Stations: 1 Station, Port Size: 03 (Rc3/8), Option: SB (Built-in Silencer, Direct Exhaust from Both Sides)
Stations: 4 Stations, Port Size: N7T (1/4" One-touch Fitting), Electrical Entry Direction: U (Plug-in L Kit U Side), Cable Length: 2 (3.0m Cable), Control Unit: None, Release Valve Rated Voltage: w/o Air Release Valve, Option 1: SB (Built-in Silencer, Direct Exhaust from Both Sides), Option 2: W (IP65 Protection Compatible)
Stations: 1 Station, Port Size: 04 (Rc1/2), Option: SB (Built-in Silencer, Direct Exhaust from Both Sides)
Stations: 8 Stations, Port Size: 03T (NPTF3/8), Option 1: SB (Built-in Silencer, Direct Exhaust from Both Sides)
Stations: 4 Stations, Port Size: 04 (Rc1/2), Electrical Entry Direction: D (Plug-in F Kit D Side), Cable Length: 3 (5.0m Cable 25 Pin), Option: SB (Built-in Silencer, Direct Exhaust from Both Sides)
Stations: 10 Stations, Port Size: 03 (Rc3/8), Electrical Entry Direction: D (Plug-in F Kit D Side), Cable Length: 3 (5.0m Cable 25 Pin), Option: SB (Built-in Silencer, Direct Exhaust from Both Sides)
Stations: 5 Stations, Port Size: N7T (1/4" One-touch Fitting), Electrical Entry Direction: D (Plug-in L Kit D Side), Cable Length: 1 (1.5m Cable), Control Unit: None, Release Valve Rated Voltage: w/o Air Release Valve, Option 1: SB (Built-in Silencer, Direct Exhaust from Both Sides)
Stations: 10 Stations, Port Size: 04 (Rc1/2), Option: SB (Built-in Silencer, Direct Exhaust from Both Sides)
Stations: 10 Stations, Port Size: 04 (Rc1/2), Electrical Entry Direction: D (Plug-in F Kit D Side), Cable Length: 3 (5.0m Cable 25 Pin), Option: SB (Built-in Silencer, Direct Exhaust from Both Sides)
Stations: 2 Stations, Port Size: 04 (Rc1/2), Option: SB (Built-in Silencer, Direct Exhaust from Both Sides)
Stations: 2 Stations, Port Size: 02T (NPT1/4), Electrical Entry Direction: U (Plug-in L Kit U Side), Cable Length: 1 (1.5m Cable), Control Unit: None, Release Valve Rated Voltage: w/o Air Release Valve, Option 1: SB (Built-in Silencer, Direct Exhaust from Both Sides), Option 2: W (IP65 Protection Compatible)
L1 From V = 1.4 Va We = W V = 4/100 10 1.4 300 = 168 [N] Me3 = 1/3 We (L2 A) = 1/3 1680.032 = 1.8 [Nm] 3 = Me3/Me3 max = 1.8/7.2 = 0.250 cDynamic moment Examine Me3. Find the load equivalent to impact We. Damper coefficient = 4/100 (urethane damper) Me3 Guide central axis L2 We W A Find the value of Me3 max when V = 1.4 and Va = 420 mm/s from Graph (2). Me1 Examine Me1.
Maximum load mass m 1 = m/mmax = 1/5 = 0.20 L2 Review m. L1 M2 = m g (L1 + B) 103 2. Static moment m x g = 1 9.8 (50 + 48) 103 Review M2. Since M1 & M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103 m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We (L2 + A) 103 3.
Maximum load mass m 1 = m/m max = 1/5 = 0.20 L2 Review m. L1 2. Static moment M2 = m g (L1 + B) 103 m x g = 1 9.8 (50 + 48) 103 Review M2. Since M1 and M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We(L2 + A) 103 3.
A3 W MX Mp Mr My MTS W W W MY L1 A2 L3 A5 W L2 A4 CY Mey Note) No need to consider this load factor in the case of using perpendicularly in a vertical position.
L2 [mm] L2 [mm] L2 [mm] 600 600 600 Y 400 400 400 Mer m 200 200 200 0 0 0 0 5 10 15 20 25 30 35 0 10 20 30 40 50 0 10 20 30 40 50 60 70 Work load [kg] Work load [kg] Work load [kg] 1000 1000 1000 800 800 800 Mep L3 [mm] L3 [mm] L3 [mm] m 600 600 600 L3 Z 400 400 400 200 200 200 0 0 0 0 10 20 30 40 50 60 70 0 10 20 30 40 50 0 5 10 15 20 25 30 35 Work load [kg] Work load [kg] Work load [kg
Me3 Guide central axis We W L2 A Me1 Me1 = 1/3WeL1 = 1/31680.05 = 2.8 [Nm] 4 = Me1/Me1max = 2.8/7.2 = 0.389 W We Investigate Me1.
Dynamic moment Va Calculation Example m Operating conditions Cylinder: CYV32 Mounting: Horizontal wall mounting Maximum speed: U = 300 [mm/s] Load mass: m = 1 [kg] (excluding mass of the arm section) L1 = 50 [mm] L2 = 50 [mm] L2 L1 Item Load factor n Note 1. Maximum load mass m 1 = m/m max = 1/5 = 0.20 L2 Review m. L1 2.
Cylinder: MXY8-100 Cushion: Rubber stopper Mounting: Horizontal wall mounting Average speed: Va = 300 [mm/s] Load weight: W = 0.2 [kg] L2 = 40 mm L3 = 50 mm Model to be used Type of cushion Mounting orientation Average speed Va (mm/s) Load weight W (kg) Overhang Ln (mm) W L3 + A3 L2 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650
Dynamic moment Va Calculation example m Operating conditions Cylinder: CYP32 Mounting: Horizontal wall mounting Maximum speed: U = 300 [mm/s] Load mass: m = 1 [kg] (excluding mass of arm section) L1 = 50 [mm] L2 = 50 [mm] L2 L1 Item Load factor n Note 1. Maximum load mass m 1 = m/mmax = 1/5 = 0.20 L2 Review m. L1 M2 = m g (L1 + B) 103 2.