Whatever the option he chooses, the Inspire Print3D quickly easily helps the designer to identify errors such as distortion, delamination and overheating, and enables their correction before the printing process stage.įurthermore, the advanced thermo-mechanical simulations are also an interesting option to decrease the need for finishing and costly optimisation layers, not to mention the little supports that appear on the designs that can be optimally matched to the 3D printer in use. There can be multiple scenarios that the operator can choose when he wants to achieve part performance. Only designed for SLM processes, the design and simulation software enables engineers to create and optimize designs for the requirements and process variables for producing them. Leveraging their respective experience in software and metal 3D printing, they have been able to achieve a rapid and automated production of large-scale parts that normally required extensive tooling and overseas production, causing long lead times and limited customization options. As part of this collaboration, Altair’s engineers leverage generative design methods to achieve optimal results.īoth partners aim to manufacture customized replacement parts. One interesting example of how this workflow is applied can be seen on the manufacturing of a 3D printed robot arm.ĭutch company MX3D recently collaborated with Altair to 3D print an optimized industrial robot arm. He therefore benefits from an automatic creation of geometry while ensuring the part meets the performance requirements and that this part is manufactured without any defects. As far as the other steps to achieve a successful design for manufacturing are concerned, Kunju also lays emphasis on the fact that the engineer should take into account the manufacturing design rules when it comes to generative design.
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