Mechanical oscillation device for medical preparation
Patent Information
- Application Number
- CN202522223612.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-21
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-10-21
AI Technical Summary
[0005]本实用新型的目的在于提供医疗药剂配置用机械振荡装置,具备保护试剂管避免脱落的优点,解决了试管是水平放置的,在进行振荡的过程中试管容易出现脱离固定夹的风险,进一步试管在水平安装的过程中,其脱落的概率也较大,造成试管损坏的问题
本实用新型通过振荡部件的使用,具有保护试剂管避免脱落的优点,需要振荡的药剂置入试剂管内并旋上密封套,试剂管的底部贯穿放置通口并放入放置槽内部,利用放置通口和放置槽对试剂管进行放置并束缚,在后续振荡过程中,试剂管不易脱离旋转盘和束缚板,避免试剂管的掉落损坏。
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Figure CN224736154U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical drug preparation technology, specifically to a mechanical oscillation device for medical drug preparation. Background Technology
[0002] Medical pharmaceuticals are chemical or biological products used to prevent, diagnose, treat diseases, or regulate physiological functions. They must be used under the guidance of a medical professional, and the core principles are "safety, effectiveness, and rationality." Mechanical vibration devices are required in the preparation of medical pharmaceuticals.
[0003] A search revealed patent number CN209865908U, entitled "A Mechanical Vibration Device for Medical Pharmaceutical Preparation," comprising a housing. The bottom inner wall of the housing has two first sliding grooves horizontally arranged, each groove slidably connected to a vertically arranged first connecting rod via a first slider. A rack is horizontally fixed at the upper end between the two first connecting rods. The bottom side wall of the housing has a first mounting block located between the two first sliding grooves. The side wall of the first mounting block is rotatably connected to a first swing rod via a first rotating shaft. The lower side wall of the rack has a second mounting block, the side wall of which is rotatably connected to a second connecting rod via a second rotating shaft. The end of the second connecting rod furthest from the second mounting block is rotatably connected to the first swing rod via a third rotating shaft. This invention uses a swing mechanism to shake test tubes, thereby achieving the purpose of agitating the pharmaceutical preparation within the test tube, saving manpower and resources and improving the efficiency of pharmaceutical agitation. Research and analysis revealed that although it can agitate and mix pharmaceutical preparations, it still has the following drawbacks to some extent.
[0004] For example, if the test tubes are placed horizontally, they are prone to detaching from the clamps during vibration. Furthermore, the probability of the test tubes falling off during horizontal installation is also relatively high, causing damage. To solve these technical problems, we have designed a mechanical vibration device for medical reagent preparation. Utility Model Content
[0005] The purpose of this invention is to provide a mechanical oscillation device for preparing medical reagents, which has the advantage of protecting reagent tubes from falling off. It solves the problem that when test tubes are placed horizontally, they are prone to falling off the fixing clamp during oscillation, and the probability of test tubes falling off during horizontal installation is also relatively high, causing damage to the test tubes.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a mechanical oscillation device for medical drug preparation, comprising a worktable, a control display panel embedded in the front side of the worktable, a rotating groove at the center of the top of the worktable, a receiving groove at the bottom of the inner wall of the rotating groove, a drive motor connected to the bottom of the inner wall of the receiving groove, a rotating disk connected to the output end of the drive motor, several insertion holes on the outer side of the top of the rotating disk, an oscillation component on the top of the rotating disk, the oscillation component comprising a support disk, a rotating groove at the center of the top of the support disk, a rotating disk movably connected to the inner wall of the rotating groove via a bearing, a gear ring fixedly fitted on the top of the outer side of the rotating disk, and several placement slots on the top of the rotating disk.
[0007] Preferably, rubber support blocks are connected to the four corners of the bottom of the workbench, the outer diameter of the rotating disk is smaller than the inner diameter of the rotating groove, and the center point of the rotating disk is not in the same position as the center point of the output end of the drive motor.
[0008] Preferably, the support plate is located on top of the rotating plate, and a plurality of insert rods are connected to the bottom of the support plate, with the bottom of the insert rods extending into the interior of the insertion hole.
[0009] Preferably, the top of the rotating disk is connected to support plates on both the left and right sides, and the top of the two support plates is connected to a binding plate. The top of the binding plate is provided with several placement openings that cooperate with the placement groove.
[0010] Preferably, a reagent tube is placed at the bottom of the inner wall of the placement groove, and the top of the reagent tube passes through the placement opening and is threaded with a sealing sleeve.
[0011] Preferably, positioning rods are connected to the front and rear sides of the top outer side of the support plate, and a slip ring is connected to the top of the two positioning rods. An electric slider is sleeved on the left side of the outer side of the slip ring, and a toothed block that meshes with the toothed ring is connected to the inner side of the electric slider.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: This invention, through the use of an oscillating component, has the advantage of protecting the reagent tube from falling off. The reagent to be oscillated is placed inside the reagent tube and a sealing sleeve is screwed on. The bottom of the reagent tube passes through the placement port and is placed inside the placement groove. The placement port and placement groove are used to place and restrain the reagent tube. During subsequent oscillation, the reagent tube is not easy to fall off the rotating disk and restraining plate, thus avoiding the reagent tube from falling off and being damaged. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is an exploded view of the oscillation component structure of this utility model; Figure 3 This utility model Figure 2 A bottom view; Figure 4 This utility model Figure 2 Top view; Figure 5 This is a schematic diagram of the workbench structure of this utility model; Figure 6 This utility model Figure 5 The left view.
[0014] In the diagram: 1. Workbench; 2. Control display panel; 3. Vibration component; 31. Support plate; 32. Rotary plate; 33. Gear ring; 34. Rotating groove; 35. Placement groove; 36. Placement port; 37. Reagent tube; 38. Restraint plate; 39. Electric slider; 310. Slip ring; 311. Insert rod; 312. Sealing sleeve; 313. Positioning rod; 314. Gear block; 315. Support plate; 4. Rotating groove; 5. Drive motor; 6. Insertion hole; 7. Rotary plate; 8. Storage groove. Detailed Implementation
[0015] Please see Figures 1-6 A mechanical oscillation device for medical drug preparation includes a worktable 1. A control display panel 2 is embedded in the front side of the worktable 1. A rotating groove 4 is formed at the center of the top of the worktable 1. A receiving groove 8 is formed at the bottom of the inner wall of the rotating groove 4. A drive motor 5 is connected to the bottom of the inner wall of the receiving groove 8. The output end of the drive motor 5 is connected to a rotating disk 7. Several insertion holes 6 are formed on the outer side of the top of the rotating disk 7. An oscillation component 3 is set on the top of the rotating disk 7. The oscillation component 3 includes a support disk 31. A rotating groove 34 is formed at the center of the top of the support disk 31. A rotating disk 32 is movably connected to the inner wall of the rotating groove 34 through a bearing. A gear ring 33 is fixedly sleeved on the top of the rotating disk 32. Several placement grooves 35 are formed on the top of the rotating disk 32. Rubber support blocks are connected to the four corners of the bottom of the workbench 1. The outer diameter of the rotating disk 7 is smaller than the inner diameter of the rotating groove 4. The center point of the rotating disk 7 is not in the same position as the center point of the output end of the drive motor 5. The rotating groove 4 facilitates the rotation of the rotating disk 7, and the rotating disk 7 can drive the support disk 31 to shake when it rotates.
[0016] The support plate 31 is located on top of the rotating plate 7. Several insertion rods 311 are connected to the bottom of the support plate 31. The bottom of the insertion rods 311 extends into the interior of the insertion hole 6. The insertion rods 311 can be inserted and received through the insertion hole 6, which is beneficial for the rotation of the rotating plate 7 to drive the oscillating component 3 to rotate. The support plate 31 is placed on top of the rotating plate 7. During the rotation of both, the insertion rods 311 will not come out of the insertion hole 6.
[0017] Support plates 315 are connected to the left and right sides of the top of the rotating disk 32. The top of the two support plates 315 is connected to a binding plate 38. The top of the binding plate 38 has several placement openings 36 that cooperate with the placement slots 35. The binding plate 38 can be positioned and supported by the two support plates 315.
[0018] A reagent tube 37 is placed at the bottom of the inner wall of the placement slot 35. The top of the reagent tube 37 passes through the placement opening 36 and is threaded with a sealing sleeve 312. The reagent tube 37 can be placed by the cooperation of the placement opening 36 and the placement slot 35, and the reagent tube 37 can be sealed by the sealing sleeve 312. Rubber rings are embedded in the inner walls of the placement opening 36 and the placement slot 35. The rubber rings increase the friction between the inner walls of the placement opening 36 and the placement slot 35 and the reagent tube 37, and prevent the reagent tube 37 from shaking freely in the placement opening 36 and the placement slot 35.
[0019] Positioning rods 313 are connected to the front and rear sides of the top outer side of the support plate 31. The top of the two positioning rods 313 are connected to a slip ring 310. An electric slider 39 is sleeved on the left side of the outer side of the slip ring 310. A toothed block 314 that meshes with the toothed ring 33 is connected to the inner side of the electric slider 39. The two positioning rods 313 can be used to position and support the slip ring 310.
[0020] When in use, the reagent to be shaken is placed into the reagent tube 37 and the sealing sleeve 312 is screwed on. The bottom of the reagent tube 37 passes through the placement port 36 and is placed into the placement groove 35. The placement port 36 and the placement groove 35 are used to place and restrain the reagent tube 37. During the subsequent shaking process, the reagent tube 37 is not easy to fall off the rotating disk 32 and the restraining plate 38, thus avoiding the reagent tube 37 from falling and being damaged. After the reagent tube 37 is placed, the drive motor 5 and electric slider 39 are activated using the control display panel 2. The drive motor 5 rotates the rotating disk 7. Because the center point of the rotating disk 7 is not at the same position as the center point of the output end of the drive motor 5, the rotating disk 7 will oscillate to a certain extent during rotation, causing the oscillating component 3 on it to also oscillate to a certain extent, thereby oscillating the reagent inside the reagent tube 37. Further, when the electric slider 39 is running, it alternates between forward and reverse rotation on the left side outside the slip ring 310. At this time, the toothed block 314 drives the toothed ring 33 to also alternate between forward and reverse rotation. The rotating disk 32 and the restraint plate 38 cause the reagent tube 37 to move accordingly, further oscillating it. It should be noted that when the electric slider 39 is running outside the slip ring 310, it does not collide with the positioning rod 313. In summary, this mechanical oscillation device for preparing medical reagents, through the use of oscillation component 3, solves the problem that when test tubes are placed horizontally, they are prone to detaching from the fixing clamp during oscillation. Furthermore, the probability of test tubes falling off during horizontal installation is also relatively high, causing damage to the test tubes.
Claims
1. A mechanical oscillation device for the configuration of medical agents, comprising a worktable (1), characterized in that: The front side of the workbench (1) is inlaid with a control display panel (2). A rotating groove (4) is provided at the center of the top of the workbench (1). A storage groove (8) is provided at the bottom of the inner wall of the rotating groove (4). A drive motor (5) is connected to the bottom of the inner wall of the storage groove (8). A rotating disk (7) is connected to the output end of the drive motor (5). Several insertion holes (6) are provided on the outer side of the top of the rotating disk (7). An oscillation component (3) is provided on the top of the rotating disk (7). The oscillation component (3) includes a support disk (31). A rotating groove (34) is provided at the center of the top of the support disk (31). A rotating disk (32) is movably connected to the inner wall of the rotating groove (34) through a bearing. A toothed ring (33) is fixedly sleeved on the top of the outside of the rotating disk (32). Several placement grooves (35) are provided on the top of the rotating disk (32).
2. The medical medicine preparation mechanical oscillation device according to claim 1, characterized in that: The four corners of the bottom of the workbench (1) are connected with rubber support blocks. The outer diameter of the rotating disk (7) is smaller than the inner diameter of the rotating groove (4). The center point of the rotating disk (7) and the center point of the output end of the drive motor (5) are not in the same position.
3. The medical fluid preparation mechanical oscillation apparatus of claim 1, wherein: The support plate (31) is located on top of the rotating plate (7), and a number of insert rods (311) are connected to the bottom of the support plate (31). The bottom of the insert rods (311) extends into the interior of the insertion hole (6).
4. The medical fluid preparation mechanical oscillation apparatus of claim 1, wherein: The top of the rotating disk (32) is connected to the left and right sides of the top of the support plate (315), and the top of the two support plates (315) is connected to the binding plate (38). The top of the binding plate (38) is provided with several placement openings (36) that are used in conjunction with the placement slot (35).
5. The medical fluid preparation mechanical oscillation apparatus of claim 4, wherein: A reagent tube (37) is placed at the bottom of the inner wall of the placement groove (35), and the top of the reagent tube (37) passes through the placement opening (36) and is threaded with a sealing sleeve (312).
6. The medical fluid preparation mechanical oscillation apparatus of claim 1, wherein: The support plate (31) has a positioning rod (313) connected to the front and rear sides of the top outer side. The top of the two positioning rods (313) is connected to a slip ring (310). An electric slider (39) is sleeved on the left side of the slip ring (310). A toothed block (314) that meshes with the toothed ring (33) is connected to the inner side of the electric slider (39).
Citation Information
Patent Citations
Mechanical oscillation device for medical medicament preparation
CN209865908U