Welcome Customer !

Membership

Help

Beijing Dongfang Defei Instrument Co., Ltd
Custom manufacturer

Main Products:

mechb2b>Products

Beijing Dongfang Defei Instrument Co., Ltd

  • E-mail

    mary_wang@edcc.com.cn

  • Phone

    13810654275

  • Address

    Room 1010, Weapon Building, No. 69 Zizhuyuan Road, Haidian District

Contact Now

Container free measurement of acoustic suspension system

NegotiableUpdate on 04/05
Model
Nature of the Manufacturer
Producers
Product Category
Place of Origin

Overview

Container free measurement of L800 acoustic suspension system: The BOROSA L800 acoustic suspension system from Germany can simulate the container free state in a space environment for container free measurement.

Product Details

Introduction to BOROSA Company in Germany:

BOROSA Acoustic Levitation, located in the Ruhr Science Park in Bochum, Germany, is a company specializing in the research and production of acoustic levitation devices. The company relies on the scientific research strength of Bochum University in Germany to focus on innovation and the development of high-quality acoustic levitation devices. The high-pressure acoustic suspension system L800 developed and produced by BOROSA company won the 2015 German Industrial Award.

As the agent of BOROSA Acoustic Levitation GmbH in China, Dongfang Delphi will continue to adhere to the concept of "Leading by Professional" and work together with BOROSA to provide you with * sound suspension systems and professional technical services in a fast and efficient manner!

L800Sound Suspension System - Basic Principles:
Acoustic levitation is achieved by utilizing the acoustic radiation force exerted on an object to achieve levitation. The suspension of matter requires the formation of a standing wave between the ultrasonic emission end and the reflection end to create the required sound field.

L800Container free measurement of acoustic suspension system

Acoustic levitation can simulate a container free state in a spatial environment, thereby avoiding the influence of container walls on samples and the interference of container walls on analysis and detection signals; It can also prevent heterogeneous nucleation and provide an ideal environment for homogeneous nucleation to achieve greater undercooling. Compared with other non container suspension methods, acoustic suspension has no special requirements for the electromagnetic properties of the suspended sample and does not produce significant additional effects. It can suspend any solid or liquid under normal gravity conditions on the ground.

L800Container free measurement of acoustic suspension system

L800 is a high-pressure acoustic suspension system that perfectly combines acoustic suspension with an autoclave. Its advantage lies in its carefully designed suspension technology - at a pressure of 20Mpa and a temperature range of -20 ℃ to 180 ℃, the sample can enter suspension mode at any time.

The visible high-pressure vessel of L800 is made of titanium alloy material and sapphire window, which is both resistant to high pressure and corrosion.

L800 is a measurement device for single droplet resonance mode, which is particularly suitable for precise measurement of the mass transfer process mechanism (i.e. molecular diffusion) of suspended droplets.

L800 uses independently developed acoustic levitation measurement software, with a user-friendly interface and powerful functions.

  • Automatically identify suspended droplets
  • Automatically analyze the appearance contour of droplets
  • Measure and record the volume of axisymmetric droplets
  • Automatic list saving of important measurement parameters such as time, temperature, pressure, volume, axial diameter and radial diameter of droplets
  • Calculate physical parameters such as diffusion and mass transfer coefficients based on the volume time graph

L800 acoustic levitation system has a wide range of applications: gas hydrate measurement, crystallization and particle formation process research, gel and non-contact melting research, etc.

L800 application areas:

  • Research on the Mechanism of Mass Transfer Process
  • Research on homogeneous nucleation
  • Study on gel of Liquid Droplets
  • Research on the Crystallization Process
  • Research on self-assembly of nanomaterials
  • Research on Gas Hydrates
  • Research on combustible ice
  • Combining fluorescence spectroscopy to study concentration and phase equilibrium