20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting

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Additional Capabilities: Milling
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Plant Area
501~1000 square meters
  • 20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
  • 20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
  • 20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
  • 20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
  • 20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
  • 20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
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  • Product Description
Overview

Basic Info.

Model NO.
RPS-WA20
Application Area
Chemical
Certification
CE
Condition
New
Control System
Touch Screen Control
Main Material
Aluminum
Mixing Capacity
1L & Above
Mixing Drum Shape
Circular Groove
Power Supply
AC
Safety Features
Overload Protection, Safety Lock
Special Features
LED Display
Speed Control
Variable Speed
Stirring Type
Diving
Temperature Control
Without Cooling System
Type
Metal Melt
Voltage
220/110V
Warranty
Online Service
Working
Ultrasonic Homogenizer
Operating Type
Continuous Type, Continuous Operating
Installation
Vertical
Frequency
20kHz
Power
1500W
Standard Features
Ultrasonic System+Digital Generator
Place Style
Vertiacl
Usage
Aluminum Die-Casting
Mixer Type
Agitator
Layout Type
Verticle
Transport Package
Wooden Case
Trademark
RPS-sonic
Origin
China
HS Code
8515900090
Production Capacity
200PCS/Month

Packaging & Delivery

Package Size
50.00cm * 30.00cm * 30.00cm
Package Gross Weight
7.000kg

Product Description

   20kHz Ultrasonic Metal Melt Laboratory-grade Processing Aluminum liquid melting
 
Product Description

 


 
Item Parameter
Frequency 20Khz
Power 1500W
Protective shell 304 stainless steel


20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting

Ultrasound is a compressed longitudinal wave, which can effectively propagate in gas, liquid, solid, solid melt and other media, and has strong penetrability. Ultrasonic waves can transmit strong energy when propagating in liquid media, can produce strong impact and cavitation on the interface, and, like sound waves, can produce reflection, interference, superposition and resonance. Under the condition of the same amplitude, the intensity of ultrasonic waves is much greater than ordinary sound waves. It has been used in the metallurgical industry and has achieved certain results in industrial applications.
 

Ultrasonic metal melt equipment is mainly used in the metallurgical industry. Under ultrasonic vibration conditions, it is conducive to the degassing of the metal solution, the removal of impurities, the refinement of grains, and the strengthening of the leaching process. Ultrasonic metal melt equipment is used in molten metal, which can realize the composite of fiber and metal in a very short time, and prepare high-performance composite materials. Under the action of ultrasound, the liquid metal can penetrate into the particle preform or evenly mix with the particles. Ultrasonic dip plating can realize the galvanizing and aluminizing of the steel wire.

 

 

Features

 

High temperature resistance: the highest temperature is 1300ºC.
Corrosion resistance: Use high-strength titanium alloy tool heads.
The effect is remarkable: the effect is direct and obvious with the interaction of micro-molecules.
Easy to install: through standard flange butt installation, no need to change the customer's existing production equipment and process flow.

20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
 20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
 
20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting

 

20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting


 

 

What is the difference between ultrasonic homogenisers and ultrasonic baths?
The power of ultrasonic baths is fixed. The power density [W/l] is relatively low.
Ultrasonic homogenisers have an adjustable power [W] and produce very high power densities. Probes with a defined radiating surface guarantee reproducible results.

What is more important when choosing the appropriate device - power rating or amplitude?
Power output is not the sole criterion for selecting the ultrasonic homogeniser. This value only indicates the power of the ultrasonic generator but not the energy delivered into the sample.
The amplitude at the radiating surface of the probe is the determining factor while considering the sample volume. RPS-SONIC homogenisers provide higher amplitudes than comparable devices in the market due to an optimal matching of all components

20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting

 

Remove impurities

It is very difficult for the tiny inclusions in molten steel to float up, and only when they gather will it make it easier to float up. Use ultrasonic metal melt equipment to add ultrasonic waves to the solution. The ultrasonic standing wave can successfully stratify and agglomerate the inclusions and powders in the solution.
 

Ultrasonic degassing

Ultrasound has a great effect on removing gas from molten metal, and ultrasonic elastic vibration can completely degas the alloy within a few minutes. When ultrasonic vibration is introduced into molten metal, it is found that cavitation occurs. This is because the continuity of the liquid phase is broken and a cavity is generated, so the gas dissolved in the liquid metal is concentrated in it. The elastic vibration of the ultrasonic wave promotes the generation of the bubble core and makes it grow continuously until it grows to a size that can be smoothly discharged from the molten metal.
 

Improve the quality of billets

Ultrasonic metal solution equipment can act on the mold to improve the surface quality of the cast slab. Ultrasonic vibration of the mold can be used for billets, blooms and slabs, and there is no need for negative sliding when ultrasonic vibration is used. When casting billets and blooms, a very smooth surface of the cast slab can be obtained after ultrasonic vibration is applied to the mold.
 

Grain refinement

When the casting is produced by the ultrasonic vibration solidification method, the ultrasonic wave will produce positive and negative alternating sound pressure when propagating, forming a jet. At the same time, due to the nonlinear effect, it will produce acoustic and micro-acoustic flow, and ultrasonic cavitation will produce at the interface of solid and liquid. High-speed microjet. The cavitation effect in the ultrasonic liquid can cut off and destroy the dendrites, impact the solidification front, and increase the stirring and diffusion effect, which can achieve the effects of purifying the structure, refining the grains, and making the structure uniform. In addition to the mechanical action caused by vibration to destroy dendrites, another important role of ultrasonic vibration solidification is to increase the effective undercooling of the molten metal, reduce the critical nucleus radius, thereby increase the nucleation rate and refine the crystal grains. 
 

Advantages of RPS-SONIC ultrasonic devices
• Easy and flexible handling
• Time saving
• Powerful
• Precisely controllable
• Reproducible results
• Eco-friendly and energy efficient
• Extremely durable and long lasting
• Wide product range
• Wide range of accessories for a variety of applications
• Production, service and repair in germany
• Specialist for ultrasonic technology

 

20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting20kHz Ultrasonic Metal Melt Laboratory-Grade Processing Aluminum Liquid Melting
 

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