Hexagon Socket Set Screws ISO 4027 with Cone Point Stainless Ste

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Hexagon_Socket_Set_Screws_ISO_4027_with_Cone_Point_Stainless_Ste
Art.nr. d s Gewicht l γ dt max. Hexagon Socket Set Screws ISO 4027 with Cone Point, Stainless Steel Aantal prijs
61910305 M3 1.5 0.17 5 90 0.75 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,20
61910308 M3 1.5 0.29 8 90 0.75 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,20
61910404 M4 2 0.18 4 120 1 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,10
61910405 M4 2 0.26 5 120 1 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,10
61910406 M4 2 0.34 6 90 1 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,10
61910408 M4 2 0.5 8 90 1 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,10
61910410 M4 2 0.66 10 90 1 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,20
61910412 M4 2 0.82 12 90 1 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,20
61910416 M4 2 1.14 16 90 1 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,20
61910420 M4 2 1.46 20 90 1 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,30
61910505 M5 2.5 0.37 5 120 1.25 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,10
61910506 M5 2.5 0.49 6 120 1.25 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,10
61910508 M5 2.5 0.73 8 90 1.25 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,20
61910510 M5 2.5 0.97 10 90 1.25 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,20
61910512 M5 2.5 1.21 12 90 1.25 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,20
61910516 M5 2.5 1.69 16 90 1.25 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,20
61910520 M5 2.5 2.17 20 90 1.25 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,30
61910525 M5 2.5 2.77 25 90 1.25 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,40
61910606 M6 3 0.69 6 120 1.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,30
61910608 M6 3 1.04 8 90 1.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,30
61910610 M6 3 1.39 10 90 1.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,30
61910612 M6 3 1.74 12 90 1.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,30
61910616 M6 3 2.44 16 90 1.5 Material: Stainless steel A2, hardness class 21H.
€ 0,30
61910620 M6 3 3.14 20 90 1.5 Material: Stainless steel A2, hardness class 21H.
€ 0,40
61910625 M6 3 4.02 25 90 1.5 Set screws with flated cone (dimension dt).
€ 0,50
61910630 M6 3 4.89 30 90 1.5 To use as a grub screw for fixing an element on a shaft.
€ 0,60
61910808 M8 4 1.72 8 120 2 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,30
61910810 M8 4 2.35 10 90 2 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,30
61910812 M8 4 2.98 12 90 2 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,40
61910816 M8 4 4.24 16 90 2 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,50
61910820 M8 4 5.5 20 90 2 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,60
61910825 M8 4 7.08 25 90 2 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,80
61910830 M8 4 8.65 30 90 2 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,90
61911010 M10 5 3.41 10 120 2.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,50
61911012 M10 5 4.42 12 90 2.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,50
61911016 M10 5 6.43 16 90 2.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 0,70
61911020 M10 5 8.44 20 90 2.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 1,00
61911025 M10 5 10.9 25 90 2.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 1,30
61911030 M10 5 13.5 30 90 2.5 For a higher retaining force, there should be a countersink made into the shaft.
€ 1,60
61911216 M12 6 8.9 16 90 3 For a higher retaining force, there should be a countersink made into the shaft.
€ 1,00
61911220 M12 6 11.7 20 90 3 For a higher retaining force, there should be a countersink made into the shaft.
€ 1,20
61911225 M12 6 15.3 25 90 3 For a higher retaining force, there should be a countersink made into the shaft.
€ 1,50
61911230 M12 6 18.8 30 90 3 For a higher retaining force, there should be a countersink made into the shaft.
€ 1,80

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