Springfield Manufacturing
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Springfield Manufacturing Inc. provides advanced CNC manufacturing solutions using clean "green" technology. We offer patented multi-axis Waterjet Machining, Profile Grinding, Laser Additive Cladding and Welding, Multi-Axis Milling as well as EDM services to a wide range of customers from our conveniently located facilities in Clover, SC.
Services
Since 1996, Springfield Manufacturing has been a leading high precision, multi-axis, CNC machining service provider specializing in unique, value added, and innovative applications. Our process capabilities are well respected in a wide range of markets and we can provide unique solutions to you through the synergy of our processes, products, and years of experience.
Springfield Manufacturing's Advanced Waterjet cells are capable of cutting, drilling and stripping components ranging from flat to very complex three-dimensional geometries made from soft materials to the hardest of aerospace alloys. The Springfield family of waterjets spans to full 6 axis capability with overhead gantry-style machines for larger parts and submersible tanks for underwater machining.
Laser cladding is an advanced additive manufacturing technology used to enhance, repair and rebuild components through the application of superalloy materials for improved wear, corrosion and thermal resistance. Our CNC systems, equipped with state-of-the-art visioning and AutoClad software, allow for the precise alignment of every individual part prior to cladding.
Springfield employs HAAS three axis milling centers for precise high-speed machining of complex three-dimensional parts. With extensive experience machining aerospace alloys, abradable coatings and ceramics, we are experts in tight tolerance, precision milling. Our cost-effective services are ideal for both high volume, value added requirements as well as short-run, developmental prototyping.
High speed EDM drilling and sinking provides for a fast, dimensionally precise, and deep hole or profile to be machined that is not possible to accomplish with conventional machine tools. The process involves the use of shaped electrodes with water and electricity combined to burn precise holes and profile shapes into any conductive material substrate.
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