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Multi Jet Fusion

Multi Jet Fusion

Compared to the Selective Laser Sintering (SLS) process, the material used is a nylon-based polymer material. The distinction lies in the addition of additives and a refining agent, in addition to molding powder. This process is employed while the previous layer is still in a molten state. Printing a new layer of material and applying a print agent on top of it ensures the perfect fusion of the two layers, resulting in durable, high-quality, clear, and functionally robust 3D printed components.

mjf

MJF Technology Schematic

Working Principle:

The process begins by spreading a powder layer, followed by the application of a solvent and material for fine treatment, ensuring precision at the print edges and guaranteeing the desired strength and texture of the finished product. When a heat source is involved, these steps are repeated until the entire object is layer-by-layer printed.A “fluid” is sprayed onto the printing area (i.e., the cross-section of the printed item) to completely dissolve the powder material. Subsequently, “fine powder” is sprayed onto the outer edges of the printing area to provide thermal insulation. This approach helps maintain the looseness of the unprinted powder, increasing the powder’s reuse rate (80%, compared to the typical SLS reuse rate of about 50%) and smoothing the surface of the printed layers, thereby enhancing printing precision.

Working Principle
Working Principle

Pros and Cons

Advantages

Advantages

Disadvantages

Optional Material

Optional Material

Application Scope
Application Scope

Application Scope

GALLERY OF MJF

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Masionprovides a wide range of 3D printing services, including SLA 3D printing (Stereolithography), SLS 3D printing (Selective Laser Sintering), MJF (Multi Jet Fusion), and DLMS (Direct Metal Laser Sintering).

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