Gulf Wind Technology Leverages Stratasys 3D Printing to Accelerate Innovation in Wind Turbine Design
Additive Manufacturing Enables Faster Prototyping and Unique Design Capabilities for Wind Tunnel Models
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3D printing helps advance wind tunnel testing and shorten design iteration. Gulf Wind Technology dramatically reduced the design and fabrication cycle for wind tunnel models. What previously took 30 to 40 days to iterate and finalize a design can now be completed in just 3 to 4 days. (Photo: Business Wire)
By adopting Stratasys Neo® stereolithography (SLA) technology, Gulf Wind Technology has dramatically reduced the design and fabrication cycle for wind tunnel models. What previously took 30 to 40 days to iterate and finalize a design can now be completed in just 3 to 4 days. The technology also allows for specialized features such as pressure taps for real-time airflow data, which are difficult or impossible to execute with conventional manufacturing methods.
“By leveraging the Stratasys Neo® SLA system we can generate far more data in a shorter time. This has enabled us to run our design process with more rigor, become more efficient, and take on business that we previously had to turn away,” said
The technical capabilities of 3D printing have been essential to Gulf Wind Technology’s rotor design process. Using Stratasys Neo® SLA technology, Gulf Wind Technology can produce models with Somos® PerFORM Reflect™ material, which offers high strength, stiffness, and temperature resistance – critical attributes for wind tunnel testing. Due to the superior attributes of the resin, the printed parts post process and handling is simple and straight forward – from removal of support materials, to cleaning resin from internal channels to placement in a wind tunnel.
Inspired by the use of 3D printing in Formula 1 racing, Gulf Wind Technology’s engineers recognized the potential for rapid iteration and optimization in wind turbine design. With
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