Advances in cleaning metal and glass surfaces to micron-level cleanliness
A high-pressure 6.9-MPa liquid spraying technique has been developed to remove small (>5 ..mu..m) contaminant particles from large (100 m/sup 2/) surface areas. Chemically polished and etched 304 stainless-steel components are solvent sprayed to achieve cleanliness levels of less than 10 particle/cm/sup 2/>5 ..mu..m diameter. The high-pressure and high-liquid-velocity cleaning technique can remove 99.9% of >5-..mu..m-diam particles in 5--10 s compared to only 20--60%>5-..mu..m particles by ultrasonic cleaning in 2--10 min. High levels of particulate cleanliness are required for large solid--state laser systems where contaminants may migrate to optical surfaces and cause severe pitting. The pitted glass must be removed and periodically repolished to maintain acceptable beam quality. Special Class 100 clean room procedures and equipment have been developed to determine the degree of cleanliness of laser components and to maintain cleanliness during installation and operation. Development of these cleaning procedures resulted in greatly reduced failure rates for solid-state disk amplifiers. Although developed specifically for cleaning optical components, the basic technique should find wide application in any field requiring particulate-free surfaces.
- Research Organization:
- Lawrence Livermore Laboratory, Livermore, California 94550
- OSTI ID:
- 6803433
- Journal Information:
- J. Vac. Sci. Technol.; (United States), Journal Name: J. Vac. Sci. Technol.; (United States) Vol. 15:2; ISSN JVSTA
- Country of Publication:
- United States
- Language:
- English
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Advances in cleaning metal and glass surfaces to micron level cleanliness
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Related Subjects
420300* -- Engineering-- Lasers-- (-1989)
CLEANING
DEGASSING
DEPOSITION
EFFICIENCY
ELEMENTS
FREONS
GLASS
HALOGENATED ALIPHATIC HYDROCARBONS
METALS
ORGANIC COMPOUNDS
ORGANIC HALOGEN COMPOUNDS
REFRIGERANTS
RELIABILITY
SOLVENTS
SPRAY COATING
SURFACE CLEANING
SURFACE COATING
SURFACE FINISHING