Hainbuch HYDROK 32 Operating Instructions Manual page 40

Hydraulic stationary chuck
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HYDROK
Use and limits of use
40
However, it is rare for axial drilling and turning operations to
be superimposed because their opposing directions of rota-
tion usually preclude them from running simultaneously.
For computational purposes, the calculation should be
based upon the point with the highest forces, that is the least
favorable machining moment. If in doubt, several blade en-
gagement situations need to be checked to record the least
favorable one.
If radial drilling operations are being performed, the required
radial clamping force ��
transverse force introduced ��
play a central role.
Scatter widths of clamping force
The following table illustrates clamping force scatter width
factor ��.
The values for the scatter width factor apply if the system is
being operated in accordance with the operating instruc-
tions, that is with regular maintenance and lubrication.
Provided that the radial clamping force is measured using
appropriate measuring equipment before every start-up and
continuously every 100 clamping operations, it is possible to
work with the reduced and 'verified' clamping force scatter
width factor shown here.
Radial clamp-
Size of the
ing reserve in
clamping
the diameter
head chuck
32
42
52
65
80
100
125
140
160
*
If as a consequence of dimensionally accurate workpieces, only
50% of the radial clamping reserve of the clamping head chuck is
used up, the clamping force scatter width factor can be reduced by
factor 0.85 [example: Size 52: �� = 2.0 ∗ 0.85 = 1.7].
Table 6:
Scatter widths of clamping force
Order hotline +49 7144.907-333
, and especially a check of the
������ ������
and the resultant torque ��
��
Clamping
force scatter
width factor ��
[mm]
1.0
2.8*
1.0
2.0*
1.0
2.0*
1.0
1.6*
1.0
1.6*
1.5
1.45
2.5
1.45
1.5
1.45
1.5
1.45
��
Clamping
force scatter
width factor ��
'verified'
1.3
1.3
1.3
1.3
1.3
1.3
1.3
1.3
1.3

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This manual is also suitable for:

Hydrok 42Hydrok 52Hydrok 65Hydrok 80Hydrok 100

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