VisiJet Wax Jewel Red (MJP)

VisiJet Wax Jewel Red (MJP) is a red castable jewelry wax formulated for precision-driven investment casting workflows. This jewelry pattern 3D printing wax is a true 100% wax material, ensuring full compatibility with traditional lost-wax processes and clean burnout without ash or residue. Its high-contrast red color improves visibility of fine features, allowing detailed inspection before investing. For jewelers producing complex geometries and delicate structures, this high detail investment casting material supports consistent pattern accuracy and predictable casting results.

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Description
Red Castable Jewelry Wax for Fine Features

VisiJet Wax Jewel Red (MJP) produces flexible yet durable wax patterns that tolerate handling during spruing, investing, and burnout. This 3D Systems material features controlled flexibility, which reduces the risk of breakage in thin sections, filigree details, and fine lattice structures. As a result, it supports intricate jewelry designs while minimizing scrap and reprints. The jewelry pattern 3D printing wax also preserves sharp edges and surface detail in fragile features.

 

High Detail Investment Casting Material with Clean Burnout

The pure wax formulation delivers clean, low-residue burnout that supports smooth mold cavities and reliable metal flow. In addition, it maintains dimensional accuracy with controlled shrinkage, which supports consistent results across repeated casting cycles. These characteristics make VisiJet Wax Jewel Red (MJP) a dependable high detail investment casting material for stone-in-place designs, thin walls, and complex internal features.

 

Jewelry Pattern 3D Printing Wax Optimized for Lost-Wax Workflows

VisiJet Wax Jewel Red (MJP) integrates directly into standard lost-wax casting processes without workflow changes. For example, its thermal behavior closely matches conventional jewelry waxes, which enables predictable handling during investment and burnout. This red castable jewelry wax supports efficient production while giving designers greater freedom to iterate digitally, shorten lead times, and produce complex patterns that exceed the limitations of traditional tooling.

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