Glossary of mechanical engineering

List of definitions of terms and concepts commonly used in mechanical engineering

Most of the terms listed in Wikipedia glossaries are already defined and explained within Wikipedia itself. However, glossaries like this one are useful for looking up, comparing and reviewing large numbers of terms together. You can help enhance this page by adding new terms or writing definitions for existing ones.

This glossary of mechanical engineering terms pertains specifically to mechanical engineering and its sub-disciplines. For a broad overview of engineering, see glossary of engineering.

A

B

C

D

E

F

G

H

I

J

K

L

M

N

O

P

Q

R

S

T

U

V

W

X

Y

E = σ ε {\displaystyle E={\frac {\sigma }{\varepsilon }}}
  Young's moduli are typically so large that they are expressed not in pascals but in gigapascals (GPa).

Z

See also

References

  1. ^ Nelson, W. (1980). "Accelerated Life Testing - Step-Stress Models and Data Analyses". IEEE Transactions on Reliability. R-29 (2): 103. doi:10.1109/TR.1980.5220742. S2CID 35734439.
  2. ^ Spencer, F. W. (1991). "Statistical Methods in Accelerated Life Testing". Technometrics. 33 (3): 360–362. doi:10.1080/00401706.1991.10484846.
  3. ^ Donahoe, D.; Zhao, K.; Murray, S.; Ray, R. M. (2008). "Accelerated Life Testing". Encyclopedia of Quantitative Risk Analysis and Assessment. doi:10.1002/9780470061596.risk0452. ISBN 9780470035498. S2CID 86534403.
  4. ^ Elsayed, E. A. (2003). "Accelerated Life Testing". Handbook of Reliability Engineering. pp. 415–428. doi:10.1007/1-85233-841-5_22. ISBN 1-85233-453-3.
  5. ^ Crew, Henry (2008). The Principles of Mechanics. BiblioBazaar, LLC. p. 43. ISBN 978-0-559-36871-4.
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  7. ^ Lehrman, Robert L. (1998). Physics the Easy Way. Barron's Educational Series. pp. 27. ISBN 978-0-7641-0236-3.
  8. ^ Tinder, Richard F. (2007). Relativistic Flight Mechanics and Space Travel: A Primer for Students, Engineers and Scientists. Morgan & Claypool Publishers. p. 33. ISBN 978-1-59829-130-8. Extract of page 33
  9. ^ Rindler, W. (2013). Essential Relativity: Special, General, and Cosmological (illustrated ed.). Springer. p. 61. ISBN 978-1-4757-1135-6. Extract of page 61
  10. ^ BS ISO 5725-1: "Accuracy (trueness and precision) of measurement methods and results - Part 1: General principles and definitions.", p.1 (1994)
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  12. ^ "Pressure Washer". Retrieved 2017-02-23.
  13. ^ 2008 ASHRAE handbook : heating, ventilating, and air-conditioning systems and equipment (Inch-Pound ed.). Atlanta, Ga.: ASHRAE American Society of Heating, Refrigerating and Air-Conditioning Engineers. 2008. ISBN 9781933742335.
  14. ^ "How Do Air Compressors Work?". Popular Mechanics. 2015-03-18. Retrieved 2017-01-12.
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  16. ^ "How Do Air Pressure Differences Cause Winds?". ThoughtCo. Retrieved 2017-11-09.
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  18. ^ ASME. "ASME.org > About ASME". Retrieved 2011-12-27.
  19. ^ "2.1. Unit of electric current (ampere)", SI brochure (8th ed.), BIPM, archived from the original on 3 February 2012, retrieved 19 November 2011
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  21. ^ Engineering Mechanics (statics and dynamics) - Dr.N.Kottiswaran ISBN 978-81-908993-3-8
  22. ^ Oleson 2000, pp. 242–251
  23. ^ Definition of AI as the study of intelligent agents:
  24. ^ Russell & Norvig 2009, p. 2.
  25. ^ "Musical automaton clock". Victoria and Albert Museum, London. 13 January 2011. Retrieved 2011-09-16.
  26. ^ Fowler, H.W.; Fowler, F.G., eds. (1976). Pocket Oxford Dictionary. Oxford University Press. ISBN 978-0198611134.
  27. ^ "motor car, n." OED Online. Oxford University Press. September 2014. Retrieved 2014-09-29.
  28. ^ Mechanical Engineering design (9th ed.). McGraw Hill. 2010. p. 360. ISBN 978-0073529288.
  29. ^ Hellemans, Alexander; Bunch, Bryan (1988). The Timetables of Science. Simon & Schuster. p. 305. ISBN 0671621300.
  30. ^ Bagad, V.S. (2009). Mechatronics (4th revised ed.). Pune: Technical Publications. ISBN 9788184314908. Retrieved 28 June 2014.
  31. ^ EN 1993-1-8:2005 Eurocode 3: Design of steel structures - Part 1-8: Design of joints
  32. ^ Smith 1990, p. 38.
  33. ^ Fastener terms, archived from the original on 2008-11-02, retrieved 2009-06-29.
  34. ^ Low & Bevis 1908, p. 115.
  35. ^ Helical Compression Spring Terminology, archived from the original on 2010-11-01, retrieved 2009-06-29.
  36. ^ Attaway, Stephen W. (1999). The Mechanics of Friction in Rope Rescue (PDF). International Technical Rescue Symposium. Retrieved February 1, 2010.
  37. ^ Brooker, Graham (2012). Introduction to Biomechatronics. University of Sydney, Australia. ISBN 978-1-891121-27-2.
  38. ^ "The Dowty Bonded Seal" (PDF). Retrieved 12 August 2016.
  39. ^ "Bonded Seals from Ashton Seals". Retrieved 12 August 2016.
  40. ^ "Bonded Seals from Eastern Seals". Retrieved 12 August 2016.
  41. ^ "Bonded Seals from Supaseal" (PDF). Retrieved 12 August 2016.
  42. ^ Chisholm, Hugh, ed. (1911). "Omnibus" . Encyclopædia Britannica. Vol. 20 (11th ed.). Cambridge University Press. p. 104.
  43. ^ Frederick M. Steingress (2001). Low Pressure Boilers (4th ed.). American Technical Publishers. ISBN 0-8269-4417-5.
  44. ^ Frederick M. Steingress, Harold J. Frost and Darryl R. Walker (2003). High Pressure Boilers (3rd ed.). American Technical Publishers. ISBN 0-8269-4300-4.
  45. ^ Lutjen, D; Müller, M (1984). Kfz-Rechnen. B.G. Teubner Stuttgart. p. 12. ISBN 9783519067214.
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  47. ^ Narayan, K. Lalit (2008). Computer Aided Design and Manufacturing. New Delhi: Prentice Hall of India. p. 4. ISBN 978-8120333420.
  48. ^ Duggal, Vijay (2000). Cadd Primer: A General Guide to Computer Aided Design and Drafting-Cadd, CAD. Mailmax Pub. ISBN 978-0962916595.
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  50. ^ Hosking, Dian Marie; Anderson, Neil (1992), Organizational change and innovation, Taylor & Francis, p. 240, ISBN 978-0-415-06314-2
  51. ^ Daintith, John (2004). A dictionary of computing (5 ed.). Oxford University Press. p. 102. ISBN 978-0-19-860877-6.
  52. ^ Kreith, Frank (1998). The CRC handbook of mechanical engineering. CRC Press. p. 15-1. ISBN 978-0-8493-9418-8.
  53. ^ Matthews, Clifford (2005). Aeronautical engineer's data book (2nd ed.). Butterworth-Heinemann. p. 229. ISBN 978-0-7506-5125-7.
  54. ^ Pichler, Franz; Moreno-Díaz, Roberto (1992). Computer aided systems theory. Springer. p. 602. ISBN 978-3-540-55354-0.
  55. ^ Boothroyd, Geoffrey; Knight, Winston Anthony (2006). Fundamentals of machining and machine tools (3rd ed.). CRC Press. p. 401. ISBN 978-1-57444-659-3.
  56. ^ Steidel (1971). An Introduction to Mechanical Vibrations. John Wiley & Sons. p. 37. damped, which is the term used in the study of vibration to denote a dissipation of energy
  57. ^ Cantwell, W.J.; Morton, J. (1991). "The impact resistance of composite materials — a review". Composites. 22 (5): 347–362. doi:10.1016/0010-4361(91)90549-V.
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  59. ^ Fundamentals of Classical Thermodynamics, 3rd ed. p. 159, (1985) by G. J. Van Wylen and R. E. Sonntag: "A heat engine may be defined as a device that operates in a thermodynamic cycle and does a certain amount of net positive work as a result of heat transfer from a high-temperature body and to a low-temperature body. Often the term heat engine is used in a broader sense to include all devices that produce work, either through heat transfer or combustion, even though the device does not operate in a thermodynamic cycle. The internal-combustion engine and the gas turbine are examples of such devices, and calling these heat engines is an acceptable use of the term."
  60. ^ Mechanical efficiency of heat engines, p. 1 (2007) by James R. Senf: "Heat engines are made to provide mechanical energy from thermal energy."
  61. ^ Bowser, Edward Albert (1920), An elementary treatise on analytic mechanics: with numerous examples (25th ed.), D. Van Nostrand Company, pp. 202–203.
  62. ^ McGraw-Hill Concise Encyclopedia of Science & Technology, Third Ed., Sybil P. Parker, ed., McGraw-Hill, Inc., 1992, p. 2041.
  63. ^ Jastrzebski, D. (1959). Nature and Properties of Engineering Materials (Wiley International ed.). John Wiley & Sons, Inc.
  64. ^ A Guide to Zero Defects: Quality and Reliability Assurance Handbook. Washington, D.C.: Office of the Assistant Secretary of Defense (Manpower Installations and Logistics). 1965. p. 3. OCLC 7188673. 4155.12-H. Archived from the original on May 29, 2014. Retrieved May 29, 2014. Early in 1964 the Assistant Secretary of Defense (Installations and Logistics) invited the attention of the Military Departments and the Defense Supply Agency to the potential of Zero Defects. This gave the program substantial impetus. Since that time Zero Defects has been adopted by numerous industrial and Department of Defense activities.

Works cited

  • Legg, Shane; Hutter, Marcus (15 June 2007). "A Collection of Definitions of Intelligence". arXiv:0706.3639 [cs.AI].
  • Low, David Allan; Bevis, Alfred William (1908), Manual of machine drawing and design (Revised ed.), Longmans, Green, and co.
  • Nilsson, Nils (1998). Artificial Intelligence: A New Synthesis. Morgan Kaufmann. ISBN 978-1-55860-467-4. Archived from the original on 26 July 2020. Retrieved 18 November 2019.
  • Oleson, John Peter (2000), "Water-Lifting", in Wikander, Örjan (ed.), Handbook of Ancient Water Technology, Technology and Change in History, vol. 2, Leiden, pp. 217–302 (242–251), ISBN 90-04-11123-9{{citation}}: CS1 maint: location missing publisher (link)
  • Russell, Stuart J.; Norvig, Peter (2003), Artificial Intelligence: A Modern Approach (2nd ed.), Upper Saddle River, New Jersey: Prentice Hall, ISBN 0-13-790395-2.
  • Russell, Stuart J.; Norvig, Peter (2009). Artificial Intelligence: A Modern Approach (3rd ed.). Upper Saddle River, New Jersey: Prentice Hall. ISBN 978-0-13-604259-4..
  • Poole, David; Mackworth, Alan; Goebel, Randy (1998). Computational Intelligence: A Logical Approach. New York: Oxford University Press. ISBN 978-0-19-510270-3. Archived from the original on 26 July 2020. Retrieved 22 August 2020.
  • Smith, Carroll (1990), Carroll Smith's Nuts, Bolts, Fasteners, and Plumbing Handbook, MotorBooks/MBI Publishing Company, ISBN 0-87938-406-9.
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