WO2016161942A1 - 一种电子打火机及其组件 - Google Patents

一种电子打火机及其组件 Download PDF

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Publication number
WO2016161942A1
WO2016161942A1 PCT/CN2016/078652 CN2016078652W WO2016161942A1 WO 2016161942 A1 WO2016161942 A1 WO 2016161942A1 CN 2016078652 W CN2016078652 W CN 2016078652W WO 2016161942 A1 WO2016161942 A1 WO 2016161942A1
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WO
WIPO (PCT)
Prior art keywords
fire
piezoelectric block
lighter
gas box
control button
Prior art date
Application number
PCT/CN2016/078652
Other languages
English (en)
French (fr)
Inventor
邓卫城
Original Assignee
赣州市卫诚火机制造有限公司
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Filing date
Publication date
Application filed by 赣州市卫诚火机制造有限公司 filed Critical 赣州市卫诚火机制造有限公司
Publication of WO2016161942A1 publication Critical patent/WO2016161942A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23QIGNITION; EXTINGUISHING-DEVICES
    • F23Q2/00Lighters containing fuel, e.g. for cigarettes
    • F23Q2/16Lighters with gaseous fuel, e.g. the gas being stored in liquid phase
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23QIGNITION; EXTINGUISHING-DEVICES
    • F23Q2/00Lighters containing fuel, e.g. for cigarettes
    • F23Q2/28Lighters characterised by electrical ignition of the fuel
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23QIGNITION; EXTINGUISHING-DEVICES
    • F23Q2/00Lighters containing fuel, e.g. for cigarettes
    • F23Q2/34Component parts or accessories

Definitions

  • the invention relates to an electronic lighter, and a fire extinguishing member, a button assembly and an ignition component for the lighter, belonging to the technical field of electronic lighters.
  • Lighters are classified into ignition type and can be divided into flint type ignition lighters and piezoelectric ignition lighters. They can be divided into air and gas front hybrid lighters (commonly known as windproof lighters or straight-through lighters). Rear hybrid lighters (commonly known as open flame lighters). These two types of lighters have a large market share in traditional products.
  • Electronic lighters generally consist of a gas box assembly (which can also serve as a lighter housing), a piezoelectric block with a pole line, a gasifier holder (and an ignition line holder), a gasifier, a rocker, a control button, and a fire device.
  • the composition is such that the rocker, the piezoelectric block, the gasification furnace, the gasifier holder, the control button, and the fire-extinguishing member are sequentially mounted on the gas box of the lighter in a certain order. Due to the narrow installation space of the gas box, it is inconvenient to install various components on the gas box, which is time consuming and laborious, the assembly efficiency is low, and the labor cost is continuously increased, and the production cost of the lighter is also higher and higher.
  • the traditional lighter fire parts are mostly small thin-shell stampings, as shown in Figure 1.
  • the gas box is visible outside the gas box, the control button 5, and the fire-extinguishing member 6.
  • the fire-extinguishing member b is bent into a curved shape by a metal foil and the card portion a is disposed, and the card portion a is buckled on the upper portion of the gas box 1.
  • the lighter structure in which the fire piece 6 is assembled is easily detached due to impact by external force during use.
  • the lighter of the fire-extinguishing structure during assembly, the U-shaped arms of the fire-extinguishing member 6 are supported by the cooperation of the external recessed structure a and the top positioning mechanism of the gas box 1, the process is limited in position and the assembly is correct.
  • the technical requirements of the operators are high.
  • the rocker, the piezoelectric block, the gasification furnace, the gasifier fixing frame, the control button, and the fire-extinguishing member are sequentially installed in the narrow cavity of the lighter, so that the installation of each component is very inconvenient. Time-consuming and labor-intensive, low assembly efficiency, and rising labor costs, the production cost of lighters is also increasing.
  • the lighter has a structural design different from the existing products, thereby simplifying the product structure, improving the assembly efficiency of the electronic lighter, and providing better stability and durability.
  • Another object of the present invention is to provide a fire extinguishing member that is attached to the above electronic lighter.
  • the electronic lighter uses a snap-on form to achieve a snap-fit connection between the fire-extinguishing element and the lighter body, which facilitates assembly and stability, and also serves as a part of the electronic ignition circuit, which simplifies the overall structure of the lighter.
  • the assembly is composed of an ignition member and a lighter control button, and has a novel structure.
  • the assembly consists of a fire-fighting device, a lighter control button and a piezoelectric block, and has a novel structure.
  • the electronic lighter includes a gas box assembly, a rocker plate, a piezoelectric block, a control button, and a fire extinguishing member with a top surface fire outlet;
  • the gas box assembly includes an upper opening receiving chamber; and the gas box assembly also serves as a lighter body;
  • the piezoelectric block, the control button and the fire-emitting member are respectively embedded in the gas box assembly; the piezoelectric block is inserted into the control button; and the top of the gas box assembly is provided with a positioning hole, and the side of the fire-emitting member is provided Positioning the protrusion, the fire-emitting member is inserted into the receiving cavity of the gas box assembly, and the positioning protrusion is fitted into the positioning hole.
  • Two symmetric positioning protrusions are arranged on the side of the fire extinguishing member, and two symmetric positioning holes are arranged on the top of the gas box assembly.
  • the fire extinguishing member is an inverted L-shaped structure; the fire exiting port is a hollow cylindrical shape, the outer end surface thereof is flush with the outer surface of the top surface of the fire extinguishing member, and the inner end surface is flush or protrudes from the inner surface of the top surface of the fire extinguishing member
  • the fire generating member is made of a conductive material and is provided with a conductive bump on a side corresponding to the manipulation button.
  • the fire extinguishing member constitutes a conductive member that transmits a current of the piezoelectric block; the rocker plate itself is electrically conductive and is in contact with or adjacent to a bottom conductive portion of a ridge of the piezoelectric block body member; the lighter is ignited instantaneously, and the piezoelectric device
  • One pole of the block contacts or is adjacent to the fire member, the other pole contacts or is adjacent to the rocker, and the fire extinguishing member and the rocker plate form an integral part of the piezoelectric block high voltage discharge circuit.
  • the control button is connected to the fire member so as to be movable up and down, and the piezoelectric block is inserted into the cavity of the top surface of the control button.
  • the control button is provided with at least one guiding protrusion
  • the fire device is provided with at least one guiding groove
  • the guiding groove can accommodate the steering button guiding protrusion, and the fire extinguishing member and the control button are inserted, and the control button is supported to guide the protruding portion. Move along the fire guide guide.
  • the piezoelectric block has a body member and a movable member movable in the fixed member, and an upper end of the body member is inserted into a cavity of a top surface of the control button, and a piezoelectric element is inserted into the piezoelectric part of the gas box assembly at one end of the movable member.
  • the block accommodates the cavity.
  • the lighter includes a gasifier;
  • the gas box assembly includes an adjacent gasifier receiving chamber with an opening and a piezoelectric block receiving chamber with an opening,
  • the gasification furnace accommodating chamber is higher than the piezoelectric block accommodating chamber;
  • the gasification furnace and the igniter are placed in the gasifier accommodating chamber, wherein the igniter positioning protrusion is fitted into the positioning hole at the top of the gasifier accommodating chamber, and the piezoelectric The block and the control button are placed in the piezoelectric block receiving chamber.
  • the gas box assembly includes an adjacent openable combustible liquefied gas receiving chamber and a piezoelectric block receiving chamber with an opening, the combustible liquefied gas receiving chamber being higher than the piezoelectric block receiving chamber
  • the igniting member is placed in the flammable liquefied gas accommodating chamber, and the positioning protrusion is fitted into the positioning hole at the top of the flammable liquefied gas accommodating chamber, and the piezoelectric block and the manipulation button are placed in the piezoelectric block accommodating chamber.
  • the control button cavity defines an opening slot on a side of the fire extinguishing member, the cavity is configured to receive a body member of the piezoelectric block, and the open slot is configured to receive the component disposed on the piezoelectric block body Conductive ribs, one end of which is in contact with or adjacent to the conductive ribs.
  • the lighter is composed of a gas box assembly, a gasification furnace assembly, a rocker, a piezoelectric block, a control button, and a fire extinguishing member; the gas box assembly includes adjacent ones.
  • the gas box assembly also serves as a lighter body; the gasification furnace component, the piezoelectric block, the control button and the igniter are respectively embedded in the gas box assembly;
  • the piezoelectric block is inserted into the control button;
  • the gas tank assembly is provided with a positioning hole on the top side of the gasification furnace receiving chamber, and the side of the fire extinguishing member is provided with a protrusion, and is inserted into the gasifier in the gas box assembly.
  • the top of the accommodating chamber, wherein the protrusion of the igniter is fitted with the locating hole on the top side of the gasifier accommodating chamber; the control button is coupled to the igniter.
  • the top surface of the fire extinguishing device for the electronic lighter of the present invention is provided with a fire opening, and the side surface thereof is provided with a positioning protrusion, and the fire generating member can be inserted into the receiving cavity of the lighter gas box assembly, and the positioning protrusion is used for the side provided with the top of the receiving cavity The positioning holes are fitted.
  • the fire ejector positioning protrusions may be provided with one or more.
  • Two symmetrical positioning protrusions are disposed on the side of the fire-extinguishing member; the fire exiting port is a hollow cylindrical shape, and the outer end surface is flush with the outer surface of the top surface of the fire-extinguishing member, and the inner end surface is flush or protrudes from the top of the fire-extinguishing member The inner surface of the face.
  • the fire-extinguishing member is an inverted L-shaped structure and is made of a conductive material.
  • the fire-extinguishing member constitutes a conductive member that transmits a current of the piezoelectric block and is a part of an ignition electronic circuit.
  • the above-mentioned electronic lighter using the fire extinguishing member is composed of a gas box assembly, a rocker, a piezoelectric block, a control button, and a fire extinguishing member;
  • the gas box assembly includes an adjacent flammable liquefied gas receiving chamber with an open opening; a piezoelectric block accommodating cavity with an opening; the gas box assembly also serves as a lighter body; the piezoelectric block, the control button and the igniting member are respectively placed in the gas box group In the piece; the piezoelectric block is inserted into the control button.
  • the two sides of the top of the gasifier accommodating chamber of the lighter pass through the set hole.
  • the electronic lighter is composed of a gas box assembly, a gasification furnace assembly, a rocker, a piezoelectric block, a control button, and a fire extinguishing member;
  • the gas box assembly includes an adjacent opening with a belt a gasification furnace accommodating chamber and a piezoelectric block accommodating chamber with an opening;
  • the gas box assembly also serves as a lighter body;
  • the gasifier component, the piezoelectric block, the control button and the igniter are respectively placed in the gas box assembly;
  • the piezoelectric block is inserted into the control button;
  • the two sides of the top of the vaporizer receiving chamber pass through the set hole.
  • the lighter is provided with a conductive protrusion on a side of the fire extinguishing member opposite to the control button.
  • One or more of the side protrusions of the fire extinguishing member may be disposed. Depending on the actual structure and strength requirements of the product, it is preferred to have two raised settings, symmetrical positions.
  • the fire-extinguishing member may be made of a conductive metal material or may be obtained by electroplating of a plastic part.
  • the fire-extinguishing member of the present invention in the operation of the lighter, is itself a part of the electronic circuit of the ignition instant in addition to the wind-proof function.
  • the fire-extinguishing member in the present invention is preferably an inverted L-shaped structure as shown in FIG.
  • the top of the fire-extinguishing member is provided with a fire outlet.
  • the button assembly for the electronic lighter of the present invention is composed of a control button and an igniter, and the control button is connected to the fire member so as to be movable up and down.
  • the control button is provided with at least one guiding protrusion
  • the fire device is provided with at least one guiding groove
  • the guiding groove can accommodate the guiding button guiding protrusion, and the fire extinguishing member and the control button are inserted, and the control button is supported to guide the protruding portion. Move along the fire guide guide.
  • the control button and the fire-extinguishing member are respectively inserted into the gas box assembly of the lighter, and the gas box assembly also serves as a lighter body; the top side of the accommodating chamber of the gas box assembly is provided with a positioning hole, and the top surface of the fire-emitting member is set.
  • the firing port is provided with a positioning protrusion on the side thereof, and the fire generating member is inserted into the receiving cavity of the gas box assembly, and the positioning protrusion is fitted into the positioning hole.
  • One or more of the side protrusions of the fire extinguishing member may be disposed.
  • Two symmetrical positioning protrusions are disposed on the side of the fire-extinguishing member, wherein the fire exit is hollow cylindrical, the outer end surface is flush with the outer surface of the top surface of the fire-extinguishing member, and the inner end surface is flush or protrudes from the top surface of the fire-extinguishing member Inner surface.
  • the fire-extinguishing member is an inverted L-shaped structure and is made of a conductive material.
  • the lighter includes a gas box assembly, a gasifier assembly, a rocker, and a piezoelectric block; and the gas box assembly includes an adjacent gasifier receiving chamber and belt with an opening The upper open piezoelectric block accommodating chamber; the gas box assembly also serves as a lighter body; the piezoelectric block, the control button and the igniter are respectively placed in the gas box assembly.
  • the lighter For the open flame type, the lighter includes a gas box assembly, a rocker, and a piezoelectric block; the gas box assembly includes an adjacent openable combustible liquefied gas receiving chamber and a piezoelectric block receiving chamber with an opening; The gas box assembly also serves as a lighter body; the piezoelectric block, the control button and the fire member are respectively placed in the gas box assembly.
  • the portion of the fire extinguishing member inserted into the gas chamber assembly receiving cavity is provided with a conductive protrusion.
  • the control button is a top surface with a receiving cavity button, the receiving cavity defines an opening slot with respect to the surface of the fire extinguishing member, and the receiving cavity is for receiving the upper end of the piezoelectric block, and the opening slot is used for the open slot a rib that is disposed at an upper end of the piezoelectric block.
  • the fire-extinguishing member is coupled to the control button to form a button assembly.
  • the fire parts and the control buttons can be variously designed according to actual needs.
  • the control button is provided with at least one guiding protrusion
  • the fire device is provided with at least one guiding groove
  • the guiding groove can accommodate the guiding button guiding protrusion
  • the fire extinguishing member is inserted into the control button, and the control button is satisfied.
  • the guide protrusion is moved along the fire guide groove.
  • the ignition assembly for the electronic lighter of the present invention comprises a control button, a fire-extinguishing member with a top surface fire outlet, and a piezoelectric block, wherein the control button is connected to the fire-moving member for moving up and down, and the piezoelectric block is inserted into the top of the control button. In the cavity of the face.
  • the piezoelectric block has a body member and a movable member movable in the fixed member, and an upper end of the piezoelectric block body member is inserted into a cavity for controlling a top surface of the button.
  • the control button is provided with at least one guiding protrusion
  • the fire device is provided with at least one guiding groove
  • the guiding groove can accommodate the steering button guiding protrusion, and the fire extinguishing member and the control button are inserted, and the control button is supported to guide the protruding portion. Move along the fire guide guide.
  • the fire-extinguishing member is an inverted L-shaped structure, and one or more positioning protrusions are disposed on a side surface thereof, and the fire-extinguishing member is made of a conductive material and is provided with a conductive protrusion on a side corresponding to the manipulation button.
  • Two symmetrical positioning protrusions are disposed on the side of the fire-extinguishing member, wherein the fire exit is hollow cylindrical, the outer end surface is flush with the outer surface of the top surface of the fire-extinguishing member, and the inner end surface is flush or protrudes from the top surface of the fire-extinguishing member Inner surface.
  • the lighter includes a gas box assembly, a gasifier assembly, a rocker, and a piezoelectric block; and the gas box assembly includes an adjacent gasifier receiving chamber and belt with an opening The upper open piezoelectric block accommodating chamber; the gas box assembly also serves as a lighter body; the piezoelectric block, the control button and the igniter are respectively placed in the gas box assembly.
  • the lighter For the open flame type, the lighter includes a gas box assembly, a rocker, and a piezoelectric block; the gas box assembly includes an adjacent openable combustible liquefied gas receiving chamber and a piezoelectric block receiving chamber with an opening; The gas box assembly also serves as a lighter body; the piezoelectric block, the control button and the fire member are respectively placed in the gas box assembly.
  • the top surface of the accommodating chamber of the gas box assembly is provided with a positioning hole
  • the top surface of the igniter is provided with a fire vent
  • the side of the venting member is provided with a positioning protrusion, and the igniter is inserted into the accommodating cavity of the gas box assembly, and the positioning protrusion is Engaged with the positioning hole described.
  • the fire extinguishing member constitutes a conductive member that transmits a current of the piezoelectric block; the rocker plate is electrically conductive and is fixed with the piezoelectric block body The bottom conductive portions of the ribs are adjacent or adjacent.
  • one pole of the piezoelectric block contacts or is adjacent to the fire member, and the other pole contacts the rocker, and the fire extinguishing member and the rocker plate form a component of the piezoelectric block high voltage discharge circuit.
  • the piezoelectric block has a body stator and a moving member. Inside the lighter body, one end of the piezoelectric block body is inserted into the control button, and one end of the body member is inserted into the inner cavity of the control button; one end of the piezoelectric block is inserted into the piezoelectric block receiving cavity of the gas box assembly. When igniting, the control button presses the piezoelectric block body to realize the compression discharge of the piezoelectric block.
  • One end of the piezoelectric block body is inserted into the inner cavity of the control button, and is kept in contact or close to the fire extinguishing member in the inner cavity.
  • the piezoelectric block body and the fire extinguishing member are always in contact or close to each other, and are transmitted as piezoelectric blocks during the ignition process.
  • the path is part of the ignition electronic circuit.
  • the proximity means that although there is no physical contact between the two components, it still maintains a necessary distance, which can satisfy the voltage of the piezoelectric block component to break through the air and realize the need to transmit electrons.
  • the above-mentioned rocker relies on a fixed fulcrum in the body of the lighter, such as the end of the inner cavity rib, forming a lever, and the two ends of the lever respectively connect the piezoelectric point and the gas outlet valve of the gas box assembly; when the control button presses the ignition, presses the piezoelectric
  • the block body is fixed to realize the compression discharge of the piezoelectric block, and at the same time, the piezoelectric block body is fixed to drive the rocker movement, and the gas valve of the gas box assembly of the other end is pulsated by the lever to realize gas release and gasification.
  • the furnace (anti-fan or straight-through machine; if it is a lighter, it is a flammable liquefied gas accommodating chamber) provides a gas source for ignition; at the same time, the rocker itself conducts electricity and acts as a path for the piezoelectric block during the ignition process, which is the ignition Part of an instantaneous electronic circuit.
  • the rocker may be made of a conductive metal material, such as stamped with metal iron; or may be obtained by electroplating of plastic parts. In view of the fact that a little elasticity is required for the rocker assembly, it is preferred to use an injection molded plastic part.
  • Gas-mixed lighters generally have two types of flames. We commonly call them windproof lighters and straight-through lighters.
  • the flame of the windproof lighter is relatively flat; the straight flushing machine belongs to a kind of anti-fan, and the flame is longer and more pointed.
  • the shape of the flame is determined by the structure of the gasifier component.
  • the two different flame configurations correspond to two typical gasifier component structures.
  • the fire-extinguishing member is fastened to the positioning hole on the side of the accommodating chamber of the gasifier of the lighter body through the protrusion, thereby realizing the fixing of the fire-extinguishing member.
  • the control buttons are injection molded from plastic.
  • the control button is provided with an open structure to form a cavity for accommodating the piezoelectric block.
  • one pole of the piezoelectric block contacts or approaches the fire member, and the other pole contacts or approaches the rocker, and the fire extinguishing member and the rocker plate form an integral part of the piezoelectric block high voltage discharge circuit.
  • the proximity means that although there is no physical contact between the two components, it still maintains a necessary distance, which can satisfy the voltage of the piezoelectric block component to break through the air and realize the need to transmit electrons.
  • the gasification furnace assembly adopts an integrated design, the air inlet at the lower end is inserted into the valve needle of the air outlet valve of the gas box, and the air outlet at the upper end is disposed inside the fire outlet at the top of the fire extinguishing member.
  • the piezoelectric block is preferably a piezoelectric block of an electrodeless line.
  • the portion of the insulating plastic housing of the fixed piece of the piezoelectric block that is in contact with the conductive rocker passes through the high-voltage voltage to break the air in the fire port, and transmits the voltage of the second electrode in the middle of the stator to the conductive
  • the first electrode voltage is transmitted to the steel cap of the gasifier through the conductive fire-extinguishing member to form a steel cap and gasification.
  • the discharge between the tip of the furnace constitutes a high-voltage electron from the first electrode in the middle of the stator - the conductive rocker - the valve needle of the gas box outlet valve - the tip of the gasifier - the steel cap of the gasifier - Conductive fire-extinguishing member - the circuit of the second electrode at the top of the stator completes the ignition.
  • the control button and the fire-extinguishing member are inserted, and the guiding protrusion of the control button enters the guiding groove on the fire-extinguishing member, and the connection between the control button and the fire-emitting member is realized and can slide with each other to form a button assembly.
  • the movement module can also be composed of any three or two of any of the above components.
  • the specific combination depends on the overall balance of efficiency and cost, such as the piezoelectric block.
  • the three components of the control button and the inverted L-shaped ignition component constitute an ignition component.
  • the independent assembly of the movement module makes it possible to independently assemble the control button, the ignition member and the piezoelectric block independently in the production, and then assemble it into the gas box as a whole, thus saving assembly time and greatly improving
  • the assembly efficiency of the lighter achieves low cost of production and high efficiency of assembly.
  • the lighter fire-extinguishing component of the invention, and the button component formed by the fire-extinguishing component and the lighter control button, and the ignition component composed of the fire-extinguishing component, the lighter control button and the piezoelectric block are not limited to the gas when used for lighter assembly Front mixing lighter (straight punch type, anti blower type) or gas after mixing lighter (lighter).
  • the fire-extinguishing member since the fire-extinguishing member is fitted in the body, a lighter body is formed integrally from the outside, which ensures the high reliability of the lighter and avoids the unstable vibration of the conventional lighter on the fuselage.
  • the fire-extinguishing member of the present invention is also a path for transmitting the piezoelectric block, and is a part of the ignition electronic circuit, which simplifies the ignition mechanism of the conventional lighter.
  • a lighter based on the above design has an overall production cost advantage.
  • Figure 1 is a schematic view showing the structure of a fire extinguisher of a conventional lighter
  • Figure 2 is a half cross-sectional view of Embodiment 1;
  • Embodiment 3 is a schematic exploded view of the structure of Embodiment 1;
  • FIG. 4 is a schematic view showing the snap connection of the piezoelectric block and the rocker of the first embodiment
  • FIG. 5 is a schematic view showing the assembly and connection of the control button and the piezoelectric block of Embodiment 1;
  • Figure 6 is an ignition type of the inverted L type of the embodiment 1;
  • Figure 6 ⁇ 1 shows the fire-emitting part of the inverted L type of the embodiment 3;
  • FIG. 7 is a schematic diagram of a manipulation button of Embodiment 1;
  • FIG. 8 is a schematic view of a button assembly of Embodiment 1;
  • Fig. 8-1 is a key assembly used in the third embodiment.
  • 9 ⁇ 1 and 9 ⁇ 2 are schematic diagrams showing the modules of the ignition assembly and the rocker of the embodiment 1 of the present invention.
  • Figure 9-3 is an ignition assembly used in Example 3.
  • Figure 10 is a schematic view showing the assembly of the ignition assembly and the gas box assembly of Embodiment 1;
  • Figure 11 is a schematic view showing the comparison of the structure of the direct-injection gasifier assembly and the wind-proof gasification furnace assembly in the second embodiment.
  • Fig. 12 is a structural schematic view showing the fire extinguishing member of the embodiment 3 and its components applied to a lighter.
  • Figure 13 is a schematic view of the body of the lighter of Figure 12.
  • the 2 and 3 are a windproof type electronic lighter, which is composed of a gas box assembly 1, a gasification furnace assembly 2, a rocker 3, a piezoelectric block 4, a control button 5, and an inverted L type fire extinguishing member 6.
  • the gas box assembly 1 is fixedly connected by the gas box body and the bottom cover 14.
  • the bottom cover 14 is provided with an intake valve 15, and the body is provided with an air outlet valve 13, and the valve needle 12 of the air outlet valve is pulled upward to release the gas. .
  • the gas box assembly includes an adjacent gasifier receiving chamber with an opening and an upper block piezoelectric block receiving chamber.
  • the gasifier component 2 adopts an integrated design, which includes a rubber stopper, a rubber stopper fixing cover, a microporous silver piece, a two-hole gasification cylinder body, an insulating high temperature ceramic, a needle needle cover, an inner metal ring, a color piece, and an outer steel cap. And integrated as a whole, as shown in Figure 10.
  • the inner wall of the rubber stopper in the intake port 22 at the lower end of the gasification furnace assembly 2 is tightly fitted to the top of the valve needle 12 of the gas outlet valve 13 of the gas tank, and the upper end gas outlet port 21 is disposed at the fire outlet 63 at the top of the inverted L-shaped fire extinguishing member. in.
  • the rocker 3 is made of a conductive material and can be stamped with iron, but it is preferably injection molded from a conductive plastic in view of the need for a little elasticity during assembly.
  • the piezoelectric block 4 preferably employs an electrodeless piezoelectric block.
  • the piezoelectric block 4 of the piezoelectric ceramic has two discharge electrodes 43 and 45 which are naturally distributed on both end faces of the piezoelectric block 4, and are vertically separated from each other.
  • the piezoelectric block 4 is fabricated, it is not necessary to distinguish the polarity, nor It is necessary to extract the leads from the two polarities of the piezoelectric block 4, thereby avoiding the disadvantage that the electronic high voltage is easily short-circuited, and also reducing the manufacturing cost of the piezoelectric block 4.
  • control button 5 is injection molded from plastic, preferably ABS plastic, and the lower end is open to form a cavity for accommodating the piezoelectric block 4.
  • a pair of guiding protrusions 51 are disposed on a side of the control button 5 adjacent to the inverted L-shaped firing member 6; a top portion of the inverted L-shaped firing member 6 is provided with a fire exit 63, and the fire exit 63 is a hollow cylindrical shape ( a circular hole having a thickness, the outer end surface of which is flush with the outer surface of the top surface of the fire-extinguishing member, the inner end surface thereof is flush with the inner surface of the top surface of the fire-extinguishing member, and the side surface thereof is provided with a pair of upwardly inclined protrusions 62 and a rib 61 and a pair of parallel guide grooves 64.
  • the front end of the rocker 3 is provided with a card slot 32, the card slot 32 is engaged with the neck of the valve needle 12 of the gas box outlet valve, and the two sides of the rear end wings are respectively clamped in the middle of the piezoelectric block; the rear end of the rocker 3 passes the card
  • the buckle structure is connected to the fixed piece.
  • the piezoelectric block 4 is composed of a movable member 42 and a stator 41.
  • the piezoelectric block 4 is installed upside down, the fixed member 41 faces upward, and is inserted into the inner cavity 52 of the control button 5 in an interference manner, so that the control button 5 and the piezoelectric block 4 are integrated into one body, as shown in FIG. 5. Shown.
  • the inverted L-shaped fire-extinguishing member 6 is provided with a pair of parallel guiding grooves 64, and the control button 5 is provided with a pair of guiding protrusions 51 corresponding thereto, and the sliding contact between them is performed, so that the control button 5 can be relatively movable between the fire-extinguishing members 4 Relative sliding along the direction of the guide groove 64.
  • the rocker 3, the piezoelectric block 4, the control button 5 and the inverted L-shaped fire-extinguishing member 6 can be connected together to form a whole.
  • this movement module 3456 see Figure 9 ⁇ 1, 9 ⁇ 2. With such a structure, the overall assembly efficiency of the lighter can be greatly improved.
  • the movement module 3456 is pressed, and a pair of oblique upward projections 62 of the inverted L-shaped fire-extinguishing member 6 in the module follow the entire module downward, and the upper inner side of the gas box assembly 1 is inclined upward and upward.
  • the outlet valve 13 is of an adjustable type, and the outlet valve 13 can maintain a constant height of the flame at a certain temperature.
  • the gas box assembly 1 of the unregulated outlet valve 13 is less tempered than the conventional gas box assembly.
  • the four parts of ring, foam, T-shaped aluminum nail and drainage core aluminum cup can minimize the number of parts of the whole machine and greatly simplify the assembly process.
  • the inner bore of the bottom seal of the gasifier assembly 2 is interspersed over the outlet needle of the outlet valve 13, and they are tightly fitted to keep them closed.
  • the outlet valve can also be a conventional adjustable type of outlet valve.
  • the gasifier assembly 2 is composed of a rubber stopper, a rubber stopper fixing cover, a microporous silver piece, a two-hole gasification cylinder body, an insulating high-temperature ceramic, a needle needle cover, an inner metal ring, a color piece, and an outer steel cap, and is integrated into one.
  • the rubber stopper fixing cover prevents the rubber stopper from being separated from the gasification furnace assembly, and the top of the gas outlet needle has a barb groove, so that the rubber stopper in the gasification furnace assembly is difficult to be pulled out when it is nested, and the gasification furnace is prevented. Fall off during use.
  • the inverted L-shaped fire-extinguishing member 6 of the movement module is fixedly engaged in the upper part of the gasifier accommodating chamber of the gas box assembly 1, and the remaining components are placed in the piezoelectric block accommodating chamber of the gas box assembly 1 in a lively manner, in the ignition During the process, the fixed member 41 of the piezoelectric block 4 moves downward along with the control button 5 and drives the rocker 3 to rotate around the fulcrum, lifting the valve needle 12 on the gas box assembly 1 to release the gas, and the gas passes through the gasifier assembly.
  • the energy storage spring between the fixed member 41 and the movable member 42 of the piezoelectric block 4 is compressed, the energy storage spring is compressed to a specific position, the spring is unhooked and rebounded, and the impact head is struck against the piezoelectric ceramic to generate a high voltage.
  • the electric spark completes the ignition; at the moment of ignition, the first electrode 43 of the piezoelectric block 4 abuts against the conductive protrusion 61 of the inverted L-shaped fire-extinguishing member 6 made of a conductive material, and the second electrode 45 is also close to being electrically conductive.
  • the rocker 3 made of material has a distance gap satisfying the condition of air breakdown, so that the inverted L-shaped fire-extinguishing member 6 and the rocker 3 are both integral parts of the piezoelectric block 4 high-voltage discharge circuit, and constitute a high-voltage electron pressure.
  • the second electrode 45 in the middle of the electric block 4 - the conductive rocker 3 - 12-- needle tip gasifier - gasifier steel cap - a fire block of the first electrode of the piezoelectric member 4 6-- discharge ignition circuit 43 is completed, the ignition assembly 2 through the gas in the gasification furnace.
  • the straight-through gasification furnace assembly is composed of a rubber stopper 107, a rubber stopper fixing cover 108, a microporous silver sheet 106, a two-hole gasification cylinder 105, an insulating high-temperature large ceramic 204, and a sharp needle cover 200;
  • the windproof gasification furnace assembly is composed of a rubber stopper 107, a rubber stopper fixing cover 108, a microporous silver sheet 106, a two-hole gasification cylinder 105, an insulating high-temperature small ceramic 104, a blind hole needle cover 100,
  • the inner metal ring 103, the color piece 102, and the outer steel cap 101 are composed.
  • the shape of the sharp needle covers 200, 100 is the same, but the internal structure has a different structure.
  • the center of the straight needle cover 200 is provided with a through hole 220 of about 0.5 mm, and the windproof needle cover 100 has no holes;
  • the shape of the insulated high-temperature ceramic is different from the size of the combustion chamber.
  • the shape of the high-temperature ceramic and the size of the combustion chamber are generally larger than the windproof. If the wind is as large as the wind, the effect of the straight flush will be poor. a lot of;
  • the structure and parts of the lower part of the straight-through and wind-proof gasification furnace components are the same, and are composed of a rubber stopper 107, a rubber stopper fixing cover 108, a microporous silver piece 106, and a two-hole gasification cylinder 105, but
  • the upper part of the gasification furnace is replaced with a large-sized insulating high-temperature ceramic 204 with a large-sized insulating high-temperature ceramic 204, an inner metal ring 103, a color plate 102, and an outer steel cap 101, so that the gas is straight.
  • the structure of the furnace is more compact and the cost is lower.
  • the rubber stopper 107 of the gasification furnace is over-fitted on the valve needle 12 of the gas outlet valve 13 of the gas tank assembly 1.
  • the inner wall of the rubber stopper 107 is tightly fitted with the outer wall of the valve needle 12, so that when used, The valve needle 12 of the outlet valve 13 is pulled out, the fuel gas is released from the inner hole of the valve needle 12, and the fuel gas is throttled by the micropores of the microporous silver sheet 106 under the action of the saturated gas pressure, and the fuel gas forms a high-speed jet.
  • the lighter described in Embodiment 3 is a lighter, that is, a gas after mixing and firing.
  • the fuselage structure differs from the lighter described in Embodiment 1 in the gasifier portion.
  • the gasification furnace portion of the first embodiment is replaced by the constant flow valve 2', the air outlet needle 8, and the igniting spring 7, and when the ignition is performed, the flow is restricted by the constant flow valve 2', and is directly released by the air outlet needle 8. The gas is burned at the outlet of the fire-extinguishing member 6.
  • a igniter spring 7 is provided between the air outlet needle 8 and the igniter 6, and an air inlet 9 is provided in the side wall of the body 1 for providing oxygen combustion.
  • the rocker 3 itself is electrically conductive, one end is close to the piezoelectric point 4, the distance gap satisfies the condition of air breakdown, and one end is in contact with or close to the air outlet needle 8, and the ignition moment becomes a part of the electronic circuit.
  • the discharge circuit of the process is: pressing the piezoelectric block discharge (a high voltage electron from the second electrode 45 in the piezoelectric block 4) - the fire member - the ignition spring - the air outlet needle - the rocker - the piezoelectric copper piece (First electrode 43 of piezoelectric block 4).
  • the rocker may be made of a conductive metal material, such as stamped with metal iron; or may be obtained by electroplating of plastic parts. In view of the fact that a little elasticity is required for the rocker assembly, it is preferred to use an injection molded plastic part.
  • Fig. 6-1 is a fire extinguishing member 6 used in the present embodiment.
  • the fire exit 63 is a cylindrical shape, and the outer end surface thereof is flush with the outer surface of the top surface of the fire extinguishing member, and the inner end surface thereof protrudes from the inner surface of the top surface of the fire extinguishing member.
  • the protruding portion is a half of a portion of the extended cylindrical shape, that is, half of the cylindrical structure.
  • Fig. 8-1 is a key assembly used in the embodiment.
  • This assembly uses the fire-extinguishing member 6 shown in Figure 6 ⁇ 1.
  • the manipulation The button 5 is provided with two guiding protrusions 51.
  • the fire-extinguishing member is provided with two guiding grooves 64.
  • the guiding groove 64 can accommodate the control button guiding protrusion 51, and the fire-extinguishing member 6 is inserted into the control button 5, and the control button is satisfied.
  • the support projection 51 is moved along the guide groove 64 of the fire ejector 6.
  • FIG 9-3 is an ignition assembly used in this embodiment.
  • the ignition assembly includes a control button 5, a fire-extinguishing member 6 with a top surface fire outlet, and a piezoelectric block 4, the control button 5 being connected to the fire-extinguishing member 6 and being movable up and down, the piezoelectric block 4 being inserted into the control unit
  • the button 5 has a cavity in the top surface.

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Abstract

一种电子打火机及其组件,其中电子打火机包括燃气箱组件(1)、翘板(3)、压电块(4)、操作按键(5)和带顶面出火口(63)的出火件(6)。燃气箱组件(1)包括带上开口容纳腔,燃气箱组件(1)同时也作为打火机机体。压电块(4)、操作按键(5)与出火件(6)分别嵌入燃气箱组件(1)中;压电块(4)与操作按键(5)插接。燃气箱组件(1)顶部设有定位孔(11),出火件(6)的侧面设有定位凸起(62),出火件(6)插入燃气箱组件(1)的容纳腔,定位凸起(62)与定位孔(11)嵌合。该打火机简化了产品结构,提高了组装效率。

Description

一种电子打火机及其组件 技术领域
本发明涉及一种电子打火机,以及该打火机用出火件、按键组件和点火组件,属于电子打火机技术领域。
背景技术
打火机以点火形式来分类,可分为火石式点火打火机与压电式点火打火机两种;以火苗形态来区分,可分为空气与燃气的前混合型打火机(俗称防风打火机或直冲打火机)与后混合型打火机(俗称明火打火机)两种。这两种打火机在传统产品中有着很大的市场保有量。
电子打火机一般都由燃气箱组件(可兼做打火机外壳)、有极线的压电块、气化炉固定架(兼点火极线固定架)、气化炉、翘板、操控按键、出火件等组成,装配时按照一定的顺序依次把翘板、压电块、气化炉、气化炉固定架、操控按键、出火件安装在打火机的燃气箱上。由于燃气箱安装空间狭窄,在燃气箱上安装各个部件十分不便,费时费力,组装效率低,加之劳动力成本不断攀高,打火机生产成本也越来越高。
传统打火机出火件种类繁杂,形状多样,由于结构设计的原因,其与打火机机身的装配,依赖U型结构应力,加持机身,加之加工精度等原因,其组装效率和产品稳定性问题需要解决。传统打火机出火件多为小型薄壳冲压件,见图1。所述打火机外部可见燃气箱1、操控按键5、出火件6,出火件b采用金属薄片弯成弧形并设置卡部a,卡部a卡扣在燃气箱1上部。装配出火件6的打火机结构,使用时很容易因受到外部力量冲击而脱落。
同时,此种出火件结构的打火机,在组装时,出火件6的U形双臂的加持依赖外部凹陷结构a和燃气箱1顶部定位机构的配合,该过程对于位置限定条件单一,组装时对操作人员的技术要求高。
由于打火机装配时按照一定的顺序依次把翘板、压电块、气化炉、气化炉固定架、操控按键、出火件安装在打火机的狭小机身空腔中,使得各个部件安装十分不便,费时费力,组装效率低,加之劳动力成本不断攀高,打火机生产成本也越来越高。
因此,从打火机组装效率和其稳定使用耐久性出发,有必要提供结构简单且稳定性好的压电式电子打火机。
发明内容:
本发明的目的在于提供一种新颖的电子打火机。该打火机具有不同于现有产品的结构设计,从而实现了简化产品结构,提高了电子打火机组装效率,并使之具有更好的稳定性和使用耐久性。
本发明的另一目的在于提供安装于上述电子打火机的出火件。该电子打火机用出火件通过卡扣形式实现了出火件与打火机机身的扣合连接,利于组装且稳定性好,同时还作为电子打火回路的一部分,简化了打火机整体结构。
本发明的再一目的在于提供安装于上述电子打火机的按键组件。该组件由出火件和打火机操控按键构成,结构新颖。
本发明的再一目的在于提供安装于上述电子打火机的点火组件。该组件由出火件、打火机操控按键和压电块构成,结构新颖。
所述的电子打火机包括燃气箱组件、翘板、压电块、操控按键、带顶面出火口的出火件;所述燃气箱组件包括带上开口容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别嵌入燃气箱组件中;所述压电块与操控按键插接;其特征在于,所述燃气箱组件顶部设有定位孔,所述出火件的侧面设有定位凸起,所述出火件插入所述燃气箱组件的容纳腔,所述的定位凸起与所述的定位孔嵌合。
所述出火件侧面设置两个对称的定位凸起,燃气箱组件顶部设有两个对称的定位孔。
所述出火件为倒L型结构;所述的出火口为中空的圆柱形,其外端面与出火件顶面的外表面齐平,其内端面齐平或突出于出火件顶面的内表面;出火件由导电材料制得并在对应于操控按键的一面设有导电凸起。
所述出火件构成传递压电块电流的导电件;所述翘板自身导电且与压电块本体定件上一凸条的底部导电部相接或相邻;所述打火机点火瞬间,压电块的一极接触或邻近出火件,另一极接触或邻近翘板,出火件与翘板都构成压电块高压放电回路的组成部分。
所述操控按键相对出火件可上下移动的相互连接,所述压电块插接于操控按键带顶面的空腔中。
所述操控按键设有至少一个导向突出部,出火件设置有至少一个导槽,该导槽可容纳操控按键导向突出部,实现该出火件与操控按键插接,并满足操控按键依托导向突出部沿着出火件导槽移动。
所述压电块具有本体定件和可在该定件中移动的动件,所述本体定件的上端插接于操控按键带顶面的空腔中,动件一端插入燃气箱组件的压电块容纳腔。
对于防风机或直冲机型,所述的打火机包括气化炉;所述的燃气箱组件包括相邻的带上开口的气化炉容纳腔和带上开口的压电块容纳腔,所述的气化炉容纳腔高于压电块容纳腔;气化炉和出火件置入气化炉容纳腔,其中的出火件定位凸起嵌合于气化炉容纳腔顶部的定位孔,压电块和操控按键置入压电块容纳腔。
对于明火机型,所述的燃气箱组件包括相邻的带上开口的可燃液化气容纳腔和带上开口的压电块容纳腔,所述的可燃液化气容纳腔高于压电块容纳腔;出火件置入可燃液化气容纳腔,其定位凸起嵌合于可燃液化气容纳腔顶部的定位孔,压电块和操控按键置入压电块容纳腔。
所述的操控按键空腔相对出火件的一面开设一开口槽,所述的空腔用于容纳压电块的本体定件,所述的开口槽用于容纳压电块本体定件上设置的导电凸条,所述的翘板一端接触或邻近导电凸条。
本发明所述的电子打火机为防风机或直冲机时,打火机由燃气箱组件、气化炉组件、翘板、压电块、操控按键、出火件构成;所述燃气箱组件包括相邻的带上开口的气化炉容纳腔和上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;气化炉组件、压电块、操控按键与出火件分别嵌入燃气箱组件中;所述压电块与操控按键插接;所述燃气箱组件中气化炉容纳腔顶部侧面设有定位孔,所述出火件的侧面设有凸起,插入嵌合在燃气箱组件中气化炉容纳腔顶部,其中出火件的凸起与气化炉容纳腔顶部侧面定位孔嵌合;所述操控按键与出火件嵌合连接。
本发明所述电子打火机用出火件的顶面设置出火口,其侧面设有定位凸起,出火件可插入打火机燃气箱组件的容纳腔,所述的定位凸起用于与容纳腔顶部设置的侧面定位孔嵌合。
所述出火件定位凸起可以设置一个或多个。
所述出火件侧面设置两个对称的定位凸起;所述的出火口为中空的圆柱形,其外端面与出火件顶面的外表面齐平,其内端面齐平或突出于出火件顶面的内表面。
所述出火件为倒L型结构,由导电材料制得。
所述出火件构成传递压电块电流的导电件,是点火瞬间电子回路的一部分。
对于明火机型,上述使用出火件的电子打火机由燃气箱组件、翘板、压电块、操控按键、出火件构成;所述燃气箱组件包括相邻的带上开口的可燃液化气容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组 件中;所述压电块与操控按键插接。
所述的打火机的气化炉容纳腔顶部的两侧面穿设定位孔。
对于防风机或直冲机型,所述的电子打火机由燃气箱组件、气化炉组件、翘板、压电块、操控按键、出火件构成;所述燃气箱组件包括相邻的带上开口的气化炉容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;气化炉组件、压电块、操控按键与出火件分别置入燃气箱组件中;所述压电块与操控按键插接;
所述汽化炉容纳腔顶部的两侧面穿设定位孔。
上述打火机用出火件相对操控按键的一面设有导电凸起。
上述出火件侧面凸起可以设置一个或多个。根据产品实际结构和强度需要,优选为两个凸起设置,对称位置设置。
所述出火件可以是由导电金属材料制得,也可通过塑料件电镀获得。
无论采用何种材料或工艺制备,本发明所述出火件在打火机工作时,在防风作用之外,自身还是打火过程中压电块传递的路径,是点火瞬间电子回路的一部分。
本发明中的出火件优选为倒L型结构,如图6所示。该出火件的顶部设有出火口。
本发明电子打火机用按键组件,由操控按键和出火件构成,所述操控按键相对出火件可上下移动的相互连接。
所述操控按键设有至少一个导向突出部,出火件设有至少一个导槽,该导槽可容纳操控按键导向突出部,实现该出火件与操控按键插接,并满足操控按键依托导向突出部沿着出火件导槽移动。
所述操控按键与出火件分别插入所述打火机的燃气箱组件中,燃气箱组件同时也作为打火机机体;所述燃气箱组件的容纳腔顶部侧面设有定位孔,所述出火件的顶面设置出火口,其侧面设有定位凸起,出火件插入燃气箱组件的容纳腔,所述的定位凸起与所述的定位孔嵌合。
所述出火件侧面凸起可以设置一个或多个。
所述出火件侧面设置两个对称的定位凸起,所述的出火口为中空圆柱形,其外端面与出火件顶面的外表面齐平,其内端面齐平或突出于出火件顶面的内表面。
所述出火件为倒L型结构,由导电材料制得。
对于防风机或直冲机型,所述的打火机包括燃气箱组件、气化炉组件、翘板、压电块;所述燃气箱组件包括相邻的带上开口的气化炉容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组件中。
对于明火机型,所述的打火机包括燃气箱组件、翘板、压电块;所述燃气箱组件包括相邻的带上开口的可燃液化气容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组件中。
所述的出火件插入燃气箱组件容纳腔的部分设有导电凸起。
所述的操控按键为有顶面的带容纳腔按键,所述的容纳腔相对出火件的面开设一开口槽,所述的容纳腔用于容纳压电块的上端,所述的开口槽用于容纳压电块上端设置的凸条。
所述出火件与操控按键嵌合连接,构成按键组件。基于此种连接方式,出火件与操控按键可根据实际需要,存在多种设计。本发明中,所述操控按键设有至少一个导向突出部,出火件设置有至少一个导槽,该导槽可容纳操控按键导向突出部,实现该出火件与操控按键插接,并满足操控按键依托导向突出部沿着出火件导槽移动。
本发明电子打火机用点火组件包括操控按键、带顶面出火口的出火件和压电块,所述操控按键相对出火件可上下移动的相互连接,所述压电块插接于操控按键带顶面的空腔中。
所述压电块具有本体定件和可在定件中移动的动件,所述压电块本体定件的上端插接于操控按键带顶面的空腔中。
所述操控按键设有至少一个导向突出部,出火件设置有至少一个导槽,该导槽可容纳操控按键导向突出部,实现该出火件与操控按键插接,并满足操控按键依托导向突出部沿着出火件导槽移动。
所述出火件为倒L型结构,其侧面设置一个或多个定位凸起,所述的出火件由导电材料制得并在对应于操控按键的一面设有导电凸起。
所述出火件侧面设置两个对称的定位凸起,所述的出火口为中空圆柱形,其外端面与出火件顶面的外表面齐平,其内端面齐平或突出于出火件顶面的内表面。
对于防风机或直冲机型,所述的打火机包括燃气箱组件、气化炉组件、翘板、压电块;所述燃气箱组件包括相邻的带上开口的气化炉容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组件中。
对于明火机型,所述的打火机包括燃气箱组件、翘板、压电块;所述燃气箱组件包括相邻的带上开口的可燃液化气容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组件中。
所述燃气箱组件的容纳腔顶部侧面设有定位孔,所述出火件的顶面设置出火口,其侧面设有定位凸起,出火件插入燃气箱组件的容纳腔,所述的定位凸起与所述的定位孔嵌合。
所述出火件构成传递压电块电流的导电件;所述翘板自身导电且与压电块本体定件上一 凸条的底部导电部相接或相邻。
所述打火机点火瞬间,压电块的一极接触或邻近出火件,另一极接触翘板,出火件与翘板都构成压电块高压放电回路的组成部分。
所述压电块具有本体定件和动件。在打火机机体内部,所述压电块本体定件一端与操控按键插接,本体定件一端插入操控按键的内腔;所述压电块动件一端插入燃气箱组件的压电块容纳腔。点火时,操控按键按压压电块本体定件,实现压电块的压缩放电。
所述压电块本体定件一端插入操控按键的内腔中,并在内腔中与出火件保持接触或接近状态。在操控按键按压压电块本体定件,实现压电块的压缩放电的过程中,压电块本体定件与出火件始终保持接触或接近状态,并并在打火过程中作为压电块传递的路径,是点火瞬间电子回路的一部分。
所述的接近是指两个部件之间虽未实体接触,但仍保持一个必要距离,该必要距离能够满足压电块部件释放的电压击穿空气,实现传递电子的需要。
上述翘板在打火机机身中依托一固定支点,如内腔加强筋端部,形成杠杆,杠杆两端分别连接压电点子和燃气箱组件的出气阀;当操控按键按压点火时,按压压电块本体定件,实现压电块的压缩放电,同时压压电块本体定件带动翘板运动,通过杠杆作用撬动另一端的燃气箱组件的出气阀阀针,实现燃气释放,通过气化炉(防风机或直冲机;如是明火机,则为可燃液化气容纳腔)为点火提供气源;同时,翘板自身导电,并在打火过程中作为压电块传递的路径,是点火瞬间电子回路的一部分。
所述翘板可以是由导电金属材料制得,如采用金属铁冲压制得;也可通过塑料件电镀获得。考虑到翘板装配时需要少许弹性,优选使用导电塑料注塑件。
燃气前混合型的打火机一般有两种火苗形态,我们俗称它们为防风打火机与直冲打火机。防风打火机的火苗比较平坦;直冲机属于防风机的一种,其火苗较长,更加尖细。火苗形态是气化炉组件的结构所决定的,两种不同的火苗形态对应着两种典型的气化炉组件结构。
上述出火件通过凸起与打火机机体气化炉容纳腔侧面的定位孔相扣接,实现出火件的固定。
操控按键由塑料注塑而成。操控按键设有开放结构,形成容纳压电块的空腔。
本发明所述打火机点火瞬间,压电块的一极接触或接近出火件,另一极接触或接近翘板,出火件与翘板都构成了压电块高压放电回路的组成部分。
所述的接近是指两个部件之间虽未实体接触,但仍保持一个必要距离,该必要距离能够满足压电块部件释放的电压击穿空气,实现传递电子的需要。
所述的气化炉组件采用一体化设计,下端的进气口插在燃气箱的出气阀的阀针上,上端出气口则设置在出火件顶部的出火口里面。
所述压电块优选采用无极线的压电块。放电时,压电块的定件的绝缘塑料外壳上第二电极与导电翘板相接处的部位,通过高压电压击穿出火口中的空气,把定件中部的第二电极电压传送到导电的翘板上,由于导电的出火件接触或接近压电块定件顶部的第一电极,通过导电的出火件把第一电极电压传送到气化炉的钢帽上,形成一个钢帽与气化炉针尖之间的放电,组成了一个高压电子从定件中部的第一电极——导电翘板——燃气箱出气阀的阀针——气化炉针尖——气化炉的钢帽——导电的出火件——定件顶部的第二电极的回路,完成点火。
组装打火机时,将操控按键和出火件插接,操控按键的导向突出部进入出火件上的导槽,实现操控按键和出火件的连接并能相互滑动,构成按键组件。
再将压电块插入按键组件中操控按键的内腔里,将三个部件形成一个整体,作为一个机芯模块,即点火组件。
考虑到各个零部件的不同生产工艺,机芯模块也可以由任意上述的零部件中的任意三个或两个零部件组成,具体怎么组合主要看效率与成本的综合平衡,例如把压电块、操控按键、倒L型的出火件这三个零部件组成点火组件。
机芯模块的独立组装,使得在生产时,可以在外部将操控按键、出火件和压电块先独立装配好,然后再把它整体装配进入燃气箱中,这样就节省了装配时间,大大提高了打火机的装配效率,实现了生产的低成本和组装的高效率。
本发明所述的打火机出火件,以及由该出火件和打火机操控按键构成的按键组件,以及由出火件、打火机操控按键和压电块构成的点火组件,在用于打火机装配时,不限于燃气前混合打火机(直冲机型、防风机型)或燃气后混合打火机(明火机)。
同时,由于出火件嵌合在机体中,从外部形成了浑然一体的打火机机身,保证了打火机的高可靠性,避免了传统打火机出火件在机身上晃动不稳定。同时,本发明所述出火件自身还是压电块传递的路径,是点火瞬间电子回路的一部分,简化了传统打火机的点火机构。基于上述设计的打火机,具有总体生产成本优势。
附图说明
图1为传统打火机出火件结构示意图;
图2为实施例1半剖面示意图;
图3为实施例1结构分解示意图;
图4为实施例1压电块与翘板的卡扣联接示意图;
图5为实施例1操控按键与压电块的装配联接示意图;
图6为实施例1倒L型的出火件;
图6‐1为实施例3倒L型的出火件;
图7为实施例1操控按键的示意图;
图8为实施例1按键组件示意图;
图8‐1是实施例3使用的一种按键组件。
图9‐1、9‐2为本发明实施例1点火组件和翘板构成的模块示意图;
图9‐3是实施例3使用的一种点火组件。
图10为实施例1点火组件与燃气箱组件组装示意图;
图11为实施例2中直冲气化炉组件与防风气化炉组件的结构比对示意图。
图12为实施例3出火件及其组件应用于明火机的结构示意图。
图13为图12中打火机机身示意图。
具体实施方式:
实施例1:
图2、3所示是一种防风型电子打火机,由燃气箱组件1、气化炉组件2、翘板3、压电块4、操控按键5、倒L型的出火件6组成。燃气箱组件1由燃气箱本体与底盖14固定连接而成,底盖14上设有进气阀15,本体上则设有出气阀13,出气阀的阀针12向上拉动就能释放出燃气。
燃气箱组件包括相邻的带上开口的气化炉容纳腔和上开口的压电块容纳腔。
气化炉组件2采用一体化设计,里面包含橡皮塞、橡皮塞固定盖、微孔银片、两孔气化筒体、绝缘高温陶瓷、尖针盖、内金属环、色片、外部钢帽,并集成为一个整体,具体见图10。
气化炉组件2下端的进气口22里的橡皮塞内壁紧套在燃气箱的出气阀13的阀针12的顶部,上端出气口21则设置在倒L型的出火件顶部的出火口63里。
翘板3由导电材料制作,可以采用铁皮冲压,但考虑到装配时需要少许弹性,它最好是由导电的塑料注塑而成。
见图4。压电块4优选采用无极线压电块。压电陶瓷的压电块4,其两个放电极43、45自然分布在压电块4的两个端面上,上下自然分开,在压电块4制作时,不需要区分极性,也不需要从压电块4的两个极性上引出引线,避免了电子高压容易短路的弊端,也能降低压电块4的制作成本。
见图5。操控按键5是由塑料注塑而成,首选ABS塑料,下端开口,形成容纳压电块4的内腔。
见图6、图7和图8。操控按键5侧面与倒L型的出火件6相邻的部位上设有一对导向突出部51;倒L型的出火件6的顶部设有出火口63,该出火口63为中空的圆柱形(有厚度的圆孔),其外端面与出火件顶面的外表面齐平、其内端面齐平于出火件顶面的内表面,其侧面设有一对向上倾斜的凸起62、一条凸筋61与一对平行导槽64。
见图3、图4。翘板3的前端设有卡槽32,卡槽32卡住燃气箱出气阀的阀针12的颈部,后端两翼的两侧分开卡在压电块的中部;翘板3后端通过卡扣结构与定件连接。
如图4所示,压电块4由动件42与定件41组成。
在本实施例中,压电块4倒过来安装,定件41朝上,过盈地插入到操控按键5的内腔52内,使操控按键5与压电块4联为一体,如图5所示。
见图6。倒L型的出火件6设有一对平行导槽64,操控按键5设有与之相对应一对导向突出部51,它们之间滑动卡接,使操控按键5可以相对出火件4之间能沿着导槽64方向做相对滑动。
采取上述的3个措施后,能使翘板3、压电块4、操控按键5和倒L型的出火件6连接在一起成为一个整体,我们称之为此打火机的机芯模块3456,见图9‐1、9‐2。采用这样的结构,就能大大提高打火机的整机装配效率。
在打火机的装配过程中,下压机芯模块3456,模块中的倒L型的出火件6的一对斜向上凸起62跟随整体模块下移,燃气箱组件1上部内侧面受斜向上凸起62挤压,会微微向两侧外张开,倒L型的出火件6下压到位后,燃气箱组件1顶部两侧面会自动回弹复位,这时燃气箱组件1上部两侧面的一对定位孔11正好扣住一对斜向上凸起62,使燃气箱组件1与机芯模块3456牢固地联为一体,最后把气化炉组件2从倒L型的出火件6的出火口63处插到阀针13上并压紧,完成整机的组装。
出气阀13是免调节型的,该出气阀13在一定的温度下火焰的高度能保持恒定,采用免调节型的出气阀13的燃气箱组件1,比传统的打火机燃气箱组件少了调火环、泡棉、T型铝钉、引流芯铝杯这四个零件,能最大限度的减少整机零部件的个数,使装配过程大大简化, 气化炉组件2的底部密封件的内孔过盈套设在出气阀13的出气针上,它们紧配保持密闭。同时,出气阀也可采用传统的可调节型的出气阀。
气化炉组件2由橡皮塞、橡皮塞固定盖、微孔银片、两孔气化筒体、绝缘高温陶瓷、尖针盖、内金属环、色片、外部钢帽组成,并集成为一个整体,橡皮塞固定盖的作用是防止橡皮塞脱离开气化炉组件,出气针的顶部有倒钩槽,使气化炉组件中的橡皮塞一旦套入,就难以拔出,防止气化炉在使用过程中脱落。
机芯模块的倒L型的出火件6固定卡接在燃气箱组件1的气化炉容纳腔上部,其余零部件则活配地放置在燃气箱组件1的压电块容纳腔内,在点火过程中,压电块4的定件41跟随操控按键5一起向下运动并带动翘板3绕着支点转动,翘起燃气箱组件1上的阀针12,放出燃气,燃气通过气化炉组件2与空气混合;同时压缩压电块4的定件41与动件42中间的蓄能弹簧,蓄能弹簧压缩到特定的位置,弹簧脱钩反弹,带动击头撞击压电陶瓷,产生高压,引发电火花,完成点火;在点火的瞬间,压电块4的第一电极43抵靠由导电材料制成的倒L型的出火件6的导电凸起61,第二电极45也正好接近由导电材料制成的翘板3,距离间隙满足空气击穿的条件,使倒L型的出火件6与翘板3都成了压电块4高压放电回路的组成部分,组成了一个高压电子从压电块4中部的第二电极45——导电翘板3——阀针12——气化炉针尖——气化炉的钢帽——出火件6——压电块4的第一电极43的放电回路完成点火,点燃通过气化炉组件2中的燃气。
实施例2
在本实施例中,我们只对直冲气化炉组件与防风气化炉组件做个对比,打火机的其余部分我们就不赘述。
如图11所示,直冲气化炉组件由橡皮塞107、橡皮塞固定盖108、微孔银片106、两孔气化筒体105、绝缘高温大陶瓷204、尖针盖200组成;
如图11所示,防风气化炉组件则由橡皮塞107、橡皮塞固定盖108、微孔银片106、两孔气化筒体105、绝缘高温小陶瓷104、盲孔尖针盖100、内金属环103、色片102、外部钢帽101组成。
防风气化炉与直冲气化炉组件有三个不同点:
1、尖针盖200、100的外形虽然相同,但内部的构造有一处不同,直冲的尖针盖200中心设有0.5mm左右的通孔220,而防风尖针盖100是没有孔的;
2、绝缘高温陶瓷的外形与燃烧腔的尺寸有所区别,直冲的绝缘高温陶瓷外形与燃烧腔的尺寸一般都比防风的大,如果做的跟防风的一样大,直冲的效果会差很多;
3、直冲与防风气化炉组件下半部分的结构与零件都是一样的,都由橡皮塞107、橡皮塞固定盖108、微孔银片106、两孔气化筒体105组成,只是直冲气化炉上半部用一只大尺寸的绝缘高温大陶瓷204替换小尺寸的绝缘高温小陶瓷104、内金属环103、色片102、外部钢帽101四个零件,所以直冲气化炉的结构更加简洁,成本更加低廉。
装配时,气化炉的橡皮塞107过盈配合套设在燃气箱组件1的出气阀门13的阀针12上,橡皮塞107的内壁与阀针12的外壁气密紧配,所以使用时,拉开出气阀门13的阀针12,燃料气体从阀针12的内孔里释放出来,燃料气体在饱和气压的作用下,经过微孔银片106的微孔节流,燃料气体形成了高速射流,高速射流通过两孔气化筒体105时,在两孔270处产生负压,负压吸进外部的空气,跟燃气进行混合,产生极易爆炸的燃料与空气混合气体,经过压电块4所产生的高压电火花的诱导,引起混合气的爆炸、燃烧。由于压电块4的高压电火花遵循最短路径放电的原则,所以直冲气化炉由小通孔260对直冲的尖针盖200的顶部进行放电,而防风气化炉般由内金属环103的下沿对防风的尖针盖100的顶部进行放电。
实施例3
与实施例1所述打火机不同的是,实施例3所述打火机为明火机,即气体后混合打火。其机身结构与实施例1所述打火机不同在于气化炉部分。实施例3中以恒流阀2’、出气针8和引火弹簧7替换了实施例1中的气化炉部分,在打火时,通过恒流阀2’限流,直接由出气针8释放燃气,在出火件6的出火口燃烧。
配合燃烧,在出气针8与出火件6之间,设有引火弹簧7,以及在机身1的侧壁设有进风口9,用来提供氧气助燃。图12中的翘板3在点火时,通过按压压电块本体定件带动翘板运动,通过杠杆作用撬动另一端的燃气箱组件的出气针8,实现燃气释放。
同时,翘板3自身导电,一端与压电点子4接近,距离间隙满足空气击穿的条件,一端与出气针8接触或接近,点火瞬间成为电子回路的一部分。该过程放电回路为:按压压电块放电(一个高压电子从压电块4中的第二电极45)——出火件——引火弹簧——出气针——翘板——压电块铜片(压电块4的第一电极43)。
所述翘板可以是由导电金属材料制得,如采用金属铁冲压制得;也可通过塑料件电镀获得。考虑到翘板装配时需要少许弹性,优选使用导电塑料注塑件。
图6‐1是本实施例使用的一种出火件6。其出火口63为一圆柱形,且其外端面与出火件顶面的外表面齐平,其内端面突出于出火件顶面的内表面。该突出部分为一部分延伸的圆柱形的一半,即筒状结构的一半。
图8‐1是本实施例使用的一种按键组件。该组件使用了图6‐1所示的出火件6。所述操控 按键5设有两个导向突出部51,出火件设有两个导槽64,该导槽64可容纳操控按键导向突出部51,实现该出火件6与操控按键5插接,并满足操控按键5依托导向突出部51沿着出火件6的导槽64移动。
图9‐3是本实施例使用的一种点火组件。该用点火组件包括操控按键5、带顶面出火口的出火件6和压电块4,所述操控按键5相对出火件6相互连接并能够上下移动,所述压电块4插接于操控按键5带顶面的空腔中。

Claims (40)

  1. 一种电子打火机,所述的电子打火机包括燃气箱组件、翘板、压电块、操控按键、带顶面出火口的出火件;所述燃气箱组件包括带上开口容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别嵌入燃气箱组件中;所述压电块与操控按键插接;其特征在于,所述燃气箱组件顶部设有定位孔,所述出火件的侧面设有定位凸起,所述出火件插入所述燃气箱组件的容纳腔,所述的定位凸起与所述的定位孔嵌合。
  2. 根据权利要求1所述的一种电子打火机,其特征在于,所述出火件侧面设置两个对称的定位凸起,燃气箱组件顶部设有两个对称的定位孔。
  3. 根据权利要求2所述的一种电子打火机,其特征在于,所述出火件为倒L型结构;所述的出火口为中空的圆柱形,其外端面与出火件顶面的外表面齐平,其内端面齐平或突出于出火件顶面的内表面;出火件由导电材料制得并在对应于操控按键的一面设有导电凸起。
  4. 根据权利要求3所述的一种电子打火机,其特征在于,所述出火件构成传递压电块电流的导电件;所述翘板自身导电且与压电块本体定件上一凸条的底部导电部相接或相邻;所述打火机点火瞬间,压电块的一极接触或邻近出火件,另一极接触或邻近翘板,出火件与翘板都构成压电块高压放电回路的组成部分。
  5. 根据权利要求4所述的一种电子打火机,其特征在于,所述操控按键相对出火件可上下移动的相互连接,所述压电块插接于操控按键带顶面的空腔中。
  6. 根据权利要求1‐5所述的打火机,其特征在于,所述操控按键设有至少一个导向突出部,出火件设置有至少一个导槽,该导槽可容纳操控按键导向突出部,实现该出火件与操控按键插接,并满足操控按键依托导向突出部沿着出火件导槽移动。
  7. 根据权利要求6所述的一种电子打火机,其特征在于,所述压电块具有本体定件和可在该定件中移动的动件,所述本体定件的上端插接于操控按键带顶面的空腔中,动件一端插入燃气箱组件的压电块容纳腔。
  8. 根据权利要求7所述的一种电子打火机,其特征在于,所述的打火机包括气化炉;所述的燃气箱组件包括相邻的带上开口的气化炉容纳腔和带上开口的压电块容纳腔,所述的气化炉容纳腔高于压电块容纳腔;气化炉和出火件置入气化炉容纳腔,其中的出火件定 位凸起嵌合于气化炉容纳腔顶部的定位孔,压电块和操控按键置入压电块容纳腔。
  9. 根据权利要求7所述的一种电子打火机,其特征在于,所述的燃气箱组件包括相邻的带上开口的可燃液化气容纳腔和带上开口的压电块容纳腔,所述的可燃液化气容纳腔高于压电块容纳腔;出火件置入可燃液化气容纳腔,其定位凸起嵌合于可燃液化气容纳腔顶部的定位孔,压电块和操控按键置入压电块容纳腔。
  10. 根据权利要求5所述的一种电子打火机,其特征在于,所述的操控按键空腔相对出火件的一面开设一开口槽,所述的空腔用于容纳压电块的本体定件,所述的开口槽用于容纳压电块本体定件上设置的导电凸条,所述的翘板一端接触或邻近导电凸条。
  11. 一种电子打火机用出火件,其特征在于,所述出火件的顶面设置出火口,其侧面设有定位凸起,出火件可插入打火机燃气箱组件的容纳腔,所述的定位凸起用于与容纳腔顶部设置的侧面定位孔嵌合。
  12. 根据权利要求11所述的打火机用出火件,其特征在于,所述出火件定位凸起可以设置一个或多个。
  13. 根据权利要求12所述的打火机用出火件,其特征在于,所述出火件侧面设置两个对称的定位凸起;所述的出火口为中空的圆柱形,其外端面与出火件顶面的外表面齐平,其内端面齐平或突出于出火件顶面的内表面。
  14. 根据权利要求13所述的打火机用出火件,其特征在于,所述出火件为倒L型结构,由导电材料制得。
  15. 根据权利要求14所述的打火机用出火件,其特征在于,所述出火件构成传递压电块电流的导电件,是点火瞬间电子回路的一部分。
  16. 根据权利要求14或15所述的打火机用出火件,其特征在于,所述的电子打火机由燃气箱组件、翘板、压电块、操控按键、出火件构成;所述燃气箱组件包括相邻的带上开口的可燃液化气容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组件中;所述压电块与操控按键插接。
  17. 根据权利要求14或15所述的打火机用出火件,其特征在于,所述的电子打火机由燃气 箱组件、气化炉组件、翘板、压电块、操控按键、出火件构成;所述燃气箱组件包括相邻的带上开口的气化炉容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;气化炉组件、压电块、操控按键与出火件分别置入燃气箱组件中;所述压电块与操控按键插接。
  18. 根据权利要求16所述的打火机用出火件,其特征在于,气化炉容纳腔顶部的两侧面穿设定位孔。
  19. 根据权利要求17所述的打火机用出火件,其特征在于,气化炉容纳腔顶部的两侧面穿设定位孔。
  20. 根据权利要求11至15任一所述的打火机用出火件,其特征在于,所述的出火件相对操控按键的一面设有导电凸起。
  21. 一种电子打火机用按键组件,所述按键组件由操控按键和出火件构成,其特征在于,所述操控按键相对出火件可上下移动的相互连接。
  22. 根据权利要求21所述的打火机用按键组件,其特征在于,所述操控按键设有至少一个导向突出部,出火件设有至少一个导槽,该导槽可容纳操控按键导向突出部,实现该出火件与操控按键插接,并满足操控按键依托导向突出部沿着出火件导槽移动。
  23. 根据权利要求21或22所述的打火机用按键组件,其特征在于,所述操控按键与出火件分别插入所述打火机的燃气箱组件中,燃气箱组件同时也作为打火机机体;所述燃气箱组件的容纳腔顶部侧面设有定位孔,所述出火件的顶面设置出火口,其侧面设有定位凸起,出火件插入燃气箱组件的容纳腔,所述的定位凸起与所述的定位孔嵌合。
  24. 根据权利要求23所述的打火机用按键组件,其特征在于,所述出火件侧面凸起可以设置一个或多个。
  25. 根据权利要求24所述的打火机用按键组件,其特征在于,所述出火件侧面设置两个对称的定位凸起,所述的出火口为中空圆柱形,其外端面与出火件顶面的外表面齐平、其内端面齐平或突出于出火件顶面的内表面。
  26. 根据权利要求22或25所述的打火机用按键组件,其特征在于,所述出火件为倒L型 结构,由导电材料制得。
  27. 根据权利要求26所述的打火机用按键组件,其特征在于,所述的打火机包括燃气箱组件、气化炉组件、翘板、压电块;所述燃气箱组件包括相邻的带上开口的气化炉容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组件中。
  28. 根据权利要求26所述的打火机用按键组件,其特征在于,所述的打火机包括燃气箱组件、翘板、压电块;所述燃气箱组件包括相邻的带上开口的可燃液化气容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组件中。
  29. 根据权利要求21至25任一所述的打火机用按键组件,其特征在于,所述的出火件插入燃气箱组件容纳腔的部分设有导电凸起。
  30. 根据权利要求29所述的打火机用按键组件,其特征在于,所述的操控按键为有顶面的带容纳腔按键,所述的容纳腔相对出火件的面开设一开口槽,所述的容纳腔用于容纳压电块的上端,所述的开口槽用于容纳压电块上端设置的凸条。
  31. 一种电子打火机用点火组件,包括操控按键、带顶面出火口的出火件和压电块,其特征在于,所述操控按键相对出火件可上下移动的相互连接,所述压电块插接于操控按键带顶面的空腔中。
  32. 根据权利要求31所述的打火机用点火组件,其特征在于,所述压电块具有本体定件和可在定件中移动的动件,所述压电块本体定件的上端插接于操控按键带顶面的空腔中。
  33. 根据权利要求31或32所述的打火机用点火组件,其特征在于,所述操控按键设有至少一个导向突出部,出火件设置有至少一个导槽,该导槽可容纳操控按键导向突出部,实现该出火件与操控按键插接,并满足操控按键依托导向突出部沿着出火件导槽移动。
  34. 根据权利要求33所述的打火机用点火组件,其特征在于,所述出火件为倒L型结构,其侧面设置一个或多个定位凸起,所述的出火件由导电材料制得并在对应于操控按键的一面设有导电凸起。
  35. 根据权利要求34所述的打火机用点火组件,其特征在于,所述出火件侧面设置两个对称的定位凸起,所述的出火口为中空圆柱形,其外端面与出火件顶面的外表面齐平,其内端面齐平或突出于出火件顶面的内表面。
  36. 根据权利要求35所述的打火机用点火组件,其特征在于,所述的打火机包括燃气箱组件、气化炉组件、翘板、压电块;所述燃气箱组件包括相邻的带上开口的气化炉容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组件中。
  37. 根据权利要求35所述的打火机用点火组件,其特征在于,所述的打火机包括燃气箱组件、翘板、压电块;所述燃气箱组件包括相邻的带上开口的可燃液化气容纳腔和带上开口的压电块容纳腔;燃气箱组件同时也作为打火机机体;压电块、操控按键与出火件分别置入燃气箱组件中。
  38. 根据权利要求36或37所述的打火机用点火组件,其特征在于,所述燃气箱组件的容纳腔顶部侧面设有定位孔,所述出火件的顶面设置出火口,其侧面设有定位凸起,出火件插入燃气箱组件的容纳腔,所述的定位凸起与所述的定位孔嵌合。
  39. 根据权利要求38所述的打火机用点火组件,其特征在于,所述出火件构成传递压电块电流的导电件;所述翘板自身导电且与压电块本体定件上一凸条的底部导电部相接或相邻。
  40. 根据权利要求39所述的打火机用点火组件,其特征在于,所述打火机点火瞬间,压电块的一极接触或邻近出火件,另一极接触翘板,出火件与翘板都构成压电块高压放电回路的组成部分。
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