1.5.3. thermal Expansion; 1.5.4. Mechanical Properties; 1.5.5. Mechanical Relaxation Processes; 2. Results and Discussion; 2.1. Rhombohedral Boron-Doped Nickel and Β- Kobaltita Reception and Research Methods; 2.1.1. Doped Crystals Obtained; 2.1.2. Mikrostrukturuli Analysis; 2.1.3. Micro-Determination; 2.1.4. thermal Expansion of the Research; 2.1.5. Electrophysical Characteristics of the Measurement; 2.1.6. internal Friction and Shear Modulus Measurements; 2.2. Kobaltita and Nickel-Doped Structure and Physical-Mechanical Properties of Β- Rhombohedral Boron; 2.2.1. Microstructure; 2.2.2. Electrophysical Properties; 2.2.3. the Temperature Dependence of thermal Expansion; 2.2.4. Kobaltita and Nickel Crystals Rhombohedral Boron Doping Effect Β- Mikrosisalesa and Shear Module; 2.3. Rhombohedral Boron Doping of Cobalt and Nickel Β- Aradrekad Impact Properties; 2.3.1. Β- Polycrystalline Rhombohedral Boron inelastic Properties; 2.3.2. Cobalt-Doped Crystals Rhombohedral Boron Β- Dynamic Modulus Temperature Dependence of internal Friction and Shear; 2.3.3. Nickel-Doped Crystals Rhombohedral Boron Β- Dynamic Modulus Temperature Dependence of internal Friction and Shear; 2.3.4. B-Co System Alloys Amplitude Dependence of internal Friction and Shear Modulus; 2.3.5. B-Ni System Alloys Amplitude Dependence of internal Friction and Shear Modulus; Conclusion; References.

 

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