WO2016080228A1 - Outil de liaison - Google Patents

Outil de liaison Download PDF

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Publication number
WO2016080228A1
WO2016080228A1 PCT/JP2015/081481 JP2015081481W WO2016080228A1 WO 2016080228 A1 WO2016080228 A1 WO 2016080228A1 JP 2015081481 W JP2015081481 W JP 2015081481W WO 2016080228 A1 WO2016080228 A1 WO 2016080228A1
Authority
WO
WIPO (PCT)
Prior art keywords
binding
binding member
base
ring
engagement portion
Prior art date
Application number
PCT/JP2015/081481
Other languages
English (en)
Japanese (ja)
Inventor
達也 羽田
泰介 勝見
Original Assignee
株式会社キングジム
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 株式会社キングジム filed Critical 株式会社キングジム
Priority to CN201580062300.5A priority Critical patent/CN107107652B/zh
Priority to SG11201702252QA priority patent/SG11201702252QA/en
Publication of WO2016080228A1 publication Critical patent/WO2016080228A1/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42FSHEETS TEMPORARILY ATTACHED TOGETHER; FILING APPLIANCES; FILE CARDS; INDEXING
    • B42F13/00Filing appliances with means for engaging perforations or slots
    • B42F13/16Filing appliances with means for engaging perforations or slots with claws or rings
    • B42F13/20Filing appliances with means for engaging perforations or slots with claws or rings pivotable about an axis or axes parallel to binding edges
    • B42F13/22Filing appliances with means for engaging perforations or slots with claws or rings pivotable about an axis or axes parallel to binding edges in two sections engaging each other when closed

Definitions

  • the present invention relates to a binding tool that detachably binds an object to be bound having an insertion hole.
  • a binding tool that is used for, for example, a binder or a file and detachably binds a binding object such as a document or a folder
  • a fixed base is fixed to the cover of the binder or a file, and this fixing is performed.
  • a rotation base is provided so as to be rotatable with respect to the base, and a first binding member provided on the fixed base and a second binding member provided on the rotation base are inserted into the insertion hole of the object to be bound.
  • a configuration for insertion a configuration in which an engagement holding unit is provided is known (for example, see Patent Document 1).
  • the binding tool described in Patent Document 1 is used as a first binding member provided on a fixed substrate as a fixed base in a state where the first binding member and the second binding member are not engaged.
  • the tip end portion of the ring piece and the tip end portion of the ring circle as the second binding member provided on the rotating substrate as the rotation base are slightly offset in the direction orthogonal to the rotating direction of the rotating substrate. ing. Then, by engaging at least one of the ring pieces with the tip portions of the ring pieces engaged with each other, the engagement state is strengthened by the restoring force of each ring piece.
  • the rotating substrate is rotatably supported with respect to the fixed substrate by the core shaft, and the rotating substrate is supported by a torsion coil spring provided at a predetermined position of the core shaft. It is biased to rotate in a direction away from the fixed substrate. Then, in a state where the rotating base plate is rotated toward the fixed base plate against this cloth biasing force and the ring pieces are engaged with each other, the engaging state of the ring pieces is stably and strongly strengthened by the biasing force of the torsion coil spring. At the same time, when the ring pieces are bent so as to release the engagement between the ring pieces, the rotating substrate is rotated away from the fixed substrate by the biasing force, and the ring of the binding tool is opened.
  • a large number of rings are arranged along the longitudinal direction of the long base.
  • the thing is known (for example, refer patent document 2).
  • the binding tool as in Patent Document 2 is engaged with each insertion hole of the object to be inserted into each ring with the ring opened.
  • one ring piece is provided so as to be inclined with respect to the other ring piece, and is bent at the time of engagement. It does not coincide with the interval between the insertion holes of the object to be stitched, and the positional deviation tends to occur between the tip of the ring piece and the insertion hole of the object to be bound.
  • the interval between the tip parts of adjacent ring pieces is easily affected by the manufacturing accuracy and the use environment, and the ring piece tip part and the object to be bound Misalignment with the object insertion hole is likely to occur.
  • the manufacturing cost increases, and the manufacturing process becomes complicated due to the time required for manufacturing, and the twisted coil spring is displaced and deteriorated even after manufacturing. There is a possibility that the function of the binding tool is lowered.
  • Patent Document 1 when the configuration as in Patent Document 1 is applied to a long binding tool provided with a large number of ring pieces as in Patent Document 2, it is very complicated to bend and engage each ring piece. Yes, the object to be bound cannot be easily bound.
  • This invention is made in view of such a point, and it aims at providing the binding tool which can bind a to-be-stitched object easily and stably.
  • the present invention is a binding tool for detachably binding an object to be bound having an insertion hole, a fixed base, a rotating base provided to be rotatable with respect to the fixed base, and the fixed base.
  • a first binding member that is provided and can be inserted into the insertion hole of the binding object; and a second binding member that is provided at the rotation base and can be inserted into the insertion hole of the binding object;
  • a third binding member provided in parallel to the first binding member in the fixed base and insertable into the insertion hole of the object to be bound; and a second binding member in the rotation base.
  • a fourth binding member provided side by side and insertable into the insertion hole of the object to be bound, the first binding member having a first engagement portion, and the second binding member.
  • the binding member includes a second engagement portion that can be engaged with the first engagement portion, and the rotation base portion includes the first binding portion.
  • the first engagement portion and the second engagement portion of the second binding member are rotated so as to come in contact with and away from each other, and the first binding member and the second binding member are The first engaging portion and the second engaging portion are engaged to form a ring-shaped first ring, and the third binding member and the fourth binding member are arranged at tip portions.
  • the length of the second ring is longer than the length of the first ring.
  • the object to be bound can be easily bound by simply rotating the rotation base with respect to the fixed base, and the third binding member and the fourth binding member are included. Since the length of the second ring is longer than the length of the first ring constituted by the first binding member and the second binding member, the first engagement is performed when the second ring is bent. The part and the second engaging part are engaged with each other, and the object to be bound can be bound stably.
  • FIG. 1 It is a top view which shows the structure of the binding tool which concerns on one embodiment of this invention. It is sectional drawing which shows the binding tool main body of a binding tool same as the above.
  • (A) is a side view which shows the parallel state of the rotation base part in a binding tool same as the above
  • (b) is a side view which shows inclination tolerance of the rotation base part in a binding tool same as the above.
  • reference numeral 1 denotes a binding tool.
  • the binding tool 1 is used to detachably bind a target object (not shown) such as a loose leaf or a document having an insertion hole.
  • the binding tool 1 is fixedly installed on a cover such as a binder or a file, and both ends in a first direction (longitudinal direction) and a second direction (short direction) orthogonal to the first direction each have two sides.
  • a planar shape component for example, a quadrangular and plate-shaped binding tool body 2 is provided.
  • a fixed base 3 is integrally provided on one side in the second direction, and a substantially rectangular plate-shaped rotation base 4 on the other side in the second direction. Is pivotally supported relative to the fixed base 3.
  • the binding tool body 2 is provided with a recess (not shown) corresponding to the shape of the rotation base 4 adjacent to the fixed base 3 at a position corresponding to the position where the rotation base 4 is pivotally supported.
  • a fixing hole 5 used when fixing the binding tool body 2 to the cover is provided at a boundary portion between the fixing base 3 and the dent part of the binding tool body 2.
  • an attachment hole 7 through which a shaft 6 as a rotation shaft provided in the rotation base 4 is inserted and attached is provided at one end portion of the binding tool body 2 in the second direction. 6 is pivotally supported via 6.
  • the taper part 8 which is thin toward the outer side in the second direction and is inclined toward the cover, for example, is provided.
  • the fixed base 3 is integrally provided with two arc-shaped first binding members 11 that can be inserted into the insertion hole of the object to be bound.
  • the rotation base 4 is integrally provided with two arc-shaped second binding members 12 that can be inserted into the insertion hole of the object to be stitched so as to correspond to the position of the first binding member 11.
  • two arc-bar-like fourth binding members 14 that can be inserted into the insertion holes of the object to be bound are aligned with the second binding members 12. It is provided integrally with the rotation base 4 so as to correspond to the position of the third binding member 13.
  • the first binding member 11, the second binding member 12, the third binding member 13, and the fourth binding member 14 are made of a flexible material such as synthetic resin.
  • the first binding member 11 is provided with a first engagement portion 15 at the distal end opposite to the proximal end connected to the fixed base 3.
  • the first engaging portion 15 includes a tip base portion 15a located at the tip of the first binding member 11, and a hook-like shape protruding outward from the tip base portion 15a, that is, the side opposite to the third binding member 13. And a protruding portion 15b.
  • the second binding member 12 is provided with a second engagement portion 16 that can be engaged with the first engagement portion 15 at the distal end opposite to the proximal end connected to the rotation base 4. It has been.
  • the second engaging portion 16 includes a distal end base portion 16a positioned at the distal end of the second binding member 12, and a hook-shaped protruding portion 16b protruding from the distal end base portion 16a to the inside, that is, the fourth binding member 14 side. And have.
  • the first engaging portion 15 and the second engaging portion 16 are engaged with each other so that the protruding portion 15b and the protruding portion 16b are hooked to each other.
  • the third binding member 13 is provided with an insertion hole 17 at the distal end opposite to the proximal end connected to the fixed base 3.
  • the fourth binding member 14 is provided with a protrusion 18 that can be inserted into the insertion hole 17 at the distal end opposite to the proximal end connected to the rotating base 4.
  • the rotation base 4 together with the second binding member 12 and the fourth binding member 14 is placed on the recessed portion as shown in FIG. As shown in FIG. 3 (b), it can be rotated between a parallel state and an inclined state in which the end opposite to the shaft 6 is separated from the recess and inclined with respect to the fixed base 3. That is, the rotation base 4 is centered on the shaft 6 so that the first engagement portion 15 of the first binding member 11 and the second engagement portion 16 of the second binding member 12 are in contact with and away from each other. Can be rotated.
  • the first ring 21 is configured substantially continuously up to the proximal end portion of the binding member 12.
  • the first ring 21 is disengaged between the first engagement portion 15 and the second engagement portion 16 and the first binding member 11 and the 2nd binding member 12 will be spaced apart and will be in the open state.
  • the second ring 22 is configured substantially continuously from the proximal end portion of the third binding member 13 to the proximal end portion of the fourth binding member 14.
  • the second ring 22 is opened with the distal end portion of the third binding member 13 and the distal end portion of the fourth binding member 14 being separated from each other. It becomes a state.
  • the first ring 21 and the second ring 22 are the total length from the fixed base 3 to the rotating base 4 in the second ring 22, that is, the fourth binding from the base end of the third binding member 13.
  • the length of the member 14 to the base end is the total length from the fixed base 3 to the rotation base 4 of the first ring 21, that is, the base end of the first binding member 11 to the second binding member 12. It is longer than the length to the base end.
  • the rotation base 4 when the rotation base 4 is in a parallel state, the first ring 21 is configured, and the second ring 22 is in a state where the third binding member 13 and the fourth binding member 14 are bent. It is configured.
  • the first binding member 11 and the second binding member 12 are engaged with each other by the first engagement portion 15 and the second engagement portion 16.
  • the first engaging portion 15 and the second engaging portion 16 are formed so as to engage with each other while being displaced in a substantially vertical direction with respect to the binding tool body 2. That is, in the first ring 21, the second engaging portion 16 is positioned closer to the fixed base 3 and the rotating base 4 than the first engaging portion 15, and the first engaging portion 15, the fixed base 3, The shortest distance is longer than the shortest distance between the second engaging portion 16 and the fixed base 3.
  • the surface of the rotation base 4 opposite to the surface on which the second binding member 12 and the fourth binding member 14 are provided that is, the rotation base 4 is a recess.
  • a surface that is located on the side of the concave portion is provided with a convex portion 23 that protrudes toward the concave portion in that state.
  • the convex portion 23 is disposed in the vicinity of a corner portion located at the end portion on the opposite side to the end portion where the shaft 6 is close to the surface on the concave portion side of the rotation base portion 4.
  • the convex portion 23 is rotated before the first engagement portion 15 and the second engagement portion 16 are engaged in the process of rotating the rotation base 4 from the inclined state to the parallel state.
  • the pivot limit point of the moving base 4 is reached, and the entire pivot base 4 contacts the bottom surface of the recess before being placed in the recess.
  • the rotation base 4 has a shaft 6 side (in the second direction) from an end portion (the other end portion in the second direction) opposite to the shaft 6 that is a rotation shaft on which the rotation base portion 4 is pivotally supported.
  • a notch 24 is formed by cutting out to the one end side.
  • the notch 24 is cut from the other end in the second direction toward the one end in the second direction where the shaft 6 is close, and the tip which is the end on the shaft 6 side of the notch 24 is a convex portion. It is located closer to the shaft 6 than the position 23.
  • the turning base 4 is bent and recessed as described above.
  • the end part side in the first direction bends from the notch part 24 in the rotation base part 4.
  • the rotation base 4 is substantially parallel to the fixed base 3, and the first binding member 11 and the second binding member 12 form a first ring 21, and the third binding member 13 and the fourth binding are combined.
  • the distal end portion (the first engagement portion) of the first binding member 11 positioned on both sides of the fixed base 3 is used. 15) The vicinity is pushed inward, that is, in the direction toward the third binding member 13 to release the engagement between the first engagement portion 15 and the second engagement portion 16.
  • the third binding member 13 and the fourth binding member 13 in the state where the first ring 21 and the second ring 22 are configured.
  • the binding member 14 is bent, and the rotation base 4 is urged in the rotation direction.
  • the rotation base portion 4 is caused by the biasing force due to the bending of the third binding member 13 and the fourth binding member 14.
  • the first engagement portion 15 and the second engagement portion 16 are automatically rotated in the direction in which the first engagement portion 15 and the second engagement portion 16 are separated from each other, and a pop-up action that is inclined with respect to the fixed base portion 3 is achieved.
  • the ring 22 is opened.
  • the second binding member 12 and the fourth binding member 14 are inserted into the insertion hole of the object to be bound.
  • the third binding member 13 and the fourth binding member 14 in a state where the tip portions are in contact with each other are bent to engage the first engagement portion 15 and the second engagement portion 16.
  • the rotation base 4 is rotated so that the end portion in the first direction (the convex portion 23 side) of the rotation base 4 in the first direction is bent inward from the notch 24, and the insertion hole 17 is formed.
  • the protrusion 18 is inserted to form the second ring 22, and then the rotation base 4 is further rotated to engage the first engagement portion 15 and the second engagement portion 16.
  • the first ring 21 is configured.
  • the third binding member 13 and the fourth binding member 14 that configure the second ring 22 are bent as described above.
  • the turning base 4 is biased so as to turn to an inclined state by a restoring force.
  • the convex portion 23 is bent with the notch 24 as a boundary by contacting the concave portion. Therefore, the rotation base 4 is urged so as to rotate to the inclined state by the restoring force.
  • the first engagement portion 15 and the second engagement are less likely to be displaced from each other in a state where the protrusion 15b in the first engagement portion 15 and the protrusion 16b in the second engagement portion 16 are hooked.
  • the portion 16 is engaged, rattling or the like hardly occurs and the engaged state is stable.
  • the second ring 22 is bent and the first rotation base 4 is urged in the direction of turning to the inclined state. Since the engaging portion 15 and the second engaging portion 16 are engaged, the state in which the protruding portion 15b and the protruding portion 16b are hooked is stable and can be firmly engaged, and the object to be bound is stabilized. Can be bound.
  • the urging force due to the bending of the second ring 22 acts, so the first engagement portion 15 and the second engagement
  • the removal operation of the object to be bound can be simplified by the pop-up action in which the rotation base 4 is rotated in an inclined state by the biasing force.
  • the rotation base 4 is biased so as to bend and rotate to the inclined state, so that the second ring 22 is bent. Similarly to the urging by the above, it is possible to stabilize the state in which the object to be bound is bound, and to simplify the removal operation of the object to be bound.
  • the rotation base 4 when the rotation base 4 is formed of a relatively hard and low-flexibility material in order to improve strength, it is difficult to bend. Therefore, by providing the rotation base 4 with the notch 24, it is possible to divide the rotation base 4 into a region having the convex portion 23 and a region not having the convex portion 23 via the notch portion 24. In order to make the rotation base 4 in a parallel state, it is only necessary to bend the region having the convex portion 23, so there is no need to bend the entire area of the rotation base 4. Therefore, even if the rotation base 4 is formed of a material that is relatively hard and has low flexibility, it is possible to ensure ease of bending in the region having the convex portion 23 while maintaining the strength of the material.
  • the region having the convex portion 23 that is, the region to be bent is designed to be small, and if the region to be bent is designed to be large, it is more difficult to bend because it is more affected by the hardness of the material.
  • region to bend is designed to be small, and if the region to be bent is designed to be large, it is more difficult to bend because it is more affected by the hardness of the material.
  • What is necessary is just to design suitably the magnitude
  • the second engagement portion 16 is positioned closer to the fixed base 3 and the rotation base 4 than the first engagement portion 15, and the shortest distance between the first engagement portion 15 and the fixed base 3 Since the distance is longer than the shortest distance between the second engagement portion 16 and the fixed base 3, for example, even if an impact is applied from the outside in a state where the object to be bound is bound, the first engagement due to the impact It is possible to cope with the positional deviation between the portion 15 and the second engagement portion 16, and the object to be bound can be bound stably. That is, when a large amount of objects to be bound are bound, or when the binder provided with the binding tool 1 is dropped, a large force is applied to the binding tool 1, and the first engaging portion 15 is moved.
  • the second engagement portion 16 may slide and the engagement state may be released, but the shortest distance between the first engagement portion 15 and the fixed base 3 is fixed to the second engagement portion 16.
  • the shortest distance between the first engagement portion 15 and the fixed base 3 is fixed to the second engagement portion 16.
  • the number of the first binding member 11, the second binding member 12, the third binding member 13, and the fourth binding member 14 is large, the operation of inserting all of them into the insertion hole of the object to be bound is performed. Since it is complicated, it is preferable that the number of the first binding member 11, the second binding member 12, the third binding member 13, and the fourth binding member 14 is small from the viewpoint of workability.
  • the inserted insertion hole is intensively applied, so that it is damaged. From the viewpoint of strength, it is preferable that the number of the first binding member 11, the second binding member 12, the third binding member 13, and the fourth binding member 14 is large.
  • the fixed base 3 and the rotating base 4 are provided only in the vicinity of both ends in the first direction of the binding tool body 2, so that all the insertion holes for the objects to be bound are provided. Since it is not necessary to insert the first binding member 11 and the third binding member 13, and the second binding member 12 and the fourth binding member 14, the workability is good and the force due to the engagement is concentrated. Since it is not too much, the object to be bound can be bound easily and stably.
  • the two first binding members 11 are provided on the fixed base 3, the two second binding members 12 are provided on the rotating base 4, and the third binding member 13 is the two first binding members 11. Since the fourth binding member 14 is disposed between the two second binding members 12, the above pop-up action can be used, and the balance between workability and strength is easy and easy. In addition, the object to be bound can be bound stably.
  • two third binding members 13 are provided between the two first binding members 11, and two fourth binding members 14 are provided between the two second binding members 12.
  • the document insertion hole is less likely to be damaged when turning the document in a state where the document is bound as the object to be bound, and the insertion work into the insertion hole is relatively small, so it is easy and stable.
  • the object to be bound can be bound.
  • the binding tool body 2 with the taper portion 8, even when the fixed base 3 is provided in the vicinity of both ends in the first direction of the binding tool body 2, the document is bound as a binding object.
  • the edge on the insertion hole side of the bent document is a portion between the fixed base 3 in the binding tool body 2 It can be hard to get caught in.
  • the fixed base 3 and the rotating base 4 are provided at both ends in the first direction of the binding tool body 2.
  • the present invention is not limited to such a configuration.
  • the configuration in which the fixed base 3 and the rotation base 4 are provided from one end side to the other end side in the first direction of the tool body 2 and the binding tool 1 are designed to be shorter than the edge portion in which the insertion hole for the object to be bound is provided. Then, the length may correspond to only a part of the insertion hole, and the binding may be performed with only a partial region of the object to be bound.
  • the binding tool body 2 is not limited to a quadrangular and plate-shaped configuration, and may be a plate shape in which at least one end in the first direction and the second direction has a planar shape forming two sides. Can be applied as appropriate.
  • binding tool body 2 is rectangular and plate-shaped, it is not limited to the configuration in which the longitudinal direction is the first direction and the short direction as described above, and the longitudinal direction is the second direction and the short direction. May be configured in the first direction.
  • the rotation base 4 is configured to be pivotally supported on the binding tool body 2 via the shaft 6.
  • the rotation base 4 is not limited to such a configuration.
  • the rotation base 4 is connected to the binding tool body 2 via a hinge. What is necessary is just a structure which can be rotated with respect to the fixed base 3, such as a structure formed integrally.
  • rotation base 4 is configured to be provided with the convex portion 23, it is not limited to such a configuration, and may be configured such that the convex portion 23 is not provided.
  • the position of the convex portion 23 is not limited to the vicinity of the corner portion of the rotation base 4, and the position of the convex portion 23 is based on the material and size of each member. It can be determined as appropriate in consideration of the restoring force.
  • the rotation base 4 has a configuration in which the cutout portion 24 is provided, the configuration is not limited to such a configuration, and a configuration in which the cutout portion 24 is not provided may be employed.
  • the rotating base 4 is difficult to bend. Therefore, in consideration of the material and size of the rotating base 4, a thin-shaped bent portion is provided so as to be easily bent. You may make the structure etc. which were provided.
  • the 1st binding member 11, the 2nd binding member 12, the 3rd binding member 13, and the 4th binding member 14 are not limited to the structure formed in circular arc rod shape,
  • the shape is the 1st ring.
  • the first binding member 11 and the second binding member 12 are more fixed than the fixed base 3 and the rotation base 4 in consideration of the bending based on the length relationship between the first ring 21 and the second ring 22. You may make it the shape bent so that it might extend outside.
  • the second engagement portion 16 is positioned closer to the fixed base 3 and the rotation base 4 than the first engagement portion 15, and the shortest distance between the first engagement portion 15 and the fixed base 3 Although the distance is longer than the shortest distance between the second engagement portion 16 and the fixed base portion 3, the present invention is not limited to such a configuration, and the first engagement portion 15 and the second engagement portion 16 are not limited thereto. And any configuration that can be engaged with each other.
  • the second ring 22 has a configuration in which the protrusion 18 of the fourth binding member 14 is inserted into the insertion hole 17 of the third binding member 13.
  • the second ring 22 is not limited to such a configuration, and the third ring 22 If the tip of the binding member 13 and the tip of the fourth binding member 14 come into contact with each other to form the second ring 22, for example, a configuration in which the tips are engaged with each other may be used.
  • the present invention is used for, for example, a binder, a file, and the like, and can be used to detachably bind a material to be bound such as a document or a folder.

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Abstract

L'invention concerne un outil de liaison dans lequel des objets à lier peuvent être liés facilement et solidement. L'outil de liaison est équipé d'une base fixe (3) et d'une base rotative (4) qui est apte à tourner par rapport à la base fixe (3). La base fixe (3) est pourvue de premiers éléments de liaison (11) et de troisièmes éléments de liaison (13). La base rotative (4) est pourvue de deuxièmes éléments de liaison (12) et de quatrièmes éléments de liaison (14). Des premières parties de mise en prise (15) sont disposées sur les premiers éléments de liaison (11). Des secondes parties de mise en prise (16) sont disposées sur les deuxièmes éléments de liaison (12). Les premiers éléments de liaison (11) et les deuxièmes éléments de liaison (12) forment des premiers anneaux circulaires (21) en raison de l'entrée en prise des premières parties de mise en prise (15) avec les secondes parties de mise en prise (16). Les troisièmes éléments de liaison (13) et les quatrièmes éléments de liaison (14) forment des seconds anneaux circulaires (22) en raison du contact des pointes l'une avec l'autre. Les longueurs totales des seconds anneaux (22) ainsi conçus sont plus longues que les longueurs totales des premiers anneaux (21).
PCT/JP2015/081481 2014-11-18 2015-11-09 Outil de liaison WO2016080228A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201580062300.5A CN107107652B (zh) 2014-11-18 2015-11-09 装订器
SG11201702252QA SG11201702252QA (en) 2014-11-18 2015-11-09 Binding tool

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2014-233432 2014-11-18
JP2014233432A JP6403157B2 (ja) 2014-11-18 2014-11-18 綴じ具

Publications (1)

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WO2016080228A1 true WO2016080228A1 (fr) 2016-05-26

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JP (1) JP6403157B2 (fr)
CN (1) CN107107652B (fr)
SG (1) SG11201702252QA (fr)
WO (1) WO2016080228A1 (fr)

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CN112440597A (zh) * 2019-09-03 2021-03-05 国誉商业(上海)有限公司 装订用具
WO2023231189A1 (fr) * 2022-05-30 2023-12-07 胡灵芝 Dispositif de tri de ferraille et son procédé de tri

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JPS63198573U (fr) * 1987-06-12 1988-12-21
JP2000280674A (ja) * 1999-03-31 2000-10-10 Kokuyo Co Ltd 綴じ具
JP3183199U (ja) * 2013-02-18 2013-05-09 李偉 掛け式綴具
JP3186930U (ja) * 2013-08-20 2013-10-31 山野井商事株式会社 ルーズリーフバインダー

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JP6403157B2 (ja) 2018-10-10

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