Machine for forming cardboard boxes from flat plates
11504935 ยท 2022-11-22
Assignee
Inventors
Cpc classification
B31B50/28
PERFORMING OPERATIONS; TRANSPORTING
B31B50/024
PERFORMING OPERATIONS; TRANSPORTING
B31B50/006
PERFORMING OPERATIONS; TRANSPORTING
B31B50/622
PERFORMING OPERATIONS; TRANSPORTING
International classification
B31B50/02
PERFORMING OPERATIONS; TRANSPORTING
B31B50/00
PERFORMING OPERATIONS; TRANSPORTING
B31B50/28
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A machine for forming cardboard boxes (B) from flat plates (P), which comprises a feeder of plates with a loader of plates, a sucker mechanism and a conveyor of plates; and a box forming station with a male device with a first rotary electric motor coupled to a first rotational monitoring device, and a male vertically insertable in a mold to form the boxes (B). A pusher member of the conveyor and a suction head of the suction mechanism are both movable by a same second rotary electric motor coupled to a second rotational monitoring device. The first rotary electric motor (11), the second rotary electric motor, the first rotational monitoring device and the second rotational monitoring device are jointly configured to controllably move the male independently of the controlled and synchronized movement of the pusher member and the suction head.
Claims
1. A machine (100) for forming cardboard boxes (B) from flat plates (P), comprising: a feeder of plates, which comprises: a loader (62) of plates with two lateral guides (63), one lateral guide (63) located on each side of the plates (P) capable of being supported on the loader (62), said loader (62) being configured to support the plates (P) with the faces of the plates (P) arranged vertically or with an inclination with respect to the vertical direction; a sucker mechanism (99) which comprises a suction head (93) with at least one sucking element (94) configured to hold the plate (P), said suction head (93) being movable between a first position, wherein said suction head (93) is configured for individually holding by suction the plates (P) supported on the loader (62) by one of the faces of the plates (P), and a second position, wherein said suction head (93) is configured for positioning the plate (P) supported on two horizontal lateral guides (49) of plates of a conveyor of plates with that face hold by suction oriented upwards; and said conveyor of plates, which further comprises a pusher member (48) horizontally movable between the two horizontal lateral guides (49), these two horizontal lateral guides (49) and said pusher member (48) being configured to transport horizontally and in a guided manner the plates (P), one by one, from the second position, towards a third position wherein the plates (P) are aligned vertically and arranged between a male (5) and a mold (6) of a box forming station; said box forming station, which comprises: a male device (10) which comprises a first rotary electric motor (11), operatively coupled to a first rotational monitoring device (15) configured to directly or indirectly monitor an angle rotated by the first rotary electric motor (11), the male device (10) being configured to controllably and vertically move the male (6) in opposite directions of insertion and extraction with respect to a cavity (51) of said mold (50); said male (6) provided with a lower base (7) of pressure configured to press a base (F) of the flat plate (P) located in the third position into the cavity (51); and said mold (50) which includes said cavity (51), and a plurality of folding devices (52, 53) delimiting a perimeter of the cavity (51) and providing the cavity (51) with a shape complementary to the base (F) of the box (B) to be formed, wherein the male (6) is insertable to fold and join portions of the plate (P) with others and form the box (B); wherein the pusher member (48) of the conveyor of plates and the suction head (93) of the sucker mechanism (99) are both movable by a same second rotary electric motor (64) of the machine (100), the second rotary electric motor (64) being operatively coupled to a second rotational monitoring device (67) configured to directly or indirectly monitor an angle rotated by the second rotary electric motor (64); and wherein the first rotary electric motor (11), the second rotary electric motor (64), the first rotational monitoring device (15) and the second monitoring device (67) are jointly configured to controllably move the male (6), independently of the controlled and synchronized movement of the pusher member (48) and the suction head (93).
2. The machine (100) according to claim 1, wherein the male (6) has a plurality of side faces (8) with inclinations with respect to the vertical direction and converging towards the lower base (7), each of these side faces (8) being configured to fold a respective side panel (PL) of the plate (P); wherein the machine (100) further comprises at least one glue injector (4), configured to deposit glue cords (CC) parallel to each other on the flat plate (P) during the horizontal movement of the pusher member (48), to join parts of the plate (P) with others by gluing; and wherein the second rotational monitoring device (67) includes a rotational encoder.
3. The machine (100) according to claim 2, wherein the machine (100) has further associated a box nesting device (3), configured to insert a box (B), previously folded by said side faces (8) and said folding devices (52, 53), inside another box (B), to contact flat side walls (WL) of a box (B) with flat side walls (WL) of other boxes (B), and the box nesting device (3) is configured to, by this contact of flat side walls (WL), press the glue cords (CC) previously applied by the at least one glue injector (4) to reinforce the glue joint of the side walls (WL), the side walls (WL) laterally surrounding the base (F) of the box (B), and the side walls (WL) including the folded side panels (PL).
4. The machine (100) according to claim 2, wherein the first rotary electric motor (11), the second rotary electric motor (64), the first rotational monitoring device (15), the second monitoring device (67), and the at least one glue injector (4) are connected to a programmable controller device (9) of the machine (100).
5. The machine (100) according to claim 3, wherein the first rotary electric motor (11), the second rotary electric motor (64), the first rotational monitoring device (15), the second monitoring device (67), and the at least one glue injector (4) are connected to a programmable controller device (9) of the machine (100).
6. The machine (100) according to claim 4, wherein the mold (50) further comprises fluid-dynamic cylinders (5) connected to the programmable controller device (9) and each of the fluid-dynamic cylinders (5) is configured to move a respective box forming member (5a) of the mold (50), independently of the movements provided by the first rotary electric motor (11) and the second rotary electric motor (64).
7. The machine (100) according to claim 5, wherein the mold (50) further comprises fluid-dynamic cylinders (5) connected to the programmable controller device (9) and each of the fluid-dynamic cylinders (5) is configured to move a respective box forming member (5a) of the mold (50), independently of the movements provided by the first rotary electric motor (11) and the second rotary electric motor (64).
8. The machine (100) according to claim 2, further comprising another loader (62) of plates, and another male (6) corresponding to another mold (50) in the box forming station, supported on a same chassis (1) of the machine (100); and wherein the sucker mechanism (99) comprises another suction head (93), each of said two suction heads (93) is movable between respective first positions and second positions, each of said two suction heads (93) is configured for individually suctioning respective plates (P) supported on a respective loader (62), and each of said two suction heads (93) is configured for positioning respective plates (P) supported on said two horizontal lateral guides (49) of plates (P) and on another two horizontal lateral guides (49) of plates (P) of the conveyor of plates, respectively; wherein the conveyor of plates comprises said four horizontal lateral guides (49), said pusher member (48) and another pusher member (48), each of the two pusher members (48) being movable between a respective pair of said horizontal lateral guides (49), each pair of horizontal lateral guides (49) and pusher member (48) associated with said pair of horizontal lateral guides (49) being configured to transport horizontally and in a guided manner the plates (P), one by one, from respective second positions, towards respective third positions wherein each of the plates (P) are vertically aligned and arranged between one of said two males (6) and one of said two molds (50), correspondingly; wherein said two pusher members (48) and said two suction heads (93) are movable by the second rotary electric motor (64); and wherein the first rotary electric motor (11), the second rotary electric motor (64), the first rotational monitoring device (15) and the second rotational monitoring device (67) are jointly configured to controllably move said two males (6) independently of the controlled and synchronized movement of the two pusher members (48) and the two suction heads (93).
9. The machine (100) according to claim 1, further comprising another loader (62) of plates, and another male (6) corresponding to another mold (50) in the box forming station, supported on a same chassis (1) of the machine (100); wherein the sucker mechanism (99) comprises another suction head (93), each of said two suction heads (93) is movable between respective first positions and second positions, each of said two suction heads (93) is configured for individually suctioning respective plates (P) supported on a respective loader (62), and each of said two suction heads (93) is configured for positioning respective plates (P) supported on said two horizontal lateral guides (49) of plates (P) and on another two horizontal lateral guides (49) of plates (P) of the conveyor of plates, respectively; wherein the conveyor of plates comprises said four horizontal lateral guides (49), said pusher member (48) and another pusher member (48), each of the two pusher members (48) being movable between a respective pair of said horizontal lateral guides (49), each pair of horizontal lateral guides (49) and pusher member (48) associated with said pair of horizontal lateral guides (49) being configured to transport horizontally and in a guided manner the plates (P), one by one, from respective second positions, towards respective third positions wherein each of the plates (P) are vertically aligned and arranged between one of said two males (6) and one of said two molds (50), correspondingly; wherein said two pusher members (48) and said two suction heads (93) are movable by the second rotary electric motor (64); and wherein the first rotary electric motor (11), the second rotary electric motor (64), the first rotational monitoring device (15) and the second rotational monitoring device (67) are jointly configured to controllably move said two males (6), independently of the controlled and synchronized movement of the two pusher members (48) and the two suction heads (93).
10. The machine (100) according to claim 3, further comprising another loader (62) of plates, and another male (6) corresponding to another mold (50) in the box forming station, supported on a same chassis (1) of the machine (100); wherein the sucker mechanism (99) comprises another suction head (93), each of said two suction heads (93) is movable between respective first positions and second positions, each of said two suction heads (93) is configured for individually suctioning respective plates (P) supported on a respective loader (62), and each of said two suction heads (93) is configured for positioning respective plates (P) supported on said two horizontal lateral guides (49) of plates (P) and on another two horizontal lateral guides (49) of plates (P) of the conveyor of plates, respectively; wherein the conveyor of plates comprises said four horizontal lateral guides (49), said pusher member (48) and another pusher member (48), each of the two pusher members (48) being movable between a respective pair of said horizontal lateral guides (49), each pair of horizontal lateral guides (49) and pusher member (48) associated with said pair of horizontal lateral guides (49) being configured to transport horizontally and in a guided manner the plates (P), one by one, from respective second positions, towards respective third positions wherein each of the plates (P) are vertically aligned and arranged between one of said two males (6) and one of said two molds (50), correspondingly; wherein said two pusher members (48) and said two suction heads (93) are movable by the second rotary electric motor (64); and wherein the first rotary electric motor (11), the second rotary electric motor (64), the first rotational monitoring device (15) and the second rotational monitoring device (67) are jointly configured to controllably move said two males (6), independently of the controlled and synchronized movement of the two pusher members (48) and the two suction heads (93).
11. The machine (100) according to claim 6, further comprising another loader (62) of plates, and another male (6) corresponding to another mold (50) in the box forming station, supported on a same chassis (1) of the machine (100); wherein the sucker mechanism (99) comprises another suction head (93), each of said two suction heads (93) is movable between respective first positions and second positions, each of said two suction heads (93) is configured for individually suctioning respective plates (P) supported on a respective loader (62), and each of said two suction heads (93) is configured for positioning respective plates (P) supported on said two horizontal lateral guides (49) of plates (P) and on another two horizontal lateral guides (49) of plates (P) of the conveyor of plates, respectively; wherein the conveyor of plates comprises said four horizontal lateral guides (49), said pusher member (48) and another pusher member (48), each of the two pusher members (48) being movable between a respective pair of said horizontal lateral guides (49), each pair of horizontal lateral guides (49) and pusher member (48) associated with said pair of horizontal lateral guides (49) being configured to transport horizontally and in a guided manner the plates (P), one by one, from respective second positions, towards respective third positions wherein each of the plates (P) are vertically aligned and arranged between one of said two males (6) and one of said two molds (50), correspondingly; wherein said two pusher members (48) and said two suction heads (93) are movable by the second rotary electric motor (64); and wherein the first rotary electric motor (11), the second rotary electric motor (64), the first rotational monitoring device (15) and the second rotational monitoring device (67) are jointly configured to controllably move said two males (6), independently of the controlled and synchronized movement of the two pusher members (48) and the two suction heads (93); and wherein each of the two molds (50) further comprises said fluid-dynamic cylinders (5) connected to the programmable controller device (9) and each of the fluid-dynamic cylinders (5) is configured to move said respective box forming member (5a) of the mold (50), independently of the movements provided by the first rotary electric motor (11) and the second rotary electric motor (64).
12. The machine (100) according to claim 8, wherein the machine (100) has further associated two box nesting devices (3), each of said box nesting device (3) associated with one of said molds (50), and each of said box nesting device (3) inserts a box (B), previously folded by said side faces (8) of one of said males (6) and folding devices (52, 53) of one of said molds (50), inside another, to contact the flat side walls (WL) of a box (B) with the flat side walls (WL) of other boxes (B) forming a stack of nested boxes (B).
13. The machine (100) according to claim 12, wherein each box nesting device (3) is located below a cavity (51) of a mold (50) wherein an exit opening of the mold (50) is positioned; and wherein each box nesting device (3) comprises two formed boxes guides (3a), the two box forming guides (3a) being configured for holding the boxes (B) in a nested arrangement, together with each other, forming said stack of boxes (B), before exiting said exit opening located in a lower part of the cavity (51).
14. The machine (100) according to claim 2, wherein the loader (62) is configured to support the plates (P) with the faces thereof with an inclination with respect to the vertical direction comprised between 10 and 30 degrees.
15. The machine (100) according to claim 3, wherein the loader (62) is configured to support the plates (P) with the faces thereof with an inclination with respect to the vertical direction comprised between 10 and 30 degrees.
16. The machine (100) according to claim 8, wherein each of the two loaders (62) are configured to support plates (P) with the faces thereof with an inclination with respect to the vertical direction comprised between 10 and 30 degrees.
17. The machine (100) according to claim 11, wherein each of the two loaders (62) are configured to support plates (P) with the faces thereof with an inclination with respect to the vertical direction comprised between 10 and 30 degrees.
18. The machine (100) according to claim 1, wherein in the sucker mechanism (99), the second rotary electric motor (64) is configured to cause a rotation of at least one articulated bar (87) around at least one horizontal articulation (88), and said articulated bar (87) is, in turn, configured to cause a rotation of an inverted bar (89) around a second horizontal articulation (90).
19. The machine (100) according to claim 1, wherein the conveyor of plates comprises a connecting rod (41) directly or indirectly coupled at a proximal end thereof to the second rotary motor (64), and a horizontal guiding device (45, 46) is connected to a distal end of said connecting rod (41), said connecting rod (41) and said horizontal guiding device (45, 46) being configured to cause a forward and backward guiding of said pusher member (48) between the second position and third position.
20. The machine (100) according to claim 1, wherein the male device (10) further comprises: two vertical linear guides (21) fixed at a structural point of a chassis (1) of the machine (100); at least one guide block (22) configured for sliding in each vertical linear guide (21) and fixed to a carriage (23) configured for sliding along the two vertical linear guides (21); said carriage (23) wherein at least one vertical member (25) is fixed, the at least one vertical member (25) supporting at the lower end thereof said male (6); a horizontal transverse guide (19) mounted on the carriage (23); and a rotary crank (16) provided with a proximal end and a distal end, directly or indirectly joined by the proximal end to the first rotary electric motor (11), and pivotally joined by the distal end in an articulation (17) to an additional guide block (18) configured to slide in the horizontal transverse guide (19).
Description
A BRIEF DESCRIPTION OF THE DRAWINGS
(1) To complement the description that is being made of the object of the present invention and to help to better understanding of the characteristics that distinguish it, it is accompanied in the present descriptive specification, as an integral part thereof, a set of plans, in which, for illustrative and not limiting purposes, the following has been represented:
(2)
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(4)
(5)
(6)
(7)
(8)
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DETAILED DISCLOSURE OF THE EMBODIMENTS
(14) According to the first embodiment of the present invention,
(15) The feeder of plates comprises two loaders (62) of plates, a sucker mechanism (99) of plates and a conveyor of plates. The box forming station comprises a male device (10) configured to move two males (6) vertically, in opposite directions of insertion and extraction into respective molds (50) for the formation of boxes (B).
(16) In an alternative embodiment, (not shown) each male (10) can be moved by a respective male device (10).
(17)
(18) The plate (P) of
(19) These side panels (PL) have at their lateral extensions four side flaps (SL) arranged to join side panels (PL) of the plate (P) once folded with others and thus form four side walls (WL) of the box (B) of
(20) The side panels (PL) have at these lateral extensions one or more optional chamfered panels (PH) that will form optional chamfered side walls (WL) in the formed boxes (B) of
(21) The machine (100) of this first embodiment is configured to deposit the glue cords (CC) shown on the plate (P) of
(22) The plates (P) associated with
(23) In the machine (100), the sucker mechanism (99) comprises two suction heads (93), each of said two suction heads (93) with a plurality of sucking elements (94), embodied in vacuum cups, configured to hold a respective plate (P).
(24) Each suction head (93) is movable between a respective first position (not shown), wherein each suction head (93) is capable of individually holding by suction plates (P) supported on a respective loader (62) by one of its faces, and a second position shown in
(25) In the machine (100), the conveyor of plates comprises four horizontal lateral guides (49) and two pusher members (48), each pusher member (48) being movable between a respective pair of horizontal lateral guides (49).
(26) Each pair of horizontal lateral guides (49) and pusher member (48) associated with these is configured to transport horizontally and in a guided manner the plates (P), one by one, from the second position, towards the third position wherein the plates (P) are vertically aligned and arranged below the corresponding male (6) in a extracted position and above the corresponding mold (50).
(27)
(28) Thus, the male device (10) is configured to controllably and vertically move the two males (6) in opposite directions of insertion and extraction with respect to the respective cavities (51) of the molds (50).
(29)
(30) This male device (10) further comprises two guide blocks (22) capable of sliding in each vertical linear guide (21) and fixed on a carriage (23) capable to slide along the vertical linear guides (21).
(31) The male device (10) further comprises said carriage (23), wherein two vertical members (25) are fixed, and the two vertical members (25) support at its lower end one of said males (6) each.
(32) At the lower end of one vertical member (25) is supported one of said males (6) with the configuration of four inclined side faces (8) which can form the box of
(33) At the lower end of the other vertical member (25) is supported the other said male (6) with a configuration of eight inclined side faces (8) which can form the box (B) of
(34) Thus, the machine (100) is configured for the formation of boxes (B) of different and/or identical shapes, sizes and/or formats at a time.
(35) The male device (10) further comprises a horizontal transverse guide (19) mounted on the carriage (23), and a rotating crank (16) provided with proximal and distal ends.
(36) The crank (16) is joined indirectly by the proximal end thereof to the first rotary motor (11) by the first gearbox (65), and pivotally joined at the distal end thereof to an articulation (17) to an additional guide block (18) capable to slide in the horizontal transverse guide (19).
(37) Following in
(38) Each of the two molds (50) of
(39)
(40) This second rotary electric motor (64) is operatively coupled to a second rotational monitoring device (67), configured to monitor indirectly, through the rotation of the shaft (66) of the secondary gearbox (65), the angle rotated by the second rotary electric motor (64). The second rotational monitoring device (67) includes a rotational encoder, and further an inductive type detector (69) for monitoring indirectly, through the rotation of a cam (68) coupled to the shaft (66) of the second gearbox (65), the angle rotated by the second rotary electric motor (64).
(41)
(42) In the sucker mechanism (99), the second rotary electric motor (64) and the secondary gearbox (65) coupled to the second rotary motor (64), are configured to cause a rotation of two articulated bars (87) around respective horizontal articulations (88). Each one of these articulated bars (87) is configured, in turn, to cause a rotation of a respective inverted bar (89) around a respective second horizontal articulation (90).
(43) Each articulated bar (87) is movable by the action of a respective pivoting bar (79) around a lower fourth articulation (78) of connection with a respective lever (77), being this in turn movable by a horizontal secondary driven shaft (76). The upper end of the pivoting bar (79) is articulated with respect to the articulated bar (87) in an upper fifth articulation (83). This secondary driven shaft (76) is movable by a primary driven shaft (70) and a secondary link chain (74) mounted on two secondary sprockets (75), one fixed on each shaft (75, 76), and capable of transmitting the movement of the primary driven shaft (70) to the secondary (76).
(44) The output shaft (66) of the secondary gearbox (65) movable by the second rotary electric motor (64) is configured to transmit the movement to the primary driven shaft (70) by a primary link chain (73) mounted on two primary sprockets (72), one fixed on each shaft (66, 70).
(45) In the machine (100), the conveyor of plates comprises a connecting rod (41) indirectly coupled, through the secondary gearbox (65) and at the proximal end thereof, to the second rotary electric motor (64).
(46) The conveyor of plates further includes a horizontal guiding device (45, 46) connected to a distal end of said connecting rod (41), said connecting rod (41) and said horizontal guiding device (45, 46) being configured to cause a forward and backward guiding of the two pusher members (48) between their respective second and third positions.
(47) This horizontal guiding device (45, 46) comprises a horizontal linear guide (46) and a conveyor guide block (45) coupled to the horizontal linear guide (46).
(48) At the distal end of the connecting rod (41), a primary guide block (42) is pivotally and sliding connected, the primary guide block (42) is, in turn, coupled to a second inverted bar (43), which is directly or indirectly joined in a fixed manner at the upper end thereof, to a guide support (44), in which the two pusher members (48) are mounted.
(49)
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(51) Alternatively, these elements can be connected in distributed form on several PLC, and one is these PLC (master) is the one which controls the rest (slaves). Going back to
(52) Following in
(53) The box nesting device (3) is additionally configured to, by this contact of flat side walls (WL) between boxes (B), pressing the glue cords (CC) previously applied by the corresponding two glue injectors (4), to reinforce the glue joint of the side walls (WL) which laterally surround the base (F) thereof. The side walls (WL) include the folded side panels (PL) and further include at the minor side walls the folded side flaps (SL).
(54) Each box nesting device (3) is located below a respective cavity (51) of a respective mold (50) shown in
(55) Each box nesting device (3) comprises two formed boxes guides (3a) which hold the formed boxes (B) in a nested arrangement, together with each other, forming a stack of boxes (B) before exiting an exit opening of the lower part of the cavity (51).
(56) In this first embodiment of
(57) In an alternative embodiment (not shown), the two formed box guides (3a) may be supported on the chassis (1) forming an integral part of the mold (50) and located in the area of said exit opening of the mold (50).
(58) In a second alternative embodiment (not shown), in the machine (100), said box nesting device (3) is configured to support the formed boxes (B), said box nesting device (3) being movable between a retracted position, wherein the surface of the exit opening associated with the mold (50) is greater to permit to fall a stack of nested formed boxes (B), and a support position, wherein the surface of the exit opening associated with the mold (50) is smaller to permit the support of a stack of nested formed boxes (B).
(59) The machine (100) has regulations for adapting to different sizes and/or shapes and formats of plate (P) and box (B): the lateral guides (63) are adjustable in distance, the location of the at least one sucking element (94) in the suction head (94) is modifiable, the position of each of the pusher members (48) in the third position of delivery is adjustable relative to the guide support (44), the cavity (51) of the mold (50) is adjustable in two mutually perpendicular directions by two screws (56) and four clamps (54) able to be positioned along guide bridges (55), and the lower end connecting each of the vertical members (25) with the male (6) is vertically adjustable relative to a structural point of the carriage (23), for example, with respect to a crossbar (24) fixed to the carriage (23).
(60) An example of the automatic cycle of operation of the machine is detailed below, although this has already been previously discussed.
(61) Once the machine (100) has been regulated to the dimensions of the plate (P) to be supplied and the box (B) to be obtained, either of the loaders (62) or both are fed with flat plates (P) and the plates (P) are in an inclined arrangement between 15 and 25 degrees with respect to vertical.
(62) Next, the sucker mechanism (99) moves the plates (P) from the first to the second position, and during this movement the pusher member (48) is positioned just behind the rear part of the plate (P) in a synchronized manner thanks to the driving engagement of the second electric motor (64).
(63) Then, the second electric motor (64) continues rotating in a controlled manner by the rotational encoder (67), and imposes a linear horizontal movement to the flat plate (P), through the guiding device (45, 46) and the horizontal lateral guides (49) of plates of the conveyor of plates.
(64) During this horizontal movement of the plate (P), the glue injectors (4) apply hot glue cords (CC) by pressure on the plate (P) as a function of the angle rotated by the second rotary electric motor (64) monitored by assembly of the second rotational encoder (67) and PLC.
(65) For the application of the glue cords (CC), the PLC of
(66) With the plate (P) in the third position disposed between a male (6) and a corresponding mold (50) and supported on a pair of horizontal lateral guides (49), the male (6) contacts the plate (P) at a moment pre-selected at will by the user through a touch screen (9a) connected to the PLC, thanks to the independence of the movement of the male device (10) by the first rotary electric motor (11), of the synchronized movement of the movable elements of the feeder which provides the second rotary electric motor (64).
(67) When the plate (P) is inserted into the cavity (51) of the mold (50), portions of the plate (P) contact a plurality of folding devices (52, 53) to fold and join these portions with others and form a box (B), such as that shown in
(68) Said folding devices (52, 53), in cooperation with the inclined side faces (8) of the male (6), provide the box (B) said essentially inverted truncated pyramid shape.
(69) With the male (6) in the maximum position of insertion, the box (B) has been folded and is then nested with other formed boxes (B) in a box nesting device (3), traversing an exit opening of the mold (50) in a nested arrangement, one with others, with the side walls (WL) of the boxes (B) in contact.
(70) This operating cycle is repeated again for the formation of subsequent boxes (B) from plates (P).
(71) In
(72) Likewise, in
(73) Also, in
(74) In the second embodiment of the machine (100), this comprises all elements and features of the first embodiment, except for that the second rotary electric motor (64) and the second rotational encoder (67) are integrated into a servomotor connected to a servomotor controller (SC), as shown in