MJP 300W

The ProJet MJP 300W is a high-resolution 3D printer engineered for wax 3D printing in demanding lost wax casting environments. Built on MultiJet Printing (MJP) technology, the system produces true 100% wax printing output suitable for direct investment casting. Printed patterns maintain stable geometry, smooth surfaces, and sharp feature definition. This level of consistency improves inspection accuracy and reduces variation between builds. Foundries and manufacturing teams benefit from predictable pattern quality while shortening lead times and avoiding traditional tooling constraints.

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SKU 12008 Categories: , , Brand:
Description
High-Resolution 3D Printer for Detailed Wax Patterns

The ProJet MJP 300W delivers precise droplet control and fine layer resolution. These capabilities support 3D wax patterns with thin walls, small text, and complex geometries. In addition, the feature accuracy remains consistent across repeated builds, supporting dimensional verification and quality control. The uniform output also improves mold preparation and metal pour, which provides reliability in pattern accuracy, casting yield and surface finish.

 

100% Wax Printing for Lost Wax Casting Workflows

Designed specifically for lost wax casting, the ProJet MJP 300W prints pure wax materials that behave like conventional casting wax during burnout. In addition, the clean removal characteristics support accurate mold formation without residue or deformation. It also integrates with standard foundry processes to allow for digital wax printing capabilities without disrupting existing workflows. As a result, design updates move quickly, while predictable casting behavior supports consistent results across production cycles.

 

Production-Oriented Wax Pattern 3D Printer

The ProJet MJP 300W supports production-focused wax pattern manufacturing. For example, automated support removal reduces manual handling while preserving surface detail and edge definition. In addition, stable print behavior improves repeatability during short-run and pilot production, while efficient material use and consistent output help maintain throughput without compromising pattern integrity. These capabilities make the system well suited for evaluating casting performance under real production conditions.

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