The present invention relates to a bed transfer unit particularly for transferring beds between vacuuming machines and roll machines.
Today, in order to decrease stocking and transportation costs of beds, beds are reduced in size by means of vacuum and they are easily carried by forming roll. Accordingly, bed is placed into the vacuum machine and plastic-based material is coated thereon and the thickness of the bed is reduced by applying vacuum. Afterwards, the bed removed from the vacuum machine arrives at a folding unit by means of a conveyor and it is folded in two parts in coating unit. During folding, bed is folded so as to be reduced to half size. Thus, the bed shall come to the folding unit at the correct position and the bed shall be folded exactly through the center axis. In order to provide this, an additional conveyor may have to be used in order to provide the bed to come to the folding unit at the correct position. In other words, depending on the structure of the vacuum machine or depending on the placement of the bed inside the vacuum machine, the bed may have to be transferred to the folding unit by means of one or more conveyors and machines depending on the placement structure of the machine. The variable structure in this condition prevents the system from having a flexible operation structure. At the same time, this leads to a need for a greater installation area.
In the system disclosed in the application with number US2015203221A1, the products, of which the thickness is reduced by means of vacuum, can be packaged by forming rolls.
As a result, because of all of the abovementioned problems, an improvement is required in the related technical field.
The present invention relates to a transfer unit, for eliminating the above mentioned disadvantages and for bringing new advantages to the related technical field.
An object of the present invention is to provide a compact transfer unit where the beds exiting the vacuum machine are folded and transferred to the roll machine.
In order to realize all of the abovementioned objects and the objects which are to be deducted from the detailed description below, the present invention is a transfer unit for folding and transferring the beds vacuumed and packaged in the vacuuming machine. Accordingly, the subject matter transfer unit comprises at least one centering arm configured to hold the bed from the center thereof and to press the bed towards the operation plane; in order to change the extension direction of the bed in an operation plane whereon the beds, coming from the vacuuming machine, advance. Thus, the bed can be held through the center thereof and the bed can be rotated. Therefore, the bed, which comes to the transfer unit in a horizontal manner, can be rotated in a manner extending in the vertical direction.
In a possible embodiment of the present invention, at least one first conveyor and at least one second conveyor are provided which are positioned side by side and configured to be able to move in an independent manner from each other. Thus, the bed, held from the center thereof by means of the centering arm, can be rotated by means of operating the first conveyor and the second conveyor in opposite directions.
In a possible embodiment of the present invention, the centering arm comprises a rotary holder having rotational freedom.
In a possible embodiment of the present invention, the centering arm is configured to displace between an operation position where the centering arm extends orthogonally to the operation plane and a waiting position where the centering arm is diverged from the operation plane.
In a possible embodiment of the present invention, in order to provide movement freedom of the centering arm between the operation position and the waiting position, at least one rotary hinge is provided which provides connection to a chassis of the transfer unit.
In a possible embodiment of the present invention, in order to provide movement freedom of the centering arm between the operation position and the waiting position, at least one first positioning cylinder is provided which is connected to the chassis from one end and connected to the centering arm from the other end.
In a possible embodiment of the present invention, in order to provide approaching of the rotary holder towards the operation plane, there is at least one first press cylinder.
In a possible embodiment of the present invention, pluralities of measurement sensors are provided between the first conveyor and the second conveyor. Thus, the size of the bed coming to the transfer unit is measured and the center of the bed can be determined.
In a possible embodiment of the present invention, at least one correction wall is provided at the end which is opposite the input side of the first conveyor and of the second conveyor where the bed comes to the transfer unit. Thus, after the bed is rotated, the bed is pushed by means of the first conveyor and the second conveyor and is rested to the correction wall and the errors, if any, in the position are corrected.
In a possible embodiment of the present invention, the correction wall is configured to displace between the upper side and the lower side of the operation plane. Thus, the bed can be removed from the transfer unit from the side where the correction wall is provided.
In a possible embodiment of the present invention, at least one press arm is configured to displace between a folding position where press is exerted to the bed in a folding axis passing through the center thereof and a free position where the bed is diverged from the operation plane. Thus, the bed can be held from the folding axis.
In a possible embodiment of the present invention, the press arm at least partially extends along the width of the transfer unit.
In a possible embodiment of the present invention, at least one arm holder is provided which is connected to the press arm and at least one arm carrier is provided which extends between said arm holder and said chassis.
In a possible embodiment of the present invention, the arm carrier is connected to the arm holder at a predetermined distance to an end of the arm carrier.
In a possible embodiment of the present invention, at least one second positioning cylinder is provided which is connected to the chassis from one end and connected to the arm carrier from the other end.
In a possible embodiment of the present invention, at least one second press cylinder is provided which is connected to the second positioning cylinder from one end and connected to the arm holder from the other end.
In a possible embodiment of the present invention, pluralities of conveyor rolls are provided between the first conveyor and the second conveyor such that there are predetermined distances in between.
In a possible embodiment of the present invention, at least one folding profile is provided which passes between the conveyor rolls and configured to displace from a lower position which remains under the operation plane to a first position which remains above the operation plane and a second position where it approaches towards the folding axis from the first position. Thus, one end of the bed is firstly lifted upwardly and afterwards, the bed is folded by means of passing through the press arm.
In a possible embodiment of the present invention, the folding profile is configured to displace between the second position and a press position where the folding profile approaches the operation plane. Thus, the folded bed is pressed towards the operation plane and corrected.
In a possible embodiment of the present invention, pluralities of folding profiles are provided such that there is a predetermined distance in between.
In a possible embodiment of the present invention, in order to provide connection of the folding profiles with each other, at least one profile carrier is provided in at least one each ends thereof.
In a possible embodiment of the present invention, in order to provide vertical movement of the folding profile, at least one vertical movement cylinder is provided.
In a possible embodiment of the present invention, in order to provide displacement of the folding profile between the first position and the second position, at least one horizontal movement rail is connected to the profile carrier.
In a possible embodiment of the present invention, at least one pushing wall is provided configured to move from one side of the input side towards the other side thereof and to push the bed. Thus, the folded bed is pushed and is removed outwardly from the transfer unit.
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In this detailed description, the subject matter transfer unit (30) is explained with references to examples without forming any restrictive effect only in order to make the subject more understandable.
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A side of the first conveyor (32) and the second conveyor (33) is defined as an input side (36). Said input side (36) is connected to the vacuuming machine (10). An adjacent side of the input side (36) is defined as a discharge side (37). Said discharge side (37) is connected to the roll machine (20).
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The arm holder (62) is connected to the arm carrier (61) so as to have rotational freedom. The arm holder (62) is connected to the arm carrier (61) from a predetermined distance to an end of the arm carrier (61). There is at least one second press cylinder (64) connected to the arm carrier (61) from one end and connected to the arm holder (62) from the other end. As the second press cylinder (64) is opened and closed, the press arm (60), provided on the arm holder (62), can displace in an independent manner from the arm carrier (61).
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In the light of the abovementioned structural details, the subject matter transfer unit (30) operates as follows.
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After the bed is held from the center thereof, the first conveyor (32) and the second conveyor (33) move by rotating in directions which are opposite to each other. By means of this, the bed begins rotating in the axis of centering arm (40). Thus, the bed is rotated 90 degrees. Thus, the bed, extending in the direction of width of the transfer unit (30), becomes extending in the direction of the length of the transfer unit (30). When the bed exits the vacuuming machine (10) in a longitudinally extending manner, the rotation process of the bed can be canceled.
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Afterwards, the folding profile (72) returns to the lower position (V).
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In a possible embodiment of the present invention, after the bed is folded, as the first conveyor (32) and the second conveyor (33) operate in the same direction, it is possible to transfer the bed to a different conveyor which is to be provided at the opposite side of the vacuuming machine (10) and to transfer the bed without forming roll.
Thanks to the subject matter transfer unit (30), it is possible to rotate the bed, to fold the bed, to crush the bed and to transfer the bed to the roll machine (20) at the same location. Thus, there remains no need to use different units for each process and the operation of the system is provided in a narrower region.
Moreover, the transfer unit (30) can be operated in a synchronized manner by means of machines where the bed is vacuumed in a traverse or longitudinal manner. In other words, a compact transfer unit (30) is obtained which can operate together with different types of vacuum machines (10).
The protection scope of the present invention is set forth in the annexed Claims and cannot be restricted to the illustrative disclosures given above, under the detailed description. It is because a person skilled in the relevant art can obviously produce similar embodiments under the light of the foregoing disclosures, without departing from the main principles of the present invention.
10 Vacuuming machine
20 Roll machine
30 Transfer unit
31 Chassis
32 First conveyor
33 Second conveyor
34 Conveyor roll
35 Measurement sensor
36 Input side
37 Discharge side
40 Centering arm
41 Rotary holder
42 First positioning cylinder
43 First press cylinder
44 Rotary hinge
50 Correction unit
51 Correction wall
52 Lifting cylinder
60 Press arm
61 Arm carrier
62 Arm holder
63 Second positioning cylinder
64 Second press cylinder
70 Folding mechanism
71 Vertical movement cylinder
72 Folding profile
73 Profile carrier
74 Horizontal movement rail
80 Discharge mechanism
81 Pushing wall
82 Linear movement unit
I Operation position
II Waiting position
III Folding position
IV Free position
V Alt position
VI First position
VII Second position
VIII Press position
a Operation plane
x Folding axis
Number | Date | Country | Kind |
---|---|---|---|
2018/03201 | Mar 2018 | TR | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/TR2018/050191 | 4/27/2018 | WO | 00 |