The maximum load speed V [mm/s] is approximately equal to V1 x 1.4 (1) V1: Average load speed [mm/s] V1 = st/t st: Load transfer distance [mm] t: Load transfer time [s] CNG MNB CNA Find the bore size. Step (2) 1.
How to Order q w e r t y u i o !
F3 = (W + WB) x 9.8 x ( + 1) Refer to the allowable driving force table for (Fn) of data A. WB > WBmax Determination of connection fitting weight (WB) Review of connection fitting WB WBmax (See the standard stroke table on p.59.)
Material: Carbon steel Dd9 d L Part No. m t l 0.040 0.076 CD-S02 CD-S03 20/25 32/40 8 C8 type for pivot 7.6 24.5 19.5 1.6 0.9 0.040 0.076 10 C10 type for pivot 9.6 34 29 1.35 1.15 Applicable bore size 20 25/32 40 Part No.
Component Parts No. q w e r t y u No. i o !0 !1 !2 !3 !
Component Parts No. q w e r t y No. u i o !0 !
The maximum load speed V[mm/s] is approximately equal to V1 x 1.4 . (1) V: Average load speed [mm/s] V = st/t st: Load transfer distance [mm] t: Load transfer time [s] Find the cylinder bore size. Step 2 1. For vertical mounting 2.
The maximum load speed V[mm/s] is approximately equal to V1 x 1.4 . (1) V: Average load speed [mm/s] V = st/t st: Load transfer distance [mm] t: Load transfer time [s] Find the cylinder bore size. Step 2 1. For vertical mounting 2.
WA WB View E NN F GB GC GA Mounting nut Mounting nut Relief port M5 x 0.8 Rod end nut MM NN F Piping port 2 x M5 x 0.8 Cover surface D LY LB LH LT LZ LX LT S + Stroke H NA A NB Y X Y X 4 x LC Mounting hole LS + Stroke Z + Stroke WW C B 0 0.3 B 0 0.3 Drawing of view E (mm) Z S WW WB WA NB NA NN MM H GB GA F D C B A Y X 91.5 92.5 LS LZ 42 42 25 25 LY LX 33 33 2.3 2.3 LT 14 14 LH 5.5 5.5 LC
(mm) Internal cross section a (mm 2) Nominal size = Length of piping [mm] a = Internal cross section of piping [mm 2] T 0425 T 0604 TU 0805 T 0806 1/8B T 1075 TU 1208 T 1209 1/4B TS 1612 3/8B T 1613 1/2B 3/4B 1B 4 2.5 4.9 [l (ANR)] QC = Air consumption required for one reciprocation of rotary table 6 4 12.6 8 5 19.6 8 6 28.3 6.5 33.2 7.5 10 44.2 12 8 50.3 12 9 63.6 9.2 66.5 16 12 113 12.7
9 e r Component Parts Description Material Description Material No. q w e r t y u i o !0 !1 !2 !3 !4 No.
A22 Symbol: A23 Symbol: A24 30 30 DA L RD MM 30 MM DA 30 MM MM DB DB T T C B A H AL H A L K H A A W H H Symbol: A25 Symbol: A26 Symbol: A27 Symbol: A28 Symbol: A29 DA 30 MM MM DA 30 DA 30 30 MM L W MM A L H AL H LB K A AL A H L A H T AL L K H MM Symbol: A30 30 MM W A T H 84 Simple Specials Series CP96/C96 Symbol Change of Trunnion Bracket Mounting Position 2 -XC14 Series C85 Series
Actuator driving system Inside of clean room w t e q r t q Cylinder relief port piping w Solenoid valve exhaust piping e Breathing piping of regulator r Drain piping t Exhaust Cleaner for Clean room/AMP series Cylinder relief port piping Series 10-/12-/21(atmospheric release type) Connect the relief port piping with the dedicated duct piping installed outside the clean room or with the exhaust
7 Oil-impregnated sintered alloy Urethane 40 or larger: Lead-bronze casted Bushing t Urethane Cushion seal A !8 NCM Bumper A y Urethane Cushion seal B !
MEmax is the allowable moment for V. 3 = ME/MEmax 3: Dynamic moment Calculation example z Mounting on horizontal wall [1] Operating Conditions CY1SG25-600 Wa: Connection plate t = 10 (1.5 kg) Cylinder: CY1SG25-600 Cushion: Shock absorber Mounting: Horizontal wall mounting Speed: Va = 250 [mm/s] Wc: Rod L = 50 (0.5 kg) Wd: Workpiece (2.5 kg) [2] Load Blocking Wb: Arm L = 105 (1.0 kg) A = 33
Inclined operation W+WBWV PPV W + WB>WV P>PV Allowable driving force table (Fn) (n = 1, 2, 3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (cos + sin) Inclined F3 = (W + WB) x 9.8 x ( + 1) Vertical (Refer to page 4 for connection fitting weight.)
T2 = [s] L 0.5 V (T1 + T3) V T = T1 + T2 + T3 + T4 Duty ratio: Ratio of T to T6 T T6 x 100 T4 varies depending on the motor type and load.
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