Coated plate dryer
Through the design of the inclined plate structure and ventilation pipe system, hot air flow and external suction ring suction, the problem of poor drying effect of microporous plates is solved, rapid drying and drying effect of water-free stains is achieved, and the cleanliness of strain culture is improved.
Patent Information
- Application Number
- CN202422313909.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-23
AI Technical Summary
In the prior art, the drying effect of microwell plates is poor and the drying time is long, which makes it easy to remain water stains affect the culture of the strain.
A coated plate dryer is designed to dry the pits of the microwell plate through the inclined plate structure and the ventilation pipe system using hot air flow, and absorb water vapor in combination with an external suction ring to ensure rapid drying without residue.
It improves the drying efficiency of microwell plates, avoids water stains and improves the cleanliness of strain culture.
Smart Images

Figure CN223138218U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of test instruments, in particular to a coated plate dryer. Background Art
[0002] A coated plate, also known as a microplate, is of great significance in operations such as strain cultivation. Among them, when using a coated plate, it needs to be strictly cleaned. After cleaning, in order to avoid affecting the cultivation of strains, it needs to be dried. Currently, when drying, a dryer is used for drying. However, with this drying method, the cleaning water in the concave part of the microplate is not convenient to dry, and the drying process takes a long time. After drying, water stains are likely to remain in the concave pits, thus affecting the cultivation of strains. Content of the Utility Model
[0003] The utility model provides a coated plate dryer to solve the deficiencies of the above-mentioned prior art, solve the problem of poor drying effect when drying a microplate, and has strong practicability.
[0004] In order to achieve the purpose of the utility model, the following technology is proposed:
[0005] A coated plate dryer includes a first support. A first inclined plate is provided on the first support. Multiple spring pins are inserted through the first inclined plate. A first spring is sleeved on the spring pins. The inner end of the spring pin is provided with a placement plate. L-shaped plates are formed on both sides of the placement plate. The first spring is located between the placement plates. It further includes a second support. A second inclined plate is provided on the second support. The second inclined plate has the same inclination direction and the same inclination angle as the first inclined plate. Multiple mounting rods are provided on the second inclined plate. The other end of the mounting rod is provided with a third inclined plate. Multiple air vent pipes are inserted through the third inclined plate. A plurality of holes are formed in the outer periphery of the air vent pipe. The outer end of the air vent pipe is installed with a cavity plate. The cavity plate is communicated with the air vent pipe. The mounting rod passes through the cavity plate. By rotating the placement plate, the edge of the microplate can be limited to ensure that the placed microplate is in an inclined posture, and this posture facilitates the automatic dropping of cleaning water. The provided air vent pipe can introduce hot air into the concave pit and evaporate and blow out the water vapor through the hot air, thereby improving the drying efficiency and effect at the concave pit of the microplate.
[0006] Further, in order to enable the inner end of the air vent pipe to pass through the concave pit, a rotation hole is formed in the second inclined plate. A pair of convex plates are provided on the back side of the second inclined plate. The outer end of the convex plate is provided with a rotation top plate. The rotation top plate is rotatably arranged in the rotation hole. The inner end of the rotation top plate acts on the cavity plate.
[0007] Further, in order to facilitate the rotation operation of the rotation top plate, the inner end of the rotation top plate is in an arc shape.
[0008] Further, in order to prevent the inner end of the vent pipe from abutting against the inner wall of the pit and to ensure stability through the provided second spring, a second spring is sleeved on the mounting rod.
[0009] Further, in order to quickly discharge the clean water, an outer suction ring is sleeved on the vent pipe. A connecting pipe is communicated with the outer suction ring. A plurality of suction holes are formed in the outer suction ring. The outer suction ring is mounted on the third inclined plate.
[0010] The advantages of the above technical solutions are as follows:
[0011] The utility model can perform a drying operation on a microplate. When drying, the drying efficiency can be improved, and water stains can be avoided during drying. Description of the Drawings
[0012] In order to make the objectives, technical solutions and advantages of the utility model clearer, the utility model will be further described in detail below with reference to the drawings.
[0013] Figure 1 The three-dimensional structure of one of the embodiments is shown. Figure 1 。
[0014] Figure 2 The three-dimensional structure of one of the embodiments is shown. Figure 2 。
[0015] Figure 3 The three-dimensional structure diagram of the coating plate is shown. Detailed Description of the Embodiments
[0016] As Figures 1 to 3 shown, a coating plate dryer includes a first support 1. A first inclined plate 10 is provided on the first support 1. A plurality of spring pins 11 are inserted through the first inclined plate 10. A first spring 14 is sleeved on the spring pins 11. A placing plate 12 is provided at the inner end of the spring pins 11. L-shaped plates 13 are formed on both sides of the placing plate 12. The first spring 14 is located between the placing plates 12.
[0017] It further includes a second support 2. A second inclined plate 20 is provided on the second support 2. The inclination direction of the second inclined plate 20 is the same as that of the first inclined plate 10, and the inclination angles are equal. A plurality of mounting rods 21 are provided on the second inclined plate 20. A second spring 23 is sleeved on the mounting rod 21. The other end of the mounting rod 21 is provided with a third inclined plate 22. A plurality of vent pipes 27 are penetrated through the third inclined plate 22. A plurality of holes 28 are formed in the outer periphery of the vent pipe 27. A cavity plate 26 is installed at the outer end of the vent pipe 27. The cavity plate 26 is communicated with the vent pipe 27. The mounting rod 21 passes through the cavity plate 26. The second spring 23 is located between the third inclined plate 22 and the cavity plate 26. An outer suction ring 29 is sleeved on the vent pipe 27. A connecting pipe 30 is communicated with the outer suction ring 29. A plurality of suction holes are formed in the outer suction ring 29. The outer suction ring 29 is installed on the third inclined plate 22.
[0018] A rotation hole is formed in the second inclined plate 20. A pair of convex plates 24 are provided on the back side of the second inclined plate 20. A rotation top plate 25 is provided at the outer end of the convex plate 24. The inner end of the rotation top plate 25 is in an arc structure. The rotation top plate 25 is rotatably arranged in the rotation hole. The inner end of the rotation top plate 25 acts on the cavity plate 26.
[0019] During the operation of this embodiment, the operator passes the convex edge on the microplate to be dried through the L-shaped plate 13, and the lower end of the edge of the microplate is limited by the end stop strip 15.
[0020] Then the operator rotates the rotation top plate 25. During the rotation of the rotation top plate 25, the inner end of the rotation top plate 25 will act on the back side of the cavity plate 26, so that the cavity plate 26 and the vent pipe 27 thereon move into the pit 40 of the main body 4 of the microplate. At the same time, when the vent pipe 27 moves, the second spring 23 will be compressed. The main body 4 of the placed microplate will move towards the vent pipe 2 under the action of the first spring 14, and the outer suction ring 29 will block the outer end of the pit 40.
[0021] Then, hot air is introduced into the cavity plate 26, and the hot air passes through the cavity plate 26 and is blown into the pit 40 through the vent pipe 27, and the drying operation of the pit 40 is achieved through the vent pipe 27. During the drying process, the suction device adsorbs the water vapor in the pit 40 through the outer suction ring 29 until the drying operation of the microplate is completed.
[0022] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention is also intended to include these changes and modifications.
Claims
1. A coated plate dryer, characterized in that, It includes a first support (1). A first inclined plate (10) is provided on the first support (1). A plurality of spring pins (11) are inserted through the first inclined plate (10). A first spring (14) is sleeved on the spring pin (11). A placement plate (12) is provided at the inner end of the spring pin (11). L-shaped plates (13) are formed on both sides of the placement plate (12). The first spring (14) is located between the placement plate (12) and the placement plate (12). It further includes a second support (2). A second inclined plate (20) is provided on the second support (2). The second inclined plate (20) has the same inclination direction as the first inclined plate (10) and the same inclination angle. A plurality of mounting rods (21) are provided on the second inclined plate (20). A third inclined plate (22) is provided at the other end of the mounting rod (21). A plurality of ventilation pipes (27) are inserted through the third inclined plate (22). A plurality of holes (28) are formed in the outer periphery of the ventilation pipe (27). A cavity plate (26) is installed at the outer end of the ventilation pipe (27). The cavity plate (26) is communicated with the ventilation pipe (27). The mounting rod (21) passes through the cavity plate (26).
2. The coated plate dryer according to claim 1, characterized in that, A rotation hole is formed in the second inclined plate (20). A pair of convex plates (24) are provided on the back side of the second inclined plate (20). A rotation top plate (25) is provided at the outer end of the convex plate (24). The rotation top plate (25) is rotatably arranged in the rotation hole. The inner end of the rotation top plate (25) acts on the cavity plate (26).
3. The coated plate dryer according to claim 2, characterized in that, The inner end of the rotation top plate (25) is of an arc structure.
4. The coated plate dryer according to claim 1, characterized in that, A second spring (23) is sleeved on the mounting rod (21). The second spring (23) is located between the third inclined plate (22) and the cavity plate (26).
5. The coated plate dryer according to claim 1, characterized in that, An outer suction ring (29) is sleeved on the ventilation pipe (27). A connecting pipe (30) is communicated with the outer suction ring (29). A plurality of suction holes are formed in the outer suction ring (29). The outer suction ring (29) is installed on the third inclined plate (22).