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2. The Effect of Mean Pressure on Large Pulse Tube Cryocoolers
3. Producibility of Cryocooler Compressors
4. Air Force Research Laboratory Space Cryogenic Technology Research Initiatives
5. 30 – 50 K Single Stage Pulse Tube Refrigerator for HTS Applications
6. Space Cryocooler Contamination Lessons Learned and Recommended Control Procedures
7. Cryocooler Reliability and Redundancy Considerations for Long-Life Space Missions
8. Regenerator Behavior with Heat Input or Removal at Intermediate Temperatures
9. Air Force Research Laboratory Cryocooler Characterization and Endurance Update
10. Design and Preliminary Testing of BEI’s CryoPulse 1000, the Commercial One Watt Pulse Tube Cooler
11. Air Force Research Laboratory Cryocooler Technology Development
12. A Single Stage Five Valve Pulse Tube Refrigerator Reaching 32 K
13. Phillips Laboratory Space Cryocooler Development and Test Program
14. Experimental and Predicted Performance of the BEI Mini-Linear Cooler
15. An Overview of Air Force Phillips Laboratory Cryocooler Programs
16. Progress in Cryocoolers
17. Experimental Flow Characteristics Study of a High Frequency Pulse Tube Regenerator
18. Numerical Simulations of Fluid Flow and Heat Transfer in Pulse Tubes
19. Compression Losses in Cryocoolers
20. Development of Stirling-Type Coaxial Pulse Tube Cryocoolers
21. Operation of Thermoacoustic Stirling Heat Engine Driven Large Multiple Pulse Tube Refrigerators
22. Large Scale Cryocooler Development for Superconducting Electric Power Applications (HTS-4)
23. A Commercial Pulse Tube Cryocooler with 200 W Refrigeration at 80 K
24. Lockheed Martin Two-Stage Pulse Tube Cryocooler for GIFTS
25. Development of a Single Stage Pulse Tube Refrigerator with Linear Compressor
26. Lockheed Martin RAMOS Engineering Model Cryocooler
27. Ball Aerospace Next Generation 2-Stage 35 K SB235 Coolers
28. Characterization of the NGST 150 K Mini Pulse Tube Cryocooler
29. Development of the LSF95xx 2nd Generation Flexure Bearing Coolers
30. Long Life Cryocoolers for Space Applications a Database Update
31. Comparison of Measurements and Models for a Pulse Tube Refrigerator to Cool Cryo-Surgical Probes
32. Model for Orbit-Induced Temperature Oscillations in a Miniature Pulse Tube Cryocooler, Part 2: Cold Head Components
33. Status of Pulse Tube Cryocooler Development at Sunpower
34. A Study of the Use of 6K ACTDP Cryocoolers for the MIRI Instrument on JWST
35. NGST Advanced Cryocooler Technology Development Program (ACTDP) Cooler System
36. Surface Heat Pumping Loss in a Pulse Tube Refrigerator
37. The Role of the Orifice and the Secondary Bypass in a Miniature Pulse Tube Cryocooler
38. A First Order Model of a Hybrid Pulse Tube/Reverse-Brayton Cryocooler
39. Pressure Wave Generator for a Pulse Tube Cooler
40. Experimental Study on Two-stage Pulse Tube Refrigeration with Mixtures of Helium and Hydrogen
41. Scaling of Cryocooler Compressors
42. Development of a High Capacity Two-Stage Pulse Tube Cryocooler
43. High Capacity Two-Stage Pulse Tube Cooler
44. Development of a Lightweight Pulse Tube Cryocooler for Space Applications
45. JAMI Flight Pulse Tube Cooler System
46. Low Vibration 80 K Pulse Tube Cooler with Flexure Bearing Compressor
47. Development of 40–80K Linear-Compressor Driven Pulse Tube Cryocoolers
48. AIRS Pulse Tube Cooler System-Level and In-Space Performance Comparison
49. On-Orbit Cooling Performance of a Miniature Pulse Tube Flight Cryocooler
50. Sub-Kelvin Mechanical Coolers
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