Liquid drug storage and transport apparatus

CN224830212UActive Publication Date: 2026-10-09TIANJIN SIPAIER COLOR PRINTING CO LTD
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Patent Information

Application Number
CN202522384944.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-11
Publication Date
2026-10-09
Estimated Expiration
2035-11-11

AI Technical Summary

Technical Problem

[0005]为了克服现有的液体药物存储转运设备在对液体药物进行存放时,需要人员手动操作多个步骤,进而在频繁取放液体药物瓶的场景下,会大大提高使用繁琐性和人员的疲劳度,导致人员在疲劳状态下,手动闭合操作过程中,易使门盖和箱体的封闭不够紧密,从而会使液体药物受到外界污染影响,降低药物存储转运时的质量和安全性的问题

Benefits of technology

[0014]作为优选,所述套架底部的两侧均固定连接有限位块,所述底座内腔底部的两侧均开设有限位槽,所述限位块位于限位槽的内腔,且与限位槽的内腔滑动连接。

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Abstract

The utility model relates to liquid medicine storage and transfer technical field especially relates to a kind of liquid medicine storage and transfer equipment, including storage component, including box, the placing seat of activity connection in the inner chamber of the box, and the sealing plate of being set to the front of the box;Displacement component, including base, fixed connection in the back of the base servo motor, transmission connection in the screw rod of the servo motor output shaft;The utility model drives screw rod rotation by servo motor, and then drive sleeve frame, movable plate and the sealing plate and placing seat moving being connected with connecting block, make placing seat and sealing plate realize automatic access, reduce the step of personnel manual operation, greatly reduce the use complexity and personnel's fatigue degree, simultaneously by automatic closure can make sealing plate the tight closure of box, ensure the sealing property inside the box, effectively guarantee closed effect, prevent external pollution, improve the quality and safety when liquid medicine storage and transfer.
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Description

Technical Field

[0001] This utility model relates to the field of liquid drug storage and transportation technology, and in particular to a liquid drug storage and transportation device. Background Technology

[0002] Liquid drug storage and transport equipment is specifically designed for storing and transporting drugs in various liquid forms, such as injections, oral solutions, and biological agents. It is widely used in the medical, pharmaceutical, and biotechnology fields and is an indispensable key piece of equipment in these fields.

[0003] Traditional liquid drug storage and transport equipment typically consists of a box, a door, and a pallet. The box and door provide a closed space for the storage and transport of liquid drugs, ensuring their safety during storage and transport. The pallet provides space and limits for the placement of liquid drugs. When in use, the operator first needs to manually open the door to access the internal storage area. After the door is open, the operator needs to manually remove the pallet containing the liquid bottles and then remove or place the liquid bottles. After the liquid bottles are removed or placed, the operator needs to manually push the pallet or placement seat back into the box and ensure that it is in a stable position. Then, the operator manually closes the door and confirms that the door is tightly sealed, isolating the liquid drugs from the outside and protecting them, thereby ensuring the quality of subsequent storage and transport of liquid drugs.

[0004] However, traditional liquid drug storage and transportation equipment requires manual operation of multiple steps when storing liquid drugs. In scenarios where liquid drug bottles are frequently picked up and put down, this greatly increases the cumbersomeness of use and the fatigue of personnel. When personnel are fatigued, the manual closing operation may result in the door cover and the box not being sealed tightly enough, which can lead to external contamination of the liquid drugs and reduce the quality and safety of drug storage and transportation. Utility Model Content

[0005] To overcome the problem that existing liquid drug storage and transportation equipment requires multiple manual steps when storing liquid drugs, which greatly increases the cumbersomeness and fatigue of operation in scenarios where liquid drug bottles are frequently picked up and put down, and that manual closing of the door and box is prone to insufficient sealing when personnel are fatigued, thus allowing the liquid drugs to be affected by external contamination and reducing the quality and safety of drug storage and transportation.

[0006] The technical solution of this utility model is: a liquid drug storage and transport device, comprising,

[0007] The storage component includes a housing, a placement seat movably connected to the inner cavity of the housing, and a sealing plate disposed on the front of the housing;

[0008] The displacement assembly includes a base, a servo motor fixedly connected to the back of the base, a screw drively connected to the output shaft of the servo motor, a sleeve threadedly connected to the surface of the screw, movable plates fixedly connected to both sides of the sleeve, and connecting blocks fixedly connected to the front and rear ends of the top of the movable plates and respectively fixedly connected to the sealing plate and the placement seat.

[0009] Preferably, a placement seat provides space for the liquid medication, ensuring its stability during storage and transportation. A servo motor output shaft drives a screw to rotate. Since the sleeve is threadedly connected to the screw, the sleeve can only move along the screw's axial direction. The movement of the sleeve drives the movable plates on both sides to move. The movable plates, through connecting blocks, drive the sealing plate and placement seat to move respectively, allowing the sealing plate and placement seat to automatically move out or into the box. This automated entry and exit reduces manual operation steps, greatly reducing the tediousness of use and personnel fatigue. At the same time, automatic closing ensures a tight fit between the sealing plate and the box, and the sealing gasket extends into the inner cavity of the box and makes close contact with the inner wall, forming a good sealing environment. This effectively isolates the liquid medication from contact with the outside world, prevents external contamination, and improves the quality and safety of liquid medication storage and transportation.

[0010] Preferably, the bottom of the inner cavity of the box is provided with sliding grooves on both sides, and the connecting block at the rear end passes through the inner cavity of the sliding groove and is slidably connected to the inner cavity of the sliding groove.

[0011] Preferably, the top of the box is movably connected to a handle via a pivot, the surface of the handle is covered with an anti-slip sleeve, and the bottom of the box is fixedly connected to the base.

[0012] Preferably, the top of the placement seat is provided with a placement groove, and the bottom of the placement seat is fixedly connected with a buffer pad, and the bottom of the buffer pad is in contact with the bottom of the inner cavity of the box.

[0013] Preferably, a sealing gasket is fixedly connected to the back of the sealing plate, the sealing gasket extending into the inner cavity of the box and contacting the inner wall of the box.

[0014] Preferably, limit blocks are fixedly connected to both sides of the bottom of the sleeve, and limit grooves are opened on both sides of the bottom of the inner cavity of the base. The limit blocks are located in the inner cavity of the limit grooves and are slidably connected to the inner cavity of the limit grooves.

[0015] Preferably, the base has through slots on both sides of its front side, and the movable plate passes through the inner cavity of the through slot and is slidably connected to the inner cavity of the through slot.

[0016] The beneficial effects of this utility model are as follows: By using a servo motor to drive the screw to rotate, the sleeve, movable plate, and sealing plate and placement seat connected to the connecting block are moved, enabling the placement seat and sealing plate to move automatically. This reduces the number of manual operation steps, greatly reduces the tediousness of use and the fatigue of personnel. At the same time, the automatic closing allows the sealing plate to tightly close the box, ensuring the airtightness of the box, effectively guaranteeing the sealing effect, preventing external contamination, and improving the quality and safety of liquid drug storage and transportation. Attached Figure Description

[0017] Figure 1 The diagram shown is a schematic representation of the liquid drug storage and transport device of this utility model.

[0018] Figure 2 The diagram shown is a schematic of the storage component in the liquid drug storage and transport device of this utility model in a separated state.

[0019] Figure 3 The diagram shown is a schematic of the displacement component in the liquid drug storage and transport device of this utility model.

[0020] Figure 4 The diagram shows the connection status of the connecting block, the placement seat, and the sealing plate in the liquid drug storage and transportation device of this utility model.

[0021] Explanation of reference numerals in the attached drawings: 100, storage component; 110, housing; 111, slide rail; 112, handle; 120, placement base; 121, placement slot; 130, sealing plate; 131, sealing gasket; 200, displacement component; 210, base; 211, limiting slot; 220, servo motor; 230, screw; 240, sleeve; 241, limiting block; 250, movable plate; 260, connecting block. Detailed Implementation

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0023] Example 1

[0024] Please see Figures 1-4This utility model provides an embodiment of a liquid drug storage and transport device, comprising: a storage component 100, including a housing 110, a placement seat 120 movably connected to the inner cavity of the housing 110, and a sealing plate 130 disposed on the front of the housing 110, with a sealing gasket 131 fixedly connected to the back of the sealing plate 130, the sealing gasket 131 extending into the inner cavity of the housing 110 and contacting the inner wall of the housing 110; and a displacement component 200, including a base 210, a servo motor 220 fixedly connected to the back of the base 210, a screw 230 drivenly connected to the output shaft of the servo motor 220, a sleeve 240 threadedly connected to the surface of the screw 230, movable plates 250 fixedly connected to both sides of the sleeve 240, and connecting blocks 260 fixedly connected to the front and rear ends of the top of the movable plates 250 and respectively fixedly connected to the sealing plate 130 and the placement seat 120.

[0025] During operation, when liquid medication needs to be retrieved or placed, the servo motor 220 starts, and its output shaft drives the screw 230 to rotate. Since the sleeve 240 is threadedly connected to the screw 230, the sleeve 240 can only move along the axial direction of the screw 230. The movement of the sleeve 240 drives the movable plates 250 on both sides to move. The movable plates 250 are fixedly connected to the sealing plate 130 and the placement seat 120 respectively via connecting blocks 260, thereby moving the sealing plate 130 and the placement seat 120 out of the housing 110, facilitating retrieval and placement operations. After retrieval or placement is completed, the servo motor 220 rotates in the opposite direction, which in turn drives the screw 230 to rotate in reverse. The sleeve 240 drives the movable plate 250, the sealing plate 130 connected to the connecting block 260, and the placement seat 120 to move. The placement seat 120 then automatically enters the box 110, and the sealing plate 130 fits tightly against the box 110 to achieve closure. Through automated entry and exit, the number of manual operation steps is reduced, greatly reducing the cumbersome use and the fatigue of personnel. During the fitting process, the sealing gasket 131 extends into the inner cavity of the box 110 and makes close contact with the inner wall to form a good sealing environment, effectively isolating the liquid medicine from contact with the outside world, preventing external contamination, and improving the quality and safety of liquid medicine storage and transportation.

[0026] Example 2

[0027] Please see Figures 1-4 The bottom of the inner cavity of the box 110 is provided with sliding grooves 111 on both sides. The rear connecting block 260 passes through the inner cavity of the sliding groove 111 and is slidably connected to the inner cavity of the sliding groove 111. The top of the box 110 is movably connected to a handle 112 through a pivot. The surface of the handle 112 is covered with an anti-slip sleeve. The bottom of the box 110 is fixedly connected to the base 210. The top of the placement seat 120 is provided with a placement groove 121. The bottom of the placement seat 120 is fixedly connected to a cushioning pad, and the bottom of the cushioning pad is in contact with the bottom of the inner cavity of the box 110.

[0028] When the displacement component 200 drives the placement seat 120 and the sealing plate 130 to move, the rear connecting block 260 slides along the slide groove 111, ensuring the straightness and stability of the placement seat 120 and the sealing plate 130 during movement, preventing them from shifting or shaking. When the liquid drug storage and transfer equipment needs to be moved to different locations, the operator can easily lift the equipment by holding the handle 112. The anti-slip sleeve increases the friction between the hand and the handle 112, preventing the equipment from falling due to slippage during handling, and ensuring the safety of the equipment and liquid drugs. The placement groove 121 opened on the top of the placement seat 120 provides a dedicated placement position for the liquid bottle, which can effectively limit the liquid bottle and ensure the stable storage of the liquid drug. The buffer pad can absorb and disperse some of the vibration energy, reduce the impact force on the placement seat 120 and the liquid bottle, and help protect the liquid drug.

[0029] Example 3

[0030] Please see Figure 1 and Figure 3 Limiting blocks 241 are fixedly connected to both sides of the bottom of the sleeve 240. Limiting grooves 211 are opened on both sides of the bottom of the inner cavity of the base 210. The limiting blocks 241 are located in the inner cavity of the limiting grooves 211 and are slidably connected to the inner cavity of the limiting grooves 211. Through grooves are opened on both sides of the front of the base 210. The movable plate 250 passes through the inner cavity of the through groove and is slidably connected to the inner cavity of the through groove.

[0031] The sliding connection between the limiting block 241 and the limiting groove 211 restricts the rotational freedom of the sleeve 240. When the screw 230 rotates, the sleeve 240 does not rotate with the screw 230, but converts the rotational motion of the screw 230 into its own linear motion, thereby realizing the control of the position of the sleeve 240 by the servo motor 220. During the movement of the sleeve 240 along the axial direction of the screw 230, the limiting block 241 moves along the limiting groove 211 to ensure that the sleeve 240 can only move along the predetermined linear trajectory, avoiding the sleeve 240 from deviating or rotating during the movement. The through groove provides space and guidance for the movement of the movable plate 250, ensuring that the movable plate 250 can move smoothly. When the displacement component 200 works, the movable plate 250 moves accurately along the through groove, so that the placement seat 120 and the sealing plate 130 can enter and exit the box 110 in a predetermined manner.

[0032] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. A liquid drug storage and transport device, characterized in that, include, The storage component (100) includes a housing (110), a placement seat (120) movably connected to the inner cavity of the housing (110), and a sealing plate (130) disposed on the front of the housing (110); The displacement assembly (200) includes a base (210), a servo motor (220) fixedly connected to the back of the base (210), a screw (230) drivenly connected to the output shaft of the servo motor (220), a sleeve (240) threadedly connected to the surface of the screw (230), a movable plate (250) fixedly connected to both sides of the sleeve (240), and a connecting block (260) fixedly connected to the front and rear ends of the top of the movable plate (250) and fixedly connected to the sealing plate (130) and the placement seat (120) respectively.

2. The liquid drug storage and transport device according to claim 1, characterized in that: The bottom of the inner cavity of the box (110) is provided with sliding grooves (111) on both sides. The connecting block (260) at the rear end passes through the inner cavity of the sliding groove (111) and is slidably connected to the inner cavity of the sliding groove (111).

3. The liquid drug storage and transport device according to claim 1, characterized in that: The top of the box (110) is movably connected to a handle (112) via a pivot, and the surface of the handle (112) is covered with an anti-slip sleeve. The bottom of the box (110) is fixedly connected to the base (210).

4. A liquid drug storage and transport device according to claim 1, characterized in that: The top of the placement seat (120) is provided with a placement groove (121), and the bottom of the placement seat (120) is fixedly connected with a buffer pad, and the bottom of the buffer pad is in contact with the bottom of the inner cavity of the box (110).

5. A liquid drug storage and transport device according to claim 1, characterized in that: A sealing gasket (131) is fixedly connected to the back of the sealing plate (130). The sealing gasket (131) extends into the inner cavity of the box (110) and contacts the inner wall of the box (110).

6. A liquid drug storage and transport device according to claim 1, characterized in that: Limiting blocks (241) are fixedly connected to both sides of the bottom of the sleeve (240), and limiting grooves (211) are opened on both sides of the bottom of the inner cavity of the base (210). The limiting blocks (241) are located in the inner cavity of the limiting grooves (211) and are slidably connected to the inner cavity of the limiting grooves (211).

7. A liquid drug storage and transport device according to claim 1, characterized in that: The base (210) has through slots on both sides of its front side. The movable plate (250) passes through the inner cavity of the through slot and is slidably connected to the inner cavity of the through slot.