Product receiver for continuous discharge of lid packaging

KR103005070B1Active Publication Date: 2026-08-14SEJIN HOLDINGS CO LTD
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Patent Information

Application Number
KR1020260056464
Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2026-03-30
Publication Date
2026-08-14
Estimated Expiration
2046-03-30

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Abstract

The present invention relates to a device capable of cutting and separating / discharging a sealing film used as a container lid, and more specifically, to a product receiver for continuous separation and discharge of lid packaging that continuously cuts the lid portion, which is mainly used for sealing food and medical containers such as cup noodles, beverages, desserts, and pharmaceuticals, and separates and discharges the cut lid into upper and lower layers, thereby cutting a large quantity of lids at once and arranging them for easy retrieval. To this end, the present invention comprises: a Thomson roll that supplies a raw material for lead packaging and cuts it into the shape of a lead packaging; a cutting support roll provided at the bottom of the Thomson roll and rotating in contact with the Thomson roll, which supports the raw material to pass through in a state of close contact with the Thomson roll so that cutting is performed; a first rolling part that sequentially conveys and discharges lead packaging cut from both sides of the Thomson roll among the cut lead packaging; a second rolling part provided at an angle toward the bottom of the first rolling part to separate lead packaging cut from the middle part of the Thomson roll and discharge it downward; and a control unit that controls the operation and speed of the Thomson roll, the cutting support roll, the first rolling part, and the second rolling part overall.
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Description

Technology Field

[0001] The present invention relates to a continuous separation and discharge of lid packaging, characterized by a 2-line rolling part (a set of two or an interlocking roller structure) separated by an upper and lower divided guide plate that enables individual discharge conveyors to facilitate the continuous discharge of lid packaging (a functional film used as a lid for various containers such as cup noodles, cone ice cream, desserts, and pharmaceutical containers, providing sealing, content protection, and easy opening functions, with a diameter of approximately 80 to 150 mm). This product receiving device is positioned adjacent to the discharge side of a Thomson roll (a slitting blade sheet for cutting lid packaging attached to a magnetic cylinder by magnetism) to immediately receive and collect the cut lid packaging, thereby ensuring rapid discharge along with even sorting of the lid packaging and maximizing production yield. This improves marketability by preventing sticking, folding, or damage between continuously cut lid packaging, and significantly reduces the sorting time for lid packaging pouring out in heaps, thereby greatly enhancing work efficiency and productivity. This is about product holders. Background Technology

[0002] Generally, the lid packaging used when manufacturing the lid portion of a container is cut into pieces and sealed to the container or packaging by means such as fusion or bonding to complete the packaging.

[0003] These lid wrappers are manufactured and recovered by continuously supplying raw materials and cutting them into the shape of lid wrappers so that they can be used immediately in containers or packaging, and the packaging is completed by sealing them in the necessary containers or packaging.

[0004] In the conventional method of manufacturing lead wrappers, the material is cut into a specific shape, and there were problems such as delays in the time required for the work, limited work volume, and non-uniform shape, as the worker directly cuts the material with the design of the lead wrapper shape or uses equipment such as jigs only for cutting.

[0005] Accordingly, a method is being used in which film is supplied without an operator, and a cutter of the shape of the lead packaging to be manufactured is equipped on a roller to continuously and automatically cut and discharge the film.

[0006] In particular, to accommodate various shapes of lead packaging, a Thomson roll method is used in which a film-type cutter is easily attached to the outer side of a magnetic roller to cut the material, and when cutting lead packaging of a different shape, only the film-type cutter can be replaced.

[0007] However, when cutting and discharging raw materials, as shown in FIG. 10, multiple lead wrappers are cut simultaneously, and when the cut lead wrappers are discharged continuously, they are discharged in a pile, causing problems such as the lead wrappers sticking together, folding, or being damaged.

[0008] In addition, the cut lid wrappers are discharged irregularly, making organization difficult. Furthermore, since workers must manually organize and retrieve them, this results in delays in work time and increased worker fatigue.

[0009] Accordingly, there is a need for technology that can improve work efficiency by enabling lead packaging materials discharged through continuous cutting to be sequentially aligned and discharged without the need for sorting work by a worker. Prior art literature

[0010] 1. Prior Art 1 (Registered Patent No. 10-1934430: Medical dressing patch forming device) 2. Prior Art 2 (Published Patent No. 10-2025-0100393: Lid supply device for beverage packaging containers with excellent recyclability) The problem to be solved

[0011] The present invention has been devised to solve the aforementioned problems and aims to provide a product receiver for the continuous separation and discharge of lid packaging, which can solve problems such as the cut lid packaging mixing, sticking together, folding, or being damaged by cutting the film into a lid packaging shape using a Thomson roll method and separating and discharging the cut lid packaging into upper and lower layers.

[0012] The purpose is to provide a product receiver for continuous separation and discharge of lid packaging, which can shorten working time and reduce worker fatigue by allowing the discharged lid packaging to be sorted by an alignment roller and transported by a conveyor so that the worker can retrieve it without a separate sorting operation. means of solving the problem

[0013] A product receiving device for continuous separation and discharge of lid packaging according to an embodiment of the present invention for solving the above-mentioned problems comprises: a Thomson roll that cuts the lid packaging raw material into the shape of the lid packaging while supplying it; a cutting support roll provided at the bottom of the Thomson roll and rotating in contact with the Thomson roll, which supports the raw material to pass through in a state of close contact with the Thomson roll so that cutting is performed; a first rolling part that sequentially conveys and discharges the lid packaging cut from both sides of the Thomson roll among the cut lid packaging; a second rolling part provided inclined toward the bottom of the first rolling part to separate and discharge the lid packaging cut from the middle part of the Thomson roll downward; and a control unit that controls the operation and speed of the Thomson roll, the cutting support roll, the first rolling part, and the second rolling part overall.

[0014] Here, the Thomson roll is characterized by including a magnetic cylinder that rotates while being magnetic throughout, and a slitting sheet that is detachably provided on the outside of the magnetic cylinder by magnetism and has a cutting blade formed according to the shape of the lead packaging.

[0015] The first rolling part comprises a first discharge conveyor provided on both upper sides where the lid packaging is cut and discharged, for separating and discharging the cut lid packaging upward, and a first transfer conveyor for sequentially transferring the lid packaging discharged from the first discharge conveyor in a recovery direction, and the second rolling part comprises a second discharge conveyor provided in the middle part where the lid packaging is cut and discharged, for separating and discharging the cut lid packaging downward, and a second transfer conveyor for sequentially transferring the lid packaging discharged from the second discharge conveyor in a recovery direction.

[0016] Herein, the first and second conveyor conveyors are further equipped with an alignment roller capable of pressurizing and supporting the upper portion of the lead packaging at the location where the lead packaging is discharged from the first and second discharge conveyors, and aligning and conveying the discharged lead packaging.

[0017] In addition, the first rolling part is provided with a first conveyor drive unit that drives the first conveyor and is provided on one side of the first conveyor, and the second rolling part is provided with a second conveyor drive unit that drives the second conveyor and is provided on one side of the second conveyor, wherein the speeds of the first conveyor drive unit and the second conveyor drive unit are controlled to rotate slower than the driving speeds of the first discharge conveyor and the second discharge conveyor, so that the lead packaging discharged by the speed difference can be aligned and transported. Effects of the invention

[0018] A product receiving device for continuous separation and discharge of lead packaging paper according to one embodiment of the present invention has the effect of preventing cut lead packaging paper from sticking together, folding, or being damaged by supplying the raw material to a Thomson roll and separating and discharging it into upper and lower sections.

[0019] In addition, the Thomson roll structure allows for the rapid cutting of various types of lid packaging by simply replacing the slitting sheet.

[0020] In addition, the discharged lead packaging can be transported with a difference between the cutting feed speed and the transport speed, thereby enabling it to be transported sequentially and arranged at regular intervals during the transport process. Brief explanation of the drawing

[0021] FIG. 1 is an overall perspective view of a product receiving device for continuous separation and discharge of lid packaging paper according to an embodiment of the present invention. FIG. 2 is a perspective view showing the state in which the first rolling part is separated from the product receiving for continuous separation and discharge of lead packaging paper according to one embodiment of the present invention. FIG. 3 is a plan view of a product receiving device for continuous separation and discharge of lid packaging paper according to an embodiment of the present invention. FIG. 4 is a side view of a product receiving device for continuous separation and discharge of lid packaging paper according to an embodiment of the present invention. FIG. 5 is an exploded perspective view illustrating in detail the configuration of an alignment roller in a product receiving device for continuous separation and discharge of lead packaging paper according to an embodiment of the present invention. FIG. 6 is an operational state diagram illustrating the state of adjusting the length of the alignment roller in a product receiving for continuous separation and discharge of lead packaging paper according to an embodiment of the present invention. FIG. 7 is an embodiment illustrating a state in which a quantitative detection stop is further provided in a product receiving device for continuous separation and discharge of lead packaging paper according to another embodiment of the present invention. FIG. 8 is a detailed perspective view illustrating the configuration of a quantitative detection stop unit in a product receiving device for continuous separation and discharge of lead packaging paper according to another embodiment of the present invention. FIG. 9 is an operation state diagram of a quantitative detection stop unit in a product receiving device for continuous separation and discharge of lead packaging paper according to another embodiment of the present invention. FIG. 10 is a photograph illustrating the implementation of the prior art. Specific details for implementing the invention

[0022] The present invention relates to a device capable of cutting and discharging lead packaging, and is characterized in that the cut lead packaging is not discharged mixed in a heap, but is separated into upper and lower sections to prevent mixing at the cutting location, and is discharged so that each section is aligned by different rolling parts, thereby increasing the recovery efficiency of the lead packaging and preventing the lead packaging from sticking together, folding, or being damaged as a result of being discharged mixed in a heap.

[0023] Hereinafter, a product receiving device for continuous separation and discharge of lid packaging paper according to one embodiment of the present invention will be described in detail with reference to the attached drawings.

[0024] FIG. 10 is a photograph illustrating the implementation of the prior art.

[0025] Referring to Fig. 10, in the conventional technology, lead packaging cut by a Thomson roll is not aligned and is discharged in a pile form along with the cutting.

[0026] As a result, rapid retrieval is difficult, and damage occurs during the disposal process, such as the lid packaging sticking together or folding.

[0027] In addition, the retrieval process is difficult for workers, leading to delays in work time and increased worker fatigue.

[0028] FIG. 1 is an overall perspective view of a product receiving device for continuous separation and discharge of lid packaging paper according to an embodiment of the present invention, and FIG. 2 is a perspective view showing the state in which a first rolling part is separated from the product receiving device for continuous separation and discharge of lid packaging paper according to an embodiment of the present invention.

[0029] Referring to FIGS. 1 and 2, the present invention comprises a Thomson roll (100) that supplies a raw material in the form of a flat film for manufacturing a lead packaging sheet (10) and cuts the raw material into the shape of a lead packaging sheet to be manufactured.

[0030] Here, the Thomson roll (100) is configured to include a magnetic cylinder (110) that is magnetic overall and rotates continuously to correspond to the speed at which the raw material is supplied.

[0031] And it is configured to include a slitting sheet (120) that is detachably provided by magnetism on the outside of the magnetic cylinder (110) and has a cutting blade (121) formed thereon that can cut the raw material according to the shape of the lead packaging (10).

[0032] The slitting sheet (120) is preferably made of a metal material that can be attached to the magnetic cylinder (110) by magnetism, and the cutting blade (121) is provided in a series of various shapes at regular intervals according to the shape and size of the lead packaging (10) to be manufactured.

[0033] Accordingly, the slitting sheet (120) is wound in a circular shape around the outer circumference of the magnetic cylinder (110), and the cutting blade (121) is also arranged along the circumference of the magnetic cylinder (110), so that the raw material can be continuously cut into a lead wrapping paper (10) shape by rotation.

[0034] At this time, the lower part of the Thomson roll (100) is configured to include a cutting support roll (200) that rotates in contact with the Thomson roll (100) and supports the raw material so that cutting is performed as it passes through in a state of close contact with the Thomson roll (100).

[0035] The cutting support roll (200) is in contact with the end portion of the cutting blade (121) and supports the cutting blade (121) so that it can cut the raw material. As the raw material passes between the slitting sheet (120) and the cutting support roll (200), the raw material can be continuously cut at a high speed into the shape of a lid wrapper (10).

[0036] And immediately behind the above Thomson roll (100), it is configured to include a first rolling part (300) that sequentially conveys and discharges lead packaging sheets (10) cut at both ends in the longitudinal direction of the Thomson roll (100) among the lead packaging sheets (10) cut by the above Thomson roll (100).

[0037] Additionally, the apparatus comprises a second rolling part (400) that is inclined toward the lower part of the first rolling part (300) and separates and discharges the lead packaging (10) cut in the middle of the longitudinal direction of the Thomson roll (100) to a lower path, which is a different path from the lead packaging (10) discharged from the first rolling part (300).

[0038] Meanwhile, the present invention is configured to include a control unit (600) on one side that controls the operation and speed of the Thomson roll (100), the cutting support roll (200), the first rolling part (300), and the second rolling part (400) overall.

[0039] The above control unit (600) rotates the Thomson roll (100) and the cutting support roll (200) at a constant speed and controls the driving of the first rolling part (300) and the second rolling part (400), thereby enabling the smooth and uniform cutting and discharge speed of the lead packaging (10) to be controlled at a constant speed.

[0040] Here, the first rolling part (300) comprises a first discharge conveyor (310) that continuously discharges lead packaging paper (10) cut from a Thomson roll (100) at a constant speed, and a first transfer conveyor (320) that sequentially sorts the lead packaging paper (10) discharged by the first discharge conveyor (310) and transfers it to a recovery position.

[0041] The second rolling part (400) comprises a second discharge conveyor (410) that guides the lead packaging paper (10) cut from the Thomson roll (100) to the lower side of the first rolling part (300) so as to be separated from the first rolling part (300) and continuously discharges it at a constant speed, and a second transfer conveyor (420) that sequentially aligns the lead packaging paper (10) discharged by the second discharge conveyor (410) and moves it to a recovery position.

[0042] At this time, the first discharge conveyor (310) is configured to include a first discharge roller (311) that rotates in the direction in which the cut lid packaging (10) is discharged, and a first discharge belt (312) that is circulated in a conveyor form by the first discharge roller (311) and supports the upper and lower parts of the lid packaging (10) to discharge it.

[0043] And the first transfer conveyor (320) is configured to include a first transfer roller (321) that rotates in the direction in which the lead packaging (10) discharged from the first discharge conveyor (310) is recovered, and a first transfer belt (322) that is circulated in a conveyor form by the first transfer roller (321) and supports the lower part of the lead packaging (10) to be transferred to a recovery position.

[0044] At this time, a first conveyor drive unit (323) is provided at one end of the first conveyor roller (321) to provide power for the first conveyor roller (321) to rotate and to drive the lead packaging (10) so that it is aligned and conveyed to a recovery position.

[0045] Additionally, the end portion of the first transfer conveyor (320) in the recovery direction is configured to include a blocking plate (324) that blocks the path so that the lead packaging (10) aligned and transported by the first transfer conveyor (320) is no longer transported, and supports the lead packaging (10) to be stacked in multiple layers.

[0046] The second discharge conveyor (410) guides the cut lid packaging (10) to the lower part of the first discharge conveyor (310) for separate discharge, and is configured to include a second discharge roller (411) that rotates in the direction in which the cut lid packaging (10) is discharged, and a second discharge belt (412) that circulates in a conveyor form by the second discharge roller (411) and supports the upper and lower parts of the lid packaging (10) for discharge.

[0047] And the second transfer conveyor (420) is configured to include a second transfer roller (421) that rotates in the direction in which the lid packaging (10) discharged from the second discharge conveyor (410) is recovered, and a second transfer belt (422) that is circulated in a conveyor form by the second transfer roller (421) and supports the lower part of the lid packaging (10) to be transferred to a recovery position.

[0048] At this time, a second conveyor drive unit (423) is provided at one end of the second transfer roller (421) to provide power for the second transfer roller (421) to rotate and to drive the lead packaging (10) so that it is aligned and transferred to a recovery position.

[0049] The first conveyor drive unit (323) and the second conveyor drive unit (423) control the speed so that they rotate slower than the driving speed of the first discharge conveyor (310) and the second discharge conveyor (410), thereby controlling the lead packaging paper (10) discharged due to the speed difference to be continuously stacked, aligned, and transported, making it easier to retrieve.

[0050] Meanwhile, an alignment roller (500) is further provided on the upper part of the first transfer conveyor (320) and the second transfer conveyor (420) to press and support the upper part of the lead packaging (10) discharged from the first discharge conveyor (310) and the second discharge conveyor (410) and to rotate, thereby aligning and transporting the discharged lead packaging (10) along the transfer direction.

[0051] FIG. 3 is a plan view of a product receiving device for continuous separation and discharge of lid packaging according to an embodiment of the present invention, and FIG. 4 is a side view of a product receiving device for continuous separation and discharge of lid packaging according to an embodiment of the present invention.

[0052] Referring to FIGS. 3 and 4, the lead packaging (10) passes the raw material between the Thomson roll (100) and the cutting support roll (200), is cut by the cutting blade (121) formed on the slitting sheet (120) of the Thomson roll (100), and the cut lead packaging (10) is separated from the raw material and discharged to be divided into a first rolling part (300) and a second rolling part (400).

[0053] More specifically, the first discharge conveyor (310) and the second discharge conveyor (410) are configured to be divided into upper and lower sections immediately behind where the lead wrapper (10) is cut in the Thomson roll (100), so that the cut lead wrapper (10) is separated into upper and lower paths and discharged along the paths.

[0054] And the remaining raw materials from which the lead wrapping paper (10) has been cut are wound to the lower side and recovered, so that continuous cutting, discharge, and recovery operations are carried out.

[0055] At this time, the lead packaging (10) being transported by the first transfer conveyor (320) is continuously moved from the upper layer to a position equipped with a blocking plate (324), and is caught by the blocking plate (324) and continuously stacked so that it can be easily retrieved.

[0056] And as the lead packaging (10) being transported by the second transfer conveyor (420) moves to the retrieval location in an aligned state, a retrieval box can be placed behind the second transfer conveyor (420) or a worker can be placed there to continuously and quickly retriev the aligned lead packaging (10).

[0057] As a result, the raw material is continuously supplied and rapidly continuously cut into the shape of the lead packaging (10) to be manufactured, and the raw material is recovered, while the cut lead packaging (10) is divided into upper and lower sections and discharged through the first discharge conveyor (310) and the second discharge conveyor (410).

[0058] And the lead packaging (10) discharged through the first discharge conveyor (310) and the second discharge conveyor (410) is transported to a recovery location by the first transfer conveyor (320) and the second transfer conveyor (420), and is transported while being aligned along the transfer direction by the alignment roller (500), thereby facilitating the recovery of the finished lead packaging (10) and preventing damage such as the lead packaging (10) being discharged in a pile and sticking together or folding.

[0059] FIG. 5 is an exploded perspective view illustrating in detail the configuration of an alignment roller in a product receiving device for continuous separation and discharge of lead packaging paper according to an embodiment of the present invention.

[0060] Referring to FIG. 5, the alignment roller (500) is configured to include a pressure roller (510) that rotates in a roller shape and pressurizes and supports the upper part of the lead packaging (10), and a roller support (520) that rotatably supports the pressure roller (510).

[0061] And at the other end where the pressure roller (510) is rotatably connected to the roller support (520), a roller rotation shaft (530) is provided that penetrates the roller support (520) and supports the roller support (520) to rotate.

[0062] The above roller pivot shaft (530) is provided to extend across the entire widthwise section of the first transfer conveyor (320) and the second transfer conveyor (420), so that a number of them can be installed according to the transfer position of the lead packaging (10).

[0063] At this time, the roller support member (520) may further be provided with a length adjustment member (540) capable of adjusting the length between the roller rotation axis (530) and the pressure roller (510).

[0064] The above length adjustment unit (540) is configured to adjust the initial pressure point according to the size of the lead packaging (10) and comprises a roller support bar (541) that rotatably supports the pressure roller (510) and a rotation bar (542) connected to the roller support bar (541) and installed to rotate from the roller rotation axis (530).

[0065] The roller support bar (541) and the pivot bar (542) are slidably coupled, and the roller support bar (541) is configured to include a length adjustment groove (541a) to which the pivot bar (542) is coupled to slide in the longitudinal direction, and a length adjustment slot (541b) formed to extend in the longitudinal direction in the section where the pivot bar (542) slides, so that the length can be adjusted by the movement of the pivot bar (542).

[0066] It is configured to include a length adjustment bolt (541c) that passes through the length adjustment slot (541b) and is fastened to the pivot bar (542), which is released when the pivot bar (542) is moved along the length adjustment slot (541b), and which is fastened to the pivot bar (542) to fix it at the adjusted length once the length adjustment is completed.

[0067] The above-mentioned pivot bar (542) is configured to include a pivot support member (542a) rotatably installed on the roller pivot shaft (530) and a sliding bar (542b) coupled to the length adjustment groove (541a) and capable of sliding along the length adjustment groove (541a).

[0068] FIG. 6 is an operational state diagram illustrating the state of adjusting the length of the alignment roller in a product receiving for continuous separation and discharge of lead packaging paper according to an embodiment of the present invention.

[0069] Referring to FIG. 6, the alignment roller (500) provides pressure by the weight of the pressure roller (510), and can be aligned and transported by adjusting the length adjustment part (540) according to the size and discharge position of the discharged lead packaging (10).

[0070] To this end, the sliding bar (542b) of the rotating bar (542) is inserted and coupled into the length adjustment groove (541a) of the roller support bar (541), and then the length adjustment bolt (541c) is fastened to the sliding bar (542b) through the length adjustment slot (541b), thereby allowing the length to be extended and fixed, or shortened and fixed to the desired length.

[0071] As a result, when the lead packaging (10) is discharged and transported, it is aligned by the alignment roller (500) and transported sequentially, preventing damage such as the lead packaging (10) sticking together or folding, and allowing it to be retrieved quickly and easily in the retrieval direction.

[0072] FIG. 7 is an embodiment illustrating a state in which a quantitative detection stop is further provided in a product receiving device for continuous separation and discharge of lead packaging paper according to another embodiment of the present invention.

[0073] Referring to FIG. 7, the blocking plate (324) in the first rolling part (300) may be further provided with a quantity detection stop unit (330) capable of detecting when more than an appropriate amount of lead packaging paper (10) is loaded and stopping the overall operation of the present invention.

[0074] The above quantitative detection stop unit (330) is linked with the control unit (600) so that, in the entire process of cutting, discharging, and transporting the lead packaging (10), when a worker at the retrieval position leaves the work position or when the retrieval work is delayed and the work needs to be stopped, the production work can be automatically stopped without separate operation.

[0075] FIG. 8 is a detailed perspective view illustrating the configuration of a quantitative detection stop unit in a product receiving device for continuous separation and discharge of lead packaging paper according to another embodiment of the present invention.

[0076] Referring to FIG. 8, the quantitative detection stop unit (330) is configured to include a packaging support unit (331) capable of supporting the lead packaging (10) to be loaded in an appropriate amount when the lead packaging (10) is continuously transported and loaded toward the blocking plate (324), a pivot shaft (332) that supports the packaging support unit (331) so as to be rotatable, and a limit sensor (333) that detects the loading state of the lead packaging (10) by the rotation of the packaging support unit (331).

[0077] Here, the packaging support member (331) is provided so as to be rotatable from the side of the blocking plate (324), and the end portion of the blocking plate (324) side is provided so as to be rotatable from the blocking plate (324), and a loading support member (331a) is provided that extends along the thickness direction in which the lead packaging (10) is loaded and supports the end of the lead packaging (10).

[0078] The above-mentioned loading support (331a) extends vertically from the blocking plate (324) based on the maximum amount of lead packaging (10) loaded, and at the end of the thickness portion where the lead packaging (10) is loaded, it is provided in an L-shaped structure so as to be perpendicular to the blocking plate (324) so ​​as to be horizontal.

[0079] At this time, the loading support member (331a) is provided to extend a certain distance behind the blocking plate (324) with respect to the rotation axis (332), and the limit sensor (333) is provided such that a detection part is positioned on the lower side of the extended part so that the extended part can be contacted by rotation.

[0080] And at the end where the lead packaging (10) is conveyed, an inlet guide (331b) is formed by bending it upward to form a curved surface, thereby guiding the lead packaging (10) to be easily fed into the packaging support (331).

[0081] FIG. 9 is an operation state diagram of a quantitative detection stop unit in a product receiving device for continuous separation and discharge of lead packaging paper according to another embodiment of the present invention.

[0082] Referring to FIG. 9, when a lead packaging sheet (10) moves along the first conveyor (320) and moves toward the blocking plate (324), it is fed into the inside of the loading support (331a) by the inlet guide (331b), and then other lead packaging sheets (10) being conveyed are fed in continuously and sequentially loaded.

[0083] Accordingly, the packaging support member (331) rotates along the loading thickness direction of the lead packaging (10) and supports the lead packaging (10) to be loaded inwardly, and when an appropriate amount of lead packaging (10) is loaded, the packaging support member (331) rotates and comes into contact with the limit sensor (333) provided at the rear.

[0084] As described above, the limit sensor (333) detects the load amount by rotating the packaging support (331), and the limit sensor (333) transmits this to the control unit (600) to stop the overall operation.

[0085] The present invention, as described above, manufactures a lead packaging sheet by continuously supplying a raw material and continuously cutting the raw material into a lead packaging sheet shape using a Thomson roll structure, and the cut lead packaging sheet is separated and discharged into upper and lower parts by a first rolling part and a second rolling part so as not to mix with each other.

[0086] Afterwards, the discharged lead packaging is aligned by an alignment roller, and by controlling the conveying speed to be slower than the discharge speed so that the discharged lead packaging is loaded and conveyed sequentially, the lead packaging is not mixed with one another and can be easily recovered. Explanation of the symbols

[0087] 10 : Lid Wrappers 100 : Thomson Rolls 110: Magnetic cylinder 120: Slitting sheet 121 : Cutting blade 200 : Cutting support roll 300: 1st rolling part 310: 1st discharge conveyor 311: First discharge roller 312: First discharge belt 320: 1st transfer conveyor 321: 1st transfer roller 322: First conveyor belt 323: First conveyor drive unit 324 : Blocking plate 330 : Quantitative detection stop part 331: Packaging support 331a: Loading support 331b : Inlet induction section 332 : Rotating shaft 333: Limit sensor 400: Second rolling part 410: Second discharge conveyor 411: Second discharge roller 412: 2nd discharge belt 420: 2nd transfer conveyor 421: Second conveyor roller 422: Second conveyor belt 423: Second conveyor drive unit 500: Alignment roller 510: Pressure roller 520: Roller support 530: Roller pivot shaft 540: Length adjustment part 541 : Roller support bar 541a : Length adjustment groove 541b: Length adjustment slot 541c: Length adjustment bolt 542 : Rotation bar 542a : Rotation support part 542b : Sliding bar 600 : Control unit

Claims

Claim 1 A Thomson roll (100) that supplies raw material for a lead wrapper (10) and cuts it into the shape of a lead wrapper; a cutting support roll (200) provided at the bottom of the Thomson roll and rotates in contact with the Thomson roll (100), supporting the raw material to pass through in a state of close contact with the Thomson roll (100) so that cutting is performed; a first rolling part (300) that sequentially conveys and discharges lead wrappers (10) cut from both sides of the Thomson roll (100); and a second rolling part (400) provided inclined toward the bottom of the first rolling part (300) to separate lead wrappers (10) cut from the middle part of the Thomson roll (100) and discharge them downwards. A product receiving device for continuous separation and discharge of lid packaging, comprising: a control unit (600) that controls the operation and speed of the above Thomson roll (100), the cutting support roll (200), the first rolling part (300), and the second rolling part (400); wherein the first rolling part (300) includes a first discharge conveyor (310) provided on both upper sides where the lid packaging (10) is cut and discharged to separate and discharge the cut lid packaging (10) upward, and a first transfer conveyor (320) that sequentially transfers the lid packaging (10) discharged from the first discharge conveyor (310) in a recovery direction; and the second rolling part (400) includes a second discharge conveyor (410) provided in the middle part where the lid packaging (10) is cut and discharged to separate and discharge the cut lid packaging (10) downward, and sequentially transfers the lid packaging (10) discharged from the second discharge conveyor (410) in a recovery direction. It includes a second transfer conveyor (420) for transferring, and the first rolling part (300) is provided with a first conveyor drive unit (323) that drives the first transfer conveyor (320) and the second rolling part (400) is provided with a second conveyor drive unit (423) that drives the second transfer conveyor (420) and drives the second transfer conveyor (420).The first conveyor drive unit (323) and the second conveyor drive unit (423) control the speed so that they rotate slower than the driving speed of the first discharge conveyor (310) and the second discharge conveyor (410), thereby aligning and transporting the discharged lead packaging paper (10) due to the speed difference. At the end of the recovery direction of the first transport conveyor (320), a blocking plate (324) is included to block the path so that the lead packaging paper (10) aligned and transported by the first transport conveyor (320) is no longer transported, and to support the lead packaging paper (10) so that it is stacked in multiple layers. In the first rolling part (300), a quantity detection stop unit (330) is further provided to detect when the lead packaging paper (10) is loaded in an appropriate amount or more on the blocking plate (324) and stop the overall operation of the present invention. The quantity detection stop unit (330) is provided such that when the lead packaging paper (10) is continuously transported and loaded toward the blocking plate (324), the lead A lead packaging device characterized by comprising a packaging support member (331) capable of supporting the packaging device (10) to be loaded in an appropriate amount, a pivot shaft (332) that rotatably supports the packaging support member (331), and a limit sensor (333) that detects the loading state of the lead packaging device (10) by the rotation of the packaging support member (331), wherein the packaging support member (331) is rotatably provided from the side of the blocking plate (324), and the end portion of the blocking plate (324) is rotatably provided from the blocking plate (324), and a loading support member (331a) that extends along the thickness direction in which the lead packaging device (10) is loaded and supports the end of the lead packaging device (10), and an insertion guide member (331b) that is bent and formed with a curved surface toward the upper end at the end where the lead packaging device (10) is transported, thereby guiding the lead packaging device (10) to be easily inserted into the packaging support member (331). Product receiver for continuous separation and disposal. Claim 2 A product receiving device for continuous separation and discharge of lead packaging, wherein, in claim 1, the Thomson roll (100) comprises a magnetic cylinder (110) that rotates while having overall magnetism, and a slitting sheet (120) that is detachably provided by magnetism on the outside of the magnetic cylinder (110) and has a cutting blade (121) formed according to the shape of the lead packaging (10). Claim 3 delete Claim 4 A product receiving device for continuous separation and discharge of lead packaging, characterized in that, in claim 1, the first transfer conveyor (320) and the second transfer conveyor (420) are further equipped with an alignment roller (500) capable of aligning and transporting the lead packaging (10) being discharged while pressurizing and supporting the upper portion of the lead packaging (10) at the location where the lead packaging (10) is discharged from the first discharge conveyor (310) and the second discharge conveyor (410). Claim 5 delete

Citation Information

Patent Citations

  • Rotary die cutter system

    JP2013184231A

  • Roller type punching machine

    JP2014210301A

  • Mask cutting device for manufacturing mask pack

    KR102190973B1