We currently find many companies interested in introducing automation into their industrial processes, but they are worried about the cost of incorporating the installation, digitization and programming of a robotic system.
In various industries, the use of industrial robots has increased compared to common tools in applications such as welding, handling, assembly, pick-and-place, milling and machining; industrial robots have become tools that provide a more adaptable and cost-effective option, with a visible improvement in the concept of precision and a greater payload capacity, managing to cooperate with human personnel in routine tasks.
By providing innovative and adaptable end effectors for all types of applications, especially for automated milling systems, industrial robots can become flexible tools.
The automated milling system has been one of the last processes to automate itself with robots, since these need to perform constant and precise movements following models for material removal. New technologies have allowed this application to be easier to program with new software designs focused on improving movements by providing a high level of flexibility in the use of 3D applications, and in programs and processes that manage to make systems more affordable by carrying out a more successful production.
Today, the latest technology can adjust the programming of robots by combining fine spindles and robotic components together with the end effectors to swiftly mill and mechanize the product processes in different materials and forms, synchronizing their speed and providing stability and control in each environment.
The innovation of robotic systems has generated a decrease in the cost, even the return on investment is quickly justified, and the costs are also recovered quickly, thus increasing production efficiency and opening the door to even more businesses.
Surveys conducted by EEF indicate that manufacturers are looking to update or replace their existing equipment to achieve an increase in export markets and extend themselves to other productive fields.
This robotic solution applied to machining has been able to demonstrate its effectiveness in the quality of the products, generating greater reliability in the eyes of clients and the global market. Proving that robotic milling is remarkably flexible, it can be cheaper than CNC, and the industrial robot can work in various ways and from all directions, offering an efficient workspace and high performance.
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