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Z-shaped microjet diamond interactive cavity

NegotiableUpdate on 01/08
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Overview
Z-type DIXC, also known as Z-type diamond homogenization chamber or Z-type counter jet diamond homogenization chamber, is used to produce uniform nanoparticles in high-pressure homogenizers.
Product Details

  Z-shaped microjet diamond interactive cavityZ-type DIXC, also known as Z-type diamond homogenization chamber or Z-type counter jet diamond homogenization chamber, is used to produce uniform nanoparticles in high-pressure homogenizers. The fixed geometric shape within Z-Type DIXC is designed to create a uniform machining contour, where all materials will be machined with equal destructive force. A single slot interaction chamber with a single microchannel is an ideal choice for small-scale research, while a multi slot interaction chamber containing multiple parallel microchannels can be used for industrial scale power by increasing the flow rate through DIXC under the same processing conditions.

<strong><strong>Z型微射流金刚石交互容腔</strong></strong>

Genizer diamond homogenization chambers of different specifications

Z-shaped microjet diamond interactive cavityPrinciple of operation of Genizer Z-type homogeneous chamber:

When the material passes through the diamond interaction chamber, it forms a high-speed microjet through a very small pore (less than a hundred micrometers) under ultra-high pressure (up to 60000 psi/4000 bar/400 MPa), with a speed of up to 500 m/s (exceeding the sound speed of 340 m/s). After intense shearing, oscillation, collision, cavitation effect and opposition, the material undergoes physical, chemical, structural properties and other changes, ultimately achieving a reduction in particle size and narrow distribution, accompanied by increased stability, uniformity and transparency and other homogenization effects.

  Z-shaped microjet diamond interactive cavityInternally, the relative velocity of the twin supersonic jets doubles at the moment of injection, resulting in a supersonic explosion effect. The collision between materials greatly reduces the wear and shear of materials on the interaction chamber, and extends the service life of the chamber; The micro jet high-pressure homogenization technology combines the advantages of micro jet, impact flow, and traditional high-pressure homogenization technology, and has higher homogenization efficiency.

Genizer <strong><strong>Z型微射流金刚石交互容腔</strong></strong>作用原理示意图

GenizerZ-shaped microjet diamond interactive cavitySchematic diagram of working principle


Z-shaped microjet diamond interactive cavityProduct parameters of Genizer Z-type homogenization chamber:

1. Pressure range: up to 60000 PSI (4500 Bar/450 MPa) (depending on the interaction chamber aperture and material viscosity);

2. Hygiene level: The materials used are FDA approved 316L stainless steel and diamond;

3 interfaces: 1/4 'and 3/8' tapered pipes with internal threads matched with Hip high-pressure connectors, customizable;

4. Temperature control: For materials with temperature requirements, models with jacket real-time cooling function can be selected;

5 Compatibility: Suitable for ultra-high pressure homogenizers such as Microfluidics, Genizer, PSI, Avestin, and BEE.

6 commonly used single channel micro jet diamond interactive cavity models: G10Z, H10Z, H210Z, H30Z

7 commonly used multi-channel microjet diamond interactive cavity models: H10Z-5, H10Z-6

Performance 8: Replace the chamber of the Microfluidizer processor; Electropolishing and internal passivation for pharmaceutical applications; Real time cooling option can reduce oversized particles; Lower cost and higher quality


Z-shaped microjet diamond interactive cavityApplication of Genizer Homogenization Chamber:

Preparation of fat granules, microemulsions, liposomes, suspensions, and microcapsules in the pharmaceutical industry;

Cell lysis, extraction and homogenization of intracellular and extracellular substances in biotechnology products;

Homogenization and emulsification of food and beverage industry products to improve product stability;

Homogenization and dispersion of products in industries such as cosmetics and fine chemicals;

Nano dissolution and agglomeration of new energy materials;

Production and preparation of graphene, conductive paste, and resistive paste;

Preparation of nano lotion, cell fragmentation, nano dispersion, depolymerization, liposome, etc.