![]() ![]() This largely eliminates the need for micro joints. In future, BySoft 7 will use this intelligent assistant function to compile cutting plans in such a manner that parts cannot tilt during the cutting process. With ‘TiltPrevention’ Bystronic has now developed a new solution. However, this solution does not eliminate the root of the problem: Parts protrude, still represent a risk, and are difficult for automation systems to cope with.Īlgorithm generates the ideal cutting sequence Another disadvantage: The automated removal of the finished parts is impeded because the micro joints make it difficult to remove the parts from the residual sheet.Īnother approach is to use software to guide the paths of the cutting head during the cutting process so that, as far as possible, it circumvents risky sections where parts could tilt. One disadvantage of this solution is: The cut parts require reworking in order to remove the traces of the micro joints. In this way, parts remain fixed to the surrounding sheet after cutting. The software positions small connections between the contour of the part that is to be cut and the residual grid in the cutting plan. Until now, micro joints have been a time-intensive method of preventing cut-out parts from tilting. Right: Tilted parts after laser cutting without ‘TiltPrevention’. Left: Perfect cutting result thanks to ‘TiltPrevention’. However, they also impede automated unloading, as the automation system’s grippers have difficulty picking up tilted parts. This results in the abortion of cutting jobs, rejected parts, and in the worst case, costly damage. They can cause a collision with the cutting head. Tilted parts are a risk factor during the laser cutting process. This reduces the abortion of cutting processes and downtime caused by collisions. The intelligent function enables users to create cutting sequences that minimize the risk of protruding parts. With the new ‘TiltPrevention’ assistant function in its BySoft 7 software, Bystronic is increasing process reliability in the field of laser cutting. ![]()
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March 2023
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