Drain) PANEL FITTING IN OUT Z CC Bowl Detail EE (AW20) AA K L V U X W T J S Y Q F Bracket and Mounting Nut (Optional) H IN OUT Note: Sight glass not applicable to AW20.
Lock button 12 B AC10-A Series AC20-B to AC60-B Series Dimensions AC10-A S N A F M J R B C V Q2 Q1 Q1 IN OUT 2 x P1 (Port size) U P2 G Clearance for maintenance (Pressure gauge port size) Drain AC20-B S N A F M J R B C Q2 V Q1 Q1 K IN OUT 2 x P1 (Port size) U P2 G Clearance for maintenance (Pressure gauge port size) Drain AC25-B to AC60-B N A F S J M R V Q1 Q1 B C K OUT IN 2 x P1 (Port size
When ordering the double clevis, the clevis pin and the cotter pin (2 pcs.) are attached. 6-9-2 3 Series CS1 Air Cylinder: Standard Type Dobule Acting, Single Rod Specifications Air-hydro Type Lube, Non-lube Fluid Turbine oil Air 1.57 MPa Note) Proof pressure 0.97 MPa Maximum operating pressure Minimum operating pressure 0.06 MPa 0.05 MPa Piston speed 0.5 to 200 mm/s 50 to 500 mm/s Cushion
TB PLC 0 No. 3 ABS 1 INC 2 *1 (mm/s) (-) (+) mm 42 - 1 mm/s 2 1 mm/s 2 100% * *1 0 1100 1100 INP ON INP ON *1 1100 ( mm/s) *1 * *1 (mm/s) * (-) (+) AREA ON mm 1122 AREA ON 1 1 *1(1)2(2) 1=2=0 AREA OFF 2 2 (-) (+) 43 - mm mm INP ON INP ON *1 * INP ON () INP ON *1 44 - 11.2 ID ID 132 ID () IO IO * [64 ] * [] S S * (+) (+) *1 + mm (-) (-) *1
200mm/s 30mm/s 80mm/s Positioning repeatability :tO.05mm i0.03mm Type ot guide Linear guide Operating temperature range s to 4o"C (40-105"F) Pitch (Nm) Statlc moment allowance Boll (Nm) Yaw (Nm) 4 Construction Com 1 0 Stopper B Sensor plate Sofl steel Chrcmated 12 Co!
m s m s Type of impact s m Kinetic energy E1 1 2 m2 Thrust energy E2 Fs Fs + mgs Fs mgs Absorbed energy E E1 + E2 Symbol : Speed of impact object (m/s) m: Weight of impact object (kg) F: Cylinder thrust (N) g: Gravitational acceleration (9.8 m/s2) s: Shock absorber stroke (m) Note) The speed of the impact object is measured at the moment of impact with the shock absorber. 8-12-11 12 Series
Horizontal collision Vertical (Downward) Vertical (Upward) MY3A MY3B m s MY3M Type of impact m s Caution s m
L Speed:V [mm/s] Calculation example) T1 to T4 can be calculated as follows. a1 a2 T = T1 + T2 + T3 + T4 [s] Time [s] T1 = V/a1 = 300/3000 = 0.1 [s], T3 = V/a2 = 300/3000 = 0.1 [s] P T1: Acceleration time and T3: Deceleration time can be obtained by the following equation.
1 to 50st 51 to 100st 101 to 125st 126 to 200st Bore (mm) 20 25 32 40 TA TB TC ZZ 211 213 230 ZZ 181 186 188 205 S 144 144 146 153 ZZ 156 161 163 180 S 119 119 121 128 ZZ 131 136 138 155 S 94 94 96 103 169 171 178 11 11 11 12 11 11 10 10 M5 M6 X 0.75 M8 X 1.0 M10 X 1.25 Note) The drawing below shows the single acting/spring return style.
If those values are input, the Return to Origin operation cannot be performed as the speed becomes 0 mm/s.
Load mass kg Load mass kg m s m s Type of impact s m 1 m 2 Kinetic energy E1 Thrust energy E2 Fs Fs + mgs Fs mgs Absorbed energy E E + E Symbols : Speed of impacting object (m/s) m: Mass of impacting object (kg) F: Cylinder thrust (N) g: Gravitational acceleration (9.8m/s) s: Shock absorber stroke (m) Note) The speed of the impacting object is measured at the time of impact with the
075 (3/4") NCQ8B075-S-PS 106 (1-1/16") NCQ8B106-S-PS Piston seal is included. 150 (1-1/2") NCQ8B150-S-PS 200 (2") NCQ8B200-S-PS 250 (2-1/2") NCQ8B250-S-PS With auto switch Here is the typical, cross-sectional construction.
m s m s Type of impact s m Kinetic energy E1 1 2 m2 Thrust energy E2 Fs Fs + mgs Fs mgs Absorbed energy E E1 + E2 Symbol : Speed of impact object (m/s) m: Weight of impact object (kg) F: Cylinder thrust (N) g: Gravitational acceleration (9.8 m/s2) s: Shock absorber stroke (m) Note) The speed of the impact object is measured at the moment of impact with the shock absorber. 8-12-11 12 Series
T h e s y s t e m c a n n o t b e u s e d I s i t p o s s i b l e t o t a k e I s c o o l a n t , o i l , b e c a u s e t h e s e e l e m e n t s c o u l d m e a s u r e s s u c h a s d a m a g e t h e s e n s o r o r p r o m o t e w a t e r , o r d u s t p r o t e c t i n g t h e c y l i n d e r t h e d e t e r i o r a t i o n . p r e s e n t ? w i t h a c o v e r ?
200 400 600 800 1000 1200 0 100 200 300 400 500 600 0 200 400 600 800 1000 1200 V (mm/s) V (mm/s) V(mm/s) LEFS16 LEFS25 LEFS32 50 12 B B 20 B A 10 A 40 H H A W(kg) W(kg) W(kg) 15 8 30 6 10 20 4 5 10 2 0 0 0 0 100 200 300 400 500 600 0 100 200 300 400 500 600 0 100 200 300 400 500 600 V(mm/s) V (mm/s) V(mm/s) 10 - Step motor (servo 24VDC) Ball screw drive LEFS40 Model 150 to 1200 Stroke [
to 1000 mm/s (Refer to page 10-5-7.) (3) Piston speed H (High speed/High frequency type) 5 mm/s to 3000 mm/s (Refer to page 10-5-7.)
R Thrust energy E2 m g S F S + m g S F S m g S Absorbed energy E E1 + E2 E1 + E2 E1 + E2 E1 + E2 Note 2) E 2 2 E 2 2 E 2 2 E 2 2 Equivalent mass Me Note 1) This is the momentary speed at which an object is impacting against a shock absorber.
Maximum speed (mm/s) VQ4000 (36.0) Tubing I.D.
to 1000 mm/s (Refer to page 10-5-7.) (3) Piston speed H (High speed/High frequency type) 5 mm/s to 3000 mm/s (Refer to page 10-5-7.)
C S C S C S C 0.016 0.043 MHZL2-10 K 12f8 62.8 11 7 15 End boss assembly Applicable tubing Plug 0.016 0.043 MHZL2-16 K 16f8 66.4 15 10 20 H G Note 1) 0.020 0.053 MHZL2-20 K 20f8 81.7 19 12 22 D2 0.020 0.053 Other dimensions and specifications correspond to the standard type.