A5052 thin-walled processing for aerospace structures
High-precision thin-walled machining technology that supports aircraft manufacturing in the aerospace field.
In the aerospace industry, parts that achieve both lightweight and high strength are required for aircraft manufacturing. Particularly for thin-walled machined components that influence the performance of the aircraft, high precision and quality are essential. Improper machining can lead to a decline in aircraft performance and safety issues. Our A5052 thin-walled machining supports the resolution of challenges in your aircraft manufacturing with a wide range of machining sizes and various compatible materials. 【Application Scenarios】 - Aircraft and spacecraft components - Drone components - Rocket components 【Benefits of Implementation】 - Improved fuel efficiency through weight reduction - Achieving high strength and durability - Enhanced performance of components
basic information
【Features】 - Thin-walled processing of A5052 material - φ60 size - Thin-walled processing of t1.2 - Various equipment including large diameter φ700 NC lathes and 5-axis machining centers 【Our Strengths】 A must-see for companies in Aichi and Gifu! For 5-axis processing, lathe processing, large NC lathe processing, and machining, leave it to us. We specialize in single-item processing and small-batch production of various types. We also accommodate short delivery times.
Price information
Please contact us.
Delivery Time
Applications/Examples of results
For more details, please refer to the PDF document or feel free to contact us.
catalog(2)
Download All CatalogsRecommended products
Distributors
Our company specializes in machining power components, truck parts, and subsea repeater parts (beryllium copper), primarily focusing on conventional lathe processing and large NC lathe processing, as well as 3-axis and 5-axis machining. We excel in single-item processing and small-batch production of various types. We also accommodate short delivery times.

















































