[0001] The device of the invention is for depositing powders on a moving conveyor belt.
[0002] Devices for loading and depositing ceramic powders on a conveyor belt are normally
used in ceramic tile production lines, for supplying loose material to at least one
press. The loose material, made up of ceramic powders, is deposited on a conveyor
belt in contiguous layers separated by suitable intervals. Each of the layers of powder
undergoes a loading cycle in at least one press and is compacted into a single tile.
[0003] The prior art teaches device comprising a container for the ceramic powders which
has an opening to cause the powders to fall, and which is provided with means for
occluding and freeing the opening. By opening and closing the opening the powders
fall onto a conveyor belt in contiguous and successive layers, each of which defines
a single tile, whose structure is at this point still loose. The conveyor belt carries
the layers of powder into a press, which, together with the belt, performs a first
low-intensity pressing stage with loads of around 20-50 kg/cm
2. At these pressure levels the powder is compacted sufficiently to be manipulated
in some ways. In particular the preformed tile is taken by driven roller planes into
a die of a second press, where final compacting is realized, with pressure of around
600 kg/cm
2.
[0004] The above-described devices include some drawbacks. The conveyor belt, if subjected
to total pressure loads, is subject to permanent deformations which affect the planarity
thereof which is needed in order to have a homogeneous laying of the powders. A deformed
belt cannot therefore be re-used, so the pressing cycle has to be divided into two
successive stages, one preforming stage with low pressing loads, and one final compacting
stage with high pressing loads. The final tile pressing stage cannot be done directly
on the belt, so it is necessary to remove the preformed tiles from it. This aspect
implies the presence of at least one additional press for compacting the tiles and
a supplementary system of transport constituted, for example, by a driven roller plane
for distancing the tiles from the conveyor belt.
[0005] A further known device comprises a container for ceramic powders provided with an
opening for allowing the powders to fall and including means for closing and opening
the opening, which functions in the same way as the device described above. The powders
are taken to the press by an open conveyor which is subjected to the main pressing
load together with the powders to be compacted and which is gathered on a winder located
downstream of the press. The belt is therefore subjected to the described permanent
deformations, which make it unusable for successive pressing cycles.
[0006] Devices of the above type exhibit the drawback of requiring a high level of waste
as regards the conveyor belt, which is in effect a single-use element; a further problem
is how to dispose of this belt.
[0007] The main aim of the present invention is to obviate the above drawbacks by providing
a device for loading powders, for depositing a layer of powders on a moving conveyor
belt, which enables a high-pressure pressing cycle to be carried out on the powders
directly on the conveyor belt, and to re-use the same conveyor belt in successive
pressing cycles.
[0008] Further characteristics and advantages of the present invention will better emerge
from the detailed description that follows of a preferred but non-exclusive embodiment
of a device for loading powders depositing a layer of powders on a moving conveyor
belt, illustrated purely by way of a nonlimiting example in the accompanying figures
of the drawings, in which:
figure 1 is an overall view of the device of the invention in operation;
figure 2 is a first lateral view of the device;
figure 3 is a second lateral view of the device;
figure 4 is a front view of the device;
figure 5 is a second view of a detail of figure 4.
[0009] With reference to figure 1, 1 denotes in its entirety the device of the present invention.
[0010] The device 1 comprises a box-shaped container 2 which functions as a hopper and inferiorly
exhibits an elongate opening 3. At least one conveyor belt 4 runs below the bottom
of the container 2 in a perpendicular direction to the longitudinal development of
the opening 3. The conveyor belt 4 runs on an underlying rest plane 5.
[0011] Pressors 6 are inferiorly constrained to the container, at least some of which pressors
6 are mobile between an active working position, at which they are in contact with
the conveyor belt 4 and press it against the rest plane 5, and an inactive position
at which they are not in contact with the conveyor belt 4.
[0012] The pressors 6 comprise (see figure 4) two lateral containment elements 7 for the
powders, laterally constrained in opposite positions to the container 2 and inferiorly
projecting with respect to the opening 3 of the container 2. The two lateral containment
elements 7 respectively comprise a skate 8, longitudinally L-shaped, which exhibits
a first portion 8a thereof which is arranged parallel to the conveyor belt 4 and a
second portion 8b arranged perpendicular to the conveyor belt 4. A rod 9 is connected
to the first portion 8a of the skate 8, at about the halfway line of the skate 8,
and is slidably constrained vertically in a guide element 10, which is in turn connected
to the container 2. A spring 11 is wound about the rod 9, which spring at one end
strikes the guide element 10 and at the other end the first portion 8a of the skate
8. The spring 11 presses the skate 8 onto the underlying conveyor belt 4 with a force
that is adjustable by means of a known-type device which is not illustrated.
[0013] The pressors 6 also comprise (figures 2, 3) an elongate flat element 12 having a
first side 12a and a second side 12b which are reciprocally parallel and opposite.
The flat element 12 is hinged at a first side thereof 12a to the rear edge of the
opening 3 which is located transversally to the advancement direction of the conveyor
belt 4. The flat element 12 is mobile between a closed position, at which it is positioned
in order to close the opening 3, and an open position, at which, apart from keeping
the opening open 3, places the second side 12b thereof in contact with the conveyor
belt 4 in order to keep the conveyor belt 4 pressed onto the rest plane 5.
[0014] With reference to the figures of the drawings, the device operates as follows. The
ceramic powders 13 contained internally of the container 2 are deposited on the conveyor
belt 4 in a plurality of layers 14 deposited at regular intervals. The layers 14 enter
successively into the cell of a press 15 where they are compacted to produce formed
tiles 16 which are thereafter unloaded from the conveyor belt.
[0015] The depositing of a layer 14 is done by controlled opening and closing of the flat
element 12. The time interval between the opening and closing of the flat element
12 determines the longitudinal development of a layer 14.
[0016] The opening of the flat element 12 advantageously leads the second side 12b to press
the conveyor belt 4 onto the underlying rest plane 5. The action of the second side
12b, together with the action of the skates 8, effectively scrapes the conveyor belt
4 before another layer of powders 14 is deposited. The skates 8, through their second
portions 8b, have the important function of lateral containment of a layer 14 during
the relative depositing stage.
[0017] The device of the invention offers the following important advantages.
[0018] The first advantage is that it enables a considerable structural simplification of
the tile-forming operations inasmuch as the forming is done directly on the conveyor
belt. In particular it is not necessary to subdivide the pressing load into two successive
operations, the first a low-load preforming operation and the second the real high-load
press, in order to safeguard the planarity of the conveyor belt itself. Consequently
it is not necessary to use a further press and a supplementary movement system to
transfer the pre-formed tiles to the final forming press.
[0019] A second important advantage is that the invention enables the conveyor belt to be
re-used for an elevated number of pressing cycles, limiting waste of material and
costs of disposal.
[0020] A third important advantage is that the invention guarantees a depositing of a layer
of ceramic powders which is homogeneous in thickness and perfectly planar on the surface
thereof, thus ensuring a high product quality.
1. A device for loading powders, for depositing a layer of powders on a moving conveyor
belt, comprising: a box-shaped container (2) functioning as a hopper and inferiorly
exhibiting an elongate opening (3); at least one conveyor belt (4) running below a
bottom of the container (2) in a perpendicular direction to the elongate development
of the opening (3), the conveyor belt (4) running on an underlying rest plane (5);
characterised in that it further comprises: pressors (6) inferiorly constrained to the container (2), at
least some of which pressors (6) are mobile between an active work position thereof
in which the pressors (6) are in contact with the conveyor belt (4) and press the
conveyor belt (4) against the rest plane (5), and an inactive position in which the
pressors (6) are in contact with the conveyor belt (4).
2. The device of claim 1, characterised in that the pressors (6) comprise two lateral containment elements (7) for the ceramic powders,
laterally constrained in opposite positions with respect tot he container (2) and
laterally projecting inferiorly of the opening (3) of the container (2).
3. The powder loading device of claim 1, characterised in that the pressors (6) comprise an elongate flat element (12) having a first side (12a)
and a second side (12b) which are parallel and opposite one another; the flat element
(12) being hinged a the first side (12a) thereof to a rear edge of the opening (3)
which is located transversally to an advancement direction of the conveyor belt (4);
the flat element (12) being mobile between a closed position, at which the flat element
(12) is positioned to close the opening (3) and an open position in which, apart from
maintaining the opening (3) in an open position, the second side (12b) thereof is
in contact with the conveyor belt (4) and keeps the conveyor belt (4) pressed against
the rest plane (5).