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1. Impactful Times: Memories of 60 Years of Shock Wave Research at Sandia National Laboratories

2. Impactful Times : Memories of 60 Years of Shock Wave Research at Sandia National Laboratories

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3. Chapter 6 The 1990s: Black Monday

4. Chapter 8 Looking to the Future

5. Chapter 2 The 1950s: Origins

6. Chapter 5 The 1980s: Heady Times

7. Chapter 7 The 2000s: A New Millennium

8. Chapter 9 Memories of Shock Wave Research at Sandia

9. Chapter 4 The 1970s: New Opportunities

12. Chapter 3 The 1960s: Explosive Growth

13. High-pressure strength of aluminum under quasi-isentropic loading

14. Numerical study of rate-dependent strength behavior under ramp and shock wave loading

15. Use of the Z Accelerator for Condensed Matter Studies at Multi-Mbar Pressures

16. Measurement of the compression isentrope for 6061-T6 aluminum to 185GPa and 46% volumetric strain using pulsed magnetic loading

17. Near-absolute Hugoniot measurements in aluminum to 500 GPa using a magnetically accelerated flyer plate technique

18. Continuous index of refraction measurements to 20 GPa inZ-cut sapphire

19. Equation of state measurements in liquid deuterium to 100 GPa

20. Self-consistent, two-dimensional, magnetohydrodynamic simulations of magnetically driven flyer plates

21. Characterization of magnetically accelerated flyer plates

22. Isentropic compression experiments to 1 Mbar using magnetic pressure

23. Radiation-driven shock and debris propagation down a partitioned pipe

24. High velocity flyer plate launch capability on the Sandia Z accelerator

25. MHD modeling of conductors at ultrahigh current density

26. Use of Z-pinch sources for high-pressure equation-of-state studies

27. Applications of the ion beam technique for investigations of hypervelocity impacts

28. The use of shock-structure methods for evaluating high-pressure material properties

29. Experimental characterization and constitutive modeling of the mechanical behavior of molybdenum under electromagnetically applied compression-shear ramp loading

30. Simulation and analysis of Magnetically-Applied Pressure-Shear (MAPS) experiments

31. Magnetically applied pressure-shear : a new technique for direct strength measurement at high pressure (final report for LDRD project 117856)

32. LOADING PATH DEPENDENCE OF INELASTIC BEHAVIOR: X-CUT QUARTZ

33. Time-resolved optical spectroscopy measurements of shocked liquid deuterium

34. Studies of density distributions in one-dimensional shock-induced debris clouds

35. High gas pressure acceleration of flier plates - experimental techniques

36. Relationship of fragment size to normalized spall strength for materials

37. A Feasibility Study for a Fragment-Producing Chemical-Electrical Launcher

38. Modeling of a Compact Pulser for Isentropic Compression Experiments

39. Compressive Strength of Shocked Aluminum for Stresses of 4–22 Gpa

41. Principal Hugoniot, reverberating wave, and mechanical reshock measurements of liquid deuterium to 400 GPa using plate impact techniques

42. A Distributional Model for Elastic-Plastic Behavior of Shock-Loaded Materials

43. Wave Structure Studies in Condensed Matter Physics — Single Crystals to Magnetic Effects

44. Use of fast pulsed power for high-pressure equation-of-state studies

45. Use of a Wave Reverberation Technique to Infer the Density Compression of Shocked Liquid Deuterium to 75 GPa

46. Flux compression experiments on the Z accelerator

47. Conductor energy losses at 10 MA/cm on Z

48. Development of a Z-pinch-driven ICF hohlraum concept on Z

49. Paradigms and Challenges in Shock Wave Research

50. Considerations For Generating Up To 10 Mbar Magnetic Drive Pressures With The Refurbished Z-Machine (ZR)