Aircraft fleets across the planet are aging, and manufacturing companies are looking for solutions and new techniques for manufacturing parts that do not consume a lot of time, that is accurate, economical, and without human errors.
Aircraft fleets across the planet are aging, and manufacturing companies are looking for solutions and new techniques for manufacturing parts that do not consume a lot of time, that is accurate, economical, and without human errors. Today, the implementation of new technologies is aimed at improving industrial manufacturing processes in aeronautics through the automation of tasks that can be developed by automated robotics systems. The use of robotics during manufacturing processes helps to implement automated processes in factories, providing essential capabilities, such as flexibility, rapid response capacity, and the availability to operate or develop a precision task at any time. Automated robots improve the logistics processes in the manufacturing operations of parts, components, and assembly of aero—structures, they will also be responsible for the displacement of materials (tools, rivets, small components, aircraft painting, etc.) in the chain of assembly. (White et al., 2005). With the incorporation of robots in manufacturing facilities workers can get rid of repetitive work, get into narrow spaces, or avoid lumbar injuries caused by the development of these tasks. Automated robots improve the logistics processes in the manufacturing operations of parts, components, and assembly of aero-structures, they will also be responsible for the displacement of materials (tools, rivets, small components, aircraft painting, etc.) during the manufacture of components and parts. The robots will be prepared to access small spaces, perform high—precision tasks or examine and review the work done to get results as good as or even better than those obtained by humans. (Nathan, 2017). Automated robotics offers many advances such as construction, repair, continuous maintenance, higher productivity, and flexibility. Robots are able to learn new processes instantly. Humans cannot do this without the need for training for long periods of time. A human employee has to be trained and make a gradual transitir . ‘1 a set of different procedures, but a robot can be deployed again and reprogrammed in a single day. In conclusion, we could observe during this research that the advances in the technologies dedicated to the processes of manufacturing and production of aircraft have brought many benefits in the field of aviation. Not only the methods mentioned above such as Mirror Milling Systems, Additive Manufacturing, and Robotics but there are many more processes that are used today that help in this field. Research is also continuing on how to improve the methods already used and create new ones. We must also take into account that the fleets of aircraft across the planet are aging and we need new technological resources to be able to supply the demand for parts and repairs in the fastest, most accurate way, that is why the aeronautical industry invests time and money in these technological advances so we can meet the maintenance and repair requirements that aircraft need. L9
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