Experiment bottle cleaner
By designing a cleaner that adapts to different diameters of experimental bottles and using a combination of rotation and water rinsing, the problems of limited applicability and low cleaning efficiency of existing devices are solved, achieving efficient and flexible cleaning of experimental bottles.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LANGFANG HETIAN PHARM CO LTD
- Filing Date
- 2025-05-21
- Publication Date
- 2026-04-21
AI Technical Summary
Existing experimental bottle cleaning devices have a limited range of applications and low cleaning efficiency, making it difficult to adapt to experimental bottles of different diameters. Furthermore, the cleaning process is complex and affects experimental efficiency.
A test bottle cleaner was designed, comprising a support base, a support frame, a cleaning end assembly, a moving assembly, a placement platform assembly, a clamping plate, and a control assembly. It can adapt to test bottles of different diameters and achieves efficient cleaning through the rotation of the cleaning end assembly and water rinsing.
It expands the scope of application of the cleaner, improves cleaning efficiency, enhances the flexibility and stability of cleaning, and simplifies the operation process.
Smart Images

Figure CN224143119U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of experimental auxiliary equipment, and in particular to an experimental bottle washer. Background Technology
[0002] Laboratory vials are glass or plastic containers used in laboratories to hold, store, mix, or react chemical reagents and biological samples. Their design must meet the requirements of experimental safety, ease of operation, and accurate results. Laboratory vials are widely used in chemical experiments, such as solution preparation, acid-base neutralization, and redox reactions; biological experiments, such as cell culture, microbial inoculation, and DNA extraction; environmental monitoring, such as water quality sampling and air pollutant analysis; and pharmaceutical research and development, such as drug synthesis and efficacy testing.
[0003] Before use, laboratory vials must be thoroughly cleaned and disinfected to avoid cross-contamination. In the authorized Chinese utility model patent "Announcement No.: CN214638922U, Name: Laboratory Vial Cleaning Device for Biopharmaceuticals", a cleaning brush is opened by driving a motor to rotate in the forward direction, so that the cleaning brush is in close contact with the inner wall of the laboratory vial. Then, the motor is rotated, causing the rotating plate to drive the laboratory vial to rotate, and the cleaning brush cleans the inner wall of the laboratory vial. However, the diameter of the cleaning brush opened from top to bottom in the above application is fixed. For laboratory vials with different top and bottom diameters, the cleaning brush is difficult to clean. Moreover, after the cleaning brush removes the debris from the inner wall of the laboratory vial, it needs to be rinsed with water, which is more complicated and affects the cleaning efficiency of the laboratory vials. Utility Model Content
[0004] The technical problem to be solved by this utility model is to overcome the shortcomings of the existing technology, such as limited applicability and low cleaning efficiency, and to provide a laboratory bottle cleaner.
[0005] The present invention solves the above-mentioned technical problems through the following technical solution:
[0006] This utility model provides a laboratory bottle washer, including a support base and a support frame, wherein the support frame is connected to the top of the support base.
[0007] A cleaning end assembly is disposed inside the support base and is used to clean the experimental bottles.
[0008] A dynamic assembly is connected to the top of the support frame and is connected to the cleaning end assembly, providing power for the operation of the cleaning end assembly;
[0009] A placement platform assembly is disposed inside the support frame and connected to the top of the support base. The placement platform assembly is used to place experimental bottles.
[0010] The clamping plates are connected to both the left and right sides of the placement platform assembly. The clamping plates on both sides are used to clamp and fix the experimental bottles.
[0011] The control components are connected to the opposite sides of the two clamping plates, and the control components are connected to the side of the support frame.
[0012] In this technical solution, the cleaning end assembly can be used to clean experimental bottles of different and variable diameters, which can expand the applicability of the cleaner and increase the flexibility of its use. Furthermore, the cleaning end assembly can simultaneously brush away dirt from the inside of the experimental bottle and rinse it with water, thereby improving the cleaning efficiency of the experimental bottle.
[0013] Preferably, the cleaning end assembly includes a cleaning hole pipe with multiple water outlet holes on its surface, and a rotating pipe connected to the top of the cleaning hole pipe, the surface of which is rotatably connected through the top surface of the support frame.
[0014] The outer side of the cleaning tube is provided with multiple cleaning brushes arranged in a ring array.
[0015] In this technical solution, different experimental containers can be cleaned using the cleaning end assembly.
[0016] Preferably, the outer side of the cleaning tube is connected to a plurality of fixed tracks arranged in a circular array, and an anti-detachment mounting strip is slidably connected to the inner side of the fixed track, and a cleaning brush strip is connected to the anti-detachment mounting strip.
[0017] The surface of the cleaning hole pipe is threaded with an anti-drop ring, and the top of the anti-drop ring contacts the bottom of the anti-detachment mounting strip.
[0018] In this technical solution, the cleaning brush strip can be easily replaced by using structures such as fixed rails and anti-detachment mounting strips.
[0019] Preferably, the moving assembly includes a fixing frame and a water distribution pipe, wherein the fixing frame is connected to the top of the support frame;
[0020] The bottom end of the water distribution pipe is rotatably connected to the top end of the rotating pipe, and the surface of the water distribution pipe is fixedly connected to the top surface of the fixed frame.
[0021] In this technical solution, the dynamic assembly can provide driving force for the operation of the cleaning end group.
[0022] Preferably, a power source is connected to the inner wall of the top surface of the fixed frame, a main gear is connected to the output end of the power source, a side gear is meshed with the side of the main gear, and the side gear is fixedly connected to the surface of the rotating tube.
[0023] In this technical solution, cleaning fluid can be pumped into the cleaning end group using a dynamic assembly.
[0024] Preferably, the placement platform assembly includes a lifting device and a placement plate, wherein the lifting device is connected to the top of the support base, and the top of the lifting device is connected to the bottom of the placement plate.
[0025] In this technical solution, the height of the placement platform is adjustable, allowing for the cleaning of experimental containers at different heights.
[0026] Preferably, the placement plate has two symmetrically distributed movable openings, and the placement plate is fitted onto the outside of the clamping plate through the movable openings.
[0027] In this technical solution, an experimental container can be placed using a placement plate.
[0028] Preferably, the clamping plate includes a fixing plate, and a clamping plate is provided on one side of the fixing plate. The fixing plate and the clamping plate are connected by a plurality of elastic connectors.
[0029] In this technical solution, the experimental container can be clamped and fixed using the clamping plates on both sides.
[0030] Preferably, the side of the clamping plate away from the fixing plate has an arc-shaped structure.
[0031] In this technical solution, the clamping plate can be used to easily fit the experimental container and fix the experimental container.
[0032] Preferably, the control component includes mounting columns, and multiple mounting columns are connected to the side of the support frame, with the end of the mounting column away from the support frame connected to a mounting plate.
[0033] A telescopic device is connected to one side of the mounting plate, and a push plate is connected to one end of the telescopic device. The push plate is slidably connected to the surface of the mounting column.
[0034] Two symmetrically distributed push columns are connected to one side of the push plate. The end of the push column away from the push plate is connected to one side of the fixed plate, and the surface of the push column is slidably connected to the support frame.
[0035] In this technical solution, the position of the clamping plate can be adjusted using the control component.
[0036] Based on common knowledge in the field, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred embodiments of this utility model.
[0037] The positive and progressive effects of this utility model are as follows:
[0038] This invention utilizes a cleaning end assembly that can adapt to and clean experimental bottles of different and variable diameters, thereby expanding the scope of application of the cleaner and increasing its flexibility in use. Furthermore, the cleaning end assembly can simultaneously brush away dirt from the inside of the experimental bottle while rinsing it with water, thus improving the cleaning efficiency of the experimental bottle.
[0039] Furthermore, the platform can be raised and lowered, allowing for the cleaning of experimental bottles at different heights;
[0040] Further, the position of the clamping plates can be adjusted using the control components, thereby using the clamping plates on both sides to clamp and fix the experimental bottle, so as to improve the stability of the experimental bottle during cleaning and facilitate the cleaning of the experimental bottle. Attached Figure Description
[0041] Figure 1 This is a schematic diagram of the structure of the experimental bottle cleaner according to an embodiment of the present invention.
[0042] Figure 2 for Figure 1 The diagram shows the overall front view of the experimental bottle washer.
[0043] Figure 3 for Figure 1 The diagram shows the internal cross-sectional structure of the experimental bottle washer.
[0044] Figure 4 for Figure 1 The diagram shows a side cross-sectional view of the experimental bottle washer.
[0045] Figure 5 for Figure 1 The schematic diagram of the cleaning end assembly of the experimental bottle washer shown. Figure 1 .
[0046] Figure 6 for Figure 1 The schematic diagram of the cleaning end assembly of the experimental bottle washer shown. Figure 2 .
[0047] Figure 7 for Figure 6 The diagram shows a top view of the cross-sectional structure of the experimental bottle washer.
[0048] Explanation of reference numerals in the attached figures
[0049] 1. Support base;
[0050] 2. Supporting framework;
[0051] 3. Cleaning end assembly; 31. Cleaning hole pipe; 32. Rotating pipe; 33. Cleaning brush strip; 34. Fixed track; 35. Anti-detachment mounting strip; 36. Anti-drop ring;
[0052] 4. Dynamic assembly; 41. Fixing frame; 42. Water distribution pipe; 43. Power source; 44. Main gear; 45. Side gear;
[0053] 5. Placement platform; 51. Lifting device; 52. Placement plate;
[0054] 6. Clamping plate; 61. Fixing plate; 62. Clamping plate; 63. Elastic connector;
[0055] 7. Control components; 71. Mounting column; 72. Mounting plate; 73. Telescopic device; 74. Push plate; 75. Pushing column. Detailed Implementation
[0056] The present invention will be further illustrated by way of embodiments below, but the present invention is not limited to the scope of the embodiments described herein.
[0057] Figures 1 to 7 The diagram shown is a structural schematic of an embodiment of the experimental bottle washer of this utility model. The experimental bottle washer includes a support base 1 and a support frame 2, wherein the support frame 2 is connected to the top of the support base 1.
[0058] The cleaning end assembly 3 is disposed inside the support base 1 and is used to clean the experimental bottles.
[0059] The moving assembly 4 is connected to the top of the support frame 2 and is connected to the cleaning end group 3. The moving assembly 4 provides power for the operation of the cleaning end group 3.
[0060] Placement platform 5 is disposed inside the support frame 2 and connected to the top of the support base 1. Placement platform 5 is used to place experimental bottles.
[0061] Clamping plate 6: The left and right sides of the placement platform 5 are connected to clamping plate 6, which are used to clamp and fix the experimental bottle.
[0062] The control component 7 is connected to the opposite sides of the two clamping plates 6, and the control component 7 is connected to the side of the support frame 2.
[0063] In this technical solution, the cleaning end assembly 3 can be used to clean experimental bottles of different and variable diameters, which can expand the applicability of the cleaner and increase the flexibility of the cleaner during use. In addition, the cleaning end assembly 3 can simultaneously brush away dirt inside the experimental bottle and rinse it with water, which can improve the cleaning efficiency of the experimental bottle.
[0064] The cleaning end assembly 3 includes a cleaning hole pipe 31, the surface of which is provided with multiple water outlet holes, and a rotating pipe 32 is connected to the top of the cleaning hole pipe 31. The surface of the rotating pipe 32 is rotatably connected to the top surface of the support frame 2.
[0065] The outer side of the cleaning tube 31 is provided with a plurality of cleaning brush strips 33 arranged in a ring array.
[0066] In this technical solution, the cleaning end group 3 can be used to clean different experimental containers.
[0067] The outer side of the cleaning tube 31 is connected to a plurality of fixed tracks 34 arranged in a ring array. The inner side of the fixed track 34 is slidably connected to an anti-detachment mounting strip 35, and the anti-detachment mounting strip 35 is connected to a cleaning brush strip 33.
[0068] The surface of the cleaning tube 31 is threaded with an anti-drop ring 36, the top of which contacts the bottom of the anti-detachment mounting strip 35.
[0069] In this technical solution, the fixed track 34 and the anti-detachment mounting strip 35 are used to facilitate the replacement of the cleaning brush strip 33.
[0070] In use, the anti-drop ring 36 can be unscrewed from the cleaning hole tube 31, and then the anti-drop mounting strip 35 can be pulled out from the fixed track 34. Then, the new anti-drop mounting strip 35 can be installed into the fixed track 34. Finally, the anti-drop ring 36 can be reinstalled onto the surface of the cleaning hole tube 31 to complete the replacement of the cleaning brush strip 33.
[0071] The moving assembly 4 includes a fixing frame 41 and a water distribution pipe 42, wherein the fixing frame 41 is connected to the top of the support frame 2;
[0072] The bottom end of the water distribution pipe 42 is rotatably connected to the top end of the rotating pipe 32, and the surface of the water distribution pipe 42 is fixedly connected to the top surface of the fixing frame 41.
[0073] In this technical solution, the dynamic assembly 4 can provide driving force for the operation of the cleaning end group 3.
[0074] The inner wall of the top surface of the fixed frame 41 is connected to a power source 43. The output end of the power source 43 is connected to a main gear 44. A side gear 45 is meshed with the side of the main gear 44. The side gear 45 is fixedly connected to the surface of the rotating tube 32.
[0075] In this technical solution, cleaning fluid can be pumped into the cleaning end group 3 using the dynamic assembly 4.
[0076] When in use, place the cleaning end assembly 3 inside the experimental bottle, and then use the power source 43 to rotate the electric main gear 44, which can drive the side gear 45 to rotate, which in turn can drive the rotating tube 32 to rotate, thereby driving the cleaning hole tube 31 to rotate.
[0077] At this time, a water supply device can be connected to the water distribution pipe 42, and the cleaning fluid can be sent into the cleaning hole pipe 31 using the water supply device.
[0078] When the cleaning tube 31 rotates, it can drive the fixed track 34 and the anti-detachment mounting strip 35 to rotate, which in turn drives the cleaning brush strip 33 to rotate, and the cleaning brush strip 33 is used to clean the inner wall of the experimental bottle.
[0079] Meanwhile, when the cleaning tube 31 rotates, it can evenly spray the cleaning fluid onto the inner wall of the experimental bottle, washing away the dirt brushed off by the cleaning brush 33, thus improving the cleaning efficiency and effect of the container bottle.
[0080] The placement platform assembly 5 includes a lifting device 51 and a placement plate 52. The lifting device 51 is connected to the top of the support base 1, and the top of the lifting device 51 is connected to the bottom of the placement plate 52.
[0081] In this technical solution, the height of the placement platform 5 is adjustable, which allows for the cleaning of experimental containers of different heights.
[0082] The placement plate 52 has two symmetrically distributed movable openings, and the placement plate 52 is sleeved on the outside of the clamping plate 6 through the movable openings.
[0083] In this technical solution, the experimental container can be placed using the placement plate 52.
[0084] In use, place the experimental bottle on the placement plate 52, and then move the placement plate 52 using the lifting device 51 according to the height of the experimental bottle. This will move the container bottle upward so that the cleaning end group 3 can be placed inside the container bottle, and the container bottle can be cleaned using the cleaning end group 3.
[0085] The clamping plate 6 includes a fixing plate 61, and a clamping plate 62 is provided on one side of the fixing plate 61. The fixing plate 61 and the clamping plate 62 are connected by a plurality of elastic connectors 63.
[0086] In this technical solution, the experimental container can be clamped and fixed by using the clamping plates 6 on both sides.
[0087] The side of the clamping plate 62 away from the fixing plate 61 has an arc-shaped structure.
[0088] In this technical solution, the clamping plate 62 can be used to easily fit the experimental container and fix the experimental container.
[0089] The control component 7 includes a mounting column 71, and a plurality of mounting columns 71 are connected to the side of the support frame 2. The end of the mounting column 71 away from the support frame 2 is connected to the mounting plate 72.
[0090] A telescopic device 73 is connected to one side of the mounting plate 72, and a push plate 74 is connected to one end of the telescopic device 73. The push plate 74 is slidably connected to the surface of the mounting column 71.
[0091] Two symmetrically distributed push columns 75 are connected to one side of the push plate 74. The end of the push column 75 away from the push plate 74 is connected to one side of the fixed plate 61, and the surface of the push column 75 is slidably connected to the support frame 2.
[0092] In this technical solution, the position of the clamping plate 6 can be adjusted using the control component 7.
[0093] After the container bottle is placed, the telescopic device 73 drives the push plate 74 to move along the mounting column 71, which in turn drives the push column 75 to move in the same direction, and then drives the clamping plate 6 to move in the same direction, so that the clamping plates 6 on both sides can be tightly attached to the experimental bottle to clamp and fix the experimental bottle.
[0094] When clamped, the clamping plate 62 is in close contact with the experimental bottle. At this time, the elastic connector 63 can flexibly clamp the experimental bottle to avoid damage to the experimental bottle during cleaning.
[0095] The power source 43 is an electric motor or other device that can output rotational kinetic energy.
[0096] The lifting device 51 and the telescopic device 73 are electric push rods, lifting cylinders, or other devices with autonomous telescopic functions.
[0097] While specific embodiments of this utility model have been described above, those skilled in the art should understand that these are merely illustrative examples, and the scope of protection of this utility model is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of this utility model, but all such changes and modifications fall within the scope of protection of this utility model.
Claims
1. Experimental bottle washer, comprising a support base (1) and a support frame (2) connected to the top of the support base (1), characterized in that, The experimental bottle cleaner further includes a cleaning end assembly (3), which is disposed inside the support base (1) and is used to clean the experimental bottles. The moving assembly (4) is connected to the top of the support frame (2) and is connected to the cleaning end group (3). The moving assembly (4) provides power for the operation of the cleaning end group (3). Placement platform (5) is located inside the support frame (2) and connected to the top of the support base (1). The placement platform (5) is used to place experimental bottles. Clamping plate (6): The left and right sides of the placement platform (5) are connected to clamping plate (6), and the clamping plate (6) on both sides is used to clamp and fix the experimental bottle; The control component (7) is connected to the opposite side of the two clamping plates (6), and the control component (7) is connected to the side of the support frame (2).
2. The lab bottle washer of claim 1 wherein: The cleaning end assembly (3) includes a cleaning hole pipe (31), the surface of which is provided with multiple water outlet holes, and a rotating pipe (32) is connected to the top of the cleaning hole pipe (31). The surface of the rotating pipe (32) is rotatably connected to the top surface of the support frame (2). The outer side of the cleaning tube (31) is provided with a plurality of cleaning brush strips (33) arranged in a ring array.
3. The lab bottle washer of claim 2 wherein: The outer side of the cleaning tube (31) is connected to a plurality of fixed tracks (34) arranged in a ring array. The inner side of the fixed track (34) is slidably connected to an anti-detachment mounting strip (35), and the anti-detachment mounting strip (35) is connected to a cleaning brush strip (33). The surface of the cleaning hole tube (31) is threaded with an anti-drop ring (36), the top of which contacts the bottom of the anti-detachment mounting strip (35).
4. The lab bottle washer of claim 1 wherein: The moving assembly (4) includes a fixing frame (41) and a water distribution pipe (42), wherein the fixing frame (41) is connected to the top of the support frame (2); The bottom end of the water distribution pipe (42) is rotatably connected to the top end of the rotating pipe (32), and the surface of the water distribution pipe (42) is fixedly connected to the top surface of the fixing frame (41).
5. The lab bottle washer of claim 4 wherein: The inner wall of the top surface of the fixed frame (41) is connected to a power source (43), the output end of the power source (43) is connected to a main gear (44), the side of the main gear (44) is meshed with a side gear (45), and the side gear (45) is fixedly connected to the surface of the rotating tube (32).
6. The lab bottle washer of claim 1 wherein: The placement platform assembly (5) includes a lifting device (51) and a placement plate (52). The lifting device (51) is connected to the top of the support base (1), and the top of the lifting device (51) is connected to the bottom of the placement plate (52).
7. The lab bottle washer of claim 6 wherein: The placement plate (52) has two symmetrically distributed movable openings, and the placement plate (52) is fitted onto the outside of the clamping plate (6) through the movable openings.
8. The lab bottle washer of claim 1 wherein: The clamping plate (6) includes a fixing plate (61), and a clamping plate (62) is provided on one side of the fixing plate (61). The fixing plate (61) and the clamping plate (62) are connected by a plurality of elastic connectors (63).
9. The lab bottle washer of claim 8 wherein: The side of the clamping plate (62) away from the fixing plate (61) has an arc-shaped structure.
10. The lab bottle washer of claim 1 wherein: The control component (7) includes a mounting column (71), and a plurality of mounting columns (71) are connected to the side of the support frame (2). The end of the mounting column (71) away from the support frame (2) is connected to the mounting plate (72). A telescopic device (73) is connected to one side of the mounting plate (72), and a push plate (74) is connected to one end of the telescopic device (73). The push plate (74) is slidably connected to the surface of the mounting column (71). Two symmetrically distributed push columns (75) are connected to one side of the push plate (74). The end of the push column (75) away from the push plate (74) is connected to one side of the fixed plate (61), and the surface of the push column (75) is slidably connected to the support frame (2).
Citation Information
Patent Citations
Experiment bottle cleaning device for biopharmacy
CN214638922U