Self-Retaining T-Nut fasteners are bushings with internal threads and a substantial base that combine the functions of a nut and washer. They offer many design advantages and frequently cut weight, labor and cost.
Unit of Measure
Items
Self-Retaining Round Base Prong Claw Type T-Nuts

0.296 Inch (in) Prong Length Self-Retaining Round Base Prong Claw Type T-Nut

Self-Retaining Round Base Prong Claw Type T-Nuts

0.203 Inch (in) Prong Length Self-Retaining Round Base Prong Claw Type T-Nut

Self-Retaining Round Base Prong Claw Type T-Nuts

0.234 Inch (in) Prong Length Self-Retaining Round Base Prong Claw Type T-Nut
Description N/A Self-Retaining T-Nut fasteners are bushings with internal threads and a substantial base that combine the functions of a nut and washer. They offer many design advantages and frequently cut weight, labor and cost.
Fastener Type N/A Round Base
Thread Size N/A 5/16-18 N/A 10-24 N/A 1/4-20
Prong Length N/A 7.50 mm0.296 in N/A 5.20 mm0.203 in N/A 6.00 mm0.234 in
Base Height N/A 0.052 in1.30 mm N/A 0.035 in0.90 mm N/A 0.042 in1.10 mm
Collar Length N/A 0.375 in9.50 mm N/A 0.281 in7.10 mm N/A 0.312 in7.90 mm
Major Collar Outside Diameter N/A 0.369 in9.40 mm N/A 0.232 in5.90 mm N/A 0.294 in7.50 mm
Minimum Collar Outside Diameter N/A 0.364 in9.30 mm N/A 0.227 in5.80 mm N/A 0.289 in7.30 mm
Overall Diameter N/A 0.875 in22.20 mm N/A 0.750 in19.10 mm N/A 0.750 in19.10 mm
Number of Prongs N/A 6
Prong Type N/A Claw
Material N/A 1013 Low Carbon Steel Strip N/A 1010 Low Carbon Steel Strip N/A 1012 Low Carbon Steel Strip
Finish N/A Cleaned Oiled
Applications N/A Non-Metallic Applications: Self-Retaining T-Nut fasteners are usually driven into holes. They may provide threads and add strength to relatively weak materials. Some T-Nut fasteners for non-metallic applications may be fed and applied automatically.
Features and Benefits N/A In metal applications, Self-Retaining T-Nut Fasteners are typically spot welded or projection welded with the flange attached to a base plate. They may also be snapped into holes. Either way, they obviate costly tapping and simplify design.
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