VisiJet M2R-WT (MJP) is a rigid white MJP material developed for applications that demand dimensional accuracy, consistent surface quality, and predictable mechanical performance. This high precision white photopolymer produces sharp feature definition and uniform geometry, supporting detailed inspection and reliable validation. The opaque white finish improves contrast during visual evaluation, making it well suited for functional prototypes, medical models, and engineering mockups.
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VisiJet M2R-WT (MJP) is a high precision white photopolymer that maintains tight tolerances during printing and post-processing. This material’s consistent layer bonding and low distortion helps parts retain geometry under handling and light mechanical loading. In addition, it features surface uniformity to support accurate dimensional measurements using optical scanning or contact-based inspection methods. These characteristics allow engineers to evaluate fit, alignment, and interface conditions during design verification and functional testing.
VisiJet M2R-WT (MJP) functions as a durable white prototyping resin suitable for parts exposed to repeated handling, assembly checks, and controlled mechanical stress. The rigid material supports drilling, light fastening, and fixture testing without compromising dimensional integrity. In addition, the predictable mechanical behavior reduces iteration variability and helps standardize evaluation workflows. By minimizing rework and maintaining consistent output, this rigid white MJP material supports faster design cycles and efficient development timelines.
Certification to USP Class VI and ISO 10993 enables use in medical, laboratory, and other regulated environments. The material supports surgical guides, anatomical models, and medical fixtures that demand consistent accuracy and structural stability. In addition, engineering teams can apply this rigid white MJP material to housings, brackets, and validation components that require visual clarity and dimensional control. It also features stable print behavior and automated support removal to streamline post-processing while preserving surface detail, reinforcing this material’s suitability for production-oriented MultiJet Printing workflows.
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