2020 High quality 20khz Ultrasonic Dispersion Equipment - ultrasonic carbon nanotubes dispersion machine – JH


Product Detail

Product Tags

Related Video

Feedback (2)

"Sincerity, Innovation, Rigorousness, and Efficiency" may be the persistent conception of our organization to the long-term to build together with shoppers for mutual reciprocity and mutual advantage for 1000w Laboratory Ultrasonic Homogenizer, High Power Industry Ultrasonic Extraction Equipment, Ultrasonic Liquid Mixing Equipment, We imagine we'll become a leader in building and producing high quality products in equally Chinese and international markets. We hope to cooperate with a lot more friends for mutual added benefits.
2020 High quality 20khz Ultrasonic Dispersion Equipment - ultrasonic carbon nanotubes dispersion machine – JH Detail:

Carbon nanotubes have many uses, and can be used in adhesives, coatings, polymers and as conductive fillers in plastics. By using carbon nanotubes, the polymer’s high temperature resistance, corrosion resistance, pressure resistance and wear resistance have been significantly improved.

Ultrasonic waves generate powerful shearing forces through 20,000 vibrations per second. The bonding force between carbon nanotubes can be overcome, and the tubes are separated evenly. Generally, the crude nanotube dispersion is pre-mixed by mechanical stirring, and then further dispersed into small beams or single carbon nanotubes using ultrasonic waves. It is recommended to use pipeline ultrasonic equipment.

SPECIFICATIONS:

Model JH-ZS30 JH-ZS50 JH-ZS100 JH-ZS200
Frequency 20Khz 20Khz 20Khz 20Khz
Power 3.0Kw 3.0Kw 3.0Kw 3.0Kw
Input voltage 110/220/380,50/60Hz
Processing capacity 30L 50L 100L 200L
Amplitude 10~100μm
Cavitation intensity 1~4.5w/cm2
Temperature control Jacket temperature control
Pump power 3.0Kw 3.0Kw 3.0Kw 3.0Kw
Pump speed 0~3000rpm 0~3000rpm 0~3000rpm 0~3000rpm
Agitator power 1.75Kw 1.75Kw 2.5Kw 3.0Kw
Agitator speed 0~500rpm 0~500rpm 0~1000rpm 0~1000rpm
Explosion proof NO

carbonnanotubescarbonnanotubes

ADVANTAGES:

1.Compared with the dispersion in the traditional harsh environment, ultrasonic dispersion can reduce the damage to the structure of single-walled carbon nanotubes and maintain a long single-walled carbon nanotube.

2.It can be completely and evenly dispersed to better achieve the performance of carbon nanotubes.

3.It can quickly disperse carbon nanotubes, avoid degradation of carbon nanotubes, and obtain high concentration carbon nanotube solutions.


Product detail pictures:

2020 High quality 20khz Ultrasonic Dispersion Equipment - ultrasonic carbon nanotubes dispersion machine – JH detail pictures

2020 High quality 20khz Ultrasonic Dispersion Equipment - ultrasonic carbon nanotubes dispersion machine – JH detail pictures

2020 High quality 20khz Ultrasonic Dispersion Equipment - ultrasonic carbon nanotubes dispersion machine – JH detail pictures


Related Product Guide:

We have a professional, efficiency team to provide quality service for our customer. We always follow the tenet of customer-oriented, details-focused for 2020 High quality 20khz Ultrasonic Dispersion Equipment - ultrasonic carbon nanotubes dispersion machine – JH , The product will supply to all over the world, such as: Ottawa, UAE, moldova, As an experienced manufacturer we also accept customized order and we could make it the same as your picture or sample specification. The main goal of our company is to live a satisfactory memory to all the customers, and establish a long term business relationship with buyers and users all over the world.
  • The sales manager has a good English level and skilled professional knowledge, we have a good communication. He is a warm and cheerful man, we have a pleasant cooperation and we became very good friends in private.
    5 Stars By Gemma from Bahamas - 2018.06.21 17:11
    The accounts manager made a detailed introduction about the product, so that we have a comprehensive understanding of the product, and ultimately we decided to cooperate.
    5 Stars By Daniel Coppin from Kuwait - 2017.12.02 14:11
    Write your message here and send it to us