A practical guide for stronger frames, smoother operation, and longer-lasting results in Denver
At Griswold Overhead Door & Construction, we help Denver-area homeowners, property managers, and small business owners match the right material to the real job conditions—traffic, weather exposure, security needs, and how the door or gate actually moves day to day.
Start with the job: What are you welding, and what is it doing?
Most common metal choices for door frames, supports, and gates
1) Carbon steel (mild steel): the workhorse for frames and structural reinforcement
Where it shines: door jamb reinforcement, track/angle supports, gate frames, dock and bumper brackets, equipment stands, and repairs where strength and straightforward fabrication matter.
What to plan for: it needs corrosion protection. In Denver, untreated steel can rust faster than people expect—especially where water sits (bottom rails, base plates) or where de-icing salts accumulate.
2) Galvanized steel: strong corrosion resistance, with important welding considerations
The catch: welding galvanized steel requires proper procedure and ventilation. Heating zinc coatings creates fumes that can be hazardous, and best-practice guidance emphasizes ventilation and fume control during welding. Many fabricators also prefer to weld bare steel first and then galvanize, or to properly prep/repair coated areas after welding so protection isn’t compromised.
Best use cases: outdoor gate frames, posts, and hardware where long-term corrosion protection is a priority.
3) Stainless steel (304 vs 316/316L): when appearance and corrosion resistance both matter
Practical Denver note: even though Denver isn’t coastal, stainless can still be a smart choice where winter road salts or chemical exposure are consistent (near parking lots, loading zones, or maintenance wash areas). The right grade depends on the exposure pattern, not just the ZIP code.
4) Aluminum: lightweight and corrosion-resistant, but not always ideal for security or high-abuse zones
Trade-offs: it can dent easier than steel, and design details (wall thickness, gussets, joint prep) matter a lot. It also requires the correct welding process and filler selection to avoid weak joints or cracking.
Best use cases: ornamental gates, low-to-moderate abuse areas, and situations where lowering weight improves performance or automation reliability.
Quick “Did you know?” facts that affect metal choice
Comparison table: picking metal based on what you care about most
| Metal | Strength & stiffness | Corrosion resistance | Welding complexity | Best fit for |
|---|---|---|---|---|
| Carbon steel | High | Low without coating | Low (very weld-friendly) | Frames, reinforcements, structural supports |
| Galvanized steel | High | High | Medium (prep + fume safety) | Outdoor gates/posts, exposed supports |
| 304 stainless | Medium–High | High (general outdoor/inland) | Medium | Architectural gates, visible hardware, clean aesthetics |
| 316/316L stainless | Medium–High | Very high (better vs chlorides) | Medium | Salt/chemical exposure, premium corrosion resistance |
| Aluminum | Medium (design dependent) | High | Medium–High (process + filler matter) | Lightweight gates, ornamental work, automation-friendly builds |
