A Textbook of Machine DesignTEXT BOOK FOR THE STUDENTS OF B.E. / B.TECH. , U.P.S.E. (ENGG. SERVICES) ; SECTION 'B' OF A.M.I.E. (I) |
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Page vii
... Design. 3. General Considerations in Machine Design. 4. General Procedure in Machine Design. 5. Fundamental Units. 6. Derived Units. 7. System of Units. 8. S.I Units (International System of Units). 9. Metre. 10. Kilogram. 11. Second ...
... Design. 3. General Considerations in Machine Design. 4. General Procedure in Machine Design. 5. Fundamental Units. 6. Derived Units. 7. System of Units. 8. S.I Units (International System of Units). 9. Metre. 10. Kilogram. 11. Second ...
Page x
... Design of Longitudinal Butt Joint for a Boiler . 18. Design of Circumferential Lap Joint for a Boiler . 19. Recommended Joints for Pressure Vessels . 20. Riveted Joint for Structural Use – Joints of Uniform Strength ( Lozenge Joint ) ...
... Design of Longitudinal Butt Joint for a Boiler . 18. Design of Circumferential Lap Joint for a Boiler . 19. Recommended Joints for Pressure Vessels . 20. Riveted Joint for Structural Use – Joints of Uniform Strength ( Lozenge Joint ) ...
Page xii
... Design of Piston Rod . 14. Design of Push Rods . 15. Design of Connecting Rod . 16. Forces Acting on a Connecting Rod . 17. Power Screws 1. Introduction . 2. Types of Screw Threads used for Power Screws . 3. Multiple Threads . 4. Torque ...
... Design of Piston Rod . 14. Design of Push Rods . 15. Design of Connecting Rod . 16. Forces Acting on a Connecting Rod . 17. Power Screws 1. Introduction . 2. Types of Screw Threads used for Power Screws . 3. Multiple Threads . 4. Torque ...
Page xiii
... Design of Cast Iron Pulleys . 20. V - Belt and Rope Drives 1. Introduction . 2. Types of V - belts and Pulleys . 3. Standard Pitch Lengths of V - belts . 4. Advantages and Disadvantages of V - belt Drive over Flat Belt Drive . 5. Ratio ...
... Design of Cast Iron Pulleys . 20. V - Belt and Rope Drives 1. Introduction . 2. Types of V - belts and Pulleys . 3. Standard Pitch Lengths of V - belts . 4. Advantages and Disadvantages of V - belt Drive over Flat Belt Drive . 5. Ratio ...
Page xv
... Design Procedure for Journal Bearings. 20. Solid Journal Bearing. 21. Bushed Bearing. 22. Split Bearing or Plummer Block. 23. Design of Bearing Caps and Bolts. 24. Oil Grooves. 25. Thrust Bearings. 26. Foot-step or Pivot Bearings. 27 ...
... Design Procedure for Journal Bearings. 20. Solid Journal Bearing. 21. Bushed Bearing. 22. Split Bearing or Plummer Block. 23. Design of Bearing Caps and Bolts. 24. Oil Grooves. 25. Thrust Bearings. 26. Foot-step or Pivot Bearings. 27 ...
Contents
1 | |
16 | |
53 | |
87 | |
120 | |
181 | |
Chapter 07 Pressure Vessels | 224 |
Chapter 08 Pipes and Pipe Joints | 261 |
Chapter 18 Flat Belt Drives | 677 |
Chapter 19 Flat Belt Pulleys | 715 |
Chapter 20 VBelt and Rope Drives | 727 |
Chapter 21 Chain Drives | 759 |
Chapter 22 Flywheel | 776 |
Chapter 23 Springs | 820 |
Chapter 24 Clutches | 885 |
Chapter 25 Brakes | 917 |
Chapter 09 Riveted Joints | 281 |
Chapter 10 Welded Joints | 341 |
Chapter 11 Screwed Joints | 377 |
Chapter 12 Cotter and Knuckle Joints | 431 |
Chapter 13 Keys and Coupling | 470 |
Chapter 14 Shafts | 509 |
Chapter 15 Levers | 558 |
Chapter 16 Columns and Struts | 600 |
Chapter 17 Power Screws | 624 |
Chapter 26 Sliding Contact Bearings | 962 |
Chapter 27 Rolling Contact Bearings | 996 |
Chapter 28 Spur Gears | 1021 |
Chapter 29 Helical Gears | 1066 |
Chapter 30 Bevel Gears | 1080 |
Chapter 31 Worm Gears | 1101 |
Chapter 32 Internal Combustion Engine Parts | 1125 |
INDEX | 1215 |
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Common terms and phrases
angle Assuming axial load axis bearing pressure bending moment bending stress bolts brake butt joint cast iron centre centrifugal clutch coefficient of friction coil compressive stress connecting rod cross-sectional area cylinder d₁ Design dimensions distance drum engine equation Example factor of safety fillet weld flange flywheel force fulcrum Given hole Indian standard know that maximum length lever lubrication machine material maximum bending maximum shear stress mean diameter metal metres mm˛ moment of inertia N-mm N/mm˛ outer P₁ pipe piston pitch plate power transmitted pulley r₁ radius ratio resistance rivets rotation screw section modulus shaft shear load shear stress shown in Fig Solution speed spring steel stress concentration stress induced surface T₁ T₂ tangential temperature tensile load tensile stress tension thickness torque transmitted torsional twisting velocity width σ₁