Heating guide table
By using electromagnetic heating devices and heat transfer column design in the heating guide table, combined with heat conductive materials and insulation layers, the problems of heating efficiency and uniformity are solved, and efficient and stable heating effects are achieved.
Patent Information
- Application Number
- CN202422750826.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-11
AI Technical Summary
Existing heating methods have limitations in heating efficiency and uniformity. Electric hot plates heat quickly but are prone to overheating, while water baths heat slowly and are not suitable for rapid testing.
The electromagnetic heating device and heat transfer column design are adopted. The heat transfer column contacts the table to conduct heat, and the height adjustment component can adapt to the different thicknesses of the objects to be tested. The table adopts thermal conductive materials and insulation layer to improve the heat conduction efficiency.
The temperature uniformity and efficiency of heating are improved, and it can adapt to the different thicknesses of the products to be tested. The heating process is stable and flexible.
Smart Images

Figure CN223393466U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of heating equipment, in particular to a heating guide table. Background Art
[0002] Heating samples for inspection is a common operation in laboratories and industrial production lines. A variety of heating methods are available, including electric heating and water bath heating. However, these methods have limitations in terms of heating efficiency and uniformity.
[0003] Currently, common solutions involve using hot plates or water baths. While hot plates offer rapid heating, they often result in excessive heating of the test sample. While water baths provide a more uniform heating environment, they are slow, impacting efficiency. While water baths offer uniform heating, they are slow and cannot meet the demands of rapid testing. Therefore, a heating guide table that can both guarantee consistent heating temperature and improve heating efficiency is urgently needed to address these issues. Utility Model Content
[0004] The present application provides a heating guide table that can ensure heating temperature stability while improving heating efficiency.
[0005] The present application provides a heating guide table, which adopts the following technical solutions:
[0006] A heating guide table includes a table top, an electromagnetic heating device is provided at the bottom of the table top, and the electromagnetic heating device includes an electromagnetic sheet and a heat transfer column provided on the electromagnetic sheet. The heat transfer column is in partial contact with the table top and transfers heat to the table top by heat conduction, thereby heating the object to be inspected. The heat transfer column is provided with a height adjustment component, and the height adjustment component is used to adjust the height of the heat transfer column to accommodate objects to be inspected of different thicknesses.
[0007] By adopting the above technical solution, a heating guide table designed by the utility model, when in use, uses the electromagnetic plate in the electromagnetic heating device to convert electrical energy into thermal energy, and then uses the heat transfer housing on the electromagnetic plate to transfer the heat to the table surface, thereby heating the screen to be tested on the table surface. At the same time, a height adjustment component is also provided on the heat transfer column, and the height of the heat transfer column can be adjusted by the height adjustment component, so that heating can be performed on the products to be tested of different thicknesses. In this way, the heating temperature of different products to be tested can be guaranteed. In summary, this heating method using heat conduction of the heat transfer column improves the heating efficiency.
[0008] Preferably, the table top is made of heat-conducting material to improve its heat conduction efficiency.
[0009] By adopting the above technical solution, when in use, the table top is made of heat-conducting material, which is convenient for receiving and transmitting heat, thereby ensuring the temperature stability of heating.
[0010] Preferably, a transparent window is provided above the table top, the transparent window is made of heat-resistant material, and the transparent window is detachably connected to the table top, so as to facilitate observation of the heating condition of the product to be tested.
[0011] By adopting the above technical solution, in order to facilitate observation of the heating condition of the product to be tested during use, a transparent window is added to the table for observation. At the same time, in order to prevent the transparent window from being affected by temperature, it is made of heat-resistant material.
[0012] Preferably, a thermal insulation layer is provided around the table top to reduce heat loss and improve heating efficiency.
[0013] By adopting the above technical solution, in order to reduce the heat loss of the table top during the heat conduction process when in use, an insulation layer is provided around the table top.
[0014] Preferably, the heat transfer columns are evenly arranged around the table to ensure that the heating temperature in the center of the table does not rise excessively.
[0015] By adopting the above technical solution, when in use, the heat transfer columns are respectively arranged on the four sides of the table. Such a design can prevent the temperature in the table from being too high, thereby affecting the heating of the product to be tested.
[0016] Preferably, the height adjustment assembly includes a sleeve rod arranged above the electromagnetic plate, a groove is provided in the sleeve rod, the heat transfer column is slidably connected in the groove, a connecting plate is provided on the outside of the heat transfer column, through holes are opened on both sides of the connecting plate, a screw is provided on the top of the sleeve rod, the screw passes through the through hole and is fixed with a nut.
[0017] By adopting the above technical solution, when in use, the heat transfer column and the sleeve rod are first slidably connected to each other to ensure that the heat transfer column can slide in the groove inside the sleeve rod. A screw is provided on the top of the sleeve rod. The screw and the connecting plate on the outside of the heat transfer column are first interlaced with each other, and then fixed with two nuts. By loosening and tightening the nut, the position of the connecting plate on the screw is moved to adjust the height of the heat transfer column, thereby heating the objects to be tested with different thicknesses.
[0018] Preferably, the sleeve rod is made of heat-conducting material, and the interior of the groove adopts a hollow design to ensure that the heat transfer column can transfer the heat of the electromagnetic plate.
[0019] By adopting the above technical solution, when in use, the sleeve rod is made of heat-conducting material, which is convenient for conducting heat together with the heat transfer column. The groove inside it adopts a hollow design, which is convenient for transferring the heat generated by the electromagnetic sheet to the heat transfer column.
[0020] Preferably, the electromagnetic heating device further comprises a body at the bottom of the electromagnetic sheet, the body being used to connect to a power source to transfer electrical energy to the electromagnetic sheet, and the body being provided with fixing holes for fixing the table, thereby improving the heating stability of the product to be tested.
[0021] By adopting the above technical solution, when in use, an organic body is set at the bottom of the electromagnetic sheet, which is used to connect to the power supply. At the same time, the organic body can also fix the table above it using the fixing holes to keep it stable, making it convenient to heat the object to be tested.
[0022] In summary, this application has the following beneficial effects:
[0023] 1. This utility model designs a heating guide table. By installing an electromagnetic heating device at the bottom of the table and setting heat transfer columns on the electromagnetic sheet, the heat transfer columns are in partial contact with the table surface. Heat can be efficiently transferred to the table surface through heat conduction, achieving effective heating of the object to be tested.
[0024] 2. The utility model designs a heating guide platform. The height adjustment component provided on the heat transfer column can adjust the height of the heat transfer column to adapt to the different thicknesses of the products to be tested, thereby improving the flexibility and applicability of heating.
[0025] 3. The utility model designs a heating guide table, in which the table top, sleeve rod, etc. are made of heat-conducting materials, and an insulation layer is also provided on the table top, which improves the overall heat conduction efficiency and further optimizes the heating effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a structural diagram of an embodiment;
[0027] Figure 2 for Figure 1 A magnified schematic diagram of point A in the middle;
[0028] Figure 3 A schematic diagram showing the structure of the table in the embodiment;
[0029] Explanation of the accompanying reference numerals: 1. Table; 2. Electromagnetic heating device; 21. Electromagnetic plate; 22. Heat transfer column; 23. Machine body; 3. Height adjustment assembly; 31. Sleeve rod; 32. Groove; 33. Connecting plate; 34. Screw; 4. Transparent window; 5. Insulation layer; 6. Fixing hole. DETAILED DESCRIPTION
[0030] The present invention will be described in further detail below with reference to the accompanying drawings. Like components are denoted by like reference numerals. It should be noted that the terms "front," "rear," "left," "right," "upper," "lower," "bottom," and "top" used in the following description refer to directions in the accompanying drawings, and the terms "inner" and "outer" refer to directions toward or away from the geometric center of a particular component, respectively.
[0031] The utility model discloses a heating guide table, such as Figure 1 As shown, the apparatus comprises a table top 1, with an electromagnetic heating device 2 disposed at the bottom thereof. The electromagnetic heating device 2 comprises an electromagnetic plate 21 and a heat transfer column 22 disposed on the electromagnetic plate 21. The heat transfer column 22 partially contacts the table top 1 and transfers heat to the table top 1 through heat conduction, thereby heating the object to be inspected. The table top 1 is made of a thermally conductive material, including but not limited to aluminum alloys and copper alloys. The material should have high thermal conductivity and low heat capacity to improve its thermal conductivity efficiency. A transparent window 4 is disposed above the table top 1. The transparent window 4 is made of a heat-resistant material, specifically high-temperature glass. High-temperature glass has high heat resistance and good transparency, making it convenient to observe the heating process. The transparent window 4 is detachably connected to the table top 1. The detachable connection methods include snap-on connection, screw connection, etc. This design not only ensures safety during use but also facilitates future maintenance. An insulation layer 5 is disposed around the table top 1 to reduce heat loss and improve heating efficiency. In addition, the surface of the insulation layer 5 can be covered with a protective layer to further enhance its durability. The heat transfer columns 22 are evenly arranged around the table 1 to ensure that the heating temperature in the center of the table 1 does not rise excessively. The heat transfer columns 22 are designed as a cylindrical structure. The cylindrical structure is relatively simple to process and manufacture, and has a larger contact area, which is conducive to improving heat conduction efficiency.
[0032] The heat transfer column 22 is provided with a height adjustment component 3, which is used to adjust the height of the heat transfer column 22 to accommodate different thicknesses of the test objects. The height adjustment component 3 includes a sleeve rod 31 provided above the electromagnetic plate 21. The sleeve rod 31 is provided with a groove 32. The heat transfer column 22 is slidably connected to the groove 32. The size of the groove 32 is designed to ensure that the heat transfer column 22 can slide freely therein to meet the heating requirements of the test objects of different thicknesses. The outer side of the heat transfer column 22 is provided with a connecting plate 33. The connecting plate 33 is annular and has through holes on both sides of the connecting plate 33. A screw 34 is provided at the top of the sleeve rod 31. The screw 34 passes through the through hole and is fixed with a nut. The nut is made of stainless steel to prevent oxidative corrosion caused by high temperature. The sleeve rod 31 is made of a heat-conducting material, and the interior of the groove 32 is hollow, ensuring that the heat transfer column 22 can transfer the heat from the electromagnetic plate 21.
[0033] The electromagnetic heating device 2 also includes a body 23 at the bottom of the electromagnetic plate 21. The body 23 is used to connect to the power supply and transmit electrical energy to the electromagnetic plate 21. The body 23 is provided with fixing holes 6, which are used to fix the table 1, thereby improving the stability of the heating of the test object. The number and distribution of fixing holes 6 will be optimized according to the specific size of the table 1 to ensure the stability of the table 1 throughout the heating process. In addition, to improve the overall operation convenience of the device, a control panel can be integrated into the body, allowing the user to more conveniently and accurately control the heating temperature.
[0034] Working Principle: This utility model designs a heating guide table that comprehensively improves its heat transfer efficiency by optimizing the design of the electromagnetic heating device 2. Specifically, by installing the electromagnetic heating device 2 at the bottom of the table 1, along with heat transfer columns 22 made of highly efficient thermally conductive materials and a height adjustment assembly 3, not only does this effectively ensure uniform heat transfer, but it also ensures structural stability and adaptability. Furthermore, the optimized design of the table 1, along with the addition of a transparent window 4 and an insulation layer 5, further enhances the overall performance of the device.
[0035] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A heating guide table, characterized in that: The invention comprises a table top (1), wherein an electromagnetic heating device (2) is provided at the bottom of the table top (1), wherein the electromagnetic heating device (2) comprises an electromagnetic sheet (21) and a heat transfer column (22) provided on the electromagnetic sheet (21), wherein the heat transfer column (22) is in partial contact with the table top (1) and transfers heat to the table top (1) through heat conduction, thereby heating the object to be inspected, and wherein a height adjustment component (3) is provided on the heat transfer column (22), wherein the height adjustment component (3) is used to adjust the height of the heat transfer column (22), thereby adapting to the object to be inspected of different thicknesses.
2. A heating guide table according to claim 1, characterized in that: The table top (1) is made of heat-conducting material to improve its heat conduction efficiency.
3. A heating guide platform according to claim 1, characterized in that: A transparent window (4) is provided above the table (1); the transparent window (4) is made of heat-resistant material; the transparent window (4) is detachably connected to the table (1), making it convenient to observe the heating condition of the product to be tested.
4. A heating guide table according to claim 1, characterized in that: A heat-insulating layer (5) is provided around the tabletop (1) to reduce heat loss and improve heating efficiency.
5. The heating guide platform according to claim 1, characterized in that: The heat transfer columns (22) are evenly arranged around the table (1) to ensure that the heating temperature at the center of the table (1) does not rise excessively.
6. The heating guide platform according to claim 1, characterized in that: The height adjustment assembly (3) includes a sleeve rod (31) arranged above the electromagnetic plate (21), a groove (32) is arranged in the sleeve rod (31), the heat transfer column (22) is slidably connected in the groove (32), a connecting plate (33) is arranged on the outside of the heat transfer column (22), through holes are opened on both sides of the connecting plate (33), a screw rod (34) is arranged on the top of the sleeve rod (31), and the screw rod (34) passes through the through hole and is fixed on a nut.
7. A heating guide platform according to claim 6, characterized in that: The sleeve rod (31) is made of heat-conducting material, and the interior of the groove (32) is hollow, ensuring that the heat transfer column (22) can transfer the heat of the electromagnetic sheet (21).
8. The heating guide platform according to claim 1, characterized in that: The electromagnetic heating device (2) further comprises a body (23) at the bottom of the electromagnetic sheet (21), the body (23) being used to connect to a power source to transmit electrical energy to the electromagnetic sheet (21), and a fixing hole (6) being provided on the body (23), the fixing hole (6) being used to fix the table (1), thereby improving the heating stability of the product to be tested.