Ball/Lead screw

  • Step 1
  • Step 2
  • Step 3
 
Total mass of load and table w1= kg
Friction coefficient of the linear guide µ=
* Others
(if unknown please specify the material of the linear guide)
 
Screw diameter DB= mm
Total length of the screw LB= mm
Lead of the screw (pitch) PB= mm/r (distance the screw moves in one rotation)
Screw efficiency ηB=
Screw material
* Others
Preload F0= N
 
F A=  N (1kgf = 9.8N)
Direction of operation
 
Primary pulley (gear) diameter or pitch circle diameter (PCD)
D p1= mm
Primary pulley (gear) mass
m p1= kg
Secondary pulley (gear) diameter or pitch circle diameter (PCD)
D p2= mm
Secondary pulley (gear) mass
m p2= kg
If the mass is unknown:
Primary pulley (gear) thickness
L p1 = mm
Primary pulley (gear) material
* Others
If the mass is unknown:
Secondary pulley (gear) thickness
L p2 = mm
Secondary pulley (gear) material
* Others
 
Mechanism angle α= Degree
 
It is necessary to hold the load after the power supply is turned off (requires electromagnetic brake).
It is necessary to hold the load after the motor is stopped, but not necessary to hold after the power supply is turned off.
Holding is not necessary.
 
Constant speed Operating speed = mm/s
Moving time = s
Variable speed Operating speed = ~ mm/s
Moving time = s
Positioning operation (fill in the fields, if any)
Operating speed
V
Positioning distance
mm
Acceleration time t1
Deceleration time t1
Moving time t0 s
Stopping time ts s
Desired acceleration/deceleration time, if any    t1= s
Desired speed, if any    V= mm/s
 
Stopping accuracy ± mm
 
Primary wish Power supply
* Others
Frequency
Secondary wish Power supply
* Others
Frequency
 
Desired drive (multiple choice possible)
AC Motor Brushless DC Motor
Stepping Motor Rotary Actuator
Application
Comment
 
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