Intelligent unmanned express cabinet with fire-fighting water pipe assembly

CN119274270BActive Publication Date: 2026-09-22VENUS ENC CO LTD
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Patent Information

Application Number
CN202410829094.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2023-07-04
Filing Date
2024-06-25
Publication Date
2026-09-22
Estimated Expiration
2044-06-25

AI Technical Summary

Technical Problem

[0007]但现,这种无人快递系统只是单纯地收纳并存储物品,而不能根据物品的特性进行存放,诸如冷藏保存、冷冻保存

Benefits of technology

如上所述,本发明可以提供以下效果:与内置有灭火水的消火栓一体化,从而能够为相应楼层的相应家庭存放快递,从而避免将包裹放在门口而有丢失的风险。

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of intelligent unmanned express cabinet, it is set in the installation of fire water pipe assembly on the side of building wall, can store express for corresponding floor or corresponding household.
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Description

Technical Field

[0001] This invention relates to an intelligent unmanned parcel locker with fire-fighting water pipe assembly, and more specifically, to an intelligent unmanned parcel locker with fire-fighting water pipe assembly, which is installed on the side of a building wall with the fire-fighting water pipe assembly installed, and can store parcels for the corresponding floor or the corresponding household. Background Technology

[0002] Generally, in order to collect goods purchased through a shopping website, the person who placed the order or a person living with them must remain at the delivery location (such as the orderer's residence) to await delivery. This also applies to situations where goods are purchased in physical stores but the customer does not carry the goods themselves but instead uses the store's delivery service.

[0003] In such cases, if the orderer or cohabitant leaves the delivery address or business location vacant, it causes inconvenience in not receiving the ordered or purchased items in a timely manner. Even in shared housing such as apartments, where security personnel are sometimes stationed to safeguard delivered items, this is merely a temporary arrangement.

[0004] Furthermore, if security personnel are not permanently stationed, for valuable or easily damaged items, the orderer or co-resident must remain at their residence to collect the items directly. Given that delayed delivery is common, the orderer or co-resident not only has to wait for the required items to be delivered but also bears the associated time loss.

[0005] In addition, with the recent increase in women living alone or having only young children at home during the day, there is a tendency to be unwilling to receive items directly from delivery personnel for safety reasons.

[0006] Therefore, an unmanned delivery system was introduced, which can accurately and safely deliver and store items ordered from online shopping websites or offline stores without damage, even if the resident is not at the place of delivery or does not pick up the items directly.

[0007] However, current unmanned delivery systems simply collect and store items without considering their specific characteristics, such as refrigeration or freezing. While products requiring refrigeration or freezing can be stored at room temperature for short periods without issue, prolonged storage can lead to spoilage and, in severe cases, unpleasant odors.

[0008] This problem can also be attributed to the lack of refrigeration or freezing facilities in unmanned delivery systems. However, even if household refrigeration or freezing facilities were provided, there would still be the issue of delivery personnel being unable to determine whether the delivered items needed to be refrigerated or frozen.

[0009] Therefore, there is a need to introduce an unmanned delivery system that allows couriers to store items in lockers based on their characteristics, and the lockers can create a storage environment tailored to the characteristics of the delivered items.

[0010] Existing technical documents Patent documents (Patent Document 1) Korean Patent No. 10-2162285. Summary of the Invention

[0011] The technical problem to be solved by the present invention The purpose of this invention is to provide an intelligent unmanned express delivery locker, which is a fire water pipe assembly installed on the wall of a building, capable of storing express deliveries for corresponding households.

[0012] Technical solution This invention provides an intelligent unmanned parcel locker, which is installed on one side of a fire water pipe assembly on a building wall and can store parcels for a corresponding floor or household.

[0013] In one embodiment, the unmanned express cabinet includes: an upper fixing plate fixed to the ceiling surface of a building; a lower fixing plate corresponding to the upper fixing plate and fixed to the bottom surface of the building; a first front panel detachably formed on one side of the front surfaces of the upper and lower fixing plates; a second front panel detachably formed on the other side of the front surfaces of the upper and lower fixing plates; a side panel detachably formed on one side of the upper and lower fixing plates; an insertion end capable of engaging with a mounting end formed on one side of the upper fixing plate, and formed on the upper end of the first front panel, the upper end of the second front panel, and the upper end of the side panel; an elastomer having a defined elasticity and inserted into the mounting end to fix the insertion end engaged with the mounting end and prevent it from moving within the mounting end; a mounting end disposed on one side of the upper fixing plate capable of engaging with the insertion end; and a fixing end engaged with a fixing frame formed on one side of the lower fixing plate. The fixed end is formed at the lower end of the first front panel, the lower end of the second front panel, and the lower end of the side panel; the fixed frame is combined with the fixed end to allow each panel to be fixed to the lower fixed plate, and the fixed frame is formed on one side of the lower fixed plate; multiple items storage frames are arranged on one side between the upper and lower fixed plates to allow items to be placed through items storage doors formed on the second front panel; the controller placement frame is arranged on the upper part of the items storage frame to allow the storage of the controller to be embedded; the fire hydrant pipe is arranged on the other side between the upper and lower fixed plates to allow the access of fire extinguishing water from the outside; multiple items storage doors are formed on the second front panel, and the items storage doors can be opened and closed from the second front panel to allow items to be stored in the storage frame; the storage controller controls the opening and closing of each items storage door and is combined on the upper side of the second front panel to input the corresponding item retrieval information.

[0014] In another embodiment, the unmanned express cabinet further includes: a weight detection storage section, which detects the weight of the express item to be stored and moves the express item up and down to the corresponding item storage frame side that matches the weight of the express item. The weight detection storage section includes: a lifting tube for embedding a lifting screw, and the lifting tube is disposed on the outer side of the item storage frame to support the item placement plate that moves up and down; a lifting motor disposed on the upper part of the lifting tube to generate rotational power to rotate the lifting screw; a lifting screw, one side of which is connected to the motor shaft of the lifting motor, and the other side is rotatably fixed to the inner bottom surface of the lifting tube so that a screw member coupled with the lifting screw can move up and down; a screw member, configured to be coupled with the lifting screw and to move up and down when the lifting screw rotates; an item placement plate, which is driven by the rod motor after receiving impact information when the pressure sensor is impacted to be able to place express items, and the item placement plate is connected to one side of the screw member; and a plate hinge rod, configured to place the item when the rod motor is driven. The plate rotates, and one side of the plate hinge rod is connected to the motor shaft of the rod motor, while the other side of the plate hinge rod is attached to one side of the item placement plate; the rod motor is disposed on one side of the item placement plate and configured to generate power to rotate the plate hinge rod; a silicone pad covers a pressure sensor to provide impact to the pressure sensor side when one side of the item placement plate is impacted, and protects the pressure sensor when it contacts the bottom surface as the item placement plate rotates; a pressure sensor is configured to provide impact information to the rod motor side when touched or impacted by a user, and one side of the pressure sensor is attached to one side of the item placement plate, while the other side of the pressure sensor is covered by the silicone pad; and a weight detection sensor is disposed in the center of the other side of the item placement plate to detect express items placed on the item placement plate and provide the detected information to the storage controller side.

[0015] Invention Effects As described above, the present invention can provide the following effects: it is integrated with a fire hydrant containing fire extinguishing water, thereby enabling the storage of express packages for corresponding families on corresponding floors, thus avoiding the risk of loss due to leaving packages at the door. Attached Figure Description

[0016] Figure 1 This is a diagram of the intelligent unmanned express delivery locker of the present invention.

[0017] Figure 2 It is shown Figure 1 The diagram inside.

[0018] Figure 3 It is shown Figure 1 The diagram showing the configuration of the cross-section.

[0019] Figure 4 This is a diagram showing the weight detection storage section as another embodiment of the present invention.

[0020] Figure 5 yes Figure 4 Detailed diagram.

[0021] Figure 6 This is a diagram showing an article fixing part as another embodiment of the present invention.

[0022] Figure 7 yes Figure 6 Detailed diagram.

[0023] Figure 8 This is a diagram showing a shock-absorbing section as another embodiment of the present invention.

[0024] Figure 9 yes Figure 8 Detailed diagram.

[0025] Explanation of reference numerals in the attached figures 100: Unmanned express delivery locker; 110: Upper fixing plate; 111: Lower fixing plate; 112: First front panel; 113: Second front panel; 114: Side panel; 115: Insertion end; 116: Elastomer; 117: Insertion end; 118: Fixing end; 119: Fixing frame; 120: Item storage frame; 121: Controller placement frame; 122: Fire pipe; 123: Item storage door; 124: Controller storage; 200: Weight detection storage section; 210: Lifting pipe; 211: Lifting motor; 212: Lifting screw; 213: Screw component; 214: Item placement plate; 215: 216: Hinged rod; 217: Rod motor; 218: Silicon pad; 219: Pressure sensor; 300: Weight detection sensor; 310: Item fixing part; 311: Fixing pad; 312: Contact sensor; 313: Rod support component; 314: Moving rod; 315: Contact pad; 316: Screw motor; 317: Variable screw; 318: Variable component; 319: Rod fixing component; 320: Rod anti-detachment end; 400: Shock absorption part; 410: Shock absorption pad; 411: Buffer plate; 412: Upper fixing tube; 413: Lower fixing tube; 414: Buffer spring; 415: Anti-slip pad. Detailed Implementation

[0026] The detailed description of the invention described below is taken with reference to the accompanying drawings, which illustrate by way of example specific embodiments in which the invention may be practiced. These embodiments are described in sufficient detail to enable those skilled in the art to practice the invention. It should be understood that the various embodiments of the invention differ from one another, but are not necessarily mutually exclusive. For example, specific images, structures, and characteristics described herein, associated with one embodiment, may be implemented in other embodiments without departing from the spirit and scope of the invention. Furthermore, it should be understood that the position or configuration of individual constituent elements in each disclosed embodiment may be changed without departing from the spirit and scope of the invention. Therefore, the detailed description that follows is not intended to be construed as limiting, and if correctly described, the scope of the invention is limited only by the appended claims and all their equivalents. Similar reference numerals in the drawings indicate that they have the same or similar functions in multiple respects.

[0027] The present invention will now be described in detail with reference to the accompanying drawings. Figure 1 This is a diagram of the intelligent unmanned express delivery locker 100 of the present invention. Figure 2 It is shown Figure 1 The internal diagram, Figure 3 It is shown Figure 1 The diagram showing the configuration of the cross-section.

[0028] As shown in the attached figures above, the unmanned express delivery locker 100 of the present invention is installed on one side of the building wall where a fire water pipe assembly is installed, and can store express delivery for the corresponding floor or the corresponding household.

[0029] The unmanned express cabinet 100 includes: an upper fixing plate 110, a lower fixing plate 111, a first front panel 112, a second front panel 113, a side panel 114, an insertion end 115, an elastic body 116, an insertion end 117, a fixing end 118, a fixing frame 119, an item storage frame 120, a controller placement frame 121, a fire pipe 122, an item storage door 123, and a storage controller 124.

[0030] The upper fixing plate 110 is fixed to the ceiling surface of the building.

[0031] The lower fixing plate 111 corresponds to the upper fixing plate and is fixed to the bottom surface of the building.

[0032] The first front panel 112 is formed on one side of the front surface of the upper fixing plate 110 and the lower fixing plate 111 in a detachable manner.

[0033] The second front panel 113 is formed in a detachable manner on the other side of the front surface of the upper fixing plate 110 and the lower fixing plate 111.

[0034] The side panel 114 is formed on one side of the upper fixing plate 110 and the lower fixing plate 111 in a detachable manner.

[0035] The insertion end 115 can be engaged with the insertion end 117 formed on one side of the upper fixing plate 110, and the insertion end 115 is formed on the upper end of the first front panel 112, the upper end of the second front panel 113, and the upper end of the side panel 114.

[0036] The elastomer 116 has a specified elasticity and is inserted into the insertion end 117 so that the insertion end 115, which is inserted into the insertion end 117, is fixed and does not move within the insertion end 117.

[0037] The insertion end 117 can be snapped into the insertion end 115, and the insertion end 117 is disposed on one side of the upper fixing plate 110.

[0038] The fixed end 118 is inserted into the fixed frame 119 formed on one side of the lower fixed plate 111, and the fixed end 118 is formed at the lower end of the first front panel 112, the lower end of the second front panel 113 and the lower end of the side panel 114.

[0039] The fixing frame 119 is combined with the fixing end 118 so that each panel can be fixed to the lower fixing plate 111, and the fixing frame 119 is formed on one side of the lower fixing plate 111.

[0040] The item storage frame 120 is configured in multiple ways on one side between the upper fixing plate 110 and the lower fixing plate 111 so as to be able to hold items placed through item storage doors respectively formed on the second front panel 113.

[0041] The controller placement frame 121 allows for the embedding of the controller 124, and the controller placement frame 121 is disposed on the upper part of the item storage frame 120.

[0042] The fire-fighting pipe 122 can be connected to the fire-fighting water used by the fire hydrant from the outside, and the fire-fighting pipe 122 is arranged on the other side between the upper fixing plate 110 and the lower fixing plate 111.

[0043] The item storage doors 123 are formed in multiples on the second front panel 113, and the item storage doors 123 are allowed to be opened and closed from the second front panel 113 in order to store items into the storage frame 120.

[0044] The storage controller 124 controls the opening and closing of each item storage door 123, and the storage controller 124 is combined and formed on the upper side of the second front panel 113 to input the corresponding item retrieval information.

[0045] Figure 4 This figure shows the weight detection and storage unit 200 as another embodiment of the present invention. Figure 5 yes Figure 4 Detailed diagram.

[0046] As shown in the above figures, the unmanned express cabinet 100 of the present invention also includes the weight detection and storage unit 200, which detects the weight of the express item to be stored and moves the express item up and down to the side of the corresponding item storage frame 120 that matches the weight of the express item.

[0047] The weight detection storage unit 200 includes: a lifting tube 210, a lifting motor 211, a lifting screw 212, a screw component 213, an item placement plate 214, a plate hinge rod 215, a rod motor 216, a silicone pad 217, a pressure sensor 218, and a weight detection sensor 219.

[0048] The lifting tube 210 is into which the lifting screw 212 is embedded, and the lifting tube 210 is configured to support the lifting and moving of the item placement plate 214 and is disposed on the outer side of the item storage frame 120.

[0049] The lifting motor 211 is configured to generate rotational power to rotate the lifting screw 121, and the lifting motor 211 is disposed on the upper part of the lifting tube 210.

[0050] One side of the lifting screw 212 is connected to the motor shaft of the lifting motor 211, while the other side is rotatably fixed to the inner bottom surface of the lifting tube 210, so that the screw member 213 connected with the lifting screw 212 can move up and down.

[0051] The screw member 213 is configured to engage with the lifting screw 212 and move up and down as the lifting screw 212 rotates.

[0052] The item placement plate 214 is driven by the rod motor 216 to rotate after receiving impact information when the pressure sensor 218 is impacted, so as to place express items, and the item placement plate 214 is connected to one side of the screw member 213.

[0053] The plate hinge rod 215 is configured to rotate the item placement plate 214 when the rod motor 216 is driven, and one side of the plate hinge rod 215 is connected to the motor shaft of the rod motor 216, while the other side of the plate hinge rod 215 is connected to one side of the item placement plate 214.

[0054] The lever motor 216 is configured to generate power to rotate the plate hinge lever 215, and the lever motor 216 is disposed on one side of the item placement plate 214.

[0055] The silicon pad 217 encloses the pressure sensor 218 to deliver the impact to the pressure sensor 218 side when one side of the item placement plate 214 is hit, and to protect the pressure sensor 218 when it comes into contact with the bottom surface as the item placement plate 214 rotates.

[0056] One side of the pressure sensor 218 is attached to one side of the item placement plate 214, and the other side of the pressure sensor 218 is wrapped with a silicone pad 217 so that impact information is provided to the pole motor side when touched or hit by the user.

[0057] The weight detection sensor 219 is configured to detect express items placed on the item placement plate 214 and provide the detected information to the storage controller 124 side, and the weight detection sensor 219 is disposed in the center of the other side of the item placement plate 214.

[0058] Figure 6 This figure shows the article fixing part 300 as another embodiment of the present invention. Figure 7 yes Figure 6 Detailed diagram.

[0059] As shown in the above figures, the unmanned express cabinet 100 of the present invention also includes an item fixing part 300, which is disposed inside any one of the multiple item storage frames 120 and is configured to fix the stored express items and prevent the express items from shaking due to earthquakes or impacts.

[0060] The item fixing part 300 includes: a fixing pad 310, a contact sensor 311, a contact box 312, a rod support member 313, a moving rod 314, a contact pad 315, a screw motor 316, a variable screw 317, a variable member 318, a rod fixing member 319, and a rod anti-detachment end 320.

[0061] The fixing pad 310 is configured to support one side of the express item that moves via the contact pad 315, and the fixing pad 310 is fixed to one side of the inside of the item storage frame 120.

[0062] The contact sensor 311 is configured to detect contact with the express delivery item and provide the detected information to the screw motor 316 side. The contact sensor 311 is disposed in the center of one side of the fixing pad 310.

[0063] The contact box 312 is configured to support the movable and fixed rod support member 313 of the contact pad 315, and the contact box 312 is disposed on the other side inside the item storage frame 120.

[0064] The rod support member 313 is configured to support the movable rod 314, and the rod support member 313 is formed in multiple forms on the upper and lower sides inside the contact box 312.

[0065] The movable rod 314 slides through the rod support members 313 formed on the upper and lower sides of the inside of the contact box 312.

[0066] The contact pad 315 is configured to move the express delivery item to the side of the fixed pad 310 when the item storage frame 120 is loaded with express delivery items. The contact pad 315 is fixed to one side of the movable rod 314 configured on the upper and lower sides.

[0067] The screw motor 316 is configured to generate rotational power to rotate the variable screw 317, and the screw motor 316 is disposed on the outer side of the item storage frame 120.

[0068] The variable screw 317 is configured to move the variable member 318 to one side or the other side. One side of the variable screw 317 is connected to the motor shaft of the screw motor 316, and the other side is rotatably fixed to one side of the center inside the contact box 312.

[0069] The variable member 318 is configured to engage with the variable screw 317 and move as the variable screw 317 rotates.

[0070] The rod fixing member 319 is connected to the variable member 318, which moves with the rotation of the variable screw 317, and allows the moving rod 314 to move. One side of the rod fixing member 319 is fixed to the center of the moving rod 314, and the other side is connected to the variable member 318.

[0071] The rod anti-detachment end 320 is configured to prevent the movable rod 314 from detaching from the contact box 312 when it slides. The rod anti-detachment end 320 is disposed at the other end of the movable rod 314 located on the upper and lower sides respectively.

[0072] Figure 8 This figure shows the shock-absorbing part 400 as another embodiment of the present invention. Figure 9 yes Figure 8 Detailed diagram.

[0073] As shown in the figure, the unmanned express cabinet 100 of the present invention also includes the shock-absorbing part 400, which is configured to reduce the vibration applied to the express items loaded in the item storage frame 120.

[0074] The shock-absorbing part 400 includes: a shock-absorbing pad 410, a buffer plate 411, an upper fixing tube 412, a lower fixing tube 413, a buffer spring 414, and an anti-slip pad 415.

[0075] The shock-absorbing pad 410 is configured to prevent vibrations applied to the item storage frame 120 from being transmitted to the packaged item side, and the shock-absorbing pad 410 is fixed to the inner bottom surface of the item storage frame 120.

[0076] The buffer plate 411 is configured to hold express delivery items. The buffer plate 411 is connected to the shock-absorbing pad 410 by a buffer spring 414 and maintains a specified height with the shock-absorbing pad 410.

[0077] The upper fixing tube 412 contacts the upper part of the buffer spring 414 in a manner that wraps around the buffer spring 414, and the upper fixing tube 412 is respectively disposed on both sides of the lower surface of the buffer plate 411.

[0078] The lower fixing tube 413 contacts the lower part of the buffer spring 414 in a manner that wraps around the buffer spring 414, and the lower fixing tube 413 is respectively disposed on both sides of the upper surface of the shock-absorbing pad 410.

[0079] The buffer spring 414 is configured to support the weight applied to the buffer plate 411 and reduce the applied vibration by the shock-absorbing pad 410. The buffer spring 414 is embedded between the upper fixing tube 412 and the lower fixing tube 413.

[0080] The anti-slip mat 415 is configured to prevent the express delivery items located on the buffer plate 411 from sliding, and the anti-slip mat 415 is attached to the upper surface of the buffer plate 411.

[0081] The above embodiments are for illustrative purposes only. Those skilled in the art will understand that they can be easily modified into other specific forms without altering the technical concept or essential features of the embodiments. Therefore, it should be understood that the above embodiments are exemplary in all respects and not restrictive. For example, elements described as a single component can also be implemented in a distributed manner; similarly, elements described as distributed can also be implemented in combination.

[0082] The scope of protection intended to be protected by this specification is indicated by the claims rather than the detailed description above, and should be construed as including all variations or modifications derived from the scope of the claims and their equivalents.

Claims

1. A smart unmanned express delivery locker with fire-fighting water pipe assembly, characterized in that, The intelligent unmanned express delivery locker is installed on the side of the building wall equipped with fire water pipe components, and can store express deliveries for the corresponding floor or corresponding residents. The intelligent unmanned express delivery locker with fire water pipe assembly includes: Item storage frame; Storage controller; and The weight detection and storage section detects the weight of the express items to be stored and moves them up, down, or to the corresponding storage frame side that matches the weight of the express items. The weight detection and storage unit includes: a lifting tube, a lifting motor, a lifting screw, a screw assembly, an item placement plate, a plate hinge rod, a rod motor, a silicon pad, a pressure sensor, and a weight detection sensor. The lifting tube is into which the lifting screw is inserted, and the lifting tube is disposed on the outer side of the item storage frame to support the lifting and moving item placement plate; The lifting motor is located at the top of the lifting tube to generate rotational power to rotate the lifting screw; One side of the lifting screw is connected to the motor shaft of the lifting motor, while the other side is rotatably fixed to the inner bottom surface of the lifting tube, so that the screw component combined with the lifting screw can move up and down. The screw component is configured to engage with the lifting screw and to achieve lifting movement when the lifting screw rotates; The item placement plate is connected to one side of the screw member, and as the rod motor is driven after receiving impact information when the pressure sensor is impacted, the item placement plate rotates to accommodate express delivery items. One side of the plate hinge rod is connected to the motor shaft of the rod motor, and the other side of the plate hinge rod is coupled to one side of the item placement plate, so that the item placement plate is rotated when the rod motor is driven. The rod motor is positioned on one side of the item placement plate to generate power to rotate the plate hinge rod; The silicon pad encloses the pressure sensor to deliver the impact to the pressure sensor side when one side of the item placement plate is hit, and to protect the pressure sensor when it comes into contact with the bottom surface as the item placement plate rotates. One side of the pressure sensor is attached to one side of the item placement plate, and the other side of the pressure sensor is wrapped by the silicone pad so that impact information is provided to the rod motor side when touched or hit by the user. The weight detection sensor is disposed in the center of the other side of the item placement plate to detect the express items placed on the item placement plate and provide the detected information to the storage controller.

Citation Information

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