Disposable carbon ignition barrel
By designing the charcoal barrel made of combustible materials, the bottom ignition window and ignition trigger settings, the problems of cumbersome use and safety hazards of traditional charcoal barrels are solved, and convenient and safe charcoal ignition and efficient combustion are achieved, which is suitable for outdoor activities.
Patent Information
- Application Number
- CN202510669571.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-05-08
- Filing Date
- 2025-05-23
- Publication Date
- 2025-07-18
AI Technical Summary
Traditional metal point charcoal barrels are cumbersome to use and have safety hazards. Paper point charcoal barrels are ineffective in ignition, requiring auxiliary tools, which cannot meet the portability and safety needs of outdoor activities.
A disposable charcoal scattered barrel is designed, made of combustible materials, with a ignition window and ignition object at the bottom, and the ignition object and ignition object are arranged accordingly. When ignition, the fire burns upward, and combined with the opening at the top of the barrel body to form air convection, eliminating auxiliary tools and improving ignition efficiency.
A convenient and safe carbon ignition process is achieved, avoiding the risk of carbon pouring steps and high-temperature contact, improving ignition efficiency and combustion efficiency, and suitable for outdoor activities.
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Figure CN120332794A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of charcoal ignition buckets, and particularly refers to a disposable charcoal ignition bucket. Background Art
[0002] With the increasing popularity of outdoor barbecues, camping and picnics, charcoal is widely used as a main fuel. Traditional methods of igniting charcoal usually use metal charcoal ignition buckets to assist in igniting charcoal, or directly use ignition tools such as alcohol or blowtorches to heat the charcoal. Although metal charcoal ignition buckets are convenient to use, with fast ignition speed, high temperature resistance of materials and the characteristics of repeated use, there are many inconveniences and potential safety hazards during their use: First, the use process of traditional metal charcoal ignition buckets is cumbersome. After the user ignites the charcoal, they still need to pour the high-temperature charcoal from the ignition bucket into the grill or grill net. During the operation process, it is easy to cause scalding accidents due to contact with high-temperature metal parts or flying charcoal, posing a greater safety risk; Second, in order to ignite the charcoal, users usually need to additionally prepare auxiliary tools such as gas, alcohol, and fire starters, which not only increases the carrying burden but also places higher requirements on the operating environment, making it not conducive to use in simple outdoor places; In addition, metal charcoal ignition buckets are large in volume and heavy in weight, making them inconvenient to store and carry, and not suitable for portable outdoor activity scenarios; At the same time, their repeated use nature also brings maintenance problems such as cleaning charcoal residues, smoky dirt, and metal rust after high temperature, increasing the use cost and hygiene burden.
[0003] In view of the above problems, the Chinese utility model patent with the publication number CN204750773U discloses a paper disposable charcoal ignition bucket structure; this prior art uses disposable packaging paper as the charcoal ignition bucket instead of traditional metal materials, and the ignition bucket can also be burned and utilized after the charcoal is ignited. The ignited charcoal automatically falls into the grill, eliminating the step of pouring the charcoal back and forth, making it safer to use. However, when this charcoal ignition bucket is used, it is ignited from the top of the charcoal. Since the fire burns upward, the ignition effect on the charcoal is not high, and it needs to be ignited multiple times, or with the help of auxiliary tools such as gas, alcohol, and fire starters, which not only increases the cost but also wastes labor. Moreover, the bottom of the charcoal ignition bucket is sealed, resulting in no air convection inside the charcoal ignition bucket, and the ignition efficiency of the charcoal is not high, making the consumer experience poor.
[0004] Therefore, there is still room for improvement and development in the prior art. Summary of the Invention
[0005] Aiming at the technical problems mentioned in the background art, the object of the present invention is to propose a disposable charcoal ignition bucket, which can well solve the technical problems mentioned in the above background art.
[0006] To achieve the above object, the technical solution applied by the present invention is as follows:
[0007] A disposable charcoal ignition bucket, comprising a charcoal ignition bucket body made of combustible materials; the charcoal ignition bucket body includes a bottom support and a bucket body, both ends of the bucket body are open, the bottom support is integrally or detachably installed on the bottom opening of the bucket body, and an ignition window is formed through the bottom support. An ignition aid and an ignition starter are fixedly arranged in the inner cavity of the bucket body, and the ignition aid and the ignition starter are arranged correspondingly; the ignition starter and the ignition window are arranged correspondingly.
[0008] According to the above solution, the ignition window is located at the center position of the bottom support, and the ignition aid is fixedly arranged directly above the ignition window.
[0009] According to the above solution, the ignition starter is ignition wax paper or ignition wire, and the ignition aid is an ignition block made of a mixture of paraffin wax and wood chips. When the ignition starter is ignition wax paper, the ignition wax paper is arranged between the ignition block and the ignition window; when the ignition starter is ignition wire, one end of the ignition wire is connected to the ignition block, and the other end passes through the ignition window and extends outside the ignition window.
[0010] According to the above solution, the ignition block is suspended directly above the ignition window through an installation support bracket. The installation support bracket is made of combustible materials, and the ignition wax paper is arranged between the installation support bracket and the ignition window.
[0011] According to the above solution, a fire ignition through hole penetrating the upper and lower ends of the ignition block is formed at the center position of the ignition block.
[0012] According to the above solution, both ends of the installation support bracket respectively abut against the inner walls on both sides of the bucket body; the installation support bracket includes a panel, and vertical side plates are symmetrically arranged on both sides of the bottom of the panel. Support plates are symmetrically arranged on the inner sides of the two side plates, and the two support plates are respectively connected to the panel in a clamping manner; a positioning opening is formed at the center position of the panel, and the ignition block is fixed in the positioning opening; the ignition wax paper is located directly below the positioning opening.
[0013] According to the above solution, a plurality of connection card slots are arranged on the panel, and connection blocks are respectively arranged on the two support plates. The connection blocks are engaged with the connection card slots in a clamping manner.
[0014] According to the above solution, a plurality of positioning blocks protrude from the opening of the positioning opening, and the plurality of positioning blocks are engaged with the ignition block in a clamping manner.
[0015] According to the above solution, a plurality of ignition top blocks protrude from the opening of the ignition window, and the ignition wax paper is positioned on the plurality of ignition top blocks.
[0016] According to the above solution, two symmetrical side surfaces of the bucket body are foldable barrel surfaces, and central folding lines are symmetrically arranged on the two foldable barrel surfaces; a receiving groove is formed on the bottom support.
[0017] The beneficial effects of the present invention:
[0018] The present invention is configured as follows. When in use, place the charcoal ignition barrel on the charcoal grid of the oven, then add charcoal into the inner cavity through the top opening of the barrel, and then ignite the ignition material through the ignition window on the bottom support. After the ignition material is ignited, ignite the kindling material. After the kindling material is ignited, ignite the charcoal. After the charcoal is ignited, ignite the charcoal ignition barrel. Finally, the charcoal will automatically fall onto the charcoal grid. There is no need to rely on auxiliary tools such as gas, alcohol, and fire starters. The ignition operation is convenient, and the steps and risks of pouring charcoal are eliminated, making it safer to use. Among them, the kindling material and the ignition material are arranged at the bottom of the inner cavity. After ignition, the fire burns upward, which has a better effect on igniting the charcoal. And with the cooperation of the top opening of the barrel, an air convection will be formed between the ignition window and the top opening of the barrel during combustion, thereby also having a better effect on the ignition efficiency and combustion efficiency of the charcoal. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a three-dimensional schematic diagram of the overall structure of the present invention;
[0020] Figure 2 is an exploded schematic diagram of the overall structure of the present invention;
[0021] Figure 3 is a schematic diagram of the installation support of the present invention;
[0022] Figure 4 is an assembly schematic diagram of the bottom support, installation support, and kindling block of the present invention;
[0023] Figure 5 is a schematic diagram of the storage state of the present invention in a paper box packaging;
[0024] Figure 6 is an exploded schematic diagram of the paper box packaging of the present invention.
[0025] In the figure:
[0026] 10, bottom support; 11, ignition window; 12, ignition top block; 20, barrel; 21, foldable barrel surface; 30, installation support; 31, positioning port; 32, positioning block; 33, panel; 331, connection card slot; 34, side plate; 35, support plate; 351, connection block; 40, kindling block; 41, kindling through hole; 50, ignition wax paper. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] The technical solutions of the present invention will be described below in conjunction with the drawings and embodiments.
[0028] As Figures 1 to 6As shown in the figure, the disposable charcoal ignition bucket of the present invention includes a charcoal ignition bucket body, and the charcoal ignition bucket body is made of combustible materials; the charcoal ignition bucket body includes a bottom support 10 and a bucket body 20. Both ends of the bucket body 20 are open, and the bottom support 10 is integrally or detachably installed on the bottom opening of the bucket body 20. An ignition window 11 is provided through the bottom support 10. Ignition aids and ignition starters are provided in the inner cavity of the bucket body, the ignition aids and ignition starters are arranged correspondingly, and the ignition starter and the ignition window 11 are arranged correspondingly. With such a setting, during use, place the charcoal ignition bucket on the charcoal grid of the grill, then add charcoal into the inner cavity through the top opening of the bucket body 20, and then ignite the ignition starter through the ignition window 11 on the bottom support 10. After the ignition starter is ignited, ignite the ignition aid, and after the ignition aid is ignited, ignite the charcoal, and after the charcoal is ignited, ignite the charcoal ignition bucket body. Finally, the charcoal will automatically fall onto the charcoal grid without the need to rely on auxiliary tools such as gas, alcohol, and ignition agents. The ignition operation is convenient, and the steps and risks of pouring charcoal are eliminated, making it safer to use; among them, the ignition aids and ignition starters are arranged at the bottom of the inner cavity. After being ignited, the fire burns upward, which has a better effect on igniting the charcoal. And with the cooperation of the top opening of the bucket body 20, an air convection will be formed between the ignition window 11 and the top opening of the bucket body 20 during combustion, thus also having a better ignition efficiency and combustion efficiency for the charcoal.
[0029] In practical applications, the charcoal ignition bucket body is assembled by a bottom support 10 and a bucket body 20 with a split structure. During use, it is convenient to assemble, and when not in use, it is convenient to store; among them, a limiting plate is convexly provided on the outer periphery of the bottom support 10. When the bottom support 10 and the bottom opening of the bucket body 20 are assembled, the limiting plate forms a limit with the bottom opening of the bucket body 20. Of course, the present invention does not exclude the integral molding of the bottom support 10 and the bucket body 20 of the charcoal ignition bucket body.
[0030] Furthermore, the ignition window 11 is located at the center position of the bottom support 10, and the ignition aid is fixedly provided directly above the ignition window 11. With such a setting, after the charcoal is ignited, it burns evenly from the middle to the periphery, resulting in a better combustion effect and higher combustion efficiency.
[0031] Further, the igniter is an ignition wax paper 50 or an ignition wire, and the ignition material is an ignition block 40 made of a mixture of paraffin and sawdust materials. When the ignition material is the ignition wax paper 50, the ignition wax paper 50 is arranged between the ignition block 40 and the ignition window 11; when the ignition material is the ignition wire, one end of the ignition wire is connected to the ignition block 40, and the other end passes through the ignition window 11 and extends out of the ignition window 11. In this way, when the ignition material is the ignition wax paper 50, when in use, the ignition device (such as a match, a lighter, an igniter, etc.) is inserted from the ignition window 11, and the ignition wax paper 50 is contacted to ignite, and the ignited ignition wax paper 50 can quickly ignite the ignition block 40 above, and when the ignition material is the ignition wire, when in use, the ignition device (such as a match, a lighter, an igniter, etc.) is contacted with one end of the ignition wire to ignite, and the ignition wire can quickly ignite the ignition block 40 at the other end, and the ignition block 40 is made of a mixture of paraffin and sawdust materials, and has good flammability and stable combustion performance. Paraffin is used as a fuel to provide a continuous fire source, and sawdust is used as a carrier to enhance the ignition effect. The combination of the two can quickly produce a stable flame after ignition. When the ignition block 40 is ignited, it can continue to burn stably, and then ignite the surrounding charcoal in turn, without the need to add additional auxiliary ignition materials such as gas and alcohol. It can be ignited quickly and at one time.
[0032] Furthermore, the ignition block 40 is suspended and positioned above the ignition window 11 by the mounting bracket 30, the mounting bracket 30 is made of a combustible material, and the ignition wax paper 50 is arranged between the mounting bracket 30 and the ignition window 11. This arrangement is convenient for assembly, and there is a certain gap between the ignition block 40 and the ignition wax paper 50, so the ignition effect is better.
[0033] In practical applications, the charcoal ignition barrel and the mounting bracket 30 are preferably made of paper material, and the selected paper material has good flammability and structural stability, can burn along with the charcoal after being ignited, and has certain load-bearing and forming capabilities.
[0034] Furthermore, the center of the ignition block 40 is formed with an ignition hole 41 that runs through the upper and lower ends of the ignition block 40. This arrangement can be used to enhance air circulation, speed up the combustion process of the ignition block 40, and thus improve the ignition efficiency of the charcoal.
[0035] Furthermore, both ends of the mounting support 30 are respectively abutted against the inner walls on both sides of the barrel body 20; the mounting support 30 includes a panel 33, and vertical side plates 34 are symmetrically arranged on both sides of the bottom of the panel 33. Support plates 35 are symmetrically arranged on the inner sides of the two side plates 34, and the two support plates 35 are respectively connected to the panel 33 in a clamping manner; a positioning opening 31 is formed at the center position of the panel 33, and the ignition block 40 is fixed in the positioning opening 31; the ignition wax paper 50 is located directly below the positioning opening 31. With this setting, after the mounting support 30 is assembled, its two ends are respectively abutted against the inner walls on both sides of the barrel body 20 for positioning, preventing the displacement of the mounting support 30 from causing changes in the corresponding positions among the ignition block 40, the ignition wax paper 50, and the ignition window 11; among them, the two side plates 34 are used to suspend and position the panel 33, so that there is a certain gap between the ignition block 40 and the ignition wax paper 50, and the ignition effect is better; and the ignition block 40 is fixed in the positioning opening 31 at the center position of the panel 33, and the ignition wax paper 50 is located directly below the positioning opening 31. The mounting support 30 forms a supporting and guiding effect on the ignition wax paper 50 and the ignition block 40, and the ignition wax paper 50 is located inside the mounting support 30, which can prevent the poured charcoal from contacting the ignition wax paper 50 and causing the displacement of the ignition wax paper 50.
[0036] Furthermore, a plurality of connection card slots 331 are provided on the panel 33, and connection blocks 351 are respectively provided on the two support plates 35. The connection blocks 351 are engaged with the connection card slots 331 in a clamping manner. With this setting, the overall structure of the mounting support 30 is more firm, the load-bearing capacity is more reliable, and it can prevent the poured charcoal from contacting the mounting support 30 and causing the deformation of the mounting support 30.
[0037] In practical applications, after the two support plates 35 are clamped with the panel 33, a part of the two support plates 35 is parallel and spaced below the positioning opening 31, which can play a certain supporting role for the ignition block 40 and effectively improve the positioning effect of the ignition block 40 in cooperation with the positioning opening 31.
[0038] Furthermore, a plurality of positioning blocks 32 protrude upward from the opening of the positioning opening 31, and the plurality of positioning blocks 32 are engaged with the ignition block 40 in a clamping manner. With this setting, the ignition block 40 is clamped by the plurality of positioning blocks 32, and the positioning effect is reliable, which can prevent the poured charcoal from contacting the ignition block 40 and causing the displacement of the ignition block 40.
[0039] In practical applications, the plurality of positioning blocks 32 are formed by folding the cut part after cutting the positioning opening 31. Preferably, the positioning block 3 has a symmetric triangular structure; preferably, the positioning opening 31 and the ignition block 40 have a square structure.
[0040] Furthermore, a plurality of ignition top blocks 12 protrude upwardly from the opening of the ignition window 11, and the ignition material is positioned on the plurality of ignition top blocks 12. With this arrangement, the positioning of the ignition wax paper 50 is achieved through the plurality of ignition top blocks 12, so that the ignition wax paper 50 corresponds to the ignition window 11, making ignition more convenient and reliable. Specifically, the ignition wax paper 50 is exposed in the area directly opposite to the ignition window 11, thereby improving the success rate and efficiency of ignition and preventing ignition failure or flame deviation.
[0041] In practical applications, the plurality of ignition top blocks 12 are formed by folding the cut part after cutting the ignition window 11. Preferably, the ignition top blocks 12 have a symmetric triangular structure.
[0042] Furthermore, two symmetric side surfaces of the barrel body 20 are foldable barrel surfaces 21, and central folding lines are symmetrically provided on the two foldable barrel surfaces 21; a receiving groove is formed on the bottom support 10. With this arrangement, in the non-use state, the barrel body 20 can be folded and then stored in the receiving groove together with the mounting support 30, the ignition block 40, and the ignition wax paper 50.
[0043] In practical applications, there are two sets of the bottom support 10, the barrel body 20, the mounting support 30, the ignition block 40, and the ignition wax paper 50. During packaging, the two mounting supports 30 are placed at intervals in the receiving groove of the first bottom support 10, then the two ignition blocks 40 are placed at intervals in the gaps between the two mounting supports 30, then the two ignition wax papers 50 are stacked and placed in the gaps between the two ignition blocks 40, then the two barrel bodies 20 are respectively folded along the central folding lines and then stacked on top of the mounting support 30, the ignition block 40, and the ignition wax paper 50, and finally the second bottom support 10 is reversely covered on the first bottom support 10 to form a small carton package with a compact structure and a flat thickness. As Figure 5 and Figure 6 shown, this not only reduces the transportation volume and storage space of the overall product but also is convenient for users to carry, and is particularly suitable for scenarios such as outdoor barbecues and camping where portability is required.
[0044] The embodiments of the present invention have been described above in conjunction with the accompanying drawings, but the present invention is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present invention, those of ordinary skill in the art can also make many forms without departing from the spirit and scope protected by the claims of the present invention, and these all fall within the protection scope of the present invention.
Claims
1. A disposable charcoal ignition bucket, characterized in that: It includes a charcoal ignition bucket body made of combustible materials; The charcoal ignition bucket body includes a bottom support (10) and a bucket body (20). The two ends of the bucket body (20) are open. The bottom support (10) is integrally or detachably installed on the bottom opening of the bucket body (20). An ignition window (11) is formed through the bottom support (10). An ignition aid and an ignition primer are fixedly arranged in the inner cavity of the bucket body (20), and the ignition aid and the ignition primer are arranged correspondingly; The ignition primer and the ignition window (11) are arranged correspondingly.
2. The disposable charcoal lighter according to claim 1, characterized in that: The ignition window (11) is located at the central position of the bottom support (10), and the ignition aid is fixedly arranged directly above the ignition window (11).
3. The disposable charcoal ignition bucket according to claim 2, characterized in that: The ignition primer is ignition wax paper (50) or an ignition wire. The ignition aid is an ignition block (40) made of a mixture of paraffin and wood chips. When the ignition primer is ignition wax paper (50), the ignition wax paper (50) is arranged between the ignition block (40) and the ignition window (11); when the ignition primer is an ignition wire, one end of the ignition wire is connected to the ignition block (40), and the other end passes through the ignition window (11) and extends out of the ignition window (11).
4. The disposable charcoal ignition bucket according to claim 3, wherein: The ignition block (40) is suspended directly above the ignition window (11) through an installation support (30). The installation support (30) is made of combustible materials, and the ignition wax paper (50) is arranged between the installation support (30) and the ignition window (11).
5. The disposable charcoal ignition bucket according to claim 4, wherein: A fire ignition through-hole (41) penetrating the upper and lower ends of the ignition block (40) is formed at the central position of the ignition block (40).
6. A disposable charcoal lighter according to claim 4, characterized in that: Both ends of the installation support (30) are respectively abutted against the inner walls on both sides of the bucket body (20); the installation support (30) includes a panel (33). Vertically arranged side plates (34) are symmetrically arranged on both sides of the bottom of the panel (33). Support plates (35) are symmetrically arranged on the inner sides of the two side plates (34). The two support plates (35) are respectively connected with the panel (33) in a clamping manner; a positioning opening (31) is formed at the central position of the panel (33), and the ignition block (40) is fixed in the positioning opening (31); the ignition wax paper (50) is located directly below the positioning opening (31).
7. A disposable charcoal ignition bucket according to claim 6, characterized in that: A plurality of connection card slots (331) are arranged on the panel (33). Connection blocks (351) are respectively arranged on the two support plates (35), and the connection blocks (351) are clamped with the connection card slots (331).
8. A disposable charcoal ignition bucket according to claim 6, characterized in that: A plurality of positioning blocks (32) protrude from the opening of the positioning opening (31), and the plurality of positioning blocks (32) are clamped with the ignition block (40).
9. A disposable charcoal ignition bucket according to claim 4, characterized in that: A plurality of ignition top blocks (12) protrude from the opening of the ignition window (11), and the ignition wax paper (50) is positioned on the plurality of ignition top blocks (12).
10. A disposable charcoal ignition bucket according to claim 2, characterized in that: Two symmetrically arranged side faces of the bucket body (20) are foldable barrel surfaces (21). Central folding lines are symmetrically arranged on the two foldable barrel surfaces (21); a receiving groove is formed on the bottom support (10).
Citation Information
Patent Citations
Paper is once only put charcoal barrel knot and is constructed
CN204750773U