Disposable carbon ignition barrel
By setting an ignition window at the bottom and an igniter inside the disposable charcoal canister, the problems of cumbersome use and safety hazards of traditional charcoal canisters are solved, achieving a convenient, safe, and efficient charcoal ignition effect, suitable for light outdoor activities.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HAN TANG OUTDOOR PROD (ZHAOQING) CO LTD
- Filing Date
- 2025-05-23
- Publication Date
- 2026-05-26
AI Technical Summary
Traditional metal charcoal canisters are cumbersome to use and pose safety hazards, requiring additional tools for ignition and are not suitable for light outdoor activities. Existing paper charcoal canisters have low ignition efficiency and require multiple ignitions or the use of gas or other tools.
Design a disposable charcoal ignition bucket with an ignition window at the bottom and an inner cavity containing an igniter and a igniter. The igniter is ignited through the bottom ignition window, which in turn ignites the charcoal. The charcoal automatically falls onto the grilling grid, and the fire burns upwards, creating air convection and improving ignition efficiency.
It enables convenient and safe charcoal ignition without the need for additional tools, improving ignition and combustion efficiency, and is suitable for light outdoor activities.
Smart Images

Figure CN224284705U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of charcoal dispenser technology, and specifically to a disposable charcoal dispenser. Background Technology
[0002] With the increasing popularity of outdoor barbecues, camping, and picnics, charcoal has become a widely used primary fuel. Traditional methods of igniting charcoal typically involve using a metal ignition canister to assist in lighting the charcoal, or directly heating the charcoal with ignition tools such as alcohol or a spray gun. While metal ignition canisters are convenient to use, offering advantages such as rapid ignition, high-temperature resistance, and reusability, they also present several inconveniences and safety hazards: First, the process of using traditional metal ignition canisters is cumbersome. After lighting the charcoal, users must pour the hot charcoal from the canister into the oven or grill. This process carries a significant risk of burns due to contact with hot metal parts or splattering embers. Second, users usually need to prepare additional auxiliary tools such as gas, alcohol, and igniters to light the charcoal, increasing the burden of carrying them and placing higher demands on the operating environment, making them unsuitable for use in outdoor or other challenging environments. Furthermore, metal ignition canisters are bulky and heavy, making them inconvenient to store and carry, and unsuitable for lightweight outdoor activities. Finally, their reusability also brings maintenance issues such as cleaning charcoal residue, soot, and metal corrosion after high temperatures, increasing usage costs and hygiene burdens.
[0003] In view of the above problems, Chinese patent CN204750773U discloses a paper disposable charcoal ignition bucket structure. This prior art uses disposable packaging paper as the charcoal ignition bucket instead of the traditional metal material. After the charcoal is lit, the charcoal ignition bucket can be burned and reused. The lit charcoal automatically falls into the oven, eliminating the step of pouring the charcoal back and forth, making it safer to use. However, this charcoal ignition bucket is lit from the top of the charcoal. Because the fire burns upwards, the ignition effect of the charcoal is not high, requiring multiple lighting or the use of auxiliary tools such as gas, alcohol, or igniters. This increases costs and wastes labor. In addition, the bottom of the charcoal ignition bucket is sealed, which prevents air convection inside the bucket, resulting in low ignition efficiency and a poor consumer experience.
[0004] Therefore, there is still room for improvement and development in existing technologies. Utility Model Content
[0005] In view of the technical problems mentioned in the background art, the purpose of this utility model is to propose a disposable carbon-filled bucket, which can effectively solve the technical problems mentioned in the background art.
[0006] To achieve the above objectives, the technical solution applied in this utility model is as follows:
[0007] A disposable charcoal ignition canister includes a charcoal ignition canister body made of combustible material; the charcoal ignition canister body includes a base and a canister body, the canister body has openings at both ends, the base is integrally or detachably installed on the bottom opening of the canister body, the base has a through ignition window, and an igniter and an igniter are fixedly arranged inside the inner cavity of the canister body, the igniter and the igniter being correspondingly arranged; the igniter and the ignition window are correspondingly arranged.
[0008] According to the above scheme, the ignition window is located at the center of the base, and the igniter is fixedly placed directly above the ignition window.
[0009] According to the above scheme, the ignition material is ignition wax paper or ignition wire, and the ignition material is an ignition block made of a mixture of paraffin wax and wood chips. When the ignition material is ignition wax paper, the ignition wax paper is placed between the ignition block and the ignition window. When the ignition material 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 out of the ignition window.
[0010] According to the above scheme, the ignition block is suspended and positioned directly above the ignition window by a mounting bracket. The mounting bracket is made of combustible material, and the ignition wax paper is placed between the mounting bracket and the ignition window.
[0011] According to the above scheme, the center of the ignition block is formed with an ignition opening that runs through both the upper and lower ends of the ignition block.
[0012] According to the above scheme, the two ends of the mounting support are respectively abutted against the inner walls of the two sides of the barrel; the mounting support includes a panel, the bottom two sides of the panel are symmetrically provided with vertically arranged side plates, the inner sides of the two side plates are symmetrically provided with support plates, and the two support plates are respectively connected to the panel in a locking position; a positioning hole is formed in the center of the panel, and the ignition block is fixed in the positioning hole; the ignition wax paper is located directly below the positioning hole.
[0013] According to the above scheme, the panel is provided with multiple connecting slots, and the two side support plates are respectively provided with connecting blocks, which cooperate with the connecting slots to lock in place.
[0014] According to the above scheme, the opening of the positioning port is provided with multiple positioning blocks, which cooperate with the ignition block to lock in place.
[0015] According to the above scheme, the opening of the ignition window is provided with multiple ignition top blocks, and the ignition wax paper is positioned on the multiple ignition top blocks.
[0016] According to the above scheme, the two symmetrical sides of the barrel are foldable barrel surfaces, and the two foldable barrel surfaces are symmetrically provided with central fold lines; the bottom support is formed with a receiving groove.
[0017] The beneficial effects of this utility model are:
[0018] This invention is designed so that, during use, the charcoal-igniting barrel is placed on the charcoal grid of the oven, and charcoal is added into the inner cavity through the top opening of the barrel. Then, the igniter is ignited through the ignition window on the bottom support. After the igniter is ignited, another igniter is ignited, which in turn ignites the charcoal. After the charcoal is ignited, the charcoal-igniting barrel is ignited. Finally, the charcoal automatically falls onto the charcoal grid. No auxiliary tools such as gas, alcohol, or igniters are needed. The ignition operation is convenient and eliminates the steps and dangers of emptying the charcoal, making it safer to use. In particular, placing the igniter and the igniter at the bottom of the inner cavity ensures that the flame burns upwards after ignition, resulting in better ignition of the charcoal. Furthermore, with the top opening of the barrel, air convection is created between the ignition window and the top opening of the barrel during combustion, further improving the ignition and combustion efficiency of the charcoal. Attached Figure Description
[0019] Figure 1 This is a three-dimensional schematic diagram of the overall structure of this utility model;
[0020] Figure 2 This is an exploded view of the overall structure of this utility model;
[0021] Figure 3 This is a schematic diagram of the installation support of this utility model;
[0022] Figure 4 This is a schematic diagram of the assembly of the base support, mounting support, and ignition block of this utility model;
[0023] Figure 5 This is a schematic diagram of the paper box packaging and storage state of this utility model;
[0024] Figure 6 This is an exploded view of the paper box packaging of this utility model.
[0025] In the picture:
[0026] 10. Base support; 11. Ignition window; 12. Ignition top block; 20. Barrel body; 21. Foldable barrel surface; 30. Mounting support; 31. Positioning port; 32. Positioning clip; 33. Panel; 331. Connecting slot; 34. Side plate; 35. Support plate; 351. Connecting clip; 40. Ignition block; 41. Ignition port; 50. Ignition wax paper. Detailed Implementation
[0027] The technical solution of this utility model will be described below with reference to the accompanying drawings and embodiments.
[0028] like Figures 1 to 6As shown, the present invention provides a disposable charcoal ignition bucket, which includes a charcoal ignition bucket body made of combustible material. The charcoal ignition bucket body includes a base 10 and a bucket body 20. The bucket body 20 has openings at both ends. The base 10 is integrally or detachably installed on the bottom opening of the bucket body 20. An ignition window 11 is provided through the base 10. The inner cavity of the bucket body is provided with an igniter and an igniter, which are correspondingly arranged. The igniter and the ignition window 11 are also correspondingly arranged. With this setup, when in use, the charcoal bin is placed on the charcoal grid of the oven, and charcoal is added into the inner cavity through the top opening of the bin 20. Then, the ignition material is ignited through the ignition window 11 on the base 10. After the ignition material is ignited, the tinder is ignited again, and after the tinder is ignited, the charcoal bin is ignited. Finally, the charcoal automatically falls onto the charcoal grid. No auxiliary tools such as gas, alcohol, or igniters are needed. The ignition operation is convenient and eliminates the steps and dangers of emptying the charcoal, making it safer to use. In particular, placing the tinder and tinder at the bottom of the inner cavity ensures that the flame burns upwards after ignition, resulting in better ignition of the charcoal. Furthermore, with the top opening of the bin 20, air convection is formed between the ignition window 11 and the top opening of the bin 20 during combustion, further improving the ignition and combustion efficiency of the charcoal.
[0029] In practical applications, the charcoal-lighting barrel is assembled from a split-structure base 10 and a barrel body 20. It is easy to assemble during use and easy to store when not in use. A limiting plate protrudes from the outer periphery of the base 10, which, when the bottom openings of the base 10 and barrel body 20 are assembled, forms a limiting position with the bottom opening of the barrel body 20. Of course, this invention does not preclude the possibility that the base 10 and barrel body 20 of the charcoal-lighting barrel are integrally formed.
[0030] Furthermore, the ignition window 11 is located at the center of the base 10, and the igniter is fixed directly above the ignition window 11. This arrangement allows the charcoal to burn evenly from the center outwards after ignition, resulting in better combustion and higher combustion efficiency.
[0031] Furthermore, the igniter is either igniting wax paper 50 or igniting wire, and the igniter is an igniter block 40 made of a mixture of paraffin wax and wood chips. When the igniter is igniting wax paper 50, the igniting wax paper 50 is placed between the igniter block 40 and the ignition window 11. When the igniter is igniting wire, one end of the igniter is connected to the igniter block 40, and the other end passes through the ignition window 11 and extends outside the ignition window 11. With this setup, when the ignition material is ignitable wax paper 50, the ignition device (such as a match, lighter, or lighter) is inserted through the ignition window 11 and brought into contact with the ignitable wax paper 50 to ignite it. The ignited wax paper 50 then quickly ignites the ignition block 40 above it. When the ignition material is ignition wire, the ignition device (such as a match, lighter, or lighter) is brought into contact with one end of the ignition wire to ignite it. The ignition wire then quickly ignites the other end of the ignition block 40. The ignition block 40 is made of a mixture of paraffin wax and sawdust, possessing good combustibility and stable combustion performance. Paraffin wax provides a continuous ignition source, while sawdust acts as a carrier to enhance the ignition effect. The combination of the two quickly produces a stable flame after ignition. Once the ignition block 40 is ignited, it burns stably and continuously, subsequently igniting the surrounding charcoal without the need for additional fuel, alcohol, or other auxiliary ignition materials. It can be ignited quickly and easily in one go.
[0032] Furthermore, the ignition block 40 is suspended and positioned directly above the ignition window 11 by the mounting support 30, which is made of combustible material. The ignition wax paper 50 is placed between the mounting support 30 and the ignition window 11. This arrangement facilitates assembly, and the gap between the ignition block 40 and the ignition wax paper 50 results in better ignition.
[0033] In practical applications, the charcoal barrel body and the mounting support 30 are preferably made of paper material, and the selected paper material has good combustibility and structural stability, can burn together with the charcoal after ignition, and also has a certain load-bearing and shaping capacity.
[0034] Furthermore, the ignition block 40 has an ignition opening 41 formed at its center, extending through both the upper and lower ends of the ignition block 40. This design allows for enhanced airflow through the ignition opening 41, accelerating the combustion process of the ignition block 40 and thereby improving the ignition efficiency of the charcoal.
[0035] Furthermore, the two ends of the mounting support 30 abut against the inner walls of both sides of the barrel 20; the mounting support 30 includes a panel 33, with vertically arranged side plates 34 symmetrically arranged on both sides of the bottom of the panel 33, and support plates 35 symmetrically arranged on the inner side of the side plates 34, and the support plates 35 are respectively connected to the panel 33 in a locking position; a positioning opening 31 is formed at the center 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 configuration, after the mounting support 30 is assembled, its two ends abut against the inner walls of the two sides of the barrel 20 for limiting, preventing displacement of the mounting support 30 from causing changes in the corresponding positions of the ignition block 40, the ignition wax paper 50, and the ignition window 11. The side plates 34 are used to suspend and position the panel 33, creating a certain gap between the ignition block 40 and the ignition wax paper 50 for better ignition. The ignition block 40 is fixed in the positioning opening 31 at the center of the panel 33, and the ignition wax paper 50 is located directly below the positioning opening 31. The mounting support 30 provides support and guidance for the ignition wax paper 50 and the ignition block 40, and the ignition wax paper 50 is located inside the mounting support 30, preventing the poured-in charcoal from contacting the ignition wax paper 50 and causing displacement of the ignition wax paper 50.
[0036] Furthermore, the panel 33 is provided with multiple connecting slots 331, and the two side support plates 35 are respectively provided with connecting blocks 351, which are engaged with the connecting slots 331. This arrangement makes the overall structure of the mounting support 30 more robust and its load-bearing capacity more reliable, and can prevent the installed support 30 from deforming due to contact between the poured-in carbon and the mounting support 30.
[0037] In practical applications, after the support plates 35 on both sides are engaged with the panel 33, a portion of the support plates 35 on both sides are parallel and spaced below the positioning port 31, which can provide a certain support for the ignition block 40 and effectively improve the positioning effect of the ignition block 40 in conjunction with the positioning port 31.
[0038] Furthermore, the positioning port 31 has multiple positioning blocks 32 protruding from its opening, which cooperate with the ignition block 40 to lock in place. This arrangement ensures reliable positioning of the ignition block 40 by using multiple positioning blocks 32, preventing the ignition block 40 from shifting due to contact between the poured-in charcoal and the ignition block 40.
[0039] In practical applications, multiple positioning blocks 32 are folded into shape after being cut through the positioning opening 31. Preferably, the positioning block 3 has a symmetrical triangular structure; preferably, the positioning opening 31 and the ignition block 40 have a square structure.
[0040] Furthermore, the opening of the ignition window 11 is provided with multiple ignition top blocks 12, and the igniter is positioned on the multiple ignition top blocks 12. This arrangement allows the igniter wax paper 50 to be positioned by the multiple ignition top blocks 12, so that the igniter wax paper 50 and the ignition window 11 correspond, making ignition more convenient and reliable. Specifically, the igniter wax paper 50 is exposed in the area directly opposite the ignition window 11, thereby improving the success rate and efficiency of ignition and preventing ignition failure or flame deviation.
[0041] In practical applications, multiple ignition top blocks 12 are folded into shape after cutting the ignition window 11. Preferably, the ignition top block 12 has a symmetrical triangular structure.
[0042] Furthermore, the two symmetrical sides of the barrel 20 are foldable barrel surfaces 21, and symmetrical center fold lines are provided on the two foldable barrel surfaces 21; the base 10 is formed with a receiving groove. With this configuration, when not in use, the barrel 20 can be folded and stored in the receiving groove along with the mounting support 30, the ignition block 40, and the ignition wax paper 50.
[0043] In practical applications, two sets of the base tray 10, barrel body 20, mounting support 30, ignition block 40, and ignition wax paper 50 are provided. During packaging, the two sets of mounting support 30 are placed alternately in the receiving groove of the first base tray 10. Then, the two sets of ignition blocks 40 are placed alternately in the gap between the two sets of mounting support 30. Next, the two sets of ignition wax paper 50 are stacked and placed in the gap between the two sets of ignition blocks 40. Then, the two barrel bodies 20 are folded along the center fold line and stacked on top of the mounting support 30, ignition block 40, and ignition wax paper 50. Finally, the second base tray 10 is reversed and placed on top of the first base tray 10, forming a compact, flat, small cardboard box package. Figure 5 and Figure 6 As shown, this reduces the overall product's transport volume and storage space, while also making it convenient for users to carry, making it particularly suitable for portable use scenarios such as outdoor barbecues and camping.
[0044] The embodiments of the present utility model have been described above with reference to the accompanying drawings. However, the present utility model 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 the present utility model without departing from the spirit and scope of the claims. All of these forms are within the scope of protection of the present utility model.
Claims
1. A disposable charcoal dispenser, characterized in that: Includes a charcoal-igniting barrel body, said charcoal-igniting barrel body being made of combustible material; The ignition barrel includes a base (10) and a barrel body (20). The barrel body (20) has openings at both ends. The base (10) is integrally or detachably installed on the bottom opening of the barrel body (20). An ignition window (11) is provided through the base (10). An igniter and an igniter are fixedly provided in the inner cavity of the barrel body (20). The igniter and the igniter are provided correspondingly. The ignition source and ignition window (11) are set accordingly.
2. The disposable charcoal dispenser according to claim 1, characterized in that: The ignition window (11) is located at the center of the base (10), and the igniter is fixedly positioned directly above the ignition window (11).
3. A disposable charcoal dispenser according to claim 2, characterized in that: The ignition source is either igniting wax paper (50) or ignition wire. The ignition source is an ignition block (40) made of a mixture of paraffin wax and wood chips. When the ignition source is igniting wax paper (50), the igniting wax paper (50) is placed between the ignition block (40) and the ignition window (11). When the ignition source is 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. A disposable charcoal-igniting bucket according to claim 3, characterized in that: The ignition block (40) is suspended and positioned directly above the ignition window (11) by the mounting support (30), the mounting support (30) is made of combustible material, and the ignition wax paper (50) is located between the mounting support (30) and the ignition window (11).
5. A disposable charcoal-igniting bucket according to claim 4, characterized in that: The center of the ignition block (40) is formed with an ignition opening (41) that runs through both the upper and lower ends of the ignition block (40).
6. A disposable charcoal dispenser according to claim 4, characterized in that: The two ends of the mounting support (30) abut against the inner walls of the two sides of the barrel (20); the mounting support (30) includes a panel (33), and the bottom two sides of the panel (33) are symmetrically provided with vertically arranged side plates (34), and the inner sides of the two side plates (34) are symmetrically provided with support plates (35), and the two support plates (35) are respectively connected to the panel (33) by locking; a positioning hole (31) is formed in the center of the panel (33), and the ignition block (40) is fixed in the positioning hole (31); the ignition wax paper (50) is located directly below the positioning hole (31).
7. A disposable charcoal dispenser according to claim 6, characterized in that: The panel (33) is provided with multiple connecting slots (331), and the support plates (35) on both sides are respectively provided with connecting blocks (351), and the connecting blocks (351) cooperate with the connecting slots (331) to lock in place.
8. A disposable charcoal dispenser according to claim 6, characterized in that: The positioning port (31) has a plurality of positioning blocks (32) protruding from its opening, and the plurality of positioning blocks (32) cooperate with the ignition block (40) to lock in place.
9. A disposable charcoal-igniting bucket according to claim 4, characterized in that: The opening of the ignition window (11) is provided with a plurality of ignition top blocks (12), and the ignition wax paper (50) is positioned on the plurality of ignition top blocks (12).
10. A disposable charcoal dispenser according to claim 2, characterized in that: The two symmetrical sides of the barrel body (20) are foldable barrel surfaces (21), and the two foldable barrel surfaces (21) are symmetrically provided with central fold lines; the base (10) is formed with a receiving groove.