Direct-blowing-preventing kindling lamp
By designing a windproof seat and a convection cavity structure in the fire starter lamp, the problem of direct wind blowing in is solved, and better windproof effect and flame control are achieved.
Patent Information
- Application Number
- CN202422455329.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-10-10
AI Technical Summary
In the windproof structure of the existing fire starter lamp, wind can still blow directly into the shell through the side holes, resulting in poor windproof effect.
A fire starter lamp that can prevent direct blowing is designed. A windproof seat and a windproof tube are set on the transparent cover to form a convection cavity. The upper and lower convection ports and the outer mesh holes are designed so that wind enters and flows out from the upper and lower convection ports, reducing the direct impact on the fire starter. The size of the flame can be controlled by rotating the transparent cover and adjusting the height of the wick with a nut.
It effectively prevents wind from blowing directly onto the kindling lamp, improves windproof performance, and can adapt to different environmental conditions by adjusting the air volume and flame size.
Smart Images

Figure CN223399761U_ABST
Abstract
Description
Technical field
[0001] The utility model relates to a kindling lamp for torch relay. [Background Technology]
[0002] During the torch relay, the fire lamp is an indispensable part. After the fire is collected, it is stored in the fire lamp. During the transmission of the fire, it is guaranteed that the fire will not be extinguished under various adverse conditions, especially when it needs to be blown out by wind. Currently, there are conventional windproof structures on the market, such as the patent number 202122761186.0, which is named a fire lamp. It uses an outer shell and an inner cover assembly, a smoke outlet is set on the shell, and a mesh is set on the upper part. This method can achieve a certain windproof effect, but the wind still blows directly into the shell from the side holes, and there is still a certain amount of air intake. [Utility Model Content]
[0003] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a fire starter lamp which has a simple structure and good windproof effect and is resistant to direct blowing.
[0004] In order to solve the above problems, the present invention adopts the following technical solutions:
[0005] A fire lamp that prevents direct blowing, characterized in that: it includes a base, a transparent cover is provided on the upper end of the base, the transparent cover and the base form a fire chamber with an upper end open for burning fire, an oil cup assembly is provided on the base, the oil cup assembly is provided with a wick with one end extending into the fire chamber, a windproof seat is provided on the upper end of the transparent cover, the windproof seat is provided with an upwardly extending middle windproof tube, the windproof seat is provided with a vertically extending inner windproof tube in the middle windproof tube, the middle windproof tube is closed at the upper end and closed at the lower end The opening is for the inner windshield to extend into, the lower end opening of the inner windshield is connected to the fire chamber, the inner windshield is provided with an inner mesh hole connecting the middle windshield and the inner windshield, the windshield seat is provided with an outer cover which is sleeved outside the inner windshield, a convection cavity is formed between the outer cover and the inner windshield, the upper and lower ends of the convection cavity are respectively provided with an upper convection port and a lower convection port for convection between external air and the convection cavity, the middle windshield is provided with an outer mesh hole connecting the convection cavity and the middle windshield.
[0006] The direct-blowing-proof fire starter lamp as described above is characterized in that the outer mesh holes are respectively arranged at the upper end and the lower end of the middle windproof tube.
[0007] The above-mentioned fire starter lamp that prevents direct blowing is characterized in that: the transparent cover includes an inner transparent cover fixedly mounted on the base and an outer transparent cover relatively rotatably arranged on the base and sleeved on the outside of the inner transparent cover, the inner transparent cover is provided with an opening on the side, the upper side of the outer transparent cover is provided with a fire hole for inserting into the ignition and an outer cover that can cover the fire hole, when the inner transparent cover and the outer transparent cover are relatively rotated, the fire hole is connected with the fire starter cavity through the opening or the outer transparent cover covers the fire hole.
[0008] The above-mentioned fire starter lamp that is anti-direct blowing is characterized in that: the base includes an upper base and a lower base connected to the bottom of the upper base, the transparent cover is arranged on the upper base, the upper base is provided with an upper oil cup cavity with an opening at the lower end and a wick hole that can be connected to the fire starter cavity for the wick to extend into, the lower base is provided with a lower oil cup cavity with openings at both ends and connected to the upper oil cup cavity, the oil cup assembly is installed from the lower end opening of the lower oil cup cavity and extends into the upper oil cup cavity, the lower base is provided with a plurality of guide columns, and the bottom of the oil cup assembly is provided with a plurality of guide holes for the guide columns to be inserted one by one and guide grooves that can clamp the guide columns and allow the guide columns to slide into when the oil cup assembly rotates.
[0009] The fire starter lamp that can prevent direct blowing as described above is characterized in that: a rotating seat is rotatably provided on the upper end of the base, and a positioning step is provided on the rotating seat for positioning and installing the inner transparent cover so that the inner transparent cover can rotate with the rotating seat. The upper base and the rotating seat form a lower slot for inserting the lower end of the outer transparent cover, and the windproof seat is provided with an upper slot for inserting the upper end of the outer transparent cover, and the rotating seat is provided with a paddle that can drive the rotating seat to rotate.
[0010] The above-mentioned direct-blowing-proof fire starter lamp is characterized in that: the bottom end of the lower base is provided with an arc-shaped guide hole for the pick to pass downward out of the lower base, a blocking block is provided in the guide hole that can block the guide hole, one end of the blocking block is provided with a plug-in hole for the pick to pass through, and the end of the pick that passes through the plug-in hole is detachably provided with a pick block.
[0011] The direct-blowing-proof fire starter lamp as described above is characterized in that a plurality of support columns are provided between the base and the windproof seat.
[0012] The flame-starting lamp that is resistant to direct blowing as described above is characterized in that: the outer cover is in the shape of a cone ring with an upper end diameter smaller than a lower end diameter; the outer cover is provided with an arc-shaped air guide plate on one side of the upper convection port 30, the upper end of which protrudes from the upper end of the outer cover; the height of the air guide plate at the opening at the upper end of the outer cover gradually increases from one end to the other end.
[0013] The above-mentioned direct-blowing-proof fire starter lamp is characterized in that: a cylindrical platform is provided at the upper end of the upper base in the fire starter cavity, the outer wall of the cylindrical platform is provided with an external thread, the wick hole passes through the cylindrical platform, the external thread of the cylindrical platform is connected to a nut, and the nut is provided with a wick adjustment hole for the wick to extend out.
[0014] The direct-blow proof fire starter lamp as described above is characterized in that a handle is provided on the outer cover.
[0015] The beneficial effects of the present invention are as follows: a convection cavity is formed between the outer cover and the inner windproof tube, and the upper and lower ends of the convection cavity are provided with an upper convection port and a lower convection port. In this way, when wind blows in, it enters the convection cavity from the upper convection port or the lower convection port, and flows out from the lower convection port or the upper convection port. When the wind enters the fire lamp, it is in a vertical direction, so that the wind will not blow directly into the middle windproof tube, and a small amount of air will be convected into the middle windproof tube, thereby reducing the influence of the airflow on the fire in the fire cavity, and even if the wind is strong, it will not impact the fire; the outer mesh holes are respectively arranged at the upper and lower ends of the middle windproof tube, which is convenient for wind convection in the middle windproof tube. When wind enters from the upper convection port and flows out from the lower convection port, the air is The outer mesh hole has a larger amount of air entering, which will lower the flame of the fire cavity. On the contrary, when the wind enters from the lower convection port and flows out from the upper convection port, the wind enters from the outer mesh hole at the lower end has a larger amount of air entering, which will lengthen the flame of the fire cavity, and the flame can be controlled when the position of the fire lamp is adjusted; the transparent cover is composed of an outer transparent cover and an inner transparent cover, so that after the fire is collected, the outer transparent cover and the inner transparent cover can be rotated relative to each other, and the fire hole allows the inner transparent cover to cover the fire hole, preventing wind from blowing into the fire cavity from the fire hole, further improving the windproof performance; by setting a nut and a cylindrical table, when the nut is rotated, the nut can move up and down along the cylindrical table, so that the height of the exposed wick can be adjusted, thereby adjusting the size of the flame.
Brief Description of the Drawings
[0016] Figure 1 It is a three-dimensional diagram of the utility model;
[0017] Figure 2 It is a cross-sectional view of the utility model;
[0018] Figure 3 It is an exploded view of the utility model;
[0019] Figure 4 It is a bottom view of the present utility model. [Specific implementation method]
[0020] The present invention is further described in detail below with reference to the accompanying drawings and specific embodiments:
[0021] like Figures 1 to 4As shown, a fire starter lamp that protects against direct blowout includes a base 1. A transparent cover 2 is provided at the upper end of the base 1. The transparent cover 2 and the base 1 form a fire starter chamber 10 with an open upper end for the fire starter to burn. The base 1 is provided with an oil cup assembly 11, which has a wick 12 on one end extending into the fire starter chamber 10. A windshield 3 is provided at the upper end of the transparent cover 2. In the figure, the windshield 3 is in the shape of a conical ring. A plurality of support columns 32 are provided between the base 1 and the windshield 3, forming a circle. An upwardly extending middle windshield 4 is provided on the windshield 3. The middle windshield 4 is in the shape of a hollow cylinder. An inner windshield 5 is provided vertically within the middle windshield 4 on the windshield 3. The middle windshield 4 is closed at the upper end and open at the lower end for the inner windshield 5 to extend into. The inner windshield 5 is in the shape of a hollow cylinder and consists of an annular surface and a top surface located at the upper end of the annular surface. The lower end opening of the inner windproof tube 5 is connected to the fire chamber 10. The inner windproof tube 5 is provided with an inner mesh hole 51 connecting the middle windproof tube 4 and the inner windproof tube 5. The inner mesh hole 51 is evenly distributed on the annular surface and the top surface. The windproof seat 3 is provided with an outer cover 7 that is sleeved on the outside of the inner windproof tube 5. The outer cover 7 is rotatably provided with a handle 71. A convection chamber 20 is formed between the outer cover 7 and the inner windshield 5. The convection chamber 20 is provided with an upper convection port 30 and a lower convection port 40 at its upper and lower ends, respectively, for convection between external air and the convection chamber 20. The upper convection port 30 is located between the upper end of the middle windshield 5 and the upper end of the outer cover 7, with the upper convection port 30 exposed at the upper end and the lower convection port 40 exposed at the lower end. The lower convection port 40 is located on the windshield seat 3. External air can enter the convection chamber 20 through the upper convection port 30 or the lower convection port 40 can exit the convection chamber 20. The upper and lower convection ports 30 and 40 are located at the upper and lower ends of the convection chamber 20, respectively. The middle windshield 4 is provided with external mesh holes 41 connecting the convection chamber 20 with the interior of the middle windshield 4. To facilitate flame control and reduce wind impact, the external mesh holes 41 are located at the upper and lower ends of the annular sidewall of the middle windshield 4, with the upper outer mesh holes 41 being higher than the top of the inner windshield 5.
[0022] In order to further improve the windproof effect, the transparent cover 2 includes an inner transparent cover 21 fixedly mounted on the base 1 and an outer transparent cover 22 relatively rotatably arranged on the base 1 and sleeved on the outer side of the inner transparent cover 21, the inner transparent cover 21 is provided with an opening 25 on the side, the inner transparent cover 21 is a circular arc sheet with a portion of the circular ring cut off, a side opening, and a fire hole 23 for ignition and an outer cover 24 that can cover the fire hole 23 on the side of the outer transparent cover 22. When the transparent cover 22 rotates relative to each other, the fire hole 23 is connected to the fire chamber 10 through the opening 25 or the outer transparent cover 22 covers the fire hole 23. The inner transparent cover 21 or the outer transparent cover 22 can be rotated. When the two rotate relative to each other, the fire hole 23 is connected to the opening 25 directly, and the fire can be taken. When they rotate relative to each other again, the position of the opening 25 rotates, and the fire hole 23 is directly opposite the inner transparent cover 21. The wind cannot blow directly from the fire hole 23 into the fire chamber 10, thereby improving the windproof effect.
[0023] To facilitate installation, the base 1 includes an upper base 13 and a lower base 14 connected to the lower portion of the upper base 13 by bolts. The transparent cover 2 is provided on the upper base 13. An upper oil cup cavity 15 with an open lower end is provided in the middle of the upper base 13. The upper end of the upper base 13 is provided with a wick hole 6 that can connect to the fire chamber 10 for the wick 12 to extend into. In order to adjust the length of the wick 12, a cylindrical platform 131 is provided on the upper end of the upper base 13 within the fire chamber 10. The outer wall of the cylindrical platform 131 is provided with an external thread. The wick hole 16 passes through the cylindrical platform 131. The cylindrical platform 131 is externally threaded and connected to a nut 132. The nut 132 is provided with a wick adjustment hole 133 for the wick 12 to extend out. The height of the wick 12 passing through the wick adjustment hole 133 affects the size of the flame. The more the wick 12 passes through, the larger the flame. By turning the nut 132, the nut 132 will move up and down along the cylindrical platform 131 to adjust the length of the wick 12, thereby adjusting the size of the flame. The adjustment is convenient. The lower base 14 is provided with a lower oil cup chamber 17 with upper and lower openings that abut against the upper oil cup chamber 15. The oil cup assembly 11 is inserted through the lower opening of the lower oil cup chamber 17 and extends into the upper oil cup chamber 15. The upper and lower oil cup chambers 15 and 17 form a cylindrical cavity that accommodates the oil cup assembly 11. The lower base 14 is provided with multiple guide posts 18. The bottom of the oil cup assembly 11 is provided with multiple guide holes 19 for the guide posts 18 to be inserted into one by one, and guide grooves 191 that can retain the guide posts 18 and allow the guide posts 18 to slide into when the oil cup assembly 11 rotates. The guide grooves 191 are narrower than the guide holes 19. The ends of the guide posts 18 have large ends that can pass through the guide holes 19 but not through the guide grooves 191. The main body of the guide posts 18 can slide into the guide grooves 191, thereby retaining the tips of the guide posts 18 and preventing them from passing through the guide grooves 191, facilitating assembly and disassembly of the oil cup assembly 11.
[0024] To facilitate fire-taking and improve windproof performance, a rotating base 6 is rotatably provided at the upper end of the base 1. The rotating base 6 is disposed on the upper base 13. The rotating base 6 is provided with a positioning step 61 for positioning and mounting the inner transparent cover 21 so that the inner transparent cover 21 can rotate with the rotating base 6. The notch section of the positioning step 61 is a circular arc notch with a curvature substantially the same as that of the inner transparent cover 21. The two ends of the circular arc notch are respectively provided with two positioning steps 61, and the two ends of the inner transparent cover 21 abut against the two positioning steps 61. The upper base 13 and the rotating base 6 form a lower slot 62 for inserting the lower end of the outer transparent cover 22. The windproof base 3 is provided with an upper slot 31 for inserting the upper end of the outer transparent cover 22. The rotating base 6 is provided with a paddle 64 for rotating the rotating base 6. The paddle 64 is used to rotate the rotating base 6, thereby driving the inner transparent cover 21. In this way, the opening 25 of the inner transparent cover 21 can be connected to the fire-taking hole 23, or the inner transparent cover 21 can cover the fire-taking hole 23. In order to facilitate operation and improve wind protection, an arc-shaped guide hole 141 is provided at the bottom of the lower base 14 for the paddle 64 to pass downward through the lower base 14. A blocking block 142 is provided in the guide hole 141 to block the guide hole 141. One end of the blocking block 142 is provided with a plug hole 143 for the paddle 64 to pass through. The end of the paddle 64 that passes through the plug hole 143 is detachably provided with a paddle block 63 by a screw. In this way, the paddle block 63 locks the paddle 64 and the blocking block 142. Since the blocking block 142 is blocked in the guide hole 141, the paddle 64 cannot drive the rotating seat 6. When the inner transparent cover 21 needs to be rotated, the paddle block 63 needs to be removed, the blocking block 142 needs to be removed from the paddle 64, and then the paddle 64 allows the rotating seat 6 to rotate.
[0025] In order to control the amount of air entering, the outer cover 7 is in the shape of a cone ring with a diameter at the upper end being smaller than that at the lower end, so that the width of the upper end of the convection cavity 10 is small and the width of the lower end is large. The outer cover 7 is provided with an arc-shaped air guide piece 72 on one side of the upper convection port 30, the upper end of which protrudes from the upper end of the outer cover 7. The height of the air guide piece 72 at the upper end of the outer cover 7 gradually increases from one end to the other end. The air guide piece 72 can guide the wind to the upper convection port 30. The side of the air guide piece 72 with a higher height guides more air. When the fire starter lamp is turned, the direction of the air guide piece 72 and the wind direction changes, thereby adjusting the amount of air entering.
Claims
1. A direct-blow proof fire starter lamp, characterized by: The invention comprises a base (1), wherein a transparent cover (2) is provided on the upper end of the base (1), wherein the transparent cover (2) and the base (1) enclose a fire chamber (10) with an upper end open for burning fire, wherein an oil cup assembly (11) is provided on the base (1), wherein the oil cup assembly (11) is provided with a wick (12) with one end extending into the fire chamber (10), wherein a windproof seat (3) is provided on the upper end of the transparent cover (2), wherein an upwardly extending middle windproof tube (4) is provided on the windproof seat (3), wherein an inner windproof tube (5) extending vertically is provided in the middle windproof tube (4), wherein the upper end of the middle windproof tube (4) is closed and the lower end is open for the inner windproof tube (5) to burn. The lower end opening of the inner windproof tube (5) is connected to the fire chamber (10), and the inner windproof tube (5) is provided with an inner mesh hole (51) connecting the middle windproof tube (4) and the inner windproof tube (5). The windproof seat (3) is provided with an outer cover (7) sleeved on the outside of the inner windproof tube (5), and a convection chamber (20) is formed between the outer cover (7) and the inner windproof tube (5). The upper and lower ends of the convection chamber (20) are respectively provided with an upper convection port (30) and a lower convection port (40) for convection between the external air and the convection chamber (20), and the middle windproof tube (4) is provided with an outer mesh hole (41) connecting the convection chamber (20) and the middle windproof tube (4).
2. A direct-blow proof spark lamp according to claim 1, characterized in that: The outer mesh holes (41) are respectively arranged at the upper end and the lower end of the middle windproof tube (4).
3. The direct-blow proof spark lamp according to claim 1, characterized in that: The transparent cover (2) comprises an inner transparent cover (21) fixedly mounted on the base (1) and an outer transparent cover (22) relatively rotatably arranged on the base (1) and sleeved on the outer side of the inner transparent cover (21); an opening (25) is provided on the side of the inner transparent cover (21); a ignition hole (23) for inserting into the ignition chamber and an outer cover (24) capable of covering the ignition hole (23) are provided on the upper side of the outer transparent cover (22); when the inner transparent cover (21) and the outer transparent cover (22) are relatively rotated, the ignition hole (23) is communicated with the fire chamber (10) through the opening (25) or the ignition hole (23) is covered by the outer transparent cover (22).
4. A direct-blow proof spark lamp according to claim 3, characterized in that: The base (1) includes an upper base (13) and a lower base (14) connected to the lower part of the upper base (13); the transparent cover (2) is arranged on the upper base (13); the upper base (13) is provided with an upper oil cup cavity (15) with an opening at the lower end and a wick hole (16) that can be connected to the fire chamber (10) for the wick (12) to extend into; the lower base (14) is provided with a lower oil cup cavity (17) with openings at both ends and docked with the upper oil cup cavity (15); the oil cup assembly (11) is installed from the lower end opening of the lower oil cup cavity (17) and extends into the upper oil cup cavity (15); the lower base (14) is provided with a plurality of guide columns (18); the bottom of the oil cup assembly (11) is provided with a plurality of guide holes (19) for the guide columns (18) to be inserted one by one and a guide groove (191) that can clamp the guide columns (18) and allow the guide columns (18) to slide into when the oil cup assembly (11) rotates.
5. The direct-blow proof spark lamp according to claim 4, characterized in that: The upper end of the base (1) is rotatably provided with a rotating seat (6), and the rotating seat (6) is provided with a positioning step (61) for positioning and installing the inner transparent cover (21) so that the inner transparent cover (21) can rotate with the rotating seat (6). The upper base (13) and the rotating seat (6) form a lower slot (62) for inserting the lower end of the outer transparent cover (22), and the windproof seat (3) is provided with an upper slot (31) for inserting the upper end of the outer transparent cover (22). The rotating seat (6) is provided with a paddle (64) that can drive the rotating seat (6) to rotate.
6. The direct-blow proof pilot lamp according to claim 5, characterized in that: The bottom end of the lower base (14) is provided with an arc-shaped guide hole (141) for the paddle (64) to pass through the lower base (14) downward, and a blocking block (142) is provided in the guide hole (141) for blocking the guide hole (141), and one end of the blocking block (142) is provided with a plug hole (143) for the paddle (64) to pass through, and the end of the paddle (64) passing through the plug hole (143) is detachably provided with a paddle block (63).
7. The direct-blow proof pilot lamp according to claim 1, characterized in that: A plurality of support columns (32) are provided between the base (1) and the windproof seat (3).
8. The direct-blow proof pilot lamp according to claim 1, characterized in that: The outer cover (7) is in the shape of a cone ring with a diameter at the upper end smaller than that at the lower end. The outer cover (7) is provided with an arc-shaped air guide (71) on one side of the upper convection port (30), the upper end of which protrudes from the upper end of the outer cover (7). The height of the air guide (71) at the upper end opening of the outer cover (7) gradually increases from one end to the other end.
9. The direct-blow proof pilot lamp according to claim 5, characterized in that: The upper end of the upper base (13) is provided with a cylindrical platform (131) in the fire chamber (10), the outer wall of the cylindrical platform (131) is provided with an external thread, the wick hole (16) passes through the cylindrical platform (131), the cylindrical platform (131) is externally threaded and connected with a nut (132), and the nut (132) is provided with a wick adjustment hole (133) for the wick (12) to extend.
10. The direct-blow proof pilot lamp according to claim 1, characterized in that: The outer cover (7) is provided with a handle (72).
Citation Information
Patent Citations
Tinder lamp
CN217004450U