PRETREATMENT OF PIATING AND PRETREATING DEVICE

PROBLEM TO BE SOLVED: To reduce the number of processes necessary for the pretreatment for plating, by perfoming the deburring, cleaning, and surface activating treatment for a work at the same time. SOLUTION: A prescribed amount of stainless shot balls 17 and an alumina powder 18 are incorporated i...

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description PROBLEM TO BE SOLVED: To reduce the number of processes necessary for the pretreatment for plating, by perfoming the deburring, cleaning, and surface activating treatment for a work at the same time. SOLUTION: A prescribed amount of stainless shot balls 17 and an alumina powder 18 are incorporated in a cleaning solution 16 in a storage tank 3 and stirred with a stirring blade 9. And the cleaning water is heated to a prescribed temp. by a heater 10 and circulated by pumps 8, 12. The cleaning solution is supplied by this way to a jetting nozzle 5 and jetted to the work C with a high pressure air from an air source 14 to clean the work C. At the same time, the shot ball 17 collides with the work C and the burr stuck to the work C is removed. Further, the alumina powder collides also with the work C and the surface of the work C is polished to remove an oxide film and activated. The cleaning solution 16 or the like after colliding with the work C is once stored in a discharging space B in an jetting tank 2 and returned to the storage tank 3. The deburring, cleaning and surface activation are performed at the same time in this way.
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SOLUTION: A prescribed amount of stainless shot balls 17 and an alumina powder 18 are incorporated in a cleaning solution 16 in a storage tank 3 and stirred with a stirring blade 9. And the cleaning water is heated to a prescribed temp. by a heater 10 and circulated by pumps 8, 12. The cleaning solution is supplied by this way to a jetting nozzle 5 and jetted to the work C with a high pressure air from an air source 14 to clean the work C. At the same time, the shot ball 17 collides with the work C and the burr stuck to the work C is removed. Further, the alumina powder collides also with the work C and the surface of the work C is polished to remove an oxide film and activated. The cleaning solution 16 or the like after colliding with the work C is once stored in a discharging space B in an jetting tank 2 and returned to the storage tank 3. 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SOLUTION: A prescribed amount of stainless shot balls 17 and an alumina powder 18 are incorporated in a cleaning solution 16 in a storage tank 3 and stirred with a stirring blade 9. And the cleaning water is heated to a prescribed temp. by a heater 10 and circulated by pumps 8, 12. The cleaning solution is supplied by this way to a jetting nozzle 5 and jetted to the work C with a high pressure air from an air source 14 to clean the work C. At the same time, the shot ball 17 collides with the work C and the burr stuck to the work C is removed. Further, the alumina powder collides also with the work C and the surface of the work C is polished to remove an oxide film and activated. The cleaning solution 16 or the like after colliding with the work C is once stored in a discharging space B in an jetting tank 2 and returned to the storage tank 3. The deburring, cleaning and surface activation are performed at the same time in this way.</abstract><edition>6</edition><oa>free_for_read</oa></addata></record>
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subjects ABRASIVE OR RELATED BLASTING WITH PARTICULATE MATERIAL
CHEMICAL SURFACE TREATMENT
CHEMISTRY
CLEANING OR DEGREASING OF METALLIC MATERIAL BY CHEMICALMETHODS OTHER THAN ELECTROLYSIS
COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATIONOR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL
COATING MATERIAL WITH METALLIC MATERIAL
COATING METALLIC MATERIAL
DIFFUSION TREATMENT OF METALLIC MATERIAL
GRINDING
INHIBITING CORROSION OF METALLIC MATERIAL OR INCRUSTATION INGENERAL
METALLURGY
PERFORMING OPERATIONS
POLISHING
TRANSPORTING
title PRETREATMENT OF PIATING AND PRETREATING DEVICE
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