[0001] This invention refers to a machine for programmed sheet bending of the general type
known in the art as panel bender.
[0002] These panel benders are able to automatically move a sheet metal blank on a horizontal
surface placed in front of a bending press provided with a bending unit with one or
two bending blades, which is able to perform a number of bends of variable size, angle
and direction on each side of the blank. The bending press also comprises a fixed
counter-blade and a blank-holder of variable size which cooperates with the counter-blade
for clamping the blank near the edge to be bent. The bending unit and the blank-holder
are activated by controlled hydraulic cylinders. An example of this state of the art
is given by the European patent EP-A-0293964.
[0003] The advantages of this machine reside in the constant production rate and the production
and programming flexibility. A few drawbacks, however, are encountered.
[0004] In particular, a drawback consists in a slow and progressive variation of the programmed
bending angles owing to the thermal expansion of the bending unit cylinders and pistons,
which is caused by the progressive heating of the hydraulic oil, up to the work temperature
is reached.
[0005] The object of the present invention is to eliminate this drawback so as to guarantee
temperature compensated piston strokes and, consequently, desired constant bending
angles.
[0006] According to this invention this object is obtained by a sheet metal bending machine
with a bending unit moved by hydraulic cylinders with sliding pistons, characterised
by a closed loop control system comprising temperature measuring means for measuring
the cylinder temperature, position detecting means for detecting the piston position
and a control unit for varying the rate of hydraulic fluid fed to the cylinders according
to the measured cylinder temperature and the detected piston position.
[0007] In this way, by measuring the cylinder temperature at the beginning of each bending
cycle of a type of panel and by the use of piston position detecting devices, which
are substantially insensible to the temperature changes, it is possible to guarantee
piston strokes which are temperature compensated and cause a constant bending angle
fully corresponding to the programmed angles.
[0008] An embodiment of the present invention is shown by way of nonlimiting example in
the accompanying drawings, in which:
Fig 1 shows the mechanical part of a bending press;
Fig. 2 shows a bent lateral edge of a sheet metal blank;
Fig. 3 shows a block scheme of a closed loop control system which causes the bending
press to operate according to the invention;
Fig. 4 schematically shows the effect of the closed loop control system on the piston
stroke of a hydraulic cylinder which controls the movement of the bending unit of
the bending press.
[0009] The bending press shown in Fig. 1 comprises a fixed base 1, which supports a counter-blade
2 on which a lateral edge of a sheet metal blank 3 moved by a manipulator (not shown)
rests.
[0010] A blank-holder 4 cooperates with the counter-blade 3 to clamp the sheet metal edge.
The blank-holder is attached to the front end of a movable support 5, which has a
rear end hinged at 6 on a rear part of the fixed base 1. The support 5 is moved up
and down by a plurality of hydraulic cylinders 7 which react on the fixed base 1.
[0011] A bending unit 8 comprises a common support 9 for two bending blades 10 and 11 which
cooperate with the counter-blade 2 to cause up and down bending of the clamped edge
of the sheet metal. The bending unit is subjected to combined horizontal and vertical
movements by hydraulic actuators formed by hydraulic cylinders 12 interposed between
the rear part of the base 1 and a lever 13 having a fixed hinge 14 and a mobile hinge
100, and by further hydraulic cylinders 15 interposed between the blade support 9
and the fixed base 1.
[0012] Fig. 2 shows a side of the sheet metal 3, which has a bent edge 31 which forms an
angle of 90° (for example) with the adjacent horizontal part 32 of the sheet metal.
[0013] The hydraulic cylinders 12 and 15, each provided with respective sliding pistons
20, 21, are controlled by a closed loop control system such as that shown in Fig.
3, comprising a hydraulic pump 16, a control unit 17 (in particular, a numerical control
unit programmed according to a mathematical model of a panel as shown in Fig. 2) for
controlling the fluid rate fed by the pump to the cylinders, a temperature measuring
device 18 for measuring the temperature of the cylinders 12, 15 and a piston position
detecting device 19 (in substance, an encoder) for detecting the position of the pistons
20, 21.
[0014] The mode of operation of the closed loop control system can be understood from the
schematic drawing of Fig. 4, in which S is the programmed piston stroke, P is the
piston position corresponding to the programmed piston stroke at a rest temperature,
P1 is the piston position corresponding to the programmed piston stroke at the work
temperature and S 1 is the temperature compensated piston stroke which allows the
same piston position P at the work temperature.
[0015] The cylinder temperature is measured at the beginning of each bending cycle of a
type of panel . In the traditional bending machines the lengthening of the body of
the controlled cylinders causes a variation of the bending angle with respect to the
programmed angle because the bending unit, for obvious reasons, feels the above mentioned
thermal effect. According to the present invention the hydraulic cylinders 12, 15
are "controlled", that is they are equipped with a device 18 for measuring the temperature
of the cylinders and with a device 19 for detecting the position of the pistons included
in a closed loop control system. The hydraulic cylinders 12, 15 and pistons 20, 21
suffer the effect of the thermal expansion caused by the heating of the oil whereas
the devices for detecting the position of the pistons are substantially insensible
to the variations of the temperature. The closed loop control system of the present
invention determines a temperature compensated piston stroke which allows the piston
position to remain constant when the temperature varies from the rest value to the
work value at the beginning of the bending cycle.
1. Sheet metal bending machine with a bending unit (8) moved by hydraulic cylinders (12,
15) with sliding pistons (20, 21), characterised by a closed loop control system comprising temperature measuring means (18) for measuring
the cylinder temperature, position detecting means (19) for detecting the piston position
and a control unit (17) for varying the rate of hydraulic fluid fed to the cylinders
(12, 15) according to the measured cylinder temperature and the detected piston position.
2. Sheet metal bending machine according to claim 1, characterised in that said control unit (17) is of numerical type.
3. Sheet metal bending machine according to claim 1, characterised in that said control unit (17) is programmed according to a mathematical model of a panel.