Multi-specification tobacco hopper cartridge and tobacco hopper system
By designing multi-special pipe cigarette cartridges, the problems of cumbersome filling and difficult control of water in traditional heating and burning pipes are solved, convenient filling and uniform combustion are achieved, and the pumping experience is improved, and it is suitable for traditional heating and burning pipes.
Patent Information
- Application Number
- CN202510816657.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-18
- Publication Date
- 2025-08-05
AI Technical Summary
The filling process of traditional heating and burning pipes is cumbersome and difficult, and it is difficult to control moisture, which affects the suction experience. It is not easy to carry and store, resulting in flavor loss.
A multi-special pipe cigarette cartridge is designed, including a bullet vest and a bullet core. The core is a multi-layer tobacco thread stacking structure. The upper tobacco thread rolling density is greater than that of the lower layer. It is suitable for the pipe combustion chamber, and is equipped with breathable holes. It adopts a specific tobacco leaf ratio and additive treatment to simplify the filling process.
It reduces the difficulty of filling, improves the convenience of carrying and storage, ensures even combustion, improves the suction experience, eliminates the threshold for novice pumping, and makes the suction process as instant and convenient as traditional cigarettes.
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Figure CN120419702A_ABST
Abstract
Description
Technical Field
[0001] This patent relates to the field of cigarette processing technology, specifically to a pipe tobacco cartridge and pipe tobacco system of multiple specifications. Background Art
[0002] The current pipe market includes traditional heat-and-burn pipes and new heat-not-burn pipes. Traditional heat-and-burn pipes have an irreplaceable smoking experience.
[0003] However, smoking a traditional heat-and-burn pipe differs from smoking a traditional cigarette. The main challenge lies in the filling technique. If the pipe is filled too tightly, the draw resistance increases, resulting in uneven combustion and easy flameout. If the pipe is filled too loosely, the pipe burns too quickly, easily overheating and losing flavor. If the bottom of the combustion chamber is neglected, it may leave gaps, resulting in a "well" (i.e., a burn through the center). The difficulty of mastering the filling technique causes many new pipe smokers to give up on smoking.
[0004] At the same time, filling the pipe tobacco is also a rather tedious process, involving multiple processes such as waking up the tobacco, kneading, picking impurities, multiple fillings, and trimming. This makes the steps of smoking pipe tobacco more complicated, and it is difficult to achieve the convenience, speed and instant enjoyment like smoking traditional cigarettes and new heat-not-burn pipes.
[0005] Controlling the moisture content of pipe tobacco is also a crucial factor influencing the smoking experience of traditional heat-and-burn pipes. If the moisture content is too low, the pipe tobacco will be too dry, burn too quickly, and easily overheat, resulting in a harsh and unpleasant smoke and potentially damaging the pipe. If the moisture content is too high, the pipe tobacco will not burn fully, producing a large amount of smoke but a lack of rich flavor. It will also easily cause carbon deposits in the pipe, shortening its lifespan. However, pipe smokers generally estimate the moisture content of pipe tobacco by feel, which requires considerable experience, making it difficult for new smokers to accurately perceive the moisture content of their pipe tobacco.
[0006] Therefore, there is a need for a pipe tobacco cartridge that is suitable for traditional heated and burned pipes, is easy to carry and saves time, reduces the difficulty of filling, and has a stable moisture content of pipe tobacco for easy storage. Summary of the Invention
[0007] In order to overcome the problems of the conventional heating and burning tobacco pipe in the prior art, such as the cumbersome process of filling the tobacco pipe, which can affect the smoking experience, the difficulty of filling, and the loss of flavor caused by the difficulty of carrying and storing the tobacco pipe, and to improve the comfort and convenience of smoking the conventional heating and burning tobacco pipe, this patent provides the following technical solutions:
[0008] A first aspect: providing a pipe tobacco cartridge of multiple specifications, comprising a jacket and a core, wherein the jacket is wrapped around the outside of the core, and the core is a composition of multiple layers of tobacco shreds stacked together, the core comprising an upper layer of tobacco shreds and a lower layer of tobacco shreds, wherein the rolling density of the upper layer of tobacco shreds is greater than the rolling density of the lower layer of tobacco shreds, and when burning, the upper layer of tobacco shreds first contact the air and burn, and the diameter of the pipe tobacco cartridge is adapted to the diameter of the combustion chamber of the pipe.
[0009] Furthermore, the diameter of the pipe tobacco cartridge is 13.3-14.8 mm, 14.8-16.3 mm, or 16.3-17.8 mm.
[0010] Furthermore, the rolling density of the upper tobacco is 260-280 mg / cm 3 , 280~300mg / cm 3 or 300-320 mg / cm 3 The rolling density of the lower layer of tobacco is 210-230 mg / cm 3 230~250mg / cm 3 or 250-270 mg / cm 3 .
[0011] Furthermore, the hardness of the pipe tobacco cartridge is 69-73%, 73-77% or 77-81%; the moisture content of the pipe tobacco cartridge is 13-15%; and the width of the tobacco is 1.5-1.7 mm, 1.7-1.9 mm or 1.9-2.1 mm.
[0012] Furthermore, the entire vest is wrapped around the outside of the core or the vest is partially wrapped around the outside of the core; if the entire vest is wrapped around the outside of the core, ventilation holes must be provided on the vest; if the vest is wrapped around the side wall outside the core, ventilation holes may be provided on the vest; if the vest is wrapped around the side wall and bottom wall outside the core, ventilation holes may be provided on the vest.
[0013] Furthermore, the raw materials for the shredded tobacco are upper leaves, middle leaves and / or lower leaves; the weight percentage of the upper leaves is 33-37% WT, 37-41% WT or 41-45% WT; the weight percentage of the middle leaves is 33-37% WT, 37-41% WT or 41-45% WT; and the weight percentage of the lower leaves is 13-17% WT, 17-21% WT or 21-25% WT.
[0014] Furthermore, the material of the bullet jacket is selected from cigarette paper or lower leaves.
[0015] Furthermore, the shape of the pipe tobacco cartridge is selected from one of a sphere, a cylinder, a rounded cylinder, a cube, a capsule, a rounded cube, a truncated cone, and a cone.
[0016] In a second aspect, a pipe tobacco system is provided, which includes a pipe and the above-mentioned pipe tobacco cartridge. The pipe includes a pipe body, a combustion chamber and a mouthpiece, and the pipe tobacco cartridge is heated and burned in the combustion chamber.
[0017] Furthermore, the diameter of the pipe tobacco cartridge is smaller than the diameter of the combustion chamber, and the diameter of the combustion chamber is 13.7-15.2 mm, 15.2-16.7 mm, or 16.7-18.2 mm; the depth of the combustion chamber is 17-19 mm, 19-21 mm, or 21-23 mm.
[0018] This patent has the following beneficial effects:
[0019] 1. This patent relates to the technical field of cigarette processing technology, and specifically to a pipe tobacco cartridge of various specifications, including a cartridge jacket and a cartridge core. The pipe tobacco cartridges have different sizes and are suitable for pipes of the same specifications. The pipe tobacco cartridges are easy to carry, can be directly filled and smoked, and are convenient for storage. This solves the problems of high pipe filling skills, difficulty in filling, and cumbersome pipe filling processes, and eliminates the technical barriers for novice pipe smokers.
[0020] 3. The rolling density of the upper and lower layers of tobacco in the pipe tobacco cartridge in this patent is different. The rolling density of the upper layer of tobacco is greater than that of the lower layer of tobacco, which realizes the structure of the pipe tobacco cartridge that is tight at the top and loose at the bottom, making the combustion process more complete, not easy to deform during transportation, and improving the overall quality of the pipe tobacco cartridge.
[0021] 4. Using traditional flue-cured tobacco as the raw material for the formula, the product style is more in line with smoking habits. In the form of pipe tobacco cartridges, it changes the traditional pipe smoking form, greatly simplifies the preparation process for smoking a pipe, reduces the difficulty for new pipe smokers, and makes smoking a pipe as enjoyable as traditional cigarettes, providing better technical support for the promotion of pipe tobacco.
[0022] First, some terms used in various embodiments of the present disclosure will be clarified.
[0023] Tobacco classification: According to the tobacco leaf preparation method, properties or main use, tobacco can be divided into flue-cured tobacco, sun-cured tobacco, air-fried tobacco, burley tobacco, spice tobacco and yellow flower tobacco.
[0024] Tobacco leaf classification refers to the subdivision of tobacco leaves within a category, categorizing them into different types based on factors such as production region, soil, climate, variety, and cultivation methods, resulting in differences in quality and usability. Tobacco leaves within the same type share certain characteristics, properties, and associated grades. Flue-cured tobacco can be categorized as: Strong-flavor, Light-flavor, and Medium-flavor.
[0025] Flue-cured tobacco grouping: Tobacco leaves within the same type are further divided based on leaf location, color, and other key characteristics related to overall quality. The goal is to ensure that leaves within the same group share key common characteristics and have similar intrinsic quality.
[0026] The national standard grouping system for flue-cured tobacco includes main groups and sub-groups. The main group refers to tobacco leaves with normal growth and development and proper curing, and the division factors are position and color; the sub-group refers to low-quality tobacco leaves caused by poor growth and development, improper harvesting or curing errors and other reasons, and the division basis is mainly based on the appearance characteristics of the tobacco leaves.
[0027] The main groups of leaves, divided by body part, include upper leaves, middle leaves, and lower leaves. The top 3-4 leaves are called the top leaves, the lower 4-5 leaves are called the upper second shed leaves, and the upper second shed and top leaves are collectively called the upper leaves. The middle 4-6 leaves are called the waist leaves, and the waist leaves are called the middle leaves. The lower 2-3 leaves are usually called the foot leaves, the upper 4-5 leaves are called the lower second shed leaves, and the foot leaves and lower second shed leaves are collectively called the lower leaves.
[0028] Pipe tobacco products refer to tobacco that is burned and smoked using a wooden straight or curved bowl. The tobacco is also called pipe grass. Usually, the pipe grass is made of various types of tobacco, such as flue-cured tobacco, burley tobacco, oriental tobacco, and sun-cured tobacco, which are compounded and fermented according to a certain percentage of components. Spices are added during fermentation to highlight the specific aroma.
[0029] Given that the production and preparation process of pipe tobacco is more handmade than other mass-produced tobacco products, its price per gram in the market is relatively high. In addition, each time it is smoked, 2 to 3 grams of pipe tobacco is consumed. Therefore, pipe tobacco has always been a niche high-end consumer tobacco product.
[0030] Pipe tobacco can be divided into two categories: aromatic and non-aromatic. Non-aromatic tobacco generally refers to all natural tobaccos without any added flavorings. High-quality non-aromatic tobacco only contains a small amount of distilled water to adjust the moisture content, without any other additives. Flavored tobacco is made by adding various natural or artificial flavors, such as vanilla, cherry, rum, and whiskey, to the tobacco to make it more palatable and more palatable to those around you.
[0031] In the following examples, unless otherwise specified below, 2024 Yunnan Kunming C3F Yunyan 99 flue-cured tobacco leaves were used.
[0032] In addition, this patent can also use the following flue-cured tobacco leaves: Chenzhou Guiyang B2F, C2F, X2F, Yongzhou Lanshan B3F, C2F, X2F, Sanmenxia Mianchi B2F, C3F, X3F, Guizhou Zunyi B2F, C2F, X2F, Bijie Dafang B3F, C3F, X2F, Guizhou Bijie B2F, C2F, X3F, Yunnan Yuxi B3F, C3F, X2F, Yunnan Kunming B2F, C3F, X2F, Yunnan Dali B2F, C3F, X2F, including tobacco seed varieties such as Honghua Dajinyuan, Cuibi No. 1, and Yunyan 97.
[0033] In the following embodiments, the wrapping paper may be wood pulp paper, linen paper, hemp paper, bamboo pulp paper, rice paper, paddy paper, slow-burning paper, ignition line paper, seasoning paper, non-adhesive paper, thickened paper, highly breathable paper, biodegradable paper, chlorine-free bleached paper, etc. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] In order to more clearly illustrate the technical solutions of the embodiments of this patent, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of this patent and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.
[0035] Figure 1 A cross-sectional view of the pipe tobacco cartridge of the present patent;
[0036] Figure 2 This is a cross-sectional view of the pipe of this patent;
[0037] Figure 3 This is a cross-sectional view of the pipe tobacco system of this patent.
[0038] The description of the accompanying drawings is as follows:
[0039] 100: pipe tobacco cartridges;
[0040] 110: bulletproof vest;
[0041] 111: vent hole;
[0042] 120: core;
[0043] 121: Upper tobacco;
[0044] 122: lower layer of tobacco;
[0045] D: diameter of pipe tobacco cartridge;
[0046] 200: pipe;
[0047] 210: fighting body;
[0048] 220: combustion chamber;
[0049] 230: Cigarette holder. DETAILED DESCRIPTION
[0050] The detailed features and advantages of the present application are described in detail below in the specific implementation methods, and the content is sufficient to enable any technical personnel in this field to understand the technical content of the present application and implement it accordingly. Based on the description, claims and drawings disclosed in this specification, technical personnel in this field can easily understand the relevant purposes and advantages of the present application.
[0051] The present invention will now be described with reference to the accompanying drawings, in which like reference numerals refer to like elements. Although the specific structure and arrangement discussed, it should be understood that this is done merely for illustrative purposes. Those skilled in the art will appreciate that other structures and arrangements can be used without departing from the spirit and scope of the present invention. It will be clear to those skilled in the art that the present invention can also be used for various other applications.
[0052] In this specification and claims, reference will be made to various terms which, unless otherwise indicated, shall be defined to have the following meanings:
[0053] The singular forms "a" and "the" include the corresponding plural forms. "At least one" means one or more, and "plurality" means two or more. "At least one of the following" or similar expressions refers to any combination of these items, including any combination of single or plural items. For example, at least one of a, b, or c can mean: a, b, c, ab, ac, bc, or abc, where a, b, and c can be single or plural.
[0054] All numbers used to express amounts of ingredients, properties (e.g., molecular weight), reaction conditions, and the like should be considered to be modified in all instances by the term "within the inevitable error range" or "about." Accordingly, the numerical values set forth herein are approximate and may vary depending upon the desired properties sought to be obtained by the present invention. At the very least, and not intended to limit the scope of the claims, the doctrine of equivalents should be applied, for example, each numerical value should at least be construed in light of the number of reported significant digits and by applying ordinary rounding techniques.
[0055] It should be understood that the term "and / or" as used herein simply describes a relationship between associated objects, indicating that three possible relationships exist. For example, "A and / or B" can represent: A alone, A and B together, or B alone. A and B can be singular or plural. Furthermore, the character " / " as used herein generally indicates an "or" relationship between the associated objects, but it may also indicate an "and / or" relationship. For specific understanding, please refer to the context.
[0056] In the description of this embodiment, it should be noted that the terms "upper", "lower", "inner", "bottom", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the product is usually placed when in use. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on this application.
[0057] Unless otherwise indicated, the following abbreviations have the following meanings and any other abbreviations used but not defined herein have their generally accepted standard meanings:
[0058] All other terms used herein that are not specifically defined in this patent are intended to have the general meanings understood by ordinary technicians in the field to which they belong, and in particular, ordinary technicians in the field can directly and unambiguously determine the meaning of how to implement the technical solution of this patent after reading the claims, description and drawings of this patent.
[0059] Even if there are incomplete descriptions, omissions or ambiguities in the grammar, text, punctuation, graphics, symbols, etc. in the claims, description and drawings of this patent, ordinary technicians in this field can still reach the only correct understanding by reading the claims, description and drawings as a whole without excessive reasoning or experimentation, and effectively exclude various incorrect understandings that are not aimed at achieving the purpose of this patent.
[0060] Ordinary technical personnel in the relevant field will give priority to reading the patent claims, specifications and drawings to reasonably interpret the terms; secondly, they will choose to refer to the relevant definitions in other documents published by the applicant before the application date to reasonably interpret the terms; thirdly, they will choose to reasonably interpret the terms by referring to the references cited in this patent; finally, they will choose to reasonably interpret the terms by combining the technical dictionaries, technical manuals, reference books, textbooks, national or industry technical standards, etc. commonly used by technical personnel in the relevant technical field.
[0061] In order to make the objectives, technical solutions and advantages of this application clearer, the implementation methods of this application will be further described in detail below with reference to the accompanying drawings.
[0062] Please refer to Figures 1 to 3A pipe tobacco cartridge 100 of various specifications includes a jacket 110 and a core 120. The jacket 110 is wrapped around the outside of the core 120. The core 120 is a composition of multiple layers of tobacco shreds. The core 120 includes an upper layer of tobacco shreds 121 and a lower layer of tobacco shreds 122. The rolling density of the upper layer of tobacco shreds 121 is greater than the rolling density of the lower layer of tobacco shreds 122. When burning, the upper layer of tobacco shreds 121 first contacts the air and burns. The diameter of the pipe tobacco cartridge 100 is adapted to the diameter of the pipe combustion chamber 220.
[0063] The entire vest 110 is wrapped around the outside of the core 120 or the vest 110 is partially wrapped around the outside of the core 120; if the entire vest 110 is wrapped around the outside of the core 120, ventilation holes 111 must be provided on the vest 110; if the vest 110 is wrapped around the side wall outside the core 120, ventilation holes 111 may be provided on the vest 110; if the vest 110 is wrapped around the side wall and bottom wall outside the core 120, ventilation holes 111 may be provided on the vest 110.
[0064] The diameter D of the pipe tobacco cartridge 100 is 13.3-14.8 mm, 14.8-16.3 mm, or 16.3-17.8 mm.
[0065] The manufacturing method of the pipe tobacco cartridge 100 in the embodiment is as follows:
[0066] Step S1: adding raw materials and rehydrating to obtain a mixed raw material with a first moisture content;
[0067] Raw material configuration: The raw materials for the formula are redried tobacco leaves, which are threshed and redried and aged for 23 to 25 months, 25 to 27 months or 25 to 28 months. The formula is a light fragrance raw material.
[0068] Specifically, the raw materials include upper leaves, middle leaves and lower leaves, and the upper leaves ensure the aroma concentration of the fighting grass, with a ratio of 33-37% WT, 37-41% WT or 41-45% WT;
[0069] The middle leaves guarantee the aroma and taste of the grass, with a ratio of 33-37% WT, 37-41% WT or 41-45% WT;
[0070] The lower leaves are used to fill the formula and ensure the looseness of the raw materials, with a ratio of 13-17% WT, 17-21% WT or 21-25% WT.
[0071] Rehydration: Mix the prepared raw materials thoroughly and evenly, and use a roller to loosen and rehydrate them.
[0072] Specifically, the hot air temperature is 130°C, the return air temperature is 64-68°C, 68-72°C or 72-76°C, and the raw material temperature after rehumidification is controlled to be 54-58°C, 58-62°C or 62-66°C to further mix the raw materials evenly.
[0073] Specifically, after moisture regain, a mixed raw material with a first moisture content is obtained, and the first moisture content is 15%, 16% or 17%.
[0074] Step S2: adding an additive to the mixed raw material to obtain first shredded tobacco with a second moisture content;
[0075] Step S21: feeding the mixed raw materials into a shredder to obtain mixed shredded tobacco;
[0076] The mixed raw materials after rehydration are put into the shredder, and the shredding width is 1.5-1.7mm, 1.7-1.9mm or 1.9-2.1mm. The pressure of the shredder door is less than 5KN. After cutting, there is basically no shredded tobacco, the shredded tobacco is loose, and mixed shredded tobacco is obtained.
[0077] Step S22: adding additives to the mixed shredded tobacco and fermenting the mixture to obtain first shredded tobacco with a second moisture content;
[0078] Specifically, the additives include leather essence, rose essence, fructose and water, and the additives are mixed in a weight ratio of: leather essence: rose essence: fructose: water = 1.5:2:20:76.5 to form a mixed liquid.
[0079] Specifically, the mixed liquid is evenly applied to the mixed tobacco with the second moisture content according to an application ratio of 3-5%, 5-7% or 7-9% and an additive addition accuracy of ≤1%.
[0080] Specifically, the second moisture content is 18%, 19% or 20%.
[0081] Specifically, the mixed shredded tobacco is subjected to anaerobic fermentation to obtain the first shredded tobacco.
[0082] Specifically, without additional application of fermentation bacteria, the mixed tobacco is placed in a sealed container, such as a sealed box, a sealed cabinet, a sealed bag, etc., and fermented for 15 days at a constant temperature of 24-26°C, 26-28°C or 28-30°C. Finally, the mixed tobacco becomes darker in color and has a sweet aroma.
[0083] Step S3: drying and inactivating the first shredded tobacco to obtain a pellet 120 having a third moisture content;
[0084] Drying: It can reduce the moisture content of the first tobacco and has the function of preliminarily inactivating bacteria, thus stopping fermentation.
[0085] Specifically, mesh belt low-temperature drying is adopted, and the drying temperature is 56-59°C, 59-62°C or 62-65°C.
[0086] Inactivation: It can inactivate all the fermentation bacteria in the first tobacco and stop fermentation.
[0087] Specifically, the ultraviolet wavelength is 260 nm, and the irradiation time is 18 to 26 minutes, 26 to 34 minutes, or 34 to 42 minutes. The first tobacco shreds need to be turned over halfway through the irradiation time to ensure that the first tobacco shreds are fully irradiated.
[0088] The moisture content in the first tobacco cut that has been dried and inactivated is low and regionally stable, there are almost no living fungi in the first tobacco cut, and the flavor of the tobacco cut is initially formed and retained.
[0089] Specifically, the third moisture content is 13%, 14% or 15%.
[0090] Step S4: rolling the core 120 and the rolling material to obtain the pipe tobacco cartridge 100.
[0091] The cartridge 100 is formed by rolling the core 120 into a pipe tobacco cartridge, the rolling material including cigarette paper or lower leaf.
[0092] A pipe tobacco cartridge 100 includes a cartridge 110 and a core 120. The cartridge 110 is wrapped with a rolling material, and the core 120 includes an upper layer of tobacco 121 and a lower layer of tobacco 122. The rolling density of the upper layer of tobacco 121 is 260-280 mg / cm 3 , 280~300mg / cm 3 or 300-320 mg / cm 3 The rolling density of the lower layer of tobacco 122 is 210-230 mg / cm 3 230~250mg / cm 3 or 250-270 mg / cm 3 .
[0093] Specifically, the hardness of the pipe tobacco cartridge 100 is 69-73%, 73-77%, or 77-81%.
[0094] The prepared pipe tobacco cartridge 100 is placed in a pipe 200 and ignited for smoking. The pipe 200 includes a pipe body 210 , a combustion chamber 220 and a mouthpiece 230 . The combustion chamber 220 is used to accommodate the burning pipe tobacco cartridge 100 .
[0095] Specifically, the diameter of the combustion chamber 220 is 13.7-15.2 mm, 15.2-16.7 mm, or 16.7-18.2 mm; the depth of the combustion chamber 220 is 17-19 mm, 19-21 mm, or 21-23 mm.
[0096] The diameter of the pipe combustion chamber 220 is adapted to the pipe tobacco cartridge 100 on a one-to-one basis, and the depth of the combustion chamber 220 is preferably 20 mm. A combustion chamber 220 with a diameter of 14 mm is adapted to a pipe tobacco cartridge 100 with a diameter of 13.5 mm, a combustion chamber 220 with a diameter of 16 mm is adapted to a pipe tobacco cartridge 100 with a diameter of 15.5 mm, and a combustion chamber 220 with a diameter of 18 mm is adapted to a pipe tobacco cartridge 100 with a diameter of 17.5 mm.
[0097] Example 1
[0098] A light-fragrant raw material is prepared which is threshed, redried and then aged for 26 months, wherein the weight percentage of the upper leaves is 40% WT, the weight percentage of the middle leaves is 40% WT, and the weight percentage of the lower leaves is 20% WT.
[0099] After the raw materials are evenly mixed, they are subjected to drum-type loosening and moisture restoration. The hot air temperature is 130° C., the return air temperature is 70° C., and the temperature of the mixed raw materials after moisture restoration is 60° C. At this time, the first moisture content of the mixed raw materials is 16%.
[0100] The mixed raw materials after rehydration are put into a shredder and cut into mixed shredded tobacco with a width of 1.8 mm.
[0101] Leather essence, rose essence, fructose and water are prepared in a weight ratio of 1.5:2:20:76.5 to prepare a mixed liquid, and the mixed liquid is evenly applied at an application ratio of 4% and a feeding accuracy of ≤1.0% to obtain a first tobacco shred with a second moisture content of 19%.
[0102] The first shredded tobacco was placed in a sealed box and anaerobically fermented at 27° C. for 15 days to obtain the fermented first shredded tobacco.
[0103] The first tobacco shreds were subjected to mesh belt low-temperature drying at a temperature of 65° C. to obtain a third elastic core having a moisture content of 12%.
[0104] The core is irradiated with ultraviolet light at a wavelength of 260 nm for 30 minutes, wherein the tobacco is irradiated from the reverse side for 15 minutes to obtain an inactivated core.
[0105] The obtained cartridge core is combined with the rolling material used as the cartridge jacket to form a pipe tobacco cartridge 100. The cigarette paper is laid on a flat surface and filled with a rolling material having a density of 240 mg / cm 3 The lower layer of tobacco is filled with a rolling density of 290mg / cm 3 The upper layer of tobacco is then wrapped and sealed with cigarette paper having ventilation holes at the bottom to form a pipe tobacco cartridge 100 with a diameter of 15.5 mm, a moisture content of 12%, and a hardness of 75%.
[0106] Example 2
[0107] A light-fragrant raw material is prepared which is threshed, redried and then aged for 26 months, wherein the weight percentage of the upper leaves is 40% WT, the weight percentage of the middle leaves is 40% WT, and the weight percentage of the lower leaves is 20% WT.
[0108] After the raw materials are evenly mixed, they are subjected to drum-type loosening and moisture restoration. The hot air temperature is 130° C., the return air temperature is 70° C., and the temperature of the mixed raw materials after moisture restoration is 60° C. At this time, the first moisture content of the mixed raw materials is 16%.
[0109] The mixed raw materials after rehydration are put into a shredder and cut into mixed shredded tobacco with a width of 1.8 mm.
[0110] Leather essence, rose essence, fructose and water are prepared in a weight ratio of 1.5:2:20:76.5 to prepare a mixed liquid, and the mixed liquid is evenly applied at an application ratio of 4% and a feeding accuracy of ≤1.0% to obtain a first tobacco shred with a second moisture content of 19%.
[0111] The first shredded tobacco was placed in a sealed box and anaerobically fermented at 27° C. for 15 days to obtain the fermented first shredded tobacco.
[0112] The first tobacco shreds were subjected to mesh belt low-temperature drying at a temperature of 60° C. to obtain a third elastic core having a moisture content of 14%.
[0113] The core is irradiated with ultraviolet light at a wavelength of 260 nm for 30 minutes, wherein the tobacco is irradiated from the reverse side for 15 minutes to obtain an inactivated core.
[0114] The obtained cartridge core is combined with the rolling material used as the cartridge jacket to form a pipe tobacco cartridge 100. The cigarette paper is laid on a flat surface and filled with a rolling material having a density of 240 mg / cm 3 The lower layer of tobacco is filled with a rolling density of 290mg / cm 3 The upper layer of tobacco is then wrapped and sealed with cigarette paper having ventilation holes at the bottom to form a pipe tobacco cartridge 100 with a diameter of 15.5 mm, a moisture content of 14%, and a hardness of 75%.
[0115] Example 3
[0116] A light-fragrant raw material is prepared which is threshed, redried and then aged for 26 months, wherein the weight percentage of the upper leaves is 40% WT, the weight percentage of the middle leaves is 40% WT, and the weight percentage of the lower leaves is 20% WT.
[0117] After the raw materials are evenly mixed, they are subjected to drum-type loosening and moisture restoration. The hot air temperature is 130° C., the return air temperature is 70° C., and the temperature of the mixed raw materials after moisture restoration is 60° C. At this time, the first moisture content of the mixed raw materials is 16%.
[0118] The mixed raw materials after rehydration are put into a shredder and cut into mixed shredded tobacco with a width of 1.8 mm.
[0119] Leather essence, rose essence, fructose and water are prepared in a weight ratio of 1.5:2:20:76.5 to prepare a mixed liquid, and the mixed liquid is evenly applied at an application ratio of 4% and a feeding accuracy of ≤1.0% to obtain a first tobacco shred with a second moisture content of 19%.
[0120] The first shredded tobacco was placed in a sealed box and anaerobically fermented at 27° C. for 15 days to obtain the fermented first shredded tobacco.
[0121] The first tobacco shreds were subjected to mesh belt low-temperature drying at a temperature of 55° C. to obtain a third elastic core having a moisture content of 16%.
[0122] The core is irradiated with ultraviolet light at a wavelength of 260 nm for 30 minutes, wherein the tobacco is irradiated from the reverse side for 15 minutes to obtain an inactivated core.
[0123] The obtained cartridge core is combined with the rolling material used as the cartridge jacket to form a pipe tobacco cartridge 100. The cigarette paper is laid on a flat surface and filled with a rolling material having a density of 240 mg / cm 3 The lower layer of tobacco is filled with a rolling density of 290mg / cm 3 The upper layer of tobacco is then wrapped and sealed with cigarette paper having ventilation holes at the bottom to form a pipe tobacco cartridge 100 with a diameter of 15.5 mm, a moisture content of 16%, and a hardness of 75%.
[0124] Comparative Example 1
[0125] The tobacco material used in Example 1 was allowed to rest in air at 25°C for 30 minutes with a relative moisture content of 50% to balance the moisture content to 12%. The restated tobacco material was then filled into a pipe in a suitable manner:
[0126] For the first layer (bottom), gently sprinkle a small amount of tobacco into the bowl and use your fingers or a tool to gently press it down to about 1 / 3 of the way up. Press firmly enough to "touch baby's skin" to ensure air circulation.
[0127] The second (middle) layer is filled with more tobacco and compressed slightly more firmly (similar to the force of "pressing a sponge"). This layer needs to be evenly distributed to avoid being too tight and causing poor ventilation.
[0128] Fill the third (top) layer with the remaining tobacco, pressing down slightly with your thumb or a pressing rod to ensure the top is flat and the fit is just right. The tobacco should be slightly springy and spring back when pressed.
[0129] The time for waking up the grass and filling the bucket is counted as the preparation time before smoking.
[0130] Comparative Example 2
[0131] The tobacco material used in Example 2 was allowed to rest in air at a relative moisture content of 60% and 25°C for 30 minutes to equilibrate the moisture content to 14%. The rested tobacco material was then filled into a pipe in a suitable manner:
[0132] For the first layer (bottom), gently sprinkle a small amount of tobacco into the bowl and use your fingers or a tool to gently press it down to about 1 / 3 of the way up. Press firmly enough to "touch baby's skin" to ensure air circulation.
[0133] The second (middle) layer is filled with more tobacco and compressed slightly more firmly (similar to the force of "pressing a sponge"). This layer needs to be evenly distributed to avoid being too tight and causing poor ventilation.
[0134] Fill the third (top) layer with the remaining tobacco, pressing down slightly with your thumb or a pressing rod to ensure the top is flat and the fit is just right. The tobacco should be slightly springy and spring back when pressed.
[0135] The time for waking up the grass and filling the bucket is counted as the preparation time before smoking.
[0136] Comparative Example 3
[0137] The tobacco material used in Example 3 was allowed to rest in air at a relative moisture content of 70% and 25°C for 30 minutes to balance the moisture content to 16%. The rested tobacco material was then filled into a pipe in a suitable manner:
[0138] For the first layer (bottom), gently sprinkle a small amount of tobacco into the bowl and use your fingers or a tool to gently press it down to about 1 / 3 of the way up. Press firmly enough to "touch baby's skin" to ensure air circulation.
[0139] The second (middle) layer is filled with more tobacco and compressed slightly more firmly (similar to the force of "pressing a sponge"). This layer needs to be evenly distributed to avoid being too tight and causing poor ventilation.
[0140] Fill the third (top) layer with the remaining tobacco, pressing down slightly with your thumb or a pressing rod to ensure the top is flat and the fit is just right. The tobacco should be slightly springy and spring back when pressed.
[0141] The time for waking up the grass and filling the bucket is counted as the preparation time before smoking.
[0142] Five novice pipe smokers smoked the pipe tobacco cartridge 100 of Example 1 and the pipe tobacco of Comparative Example 1 with the same moisture content, and the smoking experience was summarized in Table 1.
[0143] Table 1 Suction evaluation of Example 1 and Comparative Example 1
[0144]
[0145]
[0146] Five novice pipe smokers smoked the pipe tobacco cartridge 100 of Example 2 and the pipe tobacco of Comparative Example 2 with the same moisture content, and the smoking experience was summarized in Table 2.
[0147] Table 2 Puffing evaluation of pipe tobacco cartridges 100 of Example 2 and Comparative Example 2
[0148]
[0149] Five novice pipe smokers smoked the pipe tobacco cartridge 100 of Example 3 and the pipe tobacco of Comparative Example 3 with the same moisture content, and the smoking experience was summarized in Table 3.
[0150] Table 3 Suction evaluation of Example 3 and Comparative Example 3
[0151]
[0152] By controlling the moisture content, we compared the puffing experience and preparation time of the pipe tobacco cartridge 100 and the pipe tobacco filling method. It is obvious that the pipe tobacco filling method involves complex processes such as waking up the tobacco and filling the pipe. Novice pipe smokers spend an average of 32-35 minutes preparing for this method; and the filling effect directly affects the puffing experience. Therefore, the traditional pipe filling method is not friendly to novice pipe smokers.
[0153] On the contrary, the pipe tobacco cartridge 100 only needs to be placed in the matching pipe combustion chamber 220, and the structure of the pipe tobacco cartridge 100 allows the pipe to burn smoothly, with basically no flameout, which greatly reduces the difficulty of preparation work before smoking and improves the smoking experience of novice pipe smokers.
[0154] Five novice pipe smokers smoked the pipe tobacco cartridges 100 of Examples 1 to 3, and their smoking experiences were summarized in Table 4.
[0155] Table 4 Suction evaluation of Example 4 and Comparative Example 4
[0156]
[0157] By comparing the sensory experience of smoking pipe tobacco cartridges 100 with different moisture contents, it can be found that when the moisture content of pipe tobacco cartridges 100 is around 14%, the sensory quality is the best, the smoke is full, the aroma concentration is good, and the aftertaste is clean.
[0158] The cigarette cartridge eliminates the technical threshold for new pipe smokers to smoke pipes, and realizes the same timely inhalation as traditional cigarettes. The inhalation resistance is uniform and moderate during the inhalation process, and the combustion performance is good, which has obvious advantages over traditional pipe smoking.
[0159] Reference throughout this specification to "one embodiment" or "one implementation" means that a particular feature, structure, or characteristic described in connection with the embodiment / implementation is included in at least one embodiment / implementation of the present invention.
[0160] Thus, the phrases "in one embodiment / specific implementation" appearing in various places throughout this specification are not necessarily all referring to the same embodiment / arrangement, but rather may be. Furthermore, the particular features, structures, or characteristics may be combined in any suitable manner in one or more embodiments / arrangements, as would be apparent to one of ordinary skill in the art from this disclosure.
[0161] Similarly, it should be understood that in the above description of exemplary embodiments / embodiments of the invention, various features of the invention are sometimes grouped together in a single embodiment / embodiment or its drawings and description for the purpose of simplifying the disclosure and aiding in understanding one or more of the various inventive aspects.
[0162] However, except where expressly stated to the contrary or where technical inconsistency or exclusion is apparent, this patent's method of description should not be interpreted as reflecting an intention that the claimed invention requires more features than are expressly recited in each claim. Rather, the claims reflect that inventive aspects lie in less than all features of a single foregoing disclosed embodiment / implementation.
[0163] Thus, the claims following the Detailed Description are hereby expressly incorporated into this Detailed Description, with each claim standing on its own as a separate embodiment / specification of the present invention.
[0164] Furthermore, while some embodiments / implementations described herein include but do not include certain features included in other embodiments / implementations, combinations of features from different embodiments / implementations are intended to be within the scope of the present invention and to form different embodiments / implementations, as will be understood by those skilled in the art. For example, in the claims below, any claimed embodiment / implementation can be used in any combination.
[0165] The terms and expressions used in this specification are for the purpose of description and not limitation, and there is no intention in the use of these terms and expressions to exclude any equivalents of the features shown and described or portions thereof, but it is recognized that various modifications are possible within the scope of the invention.
[0166] It should therefore be understood that although the present invention has been specifically disclosed through preferred embodiments, exemplary embodiments and optional features, those skilled in the art may adopt modifications or variations of the concepts disclosed in this specification, and therefore such modifications and variations are considered to be within the scope of the invention as defined by the appended claims.
[0167] The specific embodiments given in this specification are examples of useful embodiments of the present invention. It will be apparent to those skilled in the art that the present invention can be implemented using many variations of the devices, device components, and method steps disclosed in this specification.
[0168] The foregoing description of specific embodiments fully discloses the general features of the invention so that others, by applying knowledge within the technical scope of the art, can easily modify and / or adapt such specific embodiments for various applications without undue experimentation and without departing from the general concept of the invention.
[0169] Therefore, based on the teaching and guidance given herein, it is intended that such transformations and modifications are included within the meaning and scope of equivalents of the disclosed embodiments. It should be understood that the phraseology or terminology herein is for descriptive purposes only and is not intended to be limiting, and thus the phraseology or terminology of this specification will be interpreted by those skilled in the art based on the above teaching and guidance.
[0170] Additionally, the scope of the present invention should not be limited by any of the above-described exemplary embodiments, but should be defined only in accordance with the following claims and their equivalents.
Claims
1. A pipe tobacco cartridge of various specifications, characterized in that: The pipe tobacco cartridge includes a jacket and a core, wherein the jacket is wrapped around the outside of the core, and the core is a composition of multiple layers of tobacco shreds stacked together, the core including an upper layer of tobacco shreds and a lower layer of tobacco shreds, the rolling density of the upper layer of tobacco shreds being greater than the rolling density of the lower layer of tobacco shreds. During combustion, the upper layer of tobacco shreds first contacts the air and burns, and the diameter of the pipe tobacco cartridge is adapted to the diameter of the combustion chamber of the pipe.
2. The pipe tobacco cartridge according to claim 1, wherein: The diameter of the pipe tobacco cartridge is 13.3-14.8 mm, 14.8-16.3 mm or 16.3-17.8 mm.
3. The pipe tobacco cartridge according to claim 1, wherein: The rolling density of the upper layer of tobacco is 260-280 mg / cm 3 , 280~300mg / cm 3 or 300-320 mg / cm 3 ; The rolling density of the lower layer of tobacco is 210-230 mg / cm 3 230~250mg / cm 3 or 250-270 mg / cm 3 .
4. The pipe tobacco cartridge according to claim 1, wherein: The hardness of the pipe tobacco cartridge is 69-73%, 73-77% or 77-81%; The water content of the pipe tobacco cartridge is 13-15%; The width of the tobacco shreds is 1.5-1.7 mm, 1.7-1.9 mm or 1.9-2.1 mm.
5. The pipe tobacco cartridge according to claim 1, wherein: The bullet jacket is completely wrapped around the outside of the bullet core or the bullet jacket is partially wrapped around the outside of the bullet core; If the bullet jacket is completely wrapped around the outside of the bullet core, the bullet jacket must be provided with ventilation holes; If the bullet jacket is wrapped around the side wall outside the bullet core, the bullet jacket may be provided with ventilation holes; If the bullet jacket wraps around the side walls and bottom wall outside the bullet core, ventilation holes may be provided on the bullet jacket.
6. The pipe tobacco cartridge according to claim 5, characterized in that: The raw materials of the shredded tobacco are upper leaves, middle leaves and / or lower leaves; The weight percentage of the upper leaves is 33-37% WT, 37-41% WT or 41-45% WT; The weight percentage of the middle leaves is 33-37% WT, 37-41% WT or 41-45% WT; The weight percentage of the lower leaves is 13-17% WT, 17-21% WT or 21-25% WT.
7. The pipe tobacco cartridge according to claim 1, wherein: The raw material of the bullet jacket is selected from cigarette paper or the lower leaf.
8. The pipe tobacco cartridge according to claim 1, wherein: The shape of the pipe tobacco cartridge is selected from one of a sphere, a cylinder, a rounded cylinder, a cube, a capsule, a rounded cube, a truncated cone, and a cone.
9. A pipe tobacco system, characterized in that: The pipe tobacco system comprises a pipe and a pipe tobacco cartridge according to any one of claims 1 to 8, wherein the pipe comprises a pipe body, a combustion chamber and a mouthpiece, and the pipe tobacco cartridge is heated and burned in the combustion chamber.
10. The pipe tobacco system according to claim 9, characterized in that: The diameter of the pipe tobacco cartridge is smaller than the diameter of the combustion chamber, and the diameter of the combustion chamber is 13.7-15.2 mm, 15.2-16.7 mm, or 16.7-18.2 mm; The depth of the combustion chamber is 17-19 mm, 19-21 mm or 21-23 mm.