70 0.01 2 40 6000 100 40 0.1 3 90 1000 20 1 4 10 +3 5 5 10 +7 6 0 < Cp 5 +10 7 5 < Cp 10 Cw 0.5 8 0.5 < Cw 5 9 5 < Cw 10 x Cp > 10 Cw > 10 > 5 [How to Perform a Test to Check the Performance] ISO 12500, which sets out the test method to be used in order to check the filter performance for each of the three kinds of contaminants, is indicated below.
. 3 8 10 stations 10 Base type 01T, 10: 2 to 10 stations Base type 01C, 01F: 2 to 8 stations Symbol Porting specifications (A, B) Passage Symbol R1, R2 P 1 Side 2 Bottom Common Common Caution Option When using an exhaust cleaner, mount it downwards.
Class M1 to M7 U descriptor: Particles diameter smaller than 0.1 m (SI unit) (British unit) Corresponding class indication ISO Class 1 ISO Class 2 ISO Class 3 ISO Class 4 ISO Class 5 ISO Class 6 ISO Class 7 ISO Class 8 ISO Class 9 Cleanliness classes M1.5 M2.5 M3.5 M4.5 M5.5 M6.5 1 10 100 1000 10 10 The number of particles larger than 0.1 m in an air volume of 1m3 is expressed in 10 N.
H Caution 3.3 L 40 10 H Do not operate with the stroke adjusting unit fixed in an intermediate position.
2 (Different surfaces) 10 n 10 + 30 (n 2) D-A9l 2 (Same surface) 50 1, 2 (Different surfaces) 10 n 10 + 40 (n 2) D-A9lV 2 (Same surface) 40 1, 2 (Different surfaces) 10 n 10 + 30 (n 2) * n = 3, 4, 5 * The D-M9lV/M9lWV/M9lAV/A9lV are mountable on 32 to 63.
HRS012/018--10-T/MT HRS012/018/024/030--20-T HRS012/018/024/030--20-MTNote 1) Applicable model Rated flow50/60Hz Note 2) 3) 7(0.36MPa)/10(0.42MPa) 10(0.44MPa)/14(0.40MPa) 10(0.32MPa/)/14(0.32MPa) Pump 18/22 Maximum flow rate (50/60 Hz) L/min Maximum pump head (50/60 Hz) m 55 70 60 Output W 320 550 Circuit protector 15A (10 A for standard) A 15 Recommended earth leakage breaker capacity 15
A A1 E1 L1 MM RR1 U1 ND NX NZ L 34 41 42 56 71 79 8.5 16 25 30 30 40 50 55 M8 x 1.25 10.3 11.5 34 41 42 56 71 79 8.5 10.5 14 18 21 21 16 20 22 28 38 44 25 30 30 40 50 55 M8 x 1.25 10.3 12.8 12 16 21 24 11.5 14 14 20 27 31 8 10 10 14 18 22 8 10 18 22 28 32 8 10 10 14 18 22 8 10 18 22 28 32 IY-G02 IY-G03 IY-G04 IY-G05 IY-G08 IY-G10 20 25 32, 40 50, 63 80 100 I-G02 I-G03 I-G04 I-G05 I-G08 I-G10
I = I + IA kgm (m to m : Mass of I to I kg) D Calculation example When d1 = 0.1m, d = 0.05m, D = 0.04m, a = 0.04m, b = 0.02m m = 1kg, m = 0.4kg, m = 0.5kg, m = 0.2kg, Gear tooth ratio = 2 Cylinder: I I = 0.2 x = 0.03 x 10 -3kg m I = 1 x = 1.25 x 10 -3 kgm 0.1 8 0.04+0.02 12 b IB = (0.13 + 0.1 + 0.03) x 10 -3= 0.26 x 10 -3 kgm 0.05 8 I = 0.4 x = 0.13 x 10 -3 kgm a IA = 2 x 0.26 x 10 -3 = 1.04
Because the retaining screws extend into the cylinder, this could lead to an air leak. 1 15 D-A7/A8 D-A7H/A80H D-A73C/A80C 10 2 5 1 D-F7 D-J79 D-F7V D-J79C D-A79W D-F7W D-J79W D-F7BAL D-F7WV D-F79F Rail mounting 2 5 1 5 2 15 ( ) 10 1 10 16 2 15 D-F7LF 1 15 1.3-3 Series CJ2 Mounting Accessories/Refer to p.1.3-12 for details.
Select an air-hydro cylinder in combination with an air-hydro unit. Since good operation of an air-hydro cylinder depends on combination with an air-hydro unit, be sure to select an appropriate air-hydro unit. 2. Set the air-hydro cylinder's load at 50% or less of its theoretical output.
5 $0 @8 #7 #6 $1 F G Area G (10) Enlarged view F 10, 15 w u i o !1 #2 q !3 r y e @6 @5 @3 $1 #0 @7 #1 10 Component Parts Note No. Description Material No.
5st 5 st 5 st 10 st 10 st 10 st 10 st 10 st M4 x 0.7 6 6 9 10 12 5 50.5 22 44.5 4 7 14 5 10 8.5 19 60.5 27 54.5 13.5 24 M4 x 0.7 14 5 53 23.5 47 4 10 15 6.5 12 8.5 20.5 63 28.5 57 13.5 25.5 M6 x 1.0 20 8 61 24.5 52 5 12 18 8 16 9.5 23.5 71 29.5 62 14.5 28.5 M6 x 1.0 24 10 67.5 27.5 57.5 5 14 20 10 20 10 27.5 77.5 32.5 67.5 15 32.5 Double clevis bracket material: Carbon steel For details
Bore size/Stroke (mm) Bore size 6 10 15 20 25 32 Standard strokes 10, 20, 30, 40, 50 10, 20, 30, 40, 50, 75 10, 20, 30, 40, 50, 75, 100 Applicable Auto Switches/Refer to page 15 for detailed auto switch specifications.
Never use in an atmosphere with an explosive gas since this may cause a serious explosion. 2. Do not use in an area where a magnetic field is generated.
Compact and light weight The height and width of the covers has been reduced by nearly 10%, and in an addition, die casting of the covers has reduced the weight by 10 to 25% compared to the CA1 series. Improved mounting accuracy High precision has been achieved in the cylinder unit and the mounting brackets.
10 5 5 0 0 5 10 15 20 25 30 35 5 10 15 20 25 30 35 Circulating fluid temperature [] Circulating fluid temperature [] 60Hz 50Hz Fig. 8-3: Cooling Capacity 8.5 Pump Capacity 0.6 60 Usable flow rate range 0.5 50 Circulating fluid outlet (60Hz) Lifting head [m] Pressure [MPa] 0.4 40 0.3 30 0.2 20 Circulating fluid outlet (50Hz) 0.1 10 Circulating fluid return 0.0 0 0 10 20 30 40 50 60 70 80
Appropriate tightening torque (Nm) Bolt Without auto switch With auto switch 6 8 10 10 1.06 M3 x 0.5 0.5 10 0.4 0.4 8 Allowable lateral load W (N) Allowable lateral load W (N) 0.3 0.3 8 Tightening torque Tightening torque 0.2 0.2 6 6 0.1 0.1 Allowable kinetic energy Caution 0 4 6 8 10 15 20 Stroke ST (mm) 0 4 6 8 10 15 20 Stroke ST (mm) When driving an inertial load, operate a cylinder with
Bore size B DA DB DL DU DC DX DE DO DR DT DS DH Z DD H10 32 219 40 237 50 268 63 280 80 351 100 371 MB-B03 32 46 42 32 22 10 44 14 62 9 6.6 15 7 33 213 10+0.058 0 40 52 42 32 22 10 44 14 62 9 6.6 15 7 33 231 10+0.058 0 MB-B05 50 65 53 43 30 11.5 60 20 81 10.5 9 18 8 45 260 14+0.070 0 63 75 53 43 30 11.5 60 20 81 10.5 9 18 8 45 272 14+0.070 0 MB-B08 80 95 73 64 45 14 86 30 111 12.5 11 22 10
This information is needed when contacting an SMC sales distributor. (It is an example of model "HRS040-A-20".)