description Newcomb Spring Products Overview
Newcomb Spring Products specializes in creating high-precision custom springs for demanding industrial needs. The company’s expertise lies in manufacturing compression, extension, and torsion springs utilizing a variety of materials. They serve engineers, designers, and manufacturers requiring specialized spring solutions across industries such as aerospace, automotive, and medical equipment. Newcomb offers tailored designs to meet specific performance requirements.
help Newcomb Spring Products FAQ
What types of springs does Newcomb Spring specialize in?
Newcomb Spring specializes in manufacturing highly precise custom compression, extension, and torsion springs. They also produce specialized stamped and wire forms for complex industrial assemblies. Their expertise lies in working directly with engineers to create bespoke spring solutions tailored to exact decimal load requirements, rather than providing off-the-shelf stock parts.
Where is Newcomb Spring located?
Newcomb Spring is headquartered in Atlanta, Georgia, and operates multiple manufacturing facilities across the United States. Their primary production plants are strategically located in California, Massachusetts, and North Carolina. This decentralized footprint allows them to offer rapid prototyping and exceptionally fast turnaround times across the country.
Can Newcomb Spring manufacture heavy-duty die springs?
Yes, Newcomb Spring has the heavy-duty CNC coiling machinery necessary to manufacture massive, thick-wire die springs used in the automotive and industrial tooling industries. These massive springs must endure millions of harsh, high-impact compression cycles inside heavy stamping presses. Newcomb utilizes advanced ultrasonic testing to ensure their heavy-duty springs have no internal metal flaws.
What materials can Newcomb Spring work with for custom orders?
Because they serve demanding aerospace and defense contractors, Newcomb Spring can coil springs out of highly exotic materials like Inconel, Elgiloy, and Titanium. These superalloys are required for applications involving extreme temperatures, such as jet engine components or deep-sea submersibles. They also work with standard high-carbon steels and stainless alloys for general commercial applications.
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