Load rate Ea= K E max Ea=1 0.11=0.11 Work mounting coeficient K: Fig.3 Max. allowable kinetic energy Emax: Table 1 Kinetic energy (E)Allowable kinetic energy (Ea) Possible to use by E=0.0 3 3-1 Load rate of work Calculate static work Wa (N) Wa=1 X 1 X 4=4 K=1 b=1 Wmax=4 a1=1/4=0.25 Wa=K b Wmax Work mounting coeficient K: Fig.3 Allowable load coeficient b: Graph 1 Max.
: Table (2) 1 = W/Wa Find the allowable load weight Wa (kg).
(2) Find the allowable load mass Wa (kg).
Wa = K Wmax Workpiece mounting coefficient K: Fig. (3) Allowable load weight coefficient : Graph (1) Max. allowable load mass Wmax: Table (2) 1 = W/Wa Wa = 1 x 1 x 4 = 4 K = 1 = 1 Wmax = 4 1 = 1/4 = 0.25 3-2 Load Factor of the Static Moment Rolling Yawing Examine My. My = 1 x 9.8 (10 + 30)/1000 = 0.39 A3 = 30 May = 1 x 1 x 18 = 18 Mymax = 18 K = 1 = 1 2 = 0.39/18 = 0.022 Examine Mr.
.=0.045 Load rate 3 3-1 Load rate of moment Wa=W max. Calculate allowable load Wa(N). Wa=112=12 =1 W max.=12 1=2/12=0.167 Allowable load coefficient : Graph 1 Calcurate load rate (1) of moment. Max.allowable load W max. : Table 2 1=W/Wa 3-2 Load rate of static moment M=W(Ln+An)/1000 Corrected value for center position distance of moment An : Table 3 Ma=M max.
Can be used based on E = 0.088 Ea = 0.11 Max. allowable kinetic energy Emax: Fig. 1 Kinetic energy (E) Allowable kinetic energy (Ea) Load factor 3 3-1 Load factor of load weight Wa = K Wmax Find the allowable load weight Wa (kg).
Allowable moment Wmax: Table 2 1=W/Wa Calculate static moment Wa(N) Wa=1 x 1 x 40=40 K=1 =1 Wmax=40 1=10/40=0.25 Calculate load rate 1 of static moment. 3-2 Load rate of static moment Rolling Yawing Calculate static moment M(Nm).
. (3) Allowable load weight coefficient : Graph (1) Wa = 1 x 1 x 4 = 4 K = 1 = 1 Wmax = 4 1 = 0.5/4 = 0.125 Find the allowable load weight Wa (kg).
Output Specification: L2 (IO-Link/Switch output 1 + Switch output 2), Units specification: M (SI units only), Piping Specification: 01 (R 1/8), Option 1: W (Lead Wire w/Connector, 2m Waterproof)
Motor Top Mounting LEYG25, 32 Motor flange Y2 Motor Rod operating range Note 1) (Stroke + 4 mm) 4 x NA Section XX1 4 x OA through thread depth NB H M EV S Q U GA J Y (EB) EA M C EH T EB X 0.5 XA H9 depth XA EC ED B + Stroke Y1 L + Stroke 4 x OA thread depth OB XA H9 DB X Section XX1 (2:1) Bottom hole G through Note 2) depth XA 2 x NA thread depth NC (R2) XAH9 DA P XB (0.5) K Section XX2 WA
Fittings & Tubing Air Cylinders Rotary Actuators DI BJ DH DJ 2 x JF depth JG HA BI WB effective depth WC FE (UV) 8 x WD depth WE (Circumference: 8 equivalents) 1 WA 1 XA 4 x JJ depth JK JA counterbore depth JB 2 x J through 22.5 (mm) DH DI DJ FE HA UV Size BE 1 27h8 27.5h8 14H8 8.2 13.5 29.5 XB effective depth XC WF 2 29h8 29.5h8 14H8 9.7 15.5 33.5 3 34h8 33h8 17H8 9.7 15.5 36 7 40h8 39h8
With air cushion WB 2-P (Rc, NPT, G) WA GB Relief port M5 x 0.8 10 GA W W RA Relief port Width across flats B1 MM H1 D MAX.
WA type connector + to 4 and to 3 according the polarity. For DC voltages other than 12V and 24V,incorrect wiring will case damage to the surge suppressor. The valve with the polarity protection diode be careful about the allowable voltage fluctuation since a voltage drop of about 1V. There is not ground to the valve of the WA type.
XX section QQ section detail drawing Notch spring force adjustment bolt 4 x OA through 4 x OB counterbore depth OL L 4 x MM depth ML 22.5 QQ section 8 x NN depth NL XX section Z WA Q 45 X0.02 RA MGJ RB RC T VB U X PW DB VA H MGP NL HB MGQ HA: T groove for hex. bolt XAH7 depth XL 6 depth 6 +0.05 0 MGG 2 x P GB GA GC PB K J G (Plug) 30 S PA + Stroke C + Stroke FA FB SB SA FC B + Stroke A +
The minimum stroke with rod boot is 20mm. 5 Series CBG1 Air Cushion Type: CBG1BA With rear lock: CBG1BA Bore size Stroke H With front lock: CBG1BA Bore size Stroke R WA WB 2-P W 10 Max.
R 4-J Depth JK Inner cover holding screw TA TA WB WA TB TB R W (mm) C ED A EK B F E G H HA HB HG HI HL HP HS HT J JK K Model +0.030 0 CYP15 5.4 9.5 8 4 9.5 12.5 4H9 6.5 45 19.5 8.5 8.5 23 38.6 44 27 19.5 M6 x 1 10 21 +0.030 0 CYP32 8.6 6H9 13 12 14 6 25 8.5 75 39 19 19 39 64.9 73.5 49.5 39 M10 x 1.5 12 20 LD LW MM M N L P PA PB Q QW R T TA TB W WA WB Y Z Model CYP15 5.6 69 M4 x 0.7 6 4.5
XX section T groove dimensions QQ section detail drawing Notch spring force adjustment bolt 4-OA through L 4-MM depth ML QQ section 22.5 4-OB counter bore depth OL B-NN depth NL XX section Z WA Q 45 RA X0.02 RB RC T VB U X PW VA H NL HB HA: T groove for hex. bolt XAH7depth XL DB 2-P GB GA GC 6+0.05depth 6 o PB K J G (Plug) 30 S PA + Stroke C + Stroke FA FB SB SA FC B + Stroke A + Stroke
Series MGP Dimensions 4-MM depth ML 4-OA through 4-OB depth of counter bore OL Section XX HA:T-slot for hexagon bolt Section XX Z WA L 4-YY depth YL 4-NN through Section XX DL X0.02 X T R X0.02 X0.02 DA VB VA H 24 11 PW X U DB End lock mechanism non-locking type manual release ( ) XAH7 depth XL XAH7 depth XL GC XAH7 depth XL 2-P (plug) 2-P Q GA LL GB PB J K WB WA Z G PA + Stroke C + Stroke
WA WB 8 CA2 45 CS1 C76 N N Rail mounting type (A) Band mounting type (B) or non-magnet C85 C95 With rod boot CP95 Wh K KK NCM NCA C e DAM 9 9 -X f I h 20Data (mm) AM 20 24 BE C 12 14 D 37.5 46.5 Eh8 EE FA G H KK KV WB KW N TDH9 TW WH WA HR K NB S SW TC XB ZZ Bore 10 +0.036 0 12 +0.043 0 0 0.033 9 30 38 32 40 M30 x 1.5 G 1/8 11 M8 x 1 30 58 23.8 10 38 7 17(19) 34.5 68 17 34.5 38 47 184 15.3
.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com MB Cushion needle MB1 HR WA WA WB 8 CA2 45 CS1 C76 N N Rail mounting type (A) Band mounting type (B) or non-magnet C85 C95 With rod boot CP95 Wh K KK NCM NCA C e DAM 9 9 -X f I h 20Data (mm) AM 20 24 C 12 14 Eh8 EE FA KK KV TDH9 TW WA BE D 37.5 46.5 G