CN113492138B - Microscope slide high pressure cleaner - Google Patents
Microscope slide high pressure cleaner Download PDFInfo
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- CN113492138B CN113492138B CN202110683665.7A CN202110683665A CN113492138B CN 113492138 B CN113492138 B CN 113492138B CN 202110683665 A CN202110683665 A CN 202110683665A CN 113492138 B CN113492138 B CN 113492138B
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- baffle
- groove
- clamping
- microscope slide
- upper layer
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B5/00—Cleaning by methods involving the use of air flow or gas flow
- B08B5/02—Cleaning by the force of jets, e.g. blowing-out cavities
- B08B5/023—Cleaning travelling work
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B13/00—Accessories or details of general applicability for machines or apparatus for cleaning
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- Cleaning In General (AREA)
- Microscoopes, Condenser (AREA)
Abstract
The invention discloses a microscope slide high-pressure cleaning machine, which comprises an upper layer and a lower layer, wherein the upper layer and the lower layer are stacked and connected together, and the upper layer is communicated with the lower layer through a communicating groove; the clamping mechanism is clamped on the transmission belt and comprises a base and a clamping block arranged on the top surface of the base; the sliding plate is used for adjusting the horizontal position of the clamping mechanism; the high-pressure gas flow generator is arranged at the rear side of the lower layer and is connected with the flushing nozzle; and the jacking mechanism is used for adjusting the vertical position of the clamping mechanism and comprises a jacking cylinder, a motor and a second electromagnetic block. This microscope slide high pressure cleaner utilizes climbing mechanism to rotate fixture, realizes the automatic turn-over function of lens, replaces manual operation, improves the cleaning efficiency, and fixture's U type base opening direction around the upset changes simultaneously, cooperates sliding plate and circulation drive belt, avoids realizing automatic unloading, facilitates the use, liberates the manpower.
Description
Technical Field
The invention relates to the technical field related to cleaning equipment, in particular to a microscope slide high-pressure cleaning machine.
Background
The microscope is an optical instrument formed by one lens or a combination of several lenses, is a sign for human beings to enter the atomic era, and is required to be maintained and cleaned regularly, and dirt on the lens can affect the use if not cleaned timely.
However, the microscope slide can not be wiped at will, otherwise can fish tail the camera lens, and current lens high pressure cleaning equipment need carry out artifical turn-over when wasing the lens, adjustment lens position to the realization is to the two-sided washing of lens, stained lens easily, and the cleaning efficiency is low, and prior art when wasing, need take out earlier the upper lens just can put into lower lens, and is not convenient enough, can't liberate the manpower.
Disclosure of Invention
The invention provides a microscope slide high-pressure cleaning machine for making up for market vacancy.
The invention aims to provide a microscope slide high-pressure cleaning machine, which solves the problems that the existing lens high-pressure cleaning equipment in the background art needs to turn over manually and adjust the position of a lens when cleaning the lens, so that the double surfaces of the lens are cleaned, the lens is easy to stain, the cleaning efficiency is low, the taking and the placing are inconvenient, and the manpower cannot be liberated.
In order to achieve the purpose, the invention provides the following technical scheme: a microscope slide high pressure cleaner, comprising:
the upper layer and the lower layer are stacked and connected together up and down, and the upper layer is communicated with the lower layer through a communicating groove;
the clamping mechanism is clamped on the transmission belt and comprises a base and a clamping block arranged on the top surface of the base;
the sliding plate is used for adjusting the horizontal position of the clamping mechanism, one end of the sliding plate penetrates through the first partition plate to be connected with the sliding mechanism, and the other end of the sliding plate is provided with the first electromagnetic block;
the high-pressure gas flow generator is arranged at the rear side of the lower layer and is connected with the flushing nozzle;
the jacking mechanism is used for adjusting the vertical position of the clamping mechanism and comprises a jacking cylinder, a motor and a second electromagnetic block;
the fixed baffle is fixed on the bottom plate of the lower layer and located under the communicating groove, and a groove is formed in the side face of the fixed baffle.
Further, the upper strata is round angle rectangle box-like, the top surface mid-mounting on upper strata has the upper cover, the inside on upper strata is fixed with first baffle and second baffle, the intercommunication groove has been seted up on the bottom plate on upper strata, it is equipped with the fan to inlay on the second baffle.
Further, first baffle with be close to the fillet of first baffle is around forming the semicircle groove, the sliding mechanism is installed to the semicircle inslot that the first baffle in left side formed, the second baffle is located the line in two semicircle centre of a circle, the length of second baffle is less than interval between the first baffle, the second baffle with the first baffle in right side links to each other, the intercommunication groove is located the first baffle in left side with between the second baffle.
Further, install high pressure airflow generator in the rear side cavity of lower floor, it constitutes the washing tank to have injected the washing liquid in the front side cavity of lower floor, fixed stop's front and back both sides face is fixed on the front and back both sides wall of washing tank.
Further, the base is the U-shaped plate structure of ninety degrees of rotation, and the U-shaped groove is the draw-in groove, the draw-in groove with drive belt looks adaptation, the spacing groove has been seted up to bilateral symmetry around the base, the grip block is the type of calligraphy structure, and the recess is the centre gripping groove.
Further, the sliding plate horizontally slides along the front-back direction, the sliding plate is located above the clamping mechanism, the first electromagnetic block is located right above the communicating groove, and the first electromagnetic block corresponds to the clamping block.
Further, slot and constant head tank have been seted up to fixed stop's inside, it has connect in the slot the jacking cylinder, the constant head tank with base looks adaptation, the constant head tank rear side be provided with spacing on fixed stop's the inner wall, spacing corresponds the spacing groove, the constant head tank right side the last fluting of having seted up of fixed stop, just the fluting is aimed at the washing terminals.
Furthermore, the lifting rod of the jacking cylinder penetrates through the slot to enter the positioning groove, and the upper side and the lower side of the port of the lifting rod are respectively provided with a second electromagnetic block and a motor.
Compared with the prior art, the invention has the beneficial effects that: this microscope slide high pressure cleaner, the structure sets up rationally, utilizes climbing mechanism to rotate fixture, realizes the automatic turn-over function of lens, replaces manual operation, improves the cleaning efficiency, and fixture's U type base opening direction around the upset changes simultaneously, and cooperation sliding plate and circulation drive belt avoid realizing automatic unloading of going up, facilitate the use, liberate the manpower.
Drawings
FIG. 1 is an overall schematic view of the structure of the present invention;
FIG. 2 is a top cross-sectional view of a structure according to the present invention;
FIG. 3 is a schematic view of a clamping mechanism of the present invention;
FIG. 4 is a schematic view of a slide plate of the present invention construction;
FIG. 5 is a bottom plan cross-sectional view of the structure of the present invention;
fig. 6 is a schematic diagram of a jacking mechanism and a fixed baffle plate of the structure of the invention.
In the figure: 1. an upper layer; 2. a lower layer; 3. a clamping mechanism; 4. a transmission belt; 5. a sliding plate; 6. a high pressure gas flow generator; 7. washing the spray head; 8. a jacking mechanism; 9. fixing a baffle plate; 11. an upper cover; 12. a first separator; 13. a second separator; 14. a communicating groove; 15. a fan; 21. a cleaning tank; 31. a limiting groove; 32. a base; 33. a card slot; 34. a clamping block; 35. a clamping groove; 51. a first electromagnetic block; 52. a sliding mechanism; 81. jacking a cylinder; 82. an electric motor; 83. a second electromagnetic block; 91. slotting; 92. inserting slots; 93. positioning a groove; 94. and (5) a limiting strip.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The first embodiment is as follows: referring to fig. 1-6, the present invention provides a technical solution: a microscope slide high pressure cleaner, comprising:
the upper layer 1 and the lower layer 2 are stacked up and down and connected together, and the upper layer 1 is communicated with the lower layer 2 through a communicating groove 14; the front side of upper strata 1 and lower floor 2 can adopt transparent material, conveniently observes the lens and washs the progress.
The clamping mechanism 3 is clamped on the transmission belt 4, the clamping mechanism 3 comprises a base 32 and a clamping block 34 arranged on the top surface of the base 32, the transmission belt 4 is of a circulating conveying structure, and one side of the transmission belt is input and the other side of the transmission belt is output.
The sliding plate 5 is used for adjusting the horizontal position of the clamping mechanism 3, one end of the sliding plate 5 penetrates through the first partition plate 12 to be connected with the sliding mechanism 52, and the other end of the sliding plate 5 is provided with a first electromagnetic block 51;
the high-pressure airflow generator 6 is arranged on the rear side of the lower layer 2, the high-pressure airflow generator 6 is connected with the washing nozzle 7, and a single washing nozzle 7 is used, so that the cost is saved and the control is convenient;
the jacking mechanism 8 is used for adjusting the vertical position of the clamping mechanism 3, and the jacking mechanism 8 comprises a jacking cylinder 81, a motor 82 and a second electromagnetic block 83;
the fixed baffle 9 is fixed on the bottom plate of the lower layer 2, the fixed baffle 9 is positioned right below the communicating groove 14, and the side surface of the fixed baffle 9 is provided with a notch 91.
When the microscope slide high-pressure cleaning machine is used, firstly, the upper cover 11 on the material side is opened, a microscope slide to be cleaned is sequentially inserted into the clamping groove 35 of the clamping mechanism 3, the upper cover 11 is closed, the cleaning machine is started, the transmission belt 4 conveys the clamping mechanism 3 towards the direction of the communication groove 14, when the clamping mechanism 3 arrives, the first electromagnetic block 51 adsorbs the clamping block 34, then the sliding mechanism 52 drives the sliding plate 5 to horizontally slide to the communication groove 14, at the moment, the clamping mechanism 3 is separated from the transmission belt 4, then the jacking mechanism 8 upwards lifts the second electromagnetic block 83, the second electromagnetic block 83 is adsorbed on the base 32, the first electromagnetic block 51 is separated from the clamping block 34, the jacking mechanism 8 drives the clamping mechanism 3 to downwards move, the clamping mechanism 3 falls into the positioning groove 93, the limiting groove 31 is connected with the limiting strip 94, the high-pressure gas flow generator 6 and the cleaning nozzle 7 clean the microscope slide, after the first surface is cleaned, jacking cylinder 81 upwards lifts fixture 3 once more, the lifting height is less than the lifting height last time, motor 82 drives second electromagnetic block 83 rotatory, make fixture 3 and the automatic turn-over of lens, jacking cylinder 81 resets downwards, carry out washing of second face, the whole piece lens is washed the back of accomplishing, climbing mechanism 8 sends fixture 3 back to upper strata 1, first electromagnetic block 51 adsorbs fixture 34, second electromagnetic block 83 separates with base 32, last glide mechanism 52 drives sliding plate 5 and transfers fixture 3 to the drive belt 4 of discharge side, first electromagnetic block 51 separates once more with fixture 34, drive belt 4 carries abluent lens and fixture 3 to keeping away from the direction of intercommunication groove 14, the next fixture 3 of discharge side reachs intercommunication groove 14 department simultaneously, wash according to above-mentioned step.
The second embodiment is as follows: the present embodiment is a further limitation of the first specific embodiment, as shown in fig. 1 and 2, the upper layer 1 is in a shape of a rounded rectangle box, an upper cover 11 is installed in the middle of the top surface of the upper layer 1, a first partition plate 12 and a second partition plate 13 are fixed inside the upper layer 1, a communication groove 14 is formed in the bottom plate of the upper layer 1, a fan 15 is embedded on the second partition plate 13, the second partition plate 13 is used as a boundary, the two sides of the second partition plate 13 are respectively a material discharging side and a material discharging side, the two upper covers 11 are separately covered on the material discharging side and the material discharging side, the material discharging and the material discharging are not interfered with each other, and the cleaned lens is dried by the fan 15.
The third concrete implementation mode: the second embodiment is further limited by the second embodiment, as shown in fig. 2, a semicircular groove is formed by the first partition plate 12 and the round corner close to the first partition plate 12, a sliding mechanism 52 is installed in the semicircular groove formed by the first partition plate 12 on the left side, the second partition plate 13 is located on the connecting line of the centers of the two semicircular circles, the length of the second partition plate 13 is smaller than the distance between the first partition plates 12, the second partition plate 13 is connected with the first partition plate 12 on the right side, the communication groove 14 is located between the first partition plate 12 on the left side and the second partition plate 13, the sliding mechanism 52 and a driving mechanism of the driving belt 4 are installed in the semicircular groove, a sealing mechanism is formed by matching with the top plate of the upper layer 1, and the contact of an operator is avoided.
The fourth concrete implementation mode: in the first embodiment, the high-pressure airflow generator 6 is installed in the rear cavity of the lower layer 2, the cleaning tank 21 is formed by injecting cleaning liquid into the front cavity of the lower layer 2, the front side and the rear side of the fixed baffle 9 are fixed on the front side wall and the rear side wall of the cleaning tank 21, the cleaning liquid in the cleaning tank 21 needs to be replaced periodically, and the water inlet and the water outlet are located on the side of the lower layer 2, which are not shown in the figure.
The fifth concrete implementation mode: this embodiment is the further limited of embodiment one, as shown in fig. 3, the base 32 is the U-shaped plate structure of rotating ninety degrees, the U-shaped groove is the draw-in groove 33, draw-in groove 33 and 4 looks adaptations of drive belt, spacing groove 31 has been seted up to bilateral symmetry around the base 32, grip block 34 is concave font structure, the recess is grip tank 35, it makes things convenient for fixture 3 to take off from drive belt 4 and load to set up U-shaped base 32, spacing strip 94 is blocked to spacing groove 31 card, make fixture 3 link to each other with fixed stop 9, when reducing and washing, the impact force that fixture 3 received.
The sixth specific implementation mode: the present embodiment is further limited to the first embodiment in which the sliding plate 5 horizontally slides in the front-rear direction, the sliding plate 5 is located above the clamping mechanism 3, the first electromagnetic block 51 is located directly above the communicating groove 14, the first electromagnetic block 51 corresponds to the clamping block 34, and only one of the first electromagnetic block 51 and the second electromagnetic block 83 is attached to the clamping mechanism 3 at the same time.
The seventh embodiment: this embodiment is further injectd for embodiment five, slot 92 and constant head tank 93 have been seted up to the inside of fixed stop 9, it has jacking cylinder 81 to peg graft in the slot 92, constant head tank 93 and base 32 looks adaptation, be provided with spacing strip 94 on the fixed stop 9's of constant head tank 93 rear side the inner wall, spacing strip 94 corresponds spacing groove 31, fluting 91 has been seted up on the fixed stop 9 on constant head tank 93 right side, and fluting 91 aims at washing terminals 7, fixed stop 9 is used for protecting fixture 3 and jacking mechanism 8, the impact force that the dispersion high pressure was washed and is brought.
The specific implementation mode is eight: as shown in fig. 4 and 5, the lifting rod of the lifting cylinder 81 passes through the slot 92 and enters the positioning groove 93, the second electromagnetic block 83 and the motor 82 are respectively installed on the upper side and the lower side of the port of the lifting rod, the motor 82 drives the second electromagnetic block 83 to rotate, and the clamping mechanism 3 is fixed on the second electromagnetic block 83, so that the direction of the clamping mechanism 3 is changed.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (5)
1. A microscope slide high pressure cleaner, comprising:
the upper layer (1) and the lower layer (2) are vertically stacked and connected together, and the upper layer (1) is communicated with the lower layer (2) through a communicating groove (14); the clamping mechanism (3) is clamped on the transmission belt (4), and the clamping mechanism (3) comprises a base (32) and a clamping block (34) arranged on the top surface of the base (32); the base (32) is of a U-shaped plate structure rotating ninety degrees, the U-shaped groove is a clamping groove (33), the clamping groove (33) is matched with the transmission belt (4), the front side and the rear side of the base (32) are symmetrically provided with limiting grooves (31), the clamping block (34) is of a concave structure, and the groove is a clamping groove (35); the sliding plate (5) is used for adjusting the horizontal position of the clamping mechanism (3), one end of the sliding plate (5) penetrates through the first partition plate (12) to be connected with the sliding mechanism (52), and the other end of the sliding plate (5) is provided with a first electromagnetic block (51); the high-pressure gas flow generator (6) is arranged at the rear side of the lower layer (2), and the high-pressure gas flow generator (6) is connected with the flushing nozzle (7); the jacking mechanism (8) is used for adjusting the vertical position of the clamping mechanism (3), and the jacking mechanism (8) comprises a jacking cylinder (81), a motor (82) and a second electromagnetic block (83); the fixed baffle (9) is fixed on the bottom plate of the lower layer (2), the fixed baffle (9) is located under the communicating groove (14), a slot (91) is formed in the side face of the fixed baffle (9), a slot (92) and a positioning groove (93) are formed in the fixed baffle (9), the jacking cylinder (81) is inserted in the slot (92), the positioning groove (93) is matched with the base (32), a limiting strip (94) is arranged on the inner wall of the fixed baffle (9) on the rear side of the positioning groove (93), the limiting strip (94) corresponds to the limiting groove (31), a slot (91) is formed in the fixed baffle (9) on the right side of the positioning groove (93), and the slot (91) is aligned with the washing nozzle (7); the lifting rod of the jacking cylinder (81) penetrates through the slot (92) to enter the positioning groove (93), and the upper side and the lower side of the port of the lifting rod are respectively provided with a second electromagnetic block (83) and a motor (82).
2. The microscope slide pressure washer according to claim 1, wherein: the improved fan box is characterized in that the upper layer (1) is in a round-corner rectangular box shape, an upper cover (11) is installed in the middle of the top surface of the upper layer (1), a first partition plate (12) and a second partition plate (13) are fixed inside the upper layer (1), a communicating groove (14) is formed in a bottom plate of the upper layer (1), and a fan (15) is embedded in the second partition plate (13).
3. The microscope slide pressure washer according to claim 2, wherein: first baffle (12) with be close to the fillet of first baffle (12) is around forming the semicircle groove, and glide machanism (52) are installed to the semicircle inslot that first baffle in the left side (12) formed, second baffle (13) are located the line in two semicircle centre of a circle, the length of second baffle (13) is less than interval between first baffle (12), second baffle (13) with first baffle in the right side (12) link to each other, intercommunication groove (14) are located first baffle in the left side (12) with between second baffle (13).
4. The microscope slide pressure washer according to claim 1, wherein: install high pressure airflow generator (6) in the rear side cavity of lower floor (2), it constitutes washing tank (21) to have injected the washing liquid in the front side cavity of lower floor (2), the front and back both sides face of fixed stop (9) is fixed on the wall of the front and back both sides of washing tank (21).
5. The microscope slide pressure washer according to claim 1, wherein: the sliding plate (5) horizontally slides along the front-back direction, the sliding plate (5) is located above the clamping mechanism (3), the first electromagnetic block (51) is located right above the communication groove (14), and the first electromagnetic block (51) corresponds to the clamping block (34).
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CN202110683665.7A CN113492138B (en) | 2021-06-21 | 2021-06-21 | Microscope slide high pressure cleaner |
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CN202110683665.7A CN113492138B (en) | 2021-06-21 | 2021-06-21 | Microscope slide high pressure cleaner |
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CN113492138B true CN113492138B (en) | 2022-09-06 |
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