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0.763in. and 0.783in. ⁓51/64"
1.271in.
0.188in. and 0.198in.
90.0 rockwell b
copper alloy
QQ-B-750, comp a fed spec single material response
cadmium
QQ-P-416, ty 2, cl 3 fed spec single treatment response
split HELICAL-Right hand
Split helical-right hand
Copper alloy
0.188 inches minimum and 0.198 inches maximum
1.271 inches maximum
0.763 inches minimum and 0.783 inches maximum
Schedule B number: 7415210000
nmfc 194120
Copper washers including spring washers not threaded
FSC 5310 ⁓ Nuts and washers
Note-nuts and washers, including specially designed, are to be classified in this fsc. a. nuts are a small metal block made in a variety of shapes such as square and hexagonal which is drilled and internally threaded. b. washers are a perforated piece of metal, leather, or other materials of various shapes or forms. they are used primarily as a seat for a bolt, nut, screw, rivet or nail to distribute pressure and prevent endwise motion over an area and/or to prevent movement between two parts by means of restraining features created by the shape of its edges.
Excluding bearing thrust washers (fsc 3120); shims (fsc 5365); ring spacers (fsc 5365); plate spacers (fsc 5365); lock rings (fsc 5365).
split helical-right hand cadmium surface treated 0.188" material thickness 1.271" outside diameter 0.763" hole diameter
1. | ASME B18.21.1 | Cage 05047 |
2. | MS35338-108 | Cage 80205 |
3. | MS35338-108 | Cage 96906 |
4. | FF-W-84 | Cage 81348 |
5. | FF-W-84 | Cage 81348 |
6. | FF-W-84 | Cage 81348 |
7. | ASME B18.21.1 | Cage 05047 |
8. | MS35338-108 | Cage 80205 |
9. | MS35338-108 | Cage 96906 |
10. | FF-W-84 | Cage 81348 |
11. | ASME B18.21.1 | Cage 05047 |
12. | MS35338-108 | Cage 80205 |
13. | MS35338-108 | Cage 96906 |
14. | FF-W-84 | Cage 81348 |
15. | ASME B18.21.1 | Cage 05047 |
16. | MS35338-108 | Cage 80205 |
17. | MS35338-108 | Cage 96906 |
18. | FF-W-84 | Cage 81348 |
Nothing similar to this part number was found in our inventory
A washer which is usually round with a centrally located hole. its edges and two bearing surfaces are so designed that applied pressure brings into play the spring tension and/or frictional locking principle which materially resists any tendency toward turning. it may be made of one or two pieces