An intelligent sensing cabinet
By introducing pop-up and storage mechanisms into the smart sensing cabinet, the problem of inconvenience in placement and removal of consumables is solved, and the stable pop-up and storage of consumables is achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202310349102.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-30
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2043-03-30
AI Technical Summary
When placing consumables in existing smart sensing cabinets, it is difficult to put and take out consumables, especially larger consumables, which are difficult to effectively store and remove.
An intelligent perception cabinet is designed, including a pop-up mechanism and a storage mechanism. Through the pop-up mechanism, the storage box is pushed out of the cabinet body, and the protective plate automatically raises the consumables to block the consumables. During storage, the storage mechanism prevents the storage box from rebounding, achieving stable pick-up and storage of consumables.
It realizes convenient access and storage of consumables, prevents consumables from flying out when they pop up, ensures stable pop-up and storage of the storage box, and improves the convenience of use.
Smart Images

Figure CN116503998B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of perception cabinets, and in particular to an intelligent perception cabinet. Background Art
[0002] In the existing intelligent perception cabinets, pressure sensors are arranged at the bottom of the storage boxes for medical consumables inside, so as to be able to sense the weight of the consumables in each storage box. When the pressure in the storage box is sensed to be small, the medical staff will be reminded to replenish the medical consumables inside in time.
[0003] The existing storage boxes for medical consumables are fixed in the perception cabinet. It is necessary to manually open the corresponding perception cabinet door, first stretch the consumables into the perception cabinet, and then put them into the corresponding consumable storage box. When the volume of the consumables is large, it is inconvenient to put in and take out the consumables. Summary of the Invention
[0004] The purpose of the present invention is to provide an intelligent perception cabinet to solve the problem of inconvenient putting in and taking out of consumables.
[0005] To achieve the above purpose, the present invention provides the following technical solutions:
[0006] An intelligent perception cabinet, comprising:
[0007] A perception cabinet body, inside which a storage box is arranged, and a cabinet door is arranged on the outer side of the corresponding storage box;
[0008] A pop-up mechanism, arranged in the perception cabinet body, when the cabinet door is opened, the pop-up mechanism is used to push one end of the storage box out of the perception cabinet body;
[0009] A storage mechanism, arranged in the perception cabinet body, used to squeeze the pop-up mechanism and cancel the outward pushing of the pop-up mechanism on the storage box, and used to take the storage box into the perception cabinet body;
[0010] A protection component, including a protection plate and a linkage member, the protection plate is in a "C" shape, slidably arranged on the front side of the storage box, and the linkage member is arranged in the perception cabinet body. When the storage box pops out of the perception cabinet body, the linkage member is used to drive the protection plate to rise upward.
[0011] Preferably, the pop-up mechanism includes a pop-up cavity, a first pop-up plate, a second pop-up plate, a third pop-up plate and a connecting plate. The pop-up cavity is opened on the perception cabinet body. The first pop-up plate is fixed on the side of the pop-up cavity far from the cabinet door. The third pop-up plate is arranged on the side of the pop-up cavity close to the cabinet door. The second pop-up plate is located between the first pop-up plate and the third pop-up plate and there is at least one;
[0012] The first ejecting plate, the second ejecting plate, and the third ejecting plate are all U-shaped. Between the first ejecting plate and the second ejecting plate, between the second ejecting plate and the third ejecting plate, and between two adjacent second ejecting plates, they are mutually abutted and provided with a first elastic member. The first elastic member includes an ejecting spring. Each ejecting spring connects two adjacent second ejecting plates, the second ejecting plate and the first ejecting plate, and the second ejecting plate and the third ejecting plate. At the positions corresponding to each of the second ejecting plate and the third ejecting plate at the bottom of the ejecting cavity, a chute is provided. At the positions corresponding to the chutes of each of the second ejecting plate and the third ejecting plate, a slider is provided. The slider is slidably arranged in the chute;
[0013] One end of the connecting plate is connected to the third ejecting plate, and the other end is connected to the storage box.
[0014] Preferably, the storage mechanism includes a second abutting groove, an ejecting limiting block, a limiting groove, and an adjusting member. The second abutting groove is opened in the ejecting cavity. The ejecting limiting block is slidably arranged in the second abutting groove. The limiting groove is opened at the positions of the second ejecting plate and the third ejecting plate corresponding to the second abutting groove. A second elastic member is provided between the ejecting limiting block and the second abutting groove for pushing one end of the ejecting limiting block into the limiting groove. The adjusting member is arranged in the sensing cabinet body for adjusting the limiting state of the ejecting limiting block on the ejecting mechanism, so that the ejecting mechanism can push the storage box out of the sensing cabinet body and prevent the rebound of the ejecting mechanism after the storage box is received into the sensing cabinet body. The second elastic member includes a second abutting spring. One end of the second abutting spring is connected to the second abutting groove, and the other end is connected to the ejecting limiting block.
[0015] Preferably, the adjusting member includes a moving cavity, an adjusting plate, a telescopic groove, and a pressing plate. The moving cavity is opened in the sensing cabinet body. The adjusting plate can slide back and forth relative to the sensing cabinet body in the moving cavity. The telescopic groove is opened at the position of the adjusting plate corresponding to the second abutting groove. The pressing plate is in a "C" shape. One end of the pressing plate is slidably arranged on the ejecting limiting block, and the other end passes through the sensing cabinet body and is slidably arranged in the telescopic groove. A third elastic member is provided between the adjusting plate and the moving cavity. The third elastic member includes an adjusting spring. One end of the adjusting spring is connected to the adjusting plate, and the other end is connected to the moving cavity;
[0016] Ejecting inclined surfaces are opened on both sides of the ejecting limiting block. When the pressing plate cooperates with the ejecting limiting block, only one side inclined surface of the ejecting limiting block is exposed. Pressing plate inclined surfaces are opened on both sides of the pressing plate.
[0017] Preferably, the adjusting member further includes a fourth abutting groove, a top pressing plate and an ejecting member. The fourth abutting groove is formed on one side of the movable cavity. One end of the top pressing plate is slidably disposed in the fourth abutting groove, and the other end extends into the movable cavity. A top pressing inclined surface is formed on the top pressing plate. A fourth elastic member is disposed between the top pressing plate and the fourth abutting groove for pushing the top pressing plate to move toward the adjusting plate, sliding the adjusting plate toward the rear side of the sensing cabinet body, and compressing the third elastic member. The fourth elastic member includes a fourth abutting spring, one end of the fourth abutting spring is connected to the fourth abutting groove, and the other end is connected to the top pressing plate;
[0018] One end of the ejecting member is engaged with the cabinet door, and the other end is connected to the top pressing plate for driving the top pressing plate to move into the fourth abutting groove when the cabinet door is opened, so that the adjusting plate can slide toward the front side of the sensing cabinet body under the elastic force of the third elastic member.
[0019] Preferably, the ejecting member includes a third abutting groove, a top block, an ejecting groove and a traction rope. The third abutting groove is formed on the sensing cabinet body. The top block is slidably disposed in the third abutting groove. A fifth elastic member is disposed between the top block and the third abutting groove for pushing one end of the top block to extend out of the third abutting groove. An ejecting groove is formed at a position corresponding to the top block when the cabinet door is opened. The fifth elastic member includes a third abutting spring, one end of the third abutting spring is connected to the third abutting groove, and the other end is connected to the top block;
[0020] A pressing groove is formed on one side of the cabinet door away from the ejecting groove. The pressing groove is communicated with the ejecting groove, and a pressing block is slidably disposed in the pressing groove.
[0021] Preferably, it further includes an adjusting groove, an adjusting pressing plate, a pushing groove, a pushing block, a through groove and a connecting rod. The adjusting groove is formed on one side of the movable cavity away from the fourth abutting groove. The adjusting pressing plate is slidably disposed in the adjusting groove. The adjusting inclined surface is formed on the adjusting pressing plate. The pushing groove is formed on the sensing cabinet body. The pushing block is slidably disposed in the pushing groove. The through groove is formed in the sensing cabinet body and communicates the pushing groove and the adjusting groove. The connecting rod is slidably disposed in the through groove. One end of the connecting rod is connected to the adjusting pressing plate, and the other end is connected to the pushing block.
[0022] Preferably, the linkage member includes a fixing plate, a lead screw, a movable block, a fixing groove, a rack and a gear. The fixing plate is fixed on both sides of the storage box. The lead screw is rotatably arranged on the fixing plate. The movable block is screwed on the lead screw. One end is connected to the movable block and the other end is connected to the protection plate. The fixing groove is opened at the position of the sensing cabinet body corresponding to the fixing plate. The rack is arranged in the fixing groove. The gear is arranged at the position of the lead screw corresponding to the fixing groove. The gear meshes with the rack;
[0023] A guiding groove is opened at the position of the storage box corresponding to the lead screw. A guiding block is arranged at the position of the movable block corresponding to the guiding groove. The guiding block is slidably arranged in the guiding groove.
[0024] Preferably, linkage blocks are arranged on both sides of the protection plate. A first holding groove is opened on the linkage block. A limiting block is slidably arranged in the first holding groove. A limiting inclined surface is opened on the limiting block. A sixth elastic member is arranged between the limiting block and the first holding groove for pushing one end of the limiting block to extend out of the first holding groove. The sixth elastic member includes a first holding spring. One end of the first holding spring is connected to the first holding groove and the other end is connected to the limiting block;
[0025] Fixing rods are arranged on both sides of the protection plate. Movable rods are arranged on both sides of the protection plate. One end of the movable rod passes through the linkage block and is connected to the limiting block. The other end of the movable rod is connected with a handle.
[0026] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0027] When the cabinet door in the present invention is opened, the ejection mechanism can push one end of the storage box out of the sensing cabinet body. Thus, it is not necessary to extend the consumables into the sensing cabinet body and then put them into the corresponding storage box. The consumables can be directly taken and stored. Even if the volume of the consumables is large, it is convenient to take and store them. When the storage box is ejected, it drives the protection plate to rise. The rising protection plate can block the consumables inside the storage box to prevent the consumables in the storage box from flying out of the storage box when ejected;
[0028] After the taking and storing of the consumables are completed, the ejection mechanism is squeezed by the storage mechanism. At this time, the storage box can be pushed towards the sensing cabinet body. And during the pushing process, the ejection mechanism will not push the storage box outwards. Thus, the storage of the storage box is completed, which is convenient for its next use. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 is a three-dimensional structural schematic diagram of the present invention;
[0030] Figure 2Schematic diagram of the front view partial three-dimensional structure of the present invention;
[0031] Figure 3 Schematic diagram of the rear view partial three-dimensional structure of the present invention;
[0032] Figure 4 Schematic diagram of the bottom view three-dimensional structure of the storage box;
[0033] Figure 5 Schematic diagram of the sectional structure of the linkage block;
[0034] Figure 6 Schematic diagram of the sectional structure of the pop-up cavity;
[0035] Figure 7 Schematic diagram of the sectional structure of the adjusting plate;
[0036] Figure 8 Is Figure 7 Enlarged schematic diagram of the structure at A;
[0037] Figure 9 Schematic diagram of the sectional structure of the second holding groove and the pressing plate;
[0038] Figure 10 Schematic diagram of the three-dimensional structure of the pressing plate and the pop-up limiting block;
[0039] Figure 11 Schematic diagram of the sectional structure of the pressing groove and the fourth holding groove;
[0040] Figure 12 Is Figure 7 Enlarged schematic diagram of the structure at B;
[0041] Figure 13 Is Figure 7 Enlarged schematic diagram of the structure at C;
[0042] Figure 14 Schematic diagram of the three-dimensional structure of the adjusting plate and the pop-up mechanism;
[0043] Figure 15 Schematic diagram of the three-dimensional structure of the pop-up mechanism;
[0044] Figure 16 Schematic diagram of the three-dimensional structure of the adjusting plate;
[0045] Figure 17 Schematic diagram of the three-dimensional structure of the top pressing plate and the adjusting pressing plate.
[0046] In the figure: 1, the main body of the sensing cabinet; 2, the cabinet door; 3, the storage box; 4, the protection plate; 5, the pressing block; 6, the fixing rod; 7, the handle; 8, the movable rod; 9, the linkage block; 10, the pushing block; 11, the pushing groove; 12, the connecting rod; 13, the movable block; 14, the guiding groove; 15, the lead screw; 16, the fixing plate; 17, the fixing groove; 18, the rack; 19, the pop-up cavity; 20, the connecting plate; 21, the gear; 22, the limiting block; 2201, the limiting inclined surface; 23, the first holding spring; 24, the first holding groove; 25, the top block; 26, the first pop-up plate; 27, the second pop-up plate; 28, the third pop-up plate; 29, the pop-up spring; 30, the sliding groove; 31, the adjusting plate; 32, the adjusting spring; 33, the movable cavity; 34, the telescopic groove; 35, the pressing plate; 3501, the pressing plate inclined surface; 36, the limiting groove; 37, the pop-up limiting block; 3701, the pop-up inclined surface; 38, the second holding groove; 39, the second holding spring; 40, the pressing groove; 41, the traction rope; 42, the third holding groove; 43, the third holding spring; 44, the fourth holding groove; 45, the fourth holding spring; 46, the top pressing plate; 4601, the top pressing inclined surface; 47, the adjusting pressing plate; 4701, the adjusting inclined surface; 48, the adjusting groove; 49, the connecting rod; 50, the through groove; 51, the ejecting groove. Specific embodiments
[0047] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0048] Embodiment 1:
[0049] Please refer to Figures 1 to 17 , the present invention provides a technical solution: an intelligent sensing cabinet, including: the main body 1 of the sensing cabinet, with a storage box 3 arranged inside, and a cabinet door 2 arranged outside the corresponding storage box 3; a pop-up mechanism arranged inside the main body 1 of the sensing cabinet, which is used to push one end of the storage box 3 out of the main body 1 of the sensing cabinet when the cabinet door 2 is opened; a storage mechanism arranged inside the main body 1 of the sensing cabinet, which is used to squeeze the pop-up mechanism and cancel the outward pushing of the pop-up mechanism on the storage box 3, and is used to take the storage box 3 into the main body 1 of the sensing cabinet; a protection component, including a protection plate 4 and a linkage member, the protection plate 4 is in a "C" shape and is slidably arranged on the front side of the storage box 3, and the linkage member is arranged inside the main body 1 of the sensing cabinet. When the storage box 3 pops out of the main body 1 of the sensing cabinet, the linkage member is used to drive the protection plate 4 to rise upward.
[0050] When the cabinet door 2 is opened, the ejection mechanism can push one end of the storage box 3 out of the sensing cabinet body 1. Thus, there is no need to extend the consumables into the sensing cabinet body 1 and then place them into the corresponding storage box 3. The consumables can be directly taken and stored. Even if the consumables are large in volume, it is convenient to take and store them. When the storage box 3 is ejected, it drives the protection plate 4 to rise. The rising protection plate 4 can block the consumables inside the storage box 3 to prevent the consumables in the storage box 3 from flying out of the storage box 3 when it is ejected.
[0051] After the taking and storing of the consumables are completed, the ejection mechanism is squeezed by the storage mechanism. At this time, the storage box 3 can be pushed towards the sensing cabinet body 1. And during the pushing process, the ejection mechanism will not push the storage box 3 outwards. Thus, the storage of the storage box 3 is completed, which is convenient for its next use.
[0052] Embodiment 2:
[0053] As Figure 6 and 15 shown, the intelligent sensing cabinet disclosed in Embodiment 2 of the present invention has basically the same structure as that in Embodiment 1. The difference is that the storage box 3 is ejected from the sensing cabinet body 1. The ejection mechanism includes an ejection cavity 19, a first ejection plate 26, a second ejection plate 27, a third ejection plate 28 and a connecting plate 20. The ejection cavity 19 is opened on the sensing cabinet body 1. The first ejection plate 26 is fixed on the side of the ejection cavity 19 away from the cabinet door 2. The third ejection plate 28 is arranged on the side of the ejection cavity 19 close to the cabinet door 2. The second ejection plate 27 is located between the first ejection plate 26 and the third ejection plate 28 and there is at least one.
[0054] The first ejection plate 26, the second ejection plate 27 and the third ejection plate 28 are all U-shaped. Between the first ejection plate 26 and the second ejection plate 27, between the second ejection plate 27 and the third ejection plate 28, and between adjacent second ejection plates 27, they are mutually staggered and abutted and are provided with first elastic members. The first elastic members include ejection springs 29. Each ejection spring 29 connects adjacent two second ejection plates 27, the second ejection plate 27 and the first ejection plate 26, and the second ejection plate 27 and the third ejection plate 28. At the positions corresponding to each second ejection plate 27 and the third ejection plate 28 at the bottom of the ejection cavity 19, chutes 30 are opened. At the positions corresponding to the chutes 30 of each second ejection plate 27 and the third ejection plate 28, sliders are provided. The sliders are slidably arranged in the chutes 30. One end of the connecting plate 20 is connected to the third ejection plate 28 and the other end is connected to the storage box 3.
[0055] When the cabinet door 2 is opened, the pop-up spring 29 connected to the first pop-up plate 26 pushes the second pop-up plate 27 to move outward, and the adjacent two second pop-up plates 27 continue to move outward through the pop-up spring 29, and the third pop-up plate 28 is continuously pushed outward through the pop-up spring 29 until the third pop-up plate 28 drives the storage box 3 through the connecting plate 20 and pushes the storage box 3 out of the sensing cabinet body 1. During the pushing process, the slider cooperates with the chute 30 to limit the third pop-up plate 28 and the second pop-up plate 27.
[0056] Embodiment Three:
[0057] As Figures 7 - 14 Shown in FIGS. 16 - 17, the intelligent sensing cabinet disclosed in the third embodiment of the present invention has basically the same structure as that in the second embodiment. The difference lies in that the adjustment pop-up mechanism drives the storage or pop-up of the storage box 3. The storage mechanism includes a second holding groove 38, a pop-up limit block 37, a limit groove 36, and an adjustment component. The second holding groove 38 is opened in the pop-up cavity 19. The pop-up limit block 37 is slidably arranged in the second holding groove 38. The limit groove 36 is opened at the positions of the second pop-up plate 27 and the third pop-up plate 28 corresponding to the second holding groove 38. A second elastic member is arranged between the pop-up limit block 37 and the second holding groove 38 for pushing one end of the pop-up limit block 37 into the limit groove 36. The adjustment component is arranged in the sensing cabinet body 1 for adjusting the limiting state of the pop-up limit block 37 on the pop-up mechanism, so that the pop-up mechanism can push the storage box 3 out of the sensing cabinet body 1 and prevent the pop-up mechanism from rebounding after the storage box 3 is received in the sensing cabinet body 1. The second elastic member includes a second holding spring 39. One end of the second holding spring 39 is connected to the second holding groove 38, and the other end is connected to the pop-up limit block 37.
[0058] The adjustment component includes a movable cavity 33, an adjustment plate 31, a telescopic groove 34, and a pressing plate 35. The movable cavity 33 is opened in the sensing cabinet body 1. The adjustment plate 31 can slide back and forth relative to the sensing cabinet body 1 in the movable cavity 33. The telescopic groove 34 is opened at the position of the adjustment plate 31 corresponding to the second holding groove 38. The pressing plate 35 is in a "C" shape. One end of the pressing plate 35 is slidably arranged on the pop-up limit block 37, and the other end passes through the sensing cabinet body 1 and is slidably arranged in the telescopic groove 34. A third elastic member is arranged between the adjustment plate 31 and the movable cavity 33. The third elastic member includes an adjustment spring 32. One end of the adjustment spring 32 is connected to the adjustment plate 31, and the other end is connected to the movable cavity 33. Pop-up inclined surfaces 3701 are opened on both sides of the pop-up limit block 37. When the pressing plate 35 cooperates with the pop-up limit block 37, only one side inclined surface of the pop-up limit block 37 is exposed. Pressing plate inclined surfaces 3501 are opened on both sides of the pressing plate 35.
[0059] The adjusting member further includes a fourth abutting groove 44, a top pressing plate 46 and an ejecting member. The fourth abutting groove 44 is formed on one side of the movable cavity 33. One end of the top pressing plate 46 is slidably disposed in the fourth abutting groove 44, and the other end extends into the movable cavity 33. A top pressing inclined surface 4601 is formed on the top pressing plate 46. A fourth elastic member is disposed between the top pressing plate 46 and the fourth abutting groove 44 for pushing the top pressing plate 46 to move towards the adjusting plate 31, sliding the adjusting plate 31 towards the rear side of the sensing cabinet body 1 and compressing the third elastic member. The fourth elastic member includes a fourth abutting spring 45. One end of the fourth abutting spring 45 is connected to the fourth abutting groove 44, and the other end is connected to the top pressing plate 46. One end of the ejecting member is engaged with the cabinet door 2, and the other end is connected to the top pressing plate 46 for driving the top pressing plate 46 to move into the fourth abutting groove 44 when the cabinet door 2 is opened, so that the adjusting plate 31 can slide towards the front side of the sensing cabinet body 1 under the elastic force of the third elastic member.
[0060] The ejecting member includes a third abutting groove 42, a top block 25, an ejecting groove 51 and a traction rope 41. The third abutting groove 42 is formed on the sensing cabinet body 1. The top block 25 is slidably disposed in the third abutting groove 42. A fifth elastic member is disposed between the top block 25 and the third abutting groove 42 for pushing one end of the top block 25 to extend out of the third abutting groove 42. An ejecting groove 51 is formed at the corresponding position of the top block 25 when the cabinet door 2 is opened. The fifth elastic member includes a third abutting spring 43. One end of the third abutting spring 43 is connected to the third abutting groove 42, and the other end is connected to the top block 25. A pressing groove 40 is formed on the side of the cabinet door 2 away from the ejecting groove 51. The pressing groove 40 is communicated with the ejecting groove 51. A pressing block 5 is slidably disposed in the pressing groove 40.
[0061] It further includes an adjusting groove 48, an adjusting pressing plate 47, a pushing groove 11, a pushing block 10, a through groove 50 and a connecting rod 49. The adjusting groove 48 is formed on the side of the movable cavity 33 away from the fourth abutting groove 44. The adjusting pressing plate 47 is slidably disposed in the adjusting groove 48. An adjusting inclined surface 4701 is formed on the adjusting pressing plate 47. The pushing groove 11 is formed on the sensing cabinet body 1. The pushing block 10 is slidably disposed in the pushing groove 11. The through groove 50 is formed in the sensing cabinet body 1 and communicates the pushing groove 11 and the adjusting groove 48. The connecting rod 49 is slidably disposed in the through groove 50. One end of the connecting rod 49 is connected to the adjusting pressing plate 47, and the other end is connected to the pushing block 10.
[0062] When the cabinet door 2 is opened, when the ejection groove 51 on the cabinet door 2 is aligned with the third supporting groove 42, the third supporting spring 43 supports the ejection block 25 to enter the ejection groove 51. At this time, the ejection block 25 drives the top pressure plate 46 to move toward the fourth supporting spring 45 through the traction rope 41, so that the adjusting spring 32 supports the adjusting plate 31 to pass through the top pressure inclined surface 4601 and move toward the top pressure plate 46, and then drives the pressure plate 35 to move toward the top pressure plate 46 through the adjusting plate 31, so that the pressure plate 35 covers the ejection inclined surface 3701 of the ejection limit block 37 close to the top pressure plate 46 side, and exposes the ejection inclined surface 3701 on the other side of the ejection limit block 37. At this time, the ejection spring 29 supports the second ejection plate 27 or the third ejection plate 28 to move toward the top pressure plate 46. When the second ejection plate 27 or the third ejection plate 28 moves toward the top pressure plate 46, When the pop-up plate 27 or the third pop-up plate 28 passes through the pop-up limit block 37, the pop-up limit block 37 and the pressure plate 35 will be pressed into the third pop-up plate 28 through the pop-up inclined surface 3701 and the pressure plate inclined surface 3501. When the second top holding groove 38 and the limit groove 36 are aligned, the second top holding spring 39 holds the pop-up limit block 37 to drive the pressure plate 35 to enter the limit groove 36. At this time, the pressure plate 35 and the limit groove 36 cooperate to limit the storage of the second pop-up plate 27 or the third pop-up plate 28, so that the pop-up spring 29 can only drive the second pop-up plate 27 or the third pop-up plate 28 to move toward the top pressure plate 46, so that the storage box 3 can only pop outward and cannot be stored inward, thereby ensuring the stability of the storage box 3 when it is popped up, and facilitating the taking or putting of consumables inside it.
[0063] When it is necessary to store the storage box 3, first, the push block 10 is pushed to slide in the push groove 11, and then the adjusting pressure plate 47 is driven to move toward the adjusting plate 31 through the connecting rod 49. At this time, the adjusting pressure plate 47 contacts the adjusting plate 31 through the adjusting inclined surface 4701 and presses the adjusting plate 31 toward the adjusting spring 32. At this time, the adjusting plate 31 drives the pressure plate 35 to move away from the top pressure plate 46, so that the pressure plate 35 covers the pop-up inclined surface 3701 on the side of the pop-up limit block 37 away from the top pressure plate 46, and exposes the pop-up inclined surface 3701 on the other side of the pop-up limit block 37. At this time, the storage box 3 is pressed to move the storage box 3 toward the inside of the sensing cabinet body 1. When the second pop-up plate 27 or the third pop-up plate 28 passes through the spring When the limit block 37 comes out, the pop-up limit block 37 and the pressure plate 35 will be pressed into the third pop-up plate 28 through the pop-up inclined surface 3701 and the pressure plate inclined surface 3501. When the second top holding groove 38 and the limit groove 36 are aligned, the second top holding spring 39 supports the pop-up limit block 37 to drive the pressure plate 35 to enter the limit groove 36. At this time, the pressure plate 35 and the limit groove 36 cooperate to limit the pop-up of the second pop-up plate 27 or the third pop-up plate 28, so that the pop-up spring 29 can only drive the second pop-up plate 27 or the third pop-up plate 28 to move away from the top pressure plate 46, so that the storage box 3 can only be stored inwardly and cannot be popped outwardly, which ensures the stability of the storage box 3 when stored and facilitates the storage of consumables inside it.
[0064] After the storage box 3 is completely received into the sensing cabinet body 1, by pressing the pressing block 5 to slide in the pressing groove 40, the pressing block 5 abuts against the top block 25 and presses the top block 25 into the third abutting groove 42. At this time, the top block 25 relaxes the traction rope 41, and then the fourth abutting spring 45 abuts against the top pressing plate 46 and extends the top pressing plate 46 out of the fourth abutting groove 44. At this time, one end of the top pressing plate 46 away from the fourth abutting spring 45 abuts against the adjusting pressing plate 47 and presses the adjusting pressing plate 47 into the adjusting groove 48, and the adjusting plate 31 contacts the side of the top pressing plate 46 close to the fourth abutting spring 45. At this time, the top pressing plate 46 and the adjusting plate 31 cooperate to limit the pop-up of the second pop-up plate 27 or the third pop-up plate 28, and reset the push block 10, ensuring the storage of the storage box 3. The above operations can be repeated when the cabinet door 2 is opened next time, facilitating the stable pop-up and storage of the storage box 3 and facilitating the taking or placing of the consumables inside it.
[0065] Embodiment 4:
[0066] As Figures 2 - 5 shown, the intelligent sensing cabinet disclosed in Embodiment 3 of the present invention has basically the same structure as that in Embodiment 2, and the difference lies in protecting the internal consumables when the storage box 3 pops up. The linkage member includes a fixing plate 16, a lead screw 15, movable blocks 13, 12, a fixing groove 17, a rack 18 and a gear 21. The fixing plate 16 is fixed on both sides of the storage box 3. The lead screw 15 is rotatably arranged on the fixing plate 16. The movable block 13 is screwed on the lead screw 15. One end of 12 is connected to the movable block 13, and the other end is connected to the protection plate 4. The fixing groove 17 is opened at the position of the sensing cabinet body 1 corresponding to the fixing plate 16. The rack 18 is arranged in the fixing groove 17. The gear 21 is arranged at the position of the lead screw 15 corresponding to the fixing groove 17. The gear 21 meshes with the rack 18. A guiding groove 14 is opened at the position of the storage box 3 corresponding to the lead screw 15. A guiding block is arranged at the position of the movable block 13 corresponding to the guiding groove 14. The guiding block is slidably arranged in the guiding groove 14.
[0067] Linking blocks 9 are arranged on both sides of the protection plate 4. A first abutting groove 24 is opened on the linking block 9. A limiting block 22 is slidably arranged in the first abutting groove 24. A limiting inclined surface 2201 is opened on the limiting block 22. A sixth elastic member is arranged between the limiting block 22 and the first abutting groove 24 for pushing one end of the limiting block 22 to extend out of the first abutting groove 24. The sixth elastic member includes a first abutting spring 23. One end of the first abutting spring 23 is connected to the first abutting groove 24, and the other end is connected to the limiting block 22. Fixing rods 6 are arranged on both sides of the protection plate 4. Movable rods 8 are arranged on both sides of the protection plate 4. One end of the movable rod 8 passes through the linking block 9 and is connected to the limiting block 22. The other end of the movable rod 8 is connected with a handle 7.
[0068] When the storage box 3 is ejected, the storage box 3 drives the lead screw 15 to move outward together. At this time, the rack 18 and the gear 21 cooperate to drive the lead screw 15 to rotate. The movable block 13 is guided through the guide groove 14 and the guide block. Furthermore, the lead screw 15 and the movable block 13 cooperate to drive the movable block 13 to move upward. Since one end of 12 is limited by the linkage block 9 and the limit block 22, when the movable block 13 moves upward, it drives the linkage block 9 and the protection plate 4 to move upward through 12, thereby protecting the consumables in the storage box 3. Because the consumables in the storage box 3 will continue to move forward due to inertia when the storage box 3 stops being ejected, the raised protection plate 4 can block the consumables inside the storage box 3 to prevent the consumables in the storage box 3 from flying out of the storage box 3 when it is ejected.
[0069] After the storage box 3 finishes being ejected, by holding the fixed rod 6 and the handle 7 and moving the handle 7 towards the fixed rod 6, the handle 7 drives the limit block 22 to be received into the first holding groove 24 through the movable rod 8, thereby canceling the limit on 12. At this time, separating 12 from the protection plate 4 allows the protection plate 4 to be pressed downward to the initial position, facilitating the taking and placing of consumables in the storage box 3. Then, when the storage box 3 is received into the sensing cabinet body 1, the storage box 3 drives the lead screw 15 to move inward together. At this time, the lead screw 15 and the movable block 13 cooperate to drive the movable block 13 to move downward until the movable block 13 is reset. And when the movable block 13 is reset, it drives 12 to move towards the linkage block 9, and presses the limit block 22 into the first holding groove 24 through the limit inclined surface 2201 until after 12 passes through the limit block 22, the first holding spring 23 holds the limit block 22 to extend out of the first holding spring 23 and cooperate with the linkage block 9 to limit 12. Furthermore, when the storage box 3 is ejected next time, the protection plate 4 can still rise to protect the storage box 3.
[0070] The specific solution of this scheme is: when the cabinet door 2 is opened, the ejection mechanism can push one end of the storage box 3 out of the sensing cabinet body 1. Therefore, there is no need to extend the consumables into the sensing cabinet body 1 and then put them into the corresponding storage box 3. The consumables can be directly taken and stored. Even if the consumables are large in volume, it is convenient to take and store them.
[0071] After the taking and storing of the consumables are completed, by squeezing the ejection mechanism through the storage mechanism, at this time, the storage box 3 can be pushed towards the sensing cabinet body 1, and during the pushing process, the ejection mechanism will not push the storage box 3 outward, thereby completing the storage of the storage box 3 and facilitating its next use.
[0072] When the cabinet door 2 is opened, when the ejection groove 51 on the cabinet door 2 is aligned with the third supporting groove 42, the third supporting spring 43 supports the ejection block 25 to enter the ejection groove 51. At this time, the ejection block 25 drives the top pressure plate 46 to move toward the fourth supporting spring 45 through the traction rope 41, so that the adjusting spring 32 supports the adjusting plate 31 to pass through the top pressure inclined surface 4601 and move toward the top pressure plate 46, and then drives the pressure plate 35 to move toward the top pressure plate 46 through the adjusting plate 31, so that the pressure plate 35 covers the ejection inclined surface 3701 of the ejection limit block 37 close to the top pressure plate 46 side, and exposes the ejection inclined surface 3701 on the other side of the ejection limit block 37. At this time, the ejection spring 29 supports the second ejection plate 27 or the third ejection plate 28 to move toward the top pressure plate 46. When the second ejection plate 27 or the third ejection plate 28 moves toward the top pressure plate 46, When the pop-up plate 27 or the third pop-up plate 28 passes through the pop-up limit block 37, the pop-up limit block 37 and the pressure plate 35 will be pressed into the third pop-up plate 28 through the pop-up inclined surface 3701 and the pressure plate inclined surface 3501. When the second top holding groove 38 and the limit groove 36 are aligned, the second top holding spring 39 holds the pop-up limit block 37 to drive the pressure plate 35 to enter the limit groove 36. At this time, the pressure plate 35 and the limit groove 36 cooperate to limit the storage of the second pop-up plate 27 or the third pop-up plate 28, so that the pop-up spring 29 can only drive the second pop-up plate 27 or the third pop-up plate 28 to move toward the top pressure plate 46, so that the storage box 3 can only pop outward and cannot be stored inward, thereby ensuring the stability of the storage box 3 when it is popped up, and facilitating the taking or putting of consumables inside it.
[0073] When it is necessary to store the storage box 3, first, the push block 10 is pushed to slide in the push groove 11, and then the adjusting pressure plate 47 is driven to move toward the adjusting plate 31 through the connecting rod 49. At this time, the adjusting pressure plate 47 contacts the adjusting plate 31 through the adjusting inclined surface 4701 and presses the adjusting plate 31 toward the adjusting spring 32. At this time, the adjusting plate 31 drives the pressure plate 35 to move away from the top pressure plate 46, so that the pressure plate 35 covers the pop-up inclined surface 3701 on the side of the pop-up limit block 37 away from the top pressure plate 46, and exposes the pop-up inclined surface 3701 on the other side of the pop-up limit block 37. At this time, the storage box 3 is pressed to move the storage box 3 toward the inside of the sensing cabinet body 1. When the second pop-up plate 27 or the third pop-up plate 28 passes through the spring When the limit block 37 comes out, the pop-up limit block 37 and the pressure plate 35 will be pressed into the third pop-up plate 28 through the pop-up inclined surface 3701 and the pressure plate inclined surface 3501. When the second top holding groove 38 and the limit groove 36 are aligned, the second top holding spring 39 supports the pop-up limit block 37 to drive the pressure plate 35 to enter the limit groove 36. At this time, the pressure plate 35 and the limit groove 36 cooperate to limit the pop-up of the second pop-up plate 27 or the third pop-up plate 28, so that the pop-up spring 29 can only drive the second pop-up plate 27 or the third pop-up plate 28 to move away from the top pressure plate 46, so that the storage box 3 can only be stored inwardly and cannot be popped outwardly, which ensures the stability of the storage box 3 when stored and facilitates the storage of consumables inside it.
[0074] After the storage box 3 is completely received into the sensing cabinet body 1, by pressing the pressing block 5 to slide in the pressing groove 40, the pressing block 5 abuts against the top block 25 and presses the top block 25 into the third abutting groove 42. At this time, the top block 25 relaxes the traction rope 41, and further enables the fourth abutting spring 45 to abut against the top pressing plate 46 and extend the top pressing plate 46 out of the fourth abutting groove 44. At this time, one end of the top pressing plate 46 away from the fourth abutting spring 45 abuts against the adjusting pressing plate 47 and presses the adjusting pressing plate 47 into the adjusting groove 48, and the adjusting plate 31 contacts the side of the top pressing plate 46 close to the fourth abutting spring 45. At this time, the top pressing plate 46 and the adjusting plate 31 cooperate to limit the ejection of the second ejection plate 27 or the third ejection plate 28, and reset the push block 10, ensuring the storage of the storage box 3. The above operations can be repeated when the cabinet door 2 is opened next time, facilitating the stable ejection and storage of the storage box 3 and facilitating the taking or placing of the consumables inside it.
[0075] When the storage box 3 is ejected, the storage box 3 drives the lead screw 15 to move outwards together. At this time, the rack 18 and the gear 21 cooperate to drive the lead screw 15 to rotate. The movable block 13 is guided through the guide groove 14 and the guide block. Further, the lead screw 15 and the movable block 13 cooperate to drive the movable block 13 to move upwards. Since one end of 12 is limited by the linkage block 9 and the limit block 22, when the movable block 13 moves upwards, it drives the linkage block 9 and the protection plate 4 to move upwards through 12, thereby protecting the consumables in the storage box 3. Because the consumables in the storage box 3 will continue to move forward due to inertia when the storage box 3 stops ejecting, the raised protection plate 4 can block the consumables inside the storage box 3 to prevent the consumables in the storage box 3 from flying out of the storage box 3 when ejected.
[0076] After the storage box 3 finishes ejecting, by holding the fixed rod 6 and the handle 7 and moving the handle 7 towards the fixed rod 6, the handle 7 drives the limit block 22 to be received into the first abutting groove 24 through the movable rod 8, thereby canceling the limit on 12. At this time, 12 is separated from the protection plate 4, and the protection plate 4 can be pressed down to the initial position, facilitating the taking and placing of consumables in the storage box 3. Then when the storage box 3 is received into the sensing cabinet body 1, the storage box 3 drives the lead screw 15 to move inwards together. At this time, the lead screw 15 and the movable block 13 cooperate to drive the movable block 13 to move downwards until the movable block 13 is reset. And when the movable block 13 is reset, it drives 12 to move towards the linkage block 9, and presses the limit block 22 into the first abutting groove 24 through the limit inclined surface 2201 until 12 passes through the limit block 22. Then the first abutting spring 23 abuts against the limit block 22 and extends the limit block 22 out of the first abutting spring 23 and cooperates with the linkage block 9 to limit 12. Further, when the storage box 3 ejects next time, the protection plate 4 can still rise to protect the storage box 3.
[0077] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art will appreciate that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent sensing cabinet, characterized in that, Comprising: A sensing cabinet body (1) with a storage box (3) arranged inside, and a cabinet door (2) arranged on the outer side of the corresponding storage box (3); A pop-up mechanism arranged inside the sensing cabinet body (1), which is used to push one end of the storage box (3) out of the sensing cabinet body (1) when the cabinet door (2) is opened; A storage mechanism arranged inside the sensing cabinet body (1), which is used to squeeze the pop-up mechanism and cancel the outward pushing of the pop-up mechanism on the storage box (3), and is used to receive the storage box (3) into the sensing cabinet body (1); A protection component, including a protection plate (4) and a linkage member. The protection plate (4) is in a "C" shape and is slidably arranged on the front side of the storage box (3). The linkage member is arranged inside the sensing cabinet body (1). When the storage box (3) pops out of the sensing cabinet body (1), the linkage member is used to drive the protection plate (4) to rise upward; The pop-up mechanism includes a pop-up cavity (19), a first pop-up plate (26), a second pop-up plate (27), a third pop-up plate (28) and a connecting plate (20). The pop-up cavity (19) is opened on the sensing cabinet body (1). The first pop-up plate (26) is fixed on the side of the pop-up cavity (19) far from the cabinet door (2). The third pop-up plate (28) is arranged on the side of the pop-up cavity (19) close to the cabinet door (2). The second pop-up plate (27) is located between the first pop-up plate (26) and the third pop-up plate (28) and there is at least one; The first pop-up plate (26), the second pop-up plate (27) and the third pop-up plate (28) are all in a U shape. Between the first pop-up plate (26) and the second pop-up plate (27), between the second pop-up plate (27) and the third pop-up plate (28), and between adjacent two second pop-up plates (27), they are mutually staggered and abutted and are provided with a first elastic member; One end of the connecting plate (20) is connected to the third pop-up plate (28), and the other end is connected to the storage box (3); The storage mechanism includes a second abutting groove (38), a pop-up limiting block (37), a limiting groove (36) and an adjusting component. The second abutting groove (38) is opened in the pop-up cavity (19). The pop-up limiting block (37) is slidably arranged in the second abutting groove (38). The limiting groove (36) is opened at the positions of the second pop-up plate (27) and the third pop-up plate (28) corresponding to the second abutting groove (38). A second elastic member is arranged between the pop-up limiting block (37) and the second abutting groove (38) to push one end of the pop-up limiting block (37) into the limiting groove (36). The adjusting component is arranged inside the sensing cabinet body (1) to adjust the limiting state of the pop-up limiting block (37) on the pop-up mechanism, so that the pop-up mechanism can push the storage box (3) out of the sensing cabinet body (1) and prevent the pop-up mechanism from rebounding after the storage box (3) is received into the sensing cabinet body (1).
2. The intelligent perception cabinet according to claim 1, characterized in that, The adjusting member includes a movable cavity (33), an adjusting plate (31), a telescopic groove (34), and a pressing plate (35). The movable cavity (33) is formed in the sensing cabinet body (1). The adjusting plate (31) is slidably arranged in the movable cavity (33) relative to the sensing cabinet body (1) in the front-back direction. The telescopic groove (34) is formed at a position of the adjusting plate (31) corresponding to the second abutting groove (38). The pressing plate (35) is in a "C" shape. One end of the pressing plate (35) is slidably arranged on the ejecting limiting block (37), and the other end passes through the sensing cabinet body (1) and is slidably arranged in the telescopic groove (34). A third elastic member is arranged between the adjusting plate (31) and the movable cavity (33). Ejecting inclined surfaces (3701) are formed on both sides of the ejecting limiting block (37). When the pressing plate (35) cooperates with the ejecting limiting block (37), only one inclined surface of the ejecting limiting block (37) is exposed. Pressing inclined surfaces (3501) are formed on both sides of the pressing plate (35).
3. The intelligent perception cabinet according to claim 2, characterized in that, The adjusting member further includes a fourth abutting groove (44), a top pressing plate (46), and an ejecting member. The fourth abutting groove (44) is formed on one side of the movable cavity (33). One end of the top pressing plate (46) is slidably arranged in the fourth abutting groove (44), and the other end extends into the movable cavity (33). A top pressing inclined surface (4601) is formed on the top pressing plate (46). A fourth elastic member is arranged between the top pressing plate (46) and the fourth abutting groove (44) for pushing the top pressing plate (46) to move towards the adjusting plate (31), sliding the adjusting plate (31) towards the rear side of the sensing cabinet body (1), and compressing the third elastic member. One end of the ejecting member cooperates with the cabinet door (2), and the other end is connected to the top pressing plate (46) for driving the top pressing plate (46) to move into the fourth abutting groove (44) when the cabinet door (2) is opened, so that the adjusting plate (31) can slide towards the front side of the sensing cabinet body (1) under the elastic force of the third elastic member.
4. The intelligent perception cabinet according to claim 3, characterized in that, The ejecting member includes a third abutting groove (42), a top block (25), an ejecting groove (51), and a traction rope (41). The third abutting groove (42) is formed on the sensing cabinet body (1). The top block (25) is slidably arranged in the third abutting groove (42). A fifth elastic member is arranged between the top block (25) and the third abutting groove (42) for pushing one end of the top block (25) to extend out of the third abutting groove (42). An ejecting groove (51) is formed at a position corresponding to the top block (25) when the cabinet door (2) is opened. A pressing groove (40) is formed on one side of the cabinet door (2) away from the ejecting groove (51). The pressing groove (40) communicates with the ejecting groove (51). A pressing block (5) is slidably arranged in the pressing groove (40).
5. The intelligent sensing cabinet according to claim 3, wherein It further includes an adjustment groove (48), an adjustment pressing plate (47), a pushing groove (11), a pushing block (10), a through groove (50) and a connecting rod (49). The adjustment groove (48) is formed on one side of the movable cavity (33) away from the fourth abutting groove (44). The adjustment pressing plate (47) is slidably arranged in the adjustment groove (48). The adjustment inclined surface (4701) is formed on the adjustment pressing plate (47). The pushing groove (11) is formed on the sensing cabinet body (1). The pushing block (10) is slidably arranged in the pushing groove (11). The through groove (50) is formed in the sensing cabinet body (1) and communicates the pushing groove (11) and the adjustment groove (48). The connecting rod (49) is slidably arranged in the through groove (50). One end of the connecting rod (49) is connected to the adjustment pressing plate (47), and the other end is connected to the pushing block (10).
6. The intelligent sensing cabinet according to claim 1, characterized in that At the positions corresponding to the second ejecting plate (27) and the third ejecting plate (28) at the bottom of the ejecting cavity (19), a sliding groove (30) is formed. At the positions corresponding to the sliding groove (30) on each of the second ejecting plate (27) and the third ejecting plate (28), a sliding block is provided. The sliding block is slidably arranged in the sliding groove (30).
7. The intelligent sensing cabinet according to claim 1, characterized in that, The linkage member includes a fixing plate (16), a lead screw (15), a movable block (13), a connecting rod (12), a fixing groove (17), a rack (18) and a gear (21). The fixing plate (16) is fixed on both sides of the storage box (3). The lead screw (15) is rotatably arranged on the fixing plate (16). The movable block (13) is screwed on the lead screw (15). One end of the connecting rod (12) is connected to the movable block (13), and the other end is connected to the protection plate (4). The fixing groove (17) is formed at the position of the sensing cabinet body (1) corresponding to the fixing plate (16). The rack (18) is arranged in the fixing groove (17). The gear (21) is arranged at the position of the lead screw (15) corresponding to the fixing groove (17). The gear (21) meshes with the rack (18). At the position corresponding to the lead screw (15) on the storage box (3), a guiding groove (14) is formed. At the position corresponding to the guiding groove (14) on the movable block (13), a guiding block is provided. The guiding block is slidably arranged in the guiding groove (14).
8. The intelligent perception cabinet according to claim 7, wherein Linking blocks (9) are arranged on both sides of the protection plate (4). A first abutting groove (24) is formed in the linking block (9). A limiting block (22) is slidably arranged in the first abutting groove (24). A limiting inclined surface (2201) is formed in the limiting block (22). A sixth elastic member is arranged between the limiting block (22) and the first abutting groove (24) for pushing one end of the limiting block (22) to extend out of the first abutting groove (24). Fixed rods (6) are provided on both sides of the protective plate (4), movable rods (8) are provided on both sides of the protective plate (4), one end of the movable rod (8) passes through the linkage block (9) and is connected to the limit block (22), and the other end of the movable rod (8) is connected to a handle (7).
Citation Information
Patent Citations
Pop-up mechanism of sensing cabinet
CN219553053U