Schaeffler Product catalogue - medias
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LTS16-100-1204-M-0


Linear tables with open shaft guidance system and ball screw drive

without bellows, with single nut

  
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Compressive loadTensile loadMoments about all axesGrease lubrication
 
B1 100  mm   
H 48  mm   
L 100  mm   
    Length calculation:
L tot = total stroke + L + L4 + L5
Total stroke (GH) = effective stroke + 2 x S (mm)

ATTENTION: The allowance S designates a safety range suitable for the particular application.

Observe:

- The maximum possible support rail length L tot of the actuator.
1)   Lubrication nipple NIP.
b87 44  mm  Tolerance: +0,2/-0,2
D7 16  mm  Tolerance for diameter: h7
D8 5,5  mm   
d74 38  mm   
d85 5  mm  Tolerance for diameter: h7
d86 24  mm  Tolerance for diameter = h7
G4 M8   
G43 M6   
G5 M8   
G87 M5   
H1 35,5  mm   
H12 11,5  mm   
H5 32  mm   
H7 5  mm   
h1 22  mm   
h5 16  mm   
h85 26  mm   
h87 22  mm  Tolerance: +0,2/-0,2
JB43 88  mm   
JL43 88  mm   
jB4 82  mm   
jB8 33  mm   
jL4 9  mm   
jL8 100  mm  Location of support rails:
As standard, the support rails are supplied with a symmetrical hole pattern.
With a symmetrical hole pattern, aL = aR.

Calculation of hole pattern:

The number of hole pitches is the whole number equivalent to:

n = (Ltot - L4 - L5 - 2 * aRmin) / jL8

The spacing aL between the end of the support rail and the nearest hole centre point is calculated from:

aR, aL = ( Ltot - L4 - L5 - n * jL8)
K43 M5   
L4 24  mm   
L5 18  mm   
L74 6,5  mm   
L85 12  mm   
L86 1,5  mm   
L88 28,5  mm   
Ltot 2900  mm   
Rx 55,6  mm   
Rz 54  mm   
S 4  mm   
S8 10  mm   
T8 5,6  mm   
t43 13  mm   
t87 12  mm   
mLAW 0,8  kg   
mBOL Ltot * 0,0058 + 0,46  kg   
    Total mass calculation:

mtot = mLAW+mBOL+m1+m2+m3

- Insert given masses.

- Unavailable masses = 0.
vmax 0,3  m/s   
  0,05  mm  Repeat accuracy: +/-
amax 20  m/s^2   
  (0)-(+80)  °C  Operating temperature
d0 12  mm  Spindle diameter
P 4  mm  Spindle pitch
  0,11  kg * cm^2  Mass moment of inertia of threaded spindle.
Ca 4900  N  Basic dynamic load rating of spindle nut

Basic load ratings according to DIN 69051. Due to the modified calculation algorithms in DIN 69051, the basic load ratings Ca and C0 may differ in comparison with older data.
C0 6600  N  Basic static load rating of spindle nut

Basic load ratings according to DIN 69051. Due to the modified calculation algorithms in DIN 69051, the basic load ratings Ca and C0 may differ in comparison with older data.
  ZKLN0624-2RS-PE  Rolling bearings
Ca 6900  N  Basic axial dynamic load rating of spindle bearing arrangement
C0a 8500  N  Basic axial static load rating of spindle bearing arrangement
  1,5  Nm  Max. drive torque on drive stud
  KBO16-PP-AS  Linear ball bearings
C 2110  N  Load direction I: Compressive load

Design of linear ball bearing guidance systems: see Catalogue WF1.
C0 2480  N  Load direction I: Compressive load

Design of linear ball bearing guidance systems: see Catalogue WF1.
C 880  N  Load direction II: Tensile load

Design of linear ball bearing guidance systems: see Catalogue WF1.
C0 1140  N  Load direction II: Tensile load

Design of linear ball bearing guidance systems: see Catalogue WF1.
C 2240  N  Load direction III: Lateral load

Design of linear ball bearing guidance systems: see Catalogue WF1.
C0 2900  N  Load direction III: Lateral load

Design of linear ball bearing guidance systems: see Catalogue WF1.
M0x per 29  Nm  Permissible static moment rating (per carriage)

These values apply if load is evenly distributed over all four linear ball bearings.
Values are individual loads. If combined loads are present, these must be reduced.
For design criteria of the linear guidance system, see Catalogue WF1.
M0y per 50  Nm  Permissible static moment rating (per carriage)

These values apply if load is evenly distributed over all four linear ball bearings.
Values are individual loads. If combined loads are present, these must be reduced.
For design criteria of the linear guidance system, see Catalogue WF1.
M0z per 32  Nm  Permissible static moment rating (per carriage)

These values apply if load is evenly distributed over all four linear ball bearings.
Values are individual loads. If combined loads are present, these must be reduced.
For design criteria of the linear guidance system, see Catalogue WF1.
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