Pagoda connecting structure for multi-flame lighter and multi-flame lighter

By using a diverter to connect the pagoda in a multi-flame lighter, the number of conductive leather tubes is reduced, and the problem of air leakage between the pagoda and leather tubes is solved, achieving structural simplification and safety improvement.

CN223216326UActive Publication Date: 2025-08-12NINGBO OUQI SMOKING SET CO LTD
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Patent Information

Application Number
CN202422427247.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-12
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The pagoda of the multi-flame structure lighter is connected to multiple leather tubes with air leakage, which leads to safety hazards and is complex in assembly.

Method used

The pagoda is connected by a shunt, and a conductive leather tube is used to connect it to the air inlet. The combustible gas is diverted to multiple pagodas through the shunt, reducing the number of conductive leather tubes, simplifying the structure and improving sealing.

Benefits of technology

It reduces the safety hazards of rupture and air leakage in the leather tube, simplifies the assembly steps, ensures the sealing and service life of multiple pagodas and air outlet valves, and achieves stable ignition of multiple flames.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a pagoda connecting structure for a multi-flame lighter and the multi-flame lighter. The pagoda connecting structure comprises a mounting shell, a pagoda and a flow divider. The pagoda bodies are fixedly mounted in the mounting shell; the flow divider is fixedly arranged in the mounting shell, a plurality of connecting ports are formed in the upper portion of the flow divider, and the connecting ports are in one-to-one corresponding sealing connection with lower inlets of the pagoda; an air inlet is formed in the lower portion of the flow divider, and a communicating cavity communicating the air inlet with the multiple connecting openings is formed in the flow divider. Through the arrangement, the diverter is connected with the pagoda, only one conductive leather hose is required to be connected with the gas inlet, and then combustible gas is diverted into all the pagoda through the diverter, so that the number of the conductive leather hoses is reduced, the structure is simplified, the assembly is convenient, the tedious steps of assembling the conductive leather hoses are effectively reduced, and the cost is reduced. And the potential safety hazard of air leakage after the leather hose is broken is reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of lighters, and particularly relates to a pagoda connection structure for a multi-flame lighter and the multi-flame lighter. Background Art

[0002] The pagoda of a multi-flame structure lighter requires multiple leather hoses to be connected to a porous component and then to an air outlet needle. The leather hoses are connected to multiple metal parts. During assembly and due to the influence of the small internal space, there is a chance that the leather hoses will be folded or damaged, resulting in air leakage during ignition, which increases the safety hazard. Utility Model Content

[0003] The purpose of the utility model is to overcome the shortcomings of the prior art and provide a pagoda connection structure for a multi-flame lighter and a multi-flame lighter, which solves the technical problems such as the risk of air leakage when the original multi-flame structure pagoda is connected to multiple leather tubes.

[0004] In order to solve the above problems, the technical solution of the utility model is: a pagoda connection structure for a multi-flame lighter, comprising:

[0005] Install the shell;

[0006] Pagoda, having a plurality of them, fixedly mounted in the mounting shell;

[0007] The diverter is fixedly arranged in the mounting shell. The upper part of the diverter has several connecting ports, which are sealed and connected to the lower inlet of the pagoda one by one; the lower part of the diverter has an air inlet, and the inside of the diverter has a connecting cavity connecting the air inlet and several connecting ports.

[0008] Optionally, the exits of several pagodas are adjacent.

[0009] Optionally, an air storage cavity is provided in the installation shell, an air outlet valve is provided at the outlet of the air storage cavity, and the air inlet of the diverter is connected to the air outlet valve through a conductive leather tube.

[0010] Optionally, the diverter comprises:

[0011] The diverter base is fixedly arranged in the mounting shell, and the lower end of the diverter base is provided with an air inlet; the upper end of the diverter base is provided with a mounting groove;

[0012] The diverter cap is matched and fixedly embedded in the installation groove. A plurality of connection ports connected to the pagoda are provided on the diverter cap, and a connecting cavity is formed between the diverter cap and the diverter base.

[0013] Optionally, a plurality of communication slots are provided on the bottom wall of the installation slot, and the air inlet is connected to each connection port via a communication slot respectively.

[0014] Optionally, there are 3 pagodas.

[0015] Optionally, the mounting shell includes:

[0016] An air box having an air storage cavity therein;

[0017] The middle frame is detachably fixedly mounted on the upper portion of the gas box; the upper portion of the middle frame is provided with a mounting seat, the upper end of the mounting seat is provided with a positioning groove, and the bottom wall of the positioning groove is provided with a plurality of first through-holes for the pagodas to pass through in a one-to-one correspondence;

[0018] The porcelain cup holder has a lower portion that fits into the positioning groove and has a plurality of second through-holes on the porcelain cup holder for the pagodas to pass through in a one-to-one correspondence;

[0019] The porcelain cup cover is arranged at the upper opening of the porcelain cup base, and a plurality of first clearance holes are formed on the porcelain cup cover and are aligned with the upper end outlets of the pagoda;

[0020] The flame spray cover is fixedly connected to the mounting seat by fasteners, and the porcelain cup seat, porcelain cup cover and flame spray cover are pressed and positioned between the flame spray cover and the mounting seat; a plurality of second clearance holes aligned with the first clearance holes are opened on the flame spray cover.

[0021] Another object of the present invention is to provide a multi-flame lighter, comprising the above-mentioned pagoda connection structure for a multi-flame lighter, and further comprising:

[0022] Piezoelectric, fixedly mounted in the mounting housing;

[0023] A slide switch is slidably arranged on a side of the mounting housing;

[0024] The rotating frame is rotatably mounted in the mounting housing. The rotating frame cooperates with the sliding switch and the piezoelectric pressing portion. When the sliding switch slides upward, the rotating frame is driven to rotate. When the rotating frame rotates, the pressing portion is pressed downward to activate the piezoelectric ignition.

[0025] The pry plate, one end of the pry plate is in contact with the seat on the mounting shell to limit the position, the middle part of the pry plate is engaged with the outlet needle of the outlet valve, and the other end of the pry plate is linked with the rotating frame. When the sliding switch slides upward, it drives the rotating frame to rotate, and the rotating frame rotates to push the pry plate to tilt up. When the pry plate tilts up, it drives the outlet needle to float up to open the outlet valve.

[0026] Optionally, the skid plate has an integrally formed horizontal plate and an oblique plate, the oblique plate is connected to one end of the horizontal plate, one end of the horizontal plate is provided with a first bayonet that fits into the annular bayonet groove on the outer side of the air outlet needle, and a second bayonet is provided on the other end of the horizontal plate, and a convex bayonet seat that fits into and engages with the second bayonet is fixedly provided on the mounting shell; the oblique plate cooperates and links with the rotating frame.

[0027] Optionally, the pagoda passes through the turret.

[0028] Compared with the prior art, the present invention has the following beneficial effects:

[0029] 1. The utility model adopts a diverter and a conductive leather hose to connect the air outlet valve and multiple pagodas, which saves the number of conductive leather hoses, saves space, reduces the occurrence of conductive leather hoses being damaged during assembly and use, reduces the cumbersome steps of assembling conductive leather hoses, and reduces the safety hazard of air leakage after the hoses are broken, ensuring the sealing and service life of the connection between multiple pagodas and the air outlet valve.

[0030] 2. The ignition method of the utility model lighter is novel, adopting a single piezoelectric and multiple pagoda fire spraying, with a simple structure, spare parts, space saving and easy assembly.

[0031] 3. This utility model uses a single piezoelectric to ignite the air outlet of one pagoda, and then uses the side fire of the pagoda to ignite the air outlets of other adjacent pagodas. The structure is simple and multiple flames can be ignited.

[0032] 4. The utility model adopts a porcelain cup consisting of a porcelain cup base and a porcelain cup cover, which is divided into two parts, the upper and lower parts, and the use of a flamethrower to cover the exposed appearance of the porcelain cup is solved. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] Figure 1 A schematic diagram of a partial assembly structure of a lighter in an embodiment;

[0034] Figure 2 is an exploded view of the lighter in the embodiment;

[0035] Figure 3 This is a schematic structural diagram of a skid plate in an embodiment;

[0036] Figure 4 Schematic diagram of the structure of the rotating frame in the embodiment;

[0037] Figure 5 An exploded view of the diverter in the embodiment;

[0038] Figure 6 Schematic cross-section of the lighter in the embodiment.

[0039] Reference numerals: 1, mounting shell; 11, air box; 111, air storage cavity; 12, middle frame; 13, mounting base; 131, positioning groove; 132, first through-hole; 14, porcelain cup holder; 141, second through-hole; 15, porcelain cup cover; 151, first clearance hole; 16, flame cover; 161, second clearance hole; 17, sliding switch; 18, card seat; 2, pagoda; 3, diverter; 31, connecting cavity; 32, diverter base; 321, Air inlet; 322, mounting slot; 323, connecting slot; 33, diverter cap; 331, connecting port; 4, air outlet valve; 41, air outlet needle; 5, conductive leather hose; 6, piezoelectric; 61, pressing part; 7, rotating frame; 71, first contact end; 72, second contact end; 73, third contact end; 74, rotating shaft; 8, pry plate; 81, horizontal plate; 811, first bayonet; 812, second bayonet; 82, oblique plate; 9, fastener. DETAILED DESCRIPTION

[0040] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments.

[0041] Example 1: Figures 1-6 As shown, this embodiment provides a pagoda connection structure for a multi-flame lighter, including a mounting shell 1, a pagoda 2 and a diverter 3; the pagoda 2 has several pagodas, which are fixedly installed in the mounting shell 1; the diverter 3 is fixedly arranged in the mounting shell 1, and the upper part of the diverter 3 has several connecting ports 331, and the connecting ports 331 are sealed and connected to the lower inlet of the pagoda 2 in a one-to-one correspondence; the lower part of the diverter 3 has an air inlet 321, and the inside of the diverter 3 has a connecting cavity 31 connecting the air inlet 321 and the several connecting ports 331.

[0042] Through the above-mentioned setting, by using the diverter 3 to connect the pagoda 2, only one conductive leather hose 5 needs to be connected to the air inlet 321, and then the combustible gas is diverted to all the pagodas 2 through the diverter 3, which reduces the number of conductive leather hoses 5, simplifies the structure, and facilitates assembly. It effectively reduces the tedious steps of assembling the conductive leather hose 5 and reduces the safety hazard of gas leakage after the hose ruptures.

[0043] In a pagoda connection structure for a multi-flame lighter of this embodiment, the outlets of several pagodas 2 are adjacent to each other. After a piezoelectric 6 ignites the outlet of one pagoda 2, the side flame of the pagoda 2 ignites the outlets of other pagodas 2, resulting in a simple structure, few parts, and low cost.

[0044] In this embodiment, a pagoda connection structure for a multi-flame lighter comprises a mounting housing 1 with a gas storage chamber 111. An outlet valve 4 is provided at the outlet of the gas storage chamber 111. An air inlet 321 of a diverter 3 is connected to the outlet valve 4 via a conductive hose 5. This arrangement allows multiple pagodas 2 to be connected using only a single conductive hose 5 and diverter 3, resulting in a simple structure, space-saving, low-cost, and long-lasting service life.

[0045] In a pagoda connection structure for a multi-flame lighter of this embodiment, the diverter 3 includes a diverter base 32 and a diverter cap 33; the diverter base 32 is fixedly arranged in the mounting shell 1, and the lower end of the diverter base 32 has an air inlet 321; the upper end of the diverter base 32 is provided with a mounting groove 322; the diverter cap 33 is matched and fixedly embedded in the mounting groove 322, and a plurality of connection ports 331 connected to the pagoda 2 are provided on the diverter cap 33, and a connecting cavity 31 is formed between the diverter cap 33 and the diverter base 32.

[0046] Through the above arrangement, the diverter base 32 and the diverter cap 33 are designed to be separate parts, which has a simple structure, is easy to manufacture, has low cost, and is easy to assemble.

[0047] In the pagoda connection structure for a multi-flame lighter of this embodiment, a plurality of connecting slots 323 are provided on the bottom wall of the mounting slot 322. The air inlet 321 is connected to each connecting port 331 via a respective connecting slot 323. The above arrangement, through the provision of the connecting slots 323, ensures a uniform flow of combustible gas in the plurality of pagodas 2, and a uniform and stable flame.

[0048] In the pagoda connection structure for a multi-flame lighter of this embodiment, there are three pagodas 2.

[0049] In a pagoda connection structure for a multi-flame lighter of this embodiment, the mounting shell 1 includes an air box 11, a middle frame 12, a porcelain cup holder 14, a porcelain cup cover 15 and a flame cover 16; the interior of the air box 11 has a gas storage cavity 111; the middle frame 12 is detachably fixedly mounted on the upper part of the air box 11; the upper part of the middle frame 12 has a mounting seat 13, the upper end of the mounting seat 13 is provided with a positioning groove 131, and the bottom wall of the positioning groove 131 is provided with a plurality of first through-holes 132 for the pagoda 2 to pass through in a one-to-one correspondence; the lower part of the porcelain cup holder 14 is matched and embedded in the positioning groove 131 In the figure, a plurality of second through-holes 141 are provided on the porcelain cup holder 14 for the pagodas 2 to pass through in a one-to-one correspondence; a porcelain cup cover 15 is provided on the upper opening of the porcelain cup holder 14, and a plurality of first clearance holes 151 are provided on the porcelain cup cover 15, which are aligned one-to-one with the upper end outlet of the pagoda 2; a flamethrower cover 16 is fixedly connected to the mounting base 13 by a fastener 9, and the porcelain cup holder 14, the porcelain cup cover 15 and the flamethrower cover 16 are pressed and positioned between the flamethrower cover 16 and the mounting base 13; a plurality of second clearance holes 161 are provided on the flamethrower cover 16, which are aligned one-to-one with the first clearance holes 151.

[0050] The above arrangement utilizes a porcelain cup holder 14 and a porcelain cup cover 15, forming the upper and lower parts of the porcelain cup. A flame-spraying cover 16 is provided on the porcelain cup cover 15, thereby eliminating the problem of the porcelain cup holder 14 and porcelain cup cover 15 being exposed, resulting in an aesthetically pleasing appearance. Optionally, the middle frame 12 is secured to the mounting housing 1 using fasteners 9 such as screws. Optionally, the fasteners 9 are screws or the like.

[0051] Example 2: Figures 1-6 As shown, this embodiment provides a multi-flame lighter, including a pagoda connection structure for a multi-flame lighter in Example 1, and also includes a piezoelectric 6, a sliding switch 17, a rotating frame 7 and a pry plate 8; the piezoelectric 6 is fixedly installed in the mounting shell 1; the sliding switch 17 is slidably arranged on the side of the mounting shell 1; the rotating frame 7 is rotatably installed in the mounting shell 1, and the rotating frame 7 cooperates with the sliding switch 17 and the pressing portion 61 of the piezoelectric 6. When the sliding switch 17 slides upward, the rotating frame 7 is driven to rotate, and the pressing portion 61 is pressed downward during the rotation of the rotating frame 7 to start the piezoelectric 6 to ignite; one end of the pry plate 8 is in contact with the clamping seat 18 on the mounting shell 1 to limit the position, and the middle part of the pry plate 8 is clamped with the air outlet needle 41 of the air outlet valve 4, and the other end of the pry plate 8 cooperates with the rotating frame 7. When the sliding switch 17 slides upward, the rotating frame 7 is driven to rotate, and the rotating frame 7 rotates to push the pry plate 8 to tilt up. When the pry plate 8 tilts up, it drives the air outlet needle 41 to float up to open the air outlet valve 4.

[0052] Through the above setting, a single piezoelectric 6 is used to drive multiple pagodas 2 to ignite, and the porcelain cups all have single ignition. The piezoelectric 6 wire of the piezoelectric 6 ignites the air outlet of one of the pagodas 2, and the side fire of the pagoda 2 is used to ignite the air outlets of other pagodas 2, thereby realizing the ignition of multiple flames, with simple structure, low cost and space saving.

[0053] Specifically, a first contact end 71, a second contact end 72, a third contact end 73 and a rotating shaft 74 are provided on the rotating frame 7. The rotating shaft 74 is located in the middle of the rotating frame 7. The first contact end 71 is used to contact the sliding switch 17, the second contact end 72 is used to press down the pressing portion 61 of the piezoelectric 6, and the third contact end 73 is used to push the pry plate 8 to tilt up. The first contact end 71 is located on one side of the rotating shaft 74, and the second contact end 72 and the third contact end 73 are located on the other side of the rotating shaft 74.

[0054] In a multi-flame lighter of this embodiment, the pry plate 8 has an integrally formed horizontal plate 81 and an oblique plate 82. The oblique plate 82 is connected to one end of the horizontal plate 81. A first bayonet 811 is provided at one end of the horizontal plate 81 to fit into the annular bayonet groove on the outer side of the air outlet needle 41. A second bayonet 812 is provided on the other end of the horizontal plate 81. A convex bayonet 18 is fixedly provided on the mounting shell 1 to fit into and engage with the second bayonet 812. The oblique plate 82 cooperates and links with the rotating frame 7.

[0055] In a multi-flame lighter of this embodiment, the pagoda 2 passes through the rotating frame 7. This arrangement has a limiting effect on the pagoda 2, and the pagoda 2 and the rotating frame 7 are compactly assembled, which also saves installation space.

[0056] In a multi-flame lighter of this embodiment, the assembly method is as follows:

[0057] 1. Place the porcelain cup holder 14 into the middle frame 12 according to the direction, tighten the pagoda 2 in sequence, cover the porcelain cup cover 15 according to the direction, then put on the flamethrower cover 16 according to the direction, and tighten the screws.

[0058] 2. Insert the rotating frame 7 into the tail of the pagoda 2, then install the diversion cap 33 into the diversion base 32, and insert it into the bottom of the pagoda 2. Do not loosen or fall off, and set it aside for use.

[0059] 3. Place the piezoelectric 6 into the semi-finished air box 11, install the pry plate 8, and put on the conductive leather tube 5.

[0060] 4. Assemble the components from step 3 with steps 1 and 2, and tighten the screws after installing them into position.

Claims

1. A pagoda connection structure for a multi-flame lighter, characterized in that: include: Mounting shell (1); There are a plurality of pagodas (2) fixedly mounted in the mounting housing (1); The diverter (3) is fixedly arranged in the mounting shell (1); the upper portion of the diverter (3) has a plurality of connection ports (331), and the connection ports (331) are sealed and connected to the lower inlet of the pagoda (2) in a one-to-one correspondence; the lower portion of the diverter (3) has an air inlet (321), and the interior of the diverter (3) has a connecting cavity (31) that connects the air inlet (321) and the plurality of connection ports (331).

2. A pagoda connection structure for a multi-flame lighter according to claim 1, characterized in that: The exits of several pagodas (2) are adjacent to each other.

3. The pagoda connection structure for a multi-flame lighter according to claim 1, characterized in that: The installation shell (1) has an air storage cavity (111) therein, an air outlet valve (4) is provided at the outlet of the air storage cavity (111), and the air inlet (321) of the diverter (3) is connected to the air outlet valve (4) via a conductive leather tube (5).

4. The pagoda connection structure for a multi-flame lighter according to claim 1, characterized in that: The diverter (3) comprises: The diverter base (32) is fixedly arranged in the mounting shell (1), and the lower end of the diverter base (32) has an air inlet (321); the upper end of the diverter base (32) is provided with a mounting groove (322); The diverter cap (33) is matched and fixedly embedded in the mounting groove (322). The diverter cap (33) is provided with a plurality of connection ports (331) connected to the pagoda (2). A connecting cavity (31) is formed between the diverter cap (33) and the diverter base (32).

5. The pagoda connection structure for a multi-flame lighter according to claim 4, characterized in that: A plurality of communication slots (323) are provided on the bottom wall of the installation slot (322), and the air inlet (321) is communicated with each connection port (331) via a communication slot (323).

6. The pagoda connection structure for a multi-flame lighter according to claim 1, characterized in that: Pagoda (2) has 3.

7. The pagoda connection structure for a multi-flame lighter according to claim 1, characterized in that: The mounting housing (1) comprises: An air box (11) having an air storage cavity (111) therein; The middle frame (12) is detachably fixedly mounted on the upper portion of the gas box (11); the upper portion of the middle frame (12) is provided with a mounting seat (13); a positioning groove (131) is provided at the upper end of the mounting seat (13); and a bottom wall of the positioning groove (131) is provided with a plurality of first through holes (132) for the pagodas (2) to pass through in a one-to-one correspondence. The porcelain cup seat (14) has a lower portion that is matched and embedded in the positioning groove (131), and a plurality of second through holes (141) are provided on the porcelain cup seat (14) for the pagodas (2) to pass through in a one-to-one correspondence; A porcelain cup cover (15) is provided on the upper opening of the porcelain cup base (14), and a plurality of first clearance holes (151) are provided on the porcelain cup cover (15) and are aligned one by one with the upper end outlets of the pagoda (2); The flame spray cover (16) is fixedly connected to the mounting seat (13) through a fastener (9); the porcelain cup seat (14), the porcelain cup cover (15) and the flame spray cover (16) are pressed and positioned between the flame spray cover (16) and the mounting seat (13); and a plurality of second clearance holes (161) aligned one by one with the first clearance holes (151) are provided on the flame spray cover (16).

8. A multi-flame lighter, characterized in that: A pagoda connection structure for a multi-flame lighter according to any one of claims 1 to 7, further comprising: A piezoelectric element (6) is fixedly mounted in the mounting housing (1); A sliding switch (17) is slidably arranged on a side of the mounting housing (1); The rotating frame (7) is rotatably mounted in the mounting shell (1). The rotating frame (7) cooperates with the sliding switch (17) and the pressing portion (61) of the piezoelectric (6). When the sliding switch (17) slides upward, the rotating frame (7) is driven to rotate. When the rotating frame (7) rotates, the pressing portion (61) is pressed downward to start the piezoelectric (6) to ignite. The pry plate (8) is provided with a pry plate (8), one end of which is in contact with the card seat (18) on the mounting shell (1) to limit the position, the middle part of the pry plate (8) is engaged with the air outlet needle (41) of the air outlet valve (4), and the other end of the pry plate (8) is linked with the rotating frame (7). When the sliding switch (17) slides upward, the rotating frame (7) is driven to rotate, and the rotating frame (7) rotates to push the pry plate (8) to tilt up. When the pry plate (8) tilts up, the air outlet needle (41) is driven to float up to open the air outlet valve (4).

9. A multi-flame lighter according to claim 8, characterized in that: The pry plate (8) comprises an integrally formed horizontal plate (81) and an oblique plate (82), the oblique plate (82) being connected to one end of the horizontal plate (81), one end of the horizontal plate (81) being provided with a first bayonet (811) which fits into an annular bayonet groove outside the air outlet needle (41), and the other end of the horizontal plate (81) being provided with a second bayonet (812), and a convex bayonet seat (18) which fits into and contacts the second bayonet (812) is fixedly provided on the mounting shell (1); the oblique plate (82) is in coordinated linkage with the rotating frame (7).

10. The multi-flame lighter according to claim 8, characterized in that: The pagoda (2) passes through the rotating frame (7).