Magnet Pocket, Portable Screen, Hook, and Storage System
The magnet pocket, portable screen, and hook system provide adaptable storage configurations by utilizing a magnet pocket with recesses for vertical stacking, a portable screen with adjustable hooks, and a hook with frictional resistance, addressing the inflexibility of existing storage systems.
Patent Information
- Application Number
- JP2021193303
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-11-29
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2041-11-29
AI Technical Summary
Existing storage systems for office supplies lack flexibility in configuring storage modes to accommodate varying user workspace environments.
A magnet pocket with a trapezoidal shape and recesses for vertical stacking, a portable screen with adjustable hook attachment, and a hook with frictional resistance mechanism, allowing for customizable storage configurations.
Enables flexible and customizable storage solutions that adapt to user needs, enhancing workspace organization and usability.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a magnet pocket, a portable screen, a hook, and a storage system suitable for organizing and storing small items such as office supplies.
Background Art
[0002] Telework enables work from home by using ICT equipment, effectively utilizes time and place, and can accommodate flexible work styles. Therefore, the number of companies adopting telework is increasing. With the spread of telework, there is a demand for products that make the home a comfortable workspace.
[0003] As products for making a workspace comfortable, storage tools for organizing and storing small items around a desk such as office supplies have been proposed. For example, there are screens installed on a desk (Patent Document 1), small item storage pockets (Patent Document 2), and hooks (Patent Document 3).
Prior Art Documents
Patent Documents
[0004]
Patent Document 1
Patent Document 2
Patent Document 3
Summary of the Invention
Problems to be Solved by the Invention
[0005] However, the installation environments of users' workspaces vary. Therefore, in order to realize a comfortable workspace, there is a demand for a storage system that can more flexibly configure the storage mode according to users' needs.
[0006] An object of the present invention is to solve the above-described problems.
Means for Solving the Problem
[0007] One aspect of the following disclosure is a magnet pocket having an accommodation chamber with an open upper end for taking in and out an object to be accommodated, the magnet pocket including a back surface portion that closes the back of the accommodation chamber and on which a sheet-shaped magnet is disposed, a pair of side surface portions that respectively protrude from one side edge and the other side edge of the back surface portion to close the side portions of the accommodation chamber, a bottom surface portion that protrudes from the lower end of the back surface portion to close the bottom of the accommodation chamber, and a front surface portion that connects the pair of side surface portions and the bottom surface portion to cover the front of the accommodation chamber. The front surface portion is inclined so as to be spaced apart from the back surface portion as it goes toward the upper end. The back surface portion is provided, at the upper end of the back surface portion and in the vicinity thereof, with a recess that can receive the back surface portions of other magnet pockets by being notched in the width direction.
[0008] Another aspect is a portable screen including legs placed on a top surface and a partition plate supported by the legs. The partition plate is formed of a steel plate shaped in a rectangular shape, and the partition plate has a hook attachment region in which a plurality of through holes extending long in the width direction are arranged at regular intervals in the vertical direction.
[0009] Another aspect is a hook used by being attached to a partition plate having a through hole extending long in the width direction, the hook including a hook body protruding from the partition plate and a support portion fixed to the partition plate to support the hook body. The support portion has a second engaging portion inserted into the through hole of the partition plate, and the second engaging portion has a stopper that elastically abuts against an edge of a side portion of the through hole to generate frictional resistance against movement of the support portion in the longitudinal direction of the through hole.
[0010] Another aspect is a storage system having the above portable screen and the above hook.
Advantages of the Invention
[0011] The magnetic pocket, portable screen, hook, and storage system from the above viewpoints can configure a more flexible storage space according to the needs of the user.
Brief Description of the Drawings
[0012]
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DETAILED DESCRIPTION OF THE INVENTION
[0013] (First Embodiment) The storage system 10 according to the first embodiment includes the magnet pockets 12 shown in FIGS. 1A to 2, the magnet pockets 14 shown in FIGS. 3A to 4, and the magnet pocket 16 shown in FIG. 6. The storage system 10 is composed of an arbitrary combination of the plurality of magnet pockets 12, 14, and 16. The storage system 10 can be composed of only one type of the magnet pocket 12, the magnet pocket 14, and the magnet pocket 16, or can be composed of a plurality of types.
[0014] The magnet pockets 12, 14, and 16 each have storage chambers 18, 20, and 22. The storage chambers 18, 20, and 22 have openings 181, 201, and 221 at the upper ends. Any of the magnet pockets 12, 14, and 16 constitutes a wall-mounted pocket for taking in and out the stored items 96 such as pens 95 and stationery through the openings 181, 201, and 221 at the upper ends.
[0015] As shown in FIGS. 1A to 2, the magnet pocket 12 has the smallest dimension in the width direction among the magnet pockets 12, 14, and 16 of the storage system 10. The magnet pocket 12 has a back surface portion 121, a first side surface portion 122, a second side surface portion 123, a front surface portion 125, a bottom surface portion 124, and an accommodation chamber 18. The magnet pocket 12 has a width of, for example, 83.5 mm at the upper end and a width of, for example, 72 mm at the lower end, and has a shape that is wider at the upper end.
[0016] As shown in FIG. 1B, the back surface portion 121 is a plate-like portion that covers the back of the accommodation chamber 18. The back surface portion 121 has a trapezoidal shape in which the dimension in the width direction gradually narrows from the upper end to the lower end. A sheet magnet 24 is joined to the back surface portion 121. The sheet magnet 24 has a trapezoidal shape with dimensions smaller than those of the back surface portion 121. The sheet magnet 24 covers most of the back surface portion 121. The sheet magnet 24 is joined to the back surface portion 121 by an adhesive. The back surface portion 121 having the sheet magnet 24 is attracted to a wall surface (magnetic material) covered with a steel plate.
[0017] The back surface portion 121 has a recess 26 at the upper end. The recess 26 has a shape that is notched in the width direction of the back surface portion 121. The recess 26 has a shape that can receive the lower end portion of the back surface portion 121 of another magnet pocket 12 connected to the upper side. As in the illustrated example, the recess 26 may have a shape that notches substantially the entire width direction of the back surface portion 121. Also, the recess 26 may have a shape that notches a part of the width direction of the back surface portion 121. The recess 26 in the illustrated example has a dimension in the width direction of, for example, 75 to 83 mm. The dimension in the width direction of the recess 26 is wider than the dimension in the width direction of the lower end of the back surface portion 121 (for example, 72 to 75 mm). Therefore, the recess 26 can receive the lower end portion of the back surface portion 121 of another magnet pocket 12. The dimension in the vertical direction of the recess 26 is, for example, 15 mm.
[0018] The first side surface portion 122 protrudes from one side edge of the back surface portion 121 in a wall shape, and the second side surface portion 123 protrudes from the other side edge of the back surface portion 121 in a wall shape. The first side surface portion 122 and the second side surface portion 123 cover both side portions of the accommodation chamber 18. The first side surface portion 122 and the second side surface portion 123 are inclined so as to gradually approach each other toward the lower end. The angle formed by the first side surface portion 122 and the bottom surface portion 124 is, for example, 93°. The angle formed by the second side surface portion 123 and the bottom surface portion 124 is also, for example, 93°. The upper sides of the first side surface portion 122 and the second side surface portion 123 are along a plane parallel to the bottom surface portion 124. The distance between the upper sides of the first side surface portion 122 and the second side surface portion 123 and the bottom surface portion 124 is, for example, 103 mm.
[0019] The bottom surface portion 124 protrudes from the lower end of the back surface portion 121. The bottom surface portion 124 is inclined so as to form an obtuse angle with the back surface portion 121. By covering the bottom of the accommodation chamber 18, the bottom surface portion 124 constitutes the bottom of the magnet pocket 12. The bottom surface portion 124 has a substantially rectangular shape as shown in the bottom view of FIG. 2. The dimension of the bottom surface portion 124 in the width direction is, for example, 72.5 mm, and the dimension in the front-rear direction is, for example, 35 mm. The front side of the bottom surface portion 124 has a curved shape in which the central portion in the width direction bulges forward.
[0020] The front surface portion 125 closes the front of the accommodation chamber 18 by covering the front of the back surface portion 121. The front surface portion 125 is inclined with respect to the bottom surface portion 124 as shown in the left side view of FIG. 2. The angle formed by the front surface portion 125 and the bottom surface portion 124 is, for example, 102°. Therefore, the front surface portion 125 is inclined with respect to the back surface portion 121 so as to gradually separate from the back surface portion 121 from the lower end to the upper end. The upper side of the front surface portion 125 is located on the same plane as the upper sides of the first side surface portion 122 and the second side surface portion 123. As shown in the plan view of FIG. 2, the front surface portion 125 curves such that the center in the width direction slightly protrudes forward following the front curvature of the bottom surface portion 124.
[0021] In the magnet pocket 12, the back surface portion 121, the first side surface portion 122, the second side surface portion 123, the bottom surface portion 124, and the front surface portion 125 are integrally formed of a resin material such as high-impact polystyrene (HIPS) resin, polypropylene resin, PET resin, or ABS resin. Note that the magnet pocket 12 can also be formed of various elastic resins including silicone elastomer, or can be formed of a metal such as expanded metal. When the magnet pocket 12 is formed of a resin material, the thickness of each part can be, for example, 2.5 mm. The magnet pocket 12 is configured as described above.
[0022] The magnet pocket 12 can be used as a wall-mounted storage device by attracting the sheet-like magnet 24 on the back surface portion 121 to a wall surface with a steel plate or a portable screen 40 (see FIG. 9). Further, when a plurality of magnet pockets 12 are arranged vertically and attracted to a wall surface, a storage system 10 as shown in FIG. 5 can be configured. In this case, the vicinity of the lower end of the back surface portion 121 of the upper magnet pocket 12 can be fitted into the recess 26 of the back surface portion 121 of the lower magnet pocket 12. When the upper and lower magnet pockets 12 are fitted together, an integrated storage system 10 having two storage chambers 18 is configured. The recess 26 can form a gap that allows small items such as pens 95 to be stored in the lower storage chamber 18 by appropriately maintaining the gap between the upper magnet pocket 12 and the lower magnet pocket 12.
[0023] As shown in FIGS. 3A and 3B, the magnet pocket 14 (Modification 1) has a larger dimension in the width direction than the magnet pocket 12. The magnet pocket 14 has a storage chamber 20 covered by a back surface portion 141, a first side surface portion 142, a second side surface portion 143, a bottom surface portion 144, and a front surface portion 145. The dimension of the back surface portion 141 in the width direction is about three times the dimension of the back surface portion 121 of the magnet pocket 12 in the width direction. Specifically, the width of the back surface portion 141 near the upper end is, for example, 256 mm. The width of the back surface portion 141 near the lower end is, for example, 245 mm. The back surface portion 141 has a trapezoidal shape in which the width becomes narrower from the upper end to the lower end.
[0024] The back surface portion 141 has a sheet-shaped magnet 28 that covers most of the back. The sheet-shaped magnet 28 is similar to the sheet-shaped magnet 24 and is joined to the back surface portion 141 by an adhesive. Further, the back surface portion 141 has a recess 30 near the upper end. The recess 30 has a shape that cuts out substantially the entire width direction near the upper end of the back surface portion 141. The recess 30 has a dimension in the width direction of, for example, 250 mm and can accommodate the vicinity of the lower end of the back surface portion 141 of the other magnet pocket 14 (for example, about 245 mm in width).
[0025] Also, the recess 30 has a dimension in the width direction that can receive three magnet pockets 12 arranged in the width direction. The width of the upper end of the magnet pocket 12 is, for example, 83 mm, and the width of three magnet pockets 12 arranged in the width direction is 249 mm. Therefore, the recess 30 of the magnet pocket 14 with a dimension in the width direction of, for example, 250 mm can accommodate three magnet pockets 12. The dimension of the recess 30 in the vertical direction is, for example, 15 mm, and this value is the same as the dimension of the recess 26 of the magnet pocket 12 in the vertical direction.
[0026] The first side surface portion 142 and the second side surface portion 143 of the magnet pocket 14 have the same dimensions and inclination angles as the first side surface portion 122 and the second side surface portion 123 of the magnet pocket 12, respectively. The bottom surface portion 144 of the magnet pocket 14 has a dimension in the width direction of, for example, 245 mm. The dimension of the bottom surface portion 144 in the front-rear direction is, for example, 35 mm, and this value is the same as the dimension of the bottom surface portion 124 of the magnet pocket 12 in the front-rear direction.
[0027] The front surface portion 145 of the magnet pocket 14 is inclined at, for example, 102° with respect to the bottom surface portion 144. The inclination angle of this front surface portion 145 is the same value as the inclination angle of the front surface portion 125 of the magnet pocket 12 with respect to the bottom surface portion 124. The inclination angle of the front surface portion 145 with respect to the back surface portion 141 is the same as the inclination angle of the front surface portion 125 (magnet pocket 12) with respect to the back surface portion 121.
[0028] The vertical dimension of the magnet pocket 14 (the dimension from the bottom surface portion 144 to the upper end of the magnet pocket 14 along the perpendicular direction thereto) is, for example, 103 mm. The vertical dimension of the magnet pocket 14 is the same as the vertical dimension of the magnet pocket 12. The magnet pocket 14 is formed of the same resin material as the magnet pocket 12.
[0029] The above magnet pocket 14 becomes a wall-mounted storage tool by adsorbing the sheet-like magnet 28 to the wall surface with a steel plate lining. Further, the magnet pocket 14 of the present embodiment can constitute various aspects of the storage system 10 by combining with other magnet pockets 12 and 16.
[0030] That is, as shown in FIG. 5, when another magnet pocket 14 is overlapped and adsorbed and fixed on the magnet pocket 14, a storage system 10 having a two-stage storage chamber 20 can be configured. Further, for example, as shown in FIG. 7B, one magnet pocket 14 can configure a storage system 10 having three storage chambers 18 and one storage chamber 20 by fitting three magnet pockets 12 into the recess 30 thereof.
[0031] As shown in FIG. 6, the magnet pocket 16 (Modification 2) is formed to be wider than the magnet pocket 14. The magnet pocket 16 has a width dimension of, for example, 340 mm at the upper end and, for example, 315 mm at the lower end. The vertical dimension of the magnet pocket 16 is, for example, 155 mm. The front-rear dimension of the magnet pocket 16 is 75 mm at the upper end and 35 mm at the lower end.
[0032] The magnet pocket 16 has a back surface portion 161, a first side surface portion 162, a second side surface portion 163, a bottom surface portion 164, a front surface portion 165, and a storage chamber 22. The storage chamber 22 is covered by the back surface portion 161, the first side surface portion 162, the second side surface portion 163, the bottom surface portion 164, and the front surface portion 165.
[0033] The back surface portion 161 has a sheet-shaped magnet 32 and a recess 34. The sheet-shaped magnet 32 covers most of the back of the back surface portion 161. The recess 34 has a shape obtained by cutting out the vicinity of the upper end of the back surface portion 161 over the entire width direction. The recess 34 has a vertical dimension of, for example, 15 mm and a width dimension of, for example, 337 mm. The recess 34 has a dimension capable of accommodating four magnet pockets 12 arranged in the width direction.
[0034] The first side surface portion 162 and the second side surface portion 163 are inclined such that the distance between them slightly widens on the upper end side. The angle formed between each of the first side surface portion 162 and the second side surface portion 163 and the bottom surface portion 164 is, for example, 93°. The vertical dimensions of the first side surface portion 162 and the second side surface portion 163 are larger than the vertical dimensions of the first side surface portion 122 and the second side surface portion 123 of the magnet pocket 12.
[0035] The bottom surface portion 164 has a substantially rectangular shape with a width dimension of, for example, 315 mm and a front-rear dimension of, for example, 35 mm. The front surface portion 165 makes an angle of approximately 90° with the bottom surface portion 164. The above magnet pocket 16 is integrally formed of the same resin material as the magnet pockets 12. The sheet-shaped magnet 32 is joined to the back surface portion 161 with an adhesive.
[0036] The magnet pocket 16 can form storage systems 10 in various modes by combining with other magnet pockets 12 and 14. For example, in the modes shown in FIGS. 8A and 8B, the magnet pocket 16 fits with the magnet pocket 12 and the magnet pocket 14. This mode can form a storage system 10 having three storage chambers 18, 20, and 22 with different dimensions.
[0037] Also, for example, as shown in FIG. 8A, four magnet pockets 12 arranged in the width direction can be fitted into the magnet pocket 16. As shown in FIGS. 7A to 8B, the storage system 10 can realize a flexible storage mode according to the user's needs by combining the magnet pockets 12, 14, and 16.
[0038] (Second Embodiment) As shown in FIG. 9, the portable partition 40 of the present embodiment has a gripping hole 44 in the partition plate 42 and can be easily carried to the user's workspace for installation. The portable partition 40 has a partition plate 42 and a pair of legs 46. The partition plate 42 has a rectangular shape when viewed from the front. The dimension of the partition plate 42 in the width direction is, for example, 400 mm, and the dimension in the vertical direction is, for example, 400 mm. Further, the thickness of the steel plate constituting the partition plate 42 is, for example, 1 mm.
[0039] The partition plate 42 is made of a steel plate and can adsorb and fix the magnet pockets 12, 14, and 16. The gripping hole 44 is formed at the upper part of the partition plate 42 and at the center in the width direction. The gripping hole 44 has a dimension into which the user's hand (finger) can be inserted. The dimension of the gripping hole 44 in the width direction is, for example, 80 mm, and the dimension in the vertical direction is, for example, 18 mm.
[0040] Further, as shown in FIG. 9, the partition plate 42 has a hook attachment region 48 to which hooks 70, 80 (FIGS. 13 to 17B) can be attached. The hook attachment region 48 has a plurality of wide through holes 50. The through holes 50 have a dimension in the width direction that is 10 times or more the dimension in the vertical direction and are elongated in the width direction. The dimension of the through hole 50 in the width direction is, for example, 106 mm, and the dimension in the vertical direction is, for example, 6 mm.
[0041] The plurality of through holes 50 are arranged vertically to form through hole rows 52R, 52L, and 52C. In the through hole rows 52R, 52L, and 52C, the through holes 50 are arranged at a constant pitch in the vertical direction. The vertical pitch of the through holes 50 is, for example, 25.4 mm (1 inch). The hook attachment region 48 has three rows of through hole rows 52R, 52L, and 52C. The left and right through hole rows 52R and 52L each include, for example, 14 through holes 50. Further, the central through hole row 52C includes, for example, 12 through holes 50.
[0042] Between the through-hole row 52R and the through-hole row 52C, and between the through-hole row 52C and the through-hole row 52L, a reinforcing region 54 is formed. The reinforcing region 54 extends linearly in the vertical direction. No through-hole 50 is formed in the reinforcing region 54. The reinforcing region 54 reinforces the partition plate 42. The width of the reinforcing region 54 is, for example, 19 mm.
[0043] As shown in FIGS. 9 and 10, the partition plate 42 has reinforcing ribs 56 on the side edge portions 421, 422 and the bottom edge portion 423. The reinforcing rib 56 has a structure in which the steel plate constituting the partition plate 42 is bent vertically to the back side of the partition plate 42. As shown in FIG. 9, the reinforcing ribs 56 of the side edge portions 421, 422 are formed in portions excluding the rounded portions 58 at the upper end corners. The reinforcing ribs 56 of the side edge portions 421, 422 have a vertical dimension of, for example, 380 mm and a front-rear dimension of, for example, 17 mm. The reinforcing ribs 56 of the side edge portions 421, 422 have a pair of boss holes 60 near the lower end. The boss holes 60 form part of the screwing structure between the leg portion 46 and the partition plate 42.
[0044] As shown in FIG. 11A, the reinforcing rib 56 of the bottom edge portion 423 is formed over substantially the entire width direction of the partition plate 42. The reinforcing rib 56 of the bottom edge portion 423 has cutouts 561 in the vicinity of the side edge portion 421 and in the vicinity of the side edge portion 422, respectively. The cutout 561 is a portion where the reinforcing rib 56 of the bottom edge portion 423 is not formed. The cutout 561 forms a gap through which the connecting portion 461 of the leg portion 46 can be attached to the reinforcing ribs 56 of the side edge portions 421, 422. The dimension in the width direction of the cutout 561 is, for example, 22 mm. Note that the reinforcing rib 56 of the bottom edge portion 423 projects, for example, 8 mm to the back side of the partition plate 42.
[0045] As shown in FIG. 11B, the leg portion 46 includes a connecting portion 461 and a support plate 462. The connecting portion 461 is a portion coupled to the partition plate 42 and extends in a direction perpendicular to the support plate 462. The connecting portion 461 has a width of, for example, 17 mm, a thickness of, for example, 3 mm, and a vertical dimension of, for example, 68 mm. The leg portion 46 has a T-shaped shape when viewed from a direction perpendicular to the connecting portion 461.
[0046] The connecting part 461 has two screw holes 463. The screw holes 463 are provided in a portion that coincides with the boss hole 60. As shown in FIG. 11A, the leg part 46 is attached to the partition plate 42 so as to abut from the inside of the reinforcing ribs 56 on the side edges 421 and 422. The leg part 46 is fixed to the partition plate 42 by screws 88 (or bolts) inserted from the boss hole 60.
[0047] As shown in FIG. 11B, the connecting part 461 is arranged at a position shifted rearward from the center of the support plate 462. A front part 464, which is a part of the support plate 462 on the front side of the connecting part 461, extends to the front side of the partition plate 42. A back part 465, which is a part of the support plate 462 on the rear side of the connecting part 461, extends to the back side of the partition plate 42. The protruding length of the front part 464 is, for example, 72.5 mm, which is longer than the protruding length of the back part 465 (for example, 32.5 mm). The protruding length of the front part 464 is preferably set to be about the same as or larger than the front-rear dimension of the magnet pockets 12, 14, 16 in order to prevent the portable screen 40 from tipping over when the magnet pockets 12, 14, 16 of the first embodiment are attached.
[0048] As shown in FIG. 11A, an elastic seal 466 is attached to the support plate 462 of the leg part 46. The elastic seal 466 is a circular sheet having an adhesive layer on one surface. The elastic seal 466 is formed of a flexible material such as urethane rubber, for example. The elastic seal 466 is adhered to the bottom surface of the support plate 462 and protects the top surface of the desk from the support plate 462.
[0049] The portable screen 40 of the present embodiment is configured as described above and is installed and used on a desk. The magnet pockets 12, 14, 16 can be attached to the portable screen 40 at desired locations, and a storage system 10 according to the user's requirements can be configured. Further, the wide through hole 50 in the hook attachment region 48 enables the attachment positions of the hooks 70, 80 to be continuously changed in the width direction.
[0050] (Modification of the Second Embodiment) The portable screen 400 according to this modified example shown in FIG. 12 is different from the portable screen 40 shown in FIG. 9 in the hook attachment area 48. In the hook attachment area 48 of the portable screen 400, some through holes 500 are connected in the width direction beyond the reinforcement area 54. Since the through holes 500 of the portable screen 400 are connected in the width direction, the range in which the hooks 70 and 80 can move continuously in the width direction is increased, and a more flexible arrangement of the hooks 70 and 80 can be realized. Note that since other configurations of the portable screen 400 are the same as those of the portable screen 40 in FIG. 9, the description thereof is omitted.
[0051] (Third Embodiment) The hook 70 of the present embodiment shown in FIG. 13 has a structure suitable for being attached to and used with the portable screen 40 of FIG. 9. The hook 70 has a hook body 72 and a support portion 74. The hook body 72 is an arm-shaped member that protrudes to the front side of the partition plate 42 of the portable screen 40. The hook body 72 protrudes from the support portion 74.
[0052] The support portion 74 supports the hook body 72. When the support portion 74 is attached to the wide through hole 50 of the partition plate 42, it has a flat plate portion 741 that extends in the width direction to prevent rattling. As shown in FIG. 14, the shape of the flat plate portion 741 is not particularly limited, and it may be a flat plate extending linearly, which is the simplest shape.
[0053] The dimension of the flat plate portion 741 in the width direction can be, for example, 10 mm. The dimension of the flat plate portion 741 in the vertical direction is set to an integer multiple of the arrangement pitch (for example, 25.4 mm) of the through holes 50 of the partition plate 42. The dimension of the flat plate portion 741 in the vertical direction can be, for example, 25.4 mm. The flat plate portion 741 has a contact surface 742 on the side opposite to the side where the hook body 72 protrudes. The contact surface 742 is formed flat and suppresses the rattling of the hook 70 by making surface contact with the front of the partition plate 42. The hook body 72 is disposed at the central portion in the vertical direction of the flat plate portion 741.
[0054] As shown in FIG. 14, in addition to the flat plate portion 741, the support portion 74 further has a first engaging portion 743 and a second engaging portion 744. The first engaging portion 743 is integrally formed with the flat plate portion 741. The first engaging portion 743 has a shape formed by bending a flat plate having the same thickness as the flat plate portion 741. When viewed from the side of the support portion 74, the first engaging portion 743 bends in an L shape. The first engaging portion 743 has a protruding portion 745 and a back contact portion 746.
[0055] The protruding portion 745 bends 90° with respect to the support portion 74 from the upper end of the support portion 74 and protrudes short to the back side. The protruding length of the protruding portion 745 to the back side may be about the same as the thickness of the partition plate 42, for example, 1 to 3 mm. The back contact portion 746 bends 90° from the tip of the protruding portion 745 and extends upward. The vertical dimension of the back contact portion 746 is, for example, 8 mm.
[0056] When the support portion 74 is viewed from the side, the second engaging portion 744 has a substantially U-shaped cross-sectional shape in the horizontal direction. The second engaging portion 744 is formed as a plate-like member having the same thickness as the flat plate portion 741. The second engaging portion 744 has a stopper 75. The stopper 75 includes a leaf spring portion 747, an engaging recess 748, and a release lever 749. The leaf spring portion 747 is integrally connected to the lower end of the flat plate portion 741. The leaf spring portion 747 bends 90° from the lower end of the flat plate portion 741 and protrudes from the contact surface 742, and has a shape that returns to the flat plate portion 741 side again through the curved portion 750.
[0057] When the hook 70 is attached to the partition plate 42, the leaf spring portion 747 is inserted into the through hole 50. The vertical dimension of the leaf spring portion 747 is formed to be larger than the vertical dimension of the through hole 50 of the portable partition 40. The shape of the curved portion 750 is formed in a V shape to facilitate the insertion of the leaf spring portion 747 into the through hole 50. Note that the shape of the curved portion 750 may be a U shape having a smooth curvature.
[0058] The engaging recess 748 is a portion that catches on the lower edge of the through-hole 50 when the hook 70 is attached to the partition plate 42, and is recessed in a concave shape in side view. The release lever 749 is located at the tip of the engaging recess 748. The release lever 749 protrudes shorter to the front side than the flat plate portion 741. The release lever 749 protrudes to the front side when the hook 70 is attached to the partition plate 42.
[0059] Note that the stopper 75 is not limited to the leaf spring portion 747, and may be integrally formed of an elastic body such as rubber or various elastomers.
[0060] The hook 70 of the present embodiment is configured as described above, and its operation will be described below. As shown in FIG. 15, the hook 70 is used by being attached to two through-holes 50 of the partition plate 42. For the support portion 74 of the hook 70, the first engaging portion 743 engages with the upper through-hole 50, and the second engaging portion 744 engages with the lower through-hole 50. The back contact portion 746 contacts the back surface of the partition plate 42 to prevent the hook 70 from being pulled out from the through-hole 50.
[0061] When the second engaging portion 744 is inserted into the through-hole 50, the leaf spring portion 747 is elastically compressed. As a result, the engaging recess 748 generates frictional resistance with the edge of the through-hole 50 due to the biasing force of the leaf spring portion 747. This frictional resistance prevents the hook 70 from moving in the extending direction of the through-hole 50. Further, the engaging recess 748 holds the edge of the through-hole 50 to prevent the hook 70 from accidentally falling off.
[0062] The release lever 749 projects short from the partition plate 42 to the front side. The user can contract the leaf spring portion 747 by pressing the release lever 749 upward with a finger. When the leaf spring portion 747 is compressed by the release lever 749, the frictional resistance between the engaging recess 748 and the edge of the through hole 50 is weakened. Therefore, the user can move the hook 70 along the extending direction of the through hole 50 while pressing the release lever 749. Further, when the user presses the release lever 749 more strongly upward, the engagement between the engaging recess 748 and the edge of the through hole 50 is released, and the second engaging portion 744 can be pulled out from the through hole 50.
[0063] (Modification of the Third Embodiment) As shown in FIGS. 16 and 17A to 17B, the hook 80 according to this modification has an L-shaped shape in a side view. The hook 80 has a hook body 82 and a support portion 74. Since the configuration of the support portion 74 is the same as that of the support portion 74 of the hook 70 described with reference to FIGS. 13 to 15, the description thereof is omitted.
[0064] The hook body 82 projects from the lower end of the flat plate portion 741 of the support portion 74 to the front side. The hook body 82 is formed in a flat plate shape having substantially the same width as the width of the flat plate portion 741. The hook body 82 projects in a direction perpendicular to the flat plate portion 741. The hook body 82 has a reinforcing portion 822 at its base end. The reinforcing portion 822 is arranged so as to obliquely bridge the hook body 82 and the flat plate portion 741. As shown in FIG. 17B, the space between the reinforcing portion 822 and the hook body 821 is joined by a rib 823.
[0065] The hook 80 according to this modification configured as described above has a hook body 82 formed in a flat plate shape. Therefore, by arranging a plurality of hooks 80 side by side in the width direction, a shelf for supporting an article from below can be formed.
[0066] (Fourth Embodiment) As shown in FIG. 18, the storage system 10 of the present embodiment is configured by combining magnet pockets 12, 14, 16, a portable partition 40, and hooks 70, 80. As shown in the figure, the storage system 10 has magnet pockets 12, 14, 16 attached to the portable partition 40 and hooks 70, 80. In the illustrated example, the magnet pocket 12 and the magnet pocket 14 are stacked vertically and adsorbed to the portable partition 40 to form a two-stage storage chamber 20. Further, two hooks 70 form a shelf that supports the mobile phone 97 from below. Furthermore, two hooks 80 hold the tablet terminal 98. Thus, the storage system 10 of the present embodiment can flexibly configure the storage mode according to the user's requirements by using the portable partition 40, the magnet pockets 12, 14, 16, and the hooks 70, 80.
[0067] The above-described embodiments are summarized below.
[0068] One embodiment is magnet pockets 12, 14, 16 having storage chambers 18, 20, 22 with open upper ends for taking in and out the objects to be stored 96 from the upper ends, a back surface portion 121, 141, 161 that closes the back of the storage chamber and has sheet magnets 24, 28, 32 disposed thereon, a pair of side surface portions 122, 123, 142, 143, 162, 163 that project from one side and the other side of the back surface portion and close the side portions of the storage chamber, a bottom surface portion 124, 144, 164 that projects from the lower end of the back surface portion and closes the bottom of the storage chamber, and a front surface portion 125, 145, 165 that connects the pair of side surface portions and the bottom surface portion and covers the front of the storage chamber. The front surface portion is inclined so as to be spaced apart from the back surface portion as it goes toward the upper end, and the back surface portion is provided with recesses 26, 30, 34 at the upper end of the back surface portion and in the vicinity thereof that can receive the back surface portions of other magnet pockets by notching in the width direction.
[0069] The above-mentioned magnetic pocket can form a storage tool with a plurality of storage chambers stacked vertically by placing a part of the back surface of another magnetic pocket in the concave portion on the back surface. Further, the concave portion can prevent the upper magnetic pocket from shifting downward and can position the upper and lower magnetic pockets. As a result, for example, it is possible to prevent an event in which the upper magnetic pocket blocks the storage chamber of the lower magnetic pocket and the storage chamber of the lower magnetic pocket becomes unusable.
[0070] In the above-mentioned magnetic pocket, the pair of side surfaces are inclined so that the distance between them becomes narrower toward the lower end, and the width of the bottom surface is narrower than the distance at the upper end portions of the pair of side surfaces. Since the width near the lower end of this magnetic pocket is relatively narrow, the vicinity of the lower end of the upper magnetic pocket can be overlapped so as to be inserted into a part of the storage chamber of the lower magnetic pocket. When a plurality of this magnetic pocket are arranged in the vertical direction, the occupied space in the vertical direction can be reduced.
[0071] In the above-mentioned magnetic pocket, the upper side of the front surface portion is at a position lower than the upper end of the side surface portion when the back surface portion is fixed to the wall surface. When a plurality of this magnetic pocket are stacked in the vertical direction, this magnetic pocket can widen the opening of the storage chamber of the lower magnetic pocket. As a result, when a plurality of magnetic pockets are stacked and used in the vertical direction, it facilitates the putting in and taking out of the objects to be stored into and from the lower magnetic pocket.
[0072] In the above-mentioned magnetic pocket, the upper sides of the pair of side surface portions are inclined so as to become lower as they approach the front surface portion when the back surface portion is fixed to the wall surface. When a plurality of this magnetic pocket are stacked, this magnetic pocket can widen the opening of the lower magnetic pocket and facilitates the putting in and taking out of the objects to be stored.
[0073] Another embodiment includes legs 46 placed on the top surface and a partition plate 42 supported by the legs. The partition plate is formed of a steel plate shaped in a rectangular shape, and the partition plate has a hook attachment region 48 in which a plurality of through holes 50 extending long in the width direction are arranged at regular intervals in the vertical direction. This is a portable partition 40.
[0074] The above portable partition includes a plurality of through holes extending long in the width direction in the hook attachment region. Such through holes can continuously adjust the attachment position of the hook in the width direction, facilitating a more flexible configuration of the storage space. Also, since the portable partition has a steel plate, it is possible to attach a magnet pocket.
[0075] In the above portable partition, the hook attachment region has a plurality of through hole rows 52R, 52L, 52C in which the plurality of through holes are arranged in the vertical direction in the width direction, and the partition plate has a reinforcing region 54 linearly connected in the vertical direction between the through hole rows. This portable partition can ensure sufficient strength even when using a thin steel plate by having a reinforcing region. Therefore, the above portable partition enables weight reduction and has excellent portability.
[0076] In the above portable partition, the partition plate has reinforcing ribs 56 that bend the partition plate in the thickness direction on each of both side edges of the partition plate and at least one of the upper and lower edges of the partition plate. This portable partition can exhibit sufficient strength even when the partition plate is made thinner by the reinforcing ribs. Therefore, the above portable partition enables further weight reduction.
[0077] In the above portable partition, the reinforcing ribs on both side edges of the partition plate have boss holes 60 for screwing the legs, and the legs are screwed to the partition plate via the reinforcing ribs. This portable partition can simplify the attachment structure of the legs. Also, since the legs can be removed, the portable partition can be packed compactly, reducing transportation costs.
[0078] The above-described portable screen, wherein the partition plate has a gripping hole 44 near the upper end in the vertical direction. Since the user can carry the portable screen by holding the gripping hole, it has excellent handling performance.
[0079] Another embodiment is hooks 70, 80 that are used by being attached to a partition plate having a through hole that extends long in the width direction, the hook bodies 72, 82 that protrude from the partition plate, and a support portion 74 that is fixed to the partition plate and supports the hook bodies. The support portion has a second engaging portion 744 that is inserted into the through hole of the partition plate, and the second engaging portion 744 has a stopper 75 that elastically abuts against an edge of a side portion of the through hole to generate frictional resistance against movement of the support portion in the longitudinal direction of the through hole.
[0080] The above-described hook has a stopper, thereby preventing movement along a through hole that extends long in the width direction.
[0081] The above-described hook, wherein the stopper has a leaf spring portion 747. This hook can realize the stopper with a simple structure and has excellent manufacturing cost.
[0082] The above-described hook, wherein the second engaging portion has a release lever 749 that releases the elastic abutment of the stopper against the through hole.
[0083] The above-described hook, wherein the support portion has a flat plate portion 741 between the first engaging portion and the second engaging portion, and the flat plate portion is in surface contact with the partition plate. This hook can be stabilized and the rattling can be reduced because the flat plate portion is in surface contact with the partition plate.
[0084] Another embodiment is a storage system 10 comprising the above-described magnetic pocket and a second magnetic pocket having a storage chamber wider than the storage chamber of the magnetic pocket and having an upper end of the storage chamber open, wherein the second magnetic pocket closes the back of the storage chamber and has a second back surface portion on which magnets are arranged, and a pair of second side surface portions protruding from one side and the other side of the back surface portion to close the side portions of the storage chamber, and a second bottom surface portion protruding from the lower end of the back surface portion to close the bottom of the storage chamber, and a second front surface portion connecting the pair of side surface portions and the bottom surface portion to cover the front of the storage chamber, the second front surface portion being inclined so as to be spaced apart from the second back surface portion toward the upper end, the second back surface portion being adsorbed and fixed to the wall surface by contacting the entire surface thereof with a magnetic wall surface, and each widthwise dimension of the second front surface portion, the second back surface portion, and the second bottom surface portion being an integral multiple of the widthwise dimension of the magnetic pocket, and the second back surface portion having a second recess near the upper end of the second back surface portion and capable of receiving a part near the lower end of a plurality of the magnetic pockets arranged side by side in the width direction.
[0085] In the above storage system, the angle formed by the second back surface portion and the second front surface portion of the second magnetic pocket is equal to the angle formed by the back surface portion and the front surface portion of the magnetic pocket.
[0086] In the above storage system, the legs of the portable screen have support plates 462 protruding forward and backward of the partition plate, respectively, and the protruding length of the support plates from the partition plate is the same as or greater than the protruding distance from the partition plate when the magnetic pocket is adsorbed and fixed to the partition plate. According to this storage system, even when a magnetic pocket is attached to the portable screen, the portable screen can be prevented from falling over.
[0087] A storage system according to another embodiment is a storage system further comprising the above-described magnetic pocket in addition to the above storage system.
[0088] The storage system of another embodiment may include the above-described portable partition and the above-described hook.
[0089] It should be noted that the present invention is not limited to the above-described embodiments, and various configurations can be adopted without departing from the gist of the present invention.
Explanation of Reference Numerals
[0090] 10…Storage system 12, 14, 16…Magnet pockets 18, 20, 22…Storage chambers 24, 28, 32…Sheet magnets 26, 30, 34…Recesses 40…Portable partition 42…Partition plate 44…Grip holes 46…Legs 48…Hook attachment area 50…Through holes 52C, 52L, 52R…Through hole rows 54…Reinforcement area 56…Reinforcement ribs
Claims
1. A magnet pocket having an upper end that is open and a storage chamber for taking in and out the object to be stored from the upper end, closing the back of the storage chamber and having a back surface portion on which a sheet-shaped magnet is disposed, a pair of side surface portions protruding from one side edge and the other side edge of the back surface portion respectively to close the side portions of the storage chamber, a bottom surface portion protruding from the lower end of the back surface portion to close the bottom of the storage chamber, and a front surface portion connecting the pair of side surface portions and the bottom surface portion to cover the front of the storage chamber, wherein the front surface portion is inclined so as to be spaced apart from the back surface portion as it goes toward the upper end, the back surface portion is provided with a recess at the upper end and in the vicinity thereof that can receive the back surface portion of another magnet pocket by notching in the width direction, the pair of side surface portions are inclined so that the distance between them becomes narrower as they go toward the lower end, and the width of the bottom surface portion is narrower than the distance at the upper end portions of the pair of side surface portions, the dimension in the width direction of the recess is wider than the dimension in the width direction of the lower end of the back surface portion, a magnet pocket.
2. The magnet pocket according to Claim 1, wherein the recess is formed by notching the entire area in the width direction of the back surface portion. a magnet pocket.
3. A portable screen comprising legs placed on a top surface and a partition plate supported by the legs, wherein the partition plate is formed of a steel plate shaped in a rectangular shape, the partition plate has a hook attachment region in which a plurality of through holes extending long in the width direction are arranged at regular intervals in the vertical direction, and reinforcing ribs bent perpendicular to the partition plate are provided on each of both side edges and the bottom edge of the partition plate, notches are provided near one side edge portion and the other side edge portion of the partition plate where the reinforcing ribs are not formed, and legs attached to the reinforcing ribs formed on both side portions of the partition plate through the notches are provided, wherein the legs have a connecting portion that abuts from the inside of the reinforcing rib and is connected to the reinforcing rib, and a support plate extending in front of and behind the partition plate from the lower end portion of the connecting portion, and the connecting portion is located on the rear side of the center in the front-rear direction of the support plate, a portable screen.
4. The portable screen according to Claim 3, wherein the hook attachment region has a plurality of through hole rows in which the plurality of through holes are arranged in the vertical direction in the width direction, and the partition plate has a reinforcing region linearly connected in the vertical direction between the through hole rows, a portable screen.
5. The portable screen according to claim 3 or 4, wherein the partition plate has reinforcing ribs formed by bending the partition plate in the thickness direction on each of both side edges of the partition plate and at least one of the upper and lower edges of the partition plate. Portable screen.
6. The portable screen according to any one of claims 3 to 5, wherein the partition plate has a gripping hole near the upper end in the vertical direction. Portable screen.
7. A hook used by being attached to a partition plate having a through hole extending long in the width direction, a hook body protruding from the partition plate, and a support portion fixed to the partition plate and supporting the hook body, wherein the support portion has a second engaging portion inserted into the through hole of the partition plate, and the second engaging portion has a stopper that elastically abuts against an edge of a side portion of the through hole to generate frictional resistance against movement of the support portion in the longitudinal direction of the through hole, and a release lever for releasing the elastic abutment of the stopper against the through hole, wherein the release lever weakens the frictional resistance by the stopper by upward pressing. Hook.
8. A storage system having the portable screen according to claim 3 and the hook according to claim 7. Storage system.
9. The storage system according to claim 8, further comprising the magnet pocket according to claim 1. Storage system.
Citation Information
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