Resilient high-resolution elastomers for applications requiring excellent tear strength or rebound performance.
Fast printing materials for end-use applications requiring cosmetic surfaces, fine features, and high accuracy.
Materials for application-specific requirements such as flame smoke and toxicity, HDT or mold durability.
Medically certified materials for devices where aesthetics, durability and biocompatibility are critical.
Impact-resistant resins for functional applications that need to perform under stress and high-load conditions.
Additive manufacturing will only penetrate end-use production if and when manufacturers have access to engineering-grade materials that bring the required properties to their applications - at the time of printing and throughout its lifetime.
Somos® materials scientists are putting their industry-proven photopolymers toolbox to work to develop high-performance materials for DLP/LCD technology. The combination of engineering-grade materials with fast DLP technology at lower cost of entry makes 3D printing accessible to companies looking to transition to additive manufacturing.
Choose from application-specific materials that have proven performance and come with industry-standards testing data.
Preliminary information, subject to change
Processed with SAF™ technology on the Stratasys H350 3D printer, Stratasys High Yield PA11 delivers production-grade plastic parts for high-volume demands — driving new areas of business growth. Stratasys High Yield PA11 enables a high nesting density while maintaining high part consistency to deliver production-level yields.
In additive manufacturing, PA12 is the go-to material for prototyping. But in traditional high-volume production of end-use parts, PA11 is much more widely used due to its higher ductility and higher impact resistance, as well as its suitability for a wider range of industry applications. PA11 is also eco-friendly and 100 percent bio-based from sustainable castor oil.
The mechanical data below provides a good characterization of the entire build volume across multiple printers. It was generated after measuring more than 2000 tensile specimens (972 in X/Y and 1,080 in Z direction), 540 flexural specimens (360 in X/Y and 180 in Z) and 540 impact specimens (360 in X/Y and 180 in Z), all printed in 36 builds from 5 different printers. These specimens were widely and regularly distributed throughout the build volume, in a 12% nesting density build and produced with default printer settings.
SAF™ PA12 is available for use with the H350, a material offering numerous benefits, most notably in delivering a high level of accuracy. Tight thermal control on the H350 leads to consistent parts and high nesting densities, and thus more parts per build. The following data highlight the capability of SAF™ PA12.
Stay competitive with best-in-class consistency
Grow your part production business for various industries and applications with a workflow you can fully control. Built for high-volume, short-run production, the Stratasys H350 3D printer gives you control of your materials, workflow, production, and costs while delivering consistency and accuracy print after print. The Stratasys H350 is the first release of the H Series™ production platform, which has Selective Absorption Fusion™ SAF™ technology at its heart to deliver functional, production-grade parts with best-in-class* consistency.
As with other manufacturing techniques, the 3D printing process can be challenging and demands a level of expertise and familiarization.
This guide aims to help designers produce quality, cost-effective parts on the Stratasys® H350™ 3D printer. The guide provides information for both new and experienced users.
The topics covered in this guide describe tools and methods for optimizing design features, strength, and durability of printed parts and ensuring that the parts meet your expectations. It provides best practices and tips on designing for additive manufacturing and examples of how to take advantage of Stratasys' unique features to get the most out of your H350 printer while minimizing printing costs and post-processing issues.
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Item Number:A02B-0158-B100#USThe FANUC CNC simulator is a perfect addition to the classroom and an essential component to gain maximum exposure to FANUC CNC controls when actual machine time is limited.
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Item Number:CR-7iA/LAllows for a collaborative operation with human operators due to no need of safety fences, and enables to locate the robots close together in the manufacturing processes where operators also work, with using the compact size.
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Item Number:FANUC ER-4iADesigned with students in mind, this all-in-one robotics-training bundle enables individuals to gain first-hand experience of programming and operating cutting-edge industrial robots. Package content is highly relevant for modern factory applications and contains everything instructors require to teach students to program and operate robots.
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The FANUC Fenceless Collaborative Cert Cart was developed by combining FANUC DCS Position and Speed Check software with an Allen Bradley SafeZone Mini Safety Laser Scanner. The result is FANUC’s NEW FENCELESS CERT Cart, which still fits through a standard door and runs off 110V power. The FENCELESS cart allows a greater work envelope and introduces students to the latest integrated safety products from FANUC and Allen Bradley.
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Students trained on ROBODRILL products will be more productive. Excellent repeatability makes the ROBODRILL suited for milling, drilling, tapping, and boring with flexibility, versatility, and reliability. Specific ROBO DRILL education packages have been configured for the needs of educational institutes teaching 3-axis and 5-axis machining, robotic machine tending, and Connected Smart Manufacturing (CSM).
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Item Number:α-D14MiBThe new-generation FANUC ROBODRILL promises unrivaled quality and precision at great hourly rates. At the heart of every ROBODRILL is a patented high-speed tool changer that can carry 21 tools and offers the best reliability in its class.
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The FANUC Robot Integration Package (25098) allows customers to use a FANUC industrial robot with Amatrol’s 870-series mechatronics stations. This package contains a module enclosure that includes PLC and FANUC interface cables along with a customized program to integrate a customer-supplied FANUC robot with the mechatronics system. Additional features include customized gripper tooling and a safety guard assembly to protect learners.
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The primary goal of this course is to teach workers safe work procedures to be aware of and mitigate warehouse fires in a warehouse environment. The Warehouse Fire Hazard Awareness simulation is ideal for employees or supervisors who work in or around warehouse operations.
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Item Number:356DAC Worldwide’s Fire Tube Boiler Model (356) is a highly-detailed scale model of a common fire tube, Scotch marine boiler, supporting training in the operation and maintenance of industrial boilers, as found within utility systems in industrial facilities and large commercial applications.
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Item Number:291DAC Worldwide’s Fired Heater Model (291) depicts a highly-detailed, to-scale model of a common industrial furnace found in refineries and process facilities in technically-accurate, professionally-crafted detail.

















