Illuminating lamp convenient to ignite
By using a hinge structure and limiting part design, the inconvenience caused by the fixed structure of the combustion chamber and fuel chamber of traditional kerosene lamps is solved, realizing convenient operation and structural stability of the flow guide, and improving the user experience and lifespan of kerosene lamps.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2026-03-27
AI Technical Summary
The combustion chamber and fuel chamber of traditional kerosene lamps have a fixed structure, which is difficult to adjust flexibly, making them inconvenient to use and prone to loosening and damage, affecting their service life and combustion effect.
The fuel chamber and combustion chamber are connected by a hinge structure. The hinge structure allows the combustion chamber to rotate backward to expose the inlet component. Combined with the design of the limiting part and the connecting groove, the stability of the combustion chamber is ensured, and the connection is strengthened by the threaded connection.
This design facilitates the operation and maintenance of the flow guide, improves ease of use and structural reliability, and extends the lifespan of the kerosene lamp.
Smart Images

Figure CN224050177U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lighting tool field, concretely relates to a lighting lamp convenient to ignite. BACKGROUND
[0002] The traditional lighting lamp using liquid fuel (for example: kerosene lamp) is mainly composed of fuel chamber and combustion chamber, but its structure is relatively fixed, and there is lack of flexible relative movement design between the combustion chamber and the fuel chamber. In the use process, the user cannot conveniently expose or hide the flow guide according to the need, and the fixed structure limits the use convenience and operation flexibility of the kerosene lamp. In addition, the combustion chamber of the traditional lighting lamp using liquid fuel is relatively single in the fixed mode, and simple thread connection or buckle structure is often used. These structures are prone to looseness or damage after long-term use, which affects the service life and reliability of the kerosene lamp. Moreover, the combustion chamber of the traditional lighting lamp using liquid fuel is usually of a closed structure, which is inconvenient for the user to replace, clean and maintain the internal flow guide, and is not conducive to adjusting the air circulation in the combustion chamber, thereby affecting the combustion effect. SUMMARY
[0003] A lighting lamp convenient to ignite comprises:
[0004] A fuel chamber is used for accommodating fuel inside, and a flow guide is arranged above the fuel chamber, wherein the flow guide is used for guiding the fuel out.
[0005] A combustion chamber is arranged above the fuel chamber and covers the flow guide inside,
[0006] The combustion chamber is connected to the fuel chamber through a hinge structure, the combustion chamber can be rotated backward through the hinge structure, a gap is formed between the bottom of the combustion chamber and the fuel chamber, so that the flow guide is exposed, and the combustion chamber can also be rotated forward and reset to cover the flow guide inside.
[0007] The fuel can be kerosene or alcohol, and the flow guide can guide the fuel out.
[0008] If it is necessary to ignite the fuel, perform maintenance or other operations, the combustion chamber can be rotated backward, so that a gap is formed between the bottom of the combustion chamber and the fuel chamber, so that the flow guide is exposed. At this time, the flow guide can be ignited by the ignition device, or the flow guide can be maintained.
[0009] Compared with the existing kerosene lamp, the movable combustion chamber structure provided by the present application can expose the flow guide to facilitate the user to ignite or maintain the flow guide, and the use experience is better. Moreover, the structure has the characteristics of high reliability and long service life.
[0010] As an improvement of the utility model, a limiting part is arranged at the rear part above the fuel chamber and extends backward.
[0011] The connecting part is arranged at the rear lower part of the fuel chamber, and is provided with a connecting groove which extends rearward and then bends downward;
[0012] The limiting part penetrates the vertical section of the connecting groove, and when the combustion chamber rotates rearward, the connecting groove moves relative to the limiting part to the horizontal section and cooperates with the limiting part, so that the combustion chamber is kept at the position where the flow guide is exposed;
[0013] When the combustion chamber rotates forward, the connecting groove moves relative to the limiting part to the vertical section and cooperates with the limiting part, so that the combustion chamber can continue to rotate forward to the position where the flow guide cover is arranged inside.
[0014] As an improvement of the present application, the bottom of the combustion chamber extends forward to form a fixing seat;
[0015] The fuel chamber is provided with a positioning seat at the corresponding position;
[0016] When the combustion chamber is at the position where the flow guide cover is arranged inside, the front end surface of the positioning seat abuts against the rear end surface of the fixing seat, so as to preliminarily position the combustion chamber.
[0017] As an improvement of the present application, the fixing seat is provided with a through hole, and the positioning seat is provided with a connecting hole at the corresponding position; when the front end surface of the positioning seat abuts against the rear end surface of the fixing seat, the through hole and the connecting hole are opposite to each other, and at this time, the combustion chamber can be fixed by penetrating a threaded connecting piece.
[0018] As an improvement of the present application, a plurality of openable and closable door bodies are arranged on the combustion chamber, and the combustion chamber can be opened or closed by the opening and closing operation of the door bodies.
[0019] As an improvement of the present application, the door bodies are arranged on opposite sides of the combustion chamber respectively, and one end of each door body is hinged to the combustion chamber, so that the door body can rotate transversely;
[0020] The other end of each door body is provided with a movable lock body, the lock body is provided with a positioning groove, and the combustion chamber is provided with a lock block at the position corresponding to each lock body;
[0021] By moving the lock body, the positioning groove can be engaged with the lock block, so as to fix the door body at the closed position, or the positioning groove can be disengaged from the lock block, so as to enable the door body to rotate freely. BRIEF DESCRIPTION OF DRAWINGS
[0022] The accompanying drawings are not intended to be drawn to scale. In the drawings, each identical or nearly identical component that is illustrated in various figures is represented with a like numeral. For purposes of clarity, not every component is called out in every drawing. There is now being described by way of example various embodiments of aspects of the present application. These embodiments are described in relation to the drawings in which:
[0023] Figure 1 is a structural schematic view of the utility model;
[0024] Figure 2 is a structural schematic view of the utility model door body in the open position;
[0025] Figure 3 is a partial structural schematic view of the utility model;
[0026] Figure 4 is Figure 3 is a structural enlarged view of A in the utility model;
[0027] Figure 5 is Figure 3 is a structural enlarged view of B in the utility model;
[0028] Figure 6 is Figure 1 is a structural enlarged view of C in the utility model;
[0029] Figure 7 is a structural schematic view of the utility model Figure 6 after hiding the threaded connecting piece;
[0030] 1, fuel chamber; 2, combustion chamber; 3, flow guide; 4, limiting portion; 5, connecting portion; 5.1, connecting groove; 6, fixed seat; 6.1, through hole 7, positioning seat; 8, threaded connecting piece; 9, door body; 9.1, lock body; 9.11, positioning groove; 10, lock block. DETAILED DESCRIPTION
[0031] In order to better understand the technical content of the utility model, specific embodiments are described as follows with the accompanying drawings.
[0032] As Figures 1-7 shown: the utility model provides a kind of ignition convenient illuminating lamp, including fuel chamber 1 and combustion chamber 2, fuel chamber 1 is used to hold fuel, for example kerosene or alcohol etc., its upper portion is provided with flow guide 3, the effect of flow guide 3 is to draw fuel from fuel chamber 1, to carry out combustion.For example, kerosene or alcohol etc., its upper portion is provided with flow guide 3, the effect of flow guide 3 is to draw fuel from fuel chamber 1, to carry out combustion.For example, kerosene or alcohol etc., its upper portion is provided with flow guide 3, the effect of flow guide 3 is to draw fuel from fuel chamber 1, to carry out combustion.For example, kerosene or alcohol etc., its upper portion is provided with flow guide 3, the effect of flow guide 3 is to draw fuel from fuel chamber 1, to carry out combustion.For example, kerosene or alcohol etc., its upper portion is provided with flow guide 3, the effect of flow guide 3 is to draw fuel from fuel chamber 1, to carry out combustion.For example, kerosene or alcohol etc., its upper portion is provided with flow guide 3, the effect of flow guide 3 is to draw fuel from fuel chamber 1, to carry out combustion.For example, kerosene or alcohol etc., its upper portion is provided with flow guide 3, the effect of flow guide 3 is to draw fuel from fuel chamber 1, to carry out combustion.For example, kerosene or alcohol etc., its upper portion is provided with flow guide 3, the effect of flow guide 3 is to draw fuel from fuel chamber 1, to carry out combustion.For example, kerosene or alcohol etc., its upper portion is provided with flow guide 3, the effect of flow guide 3 is to draw fuel from fuel chamber 1, to carry out combustion.
[0033] The hinge structure comprises a limiting part 4 and a connecting part 5. The limiting part 4 is arranged at the upper rear part of the fuel chamber 1 and extends rearward. The connecting part 5 is arranged at the lower rear part of the fuel chamber 1 and is provided with a connecting groove 5.1. The limiting part 4 penetrates the vertical section of the connecting groove 5.1. When the combustion chamber 2 rotates rearward, the connecting groove 5.1 moves to the horizontal section relative to the limiting part 4, cooperates with the limiting part 4, and keeps the combustion chamber 2 at the position where the flow guide 3 is exposed, thereby preventing the combustion chamber 2 from rotating excessively.
[0034] When the combustion chamber 2 rotates forward, the connecting groove 5.1 moves to the vertical section relative to the limiting part 4, cooperates with the limiting part 4, and enables the combustion chamber 2 to continue to rotate forward to the position where the flow guide 3 is covered.
[0035] The above structure design makes the opening and closing operation of the combustion chamber 2 more stable and reliable, and the user can easily control the position of the combustion chamber 2, thereby improving the use convenience of the kerosene lamp.
[0036] The bottom front end of the combustion chamber 2 extends downward to form a fixing seat 6. The fuel chamber 1 is provided with a positioning seat 7 at the corresponding position. When the combustion chamber 2 is at the position where the flow guide 3 is covered, the front end surface of the positioning seat 7 abuts against the rear end surface of the fixing seat 6, thereby preliminarily positioning the combustion chamber 2, preventing the combustion chamber 2 from shaking during normal use, and ensuring the stability of the kerosene lamp.
[0037] Further, the fixing seat 6 is provided with a through hole 6.1, and the positioning seat 7 is provided with a connecting hole at the corresponding position. When the front end surface of the positioning seat 7 abuts against the rear end surface of the fixing seat 6, the through hole 6.1 is opposite to the connecting hole. At this time, the combustion chamber 2 can be further fixed by penetrating a threaded connecting piece 8 (such as a screw), thereby enhancing the connection strength between the combustion chamber 2 and the fuel chamber 1, effectively preventing the combustion chamber 2 from loosening due to external force or vibration during use, and prolonging the service life of the kerosene lamp.
[0038] A plurality of openable and closable door bodies 9 are arranged on the combustion chamber 2. The door bodies 9 are arranged on opposite sides of the combustion chamber 2. One end of each door body 9 is hinged to the combustion chamber 2, so that the door body 9 can rotate transversely, thereby realizing the opening or closing of the combustion chamber 2. The other end of the door body 9 is provided with a movable lock body 9.1. The lock body 9.1 is provided with a positioning groove 9.11. The combustion chamber 2 is provided with a lock block 10 at the position corresponding to each lock body 9.1. By moving the lock body 9.1, the positioning groove 9.11 can be engaged with the lock block 10, thereby fixing the door body 9 at the closed position and ensuring the stability of the position of the door body 9. Alternatively, the positioning groove 9.11 can be disengaged from the lock block 10, thereby enabling the door body 9 to rotate freely and realizing the opening of the combustion chamber 2.
[0039] In this application, the flow guide 3 inside the combustion chamber 2 can also be ignited, maintained, and the like by opening the door body 9.
[0040] While the utility model has disclosed as above with preferable embodiments, it is not used to limit the utility model. Those skilled in the art to which the utility model belongs can make various changes and decorations without departing from the spirit and scope of the utility model. Therefore, the protection scope of the utility model shall be subject to the definition of the claims.
Claims
1. A lighting lamp which is easy to ignite, characterized in that The utility model relates to a kind of lighting lamps, including: Fuel chamber (1), inside for containing fuel, and fuel chamber (1) is provided with drainage member (3) on top, the drainage member (3) is used to lead out fuel; Combustion chamber (2) is provided above fuel chamber (1), and the drainage member (3) is covered in, It is characterized in that: the bottom of combustion chamber (2) is connected with fuel chamber (1) by hinge structure, the combustion chamber (2) can be rotated back by hinge structure, gap is formed between bottom and fuel chamber (1) to make the drainage member (3) expose, it can also be rotated forward, reset to cover the drainage member (3) in.
2. The ignition facilitated luminary of claim 1, wherein, The hinge structure includes: Limiting portion (4) is provided in the rear of fuel chamber (1) and extends rearward; Connecting portion (5) is provided in the rear of fuel chamber (1) below, the connecting portion (5) is provided with connecting groove (5.1), and first extends rearward, then bends downward; The limiting portion (4) penetrates into the vertical section of connecting groove (5.1), when the combustion chamber (2) is rotated back, connecting groove (5.1) moves to horizontal section relative to limiting portion (4) and cooperates with limiting portion (4), so that combustion chamber (2) is kept in the position of exposing drainage member (3); When the combustion chamber (2) is rotated forward, connecting groove (5.1) moves to vertical section relative to limiting portion (4) and cooperates with limiting portion (4), so that combustion chamber (2) can continue to rotate forward to the position of covering drainage member (3) in.
3. A lighting lamp according to claim 2, wherein The front end of the bottom of combustion chamber (2) extends downward to form fixing seat (6); The fuel chamber (1) is provided with positioning seat (7) at the corresponding position; When the combustion chamber (2) is in the position of covering drainage member (3) in, the front end surface of positioning seat (7) abuts against the rear end surface of fixing seat (6) to preliminarily position combustion chamber (2).
4. The ignition facilitated light of claim 3, wherein, The fixing seat (6) is provided with through hole (6.1), and the positioning seat (7) is provided with connecting hole at the corresponding position;When the front end surface of positioning seat (7) abuts against the rear end surface of fixing seat (6), the through hole (6.1) is opposite to the connecting hole in position, and the combustion chamber (2) can be fixed by penetrating threaded connecting piece (8) into the through hole (6.1) and the connecting hole.
5. The ignition facilitated light of claim 1, wherein, The combustion chamber (2) is provided with a plurality of openable and closable door bodies (9), and the combustion chamber (2) can be opened or closed by opening and closing operation of the door bodies (9).
6. The lighting lamp according to claim 5, wherein: The door bodies (9) are respectively arranged on opposite sides of the combustion chamber (2), and one end of each door body (9) is hingedly connected to the combustion chamber (2) and can be horizontally rotated; The other end of each door body (9) is provided with a movable lock body (9.1), the lock body (9.1) is provided with a positioning groove (9.11), and the combustion chamber (2) is provided with a lock block (10) at the position corresponding to each lock body (9.1); By moving the lock body (9.1), the positioning groove (9.11) can be engaged with the lock block (10) to fix the door body (9) at the closed position, or the positioning groove (9.11) can be disengaged from the lock block (10) to enable the door body (9) to be freely rotated, thereby opening the combustion chamber (2).