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Brass Faucet Ultrasonic Industrial Ultrasonic Cleaning Tanks Stainless Steel 304

AG SONIC TECHNOLOGY LIMITED
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Address: Dongbao Industrial Park, Bao'an District, Shenzhen 518106.

Contact name:Jane

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AG SONIC TECHNOLOGY LIMITED

Brass Faucet Ultrasonic Industrial Ultrasonic Cleaning Tanks Stainless Steel 304

Country/Region china
City & Province shenzhen guangdong
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Product Details

 

Brass Faucet Ultrasonic Cleaning Tanks Musical Brass Instruments Repair 20-80C Temperature Adjust

ultrasonic cleaning process -A Better and Safer Way to Clean Your Instrument

 

While cleaning musical instruments is necessary, the process can be time consuming and challenging, especially trying to get into every nook and cranny. Why not let McBride Music Company take care of the cleaning for you?

With the addition of an ULTRASONIC POWER cleaning system at our repair shop, we can thoroughly and completely clean your instruments inside and out. We do NOT use harsh chemicals such as muriatic acid, the ULTRASONIC POWER uses a mild, non-toxic detergent. The cleaning process relies on the ultrasonic (sound waves) to dislodge all of the dirt and debris that has accumulated over time. When the ultrasonic cleaning is complete, your instrument is bright, clean and will have smoother action as a result.

We recommend cleaning brass instruments—trumpet, cornet, trombone, baritone and French horns—once every year. Saxophones, flutes and the clarinet family of instruments (if they are made of composite material) should be done during the re-pad process. If the saxophones have treated pads, cleaning can be performed while still assembled.

We are proud to offer the ultrasonic cleaning process for your musical instruments to give you a cleaner instrument that will look brighter, perform better and last longer.

 

Ultrasonic cleaning equipment for use in Aerospace

Ultrasonic cleaning technology reaches the most inaccessible surface areas of complex aerospace components used in manufacturing, overhaul, servicing and maintenance stages. Ultrawave’s ultrasonic equipment provides a much faster and higher quality cleaning results than spray washing and manual scrubbing. It is a more environmentally friendly alternative to solvent cleaning.

 

All ultrasonic baths are supplied complete with lid and basket

Musical Brass Instruments Ultrasonic Cleaner Specification : 

 

  T-36S
 Tank capacity135L
 Tank size600x500x450mm
 Unit size740x640x670mm
 Tank material2mm SUS304
 Ultrasonic power1800W
 Heating power4.5KW
 Timer1-99min adjustable
 Heater0-80c adjustable
 Frequency28/40khz
 ControlExternal generator, more stable
 OptionalOil filter system, pneumatic lift, rinsing tank, etc.
 Voltage110V, 1phase; 220V, 3phases/220V, 1phase; 380V, 3phases
 Warranty1 year
 Packing

1unit/wooden case

 

Ultrasonic cleaning equipment for use Aviation Industry  

AGSONIC ultrasonic cleaning technology is highly effective, removing contaminants from surface areas inaccessible to spray washing or manual cleaning.

Ultrasonic cleaning technology reaches the most inaccessible surface areas of complex aerospace components used in manufacturing, overhaul, servicing and maintenance stages. Ultrawave’s ultrasonic equipment provides a much faster and higher quality cleaning results than spray washing and manual scrubbing. It is a more environmentally friendly alternative to solvent cleaning.

 

All ultrasonic baths are supplied complete with lid and basket


Ultrasonic cleaning machines work on the principle of agitating cleaning solvents using high frequency sound waves, the ultrasonic agitation creates millions of microscopic bubbles that implode releasing vast quantities of energy, this action, know as cavitations, dislodges any contaminant stuck to the surface of a part, ultrasonic cavitations thoroughly cleans every surface in contact with the cleaning fluid

 

 

Features of the machine:

• Low maintainence machine

• Heavy duty cleaning systems

• Chemical friendly- SS Rust proof body

• Industrial guage farication, build to last

• One year warrenty on any manufacturing defect

• Completely customized to suit the cleaning requirement

• Less human interfearance and less scope of error

• Accurate and uniform cleaning everytime

 

How the System Operates:

The system operates in the following manner:

  • Parts are placed into the tank using the included stainless steel basket or other holding fixture.
  • Once submerged, the START button is pressed, and the cover is closed. The ultrasonic system turns on, and the filter system turns off automatically. Parts are cleaned with the CROSSFIRE ultrasonic system at this time.
  • The system will automatically turn off upon completion of the cycle.
  • Operators can then return when the parts are clean.
  • The cover is opened and the batch of parts is placed onto the basket rest. Dripping liquids are directed back to the ultrasonic cleaning tank 
  • What is Ultrasonic Cleaning

In a process termed "cavitation", micron-size bubbles form and grow due to alternating positive and negative pressure waves in a solution. The bubbles subjected to these alternating pressure waves continue to grow until they reach resonant size. Just prior to the bubble implosion, there is a tremendous amount of energy stored inside the bubble itself. Temperature inside a cavitating bubble can be extremely high, with pressures up to 500 atm. The implosion event, when it occurs near a hard surface, changes the bubble into a suction jet about one-tenth the bubble size, which travels at speeds up to 400 km/hr away from the hard surface. With the combination of pressure, temperature, and velocity, the jet frees contaminants from their bonds with the substrate. Because of the inherently small size of the jet and the relatively large energy, ultrasonic cleaning has the ability to reach into small crevices and remove entrapped soils very effectively.

 

What is cavitation?

"Cavitation" is the rapid formation and collapse of millions of tiny bubbles (or cavities) in a liquid. Cavitation is produced by the alternating high and low pressure waves generated by high frequency (ultrasonic) sound. During the low pressure phase, these bubbles grow from microscopic size until, during the high pressure phase where they are compressed and implode.

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