SMC Corporation of America
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Search Results "KKH3S-60N"

/O.D. mm Part no. 5/8 6/9 6.5/10 5/8 6/9 6.5/10 8/12 8.5/12.5 5/8 6/9 6.5/10 5/8 6/9 6.5/10 8/12 8.5/12.5 KK3P-50N -60N -65N KK4P-50N -60N -65N -80N -85N KKH3S-50N -60N -65N KKH4S-50N -60N -65N -80N -85N 1/8 1/8 1/4 1/4 Use Series KK plug with Series KKH socket, as there is no plug available in Series KKH.

/O.D. mm Part no. 5/8 6/9 6.5/10 5/8 6/9 6.5/10 8/12 8.5/12.5 8/12 8.5/12.5 11/16 5/8 6/9 6.5/10 5/8 6/9 6.5/10 8/12 8.5/12.5 8/12 8.5/12.5 11/16 KK3P-50N -60N -65N KK4P-50N -60N -65N -80N -85N KK6P-80N -85N -110N KK3S-50N -60N -65N KK4S-50N -60N -65N -80N -85N KK6S-80N -85N -110N 1/8 1/8 1/4 1/4 1/2 1/2 Straight type with One-touch fitting Straight type with One-touch fitting Applicable

/O.D. mm Part no. 5/8 6/9 6.5/10 5/8 6/9 6.5/10 8/12 8.5/12.5 8/12 8.5/12.5 11/16 5/8 6/9 6.5/10 5/8 6/9 6.5/10 8/12 8.5/12.5 8/12 8.5/12.5 11/16 KK3P-50N -60N -65N KK4P-50N -60N -65N -80N -85N KK6P-80N -85N -110N KK3S-50N -60N -65N KK4S-50N -60N -65N -80N -85N KK6S-80N -85N -110N 1/8 1/8 Auxiliary Pneumatic Equipment Air Preparation Equipment 1/4 1/4 1/2 1/2 Straight type with One-touch

/O.D. mm Part no. 5/8 6/9 6.5/10 5/8 6/9 6.5/10 8/12 8.5/12.5 8/12 8.5/12.5 11/16 5/8 6/9 6.5/10 5/8 6/9 6.5/10 8/12 8.5/12.5 8/12 8.5/12.5 11/16 KK3P-50N -60N -65N KK4P-50N -60N -65N -80N -85N KK6P-80N -85N -110N KK3S-50N -60N -65N KK4S-50N -60N -65N -80N -85N KK6S-80N -85N -110N 1/8 1/8 1/4 1/4 1/2 1/2 Straight type with One-touch fitting Straight type with One-touch fitting Applicable

KK130P-50N -60N -65N -80N -85N -110N KK130S-50N -60N -65N -80N -85N -110N 5/8 5/8 6/9 6/9 6.5/10 6.5/10 8/12 8/12 8.5/12.5 8.5/12.5 11/16 11/16 Refer to the how to order on page 1 for the sleeve lock mechanism provided type. One-touch fitting type One-touch fitting type Model Model Applicable tube O.D. Applicable tube O.D.

Allowable Radial Load 20N 40N 50N 80N 15N 30N 60N Allowable Thurst Load (note 2) Axial Load 40N 10N 15N 30N 2.9N.m Allowable Moment 0.3N.m 0.7N.m 0.9N.m Bearing Bearing Bearing Bearing Bearing D I M E N S I O N S S E E N E X T P A G E Port Position Body Side or Axial Direction Body Side or Axial Direction Body Side or Axial Direction Body Side or Axial Direction M5 x 0.8 Body Size Port

Allowable Radial Load 20N 40N 50N 80N 15N 30N 60N Allowable Thurst Load (note 2) Axial Load 40N 10N 15N 30N 2.9N.m Allowable Moment 0.3N.m 0.7N.m 0.9N.m Bearing Bearing Bearing Bearing Bearing D I M E N S I O N S S E E N E X T P A G E Port Position Body Side or Axial Direction Body Side or Axial Direction Body Side or Axial Direction Body Side or Axial Direction M5 x 0.8 Body Size Port

(13.4lbf) Shaft load Allowable thrust load 15N (4.4lbf) 30N (6.7lbf) 60N (13.4lbf) 80N (17.9lbf) Allowable moment 0.3Nm (2.65lbin) 0.7Nm (6.19lbin) 0.9Nm (7.96lbin) 2.9Nm (25.66lbin) Bearing Special bearings Port position Side ports or Top ports Side ports M5 x 0.8 (10-32 nominal) M3 x 0.5 Port size Top ports M3 x 0.5 M5 x 0.8 (10-32 nominal) Deflection accuracy 0.03mm or less (0.0012")

ML2B32 15N Va 0.25m/s 0.5MPa L1 0.05m L2 0.05m W W 1 L L1 W W W M We M3 V M1 V <> W max=60N( Va P 19) a1= W = 15 =0.25 W max 60 M 2 max=2Nm( Va P 19) a2= M = 0.75 =0.375 M max 2 <> We=1.410VaW=1.4100.2515=52.2N M max=3.5Nm( V=1.4Va) M 3 WeL 1 =52.50.05 1 =0.88Nm 3 3 a3= M 3 = 0.88 =0.25 M 3max 3.5 M max=12Nm( V=1.4Va) M 1 WeL 1 1 =52.50.05 1 =0.88Nm 3 3 a4= M 1 =

H=0.1 m Fs=20 N If MSUA7 is selected under those conditions, thrust load of 20N will be within the allowable value of 60N, Fig.3 but moment will be 20N X 0.1m=2Nm, and it exceeds the allowable moment of 0.9Nm, so that it can not be used.

For setting the holding force to be at least 20 times the work weight: Required holding force = 0.3kg X 20 X 9.8m/s2 60N 20 40 60 70 80 100 120 0 Holding point R (mm) Holding point R = 70mm Operating pressure: 0.5MPa If it is not particularly necessary to locate the workpiece, and the air gripper is to be used by merely hooking the workpiece to the attachment, it is possible to move a workpiece

working pressure Example: Determine the theoretical size of a cylinder operating at a pressure of 6 bar that would generale a clamping force of 1600 N. ttf i Assuming an extending stroke:Fe= G ' p 4'1600 N Transposing: D = = 0.0583 m = 58.3 mm. r'60N/m2 A 63 mm. Dia. cylinder would be selected, the larger size providing extra torce to overcome frictional resisiance.

s m m Horizontal /Vertical Orientation, Linear Ball Bearing Guide Series LXP Max, pay load: 60N (ln horizontal mounting) Max. pay toad: 50N (ln vertical mounting) ax. thtust: 220N Max, speed: 200mm/s Avallable suokee: 50mm, 75mm, 100mm, 125mm, 15omm, 175mm, 200mm 2-phsse steppinq motor, screw lead 1 2 5-pha3. slepping motor, screw led 1 2 Horizontal/Vertical Orientation, Slide Table With

working pressure Example: Determine the theoretical size of a cylinder operating at a pressure of 6 bar that would generale a clamping force of 1600 N. ttf i Assuming an extending stroke:Fe= G ' p 4'1600 N Transposing: D = = 0.0583 m = 58.3 mm. r'60N/m2 A 63 mm. Dia. cylinder would be selected, the larger size providing extra torce to overcome frictional resisiance.

s m m Horizontal /Vertical Orientation, Linear Ball Bearing Guide Series LXP Max, pay load: 60N (ln horizontal mounting) Max. pay toad: 50N (ln vertical mounting) ax. thtust: 220N Max, speed: 200mm/s Avallable suokee: 50mm, 75mm, 100mm, 125mm, 15omm, 175mm, 200mm 2-phsse steppinq motor, screw lead 1 2 5-pha3. slepping motor, screw led 1 2 Horizontal/Vertical Orientation, Slide Table With