Description
The LORD 324 acrylic adhesive is a two-part structural acrylic from the LORD metal-to-metal bonding line, cured at room temperature with a LORD accelerator to join metals and dissimilar substrates. This one gallon can supplies the adhesive side for shops bonding in place of welding or mechanical fasteners. Bonding in place of welds removes the heat and cleanup that come with torch work on light-gauge metal, and it keeps the finished face free of burn marks.
Where the LORD 324 acrylic adhesive fits
It suits metal bonding on panels, frames, and assemblies where a structural acrylic can replace spot welds or rivets. Applied as a two-part system with a matched LORD accelerator, it cures at room temperature, so no oven or heated fixture is required. The adhesive holds metal-to-metal joints and works across dissimilar material pairs. It bonds steel, aluminum, and mixed metal pairs, spreading the load across the overlap rather than at individual fasteners, which removes heat distortion and weld marks from thin panels.
How the LORD 324 acrylic adhesive holds up
Structural acrylics in this family cure to a tough, load-bearing bond that resists shop chemicals, moisture, and weathering in typical service. Because the system cures at ambient temperature, assemblies reach handling strength on the line without added heat, which keeps production moving without the wait and energy of an oven cure. Confirm the correct accelerator and mix approach for your process before the run.
Specifications
- Chemistry: two-part structural acrylic
- Cure: room temperature with a LORD accelerator
- Bonds: metal-to-metal and dissimilar substrates
- Packaging: one gallon can
Order the gallon for ongoing 324 bonding, and match it with the correct LORD accelerator to complete the system. Review our structural adhesives for related metal-bonding options. The 324 adhesive is part of the Parker LORD structural acrylic range.
Need Help?
Need help matching LORD 324 to your substrate and accelerator? Call (800) 220-1966 or email [email protected].






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