Glass slide atomization deoiling device
By combining ultrasonic atomization and a blower, efficient and safe oil removal from glass slides is achieved, solving the problems of inconvenient operation and health hazards in existing technologies, and improving oil removal efficiency and safety.
Patent Information
- Application Number
- CN202422516902.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-10-17
AI Technical Summary
In existing technologies, the degreasing of glass slides is inconvenient, inefficient, and the evaporation of organic solvents is harmful to health, affecting the quality of the slides and the safety of operators.
The organic solvent is converted into tiny droplets using ultrasonic atomization technology, and then atomized by a blower to cover the glass slide. Combined with a guide plate and a recovery component, the solvent is dissolved and collected, forming a closed environment for oil removal.
It improves degreasing efficiency, reduces manual intervention, ensures the quality of the coating, reduces the health hazards of organic solvent volatilization, and provides a safe operating environment.
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Figure CN223733417U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a slide oil removal equipment field especially relates to a slide atomization oil removal device. BACKGROUND
[0002] Bone marrow smear or blood smear (in the form of slide), need to drop after adding cedar oil under the observation cell morphology of optical microscope, after reading the film, need to drop to the slide with cedar oil with organic solvent, then wipe with gauze again and save, but such operation has many problems.
[0003] First, the operation is inconvenient by the way of wiping the slide with gauze, if the force is not controlled well, marrow small particles or blood film on the smear is easy to wipe off, which affects the subsequent storage and use of the slide.Secondly, when the sample amount of bone marrow smear or blood smear is large, it needs to spend more time and labor to remove cedar oil on the slide, the operation is complicated and the efficiency is low.
[0004] In addition, the organic solvent used during oil removal is usually solvents such as xylene, anhydrous ethanol, ethyl acetate, diethyl ether, etc. These solvents are easy to volatilize, and most of them are chemical substances with certain toxicity. Long-term direct exposure to air can irritate the skin, mucous membranes and respiratory system of the human body, which is not conducive to the health and safety of the test personnel.
[0005] Therefore, it is necessary to provide a slide atomization oil removal device to solve the above technical problems. CONTENT OF THE UTILITY MODEL
[0006] To solve the above technical problems, the utility model provides a slide atomization oil removal device.
[0007] The utility model provides a slide atomization oil removal device, which comprises an oil removal tank, a cover body installed on the top of the oil removal tank, a plurality of ultrasonic wave main bodies installed on the inner bottom wall of the oil removal tank, a plurality of blowing main bodies installed on one side of the inner part of the oil removal tank, and a placing frame installed in the inner part of the oil removal tank and inclined from top to bottom, a ventilation interval is arranged between the top of the placing frame and the inner side wall of the oil removal tank, the bottom of the placing frame is fixedly connected with the inner side wall of the oil removal tank, the left and right sides of the placing frame are provided with baffle plates, a plurality of fixed frames arranged in a stepped manner from top to bottom are fixedly connected between the two baffle plates, a plurality of placing parts for placing slides are arranged on the top of the fixed frame, a guide plate is fixedly connected to the inner bottom wall of the fixed frame, a flow-through groove is arranged on the baffle plate, the inner side wall of the oil removal tank is provided with two flow guide grooves connected with the flow-through groove, the end of the flow guide groove is provided with a discharge port located above the bottom of the placing frame, and a plurality of recovery assemblies are arranged on the bottom of the placing frame.
[0008] Further, a plurality of ventilation holes are arranged on the placement frame in intervals, and each row of ventilation holes corresponds to the placement part below each row of fixing frames.
[0009] Further, the placement part comprises a plurality of placement rods arranged side by side, gaps for placing slides are arranged between adjacent placement rods, one end of the placement rod is fixedly connected with the fixing frame, and the other end of the placement rod is fixedly connected with the upper surface of the placement frame.
[0010] Further, the recovery assembly comprises a plurality of connecting pipes arranged at the bottom of the placement frame, the upper pipe opening of the connecting pipe extends to the upper surface of the placement frame, the inside of the connecting pipe is filled with activated carbon cotton net, and the lower pipe opening of the connecting pipe is fixedly connected with the recovery frame.
[0011] Further, an L-shaped feeding pipe is arranged on the outer side wall of the deoiling tank, one end of the L-shaped feeding pipe extends to the inside of the deoiling tank, and the other end of the L-shaped feeding pipe is provided with a sealing cover.
[0012] Further, the flow guide plate has a structure that is arched in the middle and inclined downward on both sides.
[0013] Further, the blowing direction of the blowing main body is the horizontal direction from the bottom of the placement frame to the top of the placement frame.
[0014] Further, the blowing main body comprises a motor arranged on the outer side wall of the deoiling tank, and the output end of the motor extends to the inside of the deoiling tank and is fixedly connected with a fan.
[0015] Further, the side, away from the deoiling tank, of the cover body is fixedly connected with a handle, and the inner side edge of the cover body is provided with a sealing ring.
[0016] Further, the bottom of the deoiling tank is fixedly connected with a base, the base is provided with a controller in electrical connection with the blowing main body and the ultrasonic main body, and the outer side of the base is provided with a control switch assembly.
[0017] Compared with the related art, the slide atomization deoiling device and the using method thereof have the following beneficial effects:
[0018] 1. In the process of deoiling the slide, the high-frequency vibration energy generated by the ultrasonic main body disperses the organic solvent from liquid into small droplets, the blowing direction of the blowing main body blows the organic solvent in mist to the slide, the organic solvent in mist dissolves the cedar oil on the slide, the dissolved liquid flows to the ejection groove under the guidance of the flow guide plate, and finally flows to the inside of the guide groove, then the accumulated liquid flows from the ejection opening to the upper surface of the bottom of the placement frame under the guidance of the guide groove, and the recovery assembly can collect and process the waste liquid when the liquid passes through the recovery assembly.
[0019] 2. The misty organic solvent rises and diffuses inside the oil removal tank, and the diffusion speed inside the oil removal tank is increased by means of the blowing body, which is beneficial to improve the coverage range of the misty organic solvent.
[0020] The blowing direction of the blowing body is a horizontal direction from the bottom of the placing frame to the top of the placing frame, so that the airflow generated at the blowing body drives the misty organic solvent to move upward and to the ventilation interval direction, and the misty organic solvent is diffused to the glass sheet at the placing frame, the misty organic solvent covers and dissolves the cedar oil on the glass sheet, and the uniformity and comprehensiveness of the oil removal of the glass sheet are ensured.
[0021] 3. The device does not need manual secondary wiping, the cleaning steps are more simple and convenient, and the smear quality is not affected. The placing frame of the device is provided with a plurality of fixing frames, so that a plurality of glass sheets can be simultaneously subjected to oil removal operation, labor participation is greatly reduced, and work efficiency and cleanliness are improved. The device makes the overall working environment during the oil removal process a closed environment, reduces pollution, and reduces harm to the health of the operator. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 An external structure schematic view of the glass sheet atomization oil removal device is provided for the utility model;
[0023] Figure 2 A sectional view of the glass sheet atomization oil removal device is provided for the utility model;
[0024] Figure 3 An internal schematic perspective view of the oil removal tank is provided for the utility model;
[0025] Figure 4 An installation position schematic view of the ultrasonic wave body is provided for the utility model;
[0026] Figure 5 A schematic view of the placing frame is provided for the utility model;
[0027] Figure 6 Another perspective schematic view of the placing frame is provided for the utility model;
[0028] Figure 7 A bottom view of the placing frame is provided for the utility model;
[0029] Figure 8 A sectional view of the connecting pipe is provided for the utility model;
[0030] Figure 9 A schematic view of the airflow flow direction in the glass sheet atomization oil removal device is provided for the utility model.
[0031] The figure label: 1, the oil tank; 2, feed pipe; 3, base; 4, cover; 5, handle; 6, motor; 7, fan; 8, ultrasonic body; 9, placing frame; 10, air hole; 11, placing piece; 12, guide plate; 13, fixed frame; 14, recovery frame; 15, connecting pipe; 16, partition; 17, guide groove; 18, through-flow groove; 19, activated carbon cotton net, 20, discharge port, 21, ventilation interval. DETAILED DESCRIPTION
[0032] The utility model is further described below in combination with the drawings and embodiments.
[0033] As Figures 1-9 The utility model discloses a slide atomization oil removal device, including the oil tank 1, install the cover 4 on the top of the oil tank 1, install a plurality of ultrasonic bodies 8 on the inside bottom wall of the oil tank 1, install a plurality of blow body on the inside one side of the oil tank 1 and install the placing frame 9 that is from top to bottom inclined in the inside of the oil tank 1, the inside side wall between the top of placing frame 9 and the oil tank 1 is provided with ventilation interval 21, and the bottom of placing frame 9 is fixedly connected with the inside side wall in the oil tank 1 respectively, and the left and right sides of placing frame 9 are provided with the partition 16, and a plurality of fixed frames 13 that are from top to bottom arranged in ladder type are fixedly connected between two partition 16, a plurality of placing pieces 11 for placing slide are provided in the top of fixed frame 13, and the inside bottom wall of fixed frame 13 is fixedly connected with guide plate 12, and the through-flow groove 18 that is connected with the both ends of guide plate 12 is provided on both sides partition 16, and the guide groove 17 that is connected with through-flow groove 18 is provided on the inside side wall of the oil tank 1 respectively, and the guide groove 17 is from top to bottom inclined, and two guide grooves 17 are arranged at the both sides of partition 16 respectively, and the discharge port 20 that is located above the bottom of placing frame 9 is arranged in the end of guide groove 17, and a plurality of recovery assemblies are arranged on the bottom of placing frame 9.
[0034] The utility model discloses a slide atomization oil removal device, including the oil tank 1, install the cover 4 on the top of the oil tank 1, install a plurality of ultrasonic bodies 8 on the inside bottom wall of the oil tank 1, install a plurality of blow body on the inside one side of the oil tank 1 and install the placing frame 9 that is from top to bottom inclined in the inside of the oil tank 1, the inside side wall between the top of placing frame 9 and the oil tank 1 is provided with ventilation interval 21, and the bottom of placing frame 9 is fixedly connected with the inside side wall in the oil tank 1 respectively, and the left and right sides of placing frame 9 are provided with the partition 16, and a plurality of fixed frames 13 that are from top to bottom arranged in ladder type are fixedly connected between two partition 16, a plurality of placing pieces 11 for placing slide are provided in the top of fixed frame 13, and the inside bottom wall of fixed frame 13 is fixedly connected with guide plate 12, and the through-flow groove 18 that is connected with the both ends of guide plate 12 is provided on both sides partition 16, and the guide groove 17 that is connected with through-flow groove 18 is provided on the inside side wall of the oil tank 1 respectively, and the guide groove 17 is from top to bottom inclined, and two guide grooves 17 are arranged at the both sides of partition 16 respectively, and the discharge port 20 that is located above the bottom of placing frame 9 is arranged in the end of guide groove 17, and a plurality of recovery assemblies are arranged on the bottom of placing frame 9.
[0035] In use, by placing the slide on the placing piece 11 on the fixed frame 13, during the deoiling process, the ultrasonic main body 8 converts the organic solvent stored in the deoiling tank 1 from liquid to tiny droplets, and blows the mist-shaped organic solvent in the deoiling tank 1 to diffuse and rise, so that the organic solvent contacts the slide, dissolves the cedar oil on the slide, and makes the dissolved liquid flow to the flow-through groove 18 under the guidance of the flow guide plate 12, and finally flows to the inside of the flow guide groove 17 through the flow-through groove 18, and then flows to the bottom of the placing frame 9 through the flow guide groove 17. When passing through the recovery assembly, the recovery assembly can collect and collect the waste liquid dissolved on the slide, avoiding affecting. The organic solvent used in the embodiment is a 3:7 mixed solution of anhydrous ethanol and diethyl ether.
[0036] The placing frame 9 is provided with a plurality of rows of air holes 10 at intervals, and each row of air holes is arranged below the placing piece 11 of each row of fixed frames 13. The air holes 10 can facilitate the upward diffusion of part of the mist-shaped organic solvent to the upper side of the placing frame 9. Since the outlets of the plurality of air holes 10 are flush with the placing frame 9, the mist-shaped organic solvent can fully contact the slide, improving the deoiling efficiency of the slide.
[0037] The placing piece 11 includes a plurality of placing rods arranged side by side, and a gap for placing the slide is arranged between adjacent placing rods. One end of the placing rod is fixedly connected to one side of the fixed frame 13, and the other end of the placing rod is fixedly connected to the upper surface of the placing frame 9. The slide is placed in the gap between the two placing rods, so that the dissolved solution on the slide can flow from the gap to the flow guide plate 12. Since the upper surface of the placing frame 9 is inclined, the bottom of the slide does not contact the flow guide plate 12, preventing the slide from contacting the solution again, ensuring the deoiling quality and cleanliness.
[0038] Specifically, the air holes 10 and the placing pieces 11 are arranged alternately, so that each air hole 10 is located between two adjacent placing pieces 11, which can avoid the possibility of liquid dripping from the air holes 10 into the deoiling tank 1.
[0039] The recovery assembly includes a plurality of connecting pipes 15 arranged at the bottom of the placing frame 9. The upper pipe opening of the connecting pipe 15 extends to the upper surface of the placing frame 9, the inside of the connecting pipe 15 is filled with activated carbon cotton net 19, and the lower pipe opening of the connecting pipe 15 is fixedly connected with the recovery frame 14. The recovery frame 14 is used to block the connecting pipe 15. The solution flowing into the connecting pipe 15 is collected by the activated carbon cotton net 19, so that the waste liquid falling from the slide is adsorbed on the activated carbon cotton net 19, avoiding pollution of the unused organic solvent.
[0040] An L-shaped feeding pipe 2 is arranged on the outer side wall of the oil removal tank 1, one end of the L-shaped feeding pipe 2 extends into the oil removal tank 1, and the other end is provided with a sealing cover. The L-shaped feeding pipe 2 can facilitate the addition of organic solvents into the oil removal tank 1, and the sealing cover can ensure the sealing of the entire device after the addition of the organic solvents.
[0041] The guide plate 12 is in a structure of being arched in the middle and being inclined downward on both sides, so that the solution dripping along the inclined direction of the guide plate slides and gathers into the flow-through groove 18, so that the liquid does not accumulate in the placement frame 13, and rapid flow guide is achieved.
[0042] The blowing body is arranged on the side wall adjacent to one side of the bottom of the oil removal tank 1, and the blowing direction of the blowing body is a horizontal direction from the bottom to the top of the placement frame 9, so that the airflow generated at the blowing body drives the misty material to move in the ventilation interval direction, accelerates the diffusion of the misty organic solvents to the glass sheet on the placement frame, and the misty organic solvents cover and dissolve the cedar oil on the glass sheet to perform the oil removal treatment on the glass sheet.
[0043] Specifically, the blowing body includes a motor 6 arranged on the outer side wall of the oil removal tank 1, and the output end of the motor 6 extends into the oil removal tank 1 and is fixedly connected with a fan 7. In use, the motor 6 is started to drive the fan 7 to rotate, and the airflow generated by the rotation of the fan 7 can guide the diffusion direction and accelerate the diffusion speed of the organic solvents, thereby improving the oil removal efficiency.
[0044] A handle 5 is fixedly connected to the side of the cover body 4 away from the oil removal tank 1, so as to facilitate the opening and closing of the cover body 4. Preferably, a sealing ring is arranged on the inner side wall of the cover body 4 to ensure the sealing of the entire device. Specifically, the cover body 4 and the oil removal tank 1 are fixed by bolts or buckles.
[0045] A base 3 is fixedly connected to the bottom of the oil removal tank 1, the base 3 is provided with a controller electrically connected with the blowing body and the ultrasonic body 8, and a control switch assembly (not shown in the figure) is arranged on the outer side of the base 3. The control switch assembly on the base is used to control the start, stop and running time of the blowing body and the ultrasonic body 8.
[0046] Preferably, a transparent window (not shown in the figure) is arranged on the side wall of the oil removal tank 1, and a scale mark is arranged on the transparent window. The capacity of the organic solvents in the oil removal tank 1 can be observed through the transparent window, and the volume of the organic solvents can be reminded to reach the minimum capacity or the maximum capacity through the scale mark.
[0047] A use method of a glass sheet atomization oil removal device, applied to the glass sheet atomization oil removal device mentioned above, including the following steps:
[0048] S1: First, open the cover body 4, place the glass sheet to be deoiled on the plurality of placement pieces 11, and then close the cover body 4 tightly.
[0049] S2: the organic solvent is poured from the feed pipe 2 into the inside of the oil removal tank 1, and after the pouring is finished, the sealing cover at the pipe opening position of the feed pipe 2 is covered;
[0050] S3: the ultrasonic main body 8 and the blowing main body are started by controlling the switch assembly, and the running time is set to 10-20 minutes by controlling the switch assembly, so that the organic solvent in the inside of the oil removal tank 1 is converted from a solution into tiny droplets, and is diffused upwards to the glass sheet on the placing piece 11, and the cedar oil on the glass sheet is dissolved;
[0051] S4: after the running is finished, 5-10 minutes are waited again, so that the organic solvent is all recovered or falls back into the inside of the oil removal tank 1, then the cover body 4 is opened, and the glass sheet after oil removal is taken off from the placing piece 11.
[0052] It should be noted that the circuit and the control involved in the utility model are all prior art. The ultrasonic main body in the utility model is a small ultrasonic atomization device in the prior art, and the technical principle is to use high-frequency vibration energy to scatter liquid into tiny particles to form mist, and the specific structure will not be repeated here.
[0053] The above is only an embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structure or equivalent process conversion using the content of the utility model specification and drawings, or direct or indirect application in other related technical fields, is also included in the patent protection range of the utility model.
Claims
1. A glass sheet atomization deoiling apparatus characterized by, The device comprises a deoiling tank (1), a cover (4) installed on the top of the deoiling tank (1), a plurality of ultrasonic bodies (8) installed on the inner bottom wall of the deoiling tank (1), a plurality of blowing bodies installed on one side of the inner part of the deoiling tank (1), and a placing frame (9) installed in the inner part of the deoiling tank (1) and inclined from top to bottom, a ventilation gap (21) is arranged between the top of the placing frame (9) and the inner side wall of the deoiling tank (1), the bottom of the placing frame (9) is fixedly connected with the inner side wall of the deoiling tank (1), and the left and right sides of the placing frame (9) are provided with baffle plates (16), a plurality of fixed frames (13) arranged in a stepped manner from top to bottom are fixedly connected between the two baffle plates (16), A plurality of placing parts (11) for placing slides are arranged on the inner top of the fixed frame (13), the inner bottom wall of the fixed frame (13) is fixedly connected with a flow guide plate (12), the two side baffle plates (16) are provided with flow-through grooves (18) connected with both ends of the flow guide plate (12), the inner side wall of the deoiling tank (1) is respectively provided with two flow guide grooves (17) connected with the flow-through grooves (18), the end of the flow guide groove (17) is provided with a discharge port (20) located above the bottom of the placing frame (9), and the bottom of the placing frame (9) is provided with a plurality of recovery assemblies; a transparent window is arranged on the side wall of the deoiling tank, and a scale mark is arranged on the transparent window.
2. The slide atomizing deoiling apparatus of claim 1, wherein A plurality of rows of air vents (10) are arranged on the placing frame (9) at intervals, and each row of air vents (10) is correspondingly arranged below the placing part (11) of each row of fixed frames (13).
3. The slide atomizing deoiling device of claim 1, wherein The placing part (11) comprises a plurality of placing rods arranged side by side, a gap for placing slides is arranged between adjacent placing rods, one end of the placing rod is fixedly connected with the fixed frame (13), and the other end of the placing rod is fixedly connected with the upper surface of the placing frame (9).
4. The slide atomizing deoiling apparatus of claim 1, wherein The recovery assembly comprises a plurality of connecting pipes (15) arranged on the bottom of the placing frame (9), the upper pipe opening of the connecting pipe (15) extends to the upper surface of the placing frame (9), the inside of the connecting pipe (15) is filled with activated carbon cotton net (19), and the lower pipe opening of the connecting pipe (15) is fixedly connected with a recovery frame (14).
5. The slide atomizing deoiling device of claim 1, wherein An L-shaped feeding pipe (2) is arranged on the outer side wall of the deoiling tank (1), one end of the L-shaped feeding pipe (2) extends into the deoiling tank (1), and the other end is provided with a sealing cover.
6. The slide atomizing deoiling device of claim 1, wherein The flow guide plate (12) has a structure of arching in the middle and inclining downward on both sides.
7. The slide atomizing deoiling device of claim 1, wherein The blowing direction of the blowing body is the horizontal direction from the bottom of the placing frame (9) to the top of the placing frame (9).
8. The slide atomizing deoiling device of claim 7, wherein, The blowing body comprises a motor (6) arranged on the outer side wall of the deoiling tank (1), and the output end of the motor (6) extends into the deoiling tank (1) and is fixedly connected with a fan (7).
9. The slide atomizing deoiling device of claim 1, wherein, The side of the cover (4) away from the deoiling tank (1) is fixedly connected with a handle (5), and the inner side edge of the cover (4) is provided with a sealing ring.
10. The slide atomizing deoiling apparatus of claim 1, wherein The bottom of the deoiling tank (1) is fixedly connected with a base (3), the inside of the base (3) is provided with a controller electrically connected with the blowing body and the ultrasonic body (8), and the outer side of the base (3) is provided with a control switch assembly.