Antibacterial and antiviral cast iron enamel furnace frame

By combining a sliding groove, a slider, a threaded rod, and a gear structure, the adjustability of the cast iron enamel stove rack is achieved, solving the problem that traditional cast iron enamel stove racks cannot adapt to the size of the pot, improving cooking stability and safety, and giving it antibacterial and antiviral functions.

CN224206665UActive Publication Date: 2026-05-08U JIN QINGDAO PORCELAIN ENAMEL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
U JIN QINGDAO PORCELAIN ENAMEL
Filing Date
2025-05-20
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Traditional cast iron enamel stove racks cannot be adjusted according to the size of the pot, resulting in insufficient or uneven support surface, which affects the stability and safety of cooking.

Method used

By setting up slides, sliders, and support frames, combined with threaded rods, gear structures, and drive components, the adjustability of the support frame is achieved, and the rotating rod is fixed by threaded grooves and threaded sleeves to ensure the adaptability of the pot body size.

Benefits of technology

It enables the adjustment of the support rack spacing according to the size of the pot, solving the problem of pot shaking or tilting, improving the stability and safety of cooking, and at the same time giving it antibacterial and antiviral functions.

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Abstract

The utility model belongs to the technical field of cast iron enamel furnace frames, and particularly relates to an antibacterial and antiviral cast iron enamel furnace frame which comprises a furnace frame base and a plurality of fixing rods fixedly connected to the peripheral side of the furnace frame base. The multiple sliding grooves are formed between the multiple fixing rods and the furnace frame base correspondingly, multiple sliding blocks are slidably connected into the multiple sliding grooves correspondingly, multiple supporting frames are fixedly connected to the top ends of the multiple sliding blocks correspondingly, and multiple threaded rods are in threaded connection into the multiple sliding blocks correspondingly; the multiple sliding grooves are formed in the furnace frame base, the multiple first gear grooves are formed in the furnace frame base and communicated with the multiple sliding grooves respectively, and first bevel gears and second bevel gears are rotationally connected into the first gear grooves. The problems that due to the fact that the supporting face of the cast iron enamel furnace frame is not enough or supporting is not uniform, cookware shakes or inclines in the using process, and cooking stability and safety are affected are solved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of cast iron enamel stove frame, and in particular relates to an antibacterial and antiviral cast iron enamel stove frame. Background Technology

[0002] Cast iron enamel cooktop racks are cooking support devices that combine the advantages of both cast iron and enamel. They have a cast iron base covered with a high-temperature sintered enamel coating. This structure retains the strength and high-temperature resistance of cast iron while providing the corrosion resistance, ease of cleaning, and aesthetic appeal of enamel.

[0003] Because the pots and pans used in the kitchen vary in size, and traditional cast iron enamel stove racks cannot be adjusted to fit the size of the pots and pans, the support surface of the cast iron enamel stove rack may be insufficient or uneven, causing the pots and pans to wobble or tilt during use, affecting the stability and safety of cooking. Summary of the Invention

[0004] The purpose of this utility model is to provide an antibacterial and antiviral cast iron enamel stove frame to solve the problems mentioned in the background art.

[0005] In view of this, the present invention provides an antibacterial and antiviral cast iron enamel stove rack, comprising:

[0006] A furnace frame base and multiple fixing rods, wherein the multiple fixing rods are fixedly connected to the periphery of the furnace frame base;

[0007] Multiple sliding grooves are respectively opened between multiple fixed rods and furnace frame base. Multiple sliders are slidably connected in the multiple sliding grooves. Multiple support frames are fixedly connected to the top of the multiple sliders. Multiple threaded rods are threadedly connected in the multiple sliders.

[0008] Multiple first gear slots are formed inside the furnace frame base and are respectively connected to multiple sliding grooves. A first bevel gear and a second bevel gear are rotatably connected in the first gear slots and mesh with each other. One end of the first bevel gear passes through the inner wall of the first gear slot and extends into the sliding groove to be fixed to one end of the threaded rod.

[0009] A drive assembly, located within the furnace frame base, is used to drive multiple second bevel gears to rotate.

[0010] Based on the above structure, the sliding groove, slider, and support frame ensure that the slider can slide along the sliding groove and drive the support frame to slide. The threaded rod ensures that when the threaded rod rotates, the slider can be acted upon by the thread of the threaded rod and move along the sliding groove. The first gear groove, first bevel gear, and second bevel gear ensure that the first and second bevel gears can rotate within the first gear groove. The drive assembly ensures that the user can drive multiple second bevel gears to rotate, which in turn drive multiple first bevel gears to rotate, which in turn drive multiple threaded rods to rotate. The threaded groove and threaded sleeve ensure that when the user rotates the threaded sleeve, the threaded sleeve will be acted upon by the thread of the threaded groove and move towards the furnace frame base. When the threaded sleeve moves to a position where it cannot move further, the threaded sleeve will be tightly pressed against the furnace frame base, fixing the rotating rod inside the furnace frame base and preventing it from rotating.

[0011] In the above technical solution, the driving component further includes:

[0012] Multiple first rotating slots are formed inside the furnace frame base and are respectively connected to multiple first gear slots. A first gear is rotatably connected inside the first rotating slot, and one end of the first gear passes through the inner wall of the first rotating slot and extends into the first gear slot to be fixed to a second bevel gear.

[0013] The second rotating groove is opened inside the furnace frame base and is connected to multiple first rotating grooves. A double-sided toothed ring that meshes with multiple first gears is rotatably connected inside the second rotating groove.

[0014] The third rotating groove is formed on the inner wall of the second rotating groove, and a second gear that meshes with the double-sided gear ring is rotatably connected in the third rotating groove.

[0015] The second gear slot is located inside the furnace frame base and is connected to the third rotating slot. A third bevel gear and a fourth bevel gear are rotatably connected inside the second gear slot and mesh with each other. One end of the third bevel gear passes through the inner wall of the second gear slot and extends into the third rotating slot to be fixed to the second gear. A rotating rod is fixedly connected to the fourth bevel gear, and one end of the rotating rod passes through the inner wall of the second gear slot and extends to the outside to be rotatably connected to the furnace frame base.

[0016] A fixing component is located on the rotating rod, and the user fixes the rotating rod.

[0017] In this technical solution, it is ensured that the user can adjust the spacing between multiple support frames according to the size of the pot body.

[0018] In the above technical solution, the fixing component further includes:

[0019] A threaded groove is formed on the circumference of the rotating rod, and a threaded sleeve is threadedly connected to the threaded groove.

[0020] In this technical solution, it is ensured that the rotating rod can be fixed inside the furnace frame base and cannot rotate.

[0021] In the above technical solution, one end of the first gear is rotatably connected to the first gear slot.

[0022] In this technical solution, it is ensured that when the first gear rotates, one end of the first gear can rotate normally within the first gear slot.

[0023] In the above technical solution, one end of the third bevel gear is rotatably connected to the third rotating groove.

[0024] In this technical solution, it is ensured that when the third bevel gear rotates, one end of the third bevel gear can rotate normally within the third rotating groove.

[0025] In the above technical solution, furthermore, the plurality of threaded rods are respectively located in the plurality of sliding grooves and are rotatably connected to the plurality of sliding grooves.

[0026] In this technical solution, it is ensured that multiple threaded rods can rotate normally in multiple grooves respectively.

[0027] In the above technical solution, the surfaces of the furnace frame base, multiple fixing rods and multiple support frames are all coated with an antibacterial and antiviral coating.

[0028] In this technical solution, the antibacterial and antiviral coating is ensured to give the entire device antibacterial and antiviral functions, which helps to maintain the hygiene and safety of the kitchen environment.

[0029] The beneficial effects of this utility model are:

[0030] 1. This antibacterial and antiviral cast iron enamel stove rack, through its designed grooves, sliders, and support frames, ensures that the slider can slide along the grooves, driving the support frames to move. The threaded rods ensure that when the threaded rods rotate, the sliders are acted upon by the threads of the rods, moving along the grooves. The first gear groove, first bevel gear, and second bevel gears ensure that the first and second bevel gears can rotate within the first gear groove. The drive assembly allows the user to drive multiple second bevel gears to rotate, which in turn drive multiple first bevel gears, which in turn drive multiple threaded rods to rotate. This solves the problem that cast iron enamel stove racks cannot be adjusted according to the size of the pot, which could lead to insufficient or uneven support, causing the pots to wobble or tilt during use, affecting the stability and safety of cooking.

[0031] 2. This antibacterial and antiviral cast iron enamel furnace frame, through the setting of threaded grooves and threaded sleeves, ensures that when the user rotates the threaded sleeve, the threaded sleeve will be moved towards the furnace frame base by the action of the threaded grooves. When the threaded sleeve moves to a position where it cannot move, the threaded sleeve will be tightly pressed against the furnace frame base, fixing the rotating rod inside the furnace frame base and preventing it from rotating. Attached Figure Description

[0032] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0033] Figure 2 This is one of the schematic diagrams of the internal structure of the furnace frame base of this utility model;

[0034] Figure 3 This is the second schematic diagram of the internal structure of the furnace frame base of this utility model;

[0035] Figure 4 This is a schematic diagram of the internal structure of the second gear groove of this utility model.

[0036] The markings in the diagram are as follows:

[0037] 1. Furnace frame base; 2. Fixing rod; 3. Slide groove; 4. Sliding block; 5. Threaded rod; 6. First gear groove; 7. First bevel gear; 8. Second bevel gear; 9. First rotating groove; 10. First gear; 11. Second rotating groove; 12. Double-sided gear ring; 13. Third rotating groove; 14. Second gear; 15. Second gear groove; 16. Third bevel gear; 17. Fourth bevel gear; 18. Rotating rod; 19. Threaded groove; 20. Threaded sleeve; 21. Support frame. Detailed Implementation

[0038] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.

[0039] In the description of this application, it should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. For ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.

[0040] It should be noted that the terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and are not limited in number; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.

[0041] It should be noted that in the description of this application, the directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this application. The directional terms "inner" and "outer" refer to the inner and outer contours relative to the outline of each component itself.

[0042] It should be noted that, in this application, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. Furthermore, it should be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may also include performing functions substantially simultaneously or in the reverse order, depending on the functions involved. For example, the described methods may be performed in a different order than described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples. Example

[0043] Please see Figure 1 - Figure 4 As shown, this embodiment provides an antibacterial and antiviral cast iron enamel stove rack, comprising:

[0044] A furnace frame base 1 and multiple fixing rods 2 are fixedly connected to the periphery of the furnace frame base 1;

[0045] Multiple sliding grooves 3 are respectively opened between multiple fixed rods 2 and furnace frame base 1. Multiple sliders 4 are slidably connected in the multiple sliding grooves 3. Multiple support frames 21 are fixedly connected to the top of the multiple sliders 4. Multiple threaded rods 5 are threadedly connected in the multiple sliders 4.

[0046] Multiple first gear slots 6 are formed in the furnace frame base 1 and are respectively connected to multiple sliding grooves 3. A first bevel gear 7 and a second bevel gear 8 are rotatably connected in the first gear slot 6, and the first bevel gear 7 and the second bevel gear 8 mesh with each other. One end of the first bevel gear 7 passes through the inner wall of the first gear slot 6 and extends into the sliding groove 3 and is fixed to one end of the threaded rod 5.

[0047] The drive assembly is located inside the furnace frame base 1 and is used to drive multiple second bevel gears 8 to rotate. Example

[0048] This embodiment provides an antibacterial and antiviral cast iron enamel furnace rack, which, in addition to the technical solutions of the above embodiments, also has the following technical features, including a drive component comprising:

[0049] Multiple first rotating slots 9 are formed in the furnace frame base 1 and are respectively connected to multiple first gear slots 6. A first gear 10 is rotatably connected in the first rotating slot 9, and one end of the first gear 10 passes through the inner wall of the first rotating slot 9 and extends into the first gear slot 6 to be fixed to the second bevel gear 8.

[0050] The second rotating groove 11 is opened in the furnace frame base 1 and is connected to multiple first rotating grooves 9. A double-sided toothed ring 12 that meshes with multiple first gears 10 is rotatably connected in the second rotating groove 11.

[0051] The third rotating groove 13 is formed on the inner wall of the second rotating groove 11, and the third rotating groove 13 is rotatably connected to the second gear 14 that meshes with the double-sided gear ring 12.

[0052] The second gear groove 15 is formed inside the furnace frame base 1 and is connected to the third rotating groove 13. The third bevel gear 16 and the fourth bevel gear 17 are rotatably connected inside the second gear groove 15 and mesh with each other. One end of the third bevel gear 16 passes through the inner wall of the second gear groove 15 and extends into the third rotating groove 13 and is fixed to the second gear 14. A rotating rod 18 is fixedly connected to the fourth bevel gear 17, and one end of the rotating rod 18 passes through the inner wall of the second gear groove 15 and extends to the outside and is rotatably connected to the furnace frame base 1.

[0053] A fixing component is located on the rotating rod 18, and the user fixes the rotating rod 18.

[0054] In operation, the user manually rotates the lever 18, causing the fourth bevel gear 17 to rotate within the second gear slot 15. This, in turn, causes the third bevel gear 16 to rotate within the same slot. When the third bevel gear 16 rotates, it drives the second gear 14 to rotate within the third rotation slot 13. This, in turn, drives the double-sided gear ring 12 to rotate within the second rotation slot 11. When the double-sided gear ring 12 rotates, it drives multiple first gears 10 to rotate within their respective first rotation slots 9. At the same time, multiple first gears 10 will drive multiple second bevel gears 8 to rotate in multiple first gear grooves 6. When multiple second bevel gears 8 rotate, multiple second bevel gears 8 will drive multiple first bevel gears 7 to rotate in multiple first gear grooves 6, so that multiple first bevel gears 7 will drive multiple threaded rods 5 to rotate in multiple sliding grooves 3. When multiple threaded rods 5 rotate, multiple sliders 4 will be acted on by the threads of multiple threaded rods 5, respectively, causing multiple support frames 21 to move away from or closer to each other, ensuring that the user can adjust the spacing between multiple support frames 21 according to the size of the pot. Example

[0055] This embodiment provides an antibacterial and antiviral cast iron enamel stove rack, which, in addition to the technical solutions of the above embodiments, also has the following technical features, including a fixing component:

[0056] Threaded groove 19 is formed on the circumference of rotating rod 18, and threaded sleeve 20 is threadedly connected to threaded groove 19.

[0057] In use, the user rotates the threaded sleeve 20 by hand, so that the threaded sleeve 20 is moved towards the furnace frame base 1 by the action of the threaded groove 19. When the threaded sleeve 20 moves to a position where it cannot move, the threaded sleeve 20 will be tightly pressed against the furnace frame base 1, ensuring that the rotating rod 18 can be fixed in the furnace frame base 1 and cannot rotate. Example

[0058] This embodiment provides an antibacterial and antiviral cast iron enamel furnace frame, which, in addition to the technical solutions of the above embodiments, also has the following technical features: one end of the first gear 10 is rotatably connected to the first gear groove 6.

[0059] Specifically, it is ensured that when the first gear 10 rotates, one end of the first gear 10 can rotate normally within the first gear groove 6. Example

[0060] This embodiment provides an antibacterial and antiviral cast iron enamel furnace frame, which, in addition to the technical solutions of the above embodiments, also has the following technical features: one end of the third bevel gear 16 is rotatably connected to the third rotating groove 13.

[0061] Specifically, it is ensured that when the third bevel gear 16 rotates, one end of the third bevel gear 16 can rotate normally within the third rotating groove 13. Example

[0062] This embodiment provides an antibacterial and antiviral cast iron enamel furnace frame. In addition to the technical solutions of the above embodiments, it also has the following technical features: multiple threaded rods 5 are respectively located in multiple sliding grooves 3 and are rotatably connected to the multiple sliding grooves 3.

[0063] This ensures that multiple threaded rods 5 can rotate normally within multiple sliding grooves 3. Example

[0064] This embodiment provides an antibacterial and antiviral cast iron enamel furnace frame. In addition to the technical solutions of the above embodiments, it also has the following technical features: the surfaces of the furnace frame base 1, multiple fixing rods 2 and multiple support frames 21 are all coated with an antibacterial and antiviral coating.

[0065] Among these features, the antibacterial and antiviral coating ensures that the entire device possesses antibacterial and antiviral properties, helping to maintain a hygienic and safe kitchen environment.

[0066] In use, the user manually rotates the lever 18, causing the lever 18 to drive the fourth bevel gear 17 to rotate within the second gear slot 15. This causes the fourth bevel gear 17 to drive the third bevel gear 16 to rotate within the second gear slot 15. When the third bevel gear 16 rotates, it drives the second gear 14 to rotate within the third rotation slot 13. This causes the second gear 14 to drive the double-sided gear ring 12 to rotate within the second rotation slot 11. When the double-sided gear ring 12 rotates, it drives multiple first gears 10 to rotate within multiple first rotation slots 9. When the multiple first gears 10 rotate, they drive multiple second bevel gears 8 to rotate within multiple first gear slots 6. When the multiple second bevel gears 8 rotate, they drive multiple second bevel gears... The bevel gear 8 drives multiple first bevel gears 7 to rotate within multiple first gear grooves 6, which in turn drive multiple threaded rods 5 to rotate within multiple sliding grooves 3. When the multiple threaded rods 5 rotate, the multiple sliders 4 are acted upon by the threads of the multiple threaded rods 5, causing the multiple support frames 21 to move away from or closer to each other. This ensures that the user can adjust the spacing between the multiple support frames 21 according to the size of the pot. Subsequently, the user manually rotates the threaded sleeve 20, causing it to move towards the furnace frame base 1 under the action of the threads of the threaded groove 19. When the threaded sleeve 20 moves to a position where it cannot move further, it will press tightly against the furnace frame base 1, ensuring that the rotating rod 18 can be fixed within the furnace frame base 1 and cannot rotate.

[0067] The embodiments of this application have been described above with reference to the accompanying drawings. Unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. This application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.

Claims

1. An antibacterial and antiviral cast iron enamel stove rack, characterized in that, include: A furnace frame base (1) and a plurality of fixing rods (2), wherein the plurality of fixing rods (2) are fixedly connected to the periphery of the furnace frame base (1); Multiple sliding grooves (3) are respectively opened between multiple fixed rods (2) and furnace frame base (1). Multiple sliders (4) are slidably connected in the multiple sliding grooves (3). Multiple support frames (21) are fixedly connected to the top of the multiple sliders (4). Multiple threaded rods (5) are threadedly connected in the multiple sliders (4). Multiple first gear slots (6) are formed in the furnace frame base (1) and are connected to multiple sliding grooves (3) respectively. A first bevel gear (7) and a second bevel gear (8) are rotatably connected in the first gear slot (6) and the first bevel gear (7) and the second bevel gear (8) mesh with each other. One end of the first bevel gear (7) penetrates the inner wall of the first gear slot (6) and extends into the sliding groove (3) and is fixed to one end of the threaded rod (5). The drive assembly is located inside the furnace frame base (1) and is used to drive multiple second bevel gears (8) to rotate.

2. The antibacterial and antiviral cast iron enamel furnace frame according to claim 1, characterized in that, The driving component includes: Multiple first rotating slots (9) are formed in the furnace frame base (1) and are respectively connected to multiple first gear slots (6). A first gear (10) is rotatably connected in the first rotating slot (9), and one end of the first gear (10) penetrates the inner wall of the first rotating slot (9) and extends into the first gear slot (6) to be fixed to the second bevel gear (8). The second rotating groove (11) is opened in the furnace frame base (1) and is connected to multiple first rotating grooves (9). A double-sided toothed ring (12) that meshes with multiple first gears (10) is rotatably connected in the second rotating groove (11). The third rotating groove (13) is opened on the inner wall of the second rotating groove (11), and the third rotating groove (13) is rotatably connected to the second gear (14) that meshes with the double-sided toothed ring (12). The second gear groove (15) is opened in the furnace frame base (1) and communicates with the third rotating groove (13). The third bevel gear (16) and the fourth bevel gear (17) are rotatably connected in the second gear groove (15), and the third bevel gear (16) and the fourth bevel gear (17) mesh with each other. One end of the third bevel gear (16) penetrates the inner wall of the second gear groove (15) and extends into the third rotating groove (13) and is fixed to the second gear (14). A rotating rod (18) is fixedly connected to the fourth bevel gear (17), and one end of the rotating rod (18) penetrates the inner wall of the second gear groove (15) and extends to the outside and is rotatably connected to the furnace frame base (1). A fixing component is located on the rotating rod (18), and the user fixes the rotating rod (18).

3. The antibacterial and antiviral cast iron enamel stove frame according to claim 2, characterized in that, The fixing component includes: A threaded groove (19) is formed on the circumference of the rotating rod (18), and a threaded sleeve (20) is threadedly connected to the threaded groove (19).

4. The antibacterial and antiviral cast iron enamel stove frame according to claim 2, characterized in that, One end of the first gear (10) is rotatably connected to the first gear groove (6).

5. The antibacterial and antiviral cast iron enamel stove frame according to claim 2, characterized in that, One end of the third bevel gear (16) is rotatably connected to the third rotating groove (13).

6. The antibacterial and antiviral cast iron enamel furnace frame according to claim 1, characterized in that, The multiple threaded rods (5) are located in multiple grooves (3) respectively, and are rotatably connected to the multiple grooves (3) respectively.

7. The antibacterial and antiviral cast iron enamel stove frame according to claim 1, characterized in that, The surfaces of the furnace frame base (1), multiple fixing rods (2) and multiple support frames (21) are all coated with an antibacterial and antiviral coating.