[0001] The present invention relates to a method of pressing sheet metal, including the
steps of providing a press having a punch, a die, and a blank-holder for restraining
a metal sheet at an edge region of the die by clamping it between the blank-holder
and the edge region.
[0002] The present invention also relates to a hydraulic press for pressing sheet metal,
of the type including at least one blank-holder operated by actuators through an hydraulic
operating circuit.
[0003] In known pressing methods, the optimum clamping pressure for the blank-holder is
determined empirically and, during normal production, is kept constant throughout
the pressing period. With this constant-pressure method, difficulties are encountered
with complex dies and deep drawing. Moreover, the characteristics of the metal sheets
and their pre-treatment (for example, with lubricants) represent variables which may
mean that the clamping pressure, which is determined empirically beforehand, is not
at an optimum.
[0004] In order to resolve the aforementioned problems, particular attention is currently
being paid to the design and construction of the dies with the use of mathematical
models to predict the limits of the drawing capability of a given geometry, but not
always with satisfactory results.
[0005] The object of the present invention is to provide a pressing method of the type specified
at the beginning of the description which does not have the aforementioned disadvantages
and which is simple and cheap to put into practice.
[0006] According to the invention, this object is achieved by virtue of the fact that the
blank-holder is clamped onto the metal sheet with a force which can be alternated
between minimum and maximum values according to a predetermined law. The alternation
of the pressure of the blank-holder between a maximum value and a minimum value at
a suitable frequency enables the metal sheet to adapt itself to the requirements of
deformation during the pressing regardless of the nature of the metal sheet and its
surface treatment. Moreover, with the method according to the invention, the step
of adjusting the clamping pressure is eliminated and the drawing depth can be increased.
[0007] Further advantages of the method relate to the reduction of the amount of sheet metal
affected by the blank-holder, the reduction of the number of rejects, the elimination
of the need to use conventional pressing lubricants, the fact that any kind of coating
can be used on the metal sheet, and the reduction of the pitting of the pressed pieces.
[0008] The method according to the invention can be carried out on a hydraulic press for
pressing sheet metal, of the type including at least one blank-holder operated by
actuators through an hydraulic operating circuit, in which the hydraulic circuit includes
valve means for alternately depressurising/pressurising the actuators of the blank-holder
to cause the clamping pressure of the blank-holder to vary according to a predetermined
law.
[0009] Further advantages and characteristics of the method and the press according to the
invention will become clear from the following detailed description, provided purely
by way of non-limiting example, with reference to the appended drawings, in which:
Figure 1 is a schematic view which shows the operation of a press according to the
invention,
Figure 2 is a schematic view similar to Figure 1 and shows a second embodiment of
a press according to the invention, and
Figure 3 is a schematic perspective view of the press of Figure 1.
[0010] With reference to the first embodiment illustrated in Figures 1 and 3, a hydraulic
press, indicated 10, includes a die 12, a punch 14 and a blank-holder 16. A flat metal
sheet L is interposed between the blank-holder and the die 12 for drawing. Compared
with known presses, the press 10 has a special hydraulic circuit 18 for operating
actuators 20 associated with the blank-holder 16. In fact, the hydraulic circuit 18
includes a valve unit 22 for cutting off the flow supplied by a pump p for very short
periods at a frequency which is variable in dependence on the type of die but is preferably
between 20 and 30 Hz. The valve unit 22 is not discussed in detail herein since it
is of substantially the same type as is used, for example, in anti-lock braking systems
for automatically pressurising/depressurising the hydraulic circuit associated with
the brakes.
[0011] The pressure for operating the blank-holder 16 is applied and released within a range
defined by a maximum value and a minimum value, or within a suitable interval between
these values. To advantage, the valve means 22 may be associated with an electronic
control system for modulating the pressurisation/ depressurisation frequency in dependence
on the various geometries of the dies, acting separately on the actuators 20 of the
blank-holder 16. In this case, the optimum pressure interval and the individual control
of the actuators 20 will be determined in dependence on the various geometries of
the dies.
[0012] Figure 2 shows a second embodiment of the invention which uses a die 25 with two
superposed cavities 25a acted on by two opposed punches 14. In this embodiment, the
operation of the two blank-holders 16 is essentially identical to that described for
Figures 1 and 3.
[0013] Naturally, it is understood that, the principle of the invention remaining the same,
the details of construction and forms of embodiment may be varied widely with respect
to those described and illustrated in the drawings, without thereby departing from
the scope of the present invention.
1. A method of pressing sheet metal, including the steps of providing a press having
a punch, a die, and a blank-holder for restraining a metal sheet at an edge region
of the die by clamping it between the blank-holder and the edge region, characterised
in that the blank-holder (16) is clamped onto the metal sheet (L) with a force which
can be alternated between minimum and maximum values according to a predetermined
law.
2. An hydraulic press for pressing sheet metal, of the type including at least one blank-holder
operated by actuators through an hydraulic operating circuit, characterised in that
the hydraulic circuit (18) includes valve means (22) for alternately depressurising/pressurising
the actuators (20) of the blank-holder (16) in order to alternate the clamping pressure
of the blank-holder (16) according to a predetermined law.
3. An hydraulic press according to Claim 2, characterised in that the valve means (22)
are adapted to alternate the operating pressure of each actuator (20) of the blank-holder
(16) according to a different law from that of any other actuator (20).