Wear-resistant non-stick cast iron pan and manufacturing process thereof

By designing the sealing structure of the sealing groove, sealing ring and airbag in a non-stick cast iron pan, as well as the design of convenient connectors and positioning components, the risk of hand contact and insufficient sealing when the pot cover is connected to the pot body is solved, and safer and more efficient cooking operations are achieved.

CN120093136AActive Publication Date: 2025-06-06FUJIAN NANAN XINDING KITCHENWARE CO LTD
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Patent Information

Application Number
CN202510592200.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2025-06-06
Estimated Expiration
2045-05-09

AI Technical Summary

Technical Problem

During the use of existing wear-resistant non-stick iron pots, the pot body needs to be directly in contact with the hands when connecting the pot body to the lid, resulting in an increased risk of hand injury, and insufficient sealing will cause the soup to overflow easily.

Method used

A non-stick iron pot including a pot body and a pot lid is designed. The pot lid and the pot body are sealedly connected through a sealing groove, a sealing convex ring and an airbag. A convenient connection and positioning component are arranged between the pot lid and the pot body, and convenient opening and closing operations are achieved through a pressing rod and a spring structure.

Benefits of technology

It effectively avoids contact between the hands and the hot pot lid, reduces the risk of hand damage, and at the same time, the problem of soup overflow is avoided by strengthening the sealing treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a wear-resistant non-stick cast iron pan and a manufacturing process thereof, and relates to the field of kitchenware, the wear-resistant non-stick cast iron pan comprises a pan body, the top of the pan body is provided with a pan cover, and the top of the pan cover is fixedly provided with a handle; a sealing groove is formed in the inner wall of the top of the pot cover, a sealing convex ring is inserted into the sealing groove, connecting pieces are arranged on the inner wall of the side face of the pot cover at equal intervals, and the connecting pieces abut against the bottom of the outer edge in a staggered mode so that the pot body and the pot cover can be conveniently connected. Positioning assemblies are arranged on the side face of the outer edge at equal angles, and the positioning assemblies conduct opposite locking on the pot cover to enhance the connection stability between the pot body and the pot cover. According to the wear-resistant non-stick cast iron pan and the manufacturing process thereof, in the use process, the pan body and the pan cover can be conveniently and firmly connected and fixed, the hand is prevented from making contact with a hot pan and the pan cover in the operation process, damage to the hand is reduced, meanwhile, reinforced sealing treatment can be conducted after the pan body and the pan cover are closed, and soup is prevented from overflowing in the cooking process.
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Description

Technical Field

[0001] The invention relates to the technical field of kitchenware, in particular to a wear-resistant non-stick cast iron pan and a manufacturing process thereof. Background Art

[0002] In the field of kitchen utensils, cast iron pots are popular among consumers due to their excellent heat storage capacity and uniform heating effect. In daily cooking, the sticking phenomenon not only causes food to burn and affects the taste, but also increases the difficulty of cleaning, consuming a lot of time and energy. With the increase in the number of uses, the surface of traditional cast iron pots is prone to wear and tear, resulting in a shortened service life, and then a non-stick coating is set on the pot body; To solve the above defects, the prior art (Chinese patent with publication number CN222357513U and publication date 2025-01-17) is a non-stick pan with good operating performance. By setting a clamping mechanism, a non-stick cast iron pot body, a semi-U-shaped mounting plate, a hinge shaft, a clamping buckle, an oblique mouth at the end of the pot body, a pot cover, and a clamping block, the outer wall of the non-stick cast iron pot body is fixed with multiple groups of semi-U-shaped mounting plates, a hinge shaft is fixed between two groups of semi-U-shaped mounting plates, the outer wall of the hinge shaft is connected with a clamping buckle, and two groups of clamping blocks are fixed on the top of the pot cover, so that when the pot cover covers the non-stick cast iron pot body, the two groups of clamping buckles are manually rotated so that the two groups of clamping buckles are respectively clamped to the outside of the two groups of clamping blocks, so that the pot cover is fixed on the non-stick cast iron pot body, thereby achieving the effect of fixing the pot cover; Prior art (Chinese patent with publication number CN219020925U and publication date 2023-05-16) A non-stick pan with good operating performance, a heat-resistant rubber ring is provided at the bottom of an airtight lid, the heat-resistant rubber ring is in sealing contact with the oblique opening of the pot body at the upper end of the inner coating of the non-stick pan, and is in fastening contact with the arc opening through a snap-fit ​​buckle ring of a fastening device, so as to realize the sealed installation of the airtight lid, and a non-stick pan vent is provided at the top of the airtight lid, during the heating process of the entire non-stick cast iron pot body, the internal high-pressure gas can partially discharge the gas while pressing the food, so as to prevent the pot body from exploding, the above-mentioned operation of high-pressure stewing food is difficult to achieve with ordinary cast iron pots and non-stick pots, thus improving the operability of the entire non-stick pot for food making, and solving the problem that the internal volume of the traditional non-stick pot is small and it is inconvenient for users to operate by hand; The above scheme achieves the effect of non-stick and wear resistance by providing a non-stick coating, thereby increasing the service life of the pot, and provides a connecting structure between the pot body and the pot cover to fix the pot cover on the non-stick cast iron pot body, thereby achieving the effect of fixing the pot cover. However, in actual operation, when the pot cover is connected to the pot body, the user needs to directly contact the pot cover and the pot body through a simple docking and snapping method. The temperature of the pot and the pot cover containing boiling hot ingredients is relatively high, which can easily cause injury to the hands when opening the lid. It is inconvenient to wrap the lid with a towel to open and close the lid. At the same time, after the pot body and the pot cover are closed, the sealing of the connection between the pot body and the pot cover is insufficient, which makes it easy for the soup to overflow. Summary of the invention

[0003] The object of the present invention is to provide a wear-resistant non-stick cast iron pan and a manufacturing process thereof, so as to solve the problem that the existing wear-resistant non-stick cast iron pan proposed in the above background technology requires direct hand contact when the pan body and the pan cover are connected during use, the temperature of the pan and the pan cover containing boiling hot ingredients is relatively high, and it is easy to cause injury to the hands when the lid is opened. At the same time, the connection between the pan body and the pan cover is not sealed enough, which makes the soup easily overflow.

[0004] To achieve the above object, the present invention provides the following technical solution: a wear-resistant non-stick cast iron pan, comprising a pan body, a pan cover is arranged on the top of the pan body, a hanging ear and a handle are respectively installed on the left and right sides of the pan body, a handle is fixedly installed on the top of the pan cover, and a ventilation hole is reserved on the pan cover; A sealing groove is provided on the inner wall of the top of the pot cover, a sealing convex ring is inserted into the sealing groove, and the sealing convex ring is fixed at the top edge of the pot body; The outer side of the top of the pot body is integrally provided with an outer edge, the pot cover covers the outside of the outer edge, and connecting pieces are arranged on the inner wall of the side of the pot cover at equal intervals, and the connecting pieces are conveniently connected between the pot body and the pot cover by interlacing with the bottom of the outer edge; Positioning components are arranged at equal angles on the side surfaces of the outer edge, and the positioning components enhance the connection stability between the pot body and the pot cover by locking the pot cover in opposite directions.

[0005] Furthermore, an insulating cavity is opened in the inner wall of the side of the pot cover, and a pressing rod is slidably connected through the middle of the handle on the top of the pot cover. The pressing rod is arranged in a "T" shape, and a first spring is installed between the bottom of the top surface of the pressing rod and the top of the handle.

[0006] Furthermore, the bottom of the pressing rod is set to be in a hollow state, and the bottom of the pressing rod is sleeved on the outside of the rotating rod, the rotating rod rotates on the top of the pot cover, a protrusion is fixed on the inner wall of the bottom of the pressing rod, the protrusion is slidably connected to the spiral groove, the spiral groove is opened on the outside of the rotating rod, and the rotating rod forms a reciprocating rotation structure through the protrusion and the spiral groove.

[0007] Furthermore, the connecting member includes a pull rope arranged at an equal angle around the outer side of the bottom of the rotating rod, the end of the pull rope is connected to the support plate, the support plate is connected to the transverse groove through a second spring, the transverse groove is opened at an equal angle on the inner wall of the side of the pot cover, and the outer top of the support plate is staggered and abutted against the bottom of the outer edge.

[0008] Furthermore, the positioning assembly includes a moving block that is slidably connected to the bottom of the outer edge at an equal angle, and the moving block is slidably connected to the bottom of the outer edge through a third spring. The bottom of the moving block is set to be a triangle, and the hypotenuse of the triangle is set opposite to the support plate. The moving block forms a vertical sliding structure through the support plate and the third spring.

[0009] Furthermore, a round rod is provided on the top of the movable block, the outer end of the round rod is slidably connected in the guide groove, the guide groove is opened on the plug block, the plug block penetrates and is slidably connected to the side of the outer edge at an equal angle, and the guide groove is set as an inclined structure, which is lower on the outside and higher on the inside.

[0010] Furthermore, the outside of the insert block is engaged with a slot, and the slot is provided at equal angles on the inner wall of the pot cover. The pot body forms a stable connection structure with the pot cover through the insert block and the slot.

[0011] Furthermore, an airbag is installed inside the sealing groove, the sealing convex ring is in compression contact with the airbag, the airbag is connected with the inside of the sealing bag through a connecting tube, and the sealing bag is arranged on the contact surface between the bottom of the pot cover and the pot body.

[0012] Furthermore, a groove is provided at the bottom of the handle, a screw rod is connected through the groove, a first slider is threadedly connected to the screw rod, a support rod is hinged at the bottom of the first slider, a second slider is hinged at the bottom of the support rod, and the second slider is slidably connected to a fixed frame installed on the side of the handle, and the pot body and the handle can conveniently adjust the length of the support arm through the angle of the support rod.

[0013] A manufacturing process of a wear-resistant non-stick cast iron pan, the specific steps are as follows: S1. Material selection: Raw iron ore is used as the basic raw material to improve the hardness and corrosion resistance of cast iron pots; S2. Casting: The gravity casting process is used to accurately pour the molten iron into the customized mold. During the casting process, it is ensured that the molten iron evenly fills the mold to form a dense internal structure, thereby improving the strength and wear resistance of the cast iron pot; S3. Surface treatment: Finely grind the cast pot body to remove burrs and impurities on the surface to make it smooth and flat. Then, use nano-ceramic coating technology to evenly spray the nano-ceramic material on the surface of the pot body. Finally, through high-temperature curing treatment, the nano-ceramic coating is firmly bonded to the surface of the pot body to ensure the stability and durability of the coating.

[0014] Compared with the prior art, the present invention has the following beneficial effects: The wear-resistant non-stick cast iron pan and the manufacturing process thereof can conveniently and firmly connect and fix the pan body and the pan cover during use, and avoid contact between the hands and the hot pan and the pan cover during operation, thereby reducing damage to the hands. At the same time, the pan body and the pan cover can be sealed after closing to avoid spillage of soup during cooking. Furthermore, after pressing the pressing rod on the handle, the pressing rod moves downward to compress the first spring, and after the pressing rod moves downward, it drives the protrusion to slide in the spiral groove, thereby driving the rotating rod to rotate. After the rotating rod rotates, it pulls the pull rope, and the pull rope drives the supporting plate to compress the second spring and retract it into the horizontal groove, thereby facilitating the closing of the pot cover and the pot body. After closing, the pressing rod is released, and the first spring drives the pressing rod to move upward and reset, thereby causing the rotating rod to rotate, thereby loosening the pull rope, and the second spring pushes the supporting plate to extend and intersect with the outer edge of the pot body, thereby conveniently connecting the pot body and the pot cover; Furthermore, when the support plate contacts the bottom of the outer edge, the moving block is squeezed, and the moving block is pressed to squeeze the third spring and move upward. After the moving block moves upward, it drives the round rod to move upward synchronously, and the round rod slides in the guide groove, and then drives the plug block to extend through the guide groove. After the plug block extends, it engages with the slot on the side of the pot cover, thereby performing a two-way locking of the pot body to the pot cover, so that the pot body and the pot cover are connected more stably; Furthermore, when the sealing convex ring is plugged into the sealing groove, the airbag is squeezed, and the airbag is compressed to introduce gas into the sealing bag. After the sealing bag expands, the joint surface between the pot body and the pot cover is strengthened to seal, thereby preventing the soup from overflowing during cooking. Furthermore, when the weight of the food placed inside the pot is different, the range of the support arm at the bottom of the handle is adjusted, and the screw on the handle is rotated, thereby driving the first slider to slide in the groove. After the first slider slides, it drives the support rod to rotate. After the support rod rotates, it drives the second slider to slide inside the fixed frame, thereby changing the length of the support arm at the bottom of the handle to protect the handle. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall use state structure of the present invention; Figure 2 This is a schematic diagram of a top view of the pot body and pot cover separated from each other in the present invention; Figure 3 This is a schematic diagram of the pot body and pot cover separated from each other as viewed from above; Figure 4 For the present invention Figure 3 The enlarged structural diagram at A in the middle; Figure 5 It is a schematic diagram of the front cross-section structure of the pot body and the pot cover of the present invention; Figure 6 For the present invention Figure 5 The enlarged structural diagram at B in the middle; Figure 7 This is a schematic diagram of the internal cross-sectional structure of the pot cover of the present invention; Figure 8 This is a schematic diagram of the explosion structure inside the pot cover of the present invention; Fig. 9 For the present invention Figure 8 The enlarged structural diagram at C in the middle; Fig.10 This is a schematic diagram of the front cross-section structure of the handle and the pot cover of the present invention; Fig.11 It is a schematic diagram of the exploded structure of the handle and the pot cover of the present invention.

[0016] In the figure: 1. pot body; 2. handle; 3. hanging ear; 4. pot cover; 5. handle; 6. outer edge; 7. sealing convex ring; 8. sealing groove; 9. cavity; 10. pressing rod; 11. first spring; 12. rotating rod; 13. convex block; 14. spiral groove; 15. pull rope; 16. supporting plate; 17. transverse groove; 18. second spring; 19. moving block; 20. third spring; 21. round rod; 22. guide groove; 23. plug-in block; 24. card slot; 25. air bag; 26. sealing bag; 27. groove; 28. screw; 29. ​​first slider; 30. support rod; 31. second slider; 32. fixed frame. DETAILED DESCRIPTION

[0017] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0018] Example 1: Please refer to Figure 1 - Fig.11The present invention provides the following technical scheme: a wear-resistant non-stick cast iron pot, comprising a pot body 1, a pot cover 4 is arranged on the top of the pot body 1, and hanging ears 3 and handles 2 are respectively installed on the left and right sides of the pot body 1, a handle 5 is fixedly installed on the top of the pot cover 4, and an air vent is reserved on the pot cover 4. A heat-insulating cavity 9 is opened in the inner wall of the side of the pot cover 4, and a sealing groove 8 is opened on the inner wall of the top of the pot cover 4. A sealing convex ring 7 is inserted in the sealing groove 8, and the sealing convex ring 7 is fixed at the top edge of the pot body 1. An outer edge 6 is integrally arranged on the outer side of the top of the pot body 1, and the pot cover 4 covers the outside of the outer edge 6. Connectors are arranged at equal intervals on the inner wall of the side of the pot cover 4, and the connecting members are conveniently connected between the pot body 1 and the pot cover 4 by staggered interference with the bottom of the outer edge 6, and positioning components are arranged at equal angles on the side of the outer edge 6, and the positioning components enhance the connection stability between the pot body 1 and the pot cover 4 by locking the pot cover 4 in opposite directions; When in use, the handle 5 is convenient for lifting the entire pot cover 4, the handle 2 is convenient for holding the pot body 1, the cavity 9 on the pot cover 4 is convenient for heat insulation, and can also make the overall weight of the pot cover 4 lighter. When the pot cover 4 and the pot body 1 are closed, the sealing convex ring 7 is placed in the sealing groove 8, and the pot cover 4 will cover the outer edge 6 of the pot body 1, and the connecting piece on the pot cover 4 will intersect with the outer edge 6 of the pot body 1, thereby conveniently connecting the pot cover 4 and the pot body 1, and the positioning component on the pot cover 4 will also be synchronously engaged with the pot body 1, thereby improving the stability of the connection between the pot body 1 and the pot cover 4. Example

[0019] Based on the first embodiment, a pressing rod 10, a protrusion 13 and a spiral groove 14 are also disclosed. Figure 1 - Figure 2 and Figure 5 - Fig.11 As shown, its specific structure is as follows: a pressing rod 10 is slidably connected to the middle of the handle 5 at the top of the pot cover 4, and the pressing rod 10 is set to a "T"-shaped structure. A first spring 11 is installed between the top bottom of the pressing rod 10 and the top of the handle 5. The bottom of the pressing rod 10 is set to a hollow state, and the bottom of the pressing rod 10 is sleeved on the outside of the rotating rod 12. The rotating rod 12 rotates on the top of the pot cover 4. A convex block 13 is fixed on the inner wall of the bottom of the pressing rod 10, and the convex block 13 slides. The rotating rod 12 is movably connected to the spiral groove 14, and the spiral groove 14 is opened on the outer side of the rotating rod 12. The rotating rod 12 forms a reciprocating rotating structure through the protrusion 13 and the spiral groove 14. The connecting member includes a pull rope 15 wound at an equal angle on the outer side of the bottom of the rotating rod 12. The end of the pull rope 15 is connected to the supporting plate 16. The supporting plate 16 is connected to the transverse groove 17 through the second spring 18. The transverse groove 17 is opened at an equal angle on the inner wall of the side of the pot cover 4. The outer top of the supporting plate 16 is staggered and abuts against the bottom of the outer edge 6; When in use, after the finger presses the pressing rod 10 on the handle 5, the pressing rod 10 moves downward to compress the first spring 11, and after the pressing rod 10 moves downward, it will drive the protrusion 13 to slide in the spiral groove 14, thereby driving the rotating rod 12 to rotate. After the rotating rod 12 rotates, it pulls the pull rope 15, and the pull rope 15 drives the support plate 16 to compress the second spring 18 and retract it into the transverse groove 17, thereby facilitating the closing of the pot cover 4 and the pot body 1. After closing, release the pressing rod 10, the first spring 11 drives the pressing rod 10 to move up and reset, thereby making the rotating rod 12 rotate, thereby loosening the pull rope 15, and the second spring 18 pushes the support plate 16 to extend and intersect with the outer edge 6 outside the pot body 1, thereby conveniently connecting the pot body 1 and the pot cover 4. Example

[0020] Based on the second embodiment, the moving block 19, the round rod 21, the guide groove 22, the insert block 23 and the card slot 24 are also disclosed. Figure 6 - Figure 7 As shown, its specific structure is as follows: the positioning assembly includes a moving block 19 that is slidably connected to the bottom of the outer edge 6 at an equal angle, and the moving block 19 is slidably connected to the bottom of the outer edge 6 through a third spring 20. The bottom of the moving block 19 is set in a triangle, and the hypotenuse of the triangle is arranged opposite to the support plate 16. The moving block 19 forms a vertical sliding structure through the support plate 16 and the third spring 20. A round rod 21 is arranged on the top of the moving block 19, and the outer end of the round rod 21 is slidably connected to the guide groove 22. The guide groove 22 is opened on the plug block 23, and the plug block 23 is slidably connected to the side of the outer edge 6 at an equal angle. The guide groove 22 is set to an inclined structure, which is low outside and high inside. The outside of the plug block 23 is engaged with the card slot 24, and the card slot 24 is opened at an equal angle on the inner wall of the pot cover 4. The pot body 1 forms a stable connection structure with the pot cover 4 through the plug block 23 and the card slot 24; When in use, when the support plate 16 contacts the bottom of the outer edge 6, the moving block 19 will be squeezed. After the moving block 19 is pressed, it squeezes the third spring 20 and moves upward. After the moving block 19 moves upward, it drives the round rod 21 to move upward synchronously. The round rod 21 will slide in the guide groove 22, and then drive the insertion block 23 to extend through the guide groove 22. After the insertion block 23 is extended, it engages with the groove 24 on the side of the pot cover 4, thereby performing a bidirectional locking of the pot body 1 to the pot cover 4, making the connection between the pot body 1 and the pot cover 4 more stable.

[0021] Please refer to Figure 5 - Figure 8 and Fig.10 - Fig.11 As shown, an air bag 25 is installed inside the sealing groove 8, the sealing convex ring 7 is in compression contact with the air bag 25, the air bag 25 is connected with the inside of the sealing bag 26 through a connecting pipe, and the sealing bag 26 is arranged on the contact surface between the bottom of the pot cover 4 and the pot body 1; When in use, when the sealing convex ring 7 is plugged into the sealing groove 8, the airbag 25 will be squeezed. The airbag 25 will be pressurized to release the gas into the sealing bag 26. After the sealing bag 26 expands, the joint surface between the pot body 1 and the pot cover 4 is strengthened and sealed to prevent the soup from overflowing during cooking. Example

[0022] Based on the third embodiment, a support rod 30 is also disclosed. Figure 2 - Figure 5 As shown, its specific structure is as follows: a groove 27 is provided at the bottom of the handle 2, a screw rod 28 is connected through the groove 27, a first slider 29 is threadedly connected to the screw rod 28, a support rod 30 is hinged at the bottom of the first slider 29, a second slider 31 is hinged at the bottom of the support rod 30, and the second slider 31 is slidably connected to a fixed frame 32 installed on the side of the handle 2. The pot body 1 and the handle 2 can conveniently adjust the length of the support arm through the angle of the support rod 30; During use, when the weight of the food contained in the pot body 1 is different, the range of the support arm at the bottom of the handle 2 is adjusted, and the screw 28 on the handle 2 is rotated, thereby driving the first slider 29 to slide in the groove 27. After the first slider 29 slides, it drives the support rod 30 to rotate. After the support rod 30 rotates, it drives the second slider 31 to slide inside the fixed frame 32, thereby changing the length of the support arm at the bottom of the handle 2. The greater the weight, the longer the distance that the support rod 30 slides at the bottom of the handle 2, thereby protecting the handle 2 and preventing the handle from being easily damaged by directly bearing the weight of the pot body 1 and the food.

[0023] A manufacturing process of a wear-resistant non-stick cast iron pan, the specific steps are as follows: S1. Material selection: Raw iron ore is used as the basic raw material to improve the hardness and corrosion resistance of cast iron pots; S2. Casting: The gravity casting process is used to accurately pour the molten iron into the customized mold. During the casting process, it is ensured that the molten iron evenly fills the mold to form a dense internal structure, thereby improving the strength and wear resistance of the cast iron pot; S3. Surface treatment: Finely grind the cast pot body 1 to remove burrs and impurities on the surface to make it smooth and flat. Then, use nano-ceramic coating technology to evenly spray the nano-ceramic material on the surface of the pot body 1 to improve the wear resistance of the pot body 1. Finally, through high-temperature curing treatment, the nano-ceramic coating is firmly combined with the surface of the pot body 1 to ensure the stability and durability of the coating.

[0024] The contents not described in detail in this specification belong to the prior art known to professional and technical personnel in this field.

[0025] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A wear-resistant non-stick cast iron pan, comprising a pan body (1), a pan cover (4) being arranged on the top of the pan body (1), a hanging ear (3) and a handle (2) being respectively installed on the left and right sides of the pan body (1), a handle (5) being fixedly installed on the top of the pan cover (4), and a ventilation hole being reserved on the pan cover (4); Features: A sealing groove (8) is provided on the inner wall of the top of the pot cover (4), a sealing convex ring (7) is inserted into the sealing groove (8), and the sealing convex ring (7) is fixed to the top edge of the pot body (1); The outer side of the top of the pot body (1) is integrally provided with an outer edge (6), the pot cover (4) covers the outside of the outer edge (6), and connecting pieces are arranged at equal intervals on the inner wall of the side of the pot cover (4), and the connecting pieces are interlaced with the bottom of the outer edge (6) to conveniently connect the pot body (1) and the pot cover (4); The connecting member comprises a pull rope (15) wound at an equal angle on the outer side of the bottom of the rotating rod (12), the end of the pull rope (15) is connected to a support plate (16), the support plate (16) is connected to a transverse groove (17) via a second spring (18), the transverse groove (17) is opened at an equal angle on the inner wall of the side of the pot cover (4), and the outer top of the support plate (16) is staggered and abutted against the bottom of the outer edge (6); Positioning components are arranged at equal angles on the side surfaces of the outer edge (6), and the positioning components enhance the connection stability between the pot body (1) and the pot cover (4) by locking the pot cover (4) in opposite directions.

2. A wear-resistant non-stick cast iron pan according to claim 1, characterized in that: A heat-insulating cavity (9) is provided in the inner wall of the side of the pot cover (4); a pressing rod (10) is slidably connected to the middle of the handle (5) at the top of the pot cover (4); the pressing rod (10) is arranged in a "T"-shaped structure; a first spring (11) is installed between the bottom of the top surface of the pressing rod (10) and the top of the handle (5).

3. A wear-resistant non-stick cast iron pan according to claim 2, characterized in that: The bottom of the pressing rod (10) is arranged in a hollow state, and the bottom of the pressing rod (10) is sleeved on the outside of the rotating rod (12). The rotating rod (12) rotates on the top of the pot cover (4). A protrusion (13) is fixed on the inner wall of the bottom of the pressing rod (10). The protrusion (13) is slidably connected to a spiral groove (14). The spiral groove (14) is opened on the outside of the rotating rod (12). The rotating rod (12) forms a reciprocating rotating structure through the protrusion (13) and the spiral groove (14).

4. A wear-resistant non-stick cast iron pan according to claim 3, characterized in that: The positioning assembly comprises a moving block (19) which is slidably connected to the bottom of the outer edge (6) at an equal angle, the moving block (19) being slidably connected to the bottom of the outer edge (6) via a third spring (20), the bottom of the moving block (19) being arranged in a triangular shape, and the hypotenuse of the triangle being arranged opposite to the support plate (16), the moving block (19) forming a vertical sliding structure via the support plate (16) and the third spring (20).

5. A wear-resistant non-stick cast iron pan according to claim 4, characterized in that: A round rod (21) is arranged on the top of the moving block (19), the outer end of the round rod (21) is slidably connected to a guide groove (22), the guide groove (22) is formed on an insert block (23), the insert block (23) penetrates and is slidably connected to the side of the outer edge (6) at an equal angle, and the guide groove (22) is arranged as an inclined structure, which is lower on the outside and higher on the inside.

6. A wear-resistant non-stick cast iron pan according to claim 5, characterized in that: The outside of the insert block (23) is engaged with the slot (24), the slot (24) is formed at equal angles on the inner wall of the pot cover (4), and the pot body (1) forms a stable connection structure with the pot cover (4) through the insert block (23) and the slot (24).

7. A wear-resistant non-stick cast iron pan according to claim 6, characterized in that: An air bag (25) is installed inside the sealing groove (8), the sealing convex ring (7) is in compression contact with the air bag (25), the air bag (25) is connected to the inside of the sealing bag (26) through a connecting pipe, and the sealing bag (26) is arranged on the contact surface between the bottom of the pot cover (4) and the pot body (1).

8. The wear-resistant non-stick cast iron pan according to claim 7, characterized in that: The bottom of the handle (2) is provided with a groove (27), a screw rod (28) is connected through the groove (27), a first slider (29) is threadedly connected to the screw rod (28), a support rod (30) is hingedly connected to the bottom of the first slider (29), a second slider (31) is hingedly connected to the bottom of the support rod (30), and the second slider (31) is slidably connected to a fixed frame (32) installed on the side of the handle (2), and the pot body (1) and the handle (2) can conveniently adjust the length of the support arm through the angle of the support rod (30).

9. A manufacturing process for a wear-resistant non-stick cast iron pan, used to prepare the non-stick cast iron pan as claimed in claim 8, the specific steps are as follows: S1. Material selection: Raw iron ore is used as the basic raw material to improve the hardness and corrosion resistance of cast iron pots; S2. Casting: The gravity casting process is used to accurately pour the molten iron into the customized mold. During the casting process, it is ensured that the molten iron evenly fills the mold to form a dense internal structure, thereby improving the strength and wear resistance of the cast iron pot; S3. Surface treatment: The cast pot body (1) is finely polished to remove burrs and impurities on the surface and make the surface smooth and flat. Then, the nano-ceramic coating technology is used to evenly spray the nano-ceramic material on the surface of the pot body (1) to improve the wear resistance of the pot body (1). Finally, the nano-ceramic coating is firmly bonded to the surface of the pot body (1) through high-temperature curing treatment to ensure the stability and durability of the coating.

Citation Information

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