EP1028059B1 - Method and machine for the sequential storage and drawing of hides - Google Patents

Method and machine for the sequential storage and drawing of hides Download PDF

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Publication number
EP1028059B1
EP1028059B1 EP00100577A EP00100577A EP1028059B1 EP 1028059 B1 EP1028059 B1 EP 1028059B1 EP 00100577 A EP00100577 A EP 00100577A EP 00100577 A EP00100577 A EP 00100577A EP 1028059 B1 EP1028059 B1 EP 1028059B1
Authority
EP
European Patent Office
Prior art keywords
winding
unwinding
hides
machine
unit
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Revoked
Application number
EP00100577A
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German (de)
French (fr)
Other versions
EP1028059A3 (en
EP1028059A2 (en
Inventor
Mirco Roncolato
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nexus SRL
Original Assignee
Nexus SRL
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Publication of EP1028059A3 publication Critical patent/EP1028059A3/en
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Publication of EP1028059B1 publication Critical patent/EP1028059B1/en
Anticipated expiration legal-status Critical
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B63/00Auxiliary devices, not otherwise provided for, for operating on articles or materials to be packaged
    • B65B63/04Auxiliary devices, not otherwise provided for, for operating on articles or materials to be packaged for folding or winding articles, e.g. gloves or stockings

Definitions

  • the invention concerns a winding/unwinding machine and a method for sequential storage and collecting of hides using this machine.
  • the methods employed for the stocking or temporary storage of hides are based on criteria that give primary importance to space saving, though guaranteeing the physical soundness of each single hide, in order to facilitate the successive processing stage to which the hides must be subjected.
  • the known machines suitable for implementing the method described above and called “stackers” substantially comprise a frame supporting a conveying surface with mainly longitudinal development, on which the hides are laid in such a way as to be transported and then put on a retractable plane that unloads them on a pallet.
  • the retractable plane has a mainly longitudinal development and is located in a substantially horizontal position under the conveying surface, from which it protrudes due to the fact that is horizontally movable at a variable distance from the ground. Under the retractable plane there is a pallet where the hides are stacked.
  • the retractable plane is anchored to the frame, so that it can shift horizontally and disappear under/protrude from the conveying surface and is provided with rollers positioned transversally with respect to the development of the plane and defining the hide support surface.
  • the retractable plane must gradually protrude from the conveying surface itself, until the hide has been completely deposited on it.
  • the plane is retracted and at the same time the rollers are rotated so that the hide, owing to the reciprocal travel motion of the plane and rotating motion of the rollers in the opposite direction, remains positioned on the pallet and falls on the hides that have already been stacked due to the force of gravity.
  • Appropriate anchorage devices provided on the material handling means permit the anchorage and successive transport of the hide pile towards the successive processing station or towards the warehouse.
  • the successive collection of the hides from the piles created by the stackers to feed, for example, the machine that must carry out the following processing stage is performed manually, in fact the operator takes the hides one by one and positions them on the machine.
  • the main drawback of the stocking method described above is constituted by the considerable space occupied by the hides, which, being laid and stacked over one another, occupy a surface that corresponds at least to their own surface.
  • Another drawback is due to the numerous kinematic motions of the stacker, which are necessary to operate the retractable plane and the rollers and to adjust their distance from the ground.
  • US-A-3,813,843 discloses an apparatus for rolling cut filter pads. Said fitter pads are delivered to a roll station where kraft paper is drawn. The cut pads and the kraft paper are wound onto a take-up roll until a given number of cut pads have been wound.
  • the aim of the present invention is the achievement of a method and a machine that make it possible to overcome the inconveniences mentioned above.
  • the main aim of the invention is the implementation of a method for the sequential storage of hides that makes it possible to store them occupying the least possible space, without affecting the properties of the hides themselves.
  • Another aim of the invention is to implement a method that permits to store hides of any length and ensure effective management of space in comparison with the known methods.
  • Another goal is the implementation of a machine that applies the method object of the invention and permits the automatic storage and collection of hides.
  • a further aim is the implementation of a machine that makes it possible to record the positions occupied by each single hide, with the relevant information, so that it can be successively directed towards the most suitable production processes.
  • Another aim is the implementation of a simple and economic machine in comparison with the known types of machines.
  • the machine must have limited overall dimensions, independently of the size of the hides to be stored.
  • the method described makes it possible to store the hides so that they can be automatically collected with no need for the intervention of an operator.
  • a further advantage is represented by the fact that the machine constructed in this way is reversible and therefore can be used either for storing hides and for collecting hides that were previously stored.
  • the machine constructed in this way is very simple and compact if compared with the known machines.
  • the hides are substantially wound around a cylindrical support to form a spool in which the hides are separated by a flexible foil that constitutes the core of the spool.
  • the hides transported by a conveying surface are stored sequentially, said conveying surface defining a longitudinal advancement direction and being designed so that the hides are positioned on it one after the other.
  • the storage operation substantially comprises the following stages:
  • the winding of the flexible foil must take place at the same time as the deposit of the hides on the flexible foil itself.
  • the winding/unwinding machine object of the invention shown in Fig. 1, where it is indicated as a whole by 1, is suitable for winding/unwinding hides around/from a spool according to the method described and substantially comprises a frame 2 resting on the ground T provided with a driving unit, indicated as a whole by 3, for the flexible foil 4 that is wound together with the hides P positioned on it in such a way as to form the spool 5.
  • the driving unit 3 is positioned after the conveying surface S on which the hides P are laid one after the other and comprises a winding unit for the flexible foil 4, indicated as a whole by 6, and a similar unwinding unit for the same flexible foil 4, indicated as a whole by 7.
  • the winding unit 6 defines the rotation axis 8 for a cylindrical support 10 of the spool that will be formed, said rotation axis 8 being arranged in substantially orthogonal position with respect to the advancement direction of the flexible foil 4.
  • the unwinding unit 7 defines the rotation axis 9 of a cylindrical support 11 around which the flexible foil 4 is wound, said rotation axis 9 being substantially orthogonal to the advancement direction of the flexible foil 4.
  • the winding unit 6 and the unwinding unit 7 are provided with reversible powering means suitable for setting them rotating on their own axis and are spaced from each other, so that the flexible foil 4 defines a substantially rectilinear section 12, preferably but not necessarily inclined, in correspondence of which the hides P transported by the conveying surface S are deposited.
  • the machine described above can be used as either winding or unwinding machine by simply reversing the rotation directions of the winding unit 6 and unwinding unit 7.
  • the hides P positioned on the conveying surface S advance along the direction 20 until reaching the flexible foil 4 that at the same time is unwound from its cylindrical support 11, the latter being set rotating by the winding unit 6.
  • the hides P and the flexible foil 4 joined together are wound around the cylindrical support 10, thus forming the spool 5 represented in detail in Fig. 2.
  • the spool 5 formed by the wound hides is also positioned on the winding unit 6, while the direction 20 of the motion of the winding unit 6 and of the conveying surface S will be inverted.
  • This machine differs from the previous one because it has a conveying surface 21 belonging to the machine structure and connected to the frame 22 through connection means suitable for permitting the variation of its inclination with respect to the direction of advancement 30 of the hides P.
  • the hides P transported by the conveying surface S' reach the conveying surface 21, from which they will be deposited onto the flexible foil 4 already wound around the spool 51.
  • the conveying surface 21 changes its inclination 60, in such a way as to guarantee a more suitable and correct arrangement of the hides P on the flexible foil 4.
  • the winding unit 61 is removable, in fact it is provided with sliding wheels 62 that allow it to be moved away from the frame 22 of the machine itself.
  • the flexible foil 4 can be preferably, but not necessarily be constituted by transpiring materials, such as paper, fabric, holed plastic, or other similar materials.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Treatment And Processing Of Natural Fur Or Leather (AREA)
  • Replacement Of Web Rolls (AREA)
  • Spinning Or Twisting Of Yarns (AREA)
  • Supplying Of Containers To The Packaging Station (AREA)
  • Auxiliary Devices For And Details Of Packaging Control (AREA)
  • Adhesive Tape Dispensing Devices (AREA)

Abstract

Method for the sequential storage of hides transported by a conveying surface on which said hides are positioned one after the other, comprising the following operations: driving and deposit of the hides from the conveying surface onto at least one flexible foil; winding of the flexible foil with the hides on a rotary support to form a spool. The method is implemented by means of a winding machine comprising a frame (2) that supports a winding unit (6) and an unwinding unit (7) of the flexible foil (4). <IMAGE>

Description

  • The invention concerns a winding/unwinding machine and a method for sequential storage and collecting of hides using this machine.
  • It is known that in hide processing it is necessary to store semiprocessed hides temporarily, for example between a processing stage and the successive one, and to stock finished hides.
  • The methods employed for the stocking or temporary storage of hides are based on criteria that give primary importance to space saving, though guaranteeing the physical soundness of each single hide, in order to facilitate the successive processing stage to which the hides must be subjected.
  • The method according to which the hides are stacked on a support, generally constituted by a pallet, is already known: this method makes it possible to form a hide pile that develops mainly vertically.
  • The known machines suitable for implementing the method described above and called "stackers" substantially comprise a frame supporting a conveying surface with mainly longitudinal development, on which the hides are laid in such a way as to be transported and then put on a retractable plane that unloads them on a pallet.
  • The retractable plane has a mainly longitudinal development and is located in a substantially horizontal position under the conveying surface, from which it protrudes due to the fact that is horizontally movable at a variable distance from the ground. Under the retractable plane there is a pallet where the hides are stacked.
  • More precisely, the retractable plane is anchored to the frame, so that it can shift horizontally and disappear under/protrude from the conveying surface and is provided with rollers positioned transversally with respect to the development of the plane and defining the hide support surface.
  • According to the stacker operating principle, as the conveying surface transports a hide, the retractable plane must gradually protrude from the conveying surface itself, until the hide has been completely deposited on it.
  • At this point the plane is retracted and at the same time the rollers are rotated so that the hide, owing to the reciprocal travel motion of the plane and rotating motion of the rollers in the opposite direction, remains positioned on the pallet and falls on the hides that have already been stacked due to the force of gravity.
  • Appropriate anchorage devices provided on the material handling means permit the anchorage and successive transport of the hide pile towards the successive processing station or towards the warehouse.
  • The successive collection of the hides from the piles created by the stackers to feed, for example, the machine that must carry out the following processing stage is performed manually, in fact the operator takes the hides one by one and positions them on the machine.
  • The main drawback of the stocking method described above is constituted by the considerable space occupied by the hides, which, being laid and stacked over one another, occupy a surface that corresponds at least to their own surface.
  • Another drawback is due to the fact that this method can be adopted for hides with limited length, in order to limit the pile length accordingly and therefore to ensure reasonable manoeuvrability and ease of transport.
  • As far as the stacker is concerned, its main drawback is constituted by the fact that its size is at least twice the length of the hides to be stacked, since it is necessary to deposit the spread hide on the retractable plane.
  • Another drawback is due to the numerous kinematic motions of the stacker, which are necessary to operate the retractable plane and the rollers and to adjust their distance from the ground.
  • Furthermore, the machine is expensive and quite difficult to set up, due to its complex operation.
  • US-A-3,813,843 discloses an apparatus for rolling cut filter pads. Said fitter pads are delivered to a roll station where kraft paper is drawn. The cut pads and the kraft paper are wound onto a take-up roll until a given number of cut pads have been wound.
  • The aim of the present invention is the achievement of a method and a machine that make it possible to overcome the inconveniences mentioned above.
  • More precisely, the main aim of the invention is the implementation of a method for the sequential storage of hides that makes it possible to store them occupying the least possible space, without affecting the properties of the hides themselves.
  • Another aim of the invention is to implement a method that permits to store hides of any length and ensure effective management of space in comparison with the known methods.
  • Another goal is the implementation of a machine that applies the method object of the invention and permits the automatic storage and collection of hides.
  • A further aim is the implementation of a machine that makes it possible to record the positions occupied by each single hide, with the relevant information, so that it can be successively directed towards the most suitable production processes.
  • Another aim is the implementation of a simple and economic machine in comparison with the known types of machines.
  • Furthermore, the machine must have limited overall dimensions, independently of the size of the hides to be stored.
  • The aims mentioned above have been achieved through the implementation of a machine according to the features of claim 1. A method using
  • a machine according to claim 1 is also object of the invention and is claimed in claim 10.
  • To advantage, the method described makes it possible to store the hides so that they can be automatically collected with no need for the intervention of an operator.
  • A further advantage is represented by the fact that the machine constructed in this way is reversible and therefore can be used either for storing hides and for collecting hides that were previously stored.
  • Furthermore, the machine constructed in this way is very simple and compact if compared with the known machines.
  • The aims and advantages described above will be highlighted in greater detail in the description of one among many possible applications of the invention in question, illustrated in the attached drawings, wherein:
    • Fig. 1 shows the machine object of the invention that implements the method object of the invention;
    • Fig. 2 is a side view of the hides stored according to the method object of the invention;
    • Fig. 3 shows a variant of the machine object of the invention suitable for implementing the method object of the invention;
    • Fig. 4 shows a further variant of the machine object of the invention suitable for implementing the method object of the invention.
  • According to the method object of the invention, the hides are substantially wound around a cylindrical support to form a spool in which the hides are separated by a flexible foil that constitutes the core of the spool.
  • More precisely, according to the method object of the invention, the hides transported by a conveying surface are stored sequentially, said conveying surface defining a longitudinal advancement direction and being designed so that the hides are positioned on it one after the other.
  • According to the invention, the storage operation substantially comprises the following stages:
    • driving and deposit of said hides from said conveying surface onto a flexible foil;
    • winding of said flexible foil with said hides on a rotary support to form a spool.
  • In particular, according to the method the winding of the flexible foil must take place at the same time as the deposit of the hides on the flexible foil itself.
  • According to a favourite application of the invention, the winding/unwinding machine object of the invention shown in Fig. 1, where it is indicated as a whole by 1, is suitable for winding/unwinding hides around/from a spool according to the method described and substantially comprises a frame 2 resting on the ground T provided with a driving unit, indicated as a whole by 3, for the flexible foil 4 that is wound together with the hides P positioned on it in such a way as to form the spool 5.
  • The driving unit 3 is positioned after the conveying surface S on which the hides P are laid one after the other and comprises a winding unit for the flexible foil 4, indicated as a whole by 6, and a similar unwinding unit for the same flexible foil 4, indicated as a whole by 7.
  • The winding unit 6 defines the rotation axis 8 for a cylindrical support 10 of the spool that will be formed, said rotation axis 8 being arranged in substantially orthogonal position with respect to the advancement direction of the flexible foil 4. Similarly, the unwinding unit 7 defines the rotation axis 9 of a cylindrical support 11 around which the flexible foil 4 is wound, said rotation axis 9 being substantially orthogonal to the advancement direction of the flexible foil 4.
  • In particular, the winding unit 6 and the unwinding unit 7 are provided with reversible powering means suitable for setting them rotating on their own axis and are spaced from each other, so that the flexible foil 4 defines a substantially rectilinear section 12, preferably but not necessarily inclined, in correspondence of which the hides P transported by the conveying surface S are deposited.
  • The machine described above can be used as either winding or unwinding machine by simply reversing the rotation directions of the winding unit 6 and unwinding unit 7.
  • Operatively, when the machine 1 is used as winding machine, for the formation of the spool 5 the hides P positioned on the conveying surface S advance along the direction 20 until reaching the flexible foil 4 that at the same time is unwound from its cylindrical support 11, the latter being set rotating by the winding unit 6.
  • The hides P and the flexible foil 4 joined together are wound around the cylindrical support 10, thus forming the spool 5 represented in detail in Fig. 2. Operatively, when the machine is used as unwinding machine, the spool 5 formed by the wound hides is also positioned on the winding unit 6, while the direction 20 of the motion of the winding unit 6 and of the conveying surface S will be inverted.
  • In this way it is possible to unwind the spool 5 and collect the hides P that are laid on the flexible foil 4 by positioning them on the conveying surface S. The winding and unwinding machine described above can be constructed according to the variant described in Figure 3, where it is indicated as a whole by 100.
  • This machine differs from the previous one because it has a conveying surface 21 belonging to the machine structure and connected to the frame 22 through connection means suitable for permitting the variation of its inclination with respect to the direction of advancement 30 of the hides P.
  • Operatively, the hides P transported by the conveying surface S' reach the conveying surface 21, from which they will be deposited onto the flexible foil 4 already wound around the spool 51.
  • As the size of the spool 51 increases, the conveying surface 21 changes its inclination 60, in such a way as to guarantee a more suitable and correct arrangement of the hides P on the flexible foil 4.
  • According to a further variant of the winding/unwinding machine object of the invention, represented in detail in Figure 4, where it is indicated as a whole by 101, the winding unit 61 is removable, in fact it is provided with sliding wheels 62 that allow it to be moved away from the frame 22 of the machine itself.
  • It is important to observe that in each one of the two winding/unwinding machines described the tension of the flexible foil 4 is controlled by acting on powering means connected to each winding/unwinding unit and that the flexible foil 4 can, in a further variant, be stacked and not wound around a spool.
  • The flexible foil 4 can be preferably, but not necessarily be constituted by transpiring materials, such as paper, fabric, holed plastic, or other similar materials.
  • Even though the invention has been described with reference to the enclosed drawings, upon implementation changes and application variants may be made that are all included in the inventive concepts expressed in the following claims.

Claims (10)

  1. Winding/unwinding machine (1, 100, 101), suitable for winding/unwinding hides (P), comprising a frame (2, 22) resting on the ground (T) on which there is a driving unit (3) driving a flexible foil (4) that can be positioned after a conveying surface (S, S'), wherein said driving unit (3) comprises a winding/unwinding unit (6, 61) and an unwinding/winding unit (7) of said flexible foil (4), each one of said units being suitable for defining a rotation axis (8, 9) for a cylindrical support (10, 11) supported by the unit itself and placed in a substantially perpendicular position with respect to the direction of advancement of said flexible foil (4), characterized in that at least one of said winding/unwinding unit (6, 61) or unwinding/winding (7) unit is provided with reversible powering means suitable for setting it rotating around its own axis (8, 9).
  2. Winding/unwinding machine (1, 100, 101) according to claim 1), characterized in that said winding/unwinding unit (6, 61) and said unwinding/winding unit (7) are spaced from each other and define one substantially rectilinear section (12) of said flexible foil (4) on which said hides (P) can be deposited or from which they can be collected.
  3. Winding/unwinding machine (1, 100, 101) according to claim 1), characterized in that said flexible foil (4) is constituted by a single continuous band.
  4. Winding/unwinding machine (100, 101) according to claim 1), characterized in that a conveying surface (21) belongs to the frame (22) of the machine (100, 101).
  5. Winding/unwinding machine (100, 101) according to claim 4), characterized in that said conveying surface (21) is connected to the frame (22) through connection means suitable for permitting the variation of its inclination (60) with respect to the direction of advancement (30) of said hides (P).
  6. Winding/unwinding machine (100) according to claim 2), characterized in that said rectilinear section (12) is inclined.
  7. Winding/unwinding machine according to claim 2), characterized in that said rectilinear section is horizontal.
  8. Winding/unwinding machine (101) according to claim 1), characterized in that said winding/unwinding unit (61) can be removed with respect to said frame (22), being provided with sliding wheels (62) suitable for permitting its separation from the frame (22) itself.
  9. Winding/unwinding machine (1, 100, 101) according to claim 3), characterized in that said continuous band is made of paper.
  10. A method for sequential storage and collecting of hides using a winding/unwinding machine according to claim 1, characterized in that it comprises the following steps:
    driving and depositing said hides coming from a conveying surface onto a flexible foil;
    winding said flexible foil, together with said hides on a winding unit to form a spool;
    reversing the rotation of said winding/unwinding units (6, 7);
    driving and depositing said hides contained in said spool from said flexible foil onto said conveying surface.
EP00100577A 1999-02-12 2000-01-12 Method and machine for the sequential storage and drawing of hides Revoked EP1028059B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IT1999VI000027A IT1311492B1 (en) 1999-02-12 1999-02-12 METHOD AND MACHINE FOR THE COLLECTION AND SEQUENTIAL COLLECTION OF LEATHER.
ITVI990027 1999-02-12

Publications (3)

Publication Number Publication Date
EP1028059A2 EP1028059A2 (en) 2000-08-16
EP1028059A3 EP1028059A3 (en) 2002-01-16
EP1028059B1 true EP1028059B1 (en) 2003-09-03

Family

ID=11426926

Family Applications (1)

Application Number Title Priority Date Filing Date
EP00100577A Revoked EP1028059B1 (en) 1999-02-12 2000-01-12 Method and machine for the sequential storage and drawing of hides

Country Status (4)

Country Link
EP (1) EP1028059B1 (en)
AT (1) ATE248751T1 (en)
DE (1) DE60004898D1 (en)
IT (1) IT1311492B1 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10217240A1 (en) * 2002-04-15 2003-10-23 Optima Filling & Packaging Method for wrapping articles has positioning each article between two layers of wrapping material, each of which is drawn off feed reel to separate spool, one above and one below article
CN105857788B (en) * 2016-06-20 2018-04-17 陈明华 A kind of feeding structure of socks packing machine

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE674589A (en) * 1965-12-31 1966-04-15
US3813843A (en) * 1972-06-09 1974-06-04 Wehr Corp Method and apparatus for rolling cut filter pad

Also Published As

Publication number Publication date
EP1028059A3 (en) 2002-01-16
EP1028059A2 (en) 2000-08-16
IT1311492B1 (en) 2002-03-13
ITVI990027A1 (en) 2000-08-12
ATE248751T1 (en) 2003-09-15
DE60004898D1 (en) 2003-10-09

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