Motion Control & Drives


Why Cobots? From myths to a simpler reality

May 2021 Motion Control & Drives

Once industry looks beyond the myths about cobots, it will begin to reap the benefits of what they really bring to the shop floor. For example, assisted by advances in edge computing, collaborative robots do not require the complex set-up of traditional industrial robots. These used to require at least a week of training, but some cobot manufacturers now make it possible to get up and running in as little as a half-hour.

The economic benefits they bring to manufacturing are also appealing when compared to robots, as they require a much lower initial investment and a highly reduced implementation cost. By some estimates, payback time for a typical cobot is between one and two years and can be as short as six months. These two benefits make cobots an attractive investment, but what sets them apart is the flexibility they provide.

Flexibility – the cobots´ answer to ever-changing market demands

Cobots adapt easily to multiple applications, unlike traditional robots that generally are designed to perform just one task. Their light weight and more compact dimensions, coupled with the easier reprogramming, translate into a high level of mobility so they can be placed easily where the production process demands. Cobots make it easy to automate, even for short production runs and to change lines frequently.

Their contribution to versatility is as varied as each process reality. For example, companies not working on a 24/7 workflow can set up cobots to load machines that run at night while the factory is closed. By morning, when it reopens, a production run has been completed. In other cases, cobots can assist workers when the task is demanding, dangerous, or just tedious, freeing time for the workers to perform more productive and creative duties.

The safety issue

Designed to work alongside their human counterparts, with proper risk assessment, cobots may not require confining cages or cumbersome safety guarding. Christoph Ryll, a cobot specialist who is collaborating with SMC to develop practical safety solutions, describes what would be the final purpose: working together, humans and cobots can achieve a higher efficiency than either could alone. However, safety is still an issue, and 95% of cobots are still today confined by cages and not truly collaborative.

End effectors – a matter of symbiosis

End effectors, primarily in the form of grippers, enable the business end of the cobot to handle and manipulate parts with a wide variety of shapes, sizes and materials. The flexibility of adapting a cobot to many different applications is a major benefit, as long as it is easy to change the gripper. For instance, a cobot used to drive screws on an assembly line has to be easily refitted with a different end effector when reconfigured for a pick-and-place application.

Machine builders or integrators should communicate closely with end users in order to ensure the success of the union. The gripping technology should be able to adjust perfectly to the specific needs of the task. As important as it is to select the right cobot, it’s equally vital to choose the correct end tool, capable of being customised to meet the specific requirements of the task, such as location of pick, maximum allowable force, weight profile of the part, its composition and shape.

The best gripper depends on the task

SMC have developed solutions designed to work with all robots and cobots on the market.

Pneumatic grippers are well suited for general pick-and-place applications. Air-operated solutions provide high force, speed and operating frequency. If none of those parameters need to be controlled or precise, a pneumatic gripper is the best solution.

Vacuum grippers generally are in the form of suction pads. Suction holding is normally recommended for moving and transferring delicate or flimsy workpieces.

Electric grippers are best for control of the position, force or speed. They allow partial closing and opening, for example, which makes them ideal for handling delicate pieces such as printed circuit boards.

Magnetic grippers are for those applications where suction pads and grippers will not perform optimally due to uneven or porous surfaces.

SMC offers all the different gripping technologies and develops plug-and-play grippers and gripper systems for all cobot and robot suppliers. They are based on the concepts of energy efficiency and performance, with special focus on size and weight optimisation.

However, where the company can really make a difference is in its capacity to implement a 360º, such as electric solutions that assist cobot mobility combined with the technical support to customise automation solutions that adapt perfectly to production processes and ensure optimum flexibility.




Share this article:
Share via emailShare via LinkedInPrint this page

Further reading:

Mammoet completes major bridge replacement at Amsterdam Centraal Station
Motion Control & Drives
Mammoet completes the second of five major bridge replacements at Amsterdam Centraal Station, transporting steel deck sections by water to keep the station open throughout the works.

Read more...
ndustry expertise drives SEW-EURODRIVE’s Electra Mining Africa presence
Motion Control & Drives
SEW-EURODRIVE will showcase industry-specific drive technology, modernisation services and expanded aftermarket support at Electra Mining Africa 2026, with a focus on lifecycle support and operational optimisation.

Read more...
Next-generation motor management solution
Schneider Electric South Africa Motion Control & Drives
Schneider Electric has launched its TeSys Tera motor management solution in the West African market, combining advanced motor protection, digital connectivity and real-time diagnostics for manufacturing, mining and water applications.

Read more...
Premium slewing rings from SKF
SKF South Africa Motion Control & Drives
SKF’s slewing bearing portfolio spans standard and customised designs across a wide range of types and sizes, backed by advanced monitoring, remanufacturing services and application engineering expertise for demanding industrial applications.

Read more...
World’s first fully electric hydrogen fuel cell aircraft engine
Motion Control & Drives
Airbus and MTU Aero Engines are establishing a joint venture to industrialise hydrogen-electric propulsion systems for commercial aviation, combining liquid hydrogen expertise with fuel cell development to support the ZEROe programme’s 2035 target.

Read more...
Monopile handling innovations boost offshore wind farm
Motion Control & Drives
Mammoet’s XXL monopile transport system and new MTC 1600 terminal crane are helping offshore wind developers safely marshal and install ever larger monopile foundations, as demonstrated on Van Oord’s Baltic Power project.

Read more...
Automation without the mega factory
Yaskawa Southern Africa Motion Control & Drives
Mid-sized South African manufacturers are turning to targeted, low-risk automation to solve specific bottlenecks rather than chasing full factory transformation, helped by retrofit-friendly robotics and advanced simulation software.

Read more...
Duplex worm gears for precision backlash adjustment
Motion Control & Drives
KHK USA has introduced duplex worm gears that allow precise backlash adjustment through simple axial movement of the worm shaft, eliminating the need for gearbox housing alterations during assembly or maintenance.

Read more...
Choosing the right level of protection in modern automation
Motion Control & Drives
Choosing the right ingress protection rating for a motor or drive is less about maximising the number, and more about understanding what the machine will actually face in operation.

Read more...
Osterwalder launches multi-plate, fully electric powder press
Motion Control & Drives
Osterwalder Technology has launched the MPneo 480, a 480 kN fully electric multi-plate powder press with up to six cross-pressing modules. Designed for hard metals, ceramics and advanced engineered materials, the press supports complex geometries and offers optional

Read more...









While every effort has been made to ensure the accuracy of the information contained herein, the publisher and its agents cannot be held responsible for any errors contained, or any loss incurred as a result. Articles published do not necessarily reflect the views of the publishers. The editor reserves the right to alter or cut copy. Articles submitted are deemed to have been cleared for publication. Advertisements and company contact details are published as provided by the advertiser. Technews Publishing (Pty) Ltd cannot be held responsible for the accuracy or veracity of supplied material.




© Technews Publishing (Pty) Ltd | All Rights Reserved