Aluminum Machining for Parkersburg, WV
If you are asking where to get aluminum machined near Parkersburg, Wexmar is a full CNC shop in Canastota, NY that machines 6061, 7075, 2024, 5052, and MIC-6 for Parkersburg manufacturers in specialty polymers, industrial chemicals, and advanced materials and ships finished parts to Parkersburg on reached in one to two days by LTL freight from Central New York.
Aluminum parts we machine for Parkersburg
Housings, enclosures, heat sinks, brackets, manifolds, plates, fixtures, spacers, standoffs, shafts, and fittings. Horizontal machining centers with pallet changers make multi-face aluminum housings efficient at any quantity.
Alloys and tempers
6061-T6 for general parts, 7075-T6 for strength, 2024-T3 for aerospace hardware, 5052 for corrosion service, and MIC-6 cast plate for flat, stable fixture and instrument bases.
Finishes for aluminum
Type II and Type III hard anodize, chem film (Alodine), and powder coat are handled through qualified outside processors and quoted with the machining. As-machined and bead-blast finishes are done in house.
Fast, documented aluminum work
Aluminum cuts fast, so lead times are short. CMM reports, first-article inspection, and material certs ship with Parkersburg orders on request.
Parkersburg at a glance
- Service
- Aluminum machining
- Alloys
- 6061, 7075, 2024, 5052, MIC-6
- Finishes
- Anodize, chem film, powder coat via partners
- Machined in
- Canastota, NY
- Ships to
- Parkersburg, WV
- Transit
- reached in one to two days by LTL freight from Central New York
Aluminum Machining for Parkersburg, WV: FAQ
Where can I have aluminum machined near Parkersburg?
Wexmar machines aluminum in Canastota, NY and ships to Parkersburg. Upload a PDF or STEP for an instant estimate, and a human estimator confirms pricing and freight.
Do you anodize aluminum parts?
Yes, through qualified outside processors. Type II, Type III hard coat, and chem film are quoted with the machining and managed by Wexmar.
What tolerances do you hold on aluminum?
Plus or minus .005 in is typical on general features, with plus or minus .0005 in on fits and bores where the print requires it, verified on CMM.
