AMOB Fully Electric CNC Tube Bender eMOB series features state-of-the-art bending technology, processing tube from 10mm up to 220mm OD and have multi-stack capability.
All-electric tube bending machines can bend fixed and variable radiuses within the same cycle and allow bending with no straight between them. A carriage booster allows bends with radiuses as tight as 1D and eliminates clamping marks.
The fully electric cnc pipe bender eMOB series machines are all equipped with the newly updated user-friendly AMOB 3D SOFTWARE. Amongst other features it allows automatic spring-back compensation as well as correction “in cycle”, stores tooling configuration and positions, runs anti-collision and interpolates all 9 axis.
This shortens setting up and cycle times, eliminating waste and testing periods during the tooling changeover process. Ideal for those working with premium materials, where any error is critical.
Welding detection, punching/cutting mechanisms and integrated loading/unloading systems are also available.
• Punching unit: On request, a punching unit can be added to the eMOB series.
• Multi-stack capability: All eMOB models have multi-stack, fix and variable radius capability.
• Welding detection: There’s also the option to add welding detection unit.
Fully-electric tube benders are the most energy-efficient machines on the market. Their servo electric motors have the highest rate of energy efficiency and only use power when needed, with immediate torque – there is minimal noise and any heat generated is negligible.
eMOB machines work at high speed with complete control. Each and every axis are independently controlled by absolute servo motors, meaning the speed and movement of each can be synchronised and optimised to perfection – drastically reducing the cycle time.
Always spot on – the electronic motion control system of the motors assures that the chosen position will always be the same. Fully-electric machines are not subject to behaviour changes along the way, meaning there’s no time or material lost tweaking the machine.
Setting up a new part in a fully-electric bender is very simple. All the 3D bending software features like CAD import, tooling libraries, 3D views of the programmed part, anti-collision simulation and spring-back compensation – allied with quick tool change and optimised tool positioning – will get you up and running in no time.
Productivity is boosted by shorter cycle times, low setup between projects, no adjustments during production, no wasted parts, energy cost reductions and low maintenance procedures.
Get it right the first time with our 3D bending software, which allows the operator to program as close to the optimum as possible. The in-cycle spring-back compensation prevents trial and error operations, eliminating waste and testing periods during the tooling changeover process. Ideal for high-accuracy sectors, small batch productions and those working with premium materials.
All machine activity is constantly monitored by an electronic motion control system, which provides information on the state of the machine, instructions, and any warning messages. In the case of any problems, our online technicians are on-hand to make a safe access diagnosis which will determine the cause, and then take actions to solve them.
Fully-electric motion controls are extremely simple compared with previous technologies. Reduced and more efficient components mean lower friction and wear – allowing for a design with high output, efficiency, rigidity, wear resistance, reliability and operation safety.
Fully-electric benders have superior no-fluid systems that won’t leak or produce heat or noise, providing a friendly working environment. All components of the machine are recyclable.
Safety is a prime concern with a machine that moves as quickly and quietly as a fully electric bender. Our fully electric cnc tube bender machines can integrate several emergency features such area scanners and light barrier fences.
An eMOB machine’s control system is controlled by an industrial grade computer – allowing easy integration and coordination with other systems such as production cells and 3D imaging devices.
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