Vacuum Technology
First published: 19 November 2014
Abstract
The article contains sections titled:
1. | Introduction |
2. | Fundamental Aspects of Vacuum Science and Technology |
2.1. | Basic Principles and Terminology |
2.1.1. | Pressure Regimes |
2.1.2. | Equation of State of Gases |
2.1.3. | Kinetic Theory |
2.1.4. | Flow Regimes and Knudsen Number |
2.1.5. | Vacuum Pump Characteristics |
2.1.6. | Conductance |
2.1.7. | Pump-Out Equation |
2.2. | Vacuum Gas Dynamics |
2.2.1. | Numerical Simulation Approaches |
2.2.2. | Pipe Flows |
3. | Vacuum Pumps |
3.1. | Positive Displacement Vacuum Pumps |
3.1.1. | Reciprocating Positive Displacement Pumps |
3.1.2. | Rotary Positive Displacement Pumps |
3.1.2.1. | Single Shaft Rotary Positive Displacement Pumps |
3.1.2.2. | Twin Shaft Rotary Positive Displacement Pumps |
3.2. | Kinetic Vacuum Pumps |
3.2.1. | Working Fluid Jet Pumps |
3.2.2. | Turbomolecular Pumps |
3.2.3. | Vapor Diffusion Pumps |
3.3. | Entrapment Vacuum Pumps |
3.3.1. | Sputter Ion Pumps |
3.3.2. | Getter Pumps |
3.3.3. | Cryopumps |
4. | Vacuum Diagnostics |
4.1. | Total Pressure Measurement |
4.1.1. | Mechanical Vacuum Instruments |
4.1.2. | Transport Coefficient Instruments |
4.1.3. | Ionization Vacuum Gauges |
4.2. | Partial Pressure Measurement |
4.3. | Leaks |
5. | Vacuum System Components |
5.1. | Piping Components |
5.2. | Valves |
6. | Vacuum Applications and Examples |
6.1. | Aspects of Vacuum System Design |
6.2. | Examples of Vacuum Systems |
6.2.1. | Steel Degassing |
6.2.2. | Thin Film Deposition |
6.2.3. | Vacuum Systems of Fusion Devices |
6.2.4. | Ultrahigh Vacuum Systems of Accelerator Storage Rings |