Train with SimSpray®, the aerospace industry-leading tool for VR painter training. SimSpray's aerospace content packs each include unique parts, paints, and environments designed to meet industry needs.
Benefits of Using 3D Printing for Metal Forming
Looking to learn more about the benefits of using 3D printing for metal forming dies and press brake tools? You've come to the right place!
In this video, Stratasys's resident expert, Thomas Whiting, walks through the most influential benefits of metal-forming and press brake tooling with Stratasys FDM technology.
Thomas offers his insight into the best practices to follow when creating these tools to deliver the highest quality output with the lowest possible resource expenditure.
This video details how to replace the battery in a FANUC CRX Cobot
FUEL CELL AS AN ALTERNATIVE DRIVE CONCEPT (UNITRAIN)
The concept of using fuel cells in a vehicle is an alternative to the use of purely electrical vehicles with range extenders. It should be noted that a fuel cell powered vehicle is not considered to be a hybrid system. A fuel cell is merely an energy converter which can also store electrical energy. The idea nevertheless represents a promising alternative since the relatively long range it offers is an impressive factor.
Whether you’re an instructor teaching the next generation of industrial maintenance technicians or an employer trying to hire new mechanical maintenance workers, the same question needs to be asked of potential new hires: do they have the skills you need? Amatrol’s Mechanical Drives 1 Assessment Workstation (27-MEA1) allows individuals to be evaluated on a variety of hands-on mechanical maintenance skills.
Amatrol’s Portable Pneumatics Learning System (990-PN1) is designed to teach fundamental and advanced pneumatic principles. Pneumatic power forms the basis of numerous industrial applications spanning fields like agriculture, pharmaceuticals, and automation. Through hands-on practice, learners will master the operation of pneumatic cylinders, flow controls, directional control valves, air motors, and pressure gauges. This system requires a compressed air source, a Hand Tool Package (41221), and a computer.
This robust and portable training system features authentic pneumatic components such as rotameters, pressure gauges, flow control valves, and directional control valves. Users will use the included pneumatic hoses to build operational pneumatic circuits based on schematics, honing skills like flowmeter connection and cam-operated sequence circuit operation. Amatrol’s attention to quality ensures learners engage with components relevant to real-world job scenarios.
Amatrol’s Advanced Hydraulics Training System (85-AH) covers hydraulic motor training applications, hydraulic pump and motor performance, and hydraulic fluids and conditioning. Within this advanced hydraulics training system, learners will study how motors are stopped hydraulically, how to use a pump efficiency curve to determine overall efficiency, how to size a conductor, how seal materials are determined by hydraulic fluid type, and more!
The advanced hydraulic training system requires Amatrol’s Intermediate Hydraulics (85-IH) and one of the Basic Hydraulics systems (850-H1, 850-C1, or 85-BH).
Double Sided A-Frame Bench
Amatrol’s Basic Pneumatics Training System – Double Sided A-Frame Bench (850-PD1) features the Basic Pneumatics Learning System (85-BP) panels mounted on a sturdy, durable A-frame bench with plenty of room for expansion.
Another set of Basic Pneumatics panels can be mounted to the opposite side of the bench to double training capacity, or more advanced pneumatic concepts can be taught by adding Intermediate Pneumatics (85-IP), Advanced Pneumatics (85-AP), or Electro-Pneumatics (85-EP) systems.
Amatrol’s Advanced Pneumatics training system (85-AP) covers a diverse range of topics, such as how air bearings, pneumatic motors, and pneumatic cylinders are used to move loads; applications for vacuums such as food packaging, as well as how to measure vacuum levels; and a comprehensive look at air compressors, their components, and how to safely operate them. By taking the approach of melding theory and practice, Amatrol curriculum reinforces both, resulting in a learner that can calculate the theoretical lifting force of a vacuum cup and understand how to select the correct pneumatic motor for a specific task.
The 85-AP includes an orifice plate flow meter, quick exhaust valve, suction cup, vacuum generator, vacuum gauge, tubing kit, and weight set with various sizes. These industrial-grade components ensure that learners work with instruments they’d normally only see on the job, which helps them to gain confidence and experience. This commitment to providing real-world components is an example of the attention to quality and detail that’s made Amatrol the world’s leader in skills-based, interactive technical learning.
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Item Number:VGC10The OnRobot VGC10 electrical compact universal robot vacuum gripper has unlimited customization possibilities. Smaller than the VG10, the VGC10 can fit into tight environments to extend your automation possibilities.
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Item Number:VGP20With payloads up to 20kg, the OnRobot VGP20 is a powerful electric powered universal robot vacuum gripper ideal for quickly and cost-effectively automating the palletizing of cardboard boxes, as well as handling bulky, porous, and irregularly shaped objects.
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Item Number:203-000DAC Worldwide’s Vibration Analysis Training System (203-000) is a heavy-duty learning package that allows for in-depth training in vibration analysis, using a vibration meter, gear/belt drives, and bearing faults.
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Item Number:203-PACDAC Worldwide’s Vibration Analysis Training System Plus (203-PAC) is a heavy-duty learning package that allows for in-depth training in vibration analysis, using a vibration meter, gear/belt drives, and bearing faults.
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With our Workplace Safety package, you get four modules that allow learners to put safety training into practice in a safe, virtual environment.
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Item Number:VLS 2.30DTThe VLS2.30DT Desktop is a compact and economical entry-level platform. It offers a material processing envelope of 16" x 12" x 4" or 768 in³ and can be equipped with one 10.6µm CO2 laser source ranging in power from 10 to 30 watts or one 9.3µm CO2 30 watt laser source.
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Item Number:VLS3.60DTThe VLS3.60DT is a compact and economical entry-level platform that offers a material processing envelope of 24" x 12" x 4" or 1,152 in³. The VLS3.60DT can be equipped with one of five 10.6µm CO2 laser sources ranging in power from 10 to 60 watts or one 9.3µm CO2 30 watt or 50-watt laser source.
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Item Number:VLS3.75The VLS3.75 is a free-standing platform with a materials processing envelope of 24" x 12" x 8.5" or 2,448 in³. The single laser platform supports a 10.6µm CO2 laser source ranging in power from 10 to 75 watts or one 9.3µm CO2 30 watt, 50 watt, or 75 watt laser source.
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Item Number:VLS4.75The VLS4.75 is a free-standing platform with a materials processing envelope of 24" x 18" x 8.5" or 3,672 in³. The single laser platform supports a 10.6µm CO2 laser source ranging in power from 10 to 75 watts or one 9.3µm CO2 30 watt, 50 watt, or 75 watt laser source.
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Item Number:VLS6.75The VLS6.75 is a free-standing platform with a material processing envelope of 32" x 18" x 8.5" or 4,896 in³. The single laser platform supports a 10.6µm CO2 laser source ranging in power from 10 to 75 watts or one 9.3µm CO2 30 watt, 50 watt, or 75 watt laser source.



















