Aurora is committed to producing the highest quality aerospace grade castings. Our Quality Management System, both AS9100 & ISO 9000 approved, is our framework for monitoring, measuring and improving the casting process. Aurora can manage your casting project from design and development to production.
We have extensive experience working with 3D prints, stereolithography (SLA) prototypes, mold & tooling construction, mechanical testing, non-destructive testing, 4 axis machining, and assembly. Aurora has been in the business of making precision castings for over 40 years. We have had the opportunity to be a part of many great aerospace programs.
We have extensive experience working with 3D prints, stereolithography (SLA) prototypes, mold & tooling construction, mechanical testing, non-destructive testing, 4 axis machining, and assembly. Aurora has been in the business of making precision castings for over 40 years. We have had the opportunity to be a part of many great aerospace programs.
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Investment casting is an method of manufacturing used to produce complex metal components. This process is also known as lost wax casting. Aurora specializes in the investment casting of complex aerospace components specially air-melt alloys. Investment casting has been used in various forms for the last 5,000 years.
AS9100 is the international management system standard for the Aerospace, Space and Defense (AS&D) industry. The standard provides aerospace suppliers with a comprehensive quality system for providing safe and reliable castings to the aerospace industry and also addresses civil & military aerospace requirements.
Quality starts from the outset. All of our castings are designed with full 3D solid models consisting of the complete part with 3D simulation in our CAD/CAM systems, ensuring that all our cuts and tool paths are true. Our 4 axis machining capabilities and 30 years of experience allow us to provide fast delivery at competitive prices on all machined casting.
SLA Printing, better known as stereolithography, is a 3D printing and additive manufacturing process. Guided by 3D models and computer programing. SLAs can produce parts with complex geometries with a high degree of accuracy without the need to invest in expensive tooling. Customers often choose to have parts made from SLAs when quantities are smaller, specifically during the development phase or when lead times are short.
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Ryan Stiner
Sep 05, 2019
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