(0.02 to 11.8in/s) 25 25, 50, 75, 100, 125, 150 200, 250, 300 Allowable kinetic energy J (ftlb) 0.27 (0.20) 0.4 (0.30) 0.65 (0.48) 1.2 (0.89) 32 40 Mounting Bracket Part Numbers Note 1) Intermediate strokes other than the above are produced upon receipt of order.
[mm] 300 100 200 50 100 50mm/s 20 25 32 40 0 1.0 0 2.0 10 Time [s] Cylinder size [mm] 4.10-2 Series RHC low/medium speed opration with heavy loads 20 , 25 , 32 , 40 Cushion Ring MK/MK2 RSQ/RSG The long cushion ring can absorb larger energy (in terms of speed and weight).
depth 12 6 14 50 Up to 300 301 to 1500 35 32 27 32 20 30 2 14 58 11 58 M8 x 1.25 depth 16 7 18 63 Up to 300 301 to 1500 35 32 27 38 20 32 2 14 58 11 72 M10 x 1.5 depth 16 7 18 80 Up to 300 301 to 1500 40 37 32 50 25 40 3 20 71 13 89 M10 x 1.5 depth 22 10 22 100 Up to 300 301 to 1500 40 37 41 60 30 50 3 20 71 16 110 M12 x 1.75 depth 22 10 26 CG3 JMB MB MB1 * For mounting brackets, refer to
9 14 133 142 Up to 300 8 10 32 32 52 36 108 116 118 25 Up to 450 47 4 6.8 28 102 3.2 40 55 20 8 25 135 Up to 450 Up to 300 40 37 7 4 60 75 41 111 Up to 300 9 10 19 30 9 14 137 146 Up to 300 9 10 40 40 60 40 112 120 122 32 Up to 450 47 4 6.8 28 104 3.2 40 55 20 8 25 137 Up to 450 Up to 300 40 37 7 4 60 75 41 113 Up to 300 9 10 19 30 9 14 139 148 Up to 300 9 10 40 40 60 40 114 122 124 40
301 to 400 20 to 300 301 to 400 22 19.5 17 45 104 1/8 51.5 20 12 18 2 97 10 (12) 25 6.5 9 7 10 6 38 Up to 300 301 to 450 20 to 300 301 to 450 30 27 19 52 112 1/8 58.5 26 16 25 2 104 10 (13) 26 7 11 7 12 8 47 Up to 300 301 to 800 20 to 300 301 to 800 Without rod boot With rod boot Bore size (mm) P J K KA MM NA PG PH PL S TA TB TC XA XB l ZZ H e f h ZZ 20 25 32 40 M4 x 0.7 depth 7 5 6 M8 x
300 Pressure 0.6 MP 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Gripping force (N) Gripping force (N) Gripping force (N) Gripping force (N) 400 400 250 250 0.5 MPa 0.5 MPa 0.5 MPa 0.5 MP 0.5 MPa 0.5 MPa 0.5 MPa 0.5 MP 0.5 MPa 0.5 MPa 0.4 MP 0.4 MPa 0.4 MPa 0.4 MPa 0.4 MP 0.4 MPa 200 200 300 300 0.4 MPa 0.4 MPa 0.4 MPa 0.4 MPa 150 150 0.3 MPa 0.3 MP 0.3 MPa 0.3 MPa 0.3 MP 0.3
Up to 300 Up to 300 CS2 Up to 300 Up to 300 Use a thin wrench when tightening the piston rod.
O ring 4.5 X 2.5 X 1 O ring 6.4 X 5.2 X 0.6 O ring 5.5 X 3.5 X 1 O ring 7.4 X 5.8 X 0.8 O ring 6.5 X 4.5 X 1 O ring 11.4 X 9.4 X 1 Valve seal Gasket for valve retainer NBR NBR @7 @8 1.6-7 Series CG1 Basic/CG1BN: With Rubber Bumper (mm) Bore (mm) Standard stroke (mm) Long stroke (mm) TB ZZ GB GA F I MM E C AL H1 KA S D B1 NA A H J K P TA Up to 200 Up to 300 Up to 300 Up to 300 Up to 300 Up
300 6.8 25 102 3.2 131 400 300 34 30 37 107 30 9 14 133 142 8 10 32 32 52 36 108 116 118 40 4 40 55 20 8 21 7 4 60 75 9 10 19 450 300 300 6.8 28 102 3.2 135 450 300 40 37 41 111 30 9 14 137 146 9 10 40 40 60 40 112 120 122 47 4 40 55 20 8 25 7 4 60 75 9 10 19 450 300 300 6.8 28 104 3.2 137 450 300 40 37 41 113 30 9 14 139 148 9 10 40 40 60 40 114 122 124 47 4 40 55 20 8 25 7 4 60 75 9
Up to 300 Up to 300 25 Without rod boot With rod boot Bore size (mm) H1 NA P PG PH PL PW S TA TB TC l H ZZ e f h ZZ Stroke range Rc 1/8 Rc 1/8 Rc 1/8 Rc 1/8 33 38 39 44 55 62 62 70 19.5 24 24 24 16 17 17 17 20 24 24 24 30 30 35 35 38 41 41 41 178 193 196 221 141 151 154 169 35 40 40 50 Up to 200 Up to 300 Up to 300 Up to 300 11 11 11 12 5 6 6 8 11 11 10 10 24 29 36 44 M5 x 0.8 M6 x 0.75
Up to 300 122 1/2 100 196 Up to 300 13
With Rod Boot (mm) Item h KK 1 to 50 AM C e f K Stroke 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 Bore 20 20 8 36 20 6 M8 x 1.25 71 84 96 134 159 109 25 22 10 36 20 8 M10 x 1.25 74 87 99 137 162 112 187 Item Wh I Stroke 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 Bore
, 1000 200, 250, 300 63 350, 400, 450, 500, 600, 700, 800, 900, 1000, 1100 MGGL Ball bushing 80 350, 400, 450, 500, 600, 700, 800, 900, 1000, 1100, 1200 100 350, 400, 450, 500, 600, 700, 800, 900, 1000, 1100, 1200, 1300 Intermediate strokes and short strokes other than the above are produced upon receipt of order.
301 to 400 401 to 500 77 90 102 115 140 165 190 88 101 113 126 151 176 201 Stroke Bore 32 20 12 35 30 10 M10 x 1.5 40 24 14 46 35 12 M12 x 1.75 Item I Wh Bore Stroke 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 57 70 82 95 120 145 170 64 77 89 102 127 152 177 32 12.5 25 37.5 50 75 100 125
301 to 400 401 to 500 77 90 102 115 140 165 190 88 101 113 126 151 176 201 Stroke Bore 32 20 12 35 30 10 M10 x 1.5 40 24 14 46 35 12 M12 x 1.75 Item I Wh Bore Stroke 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 57 70 82 95 120 145 170 64 77 89 102 127 152 177 32 12.5 25 37.5 50 75 100 125
300 100 MI W S 100 300 Speed (mm/s) Speed (mm/s) Speed (mm/s) 300 300 CEP1 Max. 500 mm/s of high speed transfer is possible.
Load (kg) Load (kg) 10 10 30 10 100 300 Speed (mm/s) Speed (mm/s) Speed (mm/s) 300 300 REA REB Stroke Stroke Speed REC CY Time Time Stroke P=0.5 MPa,M=10 kg P=0.3 MPa,M=10 kg M=10 kg M=30 kg V=300 mm/s V=100 mm/s CX MQ Model Recommended Speed Controllers Caution RHC RZQ Model Elbow type Straight type In-line type REC20 AS2201F-01-06-X214 AS2001F-06-X214 AS2301F-01-06-X214 REC25 AS2201F
Load (kg) Load (kg) 10 10 30 10 100 300 Speed (mm/s) Speed (mm/s) Speed (mm/s) 300 300 REA REB Stroke Stroke Speed REC CY Time Time Stroke P=0.5 MPa,M=10 kg P=0.3 MPa,M=10 kg M=10 kg M=30 kg V=300 mm/s V=100 mm/s CX MQ Model Recommended Speed Controllers Caution RHC RZQ Model Elbow type Straight type In-line type REC20 AS2201F-01-06-X214 AS2001F-06-X214 AS2301F-01-06-X214 REC25 AS2201F
Example) Find the maximum load weight when using a cylinder with 32, stroke 500 mm, with rear plate as a lifter at an average speed of a 300 mm/s. Rush speed into cushion is as follows: M + m 2 = 1.4a Ek = 2 Ek: Kinetic energy (J) M: Weight for the driven object (kg) m: Weight for movable part of cylinder (kg) : Maximum speed (m/s) a: Average speed (m/s) = 1.4 x 300 = 420 mm/s.
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