Testno okolje: Branch Development, Prikaz cen: NE
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Products
PNEVMATIKA
RAVNI PRIKLJUČKI Z NAVOJEM
LINEARNE ENOTE UNIMOTION
ENOTE GNANE PREKO KROGELNEGA VRETENA
CTV
MTV
Sizing selection tool
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3D download
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Gallery
Company
Electryic cylinder selection
Accessories select
Stroke:
s =
mm
Inclination of the x axis:
α =
°
Mounting case
Drive Cap
Profile
Front Cap
Piston Rod
Free
Fix
Simple
Free
Simple
Free
Fix
Simple
Free
Fix
Simple
ZKCE attachment position:
r
ZKCE
=
mm
Piston rod guiding
External guiding is used
Coeficient of friction:
μ =
GUH guiding unit is used
Option =
BA
BB
GUH Option
BA
: with slide bushes
BB
: with ball bushes
Load data
Mass of load:
m =
kg
Additional forces and moments
Force x:
F
x
=
N
Force y:
F
y
=
N
Force z:
F
z
=
N
Moment x:
M
x
=
Nm
Moment y:
M
y
=
Nm
Moment z:
M
z
=
Nm
Distance:
h
x
=
mm
Distance:
h
y
=
mm
Distance:
h
z
=
mm
Extended piston rod:
E =
mm
Inclination of the y axis:
β =
°
Operating temperature:
T =
°C
Acceleration of PNCE:
a
x
=
m/s
2
Acceleration of PNCE:
a
y
=
m/s
2
Acceleration of PNCE:
a
z
=
m/s
2
Cycle definition
Cycle input type
v
max
/a
max
t
tot
t
tot
/t
acc
Display charts
Maximmum travel speed:
v
max
=
0
m/s
Acceleration of piston rod:
a =
0
m/s
2
Total travel time in one direction:
t
tot
=
0
s
Acceleration time:
t
acc/dec
=
0
s
Delay time:
t
delay
=
0
s
Cycle time:
t
cycle
=
0
s
Loading case
Lifting
Feeding
Cutting
Spring compression
Mass of load is applied only in one direction
Force x is applied only in one direction
Cutting / pressing length:
lc =
mm
Advance cycle definition
Advanced cycle definition is used
Step input type
v
max
/a
max
t
tot
t
tot
/t
acc
Position:
Pos =
mm
Maximmum travel speed:
v
max
=
0
m/s
Acceleration of piston rod:
a =
0
m/s
2
Total travel time in one direction:
t
tot
=
0
s
Acceleration time:
t
acc/dec
=
0
s
Delay time:
t
delay
=
0
s
CPC
Accept step input
Cancel
Forces and moments
Mass of load:
m =
kg
Force x:
F
x
=
N
Force y:
F
y
=
N
Force z:
F
z
=
N
Moment x:
M
x
=
Nm
Moment y:
M
y
=
Nm
Moment z:
M
z
=
Nm
Distance:
h
x
=
mm
Distance:
h
y
=
mm
Distance:
h
z
=
mm
Cycle time
t
cycle
=
0
s
#
Type
Pos
Δpos
t
tot
t
acc/dec
t
delay
v
max
a
max
s
acc
s
const
t
const
m
F
x
F
y
F
z
M
x
M
y
M
z
h
x
h
y
h
z
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Add new step
Display charts
Duty cycle
Number of cycles per hour:
n
h
=
cycles/h
Working hours per day:
n
hd
=
h/day
Working days per year:
n
dy
=
days/y
Reset