WO2022164092A1 - Appareil d'emballage de masque - Google Patents

Appareil d'emballage de masque Download PDF

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Publication number
WO2022164092A1
WO2022164092A1 PCT/KR2022/000605 KR2022000605W WO2022164092A1 WO 2022164092 A1 WO2022164092 A1 WO 2022164092A1 KR 2022000605 W KR2022000605 W KR 2022000605W WO 2022164092 A1 WO2022164092 A1 WO 2022164092A1
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WO
WIPO (PCT)
Prior art keywords
mask
packaging material
packaging
chuck
outer cylinder
Prior art date
Application number
PCT/KR2022/000605
Other languages
English (en)
Korean (ko)
Inventor
한동희
Original Assignee
한동희
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
Application filed by 한동희 filed Critical 한동희
Publication of WO2022164092A1 publication Critical patent/WO2022164092A1/fr

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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
    • B65B25/00Packaging other articles presenting special problems
    • B65B25/14Packaging paper or like sheets, envelopes, or newspapers, in flat, folded, or rolled form
    • B65B25/145Packaging paper or like sheets, envelopes, or newspapers, in flat, folded, or rolled form packaging folded articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/10Feeding, e.g. conveying, single articles
    • B65B35/16Feeding, e.g. conveying, single articles by grippers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/10Feeding, e.g. conveying, single articles
    • B65B35/20Feeding, e.g. conveying, single articles by reciprocating or oscillatory pushers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B43/00Forming, feeding, opening or setting-up containers or receptacles in association with packaging
    • B65B43/12Feeding flexible bags or carton blanks in flat or collapsed state; Feeding flat bags connected to form a series or chain
    • B65B43/14Feeding individual bags or carton blanks from piles or magazines
    • B65B43/16Feeding individual bags or carton blanks from piles or magazines by grippers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B43/00Forming, feeding, opening or setting-up containers or receptacles in association with packaging
    • B65B43/26Opening or distending bags; Opening, erecting, or setting-up boxes, cartons, or carton blanks
    • B65B43/30Opening or distending bags; Opening, erecting, or setting-up boxes, cartons, or carton blanks by grippers engaging opposed walls, e.g. suction-operated
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B5/00Packaging individual articles in containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, jars
    • B65B5/04Packaging single articles
    • B65B5/045Packaging single articles in bags
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B65/00Details peculiar to packaging machines and not otherwise provided for; Arrangements of such details
    • B65B65/02Driving gear

Definitions

  • the present invention relates to a mask packaging apparatus, and more particularly, to a mask packaging apparatus capable of automatically and quickly performing the operation of inserting a mask into a packaging material whose one end has been opened.
  • Masks are used to cover the nose and mouth to prevent inhalation and scattering of germs or dust.
  • the mask is popularly used for the purpose of preventing respiratory diseases by preventing microscopic foreign substances including germs and dust from entering the body through the mouth and nose.
  • the mask is manufactured in a form that a mask body in the form of a sheet made of a fibrous material such as gauze or non-woven fabric is made into a hemispherical or square shape, and a band is attached to both sides of the mask body to wrap around the nose, mouth and chin.
  • the mask is packaged by a packaging material in the form of a pouch that is opened at one end.
  • a conventional mask packaging apparatus includes a turntable rotating in a predetermined step, a plurality of grippers configured to grip both ends of an inlet of a packaging material and provided in plurality on the circumference of the turntable, and disposed on one side of the turntable to supply a packaging material to the grippers a packaging material supply unit that lifts the packaging materials supplied from the packaging material supply unit one by one and delivers them one by one to each of the grippers rotated by the turntable; It includes an entrance extension part, a mask input part for inserting masks one by one into the opening of the packaging material that is opened by the entrance extension part, and a mask supply part for sequentially supplying a plurality of masks to the mask input part.
  • the conventional mask packaging apparatus has disadvantages in that the structure is complicated, the number of parts is excessively large, and the overall size of the apparatus is excessively large.
  • the conventional mask packaging apparatus has a disadvantage in that the overall process time is long because operations such as supply of packaging material, opening of the mouth, and input of the mask are sequentially performed one by one.
  • the present invention has been devised in view of the above, and has fewer parts and a simpler structure than the prior art, and simultaneously performs tasks such as supply of packaging material, opening mouth, and mask insertion without interruption, thereby reducing the mask packaging operation time.
  • An object of the present invention is to provide a mask packaging device that can be remarkably reduced.
  • the guide plate including a plurality of guide holes formed in a circular arrangement with respect to a central axis; a shaft whose center coincides with the central axis; an outer cylinder rotatably installed on the shaft by a bearing and coupled to the guide plate on one side thereof; a driving unit for rotating the outer cylinder; a plurality of mask chucks arranged along the circumference of the outer cylinder so that each faces the entrance of the guide hole, and picking up the corresponding mask from the mask supply unit when the outer cylinder rotates and revolving about the central axis; a plurality of packaging material chucks each coupled to the guide plate so as to face the exit of the guide hole, and picking up the corresponding packaging material from the packaging material supply unit when the guide plate rotates together with the outer cylinder and revolving with respect to the central axis; a cam mechanism for advancing the corresponding mask chuck so that one end of the corresponding mask chuck approaches
  • the mask packaging apparatus further includes a packaging material transfer unit for bringing the packaging material on the corresponding packaging material chuck within the mask insertion section to the outlet before the push actuator is driven.
  • the mask packaging device further includes an inlet expansion unit that widens the inlet of the packaging material while the packaging material is close to the outlet.
  • the cam mechanism has a cam groove formed on an outer circumferential surface thereof, an inner passage coupled to the shaft within the outer cylinder, and one end connected to the mask chuck, and moves along the cam groove by rotation of the outer cylinder to move the mask chuck and a cam driven rod for moving forward or backward in a direction approaching the entrance of the guide hole or in a direction away from the entrance of the guide hole.
  • the mask packaging device further includes a leg erected on the ground, and a bed supported by the leg, and a pillar connected to the shaft is erected on the bed, and the driving unit includes a motor and a main pulley connected to the motor; , a driven pulley connected to one side of the outer cylinder from above the bed, and a belt installed in the main pulley and the driven pulley to transmit the rotational force of the main pulley to the driven pulley.
  • the distance from the center of the guide plate to each of the guide holes is greater than the distance from the central axis to the circumference of the outer cylinder.
  • the packaging material transfer unit includes a clamp, a first driving cylinder for forwardly transferring the clamp to a position capable of gripping the rear end of the packaging material, and the first driving cylinder in a state in which the clamp grips the rear end of the packaging material. And by advancing the clamp, it includes a second driving cylinder for transporting the packaging material close to the outlet.
  • the inlet expansion unit includes an upper adsorption unit for adsorbing the top layer of the haejang packaging material, an upper lifting cylinder for lifting and lowering the upper adsorption unit up and down, and a lower adsorption unit for adsorbing the bottom layer of the haejang packaging material and a lower elevating cylinder for elevating the lower adsorption unit up and down.
  • one or more guide holes are provided to correspond to one mask chuck, and each of the plurality of mask chucks has one or more branches that can be inserted into the respective inlets of the one or more guide holes. ) may include
  • the mask packaging apparatus according to the present invention as described above has a small number of parts and a simple structure compared to the prior art, and simultaneously performs tasks such as supply of packaging material, opening of the mouth, and mask insertion without interruption, thereby dramatically reducing the packaging operation time.
  • the advantage is that it can be reduced.
  • FIG. 1 is a view for explaining the overall mask packaging apparatus according to an embodiment of the present invention.
  • FIG. 2 is an enlarged view of the mask packaging unit of the mask packaging apparatus shown in FIG. 1 .
  • FIG 3 (a), (b) and (c) are views each showing the arrangement of the mask chucks for the outer cylinder, the arrangement of guide holes formed in the guide plate, and the arrangement of the packing material chucks coupled to the guide plate.
  • FIGS. 1 to 3 are plan views illustrating a mask packaging unit of the mask packaging apparatus shown in FIGS. 1 to 3 .
  • FIG. 5 is a plan view illustrating a part of the mask packaging unit in a state in which the front end of the mask approaches or enters the guide hole.
  • FIG. 6 is a plan view illustrating a part of the mask packaging unit in a state in which the packaging material is close to the exit of the guide hole.
  • FIG. 7 is a cross-sectional view showing the mask packaging unit in a state in which the packaging material is close to the exit of the guide hole and the inlet expansion unit expands the entrance of the packaging material.
  • FIG. 8 is a cross-sectional view showing the mask packaging unit in a state in which the inlet expansion unit expands the inlet of the packaging material.
  • FIG. 9 is a plan view illustrating the mask packaging unit in a state in which the push actuator is pushed through the guide hole and the mask is inserted into the packaging material.
  • Mask packaging unit 2 Mask supply unit
  • Packaging material supply unit C Central axis
  • cam mechanism 200 cam mechanism
  • the mask packaging apparatus is configured to sequentially insert and pack the masks 10 into the packaging materials 20 in the form of a pouch having an open one end.
  • the mask packaging apparatus of this embodiment pushes the mask 10 into the inlet of the packaging material 20 to insert the mask 10 into the packaging material 20 , but in the process of inserting the mask 10 into the packaging material 20 . It includes configurations for reliably guiding the mask 10 without departing to another path.
  • the mask packaging apparatus of this embodiment includes a mask packaging unit 1 for performing a mask packaging 10 operation on the packaging material 20, and a mask supply unit 2 for supplying the mask 10 to the mask packaging unit 1 ) and a packaging material supply unit 3 for supplying the packaging material 20 to the mask packaging unit 1 .
  • the mask supply unit 2 or the packaging material supply unit 3 may be, for example, a conveyor type using a conveyor or a turntable type using a turntable.
  • the conveyor type it may include a conveyor for loading and transporting the mask 10 or packaging material 20, and means for lifting the mask 10 or packaging material 20 on the conveyor and transferring it to the mask pickup side or the packaging material pickup side.
  • a turntable rotating while supporting the mask 10 or the packaging material 20 arranged in a circle may be included. It may be configured to be delivered to the packaging material pickup side of the packaging unit (1).
  • the mask supply unit 2 and the packaging material supply unit 3 may have various structures capable of supplying the mask and packaging material to the mask packaging unit 1 in addition to the above structures.
  • the mask packaging unit 1 can continuously insert the masks 10 continuously supplied through the mask supply unit 2 into the packaging materials 20 continuously supplied through the packaging material supply unit 3 . is configured to
  • the mask packaging unit 1 includes a guide plate 140 in which a set of guide holes 141 or guide holes 141 are arranged in a circle around a central axis C, and the central axis C ) and the shaft 120 coincident with the center, the outer cylinder 130 is rotatably installed on the shaft 120 by the bearings 13, the guide plate 140 is fixedly coupled to one side,
  • the guide holes 140 are arranged in a circle along the circumference of the outer cylinder 130, each facing the entrance of the guide hole 141, and by the operation of the cam mechanism 200 by the rotation of the outer cylinder 130.
  • the mask packaging unit 1 includes a driving unit 300 for rotating the outer cylinder 130 with respect to the shaft 120 and the mask chucks 150 in cooperation with the rotation of the outer cylinder 130 .
  • the guide hole 141 is configured to advance or retreat in a direction approaching or away from each inlet of the set, and when the corresponding mask chuck 150 is in the mask insertion section W, one of the corresponding mask chuck 150
  • the end of the cam mechanism 200 that approaches or enters the entrance of the guide hole 141 is driven to push the corresponding mask on the mask chuck 150 located within the mask insertion section W forward, and a push actuator 170 that allows the mask 10 to be inserted into the packaging material 20 after passing through the guide hole 141 .
  • the mask packaging apparatus includes a frame 5 including a leg 52 erected on the ground and a bed 54 supported by the leg 52 .
  • a pillar 110 to which the aforementioned shaft 120 is connected is erected on the bed 54 . Accordingly, the shaft 120 is connected to the pillar 110 in a cantilever shape.
  • the driving unit 300 includes a motor 301 installed on the ground, a main pulley 302 connected to the motor 301 , and a driven connected to one side of the outer cylinder 130 from above the bed 54 .
  • a pulley 303 and a belt installed on the main pulley 302 and the driven pulley 303 to transmit the rotational force of the main pulley 302 to the driven pulley 303 when the motor 301 is driven ( 304).
  • the belt 304 is preferably a timing belt.
  • the driving unit 300 may have various structures capable of rotating the outer cylinder 130 .
  • the outer cylinder 130 and the guide plate 140 rotate integrally, and accordingly, a plurality of mask chucks 150 installed along the circumference of the outer cylinder 130 .
  • a plurality of packing material chucks 160 coupled to the guide plate 140 revolve with respect to the central axis (C).
  • Each of the mask chucks 150 picks up the mask 10 supplied from the above-described mask supply unit 2 when positioned at the lowest position by the revolution, and each of the packaging material chucks 160 is positioned at the lowest position by the revolution.
  • the packaging material 20 supplied from the above-described packaging material supply unit 3 is picked up.
  • the mask chuck 150 picking up the mask 10 and the packing material chuck 160 picking up the packing material 20 continue the revolution to reach the mask insertion section W of a certain angle or more, and this mask insertion section W ), an operation of inserting the mask 10 into the packaging material 20 after passing through the guide hole 141 is performed.
  • the mask insertion section W may be determined within a section of approximately 135 degrees to 225 degrees as shown in FIG. 3A .
  • the guide hole 141 sets are arranged in a circular arrangement and at regular intervals in the outer region of the guide plate 140 coupled to one side of the outer cylinder 130, each of which is adjacent to a plurality of It includes guide holes 141 of dogs (three in this embodiment).
  • the guide holes 141 are formed in the guide plate 140 coupled to the tip side of the outer cylinder 130, and thus, when the outer cylinder 130 rotates about the central axis line (C), the central axis line ( orbits against C).
  • the outer cylinder 130 includes an octagonal cross section.
  • the guide plate 140 is preferably formed in a circular shape having a larger area than the side surface of the outer cylinder 130, but may have other shapes.
  • the distance from the center of the guide plate 140 to the guide hole 141 formed in the guide plate 140 is preferably greater than the distance from the central axis C to the circumference of the outer cylinder 130 .
  • the outer cylinder 130 has been described as having an octagonal cross section, but the shape of the outer cylinder may have a cylindrical shape or various polygonal shapes. That is, the outer cylinder may be provided in various shapes that can be rotated without interference with respect to the inner cylinder to be described later. Also, the guide plate may have various polygonal shapes instead of circular ones.
  • the mask chuck 150 includes first suction holes 154 for vacuum-sucking the mask 10
  • the packaging material chuck 160 has a second suction hole for vacuum-suctioning the packaging material 20 . (164) are provided.
  • the figure shows that eight sets of the mask chuck 150, the packaging material chuck 160 and the guide hole 141 or guide hole 141 are respectively arranged, this is only an example, and the mask chuck 150 and the packaging material chuck 160 ) and the number of arrangement of the guide hole 140 or guide hole 141 set may be variously changed.
  • the mask packaging unit 1 includes a cam mechanism 200 configured to advance or retract the mask chucks 150 in association with the rotation of the outer cylinder 130 .
  • a cam mechanism 200 configured to advance or retract the mask chucks 150 in association with the rotation of the outer cylinder 130 .
  • one end of the mask chuck 150 revolving with respect to the central axis C is the guide hole ( It serves to move the mask chuck 150 so as to approach or enter the entrance of the 141 .
  • the mask packaging unit 1 of this embodiment is driven to push the corresponding mask 10 on the corresponding mask chuck 150 located within the mask insertion section W to the front, and the corresponding mask 10 is inserted into the corresponding guide hole.
  • It includes a push actuator 170 to be inserted into the packaging material 20 after passing through 141 .
  • the guide hole 141 serves to guide the mask 10 not to be separated when the push actuator 170 pushes the mask 10 .
  • at least a portion of the inner lower surface of the guide hole 141 may be configured to be substantially flush with the mask bearing surface of the mask chuck 150 and the packaging material receiving surface of the packaging material chuck 150 , in this case, the mask (10) can be inserted into the packaging material 20 after being more stably transported.
  • the mask packaging unit 1 closes the packaging material 20 on the packaging material chuck 160 in the mask insertion section W to the exit of the guide hole 141 before driving the push actuator 170 . It further includes a packaging material transfer unit 180.
  • the packaging material transfer unit 180 is, for example, a position capable of gripping the rear end of the clamp 181 including a pair of jaws that open or close each other by pneumatic pressure, and the rear end of the packaging material 20 .
  • the first driving cylinder 182 driven back and forth and the clamp 181 bit and gripped the rear end of the packaging material 20
  • the first driving cylinder ( 182) and a second driving cylinder 183 for advancing the clamp 181 to transport the packaging material 20 close to the exit of the guide hole 141 .
  • the driving cylinder as described above, in addition to the first driving cylinder 182 and the second driving cylinder 183 being separately installed, one driving cylinder is installed to advance the clamp 181 and transfer the packaging material 20 . You may.
  • the mask packaging unit 1 in a state in which the front end of the packaging material 20 is located close to the outlet of the guide hole 141, the entrance of the packaging material 20 is widened, and the above-described mask 10 is inserted It further includes an inlet expansion unit 190 to further facilitate the.
  • the inlet expansion unit 190 includes an upper adsorption unit 191 having a vacuum plate structure for adsorbing the top layer of the haejang packaging material 20 and an upper lifting cylinder for lifting the upper adsorption unit 191 up and down.
  • An upper unit including a 192, a lower adsorption unit 193 for adsorbing a lower layer of the packaging material 20, and a lower lifting cylinder for lifting the lower adsorption unit 193 up and down ( 194).
  • the lower unit may be omitted and the entrance of the packaging material 20 may be widened only by the upper unit.
  • the function of the lower side unit may be replaced by the packaging material chuck 160 .
  • the cam mechanism 200 is fixed to the shaft 120 and located in the outer cylinder 130 and has an inner cylinder 210 having a cam groove 211 formed therein, and one end is connected to the bottom of the mask chuck 150 . and a cam following rod 220 for intermittently moving the mask chuck 150 back and forth by moving along the cam groove 211 by the rotation of the outer cylinder 130 .
  • the front end portion of the mask chuck 150 may be advanced by the cam mechanism 200 until it enters the inlet of the guide hole 141 or approaches the inlet.
  • the guide unit 140 has a plurality of guide holes 141 having a constant width from the inlet to the outlet in a row.
  • the mask chuck 150 has a size and shape capable of adsorbing and maintaining a plurality of masks corresponding to the plurality of guide holes 141 .
  • the packaging material chuck 160 has a size and shape capable of adsorbing and maintaining the plurality of packaging materials 20 to correspond to the plurality of guide holes 141 .
  • each of the plurality of mask chucks 150 has a plurality of branches 151 that can enter the inlets of each of the guide holes 141 in a state in which they are maximally advanced by the cam mechanism 200 .
  • a front end of each of the masks 10 is placed in each of the branches 151 , and thus, in the above configuration, a plurality of masks 10 held in a mask chuck 150 for adsorbing and holding a plurality of masks 10 are provided. It allows each of the plurality of guide holes 141 to enter inside the inlet.
  • each of the plurality of packaging material chucks 160 includes a cutout 161 formed at a position where the rear end of the packaging material 20 is to be placed.
  • the aforementioned clamp 181 grips the rear end of the packaging material 20 inside the cutout 161 .
  • the second driving cylinder 183 advances the clamp 181 and the first driving cylinder 181 connected thereto together,
  • the packaging material 20 is brought into close proximity to the exit of the guide hole 141 .
  • the cutout 161 is preferably formed in a shape and size that does not impede the movement of the clamp 181 .
  • the push actuator 170 is provided to correspond to the number of masks 10 adsorbed to the mask chuck 150 .
  • one push actuator may be configured to simultaneously push the plurality of masks 10 placed on the mask chuck 150 .
  • the push actuator 170 is configured to be integral with the mask chuck 150 and is preferably moved together with the mask chuck 150 .
  • the push actuator 170 and the mask chuck 150 may be separated.
  • the connecting portion 30 includes a horizontal portion 31 fixed across a step formed on one side of the guide plate 140 and a vertical portion 32 connecting the horizontal portion 31 and the packaging material chuck 160 .
  • the vertical portion 32 may have a structure in which the vertical portion 32 is vertically elongated in a hydraulic, pneumatic or mechanical manner. When this structure is applied, it will be possible to finely adjust the height of the packaging material chuck 160 .
  • the packaging material transfer unit 180 is provided to correspond to the number of the plurality of packaging materials 20 adsorbed to the packaging material chuck 160 . However, it may also be considered to configure one packaging material transfer unit 180 to simultaneously push the packaging materials 20 placed on the packaging material chuck 160 .
  • the packaging material transfer unit 180 is preferably coupled to the packaging material chuck 160 , but note that the packaging material transfer unit 180 and the packaging material chuck 160 may be separated from each other.
  • the inlet expansion unit 190 includes an upper side unit including an upper adsorption unit and an upper lifting cylinder to lift the upper ply of the packaging material 20, and lowering or fixing the lower ply of the packaging material 20 without movement. and a lower side unit including a lower adsorption portion that is adsorbed on the lower ply of the packaging material 20 .
  • the lower side unit may be omitted, and in this case, the packaging material chuck 160 may serve to adsorb and fix the lower ply of the packaging material 20 .
  • the outer cylinder 130 is intermittently rotated by the driving unit 300 , and as shown in FIG. 3 , when eight mask chucks 150 and eight packaging material chucks 160 are arranged, the outer cylinder rotates intermittently by 45 degrees.
  • the outer cylinder is a loading section in which the mask and packaging material are loaded, a movement section in which the mask and the packaging material are respectively moved to be close to each other, a mask insertion section in which the mask is inserted into the packaging material, and an unloading in which the packaging material in which the mask is inserted is unloaded. (unloading) It rotates to pass the section in turn.
  • the loading section may be formed around 0 degrees
  • the movement section may be formed around 45 degrees to 135 degrees
  • the mask insertion section may be formed around 135 to 225 degrees
  • the unloading section may be formed around 225 degrees to 270 degrees.
  • a section for repositioning the device operated for positional movement and insertion of the mask and packaging material may be formed in the vicinity of 315 degrees.
  • each section formed according to the rotation angle of the outer cylinder as described above is only an example, and the specific position of each section may be variously changed.
  • the mask chuck 150 and the packaging material chuck 160 are arranged 8 each, and a loading section is formed around 0 degrees based on FIG. 3 , and a mask insertion section is formed around 180 degrees. Processes of the packaging apparatus packaging the mask 10 in the packaging material 20 will be sequentially described.
  • the outer cylinder 130 and the guide plate 140 connected to the outer cylinder 130 are rotated, and the outer cylinder 130 and the guide plate are rotated.
  • the mask chuck 150 and the packaging material chuck 160 which respectively adsorbed and picked up the plurality of masks 10 and the plurality of packaging materials 20 in the loading section at approximately 0 degrees, are connected to the outer cylinder ( 130) to reach the mask insertion section (W) in the vicinity of approximately 180 degrees by rotating about the central axis (C).
  • the mask supply unit 2 and the packaging material supply unit 3 deliver the mask 10 and the packaging material 20 to the mask chuck 150 and the packaging material chuck 160 .
  • the mask chuck 150 advances to the maximum by the cam mechanism 200 while reaching the mask insertion section W, whereby the front end of the mask 10 enters the entrance of the guide hole 141 . do.
  • the packaging material transfer unit 180 operates the packaging material chuck ( 160) close the packaging material 20 to the exit of the guide hole (41).
  • the operation of bringing the packaging material 20 close to the exit of the guide hole 141 is capable of gripping the rear end of the packaging material 20 with the clamp 181 by driving the first driving cylinder 182 as shown in FIG. 5 .
  • the vacuum suction of the packaging material chuck 160 on the packaging material 20 is released, as shown in FIGS.
  • the clamp 181 holding the rear end of the packaging material 20 is further advanced to be closer to the exit of the guide hole 141 .
  • the sequential driving of the first driving cylinder 182 , the clamp 181 , and the second driving cylinder 183 and the driving for vacuum adsorption and vacuum adsorption release of the packaging material chuck 160 are performed by a control unit not shown. Controlled. The control unit also controls the rotational driving of the outer cylinder 130 as described above.
  • the upper adsorption part 191 of the inlet expansion unit 190 rises in a state in which the upper ply of the packaging material 20 is adsorbed, and the lower adsorption part of the inlet expansion unit 190 ( 193) descends in a state in which the lower ply of the packaging material 20 is adsorbed, and the front inlet of the packaging material 20 is sufficiently widened.
  • the control of the inlet expansion unit 190 is controlled by the aforementioned control unit.
  • the vacuum adsorption state of the mask chuck 150 with respect to the mask 10 is released, and, for example, a push actuator 170 that may have a pneumatic cylinder structure is installed on the mask chuck 150 .
  • a push actuator 170 that may have a pneumatic cylinder structure is installed on the mask chuck 150 .
  • the mask 10 passes through the guide hole 141 and then is inserted into the packaging material 20 .
  • the driving of the push actuator 170 and the driving for vacuum adsorption and vacuum adsorption of the mask chuck 150 are controlled by the above-described control unit.
  • the packaging material into which the mask is inserted is rotated together by the rotation of the outer cylinder and unloaded by a separate unloading device. .
  • the mask can be automatically and quickly packaged in the packaging material.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Supplying Of Containers To The Packaging Station (AREA)

Abstract

Un appareil d'emballage de masque selon un aspect de la présente invention comprend : une plaque de guidage qui comprend une pluralité de trous de guidage formés dans un agencement circulaire autour d'une ligne d'axe central ; un arbre dont le centre coïncide avec la ligne d'axe central ; un cylindre externe installé avec faculté de rotation sur l'arbre par l'intermédiaire d'un palier et ayant une surface latérale à laquelle la plaque de guidage est couplée ; une unité d'entraînement pour faire tourner le cylindre externe ; une pluralité de mandrins de masque qui sont agencés le long de la circonférence du cylindre externe de façon à faire face respectivement aux entrées des trous de guidage, et qui saisissent les masques à partir de l'unité d'alimentation de masques et tournent autour de la ligne d'axe central lorsque le cylindre externe tourne ; une pluralité de mandrins de matériau d'emballage qui sont couplés à la plaque de guidage de façon à faire face respectivement aux sorties des trous de guidage, et qui saisissent le matériau d'emballage à partir de l'unité d'alimentation en matériau d'emballage et tournent autour de la ligne d'axe central lorsque la plaque de guidage tourne conjointement avec le cylindre externe ; un mécanisme de came qui déplace les mandrins de masque vers l'avant de telle sorte qu'une extrémité de chaque mandrin de masque s'approche ou entre dans l'entrée du trou de guidage correspondant lorsque les mandrins de masque arrivent au niveau d'une section d'insertion de masque en raison de la rotation du cylindre externe ; et un actionneur de poussée qui pousse les masques sur les mandrins de masque positionnés dans la section d'insertion de masque, ce qui permet de faire passer les masques à travers les trous de guidage et d'insérer les masques dans le matériau d'emballage sur les mandrins d'emballage.
PCT/KR2022/000605 2021-01-29 2022-01-13 Appareil d'emballage de masque WO2022164092A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR1020210012766A KR102259038B1 (ko) 2021-01-29 2021-01-29 마스크 포장 장치
KR10-2021-0012766 2021-01-29

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WO2022164092A1 true WO2022164092A1 (fr) 2022-08-04

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KR102259038B1 (ko) * 2021-01-29 2021-05-31 한동희 마스크 포장 장치

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JP2008050043A (ja) * 2006-08-25 2008-03-06 Sumitomo Rubber Ind Ltd 手袋包装方法、及び手袋包装装置
KR101398102B1 (ko) * 2014-01-27 2014-05-28 한동희 패널 부착장치
KR101593482B1 (ko) * 2015-03-09 2016-02-12 (주)에프티코스메틱 마스크팩 포장장치
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JP2008050043A (ja) * 2006-08-25 2008-03-06 Sumitomo Rubber Ind Ltd 手袋包装方法、及び手袋包装装置
WO2007097058A1 (fr) * 2006-09-08 2007-08-30 Yodogawa Medec Co., Ltd. Dispositif d'assemblage de plaques de polarisation
KR101398102B1 (ko) * 2014-01-27 2014-05-28 한동희 패널 부착장치
KR101593482B1 (ko) * 2015-03-09 2016-02-12 (주)에프티코스메틱 마스크팩 포장장치
KR20200139570A (ko) * 2019-06-04 2020-12-14 주식회사 그린동화 마스크포장기용 접이식 공급장치
KR102259038B1 (ko) * 2021-01-29 2021-05-31 한동희 마스크 포장 장치

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