Dovetail nailing increases joint strength by which mechanism?

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Multiple Choice

Dovetail nailing increases joint strength by which mechanism?

Explanation:
Angled nailing increases withdrawal resistance. When nails are driven in at a slant across the joint, a pulling force can’t simply yank the nail straight out. The load creates a combination of shear along the nail and a wedging action against the wood fibers, which presses the pieces more tightly and increases friction. This makes it much harder for the joint to be pulled apart, so the dovetail stays interlocked more securely. The overall strength comes from the interlocking shape already present, and the angled nails add extra grip by converting pull forces into shear and friction rather than pure tension. Using glue would change the failure mode to an adhesive bond, longer nails don’t change the mechanism of resistance, and twisting nails would weaken the joint.

Angled nailing increases withdrawal resistance. When nails are driven in at a slant across the joint, a pulling force can’t simply yank the nail straight out. The load creates a combination of shear along the nail and a wedging action against the wood fibers, which presses the pieces more tightly and increases friction. This makes it much harder for the joint to be pulled apart, so the dovetail stays interlocked more securely. The overall strength comes from the interlocking shape already present, and the angled nails add extra grip by converting pull forces into shear and friction rather than pure tension. Using glue would change the failure mode to an adhesive bond, longer nails don’t change the mechanism of resistance, and twisting nails would weaken the joint.

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