Intelligent storage cabinet suitable for automatically opening door
By designing a convenient battery mounting bracket and limit buckle assembly, the problems of inconvenient battery removal and easy damage in the smart locker switch device are solved, realizing convenient battery replacement and improving the aesthetics of the device.
Patent Information
- Application Number
- CN202520338657.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-02-28
AI Technical Summary
The existing smart locker's switch mechanism is not easy to remove the battery and is easily damaged by bumps, affecting its appearance.
Design a switch device where the battery mounting bracket is detachable via linear motion. It employs a limit buckle and elastic support to facilitate convenient battery replacement. The battery mounting bracket and the receiving cavity are detachably connected. The battery mounting bracket is pressed in and ejected via linear motion. The switch device is embedded in the cabinet to improve aesthetics.
The system allows for easy battery removal and installation, preventing damage to the switching device from impacts and enhancing the aesthetics and ease of use of the smart locker.
Smart Images

Figure CN223880993U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of smart home, especially to a smart storage cabinet suitable for automatic door opening. BACKGROUND
[0002] The smart storage cabinet cancels the door handle more and more, realizes the automatic opening of the cabinet door through the door pushing device, in order to ensure that the door pushing device does not affect the articles in the cabinet during the process of pushing open the cabinet door, it is usually installed in the top area of the cabinet body, so a switching device is needed to control the automatic door pushing device to operate to execute the operation of pushing open the cabinet door under the condition that the user cannot touch.
[0003] For general switching devices, the structure for power supply is indispensable, and a button cell is usually adopted, in order to improve the dismounting convenience of the button cell, the prior art such as the announcement number CN220341414U discloses a button cell dismounting structure and a switch panel, which although presets a button cell dismounting structure for dismounting the button cell, but the premise of dismounting the button cell still needs to dismount the rear shell from the middle frame, so as to dismount the battery through the preset button cell dismounting structure, so there is still the problem of insufficient convenience for the dismounting process of the battery.
[0004] And for the switching device for controlling the automatic door pushing device, the battery cover needs to be removed for the convenience of replacing the battery, so it is basically handheld or installed on the side wall of the cabinet body. Among them, for the handheld switching device, there may be the case that the switching device is forgotten to be stored, which causes inconvenience. And for the case of being arranged on the side wall of the cabinet body, on the one hand, it is easy to cause damage to the switching device due to bumping, and on the other hand, the case of the side wall of the cabinet body also affects the appearance of the cabinet body.
[0005] Therefore, for the switching device used in the smart storage cabinet, the cooperation relationship between the switching device and the cabinet body and the convenience of dismounting the battery in the switching device need to be further optimized. UTILITY MODEL CONTENTS
[0006] The utility model aims at providing a smart storage cabinet suitable for automatic door opening, to solve the technical problem of optimizing the overall structure of the switching device used.
[0007] The smart storage cabinet suitable for automatic door opening is realized as follows:
[0008] A smart storage cabinet suitable for automatic door opening, comprising: a cabinet body, a cabinet door hingedly connected with the cabinet body, and a switching device arranged in the cabinet body, wherein
[0009] The cabinet body is provided with a mounting opening suitable for embedding the switch device at the side end of the cabinet door and the non-hinged cabinet door;
[0010] The switch device at least comprises a shell, a receiving cavity formed in the shell, a battery mounting rack preloaded with a battery and detachably matched with the receiving cavity, and a PCB plate provided in the receiving cavity and suitable for mating with the battery.
[0011] One side end of the shell is formed with an opening in communication with the receiving cavity, and the opening is directed to the cabinet door through the mounting opening; the battery mounting rack is suitable for being pressed into the receiving cavity and popped out of the receiving cavity through linear motion.
[0012] In the optional implementation of the utility model, the side end of the cabinet body provided with the mounting opening is parallel to the side end of the cabinet body hinged with the cabinet door.
[0013] In the optional implementation of the utility model, the switch device further comprises a limiting buckle group, an elastic supporting member and a pushing member provided in the receiving cavity; wherein
[0014] The battery mounting rack has a limiting bin for accommodating the battery; the limiting buckle group comprises a buckle suitable for being clamped with the battery mounting rack, and an elastic member connected with the buckle; the elastic supporting member is suitable for abutting against the battery mounting rack.
[0015] The pushing member is suitable for driving the buckle to relatively move away from the battery mounting rack and compress the elastic member, so that the buckle is gradually separated from the battery mounting rack, and the battery mounting rack is gradually popped out of the receiving cavity under the elastic reset action of the elastic supporting member.
[0016] When the battery mounting rack is pressed into the receiving cavity, the battery mounting rack pushes the buckle to relatively move away from the battery mounting rack and compress the elastic member, and the buckle is suitable for relatively approaching the battery mounting rack under the elastic reset action of the elastic member to clamp the buckle with the battery mounting rack in place, so that the battery mounting rack presses the elastic supporting member to deform.
[0017] In the optional implementation of the utility model, a clamping structure of concave-convex cooperation is provided between the buckle and the battery mounting rack.
[0018] The clamping structure comprises a groove formed on the battery mounting rack and a protruding key formed on the buckle and suitable for being inserted into the groove.
[0019] In the optional implementation of the utility model, an inclined pushing surface for cooperating with the protruding key through an inclined surface is further provided on the battery mounting rack.
[0020] When the battery mounting rack is pressed into the receiving cavity, the buckle relatively moves away from the battery mounting rack and the elastic member is compressed.
[0021] In optional implementation of the utility model, the pushing piece is a pushing piece suitable for moving in the receiving cavity along a direction perpendicular to the moving direction of the buckle.
[0022] In optional implementation of the utility model, the pushing piece and the buckle are matched through the matching inclined surfaces; and one side end surface of the pushing piece is exposed at the opening.
[0023] When the pushing piece is pressed through the opening to press the buckle, the buckle is relatively far away from the battery mounting rack and the elastic piece is compressed.
[0024] In optional implementation of the utility model, the pushing piece is a pushing piece suitable for moving in the receiving cavity along a direction perpendicular to the moving direction of the buckle.
[0025] One side end surface of the pushing piece is exposed at the opening.
[0026] In optional implementation of the utility model, the pushing piece and the buckle are matched through the matching inclined surfaces; and one side end surface of the pushing piece is exposed at the opening.
[0027] In optional implementation of the utility model, the receiving cavity is further provided with guide strips and guide ribs which are parallel to each other; and
[0028] The guide strips and the guide ribs are extended along the direction in which the battery mounting rack is pressed into the receiving cavity, so that a limiting interval for guiding the two side end surfaces of the battery mounting rack is formed between the guide strips and the limiting ribs.
[0029] In optional implementation of the utility model, the limiting cavity has a hollow opening; and
[0030] The PCB is provided with a positive spring piece and a negative spring piece which are protruded towards the side of the battery mounting rack;
[0031] The positive spring piece or the negative spring piece is in contact with the battery through the hollow opening.
[0032] In optional implementation of the utility model, the shell is further provided with a signal triggering assembly;
[0033] The signal triggering assembly at least includes a pressing rod arranged in the shell, a micro switch suitable for being touched by the pressing rod, and a touch block connected with the pressing rod and suitable for being partially protruded outside the shell; wherein
[0034] The micro switch is electrically connected with the PCB.
[0035] In optional implementation of the utility model, the signal triggering assembly further includes an elastic body arranged in the shell and suitable for being compressed and deformed along with the movement of the pressing rod.
[0036] In the optional implementation of the utility model, the pressing rod is further integrally formed with a pressure head for triggering the micro switch and at least one supporting head; and
[0037] The shell is internally provided with a supporting wall adapted to abut against the supporting head;
[0038] When the supporting head abuts against the supporting wall, the pressure head triggers the micro switch;
[0039] When the pressure head is separated from the micro switch, the supporting head is separated from the supporting wall to form a gap.
[0040] In the optional implementation of the utility model, the cabinet body is further provided with an automatic door pushing device; and
[0041] The PCB board is wiredly or wirelessly connected with the automatic door pushing device.
[0042] The above technical scheme has the following beneficial effects: the intelligent storage cabinet suitable for automatic door opening of the utility model has an overall switch device which can be embeddedly assembled in the cabinet body, which on the one hand improves the appearance of the overall intelligent storage cabinet, and on the other hand prevents the switch device from being damaged due to bumping during transportation and long-term use. In addition, under this structure, only one installation opening needs to be formed in the side end of the cabinet body facing the cabinet door to realize the disassembly of the battery in the switch device, that is, the battery can be disassembled without disassembling the switch device from the cabinet body, thereby greatly improving the convenience of battery disassembly.
[0043] Furthermore, for the battery as a whole, through the detachable cooperation between the battery mounting frame and the accommodation cavity, when the battery needs to be replaced, the battery mounting frame can be popped out from the accommodation cavity by pressing the pusher and cooperating with the elastic supporting piece, without the need for additional tools to assist in disassembly, and the operation is convenient and reliable. BRIEF DESCRIPTION OF DRAWINGS
[0044] Figure 1 It is a structure schematic view of the switch device of the intelligent storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model;
[0045] Figure 2 It is a cooperation structure schematic view of the battery and the PCB board of the switch device of the intelligent storage cabinet suitable for automatic door opening of the utility model;
[0046] Figure 3 It is a structure schematic view of the accommodation cavity of the switch device of the intelligent storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model;
[0047] Figure 4Structure diagram of the buckle of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model;
[0048] Figure 5 Structure diagram of the pusher of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model;
[0049] Figure 6 Structure diagram of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model;
[0050] Figure 7 Structure diagram of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model in the state of separation with the containing cavity;
[0051] Figure 8 Structure diagram of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model in the state of initial pressing into the containing cavity;
[0052] Figure 9 Structure diagram of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model in the state of pressing into the containing cavity and not being clamped in place with the buckle;
[0053] Figure 10 Structure diagram of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model in the state of pressing into the containing cavity and being clamped in place with the buckle and the trigger block not being pressed;
[0054] Figure 11 Structure diagram of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 1 of the utility model in the state of pressing into the containing cavity and being clamped in place with the buckle and the trigger block being pressed and the micro switch being triggered;
[0055] Figure 12 Analysis diagram of the buckle of the switch device of the smart storage cabinet suitable for automatic door opening of the utility model being subjected to the force of the battery mounting rack when the battery mounting rack is pressed into the containing cavity;
[0056] Figure 13 Analysis diagram of the buckle of the switch device of the smart storage cabinet suitable for automatic door opening of the utility model being subjected to the force of the pusher;
[0057] Figure 14 Structure diagram of the smart storage cabinet suitable for automatic door opening of the utility model;
[0058] Figure 15The structure schematic view of the accommodating cavity of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 2 of the utility model;
[0059] Figure 16 The structure schematic view of the integral type poking block and buckle of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 2 of the utility model;
[0060] Figure 17 The structure schematic view of the battery mounting rack and the accommodating cavity of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 2 of the utility model in the separated state;
[0061] Figure 18 The structure schematic view of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 2 of the utility model is pressed into the accommodating cavity;
[0062] Figure 19 The structure schematic view of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 2 of the utility model is pressed into the accommodating cavity and has not been buckled to the position with the buckle yet;
[0063] Figure 20 The structure schematic view of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 2 of the utility model is pressed into the accommodating cavity and has not been buckled to the position with the buckle yet;
[0064] Figure 21 The structure schematic view of the battery mounting rack of the switch device of the smart storage cabinet suitable for automatic door opening of the embodiment 2 of the utility model is pressed into the accommodating cavity and is buckled to the position with the buckle.
[0065] In the figure: the shell 1, the accommodating cavity 11, the support column 12, the guide strip 13, the guide rib 14, the limiting wall 15, the limiting rib 16, the limiting part 17, the support wall 18, the opening 19, the guide block 110, the battery mounting rack 2, the limiting bin 21, the inclined pushing surface 22, the recess 23, the hollow opening 24, the battery 3, the buckle 41, the key 411, the L-shaped buckle 412, the elastic member 42, the elastic support member 5, the top pushing member 6, the limiting table 61, the PCB board 7, the positive spring piece 71, the negative spring piece 72, the pressing rod 81, the support head 811, the pressing head 812, the micro switch 82, the touch block 83, the elastic body 85, the cabinet body 91, the cabinet door 92, the mounting opening 93, the automatic door pushing device 100, the poking block 200, the anti-skid pattern 201, the guide groove 202. DETAILED DESCRIPTION
[0066] In order to make the content of the utility model more easily be clearly understood, the utility model is further explained in detail below according to specific embodiment and in conjunction with the drawings.
[0067] Embodiment 1:
[0068] Please refer to Figures 1 to 14 As shown in the drawings, the embodiment provides an intelligent storage cabinet suitable for automatic door opening, which comprises a cabinet body 91, a cabinet door 92 hingedly connected with the cabinet body 91, and a switching device arranged in the cabinet body 91. As to the structure adopted between the cabinet door 92 and the cabinet body 91 to realize the hinge connection, the embodiment is not absolutely limited, as long as the cabinet door 92 and the cabinet body 91 are hingedly connected on one side to enable the cabinet door 92 to rotate relative to the cabinet body 91 to realize the opening and closing operation of the cabinet door 92, which theoretically meets the use requirement of the embodiment.
[0069] Based on the above, further, first, the side end of the cabinet body 91 facing the cabinet door 92 and not hingedly connected with the cabinet door is provided with a mounting port 93 suitable for embedding the switching device; in combination with an example of convenient use, the side end of the cabinet body 91 provided with the mounting port 93 is parallel to the side end of the cabinet body 91 hingedly connected with the cabinet door 92. Generally, in combination with the general use angle of the cabinet body 91, the cabinet door 92 is usually hingedly connected with one side end of the height direction of the cabinet body 91, so that the mounting port 93 is arranged at the other side end of the height direction of the cabinet body 91, facilitating the installation of the switching device embedded in the mounting port 93 relative to the cabinet body 91 and the disassembly of the battery 3 in the switching device.
[0070] Secondly, the switching device of the embodiment at least comprises a shell 1, a receiving cavity 11 formed in the shell 1, a battery mounting rack 2 preloaded with a battery 3 and detachably matched with the receiving cavity 11, and a PCB board 7 arranged in the receiving cavity 11 and suitable for being matched with the battery 3. In this regard, it needs to be explained that one side end of the shell 1 is formed with an opening 19 communicating with the receiving cavity 11, and the opening 19 faces the cabinet door 92 through the mounting port 93; the battery mounting rack 2 is suitable for being pressed into the receiving cavity 11 and popped out of the receiving cavity 11 through linear motion.
[0071] On the basis of the above structure, in order to meet the disassembly of the battery mounting rack 2 relative to the receiving cavity 11 through linear motion, the switching device adopted by the embodiment further comprises a limiting buckle group, an elastic supporting piece 5 and a pushing piece arranged in the receiving cavity 11.
[0072] The side end of the accommodating cavity 11 is formed with an opening 19 suitable for the battery mounting rack 2 to enter or exit the accommodating cavity 11. The battery mounting rack 2 has a limiting bin 21 for accommodating the battery 3, and the battery 3 is reliably mounted into the accommodating cavity 11 by assembling the battery mounting rack 2 into the accommodating cavity 11, and the battery 3 also exits the accommodating cavity 11 when the battery mounting rack 2 is disassembled from the accommodating cavity 11. The limiting buckle group comprises a buckle 41 suitable for clamping with the battery mounting rack 2, and an elastic member 42 connected with the buckle 41; and the elastic supporting member 5 is suitable for abutting against the battery mounting rack 2.
[0073] Based on the above structure, generally speaking, when the battery mounting rack 2 and the accommodating cavity 11 are assembled into place, the buckle 41 is clamped with the battery mounting rack 2 into place, and the elastic supporting member 5 is in a compressed deformed state, so that the elastic supporting member 5 has elastic potential energy; and after the clamping state of the buckle 41 and the battery mounting rack 2 is released, the battery mounting rack 2 can be ejected from the accommodating cavity 11 under the shape restoring action of the elastic supporting member 5, so that it is not necessary to manually disassemble the battery mounting rack 2 from the accommodating cavity 11.
[0074] For the releasing process of the clamping state of the buckle 41 and the battery mounting rack 2, the embodiment is implemented by a pushing member, generally speaking, the pushing member is suitable for driving the buckle 41 to relatively move away from the battery mounting rack 2, that is, as long as the buckle 41 can be driven to gradually separate from the battery mounting rack 2, so as to facilitate the battery mounting rack 2 to release the restraint of the buckle 41, the use requirement of the embodiment is met. For this, the embodiment is illustrated by a pushing member in the drawings, and the pushing member is a pushing member 6 suitable for moving in the accommodating cavity 11 to press the buckle 41, and one side end surface of the pushing member 6 is exposed at the opening 19, so that the pressing action on the pushing member 6 can be applied through the opening 19, and the pushing member 6 moves in the accommodating cavity 11 to press the buckle 41 under the pressing action, so that the buckle 41 relatively moves away from the battery mounting rack 2 and the elastic member 42 is compressed, then the buckle 41 and the battery mounting rack 2 gradually separate, and the battery mounting rack 2 gradually ejects from the accommodating cavity 11 under the elastic restoring action of the elastic supporting member 5.
[0075] Based on the above, it also needs to be explained that for the pushing member 6 and the buckle 41 in the accommodating cavity 11, in order to effectively utilize the internal space of the accommodating cavity 11, the movement trajectories of the two are perpendicular to each other, and for this, the pushing member 6 and the buckle 41 are matched by engaging inclined surfaces K1. Based on this, an optional case is illustrated by combining the drawings, and the pushing member 6 is suitable for moving along the direction in which the battery mounting rack 2 is pressed and assembled into the accommodating cavity 11, so that the movement trajectory of the buckle 41 in the accommodating cavity 11 is also perpendicular to the disassembly direction of the battery mounting rack 2 relative to the accommodating cavity 11.
[0076] On the basis of the above structure, when the ejector 6 is pressed through the opening 19 to move the ejector 6 towards the buckle 41, the buckle 41 moves away from the battery mounting rack 2 to gradually disengage the buckle 41 from the battery mounting rack 2, at this time the elastic member 42 is compressed, until the buckle 41 is completely disengaged from the battery mounting rack 2, the battery mounting rack 2 can be ejected from the receiving cavity 11 under the restoring action of the elastic support 5. After the battery mounting rack 2 is ejected, the hand can release the ejector 6, at this time the ejector 6 and the buckle 41 can restore to the original position under the restoring action of the elastic member 42, that is to say, the restoring action of the elastic member 42 in this embodiment is not only used for the restoring of the buckle 41, but also for the restoring of the ejector 6.
[0077] Furthermore, when the battery mounting rack 2 is press-fitted into the receiving cavity 11, the battery mounting rack 2 pushes the buckle 41 to move away from the battery mounting rack 2 and the elastic member 42 is compressed, and the buckle 41 is adapted to relatively approach the battery mounting rack 2 under the elastic restoring action of the elastic member 42 to make the buckle 41 and the battery mounting rack 2 be clamped in place, then the battery mounting rack 2 pushes the elastic support 5 to deform.
[0078] Regarding the elastic support 5 used in this embodiment, in combination with the drawings, an optional case is exemplified, the elastic support 5 uses a torsion spring, and a support column 12 for matching the torsion spring is arranged in the receiving cavity 11, the torsion spring is sleeved on the support column 12 along its axis, and one end of the torsion spring is fixed in a support table in the receiving cavity 11, so that the other end of the torsion spring can be in abutting cooperation with the battery mounting rack 2.
[0079] In addition, it is also necessary to point out that, regarding the clamping cooperation between the buckle 41 and the battery mounting rack 2, a clamping structure of concave-convex cooperation is arranged between the buckle 41 and the battery mounting rack 2. In this regard, in combination with the drawings, an optional case is exemplified, the clamping structure includes a groove 23 formed on the battery mounting rack 2 and a key 411 formed on the buckle 41 and adapted to be inserted into the groove 23. The shapes of the groove 23 and the key 411 here can be, for example, but not limited to, triangular.
[0080] Based on the above, it is also necessary to point out that the battery mounting rack 2 is also provided with a beveled pushing surface 22 for cooperating with the bevel K2 of the protrusion 411; the beveled pushing surface 22 is arranged on the wall surface of the battery mounting rack 2 beside the groove 23, so that when the battery mounting rack 2 is pressed into the accommodation cavity 11, the beveled pushing surface 22 first contacts the protrusion 411, and the beveled pushing surface 22 and the protrusion 411 are in bevel cooperation, so that when the battery mounting rack 2 is pressed into the accommodation cavity 11, the buckle 41 is relatively away from the battery mounting rack 2 and the elastic piece 42 is compressed. It can be understood that in an alternative embodiment, the cooperation bevel between the protrusion 411 and the beveled pushing surface 22 here can be parallel to the cooperation bevel of the pushing piece 6 and the buckle 41.
[0081] In addition, regarding the reliable cooperation between the battery mounting rack 2 and the accommodation cavity 11, the embodiment also makes the following design: the accommodation cavity 11 is also provided with guide strips 13 and guide ribs 14 parallel to each other; and the guide strips 13 and the guide ribs 14 extend in the direction in which the battery mounting rack 2 is pressed into the accommodation cavity 11, so that the guide strips 13 and the limiting ribs 16 form a limiting interval for guiding the two side end faces of the battery mounting rack 2.
[0082] Based on the above, furthermore, one end of the guide strip 13 is adapted to be inserted into the L-shaped buckle 412 of the buckle 41 to limit the end position of the buckle 41 when it is relatively close to the battery mounting rack 2 under the elastic resetting action of the elastic piece 42. Specifically, an L-shaped buckle 412 is arranged on the buckle 41 towards the battery mounting rack 2, and one end of the guide strip can be inserted into the L-shaped buckle 412. Through the limiting of the guide strip 13, when the L-shaped buckle 412 and the guide strip 13 are buckled in place, the buckle 41 cannot continue to move towards the battery mounting rack 2 side under the action of the elastic piece 42.
[0083] And in order to better limit the movement trajectory of the buckle 41 in the accommodation cavity 11, the accommodation cavity 11 of the embodiment is also provided with limiting walls 15 and limiting ribs 16 parallel to each other; and the limiting walls 15 and the limiting ribs 16 extend in the direction in which the buckle 41 is relatively away from and close to the battery mounting rack 2, so that the limiting walls 15 and the limiting ribs 16 form a guide interval for limiting the two side end faces of the buckle 41. The limiting wall 15 is located on the side of the buckle 41 away from the pushing piece 6.
[0084] Regarding the limitation of the movement trajectory of the pusher 6 within the receiving cavity 11, this embodiment is designed as follows: the pusher 6 is provided with a limiting platform 61, and the receiving cavity 11 is provided with a limiting part 17 suitable for abutting and engaging with the limiting platform 61; the limiting part 17 and the latch 41 are located on both sides of the limiting platform 61 along the movement direction of the pusher 6. Based on this, when the battery mounting bracket 2 is engaged with the latch 41, the limiting platform 61 abuts against the limiting part 17, preventing the pusher 6 from disengaging from the opening 19 of the receiving cavity 11.
[0085] Based on the above structure, the disassembly process of battery 3 in this embodiment is as follows:
[0086] The user presses the pusher 6 along the direction in which the battery mounting bracket 2 is pressed into the receiving cavity 11, causing it to move further into the receiving cavity 11; during the pushing process, the pusher 6 continuously squeezes the buckle 41 through the inclined surface K1, causing the buckle 41 to be subjected to such... Figure 13 The force f shown has a component force f2 blocked by the limiting wall 15, while f1 will cause the buckle 41 to compress the elastic member 42 and move away from the battery mounting bracket 2. Then the buckle 41 and the battery mounting bracket 2 will gradually separate, and the battery mounting bracket 2 will gradually pop out of the receiving cavity 11 under the elastic reset action of the elastic support member 5.
[0087] When the battery mounting bracket 2 containing the battery 3 is inserted into the receiving cavity 11, as the battery mounting bracket 2 is pushed in, it gradually comes into contact with the elastic support 5, causing the elastic support 5 to gradually deform. The inclined pushing surface 22 of the battery mounting bracket 2 first contacts the protruding key 411, allowing the battery mounting bracket 2 to gradually penetrate deeper into the receiving cavity 11. During this process, the latch 41 first moves away from the side of the battery mounting bracket 2. The force on the latch 41 after being pushed by the battery mounting bracket 2 is as follows: Figure 12 As shown, the total force perpendicular to the wall of the convex key 411 and the inclined push surface 22 is F, which is divided into two components F1 and F2. F2 is blocked by the limiting wall 15, while F1 drives the buckle 41 to compress the elastic element 42 and move away from the battery mounting bracket 2.
[0088] Next, it should be explained that the limiting compartment 21 has a cutout 24; and the PCB board 7 has a positive electrode spring 71 and a negative electrode spring 72 protruding towards the side of the battery mounting bracket 2; the positive electrode spring 71 or the negative electrode spring 72 contacts the battery 3 through the cutout 24, thereby allowing the battery 3 to supply power to the PCB board 7. In this structure, referring to the attached figure, in one example, the cutout 24 adopts, for example, but not limited to, a U-shaped structure. For the battery 3 placed in the limiting compartment 21, the negative electrode surface of the battery 3 faces the cutout 24, so that the negative electrode spring 72 contacts the negative electrode surface of the battery 3 through the cutout 24, while the positive electrode spring 71 directly presses against the positive electrode surface of the battery 3.
[0089] Based on the above, for the switch device of the present embodiment, no additional operation process is required for the disassembly and assembly process between the battery 3 and the PCB board 7, which is naturally completed in the process of the battery 3 relative to the accommodation cavity 11 or the compression to the accommodation cavity 11, so as to ensure the normal use of the battery 3 on the basis of improving the convenience of disassembly and assembly of the battery 3.
[0090] In addition, it should be noted that the switch device of the present embodiment is mainly used to control the automatic door opening device 100 arranged in the intelligent storage cabinet, and any mature means in the prior art can be used for the automatic door opening device 100, and the specific structure and implementation principle of the automatic door opening device 100 are not absolutely limited by the present embodiment. For this purpose, the switch device of the present embodiment is provided with a signal triggering assembly in the accommodation cavity 11 of the shell 1 in order to cooperate with the use of the automatic door opening device 100. The PCB board 7 of the switch device and the automatic door opening device can be connected by wired or wireless mode, which is not absolutely limited by the present embodiment.
[0091] For example, the structure of a signal triggering assembly is combined with the drawings, which at least includes a pressing rod 81 arranged in the shell 1, a micro switch 82 adapted to be pressed by the pressing rod 81, and a touch block 83 connected with the pressing rod 81 and adapted to be partially protruded outside the shell 1; wherein the micro switch 82 is electrically connected with the PCB. For the touch block 83 partially protruded outside the shell 1, the touch block 83 can be moved towards the inside of the accommodation cavity 11 by the top pressure, so as to trigger the micro switch 82 connected with the touch block 83. The touch block 83 can be made of, for example but not limited to, rubber material.
[0092] Based on the above, it should be noted that considering the reset requirement of the touch block 83 and the pressing rod 81, the signal triggering assembly of the present embodiment further includes an elastic body 85 arranged in the shell 1 and adapted to be compressed and deformed with the movement of the pressing rod 81. The elastic body 85 is made of, for example but not limited to, a spring.
[0093] In addition, it should be noted that in order to prevent the pressing rod 81 from damaging the micro switch 82 due to overpressure, the present embodiment is designed as follows:
[0094] Please refer to Figure 10 and Figure 11As shown, the pressing rod 81 is also integrally formed with a pressure head 812 for triggering the micro switch 82 and at least one supporting head 811; and the shell 1 is internally provided with a supporting wall 18 adapted to abut against the supporting head 811; when the supporting head 811 abuts against the supporting wall 18, the pressure head 812 triggers the micro switch 82; when the pressure head 812 is separated from the micro switch 82, the supporting head 811 is separated from the supporting wall 18 to form a gap L.
[0095] Based on the above, the signal triggering assembly of the present embodiment can trigger the micro switch 82 by generating a pressing action on the triggering block 83, that is, for the overall switch device, the triggering in the use process only needs to generate a pressing action on the triggering block, so the use process is simple and easy to operate.
[0096] In summary, for the intelligent storage cabinet of the present embodiment, the switch device can control the running state of the automatic door pushing device, so that for the automatic door pushing device 100 generally installed on the top of the cabinet 91, its use process is not limited by its installation position, and its running state can still be flexibly controlled by the switch device.
[0097] Embodiment 2:
[0098] Please refer to Figures 15 to 21 As shown, based on the intelligent storage cabinet of embodiment 1, the intelligent storage cabinet provided by the present embodiment has the same structure and principle as embodiment 1, the difference lies in that the pushing member of the present embodiment is different from that of embodiment 1 in structure and use mode, specifically, the pushing member of the present embodiment adopts a pushing block 200 connected with the buckle 41 and adapted to move synchronously with the buckle 41; and one side end face of the pushing block 200 is exposed at the opening 19, that is, the pushing block 200 at this time is similar to the top pushing member 6 of embodiment 1, and a person's finger can apply a force on the pushing block 200 through the opening 19.
[0099] Based on the above, furthermore, the movement mode of the pushing block 200 in the present embodiment in the accommodation cavity 11 is the same as and synchronous with the buckle 41, for this, in order to facilitate processing and improve the synchronism of the buckle 41 and the pushing block 200 in the movement process, the pushing block 200 is integrally processed with the buckle 41 to form a whole piece for synchronous movement. For this, optionally, anti-slip lines 201 are arranged on the end face of the pushing block 200 contacted by the person's finger, so that it is easier to operate when the finger applies a force on the pushing block 200.
[0100] On the basis of the above structure, in an alternative embodiment, the whole of the toggle block 200 is substantially in the shape of an L-shaped structure, which can form a position for the limiting rib 16, so that the design of the limiting rib 16 does not affect the movement of the toggle block 200 in the accommodation cavity 11.
[0101] In addition, it also needs to be explained that, in order to accurately control the movement trajectory of the toggle block 200 under the action of the force of the finger, thereby ensuring that the buckle 41 can be relatively away from the battery mounting frame 2 under the action of the toggle block 200 to make the battery mounting frame 2 lose the binding effect of the buckle 41, the embodiment further provides a guide block 110 on the inner cavity wall of the accommodation cavity 11, which limits the movement trajectory of the toggle block 200, and a guide groove 202 is formed on the toggle block 200, which is matched with the guide block 110.
[0102] In summary, for the intelligent storage cabinet of the embodiment, the toggle block 200 and the buckle 41 are in an integrated structure, which can simplify the structure of the whole switch device, thereby being more convenient for assembly.
[0103] The above specific embodiments further illustrate the purpose, technical scheme and beneficial effects of the utility model, and it should be understood that the above is only a specific embodiment of the utility model, and is not used to limit the utility model, and any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the utility model should be included in the protection scope of the utility model.
[0104] In the description of the utility model, it should be understood that the terms indicating the position or relationship are based on the position or relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and is not used to indicate or imply that the indicated device or element must have a specific position, be constructed and operated in a specific position, and therefore cannot be understood as a limitation of the utility model.
[0105] In the utility model, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication between two elements or the interaction relationship between two elements. For ordinary skilled persons in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0106] In the description of the utility model, it is necessary to explain that the orientation or position relation indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is the orientation or position relation based on the drawings shown or the orientation or position relation commonly placed when the utility model product is used, and is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the device or element indicated must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the utility model. In addition, the terms "first", "second", "third" and the like are only used for distinguishing description, and cannot be understood as indicating or implying relative importance.
[0107] In addition, the terms "horizontal", "vertical", "overhang" and the like do not mean that the components must be absolutely horizontal or overhanging, but can be slightly inclined. For example, "horizontal" only means that its direction is relatively more horizontal than "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.
[0108] In the utility model, unless otherwise explicitly specified and limited, the first feature above or below the second feature can include that the first and second features are in direct contact, or can include that the first and second features are not in direct contact but are in contact through another feature therebetween. Moreover, the first feature above, above and above the second feature includes that the first feature is directly above and obliquely above the second feature, or only means that the horizontal height of the first feature is higher than that of the second feature. The first feature below, below and below the second feature includes that the first feature is directly below and obliquely below the second feature, or only means that the horizontal height of the first feature is less than that of the second feature.
Claims
1. A smart locker suitable for automatic door opening, characterized by, The utility model relates to a cabinet switch device, including: Cabinet, with the cabinet hinged cabinet door and set up in the cabinet switch device; Wherein The cabinet towards the cabinet door and non-hinged cabinet door side end is equipped with the installation port suitable for the embedding of switch device; The switch device at least includes: shell, the accommodation cavity shaped in the shell, with the accommodation cavity detachable cooperation preloaded with battery battery mounting bracket and set up in the accommodation cavity suitable for with battery matching PCB board; The side end of the shell forms the opening communicating with the accommodation cavity, and the opening is through the installation port towards the cabinet door;The battery mounting bracket is suitable for being pressed into the accommodation cavity and being popped out of the accommodation cavity by linear motion.
2. The smart locker suitable for automatic door opening according to claim 1, characterized in that, The cabinet side end provided with the installation port is parallel to the cabinet hinged cabinet door side end. 3.The smart locker adapted to automatically open a door according to claim 1, wherein, The switch device further includes: the limiting buckle group in the accommodation cavity, elastic support and pusher;Wherein The battery mounting bracket has a limiting bin for accommodating the battery;The limiting buckle group includes a buckle suitable for clamping the battery mounting bracket, and an elastic member connected with the buckle;The elastic support is suitable for abutting the battery mounting bracket; The pusher is suitable for driving the buckle to relatively far away from the battery mounting bracket and the elastic member is compressed, then the buckle and the battery mounting bracket are gradually separated, and the battery mounting bracket is gradually popped out of the accommodation cavity under the elastic reset action of the elastic support; When the battery mounting bracket is pressed into the accommodation cavity, the battery mounting bracket pushes the buckle to relatively far away from the battery mounting bracket and the elastic member is compressed, and the buckle is suitable for relatively close to the battery mounting bracket under the elastic reset action of the elastic member to make the buckle and the battery mounting bracket clamped in place, then the battery mounting bracket presses the elastic support to deform. 4.The smart locker adapted to automatically open the door according to claim 3, wherein, The buckle and the battery mounting bracket are provided with a concave-convex matching clamping structure; The clamping structure includes a groove shaped on the battery mounting bracket and a protruding key shaped on the buckle and suitable for being inserted into the groove. 5.The smart locker adapted to automatically open the door according to claim 4, wherein, The battery mounting bracket is also provided with an inclined pushing surface for matching with the protruding key through an inclined surface; When the battery mounting bracket is pressed into the accommodation cavity, the buckle is relatively far away from the battery mounting bracket and the elastic member is compressed.
6. The smart locker adapted to automatically open the door according to any one of claims 3 to 5, characterized in that, The pusher adopts a pushing piece suitable for pressing the buckle in the accommodation cavity along the direction perpendicular to the movement direction of the buckle. 7.The smart locker adapted to automatically open the door according to claim 6, wherein, The pushing piece and the buckle are matched through the inclined surface of the engagement;And the side end surface of the pushing piece is exposed at the opening; When the pushing piece is pressed through the opening to press the buckle, the buckle is relatively far away from the battery mounting bracket and the elastic member is compressed.
8. The smart locker adapted to automatically open the door according to any one of claims 3 to 5, wherein, The pusher adopts a push block connected with the buckle and suitable for synchronous movement with the buckle;And The side end surface of the push block is exposed at the opening. 9.The smart locker adapted to automatically open the door according to claim 8, wherein, The push block and the buckle are integrally formed.
10. The smart locker adapted to automatically open the door according to any one of claims 3 to 5, characterized in that, The accommodation cavity is also provided with parallel guide strips and guide ribs;And The guide strips and guide ribs both extend along the direction of the battery mounting bracket pressed into the accommodation cavity, so that the guide strips and the limiting ribs form a limiting interval for guiding the two side end surfaces of the battery mounting bracket. 11.The smart locker of claim 3, wherein, The limiting bin has a hollow opening;And The positive spring sheet and the negative spring sheet protruding towards the side of the battery mounting bracket are provided on the PCB board; The positive spring sheet or the negative spring sheet contacts the battery through the hollow opening. 12.The smart locker of claim 1 or 11, wherein, The shell is also provided with a signal triggering assembly; The signal triggering assembly at least comprises a pressing rod arranged in the shell, a micro switch adapted to be touched by the pressing rod, and a touch block connected with the pressing rod and adapted to partially protrude outside the shell; wherein The micro switch is electrically connected with the PCB. 13.The smart locker of claim 12, wherein, The signal triggering assembly further comprises an elastic body arranged in the shell and adapted to be compressed and deformed with the movement of the pressing rod. 14.The smart locker of claim 12, wherein, The pressing rod is further integrally formed with a pressing head for triggering the micro switch and at least one supporting head; and The shell is internally provided with a supporting wall adapted to abut against the supporting head; When the supporting head abuts against the supporting wall, the pressing head triggers the micro switch; When the pressing head is separated from the micro switch, the supporting head is separated from the supporting wall to form a gap. 15.The smart locker of claim 1, wherein, The cabinet is further provided with an automatic door pushing device; and The PCB is wiredly or wirelessly connected with the automatic door pushing device.
Citation Information
Patent Citations
Button cell dismounting structure and switch panel
CN220341414U