• P3 Deflect™ 120

High-temperature photopolymer with good strength for functional parts, from Evonik INFINAM®.

Our first photopolymer from Evonik is a strong, heat-resistant material that addresses applications where a combination of high-temperature resistance and good elongation at break are crucial. P3 Deflect 120 has low viscosity and high green strength, which make it suitable for parts with challenging geometries such as wiring housings, connectors, or mold tooling.

Key Benefits

  • High HDT, 121°C (250°F) with good elongation at break
  • Very stiff and high green strength
  • Easy to print + single component material
  • Color: Black
  • Dura56 by LOCTITE MDS

Developed on and certified for the Origin® One 3D printers

DURA56 is a tough, high-impact photopolymer with excellent surface quality. For functional end-use parts and prototypes.

Created by Stratasys and LOCTITE to address end-use and prototyping applications with high material consumption. Ideal for housings, parts with mating features, or class A surfaces.

Benefits:

  • High-impact strength
  • Tough
  • Excellent surface finish
  • Low part cost
  • Low Viscosity

Ideal for:

  • Enclosures and Housings
  • Jigs & Fixtures
  • Functional testing
  • Flexible Elastomeric 3D Printing Material

High Rebound Photoelastic Black

P3 Stretch IND475TM is a single-component UV resin that, when cured, transforms into a soft and flexible elastomeric material. This material offers a well-balanced combination of hardness, strength, and elongation, making it versatile for various applications.

Additionally, IND475 is a low-viscosity liquid that can be easily 3D printed at room temperature.

Benefits:

  • True elastomeric behavior
  • Fast Printing with low shrinkage behavior
  • High resilience / High energy return

Ideal for:

  • Air and dust gaskets
  • Flexible seals and housings
  • Cushioning pads
  • Somos® PerFORM HW: Advanced 3D Printing Material for Precision Injection Molds

Enabling Advanced 3D Printing Solutions

Somos® PerFORM HW is tailored for P3TM, Digital Light Processing (DLP), and Liquid-crystal display (LCD) 3D printing technologies, catering to the specific needs of injection mold development. This cutting-edge material offers exceptional dimensional stability and minimizes warpage, crucial for precision and quality.

3D printing with Somos® PerFORM HW provides a host of advantages over traditional manufacturing methods. It accelerates development processes, speeds up production, unlocks design creativity, and lowers the total cost of ownership. Manufacturers can swiftly iterate designs before final production, reducing time and cost.

Creating injection molds, especially for low-volume or intricately detailed parts, has historically been time-consuming and expensive. However, DLP and LCD 3D printing eliminate these barriers. These technologies offer rapid printing speeds, with a lower entry cost, making additive manufacturing accessible to transitioning companies. Additionally, on-demand local production with DLP or LCD printing reduces unplanned downtime associated with mold maintenance.

Stratasys presents Somos® PerFORM HW, an optimized version of the renowned Somos® PerFORM, finely tuned for DLP technology. This resin excels in stiffness and high-temperature performance, making it ideal for applications like injection molding tools. It boasts robustness, dimensional stability, and minimal warpage, ensuring consistent performance in high-pressure and demanding environments, such as wind tunnel testing.

Key Benefits

  • High accuracy with minimal warpage, meeting critical requirements
  • Outstanding detail resolution
  • Exceptional high-temperature tolerance
  • Superior stiffness
  • Fast printing, ease of processing, and efficient finishing
  • Cost-effective solution

Ideal Applications

  • Tooling and injection molding, suited for low-volume production
  • Electrical casings and consumer electronics
  • Customized consumer medical applications
  • Automotive housings and spare parts
  • High-temperature testing and functional prototyping
  • Jigs and fixtures
  • Wind tunnel testing

Somos® PerFORM HW is your gateway to innovation, offering advanced 3D printing solutions with exceptional performance and reliability.

Enhance Your 3D Printing Experience with Stratasys' Innovative F3300 FDM Printer

Experience Cost Savings Like Never Before

Stratasys' cutting-edge F3300 FDM 3D Printer is here to revolutionize your production process by significantly reducing your cost per part. This is achieved through a comprehensive redesign of hardware, software, and systems.

Boost Your Throughput Exponentially

The F3300 printer introduces a range of technological advancements that elevate your throughput to new heights.

Reliability That Sets New Standards

In a production environment, reliability is paramount. The F3300 ensures benchmark reliability through EtherCAT Onboard Communication, Redundancy for Critical Systems, and Extruder Instrumentation.

Unmatched Print Quality

The F3300 raises the bar for FDM 3D printed parts with features that regulate material moisture and provide precise control over the printing process.

Streamlined and User-Friendly Operation

Stratasys ensures that advanced technology is easy to use. The F3300 features user-friendly elements designed for simplicity and accessibility.

Elevate your 3D printing capabilities and lower costs with the Stratasys F3300 FDM 3D Printer.

  • Minds-i Self-Driving Tractor Lab

Autonomous Self-Driving Farming

MINDS-i Robotics introduces an innovative STEM Integrated Robotics program centered around an autonomous, GPS-IMU powered tractor, revolutionizing science, technology, engineering, and mathematics learning. Students delve into programming, electromechanical systems, and autonomous navigation, crafting and programming the tractor for diverse farming tasks such as crop evaluation, spraying, spreading, monitoring, and more.

The initiative aims to spark and sustain students’ interest in STEM. MINDS-i Robotics offers an engaging learning ecosystem with user-friendly robot assembly, programming, and customization. The advanced farm vehicles execute real-world agricultural tasks, igniting enthusiasm for STEM career paths. Collaborative problem-solving is encouraged through a curriculum supporting open-source programming languages like C++, Python, or ROS, nurturing limitless creativity. Teachers benefit from exceptional technical support, empowering students to bring their imaginative concepts to life.

The course structure spans a half-semester, totaling 45 hours of immersive learning designed for small groups of 2 to 4 students. A detailed brochure is available for download to delve deeper into the program specifics. Access the brochure for comprehensive insights into the curriculum, technical specifications, and additional information, guiding educators and students toward maximizing the potential of the MINDS-i STEM Integrated Robotics program.

Download the brochure and unlock the potential of hands-on STEM learning, where students design, innovate, and navigate the future of autonomous farming technology.

  • Minds-i Mars Rover Lab

Dive into the future of STEM education with MINDS-i STEM Integrated Robotics: an Autonomous Self-Driving Mars Rover. This innovative program propels students into programming, electromechanical systems, and autonomous navigation through hands-on experiences with cutting-edge technology. Designed for 2-4 students over a half-semester (45 hours), the curriculum fosters creativity and problem-solving skills while igniting a passion for STEM careers.

To learn more about this exciting lab, download our brochure for comprehensive details on the curriculum, technology, and how MINDS-i Robotics sparks enthusiasm and cultivates innovation in students.

Manufacturers are shifting from conventional techniques of producing investment casting patterns and turning towards the advantages of directly 3D printing master patterns due to their design flexibility and cost-efficiency.

Manufacturers are shifting from conventional techniques of producing investment casting patterns and turning towards the advantages of directly 3D printing master patterns due to their design flexibility and cost-efficiency.

Stereolithography (SLA) 3D printing is a well-established, cost-effective method with high productivity, serving as an alternative to traditional investment casting procedures. Uncover stereolithography's multiple advantages to investment casting, highlighting its potential to revolutionize this manufacturing process by watching the associated video.

Interlocks in Electric Vehicles (EVs) and Hybrid Electric Vehicles (HEVs) play a crucial role in ensuring safety, functionality, and operational integrity within the vehicle's electrical systems. Lucas-Nuelle, renowned for its comprehensive electric vehicle trainers, integrates advanced interlock systems as a fundamental component of their educational modules.

These interlocks serve as sophisticated safety mechanisms designed to prevent hazardous situations or malfunctions within the EV/HEV. They function by establishing communication and coordination between various vehicle components, such as the battery management system, power electronics, motor controller, and other crucial subsystems.

Lucas-Nuelle's electric vehicle trainers typically incorporate interlocks that regulate high voltage operations, ensuring that components are deactivated or isolated during maintenance, repair, or any other critical procedures. These interlocks often include mechanisms like emergency shut-off switches, isolation relays, and software-controlled safety protocols, creating a safe environment for technicians and learners to work on and understand the intricate systems of electric and hybrid vehicles.

Moreover, these training modules emphasize the significance of interlocks in meeting industry standards and compliance regulations, educating users about the essential role these safety features play in preventing accidents, electrical hazards, and system failures.

By studying and experimenting with Lucas-Nuelle's EV/HEV trainers, individuals gain a comprehensive understanding of how interlocks function within the vehicle's electrical architecture. This hands-on experience allows students, technicians, and engineers to comprehend the criticality of interlock systems, preparing them for real-world scenarios in the automotive industry's electric vehicle sector.

The Hard Hat VR Content Library offers a diverse portfolio of immersive VR Training Courses designed for construction professionals. Each course provides a unique learning experience tailored to enhance skills and knowledge within the construction industry.

Each VR Training Course in the Hard Hat VR Content Library offers a hands-on, immersive learning environment, allowing construction professionals to acquire essential skills, enhance their expertise, and ensure a safer and more efficient construction work environment.

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  • Master CNC Techniques with Cutting-Edge Simulation
    Item Number:
    D73F-0320-PB00
    Experience the cutting-edge in CNC machining simulation with FANUC's D73F-0320-PB00 simulator. Equipped with real kinematics, live machine movement, and advanced features like collision detection, immerse yourself in a true-to-life machining experience. Discover the power of virtual milling or lathe operations with our software-only version for seamless integration. Get ready to revolutionize your CNC training!
  • Part number AEX-6263-0300
    Item Number:
    A02B-0158-B100#US
    The 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.
  • FANUC CR-7iA/L Collaborative Robot
    Item Number:
    CR-7iA/L
    Allows 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.
  • Robots Educational Package
    Item Number:
    FANUC ER-4iA
    Designed 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.
  • FANUC CR-4iA Collaborative Robot
    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.
  • Fanuc ROBODRILL Education Packages
    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).
  • FANUC Certified CNC Training
    Item Number:
    α-D14MiB
    The 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.
  • FANUC Robot Integration Package (25098)
    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.
  • Hard Hat VR Warehouse Safety Training
    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.
  • Fire Tube Boiler Model
    Item Number:
    356
    DAC 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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