Stocka
The rainwater drip prevention section and intrusion prevention measures in stockers address the issue of component count and rainwater entry, ensuring effective waterproofing without compromising neatness or functionality.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- FUJI CORP
- Filing Date
- 2022-07-29
- Publication Date
- 2026-06-01
AI Technical Summary
Existing stockers with waterproof structures have increased component count, affecting neatness and require additional measures to prevent rainwater entry through gaps in doors and other areas.
A rainwater drip prevention section with an inclined surface above the touch panel directs rainwater away from the panel, and an intrusion prevention section with a folded portion prevents rainwater entry from the opening, maintaining neat appearance and functionality.
Effectively prevents rainwater from reaching sensitive components, such as touch panels, while minimizing component count and interference with door operations.
Smart Images

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Abstract
Description
Technical Field
[0001] This specification discloses a stocker.
Background Art
[0002] Conventionally, in a stocker provided with a storage for accommodating articles, there has been proposed one having a waterproof structure for preventing the influence of rainwater when installed outdoors. For example, in Patent Document 1, a locking and unlocking part for locking and unlocking the door of a delivery box (storage) is provided on the front surface of the door, a cover part for covering the periphery and the front surface of the locking and unlocking part, and a wall part that surrounds the periphery of the locking and unlocking part and is arranged inside the cover part in a state where the cover part covers the locking and unlocking part are provided, thereby forming a waterproof structure for the locking and unlocking part.
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] In the structure of Patent Document 1 described above, since the cover part and the wall part are provided, the number of members increases and the appearance becomes less neat. Also, in a stocker provided with such a storage, there are parts where waterproof measures are required other than the locking and unlocking part, such as the possibility that rainwater may enter the inside through the gap of the opening and closing door for opening and closing the storage, so further improvement is required.
[0005] The main object of the present disclosure is to more appropriately take waterproof measures for the stocker.
Means for Solving the Problems
[0006] The present disclosure has taken the following means to achieve the above main object.
[0007] The first stocker in this disclosure is A stocker equipped with a lockable storage compartment, which accepts an operator's command to unlock the storage compartment, A touch panel is provided on the wall of the storage unit, which can be operated by the operator. To prevent rainwater from dripping from the wall onto the touch panel, a rainwater drip prevention section is provided above the touch panel, with a length in the longitudinal direction equal to or greater than the width of the touch panel. Equipped with, The gist of the rainwater drip prevention part is that its upper surface has an inclined surface that slopes along the longitudinal direction so as to allow rainwater flowing down the wall surface to flow in the longitudinal direction.
[0008] The first storage device of this disclosure includes a rainwater drip prevention section provided above the touch panel, with a longitudinal length greater than or equal to the width of the touch panel. The rainwater drip prevention section has an inclined surface on its upper surface that slopes along the longitudinal direction to direct rainwater flowing down the wall in the longitudinal direction. This prevents rainwater flowing down the wall from dripping onto the touch panel, thereby preventing malfunctions of the touch panel due to water droplet adhesion. Furthermore, since no other components are required besides the rainwater drip prevention section, the appearance can be kept neat. Therefore, waterproofing measures for the storage device can be implemented more effectively. [Brief explanation of the drawing]
[0009] [Figure 1] A perspective view of a stocker 10 equipped with a delivery storage area 30 and a control unit 20. [Figure 2] Front view of control unit 20. [Figure 3] Front view of the rain drip prevention section 24. [Figure 4] Perspective view of the rain drip prevention section 24. [Figure 5] An explanatory diagram showing how rainwater flows across the front panel 22. [Figure 6] A cross-sectional view of part of the delivery warehouse 30. [Figure 7] A cross-sectional view of a portion of the comparative example delivery warehouse 130. [Modes for carrying out the invention]
[0010] Next, embodiments of the present disclosure will be described with reference to the drawings. Figure 1 is a perspective view of a stocker 10 comprising a delivery storage shed 30 and a control unit 20. Figure 2 is a front view of the control unit 20. The left-right, front-back, and up-down directions are as shown in each figure.
[0011] As shown in Figure 1, the Stocker 10 comprises multiple box-shaped storage containers (storage boxes) 30 capable of storing goods, and one control unit (control box) 20. The Stocker 10 has multiple storage containers 30 arranged vertically (four in Figure 1) in multiple rows horizontally (five in Figure 1), with the control unit 20 replacing the single storage container 30 in the leftmost row. The Stocker 10 can be installed in various locations such as offices, convenience stores, train stations, schools, apartment buildings, and shopping centers, and may be installed both indoors and outdoors.
[0012] The control unit 20 receives various operations from operators (deliverers, recipients) regarding the loading and unloading of goods into and from each delivery warehouse 30, and performs various processes related to locking and unlocking each delivery warehouse 30. Each delivery warehouse 30 comprises a rectangular parallelepiped body 31 and a rectangular plate-shaped opening / closing door 35 that is attached to the body 31 so as to be openable and closable, allowing goods to be loaded into the body 31 when the opening / closing door 35 is opened. The stocker 10 is used for the handover of goods delivered by a delivery person, after the goods have been delivered to one of the delivery warehouses 30 by the delivery person (supplier), and the recipient takes the goods out of the delivery warehouse 30 and receives them.
[0013] Furthermore, as shown in Figure 1, the control unit 20 comprises a rectangular parallelepiped body 21 the same size as the delivery warehouse 30, and a front panel 22 that covers the front of the body 21 and to which various devices are attached, with the control unit 20a located inside the body 21. Various devices are attached to the front panel 22 as shown in Figure 2, including a touch panel 23, a camera module 25, a code reader 26, a receipt stamp module 27, a speaker module 28, and a cylinder lock 29. In addition, a rain drip prevention unit 24 is attached to the front panel 22 directly above the touch panel 23. Other devices such as a human presence sensor (not shown) that detects the presence or absence of users may also be attached as various devices. Furthermore, the types, number, and positions of the devices to be placed are examples only, and it is sufficient that at least the touch panel 23 and the rain drip prevention unit 24 are placed.
[0014] The touch panel 23 is a rectangular panel positioned in the center of the front panel 22, along the surface of the panel, i.e., along the wall surface of the storage unit 10, and is configured as a capacitive touch panel. The camera module 25 is positioned above the rain drip prevention section 24, capable of capturing images of a predetermined area in front of the storage unit 10, and captures images including subjects such as delivery persons and recipients. The code reader 26 is positioned below the touch panel 23 and reads various codes shown on, for example, delivery slips for goods or the recipient's mobile terminal. The receipt stamp module 27 is positioned below the touch panel 23 and is a stamp unit capable of stamping a receipt stamp as proof of delivery on, for example, delivery slips for goods. The speaker module 28 is positioned to the left of the touch panel 23 and outputs voice guidance regarding the loading and unloading of goods through multiple voice output holes. The cylinder lock 29 is positioned in the lower left of the front panel 22 and unlocks and locks the front panel 22 by operating a key inserted into the keyhole by the administrator of the storage unit 10. The front panel 22 is attached to the main body 21 so as to be openable and closable, and can be opened by unlocking the cylinder lock 29.
[0015] The control unit 20a controls the display and input of the touch panel 23, as well as inputting information read by the code reader 26 and images captured by the camera module 25, and outputting instructions for stamping to the receipt stamp module 27 and audio output to the speaker module 28. The control unit 20a also inputs detection signals from sensors (not shown) that detect the opening and closing of the opening and closing doors 35 of each delivery warehouse 30, and detection signals from sensors (not shown) that detect the presence or absence of items inside the main unit 31, and outputs locking and unlocking signals to the locking devices of the opening and closing doors 35 of each delivery warehouse 30.
[0016] Here, we will explain the details of the rain drip prevention section 24. Figure 3 is a front view of the rain drip prevention section 24. Figure 4 is a perspective view of the rain drip prevention section 24. The rain drip prevention section 24 is a rod-shaped member that extends linearly along the width direction (horizontal direction, left-right direction) of the touch panel 23. The length of the rain drip prevention section 24 in the longitudinal direction is greater than or equal to the width of the touch panel 23, and it is installed directly above the touch panel 23, i.e., without any gap between it and the upper edge of the touch panel 23, and is centered with the touch panel 23 in the left-right direction. The rain drip prevention section 24 is formed with a width (depth) and height in the front-rear direction of a few millimeters to a dozen millimeters (for example, 10 mm), and has a compact configuration that minimizes the amount of protrusion from the surface of the front panel 22 (wall surface of the storage 10). Furthermore, the upper surface of the rainwater drip prevention section 24 has an inclined surface 24a that slopes in one direction from one end (left end) to the other end (right end) in the longitudinal direction to allow rainwater to flow in the longitudinal direction, and a flat surface 24b that extends flat from one end to the other in the longitudinal direction to receive rainwater. The flat surface 24b is formed on the side (rear side) closer to the surface of the front panel 22, and the inclined surface 24a is formed on the side (front side) further from the surface of the front panel 22.
[0017] FIG. 5 is an explanatory diagram showing how rainwater flows on the front panel 22. Since the flat surface 24b of the drip prevention portion 24 is formed on the side of the front panel 22, the rainwater flowing on the front panel 22 can be received and stored by the flat surface 24b. When the water droplets of the rainwater accumulated on the flat surface 24b become large, the water droplets drip forward from the flat surface 24b and fall onto the inclined surface 24a. The rainwater (water droplets) that has fallen onto the inclined surface 24a flows to the right along the inclined surface 24a due to its own weight, and when it reaches the right end of the drip prevention portion 24, it drips onto the front panel 22 and flows downward on the right side of the touch panel 23 (see the dotted arrow in FIG. 5). In this way, the drip prevention portion 24 can prevent the rainwater flowing on the front panel 22 from dripping onto the touch panel 23. Therefore, it is possible to prevent the adhesion of water droplets to the touch panel 23 and the misdetection of the movement of water droplets as a touch operation. In addition, since the drip prevention portion 24 stores the rainwater received by the flat surface 24b until it falls due to its own weight and then flows it onto the inclined surface 24a, the flow of rainwater along the inclined surface 24a can be promoted. As a result, the rainwater can reach the right end without stopping in the middle of the inclined surface 24a, so that it is possible to prevent the rainwater that has stopped in the middle of the inclined surface 24a from dripping to the front side. Incidentally, the drip prevention portion 24 is formed such that, for example, the front inclined surface 24a has a slightly wider width (depth) in the front-rear direction than the rear flat surface 24b. Thereby, since the width (depth) of the inclined surface 24a in the front-rear direction can be ensured, it is possible to prevent the rainwater from dripping to the front side while flowing on the inclined surface 24a.
[0018] Next, the detailed configuration of the storage 30 will be described. FIG. 6 is a partial cross-sectional view of the storage 30. As shown in the figure, the main body 31 of the storage 30 is provided with a rectangular opening 31a for taking in and out articles, and a frame 32 that forms the opening 31a. Further, on the main body 31, intrusion prevention portions 33a, 33b, and 33c are provided on each side (each edge) of the rectangular opening 31a so as to prevent rainwater from entering from the edge of the opening 31a. The intrusion prevention portion 33a extends along the left-right direction (width direction) on the upper side (upper edge) of the opening 31a, and its detailed shape will be described later. The intrusion prevention portion 33b is provided on each of the left and right sides of the opening 31a and is a flat plate member that extends along the up-down direction. The intrusion prevention portion 33c is a flat plate member that extends along the left-right direction (width direction) on the lower side of the opening 31a. Note that since rainwater is likely to enter the opening 31a from the upper side (upper edge) of the opening 31a, the intrusion prevention portions 33b and 33c may not be provided.
[0019] The opening / closing door 35 is provided with a rectangular door plate 35a that covers the front of the opening 31a including the frame 32, and a peripheral wall 35b that stands upright rearward from the peripheral edge of the door plate 35a. Further, on the upper part of the back surface (rear surface) of the door plate 35a, a packing 36 made of a material having elasticity such as urethane foam or rubber sponge is provided. The packing 36 is disposed at a position facing the upper side portion of the frame 32 and is pressed against the intrusion prevention portion 33a in the closed state of the opening / closing door 35.
[0020] The intrusion prevention section 33a of this embodiment has a cross-section perpendicular to the extending direction (left-right direction) that has an L-shaped section 34a and a folded-back section 34b. The L-shaped section 34a protrudes forward from the upper edge of the opening 31a and bends upward at a right angle, extending upward to a position where the distance from the peripheral wall 35b (inner surface) of the opening / closing door 35 is distance D1 (see enlarged view in Figure 6). The folded-back section 34b is formed integrally with the L-shaped section 34a so as to be folded backward at a right angle from the upper end of the L-shaped section 34a. In this way, because the intrusion prevention section 33a has a folded-back section 34b, even if rainwater (water droplets) seeps in through the gap between the main body 31 (frame 32) and the peripheral wall 35b, it is possible to prevent the rainwater from going over the intrusion prevention section 33a (L-shaped section 34a) (see dotted arrow in Figure 6). Therefore, it is possible to reliably prevent rainwater that has gone over from flowing downward through the gap with the packing 36 and entering the opening 31a by traveling along the lower surface of the intrusion prevention part 33a.
[0021] Here, Figure 7 is a cross-sectional view of a part of the comparative example's delivery storage shed 130. The comparative example differs from the embodiment in that the intrusion prevention portion 133a provided on the upper edge of the opening 31a does not have a folded portion 34b. That is, the intrusion prevention portion 133a of the comparative example has an L-shaped portion 134a similar in shape to the L-shaped portion 34a of this embodiment, but does not have a folded portion 34b. Therefore, in the comparative example, rainwater (water droplets) that seeps in through the gap between the main body 31 (frame 32) and the peripheral wall 35b can easily go over the intrusion prevention portion 133a (L-shaped portion 134a), and the rainwater that goes over can flow downward through the gap with the packing 36 and easily enter the opening 31a by traveling along the lower surface of the intrusion prevention portion 133a (see dotted arrow in Figure 7).
[0022] Therefore, in the comparative example, it is necessary to extend the L-shaped portion 134a upward so that the distance between the upper end surface of the L-shaped portion 134a and the peripheral wall 35b (inner surface) of the opening / closing door 35 is, for example, a distance D2 smaller than distance D1 (see enlarged view in Figure 7) to prevent rainwater from overflowing. However, if the distance D2 is small, the intrusion prevention portion 133a (upper end of the L-shaped portion 134a) may interfere with the peripheral wall 35b when opening and closing the opening / closing door 35, which may hinder the smooth opening and closing operation of the opening / closing door 35 or cause deformation of the opening / closing door 35 (peripheral wall 35b) or the intrusion prevention portion 133a. Furthermore, in order to prevent such interference, it is necessary to improve the mounting accuracy of the opening / closing door 35 to suppress misalignment and tilting, but this may lead to an increased workload, such as the time required for adjustment during installation. In contrast, in this embodiment, by providing a folded portion 34b, the height of the intrusion prevention portion 33a can be reduced to prevent interference while ensuring waterproof performance. Therefore, it is possible to prevent malfunctions caused by interference with the opening and closing door 35, and to prevent an increase in the workload required to prevent such interference.
[0023] Here, the correspondence between the components of this embodiment and the components of the present disclosure will be clarified. The delivery storage unit 30 of this embodiment corresponds to the delivery storage unit of the present disclosure, the stocker 10 corresponds to the stocker, the touch panel 23 corresponds to the touch panel, the rain drip prevention unit 24 corresponds to the rain drip prevention unit, the inclined surface 24a corresponds to the inclined surface, and the flat surface 24b corresponds to the flat surface. Furthermore, the main body 31 of the delivery storage unit 30 corresponds to the main body, the opening / closing door 35 corresponds to the opening / closing door, and the intrusion prevention unit 33a corresponds to the intrusion prevention unit.
[0024] The Stocker 10 of this embodiment, as described above, is equipped with a rainwater drip prevention section 24 located above the touch panel 23, which has an inclined surface 24a formed thereon that directs rainwater flowing down the surface of the front panel 22 in the longitudinal direction. This prevents rainwater flowing down the surface of the front panel 22 from dripping onto the touch panel 23, thereby preventing malfunctions of the touch panel 23 due to water droplets. Furthermore, since no other components are needed to prevent rainwater from dripping onto the touch panel 23 besides the rainwater drip prevention section 24, the appearance can be kept neat. Therefore, the waterproofing measures for the Stocker 10 can be implemented more appropriately.
[0025] Furthermore, since the inclined surface 24a of the rainwater drip prevention section 24 slopes in one direction from the left end to the right end, it can collect rainwater on the right end and prevent it from flowing to the left end. As a result, it is possible to suppress rainwater from concentrating and flowing into the speaker module 28 (equipment) located to the left of the touch panel 23, thereby preventing it from being affected by rainwater. In addition, the control unit 20 on which the touch panel 23 is installed is located in the leftmost row of the stocker 10, and other equipment and facilities may be located adjacent to the left side of the stocker 10. Even in such cases, since the rainwater drip prevention section 24 does not allow rainwater to flow to the left end, it is possible to appropriately prevent those devices and facilities from being affected by rainwater.
[0026] Furthermore, the rainwater drip prevention section 24 receives and collects rainwater on its flat surface 24b, and then drains it on its inclined surface 24a, making it easier for rainwater to flow in the longitudinal direction and more reliably preventing rainwater from dripping onto the touch panel 23. Also, since the rainwater drip prevention section 24 is located directly above the touch panel 23, it can prevent rainwater that falls between the touch panel 23 and the rainwater drip prevention section 24 from dripping onto the touch panel 23.
[0027] Furthermore, since the intrusion prevention section 33a of the delivery storage shed 30 has an L-shaped section 34a and a folded section 34b in a cross section perpendicular to the extending direction (left-right direction), it can prevent rainwater from overflowing and entering the opening 31a while preventing interference with the opening and closing operation of the opening and closing door 35.
[0028] It goes without saying that this disclosure is not limited in any way to the embodiments described above, and can be implemented in various forms as long as they fall within the technical scope of this disclosure.
[0029] In the embodiment described above, the rain drip prevention section 24 has an inclined surface 24a that slopes in one direction from the left end to the right end, but it is not limited to this, and may slope in one direction from the right end to the left end. Alternatively, it is not limited to being sloped in one direction, but may be sloped from approximately the center in the longitudinal direction to both ends (in both directions).
[0030] In this embodiment, the rainwater drip prevention section 24 has an inclined surface 24a and a flat surface 24b, but the inclined surface 24a may be formed without the flat surface 24b. Also, although the width of the inclined surface 24a in the front-rear direction is wider than that of the flat surface 24b, it is not limited to this and may be the same width, for example.
[0031] In this embodiment, the rain drip prevention section 24 is provided directly above the touch panel 23, but it is not limited to this. The rain drip prevention section 24 may be provided above the touch panel 23, or it may be provided with a gap between it and the upper edge of the touch panel 23. Also, the rain drip prevention section 24 is straight in this embodiment, but it is not limited to this. It may also have a curved or bent shape that is convex upwards.
[0032] In this embodiment, the L-shaped portion 34a and the folded portion 34b of the intrusion prevention portion 33a are integrally formed, but the invention is not limited to this, and the L-shaped portion 34a and the folded portion 34b may be formed from separate members. Also, although the folded portion 34b is shaped as being folded back at a right angle from the upper end of the L-shaped portion 34a to the rear, it is not limited to a right angle, and it is sufficient if it is folded back to the rear.
[0033] In this embodiment, the control unit 20 is provided with a rainwater drip prevention section 24 and each delivery box 30 is provided with an intrusion prevention section 33a. However, the configuration is not limited to having both prevention sections, and only one may be provided. That is, the control unit 20 may be provided with a rainwater drip prevention section 24, while each delivery box 30 may not be provided with an intrusion prevention section 33a, but instead be provided with an intrusion prevention section 133a as in the comparative example, or neither may be provided. Alternatively, each delivery box 30 may be provided with an intrusion prevention section 33a, while the control unit 20 may not be provided with a rainwater drip prevention section 24.
[0034] In this embodiment, the storage unit 10 is equipped with multiple storage compartments 30, but it is not limited to this, and may be equipped with only one storage compartment 30, such as one installed in a detached house. In this case, a touch panel 23 and a rain drip prevention part 24 should be provided on the opening / closing door 35 or side wall of the storage compartment 30, and an intrusion prevention part 33a should be provided on the main body 31.
[0035] The storage device of this disclosure may be configured as follows. For example, in the first storage device of this disclosure, the rainwater drip prevention portion may be formed such that the inclined surface is inclined in one direction from one end to the other in the longitudinal direction. This allows rainwater flowing down the wall surface to be collected at the other end and not to flow to the one end. For this reason, even if, for example, a touch panel is placed at one end of the storage device (the same side as the one end in the longitudinal direction) and other equipment or facilities are placed adjacent to that end, it is possible to appropriately prevent those devices or facilities from being affected by rainwater.
[0036] In the first storage device of this disclosure, the upper surface of the rainwater drip prevention portion may have a flat surface that extends flatly from one end to the other in the longitudinal direction to receive rainwater flowing down the wall, and an inclined surface that is formed on the side furthest from the wall. In this way, rainwater collected on the flat surface can be drained by the inclined surface, making it easier for rainwater flowing down the wall to flow in the longitudinal direction. Therefore, it is possible to more reliably prevent rainwater from dripping onto the touch panel.
[0037] In the first storage unit of this disclosure, the storage unit comprises a main body having an opening, an opening / closing door having a door panel that covers the front of the opening including the frame of the opening and a peripheral wall erected rearward from the periphery of the door panel, and an intrusion prevention part that extends along the upper edge of the opening to prevent rainwater from entering from the upper edge of the opening, wherein the intrusion prevention part is formed in such a shape that the cross section perpendicular to the direction of extension protrudes forward from the upper edge of the opening and bends upward, extends upward to a position where the distance from the peripheral wall is a predetermined distance, and is further folded back to the rear. In this way, the intrusion prevention part leaves a predetermined gap between itself and the peripheral wall of the opening / closing door, thus preventing interference with the opening and closing operation of the opening / closing door. Furthermore, even with a predetermined gap, the folded portion of the intrusion prevention part prevents rainwater from crossing over, thus effectively preventing rainwater from entering from the upper edge of the opening.
[0038] The second stocker in this disclosure is A stocker equipped with a delivery warehouse, The aforementioned delivery storage unit comprises a main body with an opening, an opening / closing door having a door panel that covers the front of the opening including the frame of the opening and a peripheral wall erected rearward from the periphery of the door panel, and an intrusion prevention part that extends along the upper edge of the opening to prevent rainwater from entering from the upper edge of the opening. The essence of the intrusion prevention portion is that its cross-section, perpendicular to the direction of extension, protrudes forward from the upper edge of the opening, bends upward, extends upward to a position where the distance from the peripheral wall is a predetermined distance, and is further folded back to the rear.
[0039] The second storage device of this disclosure prevents interference with the opening and closing operation of the door because the intrusion prevention portion leaves a predetermined gap between it and the peripheral wall of the opening and closing door. Furthermore, even with the predetermined gap, the folded portion of the intrusion prevention portion prevents rainwater from overflowing, thus effectively preventing rainwater from entering from the upper edge of the opening. Therefore, the waterproofing measures for the storage device can be implemented more effectively.
[0040] This specification also discloses a technical concept in which the "stocker described in claim 1 or 2" in the original claim 4 has been changed to "the stocker described in any one of claims 1 to 3". [Industrial applicability]
[0041] This invention can be used in the technical field of product distribution systems that deliver goods to stockers. [Explanation of symbols]
[0042] 10 Stocker, 20 Control box, 20a Control unit, 21 Main unit, 22 Front panel, 23 Touch panel, 24 Rain drip prevention section, 24a Inclined surface, 24b Flat surface, 25 Camera module, 26 Code reader, 27 Receipt stamp module, 28 Speaker module, 29 Cylinder lock, 30, 130 Delivery storage unit, 31 Main unit, 31a Opening, 32 Frame, 33a~33c, 133a Intrusion prevention section, 34a, 134a L-shaped section, 34b Folded section, 35 Opening / closing door, 35a Door panel, 35b Surrounding wall, 36 Packing, D1, D2 Distance (gap).
Claims
1. A stocker equipped with a lockable storage compartment, which accepts an operator's command to unlock the storage compartment, A touch panel is provided on the wall of the storage unit, which can be operated by the operator. To prevent rainwater from dripping from the wall onto the touch panel, a rainwater drip prevention section is provided above the touch panel, with a length in the longitudinal direction equal to or greater than the width of the touch panel. Equipped with, The aforementioned rainwater drip prevention section has an inclined surface formed on its upper surface that slopes along the longitudinal direction so as to allow rainwater flowing down the wall surface to flow in the longitudinal direction. On the upper surface of the rainwater drip prevention portion, a flat surface is formed on the side closer to the wall surface, extending flatly from one end to the other in the longitudinal direction to receive rainwater flowing down the wall surface, while the inclined surface is formed on the side further away from the wall surface. Stocker.
2. The rain drip prevention portion is formed such that the inclined surface is inclined in one direction from one end to the other in the longitudinal direction. The storage container according to claim 1.
3. The aforementioned delivery storage unit comprises a main body with an opening, an opening / closing door having a door panel that covers the front of the opening including the frame of the opening and a peripheral wall erected rearward from the periphery of the door panel, and an intrusion prevention part that extends along the upper edge of the opening to prevent rainwater from entering from the upper edge of the opening. The intrusion prevention portion is formed such that its cross-section, perpendicular to the direction of extension, protrudes forward from the upper edge of the opening, bends upward, extends upward to a position where the distance from the peripheral wall is a predetermined distance, and is further folded back to the rear. The storage container according to claim 1 or 2.