Tablet baking machine
By designing the aluminum heating plate and heat-conducting plate groove structure of the slide baking machine, efficient removal of water stains from glass slides was achieved, solving the problem of low drying efficiency after specimen staining and improving the slide output speed.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HANGZHOU JUNAN DIGITAL DIAGNOSIS TECH CO LTD
- Filing Date
- 2023-11-14
- Publication Date
- 2026-04-21
AI Technical Summary
In existing technologies, natural air drying of stained specimens is inefficient and cannot effectively remove water stains.
Design a film baking machine, which includes an aluminum heating plate and a heat-conducting plate groove. The aluminum heating plate is uniformly heated by a heating block, and the heat-conducting plate groove forms an independent oven. The temperature is controlled to bake the glass slides without damaging them. The temperature is precisely adjusted using a temperature control panel.
It improves the drying efficiency of glass slides, avoids secondary damage, and significantly speeds up the output of stained glass slides.
Smart Images

Figure CN224152155U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of medical equipment technology, specifically relating to a tablet roaster. Background Technology
[0002] Currently, the staining and rinsing of specimens cannot be wiped because of the water stains on the specimens; they can only be air-dried. This method is too inefficient, and it is necessary to provide a more efficient solution. Utility Model Content
[0003] The purpose of this invention is to provide a wafer baking machine to solve the above-mentioned problems existing in the prior art.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] A sheet baking machine includes a sheet baking machine body, a sheet baking box with an open top inside the sheet baking machine body, an aluminum heating plate installed inside the sheet baking machine body at the lower end of the sheet baking box, and a heating block installed on the bottom surface of the aluminum heating plate; a plurality of parallel heat-conducting plates are installed on the top surface of the aluminum heating plate and arranged sequentially from one end of the aluminum heating plate to the other end, and any two adjacent heat-conducting plates are spaced apart and combined to form a heat-conducting plate groove for placing glass slides.
[0006] As a preferred technical solution of this utility model, baffles are installed on both sides of the top surface of the aluminum heating plate, and all heat-conducting plates are installed between the two baffles.
[0007] As a preferred technical solution of this utility model, all heat-conducting plates include an inclined support portion and a first horizontal connecting portion connected to the lower end of the inclined support portion. All inclined support portions are parallel to each other, and each first horizontal connecting portion is provided with a first bolt hole to facilitate bolt connection with the aluminum heat-receiving plate.
[0008] As a preferred technical solution of this utility model, each heat-conducting plate groove is provided with an L-shaped limiting plate. Each L-shaped limiting plate includes a vertical limiting part and a second horizontal connecting part connected to the lower end of the vertical limiting part. The second horizontal connecting part is provided with a second bolt hole corresponding to the first bolt hole. The inclined support part corresponding to the first horizontal connecting part on the bottom surface of each heat-conducting plate groove is combined with the vertical limiting part to form a V-shaped limiting groove.
[0009] As a preferred technical solution of this utility model, the bottom surface of the aluminum heating plate is connected to four support columns, the four support columns are connected to the inner bottom surface of the baking machine body, and the heating block is located between the four support columns.
[0010] As a preferred technical solution of this utility model, each heat-conducting plate has a limiting part at the upper end that seals the upper end of the heat-conducting plate groove, and the limiting part has at least two glass slide placement openings.
[0011] As a preferred technical solution of this utility model, the body of the baking machine is also equipped with a temperature control panel, which is electrically connected to the heating block.
[0012] Beneficial effects: In practice, this utility model uses a heating block to uniformly heat an aluminum heating plate, and then connects the aluminum heating plate with a heat-conducting plate to achieve the same level of heating as the heat-conducting plate. This allows each heat-conducting plate groove to form an individual oven, which can hold stained slides or bake different slides together. It is only necessary to control the temperature of the heat-conducting plate to ensure that the slides are baked without damaging the imaging. The slides are placed with the head end facing upwards and the tail end at an angle in the groove, which makes it convenient to handle the slides. This allows for better and more convenient baking of the slides, drying the surface water stains of the stained and rinsed slides. On the one hand, the baking machine will not cause secondary damage to the slides, and on the other hand, it greatly speeds up the output efficiency of stained slides. Attached Figure Description
[0013] Figure 1 This is a three-dimensional schematic diagram of the present invention;
[0014] Figure 2 This is a partial structural schematic diagram of the present invention;
[0015] Figure 3 This is a schematic diagram of the internal structure of the heat-conducting plate groove in this utility model.
[0016] In the diagram: 1-Baker body; 2-Aluminum heating plate; 3-Heating block; 4-Heat-conducting plate; 5-Glass slide; 6-Baffle; 7-L-Limiting plate; 8-Support column; 9-Temperature control panel. Detailed Implementation
[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the present utility model will be briefly introduced below in conjunction with the accompanying drawings and descriptions of the embodiments or the prior art. Obviously, the following description of the structure of the accompanying drawings is only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. It should be noted that the description of these embodiments is used to help understand this utility model, but does not constitute a limitation on this utility model.
[0018] Example:
[0019] like Figures 1-3As shown, this embodiment provides a wafer baking machine, including a wafer baking machine body 1. The wafer baking machine body 1 has a wafer baking chamber with an open top. An aluminum heating plate 2 installed inside the wafer baking chamber is located at the lower end of the wafer baking chamber. A heating block 3 is installed on the bottom surface of the aluminum heating plate 2. In practice, the aluminum heating plate 2 can be heated evenly by the heating of the heating block 3. Preferably, the heating block 3 is embedded in the bottom surface of the aluminum heating plate 2, thereby improving the heat conduction effect of the aluminum heating plate 2. Multiple parallel heat-conducting plates 4 are installed on the top surface of the aluminum heating plate 2, arranged sequentially from one end of the aluminum heating plate 2 to the other. The heating plate and the heat-conducting plate are in contact to achieve the desired heating level. Any two adjacent heat-conducting plates 4 are spaced apart and combined to form a heat-conducting plate groove for placing the glass slide 5. In practice, each heat-conducting plate groove is an individual groove that can hold stained glass slides or bake different glass slides together. It is only necessary to control the heat temperature of the heat-conducting plate to ensure that the glass slides are baked without damaging the imaging. The glass slides are placed with the head end facing up and the tail end at an angle in the groove, which makes it convenient to pick up and put down the glass slides. This allows for better and more convenient baking of the glass slides and greatly speeds up the output efficiency of stained glass slides.
[0020] In practice, this invention uses heating block 3 to uniformly heat aluminum heating plate 2, and then connects aluminum heating plate 2 with heat-conducting plate to achieve the same level of heating as the heat-conducting plate. This allows each heat-conducting plate groove to form an individual oven, which can hold stained slides or bake different slides together. It is only necessary to control the temperature of the heat-conducting plate to ensure that the slides are baked without damaging the imaging. The slides are placed with the head end facing upwards and the tail end at an angle in the groove, which makes it convenient to handle the slides and allows for better and more convenient baking of the slides. The stained and rinsed slides are baked to dry the surface water stains. On the one hand, the baking machine will not cause secondary damage to the slides, and on the other hand, it greatly speeds up the output efficiency of stained slides.
[0021] As a preferred embodiment of this example, it should be further noted that baffles 6 are installed on both sides of the top surface of the aluminum heating plate 2, and all the heat-conducting plates 4 are installed between the two baffles 6 to prevent the glass sheet 5 from falling off the sides of the heat-conducting plate groove and to ensure the stability of the glass sheet 5 when it is dried.
[0022] As a preferred embodiment of this example, it should be further explained that all heat-conducting plates 4 include an inclined support portion and a first horizontal connecting portion connected to the lower end of the inclined support portion. All inclined support portions are parallel to each other, which can make the heat-conducting plate groove have enough space to place the glass sheet 5 in a minimal space. Each first horizontal connecting portion is provided with a first bolt hole to facilitate its bolt connection with the aluminum heat-receiving plate 2, ensuring the stability of the heat-conducting plate 4.
[0023] As a preferred embodiment of this example, it should be further explained that each heat-conducting plate groove is provided with an L-limiting plate 7. Each L-limiting plate 7 includes a vertical limiting part and a second horizontal connecting part connected to the lower end of the vertical limiting part. The second horizontal connecting part is provided with a second bolt hole corresponding to the first bolt hole. Thus, the heat-conducting plate 4 and the L-limiting plate 7 can be installed on the aluminum heat-receiving plate 2 at one time by bolts, which is stable and convenient. The inclined support part corresponding to the first horizontal connecting part on the bottom surface of each heat-conducting plate groove is combined with the vertical limiting part to form a V-shaped limiting groove. This allows the bottom of the V-shaped limiting groove to more stably hold the bottom of the glass slide 5, thereby making the placement of the glass slide 5 more stable.
[0024] As a preferred embodiment of this example, it should be further explained that the bottom surface of the aluminum heating plate 2 is connected to four support columns 8, which are connected to the inner bottom surface of the baking machine body 1. The heating block 3 is located between the four support columns 8. The four support columns 8 can be made of a material with poor thermal conductivity, which can reduce the heat dissipation of the aluminum heating plate 2.
[0025] As a preferred embodiment of this example, it should be further explained that each heat-conducting plate 4 has a limiting part that seals the upper end of the heat-conducting plate groove. The limiting part has at least two glass slide placement openings, so that more glass slides 5 can be placed, and the baking efficiency is higher.
[0026] As a preferred embodiment of this invention, it should be further explained that the slide baking machine body 1 is also equipped with a temperature control panel 9, which is electrically connected to the heating block 3. The temperature control panel can be customized to set the temperature (15-45℃). After the machine is turned on, the heating block starts to heat to the set temperature, thereby effectively controlling the temperature. On the one hand, the slide baking machine will not cause secondary damage to the slides, and on the other hand, it greatly improves the slide output efficiency.
[0027] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.
Claims
1. A chip roaster characterized by comprising: The device includes a sheet baking machine body (1), a sheet baking box with an open top is provided inside the sheet baking machine body (1), an aluminum heating plate (2) installed inside the sheet baking machine body (1) is provided at the lower end of the sheet baking box, and a heating block (3) is installed on the bottom surface of the aluminum heating plate (2); a plurality of parallel heat-conducting plates (4) are installed on the top surface of the aluminum heating plate (2) and are arranged sequentially from one end of the aluminum heating plate (2) to the other end, and any two adjacent heat-conducting plates (4) are spaced apart and combined to form a heat-conducting plate groove for placing glass slides (5).
2. A chip roaster as claimed in claim 1, wherein Both sides of the top surface of the aluminum heat-receiving plate (2) are equipped with baffles (6), and all the heat-conducting plates (4) are installed between the two baffles (6).
3. A chip roaster as claimed in claim 1, wherein All heat-conducting plates (4) include an inclined support portion and a first horizontal connecting portion connected to the lower end of the inclined support portion. All inclined support portions are parallel to each other. Each first horizontal connecting portion is provided with a first bolt hole to facilitate bolt connection with the aluminum heat-receiving plate (2) by bolts.
4. A chip roaster as claimed in claim 3, wherein Each heat-conducting plate groove is provided with an L-limiting plate (7). Each L-limiting plate (7) includes a vertical limiting part and a second horizontal connecting part connected to the lower end of the vertical limiting part. The second horizontal connecting part is provided with a second bolt hole corresponding to the first bolt hole. The inclined support part corresponding to the first horizontal connecting part on the bottom surface of each heat-conducting plate groove is combined with the vertical limiting part to form a V-shaped limiting groove.
5. A chip roaster as claimed in claim 1, wherein The bottom surface of the aluminum heating plate (2) is connected to four support columns (8), which are connected to the inner bottom surface of the baking machine body (1). The heating block (3) is located between the four support columns (8).
6. A chip roaster as claimed in claim 1, wherein Each heat-conducting plate (4) has a limiting part at the upper end that seals the upper end of the heat-conducting plate groove, and at least two glass slide placement openings are provided on the limiting part.
7. A chip roaster as claimed in any one of claims 1 to 6, wherein The main body (1) of the baking machine is also equipped with a temperature control panel (9), which is electrically connected to the heating block (3).