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Transport Phenomena in Manufacturing and Materials Processing.

Author: W -J Yang; S Mochizuki; N Nishiwaki; A S Mujumdar
Publisher: Burlington : Elsevier Science, 1994.
Series: Transport processes in engineering.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
Motivated by international competition and an easy access to high-speed computers the manufacturing and materials processing industry has seen many changes in recent times. New techniques are constantly being devloped based on a broad range of basic sciences including physics, chemistry and particularly thermal-fluids sciences and kinetics. In order to produce and treat massive products, the industry is also in need  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Yang, W.-J.
Transport Phenomena in Manufacturing and Materials Processing.
Burlington : Elsevier Science, ©1994
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: W -J Yang; S Mochizuki; N Nishiwaki; A S Mujumdar
ISBN: 9781483291321 1483291324
OCLC Number: 895435323
Notes: 2. floating-zone crystal growth.
Description: 1 online resource (193 pages).
Contents: Front Cover; Transport Phenomena in Manufacturing and Materials Processing; Copyright Page; Preface; Table of Contents; PART I: FUNDAMENTALS; INTRODUCTION; CHAPTER 1. FLOW, HEAT AND MASS TRANSFER; 1. INTRODUCTION; 2. CONSERVATION EQUATIONS OF TRANSPORT PROPERTIES; 3. TRANSPORT RATE EQUATIONS; 4. EQUATIONS OF STATES; 5. REFERENCES; CHAPTER 2. ELECTROMAGNETISM; 1. INTRODUCTION; 2. COULOMB'S LAW; 3. GAUSS' LAW FOR ELECTRICITY; 4. GAUSS' LAW FOR MAGNETISM; 5. AMPERE'S LAW; 6. FARADAY'S LAW OF INDUCTION; 7. MAXWELL'S EQUATIONS; 8. REFERENCES. Chapter 3. dimensional analysis and dimensionless parameters1. introduction; 2. dimensional analysis; 3. free surface flow; 4. references; part ii: transport phenomena in manufacturing; chapter 4. machining and machine tool thermal deformation; 1. cutting; 2. thermal deformation; 3. a simple model of thermal deformation; 4. improving methods; 5. thermal boundary conditions of machine tools; 6. thermal deformation caused by surrounding temperature variation; 7. the main characteristics of the temperature rise caused by inner heat sources. 8. measurement of heat transfer coefficient in main spindle bearing system9. measuring method of heat transfer coefficient; 10. precise temperature controlling method for machine tool structure; 11. grinding; 12. references; chapter 5. welding; 1. introduction; 2. electroslag welding; 3. arc welding; 4. laser welding; 5. references; chapter 6. casting; 1 . introduction; 2. ladles; 3. electroslag refining systems; 4. induction furnace; 5. remarks; 6. references; chapter 7. injection molding; 1. introduction; 2. computer-aided injection molding; 3. plastic product reinforcement. 4. plastic injection molding5. references; chapter 8. surface processes; 1. introduction; 2. plasma flame model; 3. particle history model; 4. heat transfer and solidification during plasma spraying; 5. plasma cvd; 6. references; part iii: transport phenomena in materials processing; chapter 9. heating and cooling; 1. introduction; 2. heating; 3. cooling; 4. references; chapter 10. melting and solidification; 1. introduction; 2. melting; 3. solidification of binary component melts and computer simulation; 4. rapid quenching solidification; 5. casting solidification; 6. references. Chapter 11. crystal growth1. introduction; 2. melt growth methods; 3. transport phenomena; 4. model equations; 5. dimensionless parameters; 6. crystal defect formation; 7. references; chapter 12. diffusion; 1. introduction; 2. soret effect; 3. dufour effect; 4. multi-component diffusion; 5. double diffusion; 6. references; part iv: special topics; chapter 13. beam technology; 1. laser; 2. principles of laser processing; 3. theory on laser processing; 4. electron beam; 5. ion beam; 6. electrical discharge; 7. references; chapter 14. microgravity; 1. introduction.
Series Title: Transport processes in engineering.

Abstract:

Motivated by international competition and an easy access to high-speed computers the manufacturing and materials processing industry has seen many changes in recent times. New techniques are constantly being devloped based on a broad range of basic sciences including physics, chemistry and particularly thermal-fluids sciences and kinetics. In order to produce and treat massive products, the industry is also in need of a very wide range of engineering knowledge and skill for integrating metallurgy, mechanics, electricity, transport phenomena, instrumentation and computer control. This monograp.

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