Serving our customers with quality and safety first.
3a
RIGHT-Hand
0.325in. ⁓21/64"
countersunk w/reverse chamfer
0.047in. ⁓3/64"
1.850in.
0.163in.
PIN-Rivet, straight, threaded
0.262in.
0.013in.
32
0.164in. ⁓11/64"
90.0 degrees
PIN-Rivet, threaded, shear, protruding head, hex point drive
steel corrosion resisting
ams 5629 assn std single material response
unjc
Unjc
Steel corrosion resisting
32
0.013 inches
Countersunk w/reverse chamfer
Right-hand
3a
Schedule B number: 7318230000
nmfc 095190
Rivets of iron or steel
FSC 5320 ⁓ Rivets
unjc thread series pin-rivet, threaded, shear, protruding head, hex point drive 32 thread quantity per inch 0.013" grip length countersunk w/reverse chamfer head style right-hand 3a thread class
| 1. | HLT50YC-5-12 | Cage 92215 |
| 2. | HLT50YC-5-12 | Cage 97928 |
| 3. | AIC-L-759C08-12 | Cage 06725 |
| 4. | ST3M759C08-12 | Cage 76301 |
| 5. | HLT50YC-5-12 | Cage 97928 |
| 6. | HLT50YC-5-12 | Cage 97928 |
| 7. | HLT50YC-5-12 | Cage 92215 |
| 8. | HLT50YC-5-12 | Cage 06725 |
| 9. | HP4759-08-12 | Cage 0ZC92 |
| 10. | HLT50YC-5-12 | Cage 56878 |
| 11. | HLT50YC-5-12 | Cage 73197 |
| 12. | HLT50YC-5-12 | Cage K5673 |
| 13. | ST3M759C08-12 | Cage 76301 |
| 14. | AIC-L-759C08-12 | Cage 06725 |
| 15. | HLT50YC-5-12 | Cage 60516 |
| 16. | HLT50YC-5-12 | Cage 97928 |
| 17. | HLT50YC-5-12 | Cage 92215 |
| 18. | HLT50YC-5-12 | Cage 06725 |
| 19. | HP4759-08-12 | Cage 0ZC92 |
| 20. | HLT50YC-5-12 | Cage 56878 |
| 21. | HLT50YC-5-12 | Cage 73197 |
| 22. | HLT50YC-5-12 | Cage K5673 |
| 23. | ST3M759C08-12 | Cage 76301 |
| 24. | AIC-L-759C08-12 | Cage 06725 |
| 25. | HLT50YC-5-12 | Cage 60516 |
| 26. | HLT50YC-5-12 | Cage 97928 |
Nothing similar to this part number was found in our inventory
A metallic or nonmetallic item, headed at one end, with a cylindrically shaped shank which may be tapered, grooved, or threaded. a locking collar or sleeve may be provided to perform the same holding action as the clinching portion of a conventional rivet. the shank may include an external wrenching facility which breaks off at a predetermined applied torque.