When using a single/double knuckle joint together with a rod end nut, the A and H dimensions should be extended.
Calculate the moment of inertia for A and B separately as shown in the figures on the right. A part B part Procedure Calculation Calculation example 1. Check the operating conditions, dimensions of attachment, etc. Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d 2.
Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com c B part e f d 2.
size (mm) 2-6.6 A + Stroke B + Stroke L G 8 FZ FX B A A B 5 to 50 5 to 50 29.5 32.5 69 76.5 19.5 22.5 59 66.5 20 25 Bore size (mm) FZ FX FV G L L1 S Rod end nut 60 64 27 31 48 52 39 42 4.5 5 18.5 22.5 40.7 44.2 20 25 L1 Double clevis type: CLQD/CDLQD CD hole H10 Shaft d9 4-M5 x 0.8 Cap bolt Double clevis type (mm) S Stroke range Without auto switch With auto switch Bore size (mm) A B 69
Example using a 20[mm] Lead Actuator with target travel speed of 500[mm/sec] Rotations per second Travel distance per second Travel distance per rotation Rotation Speed (rpm) = {Speed (mm/s) Lead (mm) }60 (S) = {500 (mm/s) 20 (mm) }60 (s) =1500 (rpm) The rotation speed must be a value between 0 and the allowable actuator speed. The actuator will not operate if set to 0.
l (mm) A A' s i s .D I E I F GA I GsJ H I I Bore Size J MM NN 6 7 9 14 14 3 10.5 8 6 6 17 10 10 12 15 17 5 13 I 8 6 I 7 20 L .. 6 M3x O.5 MlO xlO 7 3.4 1.6 24 16 32 97 ; ~ 4.5 Hi ' 28 1S 10 5.5 1 2.3 36 22 49 ~ 7 I M4X O.7 M12X1 .. 0 15 12 14 20 1 19 6 15.5 I 10 6 I 7 24 9 I M5X O.8 MI4 X tO - Series CJP 2-M5xo.B z H s A F GA G8 A A' jI ~: 1=r=if1+ :' -,LitL*'ft ? .. =.'
freezing) 30 to 700 mm/s 30 to 800 mm/s 30 to 600 mm/s Rubber bumper at both ends 0 to 5 mm compared to the standard stroke M3 0.5 M5 0.8 Rc (NPT, PF) 1/8 The maximum piston speed shown in the table above is for extension.
T) LVQ LQ (mm) Dimensions PB LVN T U Model LVD2-S LVD3-S LVD4-S LVD5-S PA 28 9.6 TI/ TIL 34 17.5 A B 35 20 U PA 57 25 PAX With flow rate adjustment & by-pass PB (Max. S) (Max.
S D MIW Double finger type 32 50 1 A S D M9B MIS Single finger type Scraper Cylinder bore 8 12 20 25 32 Nil S No Yes 8 mm 12 mm 10 mm 25 mm 32 mm Number of auto switches Nil S 2 pcs. 1 pc.
1 Escapements Series MIW/MIS 8, 12, 20, 25, 32 RE A B REC CX CY MQQ M RHC MK(2) RS Q G RS H A RZQ MI W S CEP1 CE1 CE2 ML2B C J G5-S CV MVGQ CC RB J Ideal for separating and feeding individual parts from vibratory feeders, magazines, and hoppers.
Wireless Remote A unit which establishes wireless communication of input or output data to a Wireless Base. Wireless unit A unit which establishes wireless communication.
(mm) 13 16 29.8 47 32 35 ZPR32F-0-B8 M8 x 1.25 Q: 4 Q: 6 Pad diameter (mm) Dimensions by Tubing Diameter R 20.6 R S 12.8 S 10 to 16 (mm) 10.4 21.6 Q: 6 Q: 8 Pad diameter (mm) R 24.3 R S 15.2 S ZPR F-0-B8 (Without buffer/Female thread) 40 50 20 to 32 12.8 26.2 S Hexagon width across flats 12 N 8 R F Applicable tubing O.D.Q E D C Y 2.5 A B Dimensions (mm) A B C D E F N Y Model ZPR40F-0-B8
required flow rate to operate a 40 cylinder at a speed of 60mm/s is approximately 4.5l/min.
Female lhread length {"1') is shonerfor the lollowing . 2o0 (2') 1/g & 1A st. 1/s & 1/a st. r/s & 1/a st. l=o.44 25O (2112')' I/s st. r/s st. '/s stl=0.44 300 (3") ]/s & 1/a st. 1/e &r/l st. 1/e & 1A st. 400 (4) 1/s &1/a st. r/s & 1/a st. 1/e &14 st. Series NCQT Dimensions Spring Extend NCQTBO-OT T Type Bore,, 9t4,F' I 60re ,b,:!
Q H R R H F F E E D C D C Y Y 2.5 2.5 A B A B With a stroke of 10mm With a stroke of 20 to 50mm Dimensions/10mm stroke Additional dimensions by stroke(mm) (mm) I H J Q: 6 Q: 8 Stroke A B C D E F H I J Y Model R S R S 20 +10 3 0 ZPR40F10-0-A14 ZPR50F10-0-A14 30 40 43 12.5 18.5 32.3 49.5 61.5 129.5 5 +20 +7 50 12.8 24.3 15.2 26.2 50 50 53 13.5 19.5 33.3 50.5 62.5 130.5 6 +25 +40 +52 15
DENMARK SMC Pneumatik A/S FINLAND SMC Pneumatiikka OY FRANCE SMC Pneumatique SA GERMANY SMC Pneumatik GmbH HUNGARY SMC Hungary Kft. IRELAND SMC Pneumatics (Ireland) Ltd. ITALY SMC Italia S.p.A. NETHERLANDS SMC Pnuematics BV. NORWAY SMC Pneumatics Norway A/S POLAND SMC Industrial Automation Polska Sp.z.o.o. ROMANIA SMC Romania s.r.l. RUSSIA SMC Pneumatik LLC. SLOVAKIA SMC Slovakia s.r.o.
Female lhread length {"1') is shonerfor the lollowing . 2o0 (2') 1/g & 1A st. 1/s & 1/a st. r/s & 1/a st. l=o.44 25O (2112')' I/s st. r/s st. '/s stl=0.44 300 (3") ]/s & 1/a st. 1/e &r/l st. 1/e & 1A st. 400 (4) 1/s &1/a st. r/s & 1/a st. 1/e &14 st. Series NCQT Dimensions Spring Extend NCQTBO-OT T Type Bore,, 9t4,F' I 60re ,b,:!
M2 Find the value of M2 max. at 300 mm/s in Graph (2). m x g M1E = 1/3 x FE x L1 (FE = 1.4/100 x a x g x m) = 0.05 x a x m x L1 = 0.05 x 300 x 0.5 x 0.05 = 0.375 [Nm] 3A = M1E/M1E max = 0.375/1.07 = 0.350 Investigate M1E. Find the collision speed . =1.4 x a =1.4 x 300 =420 [mm/s] 3. Dynamic moment L1 M1 a Find the value of ME1 max. at 420 mm/s in Graph (1).
Dynamic moment M1E = 1/3 x FE x L1 (FE =1.4/100 x a x g x m) =0.05 x a x m x L1 =0.05 x 300 x 3 x 0.05 =2.25 [Nm] Investigate M1E. a Find the collision speed . = 1.4 x a = 1.4 x 300 = 420 [mm/s] Find the value of M1E max at 420 mm/s in Graph (1).