Intelligent model storage table
The design of the intelligent model storage table solves the problem of cumbersome storage of human organ teaching models, enabling rapid access and efficient utilization, and improving the efficiency of the teaching laboratory.
Patent Information
- Application Number
- CN202520102260.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-16
AI Technical Summary
In existing technologies, the storage and replacement of human organ teaching models are cumbersome, resulting in time-consuming teaching preparations and hindering efficient laboratory utilization.
Design an intelligent model storage table, which includes an outer storage cabinet on the perimeter of the table and a middle storage cabinet in the center. The cabinet door drive device and the lifting power device are used to realize the rapid storage and retrieval and classified storage of models. The touch screen all-in-one machine and card reader are combined to improve the ease of operation.
It enables rapid switching and efficient access to teaching models, reduces the workload of teaching preparation, and improves the utilization rate of the laboratory.
Smart Images

Figure CN223759471U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of model storage technology, and in particular to an intelligent model storage table. Background Technology
[0002] During teaching, the teaching models of human organs need to be stored after use. However, due to the large number of these models, retrieving and storing them is complex and tedious. Typically, the models are stored in a storage room with several cabinets. These cabinets have doors and hold the models. Commonly available tool or book storage cabinets are used; for example, the model storage device disclosed in patent number 202122550748.7 can be used for storing human body teaching models. During teaching, the required models are retrieved from the cabinets and moved to the teaching area using a trolley. After use, all models need to be moved back to the storage room using the trolley and then stored in the cabinets. Furthermore, multiple models of various organs are typically used during teaching, and different organ models are required for different teaching content. For example, teaching the digestive system requires multiple models of various organs that make up the digestive system, such as the mouth, teeth, tongue, salivary glands, pharynx, esophagus, stomach, small intestine, large intestine, liver, gallbladder, and pancreas. Teaching the vascular system, on the other hand, requires different teaching models. Therefore, preparing these teaching models involves a lot of cumbersome and time-consuming transport and handling. Furthermore, the overlap between different teaching contents makes it difficult to quickly change teaching models, hindering the efficient use of the teaching laboratory. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide an intelligent model storage table that can be placed directly in the classroom. The teaching models can be stored in the table according to teaching needs, making full use of the space of the teaching laboratory. It also facilitates access during teaching preparation, allows for quick switching between different teaching contents, reduces the labor intensity of teaching preparation, and improves the utilization rate of the teaching laboratory.
[0004] To solve the above-mentioned technical problems, the technical solution of this utility model is: an intelligent model storage table, including a table body, with a plurality of peripheral storage cabinets arranged on the outer perimeter of the table body, and peripheral cabinet doors corresponding to each peripheral storage cabinet slidably installed on the outer perimeter of the table body, each peripheral cabinet door being driven to open the peripheral storage cabinet by a cabinet door drive device, and at least one intermediate storage cabinet being lifted and lowered in the middle of the table body, the intermediate storage cabinet being driven to rise and fall between the highest and lowest positions by a lifting power device, the storage space of the intermediate storage cabinet being higher than the tabletop when the intermediate storage cabinet is at the highest position, and the storage area being lower than the tabletop when the intermediate storage cabinet is at the lowest position.
[0005] As a preferred embodiment, the outer perimeter of the table is provided with an upper rail and a lower rail. The upper and lower ends of the outer cabinet doors are slidably mounted on the upper and lower rails. Adjacent outer cabinet doors are staggered. The cabinet door driving device is an opening and closing motor, which is fixed to the table. The output shaft of the opening and closing motor is connected to the corresponding outer cabinet door through an opening and closing transmission mechanism.
[0006] As a preferred embodiment, the opening and closing transmission mechanism includes a rack fixed to the upper or lower end of the outer cabinet door, and a drive gear meshing with the rack is provided on the output shaft of the corresponding opening and closing motor.
[0007] As a preferred embodiment, the opening and closing motor is fixed to the table body by a motor bracket. Two adjacent opening and closing motors are grouped together and share a motor bracket. The two opening and closing motors on the same motor bracket are staggered vertically, and there is a height difference between the upper ends of adjacent outer cabinet doors.
[0008] As a preferred embodiment, the intermediate storage cabinet includes a lifting base and an intermediate cabinet body disposed on the upper part of the lifting base. The intermediate cabinet body is provided with the storage area. The lifting base and the table body are lifted and slid together by a vertical guide rail slider mechanism. When the intermediate storage cabinet is in its highest position, the lifting base is lower than the table body.
[0009] As a preferred embodiment, the lifting power device is an electric push rod or a cylinder. The power end of the electric push rod or cylinder passes through the intermediate cabinet from bottom to top and is fixedly connected to or in contact with the upper end plate of the intermediate cabinet. When the power end of the electric push rod or cylinder is in contact with the upper end plate of the intermediate cabinet, a conical positioning groove is provided at the bottom of the upper end plate, and a positioning protrusion is provided at the upper end of the power end of the electric push rod or cylinder to contact the positioning groove.
[0010] As a preferred embodiment, the number of intermediate storage cabinets is multiple and arranged in a rectangular array, with the access opening side of the intermediate storage cabinet facing one side of the table body.
[0011] As a preferred embodiment, the desktop also includes several touch-screen all-in-one machines. The desktop also includes several card readers for reading chips from the model.
[0012] As a preferred embodiment, the table body is rectangular and includes a tabletop and a base plate. The tabletop and the base plate are connected to each other via the peripheral storage cabinet. An installation chamber is fixed in the middle of the tabletop and the base plate. Several partition plates are fixed on the installation chamber, which divides the installation chamber into several installation sub-areas for installing intermediate storage cabinets. The guide rail of the guide rail slider mechanism is fixed to the partition plates and the chamber wall of the installation chamber.
[0013] As a preferred embodiment, the cabinet door drive device is a spring-loaded electromagnetic lock, which is located between the outer cabinet door and the table body.
[0014] After adopting the above technical solution, the effect of this utility model is as follows: An intelligent model storage table includes a table body with several peripheral storage cabinets arranged on its outer perimeter. Each peripheral storage cabinet has a corresponding peripheral cabinet door slidably installed on its outer perimeter. Each peripheral cabinet door is driven to open by a cabinet door drive device. At least one intermediate storage cabinet is lifted and lowered in the middle of the table body. The intermediate storage cabinet is driven to rise and fall between its highest and lowest positions by a lifting power device. When the intermediate storage cabinet is at its highest position, its storage space is higher than the tabletop; when it is at its lowest position, its storage area is lower than the tabletop. Therefore, this intelligent model storage table can be placed in a teaching laboratory. The central storage cabinet can hold various human body teaching models. When a model needs to be retrieved, the outer cabinet door can be opened by the cabinet door drive device to take out the model from the outer storage cabinet. The central storage cabinet can be raised by a lifting power device, so that its storage space is higher than the tabletop, making it easy to retrieve the model. After the model is stored, the central storage cabinet is lowered, and the tabletop can be used as a regular experimental table. Therefore, this intelligent model storage table makes full use of space. Not only can the outer part of the table be stored, but the middle part of the table can also be stored, so more models can be stored. At the same time, it is convenient to store and retrieve models during teaching preparation without the need for moving them. Different teaching contents can be quickly switched, which not only reduces the labor intensity of teaching preparation, but also improves the utilization rate of the teaching laboratory.
[0015] Furthermore, since the opening and closing motors are fixed to the table body by the motor bracket, two adjacent opening and closing motors are grouped together and share a motor bracket. The two opening and closing motors on the same motor bracket are staggered vertically. There is a height difference between the upper ends of adjacent outer cabinet doors. Therefore, two opening and closing motors are installed on the motor bracket, which facilitates both installation and maintenance. Moreover, the staggered vertical arrangement of the two opening and closing motors can drive the opening and closing movement of different outer cabinet doors.
[0016] Furthermore, since the intermediate storage cabinet includes a lifting base and an intermediate cabinet body located on top of the lifting base, and the intermediate cabinet body provides the storage area, the lifting base and the table body are connected by a vertical guide rail slider mechanism to achieve lifting and sliding. When the intermediate storage cabinet is at its highest position, the lifting base is lower than the table surface. Therefore, the intermediate storage cabinet can ensure sufficient height for the guide rail slider mechanism through the lifting base at the bottom. So even if the intermediate cabinet body is higher than the table surface, the lifting base is connected to the guide rail slider mechanism, thus providing sufficient support and preventing the intermediate cabinet body from becoming unstable and wobbling.
[0017] Furthermore, since the lifting power device is an electric push rod or a cylinder, the power end of the electric push rod or cylinder penetrates the intermediate cabinet from bottom to top and is fixedly connected to or abuts against the upper end plate of the intermediate cabinet. When the power end of the electric push rod or cylinder abuts against the upper end plate of the intermediate cabinet, the bottom of the upper end plate is provided with a conical positioning groove, and the upper end of the corresponding power end of the electric push rod or cylinder is provided with a positioning protrusion that abuts against the positioning groove. Therefore, when the power end of the electric push rod or cylinder is fixedly connected to the upper end plate of the intermediate cabinet, when the intermediate cabinet rises to its highest position, the power end of the electric push rod or cylinder will support the upper end plate of the intermediate storage cabinet, thus providing auxiliary support for the intermediate storage cabinet and ensuring its greater stability. When the power end of the electric push rod or cylinder contacts the top of the upper end plate of the intermediate cabinet, the bottom of the upper end plate is provided with a conical positioning groove, and the upper end of the power end of the electric push rod or cylinder is provided with a positioning protrusion that contacts the top of the positioning groove. Therefore, when it needs to be lifted, the power end of the electric push rod or cylinder rises, and the positioning protrusion will be inserted into the positioning groove for positioning, thereby lifting the intermediate cabinet. When it needs to be lowered, the power end of the electric push rod or cylinder lowers, and the intermediate cabinet will lower due to its own gravity. When the lifting and sliding of the intermediate cabinet has errors after long-term use, the presence of the positioning protrusion and positioning groove can self-calibrate the balance point of the intermediate cabinet during the lifting process, ensuring that the intermediate cabinet always lifts and lowers smoothly.
[0018] Furthermore, since there are multiple intermediate storage cabinets arranged in a rectangular array, the access opening side of the intermediate storage cabinet faces one side of the table body. This makes full use of the space in the middle of the table body and optimizes the access opening side, making it convenient to access the model.
[0019] Furthermore, since several touch-screen all-in-one machines are also set on the desktop, these machines can facilitate teaching, for example, by accessing detailed information about the human body model.
[0020] Furthermore, since the desktop is also equipped with several card readers for reading the chips on the model, the chip data on the model can be read through the card readers, and the read information can be displayed on the touch screen all-in-one machine, making it convenient to directly and intuitively obtain information about the model. Attached Figure Description
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Figure 1 This is a three-dimensional structural view of an embodiment of the present utility model;
[0023] Figure 2 This is a perspective view of the table body and the surrounding storage cabinet according to an embodiment of the present utility model;
[0024] Figure 3 This is an installation diagram of the intermediate storage cabinet;
[0025] Figure 4 This is a schematic diagram of the installation mechanism for the outer cabinet doors;
[0026] Figure 5 yes Figure 4 An enlarged view at point A;
[0027] Figure 6 This is another schematic diagram of the cabinet door drive mechanism;
[0028] In the attached diagram: 1. Table body; 2. Tabletop; 3. Middle storage cabinet; 31. Base; 32. Middle cabinet body; 33. Top end plate; 4. Touch screen all-in-one machine; 5. Card reader; 6. Outer cabinet door; 7. Outer storage cabinet; 8. Lower guide rail; 9. Upper guide rail; 10. Installation chamber; 11. Divider plate; 12. Guide rail slider mechanism; 121. Guide rail; 122. Slider; 13. Electric push rod; 131. Push rod; 14. Cabinet door drive device; 141. Motor bracket; 142. Opening and closing motor; 143. Drive gear; 144. Rack; 15. Base plate. Detailed Implementation
[0029] The present invention will be further described in detail below through specific embodiments.
[0030] like Figures 1 to 5As shown, an intelligent model storage table includes a table body 1. Several peripheral storage cabinets 7 are arranged on the outer perimeter of the table body 1. Each peripheral storage cabinet 7 has a corresponding peripheral cabinet door 6 that is slidably installed on the outer perimeter of the table body 1. Each peripheral cabinet door 6 is driven by a cabinet door drive device 14 to open or close the peripheral storage cabinet 7. At least one intermediate storage cabinet 3 is lifted and lowered in the middle of the table body 1. The intermediate storage cabinet 3 is driven by a lifting power device to lift and lower between the highest and lowest positions. When the intermediate storage cabinet 3 is in the highest position, the storage space is higher than the tabletop 2 of the table body 1. When the intermediate storage cabinet 3 is in the lowest position, the storage area is lower than the tabletop 2.
[0031] The intermediate storage cabinet 3 includes a lifting base 31 and an intermediate cabinet body 32 disposed on the upper part of the lifting base 31. The intermediate cabinet body 32 is provided with the storage area. In order to increase the strength of the upper end plate of the intermediate cabinet body 32, a reinforcing layer can be provided on the upper end plate, or the material of the upper end plate can be directly replaced with a stronger metal material, or the thickness of the upper end plate can be increased to make its strength meet the lifting requirements.
[0032] The lifting base 31 and the table 1 are connected by a vertical guide rail slider mechanism 12 to achieve lifting and sliding. When the intermediate storage cabinet 3 is at its highest position, the base 31 is lower than the tabletop 2. The lifting power device is an electric push rod 13 or a cylinder. The power end of the electric push rod 13 or the cylinder passes through the intermediate cabinet 32 from bottom to top and is fixedly connected to the upper end plate 33 of the intermediate cabinet 32. Figure 3 As shown, a push rod 131 can be installed on the intermediate cabinet 32. An electric push rod 131 is connected to the push rod 131 to achieve pushing. The push rod 131 passes through the intermediate cabinet 32 from bottom to top and is fixed to the upper end plate 33 of the intermediate cabinet 32. Of course, other alternative linear power devices can also be used for this lifting power device. The storage area includes multiple model storage sub-areas for convenient placement of models, and each intermediate cabinet 32 can store multiple models.
[0033] Of course, the electric push rod 13 or the power end of the cylinder can also directly contact the upper end plate of the intermediate cabinet without being connected. The bottom of the upper end plate is provided with a conical positioning groove, which can be a conical or frustum-shaped groove. The upper end of the electric push rod 13 or the power end of the cylinder is provided with a positioning protrusion that contacts the positioning groove. When the electric push rod 13 or the power end of the cylinder is lifted, the positioning protrusion will cooperate with the positioning groove. Since the positioning groove is conical, the positioning protrusion and the positioning groove will automatically adjust and match accurately, thereby realizing self-calibration during the lifting process.
[0034] In this embodiment, as Figure 2As shown, the table body 1 is rectangular and includes a tabletop 2 and a base plate 15. The tabletop 2 and the base plate 15 are connected to each other through the peripheral storage cabinet 7. An installation chamber 10 is fixed in the middle of the tabletop 2 and the base plate 15. Several partition plates 11 are fixed on the installation chamber 10, which divides the installation chamber 10 into several installation sub-areas for installing the intermediate storage cabinet 3. The guide rail 121 of the guide rail slider mechanism 12 is fixed to the partition plates 11 and the chamber wall of the installation chamber 10, while the slider 122 of the guide rail slider mechanism 12 is fixed to the base 31 of the intermediate storage cabinet 3.
[0035] The intermediate storage cabinets 3 are multiple and arranged in a rectangular array. The access opening of each intermediate storage cabinet 3 faces one side of the table body 1. Each intermediate storage cabinet 3 is installed in the installation sub-area in a lifting manner. When the intermediate storage cabinet 3 is lowered to the lowest position, the upper plate 33 of the intermediate storage cabinet 3 is flush with the tabletop 2, thereby forming a table with a flat surface for convenient regular use. In this embodiment, the intermediate storage cabinets 3 are arranged in a 4×2 rectangular array. Of course, if the front and back width of the storage table is relatively narrow, the intermediate storage cabinets 3 can also be arranged with the access openings facing each other from front to back.
[0036] Of course, models can also be categorized according to teaching needs. For example, models belonging to the same system or the same lesson can be placed in one area for easy access each time.
[0037] In this embodiment, the outer perimeter of the table body 1 is provided with an upper rail and a lower rail. The upper and lower ends of the outer cabinet doors 6 are slidably installed on the upper and lower rails. Adjacent outer cabinet doors 6 are staggered. Therefore, there are two upper guide rails 1219 and two lower guide rails 1218, which are also staggered. In this way, the opening and closing of each outer cabinet door 6 is not affected. The cabinet door driving device 14 is an opening and closing motor 142. The opening and closing motor 142 is fixed on the table body 1. The output shaft of the opening and closing motor 142 is connected to the corresponding outer cabinet door 6 through an opening and closing transmission mechanism.
[0038] The opening and closing transmission mechanism includes a rack 144 fixed to the upper or lower end of the outer cabinet door 6, and a drive gear 143 meshing with the rack 144 is provided on the output shaft of the corresponding opening and closing motor 142. Of course, the rack 144 can also be replaced by a synchronous belt, and the drive gear 143 can also be replaced by a synchronous belt. In this way, the opening and closing sliding of the outer cabinet door 6 can be driven by the synchronous pulley and the synchronous belt.
[0039] The opening and closing motor 142 is fixed on the table body 1 by the motor bracket 141. Two adjacent opening and closing motors 142 are grouped together and share a motor bracket 141. The two opening and closing motors 142 on the same motor bracket 141 are staggered vertically. There is a height difference between the upper ends of adjacent outer cabinet doors 6. This height difference setting can satisfy the meshing of the drive gear 143 on the opening and closing motors 142 of different heights with the rack 144 at the upper end of the outer cabinet door 6.
[0040] Of course, an opening indicator light can be installed near each outer cabinet door 6. When the outer cabinet door 6 is opened, the opening indicator light will light up to remind students or teachers to access the model.
[0041] like Figure 1 As shown, the desktop 2 is also equipped with several touch screen all-in-one machines 4. The desktop 2 is also equipped with several card readers 5 for reading chips on the model.
[0042] This intelligent model storage table can be used to store a large number of human figures or other models. The entire storage table is set up in the classroom and can be used as a regular table during normal times, while models can be easily and quickly retrieved when teaching is needed.
[0043] In addition, in this embodiment, each lifting power device and cabinet door drive device 14 is controlled by a controller, and the types of models stored in each peripheral storage cabinet 7 and intermediate storage cabinet 3 can be stored in the system. In this way, the storage location of the model can be queried through the touch screen all-in-one machine 4 or a separately set controller, so that the corresponding lifting power device or cabinet door drive device 14 can be started accurately through the controller, making it faster and more convenient to find and retrieve models.
[0044] Of course, the cabinet door drive device 14 can also be implemented by other drive methods. For example, an electric push rod, a rodless electric cylinder, an electric slide, or other linear drive methods can be set between the cabinet door and the table body 1 to realize the opening and closing of the cabinet door.
[0045] like Figure 6 As shown, Figure 6 Another cabinet door drive device 14 is disclosed, which is a spring-loaded electromagnetic lock 145, which is disposed between the outer cabinet door 6 and the table body.
[0046] The controller for the entire storage table controls all the spring-loaded electromagnetic locks 145. When a model needs to be retrieved from a designated outer storage cabinet, the controller only needs to control the spring-loaded electromagnetic lock 145 on the corresponding outer cabinet door 6, and the outer cabinet door 6 will spring open. It can then be manually closed.
[0047] The above-described embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Any modifications and alterations to the technical solution of the present utility model without departing from its design spirit shall fall within the protection scope defined by the claims of the present utility model.
Claims
1. An intelligent model storage table comprising a table body, characterized in that: The peripheral side of the table body is provided with a plurality of peripheral storage cabinets, the peripheral side of the table body is slidably provided with a peripheral cabinet door corresponding to each peripheral storage cabinet, each peripheral cabinet door is driven to open the peripheral storage cabinet by a cabinet door driving device, the middle part of the table body is slidably provided with at least one intermediate storage cabinet, the intermediate storage cabinet is driven to slide between the highest position and the lowest position by a lifting power device, the storage space of the intermediate storage cabinet is higher than the table top when the intermediate storage cabinet is in the highest position, and the storage area of the intermediate storage cabinet is lower than the table top when the intermediate storage cabinet is in the lowest position.
2. The intelligent model storage table of claim 1, wherein: The peripheral side of the table body is provided with an upper track and a lower track, the upper end and the lower end of the peripheral cabinet door are slidably installed on the upper track and the lower track, adjacent peripheral cabinet doors are arranged in a staggered manner, the cabinet door driving device is an opening and closing motor, the opening and closing motor is fixed on the table body, and the output shaft of the opening and closing motor is in transmission connection with the corresponding peripheral cabinet door through an opening and closing transmission mechanism.
3. The intelligent model storage table of claim 2, wherein: The opening and closing transmission mechanism comprises a rack fixed on the upper end or the lower end of the peripheral cabinet door, and a drive gear engaged with the rack is arranged on the output shaft of the corresponding opening and closing motor.
4. The intelligent model storage table of claim 3, wherein: The opening and closing motor is fixed on the table body through a motor support, adjacent two opening and closing motors are taken as a group and share one motor support, the two opening and closing motors on the same motor support are arranged in a staggered manner, and there is a height difference between the upper ends of adjacent peripheral cabinet doors.
5. The intelligent model storage table of claim 1, wherein: The intermediate storage cabinet comprises a lifting base and an intermediate cabinet body arranged on the upper part of the lifting base, the intermediate cabinet body is provided with the storage area, the lifting base and the table body are connected through a vertical guide rail and block mechanism to realize lifting and sliding, and the lifting base is lower than the table top when the intermediate storage cabinet is in the highest position.
6. The intelligent model storage table of claim 5, wherein: The lifting power device is an electric push rod or a gas cylinder, the power end of the electric push rod or the gas cylinder penetrates the intermediate cabinet body from bottom to top and is fixedly connected with or top touch matched with the upper end plate of the intermediate cabinet body, when the power end of the electric push rod or the gas cylinder is top touch matched with the upper end plate of the intermediate cabinet body, the bottom of the upper end plate is provided with a tapered positioning groove, and the upper end of the power end of the corresponding electric push rod or gas cylinder is provided with a positioning protrusion which is top touch matched with the positioning groove.
7. The intelligent model storage table of claim 6, wherein: The number of the intermediate storage cabinets is multiple and arranged in a rectangular array, and the access opening side of the intermediate storage cabinet is close to one side of the table body.
8. The intelligent model storage table of any one of claims 1 to 7, wherein: A plurality of touch all-in-one machines are further arranged on the table top, and a plurality of card readers for reading chips on the models are further arranged on the table top.
9. The intelligent model storage table of claim 5, wherein: The table body is a rectangular table body, the table body comprises a table top and a bottom plate, the table top and the bottom plate are connected with each other through the peripheral storage cabinet, the middle part of the table top and the bottom plate is fixed with a mounting chamber, a plurality of partition plates are fixed on the mounting chamber, the mounting chamber is divided into a plurality of mounting sub-areas for mounting the intermediate storage cabinet by the partition plates, and the guide rail of the guide rail and block mechanism is fixed on the partition plate and the chamber wall of the mounting chamber.
10. The intelligent model storage table of claim 1, wherein: The cabinet door driving device is a pop-open electromagnetic lock, and the pop-open electromagnetic lock is arranged between the peripheral cabinet door and the table body.
Citation Information
Patent Citations
Model storage device for product design
CN215922951U