This book on waterjet technology builds on the previous book by the author, Versatility of Waterjet Technology, and explores the rich and fascinating history of the field. From early developments to its emergence as a precision machining powerhouse the book chronicles key milestones, people, and innovations that shaped waterjet technology.
This book on waterjet technology builds on the previous book by the author, Versatility of Waterjet Technology, and explores the rich and fascinating history of the field. From early developments to its emergence as a precision machining powerhouse the book chronicles key milestones, people, and innovations that shaped waterjet technology.
Peter H.-T. Liu retired from OMAX Corporation in 2022. His specialty is experimental fluid dynamics. He earned his PhD from Colorado State University and held a postdoctoral fellowship at the National Center for Atmospheric Research before joining Flow Industries, where he specialized in qualitative and quantitative flow visualization in both laboratory and field settings. He later joined OMAX, where he focused on developing precision and micro-waterjet systems. Over his 50-year career, he collaborated with various institutions including PNNL, NIST, MIT, the University of Washington, Toronto Metropolitan University, National Taiwan University, and National Cheng Kung University. He has authored 2 books and over 90 technical publications and holds 11 U.S. and European patents.
Inhaltsangabe
PART I LEGACY OF THE FATHER OF WATERJET TECHNOLOGY 1. OMAX, MIT, and University Synergy 2. The Legacy of Dr. John Olsen, Father of Waterjet Technology 3. Working with Dr. John Olsen and the Evolution of High-Pressure Technology PART II EVOLUTION OF WATERJET TECHNOLOGY 4. Early Developments in Waterjet Technical Growth 5. Early Development of AWJ Technology 6. Evolution of Waterjet Technology from Raw Cutting to Precision Machining 7. Short History of Abrasive Waterjet Milling 8. Modeling of Abrasive Waterjet Cutting Performance 9. Particle Velocity Measurement Methods in Abrasive Water Jets 10. Abrasive Waterjet and Abrasive Slurry Jet Milling of Microfeatures in Ductile and Brittle Materials PART III WATERJET EDUCATION 11. Waterjet Education Programs at Massachusetts Institute of Technology 12. Waterjet Education Programs at the University of British Columbia 13. Academia and the Growth of Waterjet Technology 14. The Creative Use of Waterjet in Education at the University of Sunderland 15. The Art of Waterjet Cutting 16. Waterjet Education in Japan: History, New Applications, and University Education 17. Waterjet Education Programs in K-9 through K-14 Schools
PART I LEGACY OF THE FATHER OF WATERJET TECHNOLOGY 1. OMAX, MIT, and University Synergy 2. The Legacy of Dr. John Olsen, Father of Waterjet Technology 3. Working with Dr. John Olsen and the Evolution of High-Pressure Technology PART II EVOLUTION OF WATERJET TECHNOLOGY 4. Early Developments in Waterjet Technical Growth 5. Early Development of AWJ Technology 6. Evolution of Waterjet Technology from Raw Cutting to Precision Machining 7. Short History of Abrasive Waterjet Milling 8. Modeling of Abrasive Waterjet Cutting Performance 9. Particle Velocity Measurement Methods in Abrasive Water Jets 10. Abrasive Waterjet and Abrasive Slurry Jet Milling of Microfeatures in Ductile and Brittle Materials PART III WATERJET EDUCATION 11. Waterjet Education Programs at Massachusetts Institute of Technology 12. Waterjet Education Programs at the University of British Columbia 13. Academia and the Growth of Waterjet Technology 14. The Creative Use of Waterjet in Education at the University of Sunderland 15. The Art of Waterjet Cutting 16. Waterjet Education in Japan: History, New Applications, and University Education 17. Waterjet Education Programs in K-9 through K-14 Schools
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