Article
Open Access
Optimizing the Tungsten Deposition Process
-
R. Saad,
Published/Copyright:
May 6, 2011
Published Online: 2011-05-06
Published in Print: 1996-07
©2011 by Walter de Gruyter GmbH & Co.
Articles in the same Issue
- CONTENTS
- Intergranular Grooving During Oxidation of Intermetallics
- A New Method of Pack Aluminization
- Characterization of a Co84Nb10B6 Metallic Glass
- Modeling the Viscosity Temperature Dependence of Liquid Alloys
- Chemical Vapor Deposition Methods for Preparation of Radioactively Doped Thin Films
- Preparation of Nested Fullerenes and Nanotubes of MoS2
- Equilibrium Vacancies and Properties of Metals at High Temperatures
- The Structure and Properties of Hypervelocity Oxy-Fuel (HVOF) Sprayed Coatings
- Liquid Phase Separation in Cu-Co-Fe and Cu-Fe-Ni-Cr Alloys
- The Role of Alloying Elements on γ' Phase Growth Kinetics in Ni-Base Alloys
- Laser Cladding and Alloying for Refrubishing Worn Machine Parts
- Phase Growth Induced Stresses During Grain Boundary Diffusion
- Microstructure of CoAl-Co Intermetallic-Matrix Composite After Different Heat Treatments
- Optimizing the Tungsten Deposition Process
Creative Commons
BY-NC-ND 3.0
Articles in the same Issue
- CONTENTS
- Intergranular Grooving During Oxidation of Intermetallics
- A New Method of Pack Aluminization
- Characterization of a Co84Nb10B6 Metallic Glass
- Modeling the Viscosity Temperature Dependence of Liquid Alloys
- Chemical Vapor Deposition Methods for Preparation of Radioactively Doped Thin Films
- Preparation of Nested Fullerenes and Nanotubes of MoS2
- Equilibrium Vacancies and Properties of Metals at High Temperatures
- The Structure and Properties of Hypervelocity Oxy-Fuel (HVOF) Sprayed Coatings
- Liquid Phase Separation in Cu-Co-Fe and Cu-Fe-Ni-Cr Alloys
- The Role of Alloying Elements on γ' Phase Growth Kinetics in Ni-Base Alloys
- Laser Cladding and Alloying for Refrubishing Worn Machine Parts
- Phase Growth Induced Stresses During Grain Boundary Diffusion
- Microstructure of CoAl-Co Intermetallic-Matrix Composite After Different Heat Treatments
- Optimizing the Tungsten Deposition Process