VeroUltra™Clear

VeroUltra™Clear is an ultra-transparent PolyJet material delivering exceptional clarity, strength, and precision for prototypes and parts requiring glass-like aesthetics.

Request Pricing
Product Details

VeroUltra™Clear

VeroUltra™Clear for Ultra-Transparent, High-Precision 3D Printing

VeroUltra™Clear is a high-performance PolyJet material designed to simulate the appearance of acrylic (PMMA), offering exceptional clarity and light transmission. Ideal for applications requiring visual transparency, it enables the creation of parts with glass-like aesthetics and fine detail.

Exceptional Clarity and Visual Realism

Achieving up to 86% light transmission through a 6 mm thick sample, VeroUltra™Clear provides superior transparency with a low yellow index. This makes it perfect for prototypes and parts where visual appearance is critical.

Strength, Stiffness, and Impact Resistance

Beyond its visual properties, VeroUltra™Clear offers a balance of mechanical strength, stiffness, and impact resistance. This combination ensures that parts are not only visually accurate but also durable and functional.

Versatile Applications Across Industries

VeroUltra™Clear is suitable for a wide range of applications, including concept models, functional prototypes, and parts requiring clear visual properties. Its compatibility with various PolyJet printers allows for flexibility in production.

Compatible Printers

The Stratasys J35 Pro is a compact, multi-material 3D printer designed for engineers and product designers. It delivers…
The Stratasys J55 Prime is an office-friendly, full-color, multi-material 3D printer built for product designers, engineers, and manufacturers….
The Stratasys J826 Prime is a professional full-color 3D printer designed for designers, engineers, and product developers who…
Stratasys J850 Prime enables ultra-realistic prototyping and production with multi-material PolyJet printing, supporting up to 7 materials and…
The Stratasys J850 Digital Anatomy 3D printer creates anatomically accurate, ultra-realistic medical models that look, feel, and respond…