Constant-temperature cabinet device for medicine storage

By designing a heating module and a special pick-up mechanism in the constant temperature cabinet, the problem of temperature fluctuations when the drug is taken out is solved, the quality of the drug and the stability of the inspection are ensured, and the safe use of heat-sensitive drugs is achieved.

CN120368643AInactive Publication Date: 2025-07-25SHENZHEN XINXINRAN HEALTH CONSULTING CO LTD
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Patent Information

Application Number
CN202510700420.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When the existing constant temperature cabinet removes the drugs, the instantaneous change in the temperature of the heat-sensitive drugs affects the performance of the drug, resulting in unstable drug quality and inspection results.

Method used

Solid and liquid placement units are designed, equipped with a pickup mechanism and a transmission mechanism respectively. The temperature of the pickup box is maintained consistently through the heating module and the ventilation system to avoid fluctuations in the temperature of the drug; solid drugs pass through the adsorption tray and the air extraction device, and liquid drugs protect the temperature of the drug through the liquid extractor and the aqueous layer mechanism.

Benefits of technology

Effectively protect the temperature stability of heat-sensitive drugs during the removal process, ensure the quality of drugs and the accuracy of subsequent inspections, and reduce the impact of drug collisions and impurities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a constant-temperature cabinet device for medicine storage, and relates to the field of medicine storage, the constant-temperature cabinet device comprises a base table, a cabinet body is arranged at the top of the base table, a face door provided with a handle and a control panel is rotatably connected to the front face of the cabinet body, and a built-in box provided with a plurality of cavities is fixedly connected in the cabinet body; a heating module is arranged on the back face of the cabinet body, ventilation plates are symmetrically arranged at the two ends of the heating module, air conveying pipes are arranged on the outer surfaces of the ventilation plates, the solid containing unit is arranged on the left side of the built-in box and used for containing solid medicine, and the liquid containing unit is arranged on the right side of the built-in box and used for containing liquid medicine. Solid medicine and liquid medicine are placed in the solid containing unit and the liquid containing unit respectively, the heating module keeps the temperature in the built-in box, and when the medicine needs to be taken, the solid containing unit and the liquid containing unit are controlled through the control panel to take out the medicine.
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Description

Technical Field

[0001] The present invention relates to the technical field of drug storage, and specifically relates to a constant temperature cabinet device for drug storage. Background Art

[0002] Traditional drug storage has limitations such as temperature control fluctuations, inefficient manual monitoring, and high energy consumption. With technological breakthroughs in the Internet of Things, automated warehousing, phase change materials, etc., as well as the need for ultra-low temperature storage of biological drugs and the strengthening of policy traceability standards, modern technology is developing towards intelligent monitoring, precise temperature control, and green cold chain to ensure drug quality and supply chain compliance.

[0003] When storing drugs using a constant temperature cabinet, biological agents and ordinary tablets have different sensitivities to temperature fluctuations. For drugs with high thermal sensitivity, when taking out the drugs for inspection experiments, directly taking them out from the constant temperature cabinet will cause the temperature of the drugs to change instantly, thereby changing the performance of the drugs and affecting the subsequent use of the drugs. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the technical solution adopted by the present invention to solve its technical problems is: A constant temperature cabinet device for drug storage according to the present invention includes a base, a cabinet body is provided on the top of the base, a face door provided with a handle and a control panel is rotatably connected to the front of the cabinet body, an inner box provided with a plurality of cavities is fixedly connected inside the cabinet body, a heating module is provided on the back of the cabinet body, ventilation plates are symmetrically provided at both ends of the heating module, a transmission pipe is provided on the outer surface of the ventilation plate, and further includes: A solid placement unit for placing solid drugs on the left side of the inner box and a liquid placement unit for placing liquid drugs on the right side of the inner box; The solid placement unit includes an inner cavity one, a placement mechanism one is provided at the bottom of the inner cavity one, a sensing module with visual and temperature monitoring functions is provided on the outer surface of the inner cavity one, an intake pipe one penetrating into the inner cavity one is provided on the outer surface of the heating module, a power supply board one is fixedly connected to the top of the inner cavity one, an electromagnet one is fixedly connected to the bottom of the power supply board one, a transmission mechanism one is further provided on the outer surface of the inner cavity one, a taking mechanism one is provided on the outside of the inner cavity one, and a putting-in mechanism is provided on one side of the inner cavity one close to the taking mechanism one; The taking mechanism one includes a taking box one, a storage cavity one is provided inside the taking box one, a water cavity one is provided on the taking box one, a ventilation ring pipe one is provided inside the water cavity one, an interface one is provided at the port of the ventilation ring pipe one, a support block one is fixedly connected to the top of the taking box one, and a taking rack is fixedly connected to the outer surface of the support block one.

[0005] Preferably, the first taking box body is arranged on the outer surface of the built-in box, and the air conveying pipe can be connected to the first interface; When taking the medicine, it is necessary to pull out the first taking box body where the medicine is placed.

[0006] Preferably, the first placing mechanism includes a clamping base. A placing bottle with a clamping groove arranged on its inner wall is clamped at the top of the clamping base. A sealing cover is arranged at the top of the placing bottle. A magnet attracted to the first electromagnetic magnet is fixedly connected to the top of the sealing cover. A bottom block adapted to the clamping groove is arranged at the bottom of the sealing cover; The bottom of the clamping base is fixedly connected to the bottom of the first inner cavity.

[0007] Preferably, the first transmission mechanism includes a first servo motor. The output end of the first servo motor is fixedly connected to a first reciprocating lead screw. A first moving block is threadedly connected to the outer surface of the first reciprocating lead screw. A first support plate is fixedly connected to the outer surface of the first moving block. A first telescopic rod is fixedly connected to the bottom of the first support plate. An adsorption disc is fixedly connected to the output end of the first telescopic rod. An air extraction device is arranged at the top of the adsorption disc; The outer surface of the first servo motor is fixedly connected to the outer surface of the first inner cavity. When taking solid medicine, the adsorption disc will enter the placing bottle and adsorb the medicine through the air extraction device.

[0008] Preferably, the putting-in mechanism includes a side box. A collecting plate is fixedly connected to the top of the side box. A first magnetic block is fixedly connected to one end of the side box away from the collecting plate. A turning cover plate is rotatably connected to the bottom of the side box. A second support block is fixedly connected to the outer surface of the turning cover plate. A guiding rod is fixedly connected to the outer surface of the second support block. A shovel is slidably connected to the outer surface of the guiding rod. A second magnetic block attracted to the first magnetic block is fixedly connected to the top of the shovel. A traction rope is also arranged at the top of the shovel; The putting-in mechanism further includes a guiding frame arranged on the top of the collecting plate. The end of the traction rope away from the shovel will pass through the guiding frame and be fixedly connected to the outer surface of the first support plate. The outer surface of the side box is fixedly connected to the outer surface of the first inner cavity.

[0009] Preferably, the liquid placing unit includes a second inner cavity. A second placing mechanism same as the first placing mechanism is arranged at the bottom of the second inner cavity. A second power supply board is arranged at the top of the second inner cavity. A second electromagnetic magnet is fixedly connected to the bottom of the second power supply board. A second air conveying pipe penetrating into the second inner cavity is arranged on the outer surface of the heating module. A second transmission mechanism is arranged on the outer surface of the second inner cavity. A second taking mechanism is also arranged on the outer surface of the second inner cavity.

[0010] Preferably, the second transmission mechanism includes a second servo motor. The output end of the second servo motor is fixedly connected to a reciprocating screw rod II. A moving block II is threadedly connected to the outer surface of the reciprocating screw rod II. A second support plate is fixedly connected to the outer surface of the moving block II. A first liquid extractor is fixedly connected to the bottom of the second support plate. A second telescopic rod is fixedly connected to the bottom of the first liquid extractor. A suction head is provided at the output end of the second telescopic rod. A first hose is fixedly connected to the outer surface of the suction head. A liquid outlet end is fixedly connected to the outer surface of the first liquid extractor. The outer surface of the second servo motor is fixedly connected to the outer surface of the second inner cavity. One end of the first hose away from the suction head is fixedly connected to the bottom of the first liquid extractor.

[0011] Preferably, the second picking mechanism includes a frame plate. A second picking box body is placed inside the frame plate. A second water cavity is provided inside the second picking box body. A second ventilation ring pipe is provided inside the second water cavity. An interface II is provided at the port of the second ventilation ring pipe. A liquid inlet end is fixedly connected to the top of the frame plate. A water layer mechanism is provided on the outer surface of the liquid inlet end. The second picking mechanism further includes a water tank. A second liquid extractor is fixedly connected to the outer surface of the water tank.

[0012] Preferably, the water layer mechanism includes a water storage plate. A third support plate is fixedly connected to the outer surface of the water storage plate. A third servo motor is fixedly connected to the top of the third support plate. A rotating water pipe is fixedly connected to the output end of the third servo motor. An outlet water plate is fixedly connected to the end of the rotating water pipe away from the third servo motor. A water outlet surface is provided on the outlet water plate. A second hose is fixedly connected to the outer surface of the rotating water pipe. A water pipe is provided at the bottom of the water storage plate.

[0013] Preferably, the outer surface of the frame plate is fixedly connected to the inner wall of the built-in box. The bottom of the water storage plate is fixedly connected to the outer surface of the liquid inlet end. One end of the second hose away from the rotating water pipe is fixedly connected to the outer surface of the second liquid extractor. One end of the water pipe is fixedly connected to the outer surface of the water tank.

[0014] The beneficial effects of the present invention are as follows: 1. By setting the first picking mechanism, the heating module will transfer hot air to the first ventilation ring pipe through the ventilation plate and the air delivery pipe, and heat the moisture in the first water cavity, so that the overall first picking box body is at the same temperature as the first inner cavity, avoiding changing the quality and efficacy of the drug during the process of taking out the drug with heat-sensitive characteristics and affecting the subsequent inspection of the drug.

[0015] 2. In the present invention, by providing a placing mechanism, during the process of the first support plate moving away from the side box, the turning cover plate will be pulled by the traction rope to rotate, so that the distance between the first magnet and the second magnet becomes larger, and the magnetic force between them will also decrease. Then, the shovel will slide downward along the guide rod and shovel the medicine particles on the turning cover plate into the collecting plate, facilitating subsequent recycling.

[0016] 3. In the present invention, by providing a second taking mechanism, when taking liquid medicine, the heat-sensitive liquid medicine will also be pumped into the second taking box by the second transmission mechanism. It is necessary to connect the air delivery pipe to the second interface, and the heating module will transfer hot air to the second ventilation ring pipe through the ventilation plate and the air delivery pipe, and heat the water in the second water chamber, so that the overall second taking box is at the same temperature as the second inner cavity.

[0017] 4. In the present invention, by providing a water layer mechanism, the second liquid extractor will pump the pure water in the water tank into the rotating water pipe and flow out through the water outlet surface of the water outlet plate. The third servo motor will drive the rotating water pipe and the water outlet plate to be in a horizontal state. At this time, a water layer will be formed on the liquid inlet end on the water outlet plate, which will prevent impurities in the air from entering the second taking box. At the same time, when the second taking box needs to introduce medicine, the second liquid extractor will continuously spray water from the water outlet surface to wash away the impurities and drug residues on the top of the liquid inlet end. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is the front view of the structure of the present invention.

[0019] Figure 2 is the rear view of the structure of the present invention.

[0020] Figure 3 is the cross-sectional view of the structure of the present invention.

[0021] Figure 4 is the schematic diagram of the structure of the solid placement unit of the present invention.

[0022] Figure 5 is the schematic diagram of the structure of the first placement mechanism of the present invention.

[0023] Figure 6 is the schematic diagram of the structure of the first transmission mechanism of the present invention.

[0024] Figure 7 is the schematic diagram of the structure of the first taking mechanism of the present invention.

[0025] Figure 8 is the cross-sectional view of the structure of the first taking mechanism of the present invention.

[0026] Figure 9 is the schematic diagram of the structure of the placing mechanism of the present invention.

[0027] Figure 10It is a partial structural schematic diagram of the placement mechanism of the present invention.

[0028] Figure 11 It is a structural schematic diagram of the liquid placement unit of the present invention.

[0029] Figure 12 It is a structural schematic diagram of the second transmission mechanism of the present invention.

[0030] Figure 13 It is a structural schematic diagram of the second picking mechanism of the present invention.

[0031] Figure 14 It is a structural schematic diagram of the water layer mechanism of the present invention.

[0032] In the figure: 1, base; 2, cabinet body; 3, front door; 4, control panel; 5, built-in box; 6, solid placement unit; 7, liquid placement unit; 8, handle; 9, heating module; 10, ventilation plate; 11, air transmission pipe; 61, inner cavity one; 62, first placement mechanism; 63, sensing module; 64, first air inlet pipe; 65, first power supply board; 66, first electromagnetic magnet; 67, first transmission mechanism; 68, first picking mechanism; 69, placement mechanism; 621, clamping base; 622, placement bottle; 623, clamping groove; 624, sealing cover; 625, bottom block; 626, magnet; 671, first servo motor; 672, first reciprocating lead screw; 673, first moving block; 674, first support plate; 675, first telescopic rod; 676, adsorption disc; 677, air extraction device; 681, first picking box; 682, first storage cavity; 683, first support block; 684, picking rack; 685, first water cavity; 686, first ventilation ring pipe; 687, first interface; 691, side box; 692, collection plate; 693, first magnetic block; 694, guiding frame; 695, flip cover plate; 696, second support block; 697, guiding rod; 698, shovel; 699, second magnetic block; 6910, traction rope; 71, inner cavity two; 72, second placement mechanism; 73, second power supply board; 74, second electromagnetic magnet; 75, second air pipe; 76, second transmission mechanism; 77, second picking mechanism; 761, second servo motor; 762, second reciprocating lead screw; 763, second moving block; 764, second support plate; 765, first liquid pump; 766, second telescopic rod; 767, suction head; 768, first hose; 769, liquid outlet end; 771, frame plate; 772, second picking box; 773, second water cavity; 774, second ventilation ring pipe; 775, second interface; 776, water tank; 777, second liquid pump; 778, liquid inlet end; 779, water layer mechanism; 7791, water storage plate; 7792, third support plate; 7793, third servo motor; 7794, rotating water pipe; 7795, second hose; 7796, water outlet plate; 7797, water outlet surface; 7798, water pipe. Detailed implementation manners

[0033] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments. The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed forms. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles of the present invention and its practical applications, and to enable those of ordinary skill in the art to understand the present invention and design various embodiments with various modifications suitable for specific purposes.

[0034] Example 1, using Figures 1-14 A constant temperature cabinet device for drug storage according to an embodiment of the present invention will be described as follows.

[0035] As Figures 1-3 shown, a constant temperature cabinet device for drug storage of the present invention includes a base 1. A cabinet 2 is provided on the top of the base 1. A face door 3 provided with a handle 8 and a control panel 4 is rotatably connected to the front of the cabinet 2. An inner box 5 provided with a plurality of cavities is fixedly connected inside the cabinet 2. A heating module 9 is provided on the back of the cabinet 2. Ventilation plates 10 are symmetrically provided at both ends of the heating module 9. A gas transmission pipe 11 is provided on the outer surface of the ventilation plate 10. It further includes: A solid placement unit 6 for placing solid drugs on the left side of the inner box 5 and a liquid placement unit 7 for placing liquid drugs on the right side of the inner box 5; When drugs need to be placed, the face door 3 needs to be opened, and the solid drugs and liquid drugs are respectively placed into the solid placement unit 6 and the liquid placement unit 7. The heating module 9 maintains the temperature inside the inner box 5. When drugs need to be taken, the solid placement unit 6 and the liquid placement unit 7 are controlled through the control panel 4 to take out the drugs.

[0036] As Figure 4 shown, the solid placement unit 6 includes an inner cavity one 61. A placement mechanism one 62 is provided at the bottom of the inner cavity one 61. A sensing module 63 with visual and temperature monitoring functions is provided on the outer surface of the inner cavity one 61. An intake pipe one 64 penetrating into the inner cavity one 61 is provided on the outer surface of the heating module 9. A power supply board one 65 is fixedly connected to the top of the inner cavity one 61. An electromagnet one 66 is fixedly connected to the bottom of the power supply board one 65. A transmission mechanism one 67 is also provided on the outer surface of the inner cavity one 61. A taking mechanism one 68 is provided outside the inner cavity one 61. A placing mechanism 69 is provided on one side of the inner cavity one 61 close to the taking mechanism one 68; When placing drugs, the drugs need to be placed into the placement mechanism one 62.

[0037] As Figures 7-8As shown, the first picking mechanism 68 includes a first picking box body 681. A first storage cavity 682 is arranged inside the first picking box body 681. A first water cavity 685 is arranged on the first picking box body 681. A first ventilation ring pipe 686 is arranged inside the first water cavity 685. An interface 687 is arranged at the port of the first ventilation ring pipe 686. A first support block 683 is fixedly connected to the top of the first picking box body 681. A picking rack 684 is fixedly connected to the outer surface of the first support block 683.

[0038] The first picking box body 681 is arranged on the outer surface of the built-in box 5, and the air transmission pipe 11 can be connected to the interface 687. When picking up medicine, it is necessary to pull out the first picking box body 681 on which the medicine is placed.

[0039] After the first picking box body 681 is placed on the built-in box 5, it is necessary to connect the air transmission pipe 11 to the interface 687. When the medicine is taken out from the first placing mechanism 62 through the first transmission mechanism 67 and finally slides into the first picking box body 681 through the placing mechanism 69, the heating module 9 will transfer hot air to the first ventilation ring pipe 686 through the ventilation plate 10 and the air transmission pipe 11, and heat the moisture in the first water cavity 685, so that the overall first picking box body 681 is at the same temperature as the inner cavity 61, avoiding changing the quality and efficacy of the medicine during the process of taking out the heat-sensitive medicine and affecting the subsequent inspection of the medicine.

[0040] As Figure 5 shown, the first placing mechanism 62 includes a clamping base 621. A placing bottle 622 with a clamping groove 623 arranged on its inner wall is clamped on the top of the clamping base 621. A sealing cover 624 is arranged on the top of the placing bottle 622. A magnet 626 attracted to the first electromagnet 66 is fixedly connected to the top of the sealing cover 624. A bottom block 625 adapted to the clamping groove 623 is arranged at the bottom of the sealing cover 624. When putting in or picking up medicine, the power supply board 65 will energize the electromagnet 626, so that the first electromagnet 66 generates a magnetic force and adsorbs the sealing cover 624.

[0041] The bottom of the clamping base 621 is fixedly connected to the bottom of the inner cavity 61.

[0042] As Figure 6 shown, the first transmission mechanism 67 includes a first servo motor 671. A reciprocating lead screw 672 is fixedly connected to the output end of the first servo motor 671. A moving block 673 is threadedly connected to the outer surface of the reciprocating lead screw 672. A first support plate 674 is fixedly connected to the outer surface of the moving block 673. A first telescopic rod 675 is fixedly connected to the bottom of the first support plate 674. An adsorption disc 676 is fixedly connected to the output end of the first telescopic rod 675. An air extraction device 677 is arranged on the top of the adsorption disc 676. After the electromagnetic solenoid - 66 generates a magnetic force to adsorb the sealing cover 624, the servo motor - 671 drives the reciprocating lead screw - 672 to rotate, causing the moving block - 673 and the support plate - 674 to move above the placement bottle 622. Then, the telescopic rod - 675 extends downward, moving the suction disc 676 into the placement bottle 622. The air extraction device 677 drives and adsorbs the medicine, and then returns to its original position through the transmission mechanism - 1, driving the adsorbed medicine to move above the placement mechanism 69 and releasing the medicine.

[0043] The outer surface of the servo motor - 671 is fixedly connected to the outer surface of the inner cavity - 61. When it is necessary to pick up solid medicine, the suction disc 676 enters the placement bottle 622 and adsorbs the medicine through the air extraction device 677.

[0044] As Figures 9-10 shown, the placement mechanism 69 includes a side box 691. A collection plate 692 is fixedly connected to the top of the side box 691. A magnetic block - 693 is fixedly connected to one end of the side box 691 away from the collection plate 692. A flip - cover plate 695 is rotatably connected to the bottom of the side box 691. A support block - 696 is fixedly connected to the outer surface of the flip - cover plate 695. A guide rod 697 is fixedly connected to the outer surface of the support block - 696. A scraper 698 is slidably connected to the outer surface of the guide rod 697. A magnetic block - 699 that attracts the magnetic block - 693 is fixedly connected to the top of the scraper 698. A traction rope 6910 is also arranged at the top of the scraper 698; The placement mechanism 69 further includes a guiding frame 694 arranged on the top of the collection plate 692. One end of the traction rope 6910 away from the scraper 698 passes through the guiding frame 694 and is fixedly connected to the outer surface of the support plate - 674. The outer surface of the side box 691 is fixedly connected to the outer surface of the inner cavity - 61.

[0045] After the medicine enters the side box 691, it slides into the picking box - 681. However, due to the collision between the falling medicine and the side box 691, small particles will splash. During the process of the support plate - 674 moving away from the side box 691, the flip - cover plate 695 is pulled to rotate through the traction rope 6910, so that the distance between the magnetic block - 693 and the magnetic block - 699 becomes larger, and the magnetic force between them also decreases. The scraper 698 slides downward along the guide rod 697 and shovels the medicine particles on the flip - cover plate 695 into the collection plate 692, facilitating subsequent recycling.

[0046] The specific working process is as follows: During operation, after the electromagnet 66 generates a magnetic force to adsorb the sealing cover 624, the servo motor 671 drives the reciprocating lead screw 672 to rotate, causing the moving block 673 and the support plate 674 to move above the placement bottle 622. Then, the telescopic rod 675 extends downward, moving the suction disc 676 into the placement bottle 622. The air extraction device 677 drives and adsorbs the medicine, and then returns via the transmission mechanism 1, driving the adsorbed medicine to move above the placement mechanism 69 and releasing the medicine. Subsequently, the medicine slides into the picking box 681. The heating module 9 transfers hot air into the ventilation ring pipe 686 through the ventilation plate 10 and the air transmission pipe 11, heating the moisture in the water chamber 685 to keep the entire picking box 681 at the same temperature as the inner cavity 61.

[0047] Embodiment 2, using Figures 1-14 A constant temperature cabinet device for storing medicines according to an embodiment of the present invention will be described as follows.

[0048] As Figure 11 As shown, in a constant temperature cabinet device for storing medicines of the present invention, on the basis of Embodiment 1, the liquid placement unit 7 includes an inner cavity 71. At the bottom of the inner cavity 71, there is a placement mechanism 72 identical to the placement mechanism 62. At the top of the inner cavity 71, there is a power supply board 73. At the bottom of the power supply board 73, an electromagnet 74 is fixedly connected. On the outer surface of the heating module 9, there is an air transmission pipe 75 penetrating into the inner cavity 71. On the outer surface of the inner cavity 71, there is a transmission mechanism 76. On the outer surface of the inner cavity 71, there is also a picking mechanism 77.

[0049] Liquid medicine also needs to be placed in the placement mechanism 72.

[0050] As Figure 12 As shown, the transmission mechanism 76 includes a servo motor 761. The output end of the servo motor 761 is fixedly connected to a reciprocating lead screw 762. The outer surface of the reciprocating lead screw 762 is threadedly connected to a moving block 763. The outer surface of the moving block 763 is fixedly connected to a support plate 764. At the bottom of the support plate 764, a liquid extractor 765 is fixedly connected. At the bottom of the liquid extractor 765, a telescopic rod 766 is fixedly connected. At the output end of the telescopic rod 766, there is a suction head 767. The outer surface of the suction head 767 is fixedly connected to a hose 768. The outer surface of the liquid extractor 765 is fixedly connected to a liquid outlet 769; When it is necessary to take out the liquid medicine, the placement mechanism 72 is opened. The servo motor 761 drives the reciprocating lead screw 762 to rotate and controls the telescopic rod 766 and the liquid extractor 765 to extract the liquid medicine in the placement mechanism 72. When the liquid outlet 769 moves above the picking mechanism 77, the liquid medicine is transferred into the picking box 772.

[0051] The outer surface of the second servo motor 761 is fixedly connected to the outer surface of the second inner cavity 71, and one end of the first hose 768 away from the suction head 767 is fixedly connected to the bottom of the first liquid pumping machine 765.

[0052] As Figure 13 shown, the second taking mechanism 77 includes a frame plate 771. Inside the frame plate 771, there is a second taking box body 772. Inside the second taking box body 772, there is a second water cavity 773. Inside the second water cavity 773, there is a second ventilation ring pipe 774. At the port of the second ventilation ring pipe 774, there is an interface 775. At the top of the frame plate 771, there is a liquid inlet end 778 fixedly connected, and on the outer surface of the liquid inlet end 778, there is a water layer mechanism 779; When taking liquid medicine, heat-sensitive liquid medicine will also be pumped into the second taking box body 772 by the second transmission mechanism 76. It is necessary to connect the gas transmission pipe 11 to the interface 775. The heating module 9 will transfer hot air into the second ventilation ring pipe 774 through the ventilation plate 10 and the gas transmission pipe 11, and heat the water in the second water cavity 773, so that the overall second taking box body 772 is at the same temperature as the second inner cavity 71.

[0053] The second taking mechanism 77 further includes a water tank 776, and the outer surface of the water tank 776 is fixedly connected with a second liquid pumping machine 777.

[0054] As Figure 14 shown, the water layer mechanism 779 includes a water storage plate 7791. On the outer surface of the water storage plate 7791, there is a third support plate 7792 fixedly connected. At the top of the third support plate 7792, there is a third servo motor 7793 fixedly connected. The output end of the third servo motor 7793 is fixedly connected with a rotating water pipe 7794. One end of the rotating water pipe 7794 away from the third servo motor 7793 is fixedly connected with a water outlet plate 7796. On the water outlet plate 7796, there is a water outlet surface 7797. On the outer surface of the rotating water pipe 7794, there is a second hose 7795 fixedly connected. At the bottom of the water storage plate 7791, there is a water pipe 7798.

[0055] When it is not necessary to pump liquid medicine into the second taking mechanism 77, the second liquid pumping machine 777 will pump the pure water in the water tank 776 into the rotating water pipe 7794 and flow out through the water outlet surface 7797 of the water outlet plate 7796. The third servo motor 7793 will drive the rotating water pipe 7794 and the water outlet plate 7796 to be in a horizontal state. At this time, a water layer will be formed on the liquid inlet end 778 on the water outlet plate 7796. This water layer will prevent impurities in the air from entering the second taking box body 772. At the same time, when the second taking box body 772 needs to let in medicine, the second liquid pumping machine 777 will continuously spray water from the water outlet surface 7797 to wash away the impurities and drug residues on the top of the liquid inlet end 778. Then the third servo motor 7793 will drive the rotating water pipe 7794 and the water outlet plate 7796 to be in a vertical state, facilitating the subsequent entry of medicine.

[0056] The outer surface of the frame plate 771 is fixedly connected to the inner wall of the built-in box 5. The bottom of the water storage plate 7791 is fixedly connected to the outer surface of the liquid inlet end 778. One end of the second hose 7795 far from the rotating water pipe 7794 is fixedly connected to the outer surface of the second liquid pump 777. One end of the water pipe 7798 is fixedly connected to the outer surface of the water tank 776.

[0057] The specific working process is as follows: During operation, the second servo motor 761 drives the second reciprocating lead screw 762 to rotate and controls the second telescopic rod 766 and the first liquid pump 765 to extract the liquid medicine in the placing mechanism 72. When the liquid medicine is transferred into the second taking box 772 when the liquid outlet end 769 moves above the second taking mechanism 77. The heating module 9 transfers hot air into the second ventilation ring pipe 774 through the ventilation plate 10 and the air delivery pipe 11, and heats the water in the second water cavity 773, so that the overall second taking box 772 is at the same temperature as the second inner cavity 71.

[0058] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention shall be implemented by conventional means in the art without special instructions and limitations.

Claims

1. A constant temperature cabinet device for drug storage, comprising a base platform, a cabinet body is arranged on the top of the base platform, a front door provided with a handle and a control panel is rotatably connected to the front of the cabinet body, an inner box provided with a plurality of cavities is fixedly connected inside the cabinet body, a heating module is arranged on the back of the cabinet body, ventilation plates are symmetrically arranged at both ends of the heating module, and a transmission pipe is arranged on the outer surface of the ventilation plate, characterized in that, It further includes: A solid placement unit provided on the left side of the built-in box for placing solid medicines and a liquid placement unit provided on the right side of the built-in box for placing liquid medicines; The solid placement unit includes a first inner cavity. A placement mechanism one is provided at the bottom of the first inner cavity. A sensing module with visual and temperature monitoring functions is provided on the outer surface of the first inner cavity. An intake pipe one penetrating into the first inner cavity is provided on the outer surface of the heating module. A power supply board one is fixedly connected to the top of the first inner cavity. An electromagnet one is fixedly connected to the bottom of the power supply board one. A transmission mechanism one is further provided on the outer surface of the first inner cavity. A taking mechanism one is provided outside the first inner cavity. A placing mechanism is provided on one side of the first inner cavity close to the taking mechanism one; The taking mechanism one includes a taking box one. A first storage cavity is provided inside the taking box one. A first water cavity is provided on the taking box one. A first ventilation ring pipe is provided inside the first water cavity. An interface one is provided at the port of the first ventilation ring pipe. A support block one is fixedly connected to the top of the taking box one. A taking rack is fixedly connected to the outer surface of the support block one.

2. The thermostatic cabinet device for drug storage according to claim 1, wherein: The taking box one is provided on the outer surface of the built-in box, and the transmission pipe can be connected to the interface one; When taking the medicine, it is necessary to pull out the taking box one containing the medicine.

3. The constant temperature cabinet device for drug storage according to claim 1, characterized in that: The placement mechanism one includes a clamping base. A placement bottle with a clamping groove provided on its inner wall is clamped on the top of the clamping base. A sealing cover is provided on the top of the placement bottle. A magnet attracted to the electromagnet one is fixedly connected to the top of the sealing cover. A bottom block adapted to the clamping groove is provided at the bottom of the sealing cover; The bottom of the clamping base is fixedly connected to the bottom of the first inner cavity.

4. The thermostatic cabinet device for drug storage according to claim 3, characterized in that: The transmission mechanism one includes a servo motor one. A reciprocating lead screw one is fixedly connected to the output end of the servo motor one. A moving block one is threadedly connected to the outer surface of the reciprocating lead screw one. A support plate one is fixedly connected to the outer surface of the moving block one. A telescopic rod one is fixedly connected to the bottom of the support plate one. An adsorption disc is fixedly connected to the output end of the telescopic rod one. An air extraction device is provided on the top of the adsorption disc; The outer surface of the servo motor one is fixedly connected to the outer surface of the first inner cavity. When it is necessary to take the solid medicine, the adsorption disc will enter the placement bottle and adsorb the medicine through the air extraction device.

5. The constant temperature cabinet device for drug storage according to claim 4, characterized in that: The placing mechanism includes a side box. A collecting plate is fixedly connected to the top of the side box. A first magnet is fixedly connected to one end of the side box away from the collecting plate. A turning cover plate is rotatably connected to the bottom of the side box. A support block two is fixedly connected to the outer surface of the turning cover plate. A guiding rod is fixedly connected to the outer surface of the support block two. A shovel is slidably connected to the outer surface of the guiding rod. A second magnet attracted to the first magnet is fixedly connected to the top of the shovel. A traction rope is further provided on the top of the shovel; The placing mechanism further includes a guiding frame provided on the top of the collecting plate. One end of the traction rope away from the shovel will pass through the guiding frame and be fixedly connected to the outer surface of the support plate one. The outer surface of the side box is fixedly connected to the outer surface of the first inner cavity.

6. The thermostatic cabinet device for drug storage according to claim 1, characterized in that: The liquid placement unit includes a second inner cavity. A second placement mechanism identical to the first placement mechanism is provided at the bottom of the second inner cavity. A second power supply board is provided at the top of the second inner cavity. A second electromagnetic solenoid is fixedly connected to the bottom of the second power supply board. A second ventilation pipe penetrating into the second inner cavity is provided on the outer surface of the heating module. A second transmission mechanism is provided on the outer surface of the second inner cavity. A second taking mechanism is also provided on the outer surface of the second inner cavity.

7. The thermostatic cabinet device for drug storage according to claim 6, wherein: The second transmission mechanism includes a second servo motor. The output end of the second servo motor is fixedly connected to a second reciprocating lead screw. A second moving block is threadedly connected to the outer surface of the second reciprocating lead screw. A second support plate is fixedly connected to the outer surface of the second moving block. A first liquid extractor is fixedly connected to the bottom of the second support plate. A second telescopic rod is fixedly connected to the bottom of the first liquid extractor. A suction head is provided at the output end of the second telescopic rod. A first flexible pipe is fixedly connected to the outer surface of the suction head. A liquid outlet end is fixedly connected to the outer surface of the first liquid extractor. The outer surface of the second servo motor is fixedly connected to the outer surface of the second inner cavity. One end of the first flexible pipe away from the suction head is fixedly connected to the bottom of the first liquid extractor.

8. The thermostatic cabinet device for drug storage according to claim 6, wherein: The second taking mechanism includes a frame plate. A second taking box is placed inside the frame plate. A second water cavity is provided inside the second taking box. A second ventilation ring pipe is provided inside the second water cavity. An interface two is provided at the port of the second ventilation ring pipe. A liquid inlet end is fixedly connected to the top of the frame plate. A water layer mechanism is provided on the outer surface of the liquid inlet end. The second taking mechanism further includes a water tank. A second liquid extractor is fixedly connected to the outer surface of the water tank.

9. The thermostatic cabinet device for drug storage according to claim 8, wherein: The water layer mechanism includes a water storage plate. A third support plate is fixedly connected to the outer surface of the water storage plate. A third servo motor is fixedly connected to the top of the third support plate. The output end of the third servo motor is fixedly connected to a rotating water pipe. One end of the rotating water pipe away from the third servo motor is fixedly connected to a water outlet plate. A water outlet surface is provided on the water outlet plate. A second flexible pipe is fixedly connected to the outer surface of the rotating water pipe. A water pipe is provided at the bottom of the water storage plate.

10. The thermostatic cabinet device for drug storage according to claim 9, characterized in that: The outer surface of the frame plate is fixedly connected to the inner wall of the built-in box. The bottom of the water storage plate is fixedly connected to the outer surface of the liquid inlet end. One end of the second flexible pipe away from the rotating water pipe is fixedly connected to the outer surface of the second liquid extractor. One end of the water pipe is fixedly connected to the outer surface of the water tank.