Vibrator for liquid-based cell detection
By introducing a slide rail and placement rack structure into the vibrator for liquid-based cell detection, combined with a fixing mechanism and a limiting ring, the problems of low efficiency and large space occupation of existing vibrators are solved, and efficient oscillation and anti-tipping of multi-row preservation bottles are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2026-03-27
AI Technical Summary
Existing vibrators can only vibrate the preservation bottles on a row of vibration platforms, resulting in low working efficiency. When multiple vibrators work at the same time, they occupy a large space, and the preservation bottles are prone to tipping over during vibration.
A vibrator for liquid-based cell detection was designed, which adopts a slide rail and placement rack structure to allow multiple rows of preservation bottles to vibrate simultaneously. It also prevents tipping over through a fixing mechanism and a limiting ring, thereby improving work efficiency and reducing space occupation.
It enables simultaneous oscillation of multiple rows of preservation bottles, improving work efficiency, reducing space occupation, and effectively preventing preservation bottles from tipping over.
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Figure CN224040699U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the vibrator technical field, specifically relates to a vibrator for liquid-based cell detection. BACKGROUND
[0002] Liquid-based cytology technology is a kind of technology that saves exfoliated cells in liquid and evenly disperses cells on the slide to make smears by special equipment, and the liquid-based cell specimen is shaken before being made into a film, and the cells in the preservation bottle are mixed, and the specimen cells after being mixed sufficiently can be evenly laid on the slide, and there is no phenomenon of cell accumulation and not being dispersed.
[0003] At present, the specimen quantity of liquid-based cell detection project detection is huge, but the existing vibrator can only oscillate the preservation bottle on a row of oscillation platforms, the working efficiency is relatively low, the space volume occupied when multiple vibrators work simultaneously is relatively large, and the preservation bottle containing specimen cells is prone to side turning during oscillation.
[0004] UTILIZATION CONTENT
[0005] The utility model aims at providing a kind of vibrator for liquid-based cell detection, which solves the problems of the existing vibrator in prior art, i.e., only one row of preservation bottles on oscillation platform can be oscillated, working efficiency is relatively low, and multiple vibrators occupy relatively large space volume when working simultaneously, and the preservation bottle containing specimen cells is prone to side turning during oscillation.
[0006] The technical scheme adopted by the utility model is as follows:
[0007] A kind of vibrator for liquid-based cell detection, comprising:
[0008] Electric control box, the electric control box is provided with multiple preservation bottles above;
[0009] Slide rail, the slide rail is equidistantly arranged above electric control box, and slide rail side surface is slidably connected with placing rack, and slide rail cooperates with placing rack to facilitate the placement of multiple rows of preservation bottles for oscillation;
[0010] Fixing mechanism, the fixing mechanism is arranged in front of slide rail and placing rack, and fixing mechanism is used to fix the position of multiple placing racks simultaneously;
[0011] Limiting ring, the limiting ring is arranged above placing rack, and limiting ring is used to avoid the side turning of preservation bottle.
[0012] In a preferred scheme, the electric control box is internally fixedly installed with an oscillator, the electric control box is fixedly provided with support rods at four end corners of top portion, the support rods are fixedly provided with a top plate at top surface, the top plate is fixedly provided with multiple slide rails along vertical direction at side surface, and the slide rail side surface is provided with a sliding groove.
[0013] In a preferred scheme, symmetric slide strips are fixed on the left and right sides of the placing rack, and the slide strips are adapted to the slide grooves and are in sliding connection with the slide rails through the slide grooves.
[0014] In a preferred scheme, handrails are fixed on the front and rear sides of the placing rack, and a plurality of circular grooves are arranged through the top surface of the placing rack, and the storage bottles are arranged through the circular grooves and the placing rack.
[0015] In a preferred scheme, the fixing mechanism comprises a U-shaped rod, a moving plate, a plug rod, a reset spring, a through groove, a plug groove, a plug hole, a first through hole and a second through hole, the top of the electric control box is provided with the U-shaped rod, the U-shaped rod comprises a horizontal portion and two vertical portions, symmetric moving plates are arranged on the front of the U-shaped rod, the back of the moving plate is fixedly provided with the plug rod and the reset spring, symmetric through grooves are arranged through the top surface of the top plate, symmetric plug grooves are arranged on the top surface of the electric control box, symmetric plug holes are arranged on the front of the top plate, symmetric first through holes and symmetric second through holes are arranged through the front of the vertical portion of the U-shaped rod.
[0016] In a preferred scheme, the plug rod is adapted to the plug hole, the first through hole and the second through hole, the plug rod is in sliding connection with the top plate through the plug hole, the plug rod is arranged through the U-shaped rod and is in sliding connection with the U-shaped rod through the first through hole and the second through hole respectively, one end of the reset spring, which is away from the moving plate, is fixedly connected with the top plate, the through groove is in communication with the plug hole, the vertical portion of the U-shaped rod is adapted to the through groove and the plug groove, the vertical portion of the U-shaped rod is arranged through the top plate and is in sliding connection with the top plate through the through groove, and the vertical portion of the U-shaped rod is in sliding connection with the electric control box through the plug groove.
[0017] In a preferred scheme, a plurality of annular rubber buffer pads are fixed on the top surface of the placing rack, and the rubber buffer pads are in communication with the circular grooves of the placing rack.
[0018] In a preferred scheme, a plurality of limiting rods are fixed on the top surface of the placing rack in a circumferential array, and the top ends of the limiting rods are fixedly connected with the limiting rings.
[0019] The utility model achieves the following technical effects:
[0020] The utility model discloses a placing rack and slide rail are set up, the storage bottle is placed on the placing rack, and the slide strip of the placing rack is inserted into the slide groove of the slide rail, so that a plurality of storage bottles can be placed above the electric control box for oscillation, thereby improving work efficiency and reducing the occupied space volume.
[0021] The utility model discloses a fixed mechanism is set up, and the plug rod is moved forward and is far away from the inside of through groove to the pull mobile board, and the reset spring is elongated, and the U type rod is along the through groove and is inserted in the inside of the slot, and at this time, the U type rod vertical part is close to the front of multiple slide strips, thereby prevent the back and forth movement of the rack, realize the position of multiple racks is fixed simultaneously, further improve work efficiency, when the U type rod bottom surface and the inside bottom surface of the slot contact, the first through -hole is just in line to the jack, and the reset spring can make the pull mobile board move back, thereby drive the plug rod and move back and be inserted to the inside of the first through -hole, and the position of the U type rod is fixed, when the rack needs to be disassembled, the pull mobile board drives the plug rod and separates the U type rod, and the U type rod is moved up until the jack is in line to the second through -hole, and the reset spring makes the plug rod move back and be inserted to the inside of the second through -hole, and the position of the U type rod can be fixed again, and the fixed mechanism removes the spacing of the rack, and the rack is conveniently taken down.
[0022] The utility model discloses a limiting ring is set up, and the limiting ring can reduce the amplitude of the rotation of the preservation bottle when moving upward during the oscillation of the preservation bottle, thereby avoiding the side turning of the preservation bottle. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is the main structure schematic diagram of the utility model;
[0024] Figure 2 It is the main structure part structure schematic diagram of the utility model;
[0025] Figure 3 It is the fixed mechanism structure schematic diagram of the utility model;
[0026] Figure 4 It is the rack, the preservation bottle, the rubber buffer pad and the limiting ring structure schematic diagram of the utility model.
[0027] In the drawings, the component list that each sign represents is as follows:
[0028] 100, electric control box;101, oscillator;200, support rod;300, top plate;400, slide rail;401, slide groove;500, rack;501, slide strip;600, preservation bottle;
[0029] 700, fixed mechanism;701, U type rod;702, mobile board;703, plug rod;704, reset spring;705, through groove;706, slot;707, jack;708, first through -hole;709, second through -hole;
[0030] 800, rubber buffer pad;900, limiting ring;901, limiting rod. DETAILED DESCRIPTION
[0031] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.
[0032] Many specific details are set forth in the following description in order to provide a full understanding of this utility model. However, this utility model may also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the spirit of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed below.
[0033] Secondly, the term "an embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of this utility model. The phrase "in a preferred embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that mutually excludes other embodiments.
[0034] Secondly, this utility model is described in detail with reference to the schematic diagrams. When detailing the embodiments of this utility model, for ease of explanation, the cross-sectional views illustrating the device structure may be partially enlarged, not according to the usual scale. Furthermore, the schematic diagrams are merely examples and should not limit the scope of protection of this utility model. In addition, actual manufacturing should include the three-dimensional spatial dimensions of length, width, and depth.
[0035] Please see the appendix Figure 1 As shown, this utility model provides a vibrator for liquid-based cell detection, including: an electrical control box 100, a slide rail 400, a fixing mechanism 700 and a limiting ring 900, with a placement rack 500 slidably connected to the side of the slide rail 400.
[0036] In a preferred embodiment, please refer to Figures 1 to 4The electric control box 100 is internally provided with an oscillator 101. The specific working principle of the oscillator 101 is a very mature public technology. For details, please refer to various encyclopedias and other public documents. Here, no specific elaboration is made. The electric control box 100 is electrically connected with the oscillator 101 through a wire. The electric control box 100 is provided with a control switch on the surface. The electric control box 100 is fixedly provided with suction cups at four corners of the bottom. The electric control box 100 is fixedly provided with support rods 200 at four corners of the top. The support rods 200 are fixedly provided with a top plate 300 on the top surface. A plurality of slide rails 400 are fixedly provided on the side of the top plate 300 in the vertical direction. The slide rails 400 are provided with slide grooves 401 on the side. The slide rails 400 are slidingly connected with a rack 500 on the side. The rack 500 is fixedly provided with symmetrical slide strips 501 on the left and right sides. The slide strips 501 are adapted to the slide grooves 401. The slide strips 501 are slidingly connected with the slide rails 400 through the slide grooves 401. The slide grooves 401 and the slide strips 501 have the same length. The rack 500 is fixedly provided with handrails on the front and rear sides. A plurality of circular grooves are provided on the top surface of the rack 500. A plurality of preservation bottles 600 are provided above the electric control box 100. The preservation bottles 600 are internally filled with a preservation solution for preparing a liquid-based cell specimen. The preservation bottles 600 are penetratingly placed in the rack 500 through the circular grooves.
[0037] In this embodiment, the preservation bottles 600 are placed on the rack 500. The preservation bottles 600 are penetratingly placed in the rack 500 through the circular grooves. The slide strips 501 of the rack 500 are inserted into the slide grooves 401 of the slide rails 400. A plurality of preservation bottles 600 can be placed above the electric control box 100. The plurality of slide rails 400 can conveniently adjust the spacing of the rack 500 according to the height of the preservation bottles 600. The applicability is strong. The operation of the oscillator 101 drives the electric control box 100 to vibrate, so as to drive the support rods 200, the top plate 300, the slide rails 400, the rack 500 and the preservation bottles 600 above to vibrate. The vibration of the preservation bottles 600 oscillates the preservation solution in the interior, so as to improve the work efficiency and reduce the occupied space volume.
[0038] In a preferred embodiment, please refer to Figures 1 to 3The front of the slide rail 400 and the placing rack 500 is provided with the fixing mechanism 700, the fixing mechanism 700 is composed of the U-shaped rod 701, the moving plate 702, the inserting rod 703, the reset spring 704, the through slot 705, the inserting slot 706, the inserting hole 707, the first through hole 708 and the second through hole 709, the top of the electric control box 100 is provided with the U-shaped rod 701, the U-shaped rod 701 is composed of the horizontal part and two vertical parts, the front of the U-shaped rod 701 is provided with the symmetrical moving plate 702, the back of the moving plate 702 is fixedly provided with the inserting rod 703 and the reset spring 704, the top of the top plate 300 is provided with the symmetrical through slot 705, the top of the electric control box 100 is provided with the symmetrical inserting slot 706, the front of the top plate 300 is provided with the symmetrical inserting hole 707, the vertical part of the U-shaped rod 701 is provided with the symmetrical first through hole 708 and the symmetrical second through hole 709.
[0039] In the embodiment, the inserting rod 703 is adapted to the inserting hole 707, the first through hole 708 and the second through hole 709, the inserting rod 703 is slidably connected with the top plate 300 through the inserting hole 707, the inserting rod 703 penetrates the U-shaped rod 701 through the first through hole 708 and the second through hole 709 respectively and is slidably connected with the U-shaped rod 701, one end of the reset spring 704 away from the moving plate 702 is fixedly connected with the top plate 300, the through slot 705 is communicated with the inserting hole 707, the vertical part of the U-shaped rod 701 is adapted to the through slot 705 and the inserting slot 706, the vertical part of the U-shaped rod 701 penetrates the top plate 300 through the through slot 705 and is slidably connected with the top plate 300, the vertical part of the U-shaped rod 701 is slidably connected with the electric control box 100 through the inserting slot 706.
[0040] When the sliding strips 501 of the placing racks 500 are all inserted into the sliding grooves 401 of the sliding rails 400, the front surface of the sliding rails 400, the front surface of the sliding strips 501 and the back surface inside the through groove 705 are located in the same plane, the moving plate 702 is pulled to drive the insertion rod 703 to move forward and away from the inside of the through groove 705, the reset spring 704 is elongated, the U-shaped rod 701 is penetrated through the top plate 300 along the through groove 705 and inserted into the insertion slot 706, at this time, the vertical part of the U-shaped rod 701 is tightly attached to the front surface of the plurality of sliding strips 501, thereby preventing the placing rack 500 from moving forward and backward, realizing the fixation of the positions of the plurality of placing racks 500 at the same time, and further improving the work efficiency, when the bottom surface of the U-shaped rod 701 contacts with the bottom surface inside the insertion slot 706, the first through hole 708 is just aligned to the insertion hole 707, the moving plate 702 is loosened to enable the reset spring 704 to pull the moving plate 702 to move backward, thereby driving the insertion rod 703 to move backward and be inserted into the first through hole 708, the position of the U-shaped rod 701 is fixed; when the placing rack 500 needs to be disassembled, the moving plate 702 is pulled to drive the insertion rod 703 to be separated from the U-shaped rod 701, the U-shaped rod 701 is moved upward until the insertion hole 707 is aligned to the second through hole 709, the moving plate 702 is loosened to enable the insertion rod 703 to move backward and be inserted into the second through hole 709, the position of the U-shaped rod 701 can be fixed again, at this time, the U-shaped rod 701 is moved above the sliding strips 501, thereby releasing the limiting of the placing rack 500, facilitating the placing rack 500 to be taken off.
[0041] It should be noted that the top plate 300 will shake during the vibration, which will cause the moving plate 702 and the insertion rod 703 to shake forward and backward, and the insertion rod 703 always does not separate from the U-shaped rod 701 when shaking.
[0042] In a preferred embodiment, please refer to Figures 1 to 4 A plurality of limiting rings 900 are arranged above the placing racks 500, a plurality of annular rubber buffer pads 800 and limiting rods 901 arranged in a circumferential array are fixedly arranged on the top surface of the placing racks 500, the rubber buffer pads 800 are in communication with the circular grooves of the placing racks 500, the rubber buffer pads 800 can play a buffering role during the vibration of the placing and storage bottles 600 and the storage bottles 600, the limiting rods 901 are fixedly connected with the limiting rings 900 at the top ends, and the limiting rings 900 can reduce the amplitude of the rotation of the storage bottles 600 when the storage bottles 600 move upward during the vibration, thereby avoiding the storage bottles 600 from being turned over.
[0043] The working principle of the utility model is as follows:
[0044] When the device is used, the preservation bottle 600 is placed on the rack 500, the preservation bottle 600 penetrates the rubber buffer 800 and the circular groove of the rack 500, then the slide bars 501 of the racks 500 are sequentially inserted into the slide grooves 401 of the slide rails 400, the distance between the racks 500 is adjusted according to the height of the preservation bottle 600, when the slide bars 501 of the racks 500 are all inserted into the slide grooves 401 of the slide rails 400, the front surface of the slide rail 400, the front surface of the slide bar 501 and the back surface inside the through groove 705 are located in the same plane, the moving plate 702 is pulled to drive the insertion rod 703 to move forward and away from the inside of the through groove 705, the reset spring 704 is elongated, the U-shaped rod 701 penetrates the top plate 300 along the through groove 705 and is inserted into the insertion slot 706, at this time, the vertical part of the U-shaped rod 701 is close to the front surface of the slide bars 501, so as to prevent the rack 500 from moving forward and backward, the positions of the racks 500 are fixed at the same time, and the working efficiency is further improved, when the bottom surface of the U-shaped rod 701 contacts the bottom surface inside the insertion slot 706, the first through hole 708 is just aligned to the insertion hole 707, the moving plate 702 is loosened to drive the moving plate 702 to move backward, so as to drive the insertion rod 703 to move backward and be inserted into the first through hole 708, and the position of the U-shaped rod 701 is fixed; when the rack 500 needs to be disassembled, the moving plate 702 is pulled to drive the insertion rod 703 to separate from the U-shaped rod 701, the U-shaped rod 701 is moved upward until the insertion hole 707 is aligned to the second through hole 709, the moving plate 702 is loosened to drive the insertion rod 703 to move backward and be inserted into the second through hole 709, the position of the U-shaped rod 701 can be fixed again, at this time, the U-shaped rod 701 moves above the slide bar 501, so that the rack 500 is released, and the rack 500 is convenient to take down.
[0045] The above only describes the preferred embodiments of the present application, and it should be noted that those skilled in the art can make some improvements and decorations without departing from the principles of the present application, and these improvements and decorations should also be regarded as the protection range of the present application. The structures, devices and operation methods not specifically described and explained in the present application are implemented according to the conventional means in the art without special description and limitation.
Claims
1. A vibrator for liquid-based cell testing, characterized by: Include: Electric control box (100), a plurality of preservation bottles (600) are arranged above the electric control box (100); The slide rail (400) is equidistantly arranged above the electric control box (100), the slide rail (400) is slidably connected with the rack (500) on the side surface, and the slide rail (400) cooperates with the rack (500) to facilitate placing multiple rows of preservation bottles (600) to oscillate; The fixing mechanism (700) is arranged in front of the slide rail (400) and the rack (500), and the fixing mechanism (700) is used for fixing the positions of multiple racks (500) at the same time; The limiting ring (900) is arranged above the rack (500), and the limiting ring (900) is used for preventing the preservation bottles (600) from overturning.
2. The vibrator for liquid-based cell testing according to claim 1, wherein: The electric control box (100) is internally fixedly installed with an oscillator (101), four end corners of the top of the electric control box (100) are fixedly provided with support rods (200), the top surface of the support rod (200) is fixedly provided with a top plate (300), and a plurality of slide rails (400) are fixedly arranged on the side surface of the top plate (300) in the vertical direction. The side surface of the slide rail (400) is provided with a sliding groove (401).
3. The vibrator for liquid-based cell testing according to claim 2, wherein: The symmetric slide bars (501) are fixedly arranged on the left side and the right side of the rack (500), the slide bars (501) are adapted to the sliding grooves (401), and the slide bars (501) are slidably connected with the slide rails (400) through the sliding grooves (401).
4. The vibrator for liquid-based cell testing according to claim 1, wherein: The handrails are fixedly arranged on the front side and the back side of the rack (500), a plurality of circular grooves are penetratingly arranged on the top surface of the rack (500), and the preservation bottles (600) are placed in the rack (500) through the circular grooves.
5. The vibrator for liquid-based cell testing according to claim 2, wherein: The fixing mechanism (700) includes a U-shaped rod (701), a moving plate (702), a plug rod (703), a reset spring (704), a through groove (705), a plug groove (706), a plug hole (707), a first through hole (708) and a second through hole (709), the top of the electric control box (100) is provided with the U-shaped rod (701), the U-shaped rod (701) includes a transverse portion and two vertical portions, the front of the U-shaped rod (701) is provided with symmetric moving plates (702), the back of the moving plate (702) is fixedly provided with the plug rod (703) and the reset spring (704), the top surface of the top plate (300) is penetratingly provided with symmetric through grooves (705), the top surface of the electric control box (100) is provided with symmetric plug grooves (706), the front surface of the top plate (300) is provided with symmetric plug holes (707), and the front surface of the vertical portion of the U-shaped rod (701) is penetratingly provided with symmetric first through holes (708) and symmetric second through holes (709).
6. The vibrator for liquid-based cell testing according to claim 5, wherein: The insertion rod (703) is adapted to the insertion hole (707), the first through hole (708) and the second through hole (709), the insertion rod (703) is slidably connected with the top plate (300) through the insertion hole (707), the insertion rod (703) penetrates the U-shaped rod (701) and is slidably connected with the U-shaped rod (701) through the first through hole (708) and the second through hole (709) respectively, one end of the reset spring (704) away from the moving plate (702) is fixedly connected with the top plate (300), the through groove (705) is communicated with the insertion hole (707), the vertical part of the U-shaped rod (701) is adapted to the through groove (705) and the insertion groove (706), the vertical part of the U-shaped rod (701) penetrates the top plate (300) and is slidably connected with the top plate (300) through the through groove (705), and the vertical part of the U-shaped rod (701) is slidably connected with the electric control box (100) through the insertion groove (706).
7. The vibrator for liquid-based cell testing according to claim 4, wherein: A plurality of annular rubber buffer pads (800) are fixedly arranged on the top surface of the placing rack (500) and communicated with the circular grooves of the placing rack (500).
8. The vibrator for liquid-based cell testing according to claim 1, wherein: A plurality of limiting rods (901) are fixedly arranged on the top surface of the placing rack (500) in a circumferential array, and the top ends of the limiting rods (901) are fixedly connected with the limiting ring (900).