Intelligent medicine management facility

By adopting push cylinders and telescopic separation components in drug management facilities, the problems of drug dumping and temperature control are solved, and safe storage and appropriate conditions of drugs are achieved.

CN120052689AInactive Publication Date: 2025-05-30王炳璋
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Patent Information

Application Number
CN202510249573.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing drug management facilities are prone to dumping drugs when the equipment shakes, and it is difficult to achieve drug classification and temperature control.

Method used

Intelligent drug management facilities are adopted to push the push plate by pushing the cylinder, so that the drug is subjected to slight squeeze pressure to prevent pouring; at the same time, the telescopic separation assembly and temperature control assembly are used to cut the inside of the equipment into multiple independent spaces, and the temperature is adjusted according to the type of drug.

Benefits of technology

Effectively prevent the drug from pouring when the equipment shakes, and ensure the safe and appropriate storage conditions of the drug through classification and temperature control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an intelligent medicine management facility, and relates to the technical field of medicine management, the intelligent medicine management facility comprises an outer box body assembly, a telescopic separation assembly is mounted in the outer box body assembly, a pushing assembly is mounted at the front end of the telescopic separation assembly, and the pushing assembly comprises a pushing plate, a pushing air cylinder and an air cylinder mounting box; and a pushing air cylinder is mounted at the front end of the pushing plate, an air cylinder mounting box is mounted outside the front end of the pushing air cylinder, the outer box body assembly comprises a storage box body and a placement plate, and the placement plate is mounted in the storage box body. The medicine stacking device has the advantages that the mode that the pushing air cylinder pushes the pushing plate is adopted, medicine stacked together is slightly extruded, in this way, the situation that the medicine topples over when equipment shakes is avoided, and follow-up grabbing work is facilitated; the interior of the device can be divided into a plurality of independent spaces through the pushing assembly, the telescopic partition assembly and the containing plates, and medicine classification is facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of drug management, and particularly to an intelligent drug management facility. Background Art

[0002] Most of the existing drug management facilities directly place drugs into a device similar to a vending machine and work through the vending method. However, the boxes of many drugs are cuboids, and these drugs are placed in a stacked manner, so the drugs are prone to shaking and toppling, which is not convenient for the grasping structure in the device to work. Summary of the Invention

[0003] The purpose of the present invention is to solve the deficiencies in the prior art and propose an intelligent drug management facility. The technical solution adopted by the present invention is as follows:

[0004] An intelligent drug management facility includes an outer box body assembly. An expansion and separation assembly is installed inside the outer box body assembly, and a pushing assembly is installed at the front end of the expansion and separation assembly. The pushing assembly includes a pushing plate, a pushing cylinder, and a cylinder mounting box. The pushing cylinder is installed at the front end of the pushing plate, and the cylinder mounting box is installed outside the front end of the pushing cylinder.

[0005] As an improvement, the outer box body assembly includes a storage box body and a placement plate, and the placement plate is installed inside the storage box body.

[0006] As an improvement, a temperature control assembly is installed at the rear end of the outer box body assembly, and a scanning assembly and a medicine receiving assembly are sequentially installed on the right side of the outer box body assembly from top to bottom. An air supply and discharge device is installed at the upper end of the outer box body assembly, and three air inlet and outlet ports of the air supply and discharge device are respectively connected to a lifting assembly, a translation assembly, and a clamping assembly. Electric slide rails are installed on the front and rear sides of the lifting assembly, and a rotating device is connected to the lower end of the lifting assembly.

[0007] As an improvement, the temperature control assembly includes a temperature control device and a heat conduction pipe, and the heat conduction pipe is connected to the interface of the temperature control device.

[0008] As an improvement, the expansion and separation assembly includes a first separation plate, a first spring, a second separation plate, a second spring, and a third separation plate. The first spring is installed inside the first separation plate, the second separation plate is connected to the front end of the first spring, the second spring is installed inside the second separation plate, and the third separation plate is connected to the front end of the second spring.

[0009] As an improvement, the scanning assembly includes a scanning mounting plate and a scanning probe, and the scanning probe is installed at the lower end of the scanning mounting plate.

[0010] As an improvement, the medicine receiving component includes a collection box, a lifting plate and a lifting slide rail, and a lifting plate is installed inside the collection box, and a lifting slide rail is connected to the left side of the lifting plate.

[0011] As an improvement, the lifting component includes a lifting cylinder and a first delivery air pipe, and a first delivery air pipe is connected to the air port of the lifting cylinder.

[0012] As an improvement, the translation component includes a translation cylinder and a second delivery air pipe, and a second delivery air pipe is connected to the air port of the translation cylinder.

[0013] As an improvement, the clamping component includes a suction cup clamping head, an infrared sensor and a third delivery air pipe, infrared sensors are installed on the upper and lower sides of the suction cup clamping head, and a third delivery air pipe is connected to the air port of the suction cup clamping head.

[0014] The beneficial effects of the present invention are as follows:

[0015] An intelligent medicine management facility of the present invention uses a pushing cylinder to push a pushing plate, so that the stacked medicines are slightly squeezed, thus preventing the situation of medicine dumping when the equipment shakes.

[0016] The pushing component, the telescopic partition component and the placement plate of the present invention will divide the interior of the equipment into multiple independent spaces, which is convenient for classifying medicines and also convenient for the temperature control component to control the temperature of each divided area, so that the temperature of each interval is suitable for placing different medicines. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a front view sectional structure schematic diagram of the present invention.

[0018] Figure 2 It is a side view sectional structure schematic diagram of the present invention.

[0019] Figure 3 It is a side view sectional structure schematic diagram of the pushing component of the present invention.

[0020] Figure 4 It is a sectional enlarged structure schematic diagram of the telescopic partition component of the present invention.

[0021] Figure 5 For the present invention Figure 2 The enlarged structure schematic diagram at A in.

[0022] Figure 6 It is an intelligent working flow chart of the present invention.

[0023] In the figure: 1. Outer box assembly; 101. Storage box; 102. Placing board; 2. Temperature control assembly; 201. Temperature control device; 202. Heat conduction pipe; 3. Telescopic partition assembly; 301. First partition board; 302. First spring; 303. Second partition board; 304. Second spring; 305. Third partition board; 4. Scanning assembly; 401. Scanning mounting board; 402. Scanning probe; 5. Medicine receiving assembly; 501. Collection box; 502. Lifting plate; 503. Lifting slide rail; 6. Pushing assembly; 601. Pushing plate; 602. Pushing cylinder; 603. Cylinder mounting box; 7. Air supply and release device; 8. Lifting assembly; 801. Lifting cylinder; 802. First air conveying pipe; 9. Electric slide rail; 10. Rotating device; 11. Translation assembly; 1101. Translation cylinder; 1102. Second air conveying pipe; 12. Clamping assembly; 1201. Suction cup clamping head; 1202. Infrared sensor; 1203. Third air conveying pipe. Detailed implementation manners

[0024] In order to make the content of the present invention be more clearly understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. The same components are denoted by the same reference numerals. It should be noted that the terms "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to the directions in the drawings, and the terms "inner" and "outer" respectively refer to the directions towards or away from the geometric center of a specific component.

[0025] As Figure 1 and Figure 3 shown, there is an outer box assembly 1. An telescopic partition assembly 3 is installed inside the outer box assembly 1, and a pushing assembly 6 is installed at the front end of the telescopic partition assembly 3. The pushing assembly 6 includes a pushing plate 601, a pushing cylinder 602 and a cylinder mounting box 603. The pushing cylinder 602 is installed at the front end of the pushing plate 601, and the cylinder mounting box 603 is installed outside the front end of the pushing cylinder 602;

[0026] By using the pushing cylinder 602 to push the pushing plate 601, the stacked medicines are subjected to a slight squeezing force, so that the situation of the medicines toppling when the equipment shakes will not occur.

[0027] As Figure 1 shown, the outer box assembly 1 includes a storage box 101 and a placing board 102, and the placing board 102 is installed inside the storage box 101;

[0028] The placing board 102 divides the storage box 101 into multiple temperature zones.

[0029] As Figure 1 , Figure 2 , Figure 4 andFigure 5 As shown in the figure, a temperature control component 2 is installed at the rear end of the outer box body component 1, and a scanning component 4 and a medicine receiving component 5 are sequentially installed on the right side of the outer box body component 1 from top to bottom. A gas supply and release device 7 is installed at the upper end of the outer box body component 1, and three air inlet and outlet ports of the gas supply and release device 7 are respectively connected to a lifting component 8, a translation component 11, and a clamping component 12. Electric slide rails 9 are installed on the front and rear sides of the lifting component 8, and a rotating device 10 is connected to the lower end of the lifting component 8;

[0030] The pushing component 6, the telescopic partition component 3, and the placement plate 102 divide the interior of the device into multiple independent spaces, which is convenient for classifying medicines. At the same time, it is also convenient for the temperature control component 2 to control the temperature of each divided area, so that the temperature of each interval is suitable for placing different medicines.

[0031] As Figure 2 shown, the temperature control component 2 includes a temperature control device 201 and a temperature guiding pipe 202, and the temperature guiding pipe 202 is connected to the interface of the temperature control device 201;

[0032] Adjust the temperature of the temperature control device 201 according to the type of medicine placed, so that the temperature guiding pipe 202 controls the temperature inside the storage box body 101.

[0033] As Figure 4 shown, the telescopic partition component 3 includes a first partition plate 301, a first spring 302, a second partition plate 303, a second spring 304, and a third partition plate 305. A first spring 302 is installed inside the first partition plate 301, the front end of the first spring 302 is connected to the second partition plate 303, a second spring 304 is installed inside the second partition plate 303, and the front end of the second spring 304 is connected to the third partition plate 305;

[0034] The first partition plate 301, the second partition plate 303, and the third partition plate 305 further divide the storage box body 101 into intervals of different sizes, which is convenient for storing medicines of different sizes. The first spring 302 and the second spring 304 facilitate the telescoping of the first partition plate 301, the second partition plate 303, and the third partition plate 305, so as to facilitate the operation of the pushing component 6.

[0035] As Figure 1 shown, the scanning component 4 includes a scanning mounting plate 401 and a scanning probe 402, and the scanning probe 402 is installed at the lower end of the scanning mounting plate 401;

[0036] The scanning probe 402 below the scanning mounting plate 401 is used to identify the type of medicine and the medicine list, which is convenient for the automated operation of the device.

[0037] As Figure 1As shown, the medicine receiving assembly 5 includes a collection box 501, a lifting plate 502, and a lifting slide rail 503. A lifting plate 502 is installed inside the collection box 501, and a lifting slide rail 503 is connected to the left side of the lifting plate 502;

[0038] Pull out the lifting plate 502 from the collection box 501 through the handle on the lifting plate 502, which is convenient for medical staff to replenish medicines.

[0039] As Figure 5 shown, the lifting assembly 8 includes a lifting cylinder 801 and a first delivery air pipe 802, and a first delivery air pipe 802 is connected to the air port of the lifting cylinder 801;

[0040] The first delivery air pipe 802 inputs and outputs gas to the lifting cylinder 801, thereby controlling the telescopic movement of the lifting cylinder 801.

[0041] As Figure 5 shown, the translation assembly 11 includes a translation cylinder 1101 and a second delivery air pipe 1102, and a second delivery air pipe 1102 is connected to the air port of the translation cylinder 1101;

[0042] The second delivery air pipe 1102 inputs and outputs gas to the translation cylinder 1101, thereby controlling the telescopic movement of the translation cylinder 1101.

[0043] As Figure 5 shown, the clamping assembly 12 includes a suction cup clamping head 1201, an infrared sensor 1202, and a third delivery air pipe 1203. Infrared sensors 1202 are installed on the upper and lower sides of the suction cup clamping head 1201, and a third delivery air pipe 1203 is connected to the air port of the suction cup clamping head 1201;

[0044] The third delivery air pipe 1203 inputs and outputs gas to the inside of the suction cup clamping head 1201, thereby controlling the clamping and releasing operations of the suction cup clamping head 1201. The infrared sensor 1202 can detect the position of the medicine, which is convenient for the suction cup clamping head 1201 to perform the clamping operation.

[0045] During the use process, first, use the telescopic partition assembly 3 to divide the inside of the storage box body 101. The position where the telescopic partition assembly 3 is installed on the placement plate 102 can be selected according to the size of the medicine box, so as to divide the space inside the device. Then, adjust the temperature of the temperature control device 201 according to the types of medicines placed, so that the heat conduction pipe 202 controls the temperature inside the storage box body 101. The inside of the storage box body 101 is divided into multiple temperature zones, and different medicines can be placed.

[0046] Select the working mode of the device through the buttons on the device. The device has two working modes, namely the medicine loading mode and the medicine taking mode. First, turn on the medicine loading mode. At this time, the medical staff pulls out the lifting plate 502 from the collection box 501 through the handle on the lifting plate 502. The lifting plate 502 is slidably connected to the lifting slide rail 503, which facilitates the lifting of the lifting plate 502. At the same time, there is also a large frictional force at the connection between the lifting plate 502 and the lifting slide rail 503, so that the lifting plate 502 will not fall by itself after being pulled up;

[0047] At this time, the pushing cylinder 602 will also contract into the cylinder installation box 603, thereby pulling the pushing plate 601 to the front end position of the device. Then, the medical staff places the required supplementary medicine on the lifting plate 502 and scans the medicine through the scanning probe 402 installed on the scanning installation plate 401. The scanning result is transmitted to the computer processing terminal. Then, the computer processing terminal controls the air supply and exhaust device 7, the electric slide rail 9 and the rotating device 10 according to the name of the medicine, so that the air supply and exhaust device 7 controls the lifting assembly 8, the translation assembly 11 and the clamping assembly 12, so that the suction cup clamping head 1201 moves to the medicine to clamp the medicine, and then places the medicine at the required compartment, thus completing the placement of the medicine. After a certain number of medicines are placed, the pushing cylinder 602 will be restarted to push the pushing plate 601, so that the pushing plate 601 sorts the medicines to prevent the medicines from collapsing due to uneven placement during continuous placement. Keep repeating the above steps until all the medicines are replenished;

[0048] When the patient needs to take medicine, the lifting plate 502 should be at the lower end of the collection box 501 at this time. Then the patient places the doctor's prescription under the scanning probe 402, which facilitates the scanning probe 402 to identify the required medicine and then transmits it to the computer processing terminal. First, control the pushing assembly 6 to move to avoid interference of the pushing plate 601 with medicine taking. Then the computer processing terminal controls the air supply and exhaust device 7, the lifting assembly 8, the electric slide rail 9, the rotating device 10, the translation assembly 11 and the clamping assembly 12 to take medicine. The taken medicine is placed in the collection box 501 for the patient to pick up.

[0049] The above is only a preferred embodiment of the present invention patent, and it is not intended to limit the present invention patent. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention patent shall be included in the protection scope of the present invention patent.

Claims

1. An intelligent drug management facility, characterized in that: The invention comprises an outer box assembly (1), wherein a telescopic partition assembly (3) is installed inside the outer box assembly (1), and a pushing assembly (6) is installed at the front end of the telescopic partition assembly (3), wherein the pushing assembly (6) comprises a pushing plate (601), a pushing cylinder (602) and a cylinder mounting box (603), and the pushing cylinder (602) is installed at the front end of the pushing plate (601), and the cylinder mounting box (603) is installed outside the front end of the pushing cylinder (602).

2. An intelligent drug management facility according to claim 1, characterized in that: The outer box assembly (1) comprises a storage box (101) and a placement plate (102), and the placement plate (102) is installed inside the storage box (101).

3. An intelligent drug management facility according to claim 1, characterized in that: A temperature control component (2) is installed at the rear end of the outer box component (1), and a scanning component (4) and a medicine receiving component (5) are installed on the right side of the outer box component (1) from top to bottom. An air supply and exhaust device (7) is installed at the upper end of the outer box component (1), and three air inlets and outlets of the air supply and exhaust device (7) are respectively connected to a lifting component (8), a translation component (11) and a clamping component (12). Electric slide rails (9) are installed on the front and rear sides of the lifting component (8), and a rotating device (10) is connected to the lower end of the lifting component (8).

4. An intelligent drug management facility according to claim 3, characterized in that: The temperature control component (2) comprises a temperature control device (201) and a temperature conducting tube (202), and the temperature conducting tube (202) is connected to the interface of the temperature control device (201).

5. The intelligent drug management facility according to claim 1, characterized in that: The telescopic partition assembly (3) comprises a first partition plate (301), a first spring (302), a second partition plate (303), a second spring (304) and a third partition plate (305), wherein the first spring (302) is installed inside the first partition plate (301), the front end of the first spring (302) is connected to the second partition plate (303), and the second spring (304) is installed inside the second partition plate (303), and the front end of the second spring (304) is connected to the third partition plate (305).

6. The intelligent drug management facility according to claim 3, characterized in that: The scanning assembly (4) comprises a scanning mounting plate (401) and a scanning probe (402), and the scanning probe (402) is mounted at the lower end of the scanning mounting plate (401).

7. An intelligent drug management facility according to claim 3, characterized in that: The medicine receiving assembly (5) comprises a collecting box (501), a lifting plate (502) and a lifting rail (503), and the lifting plate (502) is installed inside the collecting box (501), and the left side of the lifting plate (502) is connected to the lifting rail (503).

8. The intelligent drug management facility according to claim 3, characterized in that: The lifting assembly (8) comprises a lifting cylinder (801) and a first air delivery pipe (802), and the air port of the lifting cylinder (801) is connected to the first air delivery pipe (802).

9. The intelligent drug management facility according to claim 3, characterized in that: The translation assembly (11) comprises a translation cylinder (1101) and a second air delivery pipe (1102), and the air port of the translation cylinder (1101) is connected to the second air delivery pipe (1102).

10. The intelligent drug management facility according to claim 3, characterized in that: The clamping assembly (12) comprises a suction cup clamping head (1201), an infrared sensor (1202) and a third air delivery pipe (1203), wherein the infrared sensor (1202) is installed on the upper and lower sides of the suction cup clamping head (1201), and the third air delivery pipe (1203) is connected to the air port of the suction cup clamping head (1201).