This inventor holds 1 USPTO granted patent. Top assignee: Stratasys, Inc.. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Merijn De Leur: Innovator in Additive Manufacturing
Introduction
Merijn De Leur is a notable inventor based in Amstelveen, Netherlands. He has made significant contributions to the field of additive manufacturing, particularly in the development of tools and methods that enhance the efficiency and effectiveness of 3D printing technologies. His innovative approach focuses on creating load-bearing structures through advanced manufacturing techniques.
Latest Patents
Merijn De Leur holds a patent for "Controlling toolpath for additive manufacturing apparatus to create a load-bearing structure." This patent describes aspects for use in additive manufacturing, where a desired manufacturing path may be specified for a 3D model of an object. The object is designed to be a load-bearing structure, and the manufacturing path is based on the expected mechanical stress on the object. The process involves slicing the 3D model to provide toolpath segments that correspond to the toolpath of an additive manufacturing apparatus. These segments are then sorted and oriented according to the desired manufacturing paths. The resulting additive manufacturing control instructions are used to guide the apparatus in accordance with the specified paths during the manufacturing process.
Career Highlights
Merijn De Leur is currently associated with Stratasys, Inc., a leading company in the field of 3D printing and additive manufacturing. His work at Stratasys has allowed him to push the boundaries of what is possible in additive manufacturing, particularly in creating structures that can withstand significant loads.
Collaborations
Merijn collaborates with Lucien Douven, who is also involved in the field of additive manufacturing. Their partnership exemplifies the collaborative spirit that drives innovation in technology.
Conclusion
Merijn De Leur's contributions to additive manufacturing are noteworthy, particularly his patented methods for controlling toolpaths in 3D printing. His work continues to influence the industry and pave the way for future innovations in load-bearing structures.
