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If you have any questions about the quality of our Robotic-coping and profiling machines, we can tell you that they have passed the most important fabrication tests, including hardness and surface texture, beam access hole quality, bolt hole size, positioning, and perpendicularity. As usual, we have made the Voortman CNC profiling and coping machine available from our stock. This machine is built to an exceptionally high standard, and has exceptional capabilities.

Our top-of-the-range coping/profiler robot makes 3D coping and profiling much easier. These Robotic Coping beams and Profiling beams not only work well, but they can also be used to cut slots, chamlers, and saddles.

CUTS ALL SHAPES AND LAYS MARKING ON ALL OUR SIDES.The V808 robotic shape processor is capable in processing almost any type of shape. This profile width may not be common in your production. The VoortmanV807 is our newest coping robotic. It can process profile widths upto 1.050mm (42") when necessary. You can heat process the V808's robotics thermally for rat holes or seismic structural design connections, such as slotted web or "dog bone" cuts.

Our VACAM software is designed in-house. It's known for its high performance when it comes to automated material handling. Active buffer management provides priority for the first line profile and buffers all other profiles. You can load new profiles onto the handling system by shifting profiles toward the line. This will increase productivity and efficiency by ensuring that machines don't sit idle waiting for the next production batch or profile.

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Q Robot

Q Robot

Our robotic coping machine is capable of cutting seismic structural connections (like "dog bone" and slotted web cuts), copes at product's beginning or end, holes of all sizes and shapes, block-outs and weld preparations as well as markings on all four sides.

Our top-of-the-range coping/profiler robot makes 3D coping and profiling much easier. These Robotic Coping beams and Profiling beams not only work well, but they can also be used to cut slots, chamlers, and saddles.

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VACAM automatically determines which route is the most efficient based on production, customer preferences, as well as the MSI line's machinery. MSI refers to the final stage of transporting semi-finished and raw materials from machine in machine. MSI is one integrated production process. Voortman’s proprietary CNC control system VACAM installed on every machine allows you to monitor, track, and plan every profile, product or future in real time.

Hardened hydraulic jaws with piston helps to fix material to prevent faults. AFD Flange and Plate Drilling Machine is able to drill, tab, mill, mark with scribing and mark with dot.(optional).

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Voortman’s V808 robotic heating cutting machine, like all others, comes with the VACAM software. This allows all machines to speak the same "language". The V808 has a lot of versatility and can be used either as a part of a new layout that includes roller conveyors, cross-transports, and other Voortman processing machines or as a standalone center.

We pride ourselves on making fabrication tasks simple and efficient. The Robotic Coping and Profiling beam is designed to handle both square tubes and angle bars. It can also process pipes, T bars, plates, and bulbs. You can do anything you want with our Coping and Profiling Robots. The quality of its outputs is unmatched. These outputs can include H, I andT beams, U, and L channels, respectively.

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Voortman V808, the most versatile and leading market robotic thermal cutting machine, has 8-axis that can process large profiles with an operating width of up to 1.250 mm (50") Combine the robot's extreme flexibility and machine structure to allow the machine to cut any 3D shape you want and mark all four sides. This system offers a lot of flexibility and allows for complex connections and handles to be created. It also speeds up production significantly. Voortman Vo808 has it all!

FAST PROFILE MESSURINGThe Voortman TL-1800G3 coping and thermal cutting robot is fitted with the Panasonic TL-1800G3 coping system. To accurately measure profile dimensions, the robot's torch nozzle comes with a measuring device. The cutting process compensates any differences between theoretical and actual dimensions to give the best results. The coping robotic measures only the sides that will be used to cut the profile. This saves time.

Robotic Coping Machines Names

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Robotic Coping and Profiling can make your fabrication process more efficient. This system has been specifically designed for metalwork and fabricators. It is able to work with angle lines, beam drilllines, hydraulic punches, ironworkers as well as band saws, band saws, and coping machines. This is a great way to improve your fabrication processes by taking them from zero to one hundred.

Voortman puts in safety measures after installing a machine. These safety measures consist of emergency cords, light curtains, or emergency stop buttons. Voortman's top priorities include delivering a safe production system, while not allowing operators to stop production from entering the zone. Operators can access the safety zone by using remote controls equipped with a kill button and gated light curtain to allow loading and unloading.

Frequently Asked Questions

Coping is a process that allows a beam to fit into other parts of a framework.

Preheat the I-beam using the torch flame. To start cutting, grab the torch trigger and hold it. Holding the torch trigger, point it at the outer edge to cut along the line. You can stop if necessary and then continue where you left off.

A channel for rainwater is the primary purpose of coping. The coping prevents rainwater from seeping into walls by allowing it to drip down the walls. It also gives the wall an artistic look.

To remove more wood from the back, angle the coping saw 30 degrees. Pro tip: Trimmings that have been cut with coping cuts can often leave thin, pointed tips. To prevent them from splintering, support the tips with your finger while you file, cut, or sand.

Maximum stress is found at the beam's surface farthest away from the neutral axis. This is known as "maximum surface stress", and it is usually represented by the sigma symbol.