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Transactions of the IMF
The International Journal of Surface Engineering and Coatings
Volume 77, 1999 - Issue 6
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Original Articles

On the Performance and Mechanism of Ultrasonically Cleaning Metal Components with Environmentally Acceptable Organic Solvents

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Pages 230-236 | Published online: 08 May 2017

REFERENCES

  • A.F. Averill, J.M. Ingram and P.F. Nolan, ‘Replacing TCA and CFC-113 with HFE and HFC based azeotropes and n-propyl bromide based solvents for wipecleaning metal components—source evaporation rates and models’, Trans IMF, 1999, 77, (1), 16–25.
  • A.F. Averill, J.M. Ingram and P.F. Nolan ‘Cleaning metal components after the Montreal Protocol—Introductory review’, Trans IMF, 1998, 76, (3), 81–89.
  • A.F. Averill, J.M. Ingram and P.F. Nolan, ‘Replacement substances for the Cleaning of Oxygen System Components’, British Compressed Gases Association Technical Report TR3, (1999).
  • T.J. Mason, Chapter 1, ‘Chemistry with Ultrasound’, Ed. T.J. Mason, SCI, Critical Reports on Applied Chemistry Vol 28, Elsevier Applied Sci., (1990).
  • B. Pugin, ‘Qualitative characterisation of ultrasound reactors for heterogeneous sonochemistry’, Ultrasonics, 1987, 25, 49–55.
  • B. Niemczewski, ‘A comparison of ultrasonic cavitation intensity in liquids’, Ultrasonics, 1980, 18, 107–110, May.
  • A.F. Averill, J.M. Ingram, P.F. Nolan and J. Bowden ‘Selection of replacement cleaning processes using a criteria matrix’. In preparation, (1999).
  • S. Glasstone, K.J. Laidler and H. Eyring, ‘The Theory of Rate Processes’, 1941, p354, McGraw-Hill, NY and London.
  • H.S. Carslaw and J.C. Jaeger, ‘Conduction of Heat in Solids’, 1959, Chapter 10, 2nd Ed., Oxford Science Pub., Oxford.

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