Selection criteria
5.
224
Ref.1912
DDS
HARDWARE
· 202 ·
•
the friction between table with its ways and with the ballscrew
M
F
,
•
the weight of the table when not moving horizontally
M
W
,
•
the cutting force of the tool
M
C
.
Friction torque
M
F
:
where:
Torque due to the weight of the table
M
w
:
When the table does not move horizontally, but at an angle
like in figure
the torque due to the weight of the table must also be considered.
If the total table weight is compensated for by means of some sort of
hydraulic system or counterweights so the motor makes the same effort to
move the table up as to move it down, the
%
factor will be 0. At the other
end, if no compensation is applied,
%
will be 1.
Torque due to the needed cutting force
M
c
:
There is a cutting force between the tool and the part and this means a
hindrance for moving the table. The torque necessary at the motor to make
this movement is calculated as follows:
Motor speed calculation (rpm)
The machine will need a maximum speed (rpm motor)
in a linear movement
of the table. Therefore, the motor must have a maximum speed of:
V
max
is the maximum linear speed the table needs.
Select in the characteristics table of FAGOR synchronous motors (see “AC
synchronous servo motors” manual. FXM/FKM families) a motor having:
•
A stall torque equal to or greater than the calculated continuous torque
Ms
.
•
A maximum turning speed equal to or greater than the calculated value
rpm motor.
M
F
Torque due to friction in N·m.
m
Table mass in kg.
d
Leadscrew diameter in m.
g
Gravitational acceleration, 9.81 in m/s².
h
Leadscrew pitch per turn in m.
µ
The friction coefficient between the table and the ways it moves on:
typical µ values depending on material:
Iron
0.1
÷
0.2
Turcite 0.05
Roller bearings 0.01 ÷ 0.02
M
W
Torque due to the weight of the table in N·m.
Inclination angle of the ballscrew with respect to the horizontal axis.
%
Table weight compensation factor that can vary between 0 and 1.
M
C
Torque due to the cutting force of the tool in N·m.
F
Cutting force of the tool in kg-force.
g
Gravitational acceleration, 9.81 in m/s².
MF
MF
TABLE
–
MF
BALLSCREW
–
+
1
i
---
m g
h
2
----------------------------
d
10
------
+
1
i
---
=
=
MW
m g sin
h
2
------------------------------------
%
i
-----
=
MC
F g h
2
-------------------
1
i
---
=
RPMmotor
Vmax
h
----------------
i
=
Summary of Contents for DDS Series
Page 1: ...DRIVE DDS Hardware manual Ref 1912...
Page 6: ...6 Ref 1912 DDS HARDWARE 6 I This page intentionally left blank...
Page 9: ......
Page 10: ......
Page 11: ......
Page 12: ......
Page 16: ...Ref 1912 DDS HARDWARE 16...
Page 20: ...Ref 1912 DDS HARDWARE 20...
Page 179: ...3 Drives Ref 1912 179 DDS HARDWARE...
Page 180: ...3 Drives Ref 1912 DDS HARDWARE 180...
Page 200: ...4 AUXILIARY MODULES Auxiliary modules Ref 1912 DDS HARDWARE 200...
Page 260: ...7 Cables Ref 1912 DDS HARDWARE 260...
Page 397: ...Sales models 12 Ref 1912 397 DDS HARDWARE 12 9 Order example F H12 21 Order example...
Page 404: ...13 Compatibility Ref 1912 DDS HARDWARE 404...
Page 405: ......