Calculation of applied lateral load F F = N m g (N) = 0.2 x 10 x 0.1 x 9.8 = 2.1 (N) 1. Calculation of applied lateral load The lateral load F equals the total load of the work piece. Thus, F= 5 x 0.05 x 9.8 = 2.5 (N) 70 Lateral load F (N) 60 0.4MPa 50 40 2. Confirmation of allowable lateral load From the graph, the allowable lateral load at L=50mm and P=0.4MPa is 18N. 2.
Thus, F= 5 x 0.05 x 9.8 = 2.5 (N) 70 Lateral load F (N) 60 0.4MPa 50 40 2. Confirmation of allowable lateral load From the graph, the allowable lateral load at L=50mm and P=0.4MPa is 18N. 2. Confirmation of allowable lateral load In the same way, the lateral load at L=50mm and P=0.4MPa is 48N from the graph.
N l O R RSUIOA32 48 5.5 MOxl 10 G@@-l-qtr-5'i.]
Dimensions n Equation L1=31n+29, L2+31n+14 n: Station 2 91 76 3 122 107 4 153 138 5 184 169 6 215 200 7 246 231 8 277 262 L L1 L2 5.1-25 VEX3 Manifold/VVEX4-1 VVEX4-1 Applicable valve: VEX3420/E3422 VVEX4-2 Applicable valve: VEX3420/E3422 Valve mounting side Internal pilot Common external pilot VEX AN AMC L: Dimensions n L1=46n+31, L2+46n+15 n: Station 2 123 107 3 169 153 4 215 199 5 261
(Ms) | ieries I{VZ 3-port dirct operated I solenoidvahre I NVZ100 | -EEffi rfl|/h afirF I P F P F II I 3-pod pilot operated I solenoid valrre I NVZ300 I @ Internal dlot type I T di**t* | ,oli*,n,* oiJ I K4 q I l-f " " ' n * | {im#h I P F P F II I I tlffi;lI l&*;" 3-port pilotoperated I solenoad Yalve I NVZSOO I @ Inlerml dlol type I "t" ^"" I ilF a{Zl;lh I exrllar pirot ty"pi I l " i I w
Standard item HRSE Acid consumption amount (at pH4.8) [mg/L] 100 or less v Total hardness [mg/L] 200 or less v Calcium hardness (CaCO3) [mg/L] 150 or less v Ionic state silica (SiO2) [mg/L] 50 or less v HRZ Iron (Fe) [mg/L] 1.0 or less v v Copper (Cu) [mg/L] 0.3 or less v Sulfide ion (S2) [mg/L] Should not be detected. v Ammonium ion (NH4+) [mg/L] 1.0 or less v Residual chlorine (Cl) [mg/
C X L + Stroke 20 20 CH2 5 + Stroke 57 + Stroke 5 67 + 2 strokes CHA Related Products 32 to 100 2 x P (port size) H with effective thread depth C 4 x N through hole 8 x O counter bore DF F I I D D M E Z K M E J B + Stroke L + Stroke A + 2 strokes L Note) The auto switches above are shown for a D-M9(W) solid state auto switch.
0.1 0.1 5 L L 0 20 30 50 60 Holding point L (mm) 40 70 0 30 40 60 70 Holding point L (mm) 50 80 90 2.8-4 180 Angular Gripper Series MHY2/MHW2 MHW2-32D MHW2-50D MHW2-20D 300 25 100 Pressure 0.7MPa Pressure 0.7MPa Pressure 0.7MPa 250 20 0.6 80 0.6 0.6 Holding force (N) Holding force (N) Holding force (N) 200 0.5 0.5 0.5 60 15 0.4 0.3 150 0.4 0.4 40 10 0.3 0.3 100 0.2 0.2 0.2 5 20 50 0 0 40
Auto Switch Standard D w/Auto Switch (Magnetic Piston) Style Standard Cylinder K Non-Rotating Cylinder W Double Rod M Male Rod Stud Mounting No. of Switches 2 Pieces S 1 Piece n n Pieces B MX0 Basic L MS1 Foot Bore Size 150 1.5 200 2 250 2.5 325 3.25 400 4 For larger bore sizes up to 32 bore.Please consult CAT: N304-EX F MF1 Front Flange G MF2 Rear Flange R MS4 Side-Tapped See Auto
ZSM PF2 IF Sensor Flow range Data 4 l/min 20 l/min 40 l/min 1.8 l/min 0.4 l/min 10 l/min 0.4 l/min 4 l/min PF2D504 4.5 l/min 0.25 l/min 1.8 l/min 20 l/min PF2D520 1.3 l/min 21 l/min 4 l/min 40 l/min PF2D540 2.5 l/min 45 l/min Rated flow rate range of sensor Set flow rate range of sensor 16-11-47
Lead wire length symbols: 0.5 mNil (Example) C73C 3 m L (Example) C73CL 5 m Z (Example) C73CZ None N (Example) C73CN Since there are other applicable auto switches than listed, refer to page 10-8-24 for details.
G r a p h i c O p e r a t i o n Te r m i n a l Actuator cable* Pages 566, 581 Controller type Standard cable Robotic cable LECP6 (Step data input type) LE-CP-m-S LE-CP-m LECA6 (Step data input type) LE-CA-m LECP1 (Programless type) LE-CP-m-S LE-CP-m The * mark: Can be included in the How to Order for the actuator.
direction Ventilation direction C Ventilation air outlet Drain tube (O.D.: 0.4 [10 mm], Length: 31.5 [0.8 m]) H 4 x 0.5 [4 x 13 mm] N M L K Power cable with plug (Length: 110 [2.8m]) Dimensions Unit: inch [mm] A B C D E F G H J K L M N Q Model Port size 17.8 [453] IDFB4E 1/2 19.6 [498] 11.1 [283] 10.8 [275] 17.9 [455] IDFB6E 0.5 [13] 10.6 [270] 1.2 [31] 1.7 [42] 3.1 [80] 9.1 [230] 1.3 [32
60 20 0.3 0.3 15 40 0.2 0.2 10 20 0.1 0.1 5 L L 0 20 30 50 60 Gripping point L (mm) 40 70 0 30 40 60 70 Gripping point L (mm) 50 80 90 12-10-4 4 Series MHY2/MHW2 180 Angular Style Air Gripper MHZ MHW2-32D MHW2-50D MHW2-20D MHF 300 25 100 Pressure 0.7 MPa Pressure 0.7 MPa Pressure 0.7 MPa MHL 250 20 0.6 80 0.6 Gripping force (N) Gripping force (N) Gripping force (N) 0.6 MHR 200 0.5 0.5 0.5
60 20 0.3 0.3 15 40 0.2 0.2 10 20 0.1 0.1 5 L L 0 20 30 50 60 Gripping point L (mm) 40 70 0 30 40 60 70 Gripping point L (mm) 50 80 90 12-10-4 4 Series MHY2/MHW2 180 Angular Style Air Gripper MHZ MHW2-32D MHW2-50D MHW2-20D MHF 300 25 100 Pressure 0.7 MPa Pressure 0.7 MPa Pressure 0.7 MPa MHL 250 20 0.6 80 0.6 Gripping force (N) Gripping force (N) Gripping force (N) 0.6 MHR 200 0.5 0.5 0.5
seal material in place of "" (N for NBR or V for FPM).
(n 2) 2 20 + 35 55 + 35 (n 2) (n = 2, 3, 4, 5) D-M9 5 20 CHQ 55 (n = 2, 4, 6) Note 3) (n 2) 2 55 + 35 (n 2) (n = 2, 3, 4, 5) 20 + 35 D-M9W 10 20 55 CHK (n = 2, 4, 6) Note 3) (n 2) 2 60 + 35 (n 2) (n = 2, 3, 4, 5) 25 + 35 D-M9A 10 25 60 CHN (n = 2, 4, 6) Note 3) (n 2) 2 50 + 35 (n 2) (n = 2, 3, 4, 5) 15 + 35 D-A9 5 15 50 CHM CHM (n = 2, 4, 6) Note 3) (n 2) 2 35 + 35 (n 2) (n = 2,
YES Calculation of resistance force f n 1 (L/GP) 2 (Provided that L > GP) Calculation of theoretical output F L W Refer to Theoretical Output 1 on page 8-27-3.
VV3Q11 (L5) (L4) (L3) (8.5) 88 L2 48.7 L1 Plug ass'y VVQ100-12A2 3 1 (35) (45) 33 (5.5) 23.5 12.3 E 3 2 R11(Min. bending inner radius) 21.5 Manual override (29.3) 104 D side U side Stations 1 2 3 4 5 n 2-M50.8(E port) 2-M50.8(P port) 42.9 A A (8.5) 20 5 15 (7.5) 5 (A port) n-M50.8 15 P=10 Dimensions n: Stations(Max.18 stations) Equation : L1=10n+32 L2=10n+43 n L 2 52 63 83 112.5 123 3 62