US2020383375A1PendingUtilityA1

Multi-section heat-not-burn product having hemp components and preparation method thereof

Assignee: YUNNAN XIKE SCIENCE & TECH CO LTDPriority: Jun 4, 2019Filed: Jul 14, 2020Published: Dec 10, 2020
Est. expiryJun 4, 2039(~12.9 yrs left)· nominal 20-yr term from priority
A24D 1/20A24B 15/167A24D 1/18A24D 1/045A24D 1/002A24D 1/22A24C 5/01A24D 3/17A24B 15/241
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Claims

Abstract

A multi-section heat-not-burn product having hemp components includes a fuming product used for being heated and baked rather than being suctioned after the fuming product is lighted. The fuming product is composed of a plurality of different units integrally filled from a lip proximity end to a lip far end by a tubular material having a fixed specification, which includes four or more different units including a filtering unit, a gel cooling and spice unit, a hollow specific particle unit, a hollow supporting unit, a cavity unit, a barrier sheet unit, an atomizing unit having hemp components and a sealing unit. The present disclosure can obtain a finished fuming unit product after sealing the heat-not-burn product having hemp components, and reliably solve problems of a single type of smoke bomb and a complicated processing technology in the heat-not-burn field by mixing with smoke agents with different flavors of spice components.

Claims

exact text as granted — not AI-modified
1 . A multi-section heat-not-burn product having hemp components, comprising a fuming product used for being heated and baked rather than being suctioned after the fuming product is lighted, wherein the fuming product comprising a lip proximity end and a lip far end, and composed of a tubular material integrally filled with a plurality of different units integrally; and
 the plurality of different units comprises a filtering unit, a gel cooling and spice unit, a hollow specific particle unit, a hollow supporting unit, a cavity unit, a barrier sheet unit, an atomizing unit having hemp components, and a sealing unit configured to seal the atomizing unit.   
     
     
         2 . The multi-section heat-not-burn product having hemp components as claimed in  claim 1 , wherein the tubular material has a thickness of 0.1 mm˜0.5 mm and is configured to absorb and store a large amount of heat and dissipate a temperature through radiation and convection before an inlet being formed thereon; the plurality of different units is piecewise filled in the tubular material and integrated in one piece. 
     
     
         3 . The multi-section heat-not-burn product having hemp components as claimed in  claim 1 , wherein the atomizing unit having hemp components is formed in the following steps below:
 step s 1 , after crushing a residue of a hemp to 20˜250 mesh, wherein the residue is obtained after completely extracting effective components from the hemp during natural extraction; and adding filler, adhesive, fragrance agent and smoke agent for granulation drying, and then supplementing the effective components of the hemp by a way of adding spice; or   step s 2 , crushing leaves and flowers of the hemp with a full form, and adding the filler, the adhesive, the fragrance agent and the smoke agent for granulation drying, and supplementing the effective components of the hemp by the way of adding spice.   
     
     
         4 . The multi-section heat-not-burn product having hemp components as claimed in  claim 1 , wherein the atomizing unit having hemp components are selected from any one of particles, flakes, creams or reconstituted flakes. 
     
     
         5 . A preparation method of a multi-section heat-not-burn product having hemp components comprising the following steps:
 step s 1 : firstly selecting a waste residue of a hemp as a carrier, wherein the waste residue of the hemp is obtained after completely extracting effective components from the hemp during natural extraction, obtaining a formed waste residue carrier after processing the waste residue used as the carrier by a granulation process, and then mixing the formed waste residue carrier with incense making extract, smoke agent, adhesive and wrapping agent to obtain a primary atomizing unit having hemp components; or firstly selecting flowers and leaves of a hemp as a carrier, obtaining a formed hemp flower and leaf carrier after processing the flowers and the leaves of the hemp used as the carrier, and then mixing the formed hemp flower and leaf carrier with incense making extract, smoke agent, adhesive and wrapping agent to obtain a primary atomizing unit having hemp components;   step s 2 : the primary atomizing unit having hemp components used for fully absorbing a material solution for 12 hours in a sterile environment, and then sending to a drying equipment for drying, wherein moisture test is qualified; and   step s 3 : adding a prepared spice component in a form of a cigarette perfuming to the primary atomizing unit having hemp components after the step s 2 , and evenly stirring to obtain a semi-finished product of the atomizing unit having hemp components, and then adding package agent to seal its fragrance according to different types of semi-finished products, to obtain a finished product of the atomizing unit having hemp components.   
     
     
         6 . The preparation method as claimed in  claim 5 , wherein in the step s 1 , when the flowers and the leaves of the hemp are selected as the carrier, the flowers and leaves of the hemp are processed by a granulation process, a lamination molding process or a paste molding process, and the effective components of the hemp are added in the form of the cigarette perfuming. 
     
     
         7 . The preparation method as claimed in  claim 6 , wherein the granulation process comprises a pressure forming granulation process, a stirring and rolling granulation process, a hot melt and cooling granulation process, a spray drum granulation process and a spray fluidized bed granulation process; the lamination molding process comprises a roller pressing process, a papermaking process and an impregnation process; the paste molding process comprises an extrusion molding process and a rapid accumulation molding process. 
     
     
         8 . The preparation method as claimed in  claim 5 , wherein the drying equipment comprises a plurality of drying modes selected from any one of a cold air drying mode, a heating tube drying mode, a hot air drying mode, a low temperature freeze-drying mode and a microwave drying mode. 
     
     
         9 . The preparation method as claimed in  claim 5 , wherein in the step s 2 , a drying temperature of the drying equipment is 50° C.-150° C., a drying time is 12-120 minutes, and a qualified range of the moisture test is 8%˜15%. 
     
     
         10 . The preparation method as claimed in  claim 5 , wherein the effective components of the hemp in the form of a cigarette spray perfuming are added for 1-2 times to the primary atomizing unit having hemp components after the step s 2 , and then evenly stirred to obtain a semi-finished product of the atomizing unit having hemp components. 
     
     
         11 . The preparation method as claimed in  claim 3 , wherein the effective components of the hemp comprise a mixture consisted of CBD, CBC, CBN, CBG and their propyl homologues THCV, CBDV, CBCV and CBGV. 
     
     
         12 . The preparation method as claimed in  claim 5 , wherein the effective components of the hemp comprise a mixture consisted of CBD, CBC, CBN, CBG and their propyl homologues THCV, CBDV, CBCV and CBGV. 
     
     
         13 . The preparation method as claimed in  claim 6 , wherein the effective components of the hemp comprise a mixture consisted of CBD, CBC, CBN, CBG and their propyl homologues THCV, CBDV, CBCV and CBGV. 
     
     
         14 . The preparation method as claimed in  claim 10 , wherein the effective components of the hemp comprise a mixture consisted of CBD, CBC, CBN, CBG and their propyl homologues THCV, CBDV, CBCV and CBGV.

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