Modular closed combustion cartridge and ignition system
Modular closed-cell combustion cartridges and integrated ignition systems solve the pollution and safety problems of traditional smoking methods by sealing combustible materials in a flame-retardant cartridge and combining them with a multi-functional mouthpiece piston and ignition system, thus achieving an environmentally friendly and efficient smoking method.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 加里·布莱曼
- Filing Date
- 2024-08-30
- Publication Date
- 2026-06-02
AI Technical Summary
Traditional smoking methods have problems such as pollution, tools getting dirty easily, the need for frequent cleaning and material preparation, and the risk of fire caused by flying sparks.
It adopts a modular closed combustion cartridge and an integrated ignition system, using a flame-resistant or non-flammable cylinder to seal the combustible material, combined with a multi-functional nozzle piston and ignition system to achieve rapid ignition, self-extinguishing and heat extraction.
It reduces the dispersion of smoke and sparks, saves combustible materials, simplifies the use process, and provides an environmentally friendly and efficient way to smoke.
Smart Images

Figure CN122138766A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of smoking, atomizing, and thermal extraction devices. More specifically, this invention relates to the field of pre-filled or refillable tobacco cartridges for smoking or thermally extracting biomass. Background Technology
[0002] As we know, almost every culture has used smoking for various purposes long before recorded history. It is a simple and direct process and one of the most effective and rapid routes of administration for many active compounds.
[0003] To smoke, one simply ignites plant matter or other material to be inhaled and intentionally inhales the byproducts of incomplete combustion. Most smoking methods either use consumable paper or wrappings that also burn during consumption, or use a tool that is generally non-flammable or fire-resistant, such as a pipe, to inhale the material of choice.
[0004] These methods all have some drawbacks, including additional pollution from the smoke generated by the packaging, which usually does not contain any beneficial substances.
[0005] Reusable tools also have many drawbacks, as they get dirty quickly and require frequent cleaning. In addition, there is the need to prepare and process plant materials for preparation and filling, and further effort is required to scrape off unburned residue.
[0006] The modular closed-loop combustion cartridge and integrated ignition system is a novel hybrid device that improves and develops smoking technology by combining simplified modern technology, thereby addressing many of the inherent shortcomings of traditional combustion-powered smoking methods. Summary of the Invention
[0007] Therefore, modular closed-cell combustion cartridges and integrated ignition systems offer an elegant solution to the shortcomings of many other traditional smoking methods and tools.
[0008] Modular closed-cell combustion cartridges and integrated ignition systems also address many of the drawbacks of traditional smoking methods. With the adoption of modular closed-cell combustion cartridges, pre-filled and / or self-filling reusable, recyclable, and / or disposable combustion cartridges are now available for purchase.
[0009] These cartridges offer many additional advantages compared to paper, wrappers, and other traditional smoking tools.
[0010] These advantages include, but are not limited to: completely enclosing the combustion within a non-flammable or flame-retardant cartridge; the combustion quickly extinguishing itself after inhalation, thus preserving any uninhaled combustible material; and preventing stray sparks and embers from causing accidental fires.
[0011] Compared to almost all other smoking methods, this enclosed combustion cartridge configuration significantly reduces the likelihood of stray sparks escaping from the smoking device, thus minimizing the possibility of problems such as accidental fires.
[0012] Furthermore, due to the nature of its design and construction, the smoke cartridge causes the enclosed material to self-extinguish in a very short time, such as about 2 seconds or less.
[0013] This resulted in significant savings in remaining combustible materials and reduced unnecessary smoke and localized air pollution.
[0014] The system eliminates the need for paper or other types of flammable packaging, while giving users the ability or choice to use and enjoy clean tools every time they choose to smoke.
[0015] With this compatible integrated ignition system, quick smoking becomes easier, as you simply activate the ignition and inhale for a puff. The process feels familiar and intuitive, as it's similar to using a regular e-cigarette pen or cartridge. No igniter is required.
[0016] A key advantage of such devices is that the sealed combustible material self-extinguishes within seconds due to insufficient oxygen after the user stops inhaling or pumping. This functionality allows for material retention because minimal material is consumed through a continuous and generally undesirable smoldering or burning process when the device or product is not being actively used to generate inhalable compounds. This allows the material to be preserved for consumption or use by the operator at any desired time.
[0017] The practicality of the heat-resistant cartridge design also provides an alternative to or simulation of smoking. Because the cartridge is heat-resistant, coupling it to various low-intensity heat sources, rather than to the various high-intensity heat sources used for ignition, allows the contents of the cartridge to be thermally extracted rather than burned. Attached Figure Description
[0018] Various examples of embodiments of the systems, apparatus, and methods according to the present invention will be described in detail with reference to the following accompanying drawings, wherein: Figure 1 This is a schematic diagram of one or more examples of modular closed-cell combustion cartridges and integrated ignition systems, showing an example of a complete component and an example of a cartridge.
[0019] Figure 2 is Figure 1 Another schematic diagram showing one or more examples of the smoke cartridge design.
[0020] Figure 3 This is a schematic diagram of one or more alternative examples of a multi-functional nozzle design.
[0021] Figure 4 Images are one or more alternative examples or views of a multi-functional nozzle design.
[0022] Figure 5 Images are images of one or more alternative examples or views of a multi-functional mouthpiece design and cartridge assembly.
[0023] Figure 6 This is a schematic diagram of one or more examples of an integrated ignition system.
[0024] Figure 7 yes Figure 1 A schematic diagram of one or more examples of the cartridge assembly shown.
[0025] Figure 8 yes Figure 1 Another schematic diagram of one or more examples of the e-cigarette cartridge design shown illustrates a cartridge in a partially consumed state.
[0026] Figure 9 yes Figure 1 Another schematic diagram of one or more examples of the shown cartridge design illustrates a cartridge with a temperature indicator cap as an alternative to an integrated ignition system.
[0027] Figure 10 yes Figure 1 Another schematic diagram of one or more examples of smoke cartridge designs shown, in which a flame is used as the ignition source.
[0028] Figure 11 These are images of exploded views of one or more examples of modular enclosed combustion smoke bombs and integrated ignition systems.
[0029] Figure 12 The image shows a cylinder and igniter with a pre-fabricated product containing material for smoking.
[0030] It should be understood that the accompanying drawings are not necessarily drawn to scale. In some cases, details that are not necessary for understanding the invention or that make other details difficult to identify may have been omitted. Of course, it should be understood that the invention is not necessarily limited to the specific embodiments shown herein. Detailed Implementation
[0031] A more detailed description of the modular enclosed combustion smoke cartridge and integrated ignition system 100 is provided with reference to the accompanying drawings.
[0032] The modular, closed-loop combustion cartridge and ignition system 100 comprises a non-combustible and / or flame-retardant cartridge 20 for housing combustible inhalation material 420, a mouthpiece piston 10, and an associated ignition system 30. In some examples, a mouthpiece may be provided that is detachable or has one or more detachable components, such as a filter, a cooling assembly, or a flavoring and / or humidity control element incorporated into the mouthpiece piston 10 or other components of the non-combustible cartridge.
[0033] The modular closed-cell combustion cartridge and integrated ignition system 100 can be provided as a complete device pre-filled with combustible material 420, ready to be used as a fully assembled and sealed system with an integrated ignition module 30 installed; or as a package containing multiple empty or pre-filled sealed cartridges 70 with or without the ignition module 30, and / or with built-in or optional energy sources, such as, but not limited to, batteries.
[0034] The system allows for selective reuse of the ignition module 30 and other components and / or the entire cartridge 70 to reduce waste and cost per use.
[0035] In one embodiment, the modular closed combustion cartridge and integrated ignition system 100 are assembled with a mouthpiece piston 10 and an ignition module 30. The mouthpiece piston 10 is connected to the first end of the cylinder 20 and serves as a plunger when needed. The ignition module 30 is connected to the second end of the cylinder 20.
[0036] The nozzle piston 10 is an ingenious component with a seemingly simple but highly engineered multi-functional geometry.
[0037] It is precisely because of this engineered geometry that the nozzle piston 10 can perform a variety of different tasks while still being built or manufactured as a single unit to simplify production, and can also be composed of multiple parts if needed for any reason.
[0038] High versatility is achieved through a specific geometry described below, integrating the following functions: a mouthpiece, a propellant plunger for combustible material 420, a filter and / or screen, an additional filter housing, a cylinder seal and closure at one end of the cartridge 70, a smoke and / or vapor cooler and regulator, and a location for a humidity control component compartment to maintain optimal moisture content of the combustible material 23. Furthermore, it is the actuation of the mouthpiece piston 10 that breaks the seal at the end of the cartridge 70, thereby establishing a fluid channel for the flow of smoke and / or thermally extracted vapor, allowing it to exit through orifices and channels provided therein.
[0039] The key component of the suction piston 10 is located at the interface between the suction piston 10 and the cylinder 20. This component may take the form of an enlarged diameter and / or a matching tapered flange 15, or other structures that can engage with the cylinder 20 to form a seal between them.
[0040] The tapered flange 15 has multiple functions. First, the tapered flange 15 is used to hold the nozzle piston 10 within the cylinder 20.
[0041] Furthermore, the tapered flange has a continuous circumferential surface 18 between the small-diameter end of the hole 16 and the tapered flange 15 and the transition connection between the cylinder or other geometry 12. This continuous circumferential surface 18 can then mate with a corresponding continuous tapered surface or other suitable mating geometry surface on the inner surface of the cylinder 21 to form a seal.
[0042] Additionally, the tapered flange 15 includes holes, grooves, or other shaped openings 18, which, due to the incorporation of multiple small channels 16, 17, serve as filter elements. These small channels 16, 17 also act as channels or outlets for smoke and / or vapor to exit the cylinder 20 and enter the mouthpiece piston 10, then pass through the mouthpiece piston 10 and finally exit through the outlet port 11.
[0043] The aforementioned elongated channels also serve as a means of cooling, regulating, and further filtering particles and other unpleasant non-particulate components or elements. When an additional filter element 19, which may contain activated carbon, is installed, some or all of these components or elements can be removed from the generated smoke and / or vapor to help provide a more pleasant experience.
[0044] The nozzle piston 10 also serves as a means of delivering the combustible material 420 contained in the cylinder 20 to the ignition module 30 on demand, so as to quickly and reliably ignite or re-ignite the combustible material 420. This action is initiated by the user whenever the gap between the combustible material 420 and the surface of the igniter 32 of the ignition module 30 becomes too large to trigger ignition quickly or reliably.
[0045] The end of the suction nozzle piston 12 may also have an engineered non-planar geometry, such as, but not limited to, ridges, pins, or other protrusions, to agitate or mix the combustible suction material 420 it contacts. This may be very useful for a variety of reasons, such as, but not limited to, to allow unburned material to better contact the igniter 32 of the ignition module 30.
[0046] The nozzle piston also has an engineered external actuation surface geometry 12 designed to properly and precisely mate with the cylinder 20 to achieve controllable telescopic and / or threaded actuation and / or movement between the nozzle piston 10 and the cylinder 20. If the external actuation surface geometry 12 of the nozzle piston is threaded, the corresponding mating surface of the cylinder 20 will have a corresponding mating geometry 24 for proper mating with the nozzle piston 10 to achieve the desired actuation and form or incorporate a seal of any type, degree, or method for product storage and / or use, while allowing smoke and / or vapor to flow appropriately as needed.
[0047] The adaptive actuation geometry 12 is designed to minimize unwanted leakage of air, smoke, and / or vapor between the nozzle piston 10 and the cylinder 20 and / or the external environment. This geometry 12 may include various materials and / or seals as needed to achieve a reasonably tight fit to minimize leakage, or the mating surfaces may simply have sufficiently tight clearances and precise fits to achieve the same purpose without the need for additional seals or materials.
[0048] In one embodiment, when the gap between the ignition module 30 and the combustible material 420 becomes larger than desired, the user simply presses the nozzle piston 10 against the ignition module 30. This action propels the remaining unburned combustible material 420, subsequently filling the gap, thereby reliably re-igniting from the ignition module 30.
[0049] In another embodiment, the user can twist the nozzle piston 10 relative to the cylinder 20 to make a threaded connection, thereby actuating and advancing the nozzle piston 10 in the direction in which the nozzle piston 10 and the remaining combustible absorbent material 420 are delivered to the ignition module 30, so as to bring it back into a suitable distance range for reignition.
[0050] The nozzle piston 10 and / or cylinder 20 may also include one or more seals 13. These seals may be used for a variety of purposes, including locking or securing the position of the nozzle piston 10 relative to the cylinder 20 before use; providing a more complete and / or more durable seal to preserve the stored combustible absorbent material 420 before consumption; preventing the nozzle piston 10 from exerting excessive or concentrated force on the cylinder 20 when retracted; and serving as a tamper-proof seal or authenticity seal.
[0051] The cylinder 20 can be made of any suitable material, such as, but not limited to, glass, metal, ceramic, wood, or other cellulose materials. The cylinder 20 is configured to have a specific preset mating geometry, such as a thread 23 or other geometry capable of engaging with a thread, a tapered surface 21, and / or some other structure, such as, but not limited to, a shoulder, a boss, or any other suitable structure or geometry capable of retaining the nozzle piston 10 within the cylinder 20.
[0052] In one embodiment, the cylinder 20 is designed to have a shape suitable for on-demand propulsion of the nozzle piston 10 and the combustible absorbent material 420 subsequently propulsed by the nozzle piston 10 via actuation coupling.
[0053] On the side opposite to the nozzle piston 10, the open end of the cylinder 20 may be sealed 22 by any suitable means, such as foil sealing, combustible cellophane, cone-to-cone sealing, any type of plug and / or wax and / or another environmentally friendly sealant and / or an O-ring combined with a component to facilitate a seal between the cylinder 20, the aforementioned components and the O-ring, silicone caps or other similar gaskets or sealing components as closures attached to the cylinder 20 to preserve the volatile components of the combustible absorbent material 420 at the time of manufacture after filling and packaging until it is received by the end user or installed and sealed by the end user at any time.
[0054] One or more examples of the enclosed incendiary smoke cartridge 70 or the heat-resistant shell or cylinder 20 may include or be made of any suitable material, such as glass, ceramic, wood, metal, cardboard, etc., having a shape suitable for the purposes of this disclosure.
[0055] Another embodiment of the cartridge 20 assembly can be shaped to accommodate a pre-manufactured smoking article 42, such as, but not limited to, cigarettes, chimneys, etc., while maintaining a similar coupling capability with the integrated ignition system igniter 30.
[0056] The above embodiments offer a number of benefits to those who own or wish to use common smoking articles 42, as the modular enclosed combustion cartridge and integrated ignition system 100 provide many of the aforementioned benefits, including on-demand windproof ignition and rapid extinguishing of the combustible material 420 contained in the smoking article 42, as well as control of combustion and scattered sparks and ash.
[0057] Many advantages are achieved when all combustible materials are contained within a heat-resistant shell. This configuration or design of the fumigation device significantly reduces various risks, including but not limited to secondhand smoke, smoldering, sparks, embers, and other potentially problematic or damaging substances (such as ash or embers) that could cause burns and / or ignite an accidental fire.
[0058] Suitable seals of any suitable material can be added at positions 24 and 25 of the cylinder 20 to assist or enhance the ability of the nozzle piston 10 to form a suitable seal or connection with the cylinder 20.
[0059] In addition, by enclosing all combustible absorbent material 420 within the heat-resistant outer shell or cylinder 20, the amount of combustible absorbent material 420 that would be wasted due to smoldering is greatly reduced; in other words, when the device and therefore the material are idle and / or not actively drawn in.
[0060] This design significantly reduces the waste of the aforementioned combustible absorbent material 420, thereby improving the operational efficiency and effectiveness of the delivery system compared to other smoking methods.
[0061] The ignition module 30 provides a simple and quick method for enabling users to ignite on demand and subsequently reignite to initiate combustion of the combustible material 420 contained in the cylinder 20.
[0062] Non-limiting examples of suitable ignition systems are described below. In one embodiment, the device utilizes an electrical element 32, such as, but not limited to, kanthal heating wire, nickel-chromium wire, or any filament of any design or configuration, as a means of converting electrical energy and generating sufficient heat intensity to ignite a combustible substance. The element 32 may have any suitable shape or size to effectively initiate combustion and / or facilitate heat extraction.
[0063] In another embodiment, the device utilizes a high-intensity light source, such as, but not limited to, lasers, halogen bulbs, light-emitting diodes (LEDs), and / or any other light source with sufficient intensity to ignite combustion. In this configuration, the cylinder 20 and / or ignition system 30 may integrate or add lenses or other optical features or components to focus the light from the light source to a level suitable for ignition or thermal extraction.
[0064] In another embodiment, the device utilizes a high-voltage power supply to generate an electric arc or plasma to directly or indirectly provide the heat and temperature required to initiate combustion and / or thermally extract the material within the cartridge.
[0065] It should be noted that the ignition system 30 does not have to be electronic. For example, the ignition system could also be a flame, embers, or slow-burning charcoal.
[0066] In another embodiment or example, ignition can be powered using a 510 threaded connection and / or a magnetically coupled DC (Direct Current) connection platform, which is typically used for many other purposes and generally consists of two parts (excluding the 510 battery). The heating and / or ignition module 30 can utilize the various parts of the connection geometry of the mating surfaces of the ignition modules 30 and 35 as a means of establishing an electrically continuous path to connect and operate element 32. This mating geometry 34 can also be configured to connect to a more standardized 510 battery, regardless of whether the battery is equipped with a button for switching controls.
[0067] The ignition module 30 can also be used as a separate or independent component for igniting common combustible materials 42 and any other purpose deemed suitable for the portable modular igniter 30.
[0068] Non-ignition applications of the ignition system 30 are also considered within the scope of this disclosure, particularly when coupled to common power sources or portable batteries, as there are a wide range of applications suitable for on-demand hot surfaces capable of reaching ignition and / or scorching temperatures.
[0069] This configuration can be used to light cigars and cigarettes, as well as cigarettes, pipes, bowls, and virtually any other combustible material of any imaginable type or configuration.
[0070] It is also anticipated that any suitable power source can be used, including but not limited to capacitors and / or compatible connection methods, including but not limited to magnetic connectors, push-buttons, etc., to couple the ignition module 30 to a suitable power source as needed.
[0071] The mouthpiece piston and cartridge assembly or cartridge 70 can be connected to the ignition module 30 via friction-fit O-ring connection 33, magnetic interface, thread, adhesive, press fit or heat shrink fit or any other suitable component connection method to ensure safe and consistent function of the components.
[0072] The entire modular, enclosed combustion cartridge and integrated ignition system 100 can be assembled, including an ignition module 30, filled with selected consumable materials 420, and coupled or disconnected from a battery or other energy source, and then sold in a fully ready-to-use state.
[0073] There are various methods for initiating combustion or thermal extraction within the device, including but not limited to pressing a button and suction, by which the user reduces the relative air pressure above the outlet hole 11 on the device's suction nozzle piston 10, suctioning the device only to activate the ignition module 30, shaking, twisting, or any other feasible method from the user to convey to the device that ignition is now required.
[0074] In challenging situations, such as when the ignition module 30 and / or its power supply fails or is unable to operate for any reason, it can still be used by removing the mouthpiece piston and cylinder assembly or the cartridge 70 from the ignition module 30 and directly igniting the combustible material 420 using a conventional match, lighter, or any other ignition source.
[0075] After ignition, component 70 is reconnected to ignition module 30. Its function is to prevent stray sparks or embers from escaping from the cartridge 70, and also to use the battery and ignition module 30 as a handle.
[0076] The heat extraction capability of the heat-resistant cartridge 70 can be further extended or realized by attaching a compatible temperature indicator cap 419 to the open end of the cartridge 70 and subsequently applying sufficient heat from any suitable heat source to achieve thermal activation of the temperature indicator cap 419. Once the temperature indicator cap 419 receives sufficient heat energy and indicates that the heat extraction temperature has been reached, the cartridge 70 and the temperature indicator cap assembly 421 can be used in a manner similar to that used with the modular igniter 30 for smoking, where the residual heat of the temperature indicator cap 419 and the now heated cartridge 70 facilitate the heat extraction of the active compounds contained in the combustible material 420 during inhalation or puffing, rather than combustion.
[0077] During use, the user fills or purchases a modular, closed-cell combustion cartridge 70 pre-filled with the desired combustible material 420. If not already connected, the cartridge 70 is secured to the ignition module 30, and the integrated ignition system is activated to heat or ignite the material contained within the cartridge. The user can simultaneously or subsequently inhale through the mouthpiece to extract or inhale smoke and / or vapor. When the user no longer expects any further output from the cartridge 70, it can be detached from the ignition module 30 and discarded, or residual material can be removed, the cartridge cleaned, and / or refilled for reuse.
[0078] What is unique is that the device disclosed in this article includes: (i) Combining flammable and non-flammable heating methods into a single system, and, (ii) Using flame-resistant or non-flammable cartridges in systems that utilize heating to ignite the combustible material within the cartridge.
[0079] (iii) A design in which the nozzle has multiple functions, including the ability to propel combustible material as needed to achieve reliable reignition.
[0080] (iv) A combination of a smoke cartridge, a combustible inhalation material, a heating and / or ignition source, and a method of sealing the components together and selectively initiating combustion and / or thermal extraction as needed.
[0081] (v) Therefore, a concept for using minimally processed natural herbs or flowers is disclosed. The cartridge and mouthpiece piston assembly or cartridge 70 can be pre-filled with various types and varieties of herbs or flowers, concentrates, and other materials suitable for smoking and / or thermal extraction. The device can be filled at the production end and airtightly sealed during filling and packaging to maintain freshness before consumer use.
[0082] One or more advantages are apparent from the apparatus described herein. Examples include, but are not limited to: • Able to use dried flowers and / or biomass • Pre-filling and / or user-filling • Compact •Spill-proof / Splash-free • Can be carried immediately after use •Environmental friendly • 100% recyclable • Customizable glass cartridges / co-branded products • Functionality is achieved without plastic. • No fossil fuels required • One-handed operation • Rechargeable • No igniter required •Protective of wind and rain / wind • Made of glass, allowing users to view the amount used / remaining. • Easy to use • Simple design As used herein, the terms “about,” “approximately,” “substantially,” and similar terms are intended to have a broad meaning consistent with the conventional and accepted usage of those skilled in the art to which the subject matter of this disclosure pertains. Those skilled in the art who examine this disclosure will understand that these terms are intended to allow for the description of certain features described and claimed, without limiting the scope of these features to the precise numerical ranges provided. Therefore, these terms should be interpreted as indicating that non-substantial or irrelevant modifications or alterations to the described and claimed subject matter are still considered to be included within the scope of the invention as set forth in the appended claims.
[0083] It should be noted that references to relative positions (such as "top" and "bottom") in this specification are used only to identify the orientation of the individual components shown in the figures. It should be recognized that the orientation of a particular component may vary significantly depending on the application in which it is used.
[0084] For the purposes of this disclosure, the term "coupled" refers to two components being directly or indirectly connected to each other. Such a connection can be fixed or movable. This connection can be achieved by two components, or by two components integrally formed with any additional intermediate component as a single unit, or by two components connected to each other with any additional intermediate component. Such a connection can be permanent, detachable, or releasable.
[0085] It is also important to note that the construction and arrangement of the systems, methods, and apparatuses shown in the various examples of the embodiments are illustrative only. Although only a few embodiments are described in detail in this disclosure, those skilled in the art will readily understand that many modifications can be made (e.g., variations in the size, dimensions, structure, shape and proportions, parameter values, mounting arrangements, use of materials, color, orientation, etc. of various elements) without substantially departing from the novel teachings and advantages of the subject matter. For example, an element shown as integrally formed may be composed of multiple parts, or an element shown as multiple parts may be integrally formed; the operation of an interface may be reversed or otherwise varied; the structure of the system and / or the length or width of components or connectors or other elements may be varied; the nature or number of adjustment positions provided between elements may be varied (e.g., by varying the number of engagement slots, the size of the engagement slots, or the type of engagement). The order or sequence of any process or method steps may be varied or reordered according to alternative embodiments. Other substitutions, modifications, alterations, and omissions may be made to the design, operating conditions, and arrangements of the various examples of the embodiments without departing from the spirit or scope of the invention.
[0086] While the invention has been described with reference to examples of the embodiments described above, various alternatives, modifications, variations, improvements, and / or substantial equivalents, whether known or currently foreseeable, will likely be apparent to those skilled in the art. Therefore, the above-described examples of embodiments of the invention are intended to be illustrative rather than restrictive. Various changes may be made without departing from the spirit or scope of the invention. Thus, the invention is intended to cover all known or earlier developed alternatives, modifications, variations, improvements, and / or substantial equivalents.
[0087] The technical effects and problems described in this specification are exemplary and not limiting. It should be noted that the embodiments described in this specification may have other technical effects and can solve other technical problems.
Claims
1. A cartridge system for a smoking or atomizing device, characterized in that, include: Heating element; The cartridge chamber is used to contain combustible inhalation material; The cartridge chamber is capable of withstanding the temperature generated by the combustion of plant matter. Furthermore, the heating element is capable of direct contact with the material located within the cartridge chamber.
2. The cartridge system according to claim 1, characterized in that, The cartridge chamber is made of a material capable of withstanding temperatures of at least 450 degrees Fahrenheit.
3. The cartridge system according to claim 1, characterized in that, The heating element is integrally connected to the cartridge chamber.
4. The cartridge system according to claim 1, characterized in that, The heating element is located inside the cartridge chamber.
5. The cartridge system according to claim 1, characterized in that, The heating element is capable of generating temperatures from 200 degrees Fahrenheit to 500 degrees Fahrenheit.
6. The cartridge system according to claim 1, characterized in that, It also includes a mouthpiece connected to the cartridge chamber.
7. The cartridge system according to claim 6, characterized in that, The mouthpiece includes one or more holes that allow air to flow into the cartridge chamber.
8. A cartridge system for a smoking or heat extraction device, characterized in that, include: The cartridge chamber is used to contain combustible inhalation material; A mouthpiece movably connected to the cartridge cavity; The mouthpiece can be pushed into the cartridge chamber.
9. The cartridge system according to claim 8, characterized in that, The mouthpiece includes one or more holes that allow air to flow into the cartridge chamber.
10. The cartridge system according to claim 9, characterized in that, The one or more holes are located on the tapered portion at the bottom of the nozzle.
11. The cartridge system according to claim 8, characterized in that, The mouthpiece is connected to the cartridge chamber via an interference fit.
12. The cartridge system according to claim 8, characterized in that, The bottom of the suction nozzle includes an outwardly tapered structure.
13. The cartridge system according to claim 12, characterized in that, The upper part of the chamber of the cigarette cartridge includes an inwardly tapered structure.
14. The cartridge system according to claim 13, characterized in that, The angle of the outward conical structure at the bottom of the mouthpiece can be matched with the angle of the inward conical structure at the top of the cartridge chamber.
15. The cartridge system according to claim 13, characterized in that, The outward conical structure at the bottom of the mouthpiece cooperates with the inward conical structure at the top of the chamber to seal the upper part of the cartridge chamber.
16. The cartridge system according to claim 8, characterized in that, The mouthpiece can be slidably pushed into the interior of the cartridge chamber.
17. The cartridge system according to claim 16, characterized in that, The nozzle includes one or more external ridges.
18. The cartridge system according to claim 17, characterized in that, The dimensions of the one or more external ridges are designed to contact the inner wall of the cartridge chamber.
19. The cartridge system according to claim 18, characterized in that, The one or more external ridges allow the nozzle to be intermittently advanced into the cavity.
20. The cartridge system according to claim 8, characterized in that, The bottom of the mouthpiece contains an agitation assembly for stirring the combustible material inside the cartridge chamber.
21. The cartridge system according to claim 20, characterized in that, The agitation assembly includes one or more barbs, wires, ridges, or protrusions.
22. The cartridge system according to claim 20, characterized in that, The mouthpiece is rotatable relative to the cartridge chamber.
23. The cartridge system according to claim 8, characterized in that, The suction nozzle is a cylindrical structure containing external threads; The cartridge chamber includes an internal thread capable of receiving the external thread of the mouthpiece; Furthermore, by rotating one or more of the cartridge chamber or the mouthpiece, the mouthpiece is pushed into the cartridge chamber.
24. A mouthpiece for a smoking or heat-extraction cartridge system, characterized in that, include: An outlet orifice for the outflow of combustion or atomized products; The outlet hole is spirally extended from the cartridge chamber end of the mouthpiece to the distal end of the mouthpiece.
25. The suction nozzle device according to claim 24, characterized in that, The spiral outlet hole is at least partially located in a spiral protrusion extending along the outer surface of the nozzle.
26. The suction nozzle device according to claim 25, characterized in that, The spiral protrusions form the threaded portion of the suction nozzle.
27. The suction nozzle device according to claim 26, characterized in that, The threaded portion of the mouthpiece mates with the internal threaded portion inside the cartridge chamber.
28. The suction nozzle device according to claim 27, characterized in that, The mouthpiece can be pushed into the cartridge chamber by rotating the mouthpiece, the cartridge chamber, or both.
29. A mouthpiece for a smoking or heat-extraction cartridge system, characterized in that, include: Agitation assembly located at the bottom of the suction nozzle.
30. The suction nozzle device according to claim 29, characterized in that, The mouthpiece is connected to a cartridge chamber that can contain combustible material, and the agitation component is capable of agitating the combustible material.
31. A cartridge system for a smoking or heat extraction device, characterized in that, include: The cartridge chamber is used to contain combustible inhalation material; The mouthpiece is connected to the cartridge chamber; The non-mouthpiece side of the cartridge chamber is open. Furthermore, the non-mouthlet side of the cartridge chamber can receive a flame, thereby causing the combustible inhalation material to burn.
32. A cartridge system for a smoking or heat extraction device, characterized in that, include: The cartridge chamber is used to contain combustible inhalation material; A mouthpiece movably connected to the cartridge chamber; The mouthpiece can be pushed into the interior of the cartridge chamber; A breakable seal used to seal the upper part of the cartridge chamber; When the upper part of the cartridge chamber is sealed, the cartridge system is in a pre-use state. The ruptureable seal is destroyed as it is propelled into the cartridge chamber through the mouthpiece.
33. The cartridge system according to claim 32, characterized in that, When the cartridge system is in the pre-use state, the mouthpiece is located inside the cartridge chamber.
34. The cartridge system according to claim 32, characterized in that, The mouthpiece includes one or more holes that allow air to flow into the cartridge chamber.
35. The cartridge system according to claim 34, characterized in that, When the cartridge system is in a pre-use state, one or more holes in the mouthpiece are sealed.
36. The cartridge system according to claim 35, characterized in that, When the cartridge system is in a pre-use state, one or more holes in the mouthpiece are sealed by an inwardly tapered portion at the upper part of the cartridge chamber.
37. The cartridge system according to claim 35, characterized in that, When the cartridge system is in a pre-use state, one or more holes in the mouthpiece are sealed by the ruptureable seal.
38. The cartridge system according to claim 32, characterized in that, The mouthpiece includes an outlet hole extending between the proximal and distal ends of the mouthpiece, and wherein, when the cartridge system is in a pre-use state, the proximal end of the outlet hole is sealed by an outlet hole breakable seal.
39. The cartridge system according to claim 38, characterized in that, The ruptureable seal at the outlet hole is destroyed as it is propelled into the cartridge chamber through the mouthpiece.
40. The cartridge system according to claim 32, characterized in that, When the fracturing seal is damaged, the cartridge system is not in a pre-use state.
41. The cartridge system according to claim 32, characterized in that, When the cartridge system is in a pre-use state, a portion of the mouthpiece extends above the cartridge chamber, and the mouthpiece portion extending above the cartridge chamber includes an external seal.
42. The cartridge system according to claim 41, characterized in that, The external seal is used to seal the uppermost part of the cartridge chamber.
43. The cartridge system according to claim 41, characterized in that, The external seal is used to seal the space between the outer surface of the mouthpiece and the inner wall of the cartridge chamber.
44. The cartridge system according to claim 41, characterized in that, The outer surface of the nozzle includes a channel for receiving the external seal.
45. A cartridge system for a smoking or heat extraction device, characterized in that, include: The cartridge chamber is used to contain combustible inhalation material; A mouthpiece movably connected to the cartridge chamber; The mouthpiece can be pushed into the interior of the cartridge chamber; Furthermore, the suction nozzle is made of a material capable of indicating the threshold temperature reached.
46. The cartridge system according to claim 45, characterized in that, The indicator is a color change.
47. The cartridge system according to claim 45, characterized in that, The indication is noise.
48. The cartridge system according to claim 8, characterized in that, The nozzle includes an outlet orifice extending between the proximal and distal ends of the nozzle, and wherein the outlet orifice contains a filter.
49. The cartridge system according to claim 44, characterized in that, The filter is made of activated carbon.
50. An ignition system, characterized in that, include: Heating element; Battery; The heating element is detachably connected to the battery.