US2023087970A1PendingUtilityA1

Method for manufacturing vaporizer, vaporizer, and electronic vaporization device

Assignee: SHENZHEN SMOORE TECHNOLOGY LTDPriority: Sep 22, 2021Filed: Sep 21, 2022Published: Mar 23, 2023
Est. expirySep 22, 2041(~15.1 yrs left)· nominal 20-yr term from priority
Inventors:Ju Xie
A24F 40/485A24F 40/70A24F 40/42A24F 40/10A24F 40/46
57
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Claims

Abstract

A method for manufacturing a vaporizer includes: connecting an auxiliary member to a liquid storage member having a liquid storage cavity and an inhalation channel such that the auxiliary member is nested and fitted with the inhalation channel so as to serve as at least a partial boundary of the liquid storage cavity; injecting a vaporization medium into the liquid storage cavity and causing the vaporization medium to cover at least a partial surface of the auxiliary member; and mounting a vaporization assembly to the liquid storage member such that the vaporization assembly abuts the auxiliary member to cause the auxiliary member to move relative to the inhalation channel until the vaporization assembly seals the liquid storage cavity and at least partially replaces the auxiliary member to serve as at least a partial boundary of the liquid storage cavity.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A method for manufacturing a vaporizer, comprising:
 connecting an auxiliary member to a liquid storage member comprising a liquid storage cavity and an inhalation channel such that the auxiliary member is nested and fitted with the inhalation channel so as to serve as at least a partial boundary of the liquid storage cavity;   injecting a vaporization medium into the liquid storage cavity and causing the vaporization medium to cover at least a partial surface of the auxiliary member; and   mounting a vaporization assembly to the liquid storage member such that the vaporization assembly abuts the auxiliary member to cause the auxiliary member to move relative to the inhalation channel until the vaporization assembly seals the liquid storage cavity and at least partially replaces the auxiliary member to serve as at least a partial boundary of the liquid storage cavity.   
     
     
         2 . The method for manufacturing a vaporizer of  claim 1 , wherein when the auxiliary member is nested and fitted with the inhalation channel to serve as at least a partial boundary of the liquid storage cavity, the auxiliary member being inserted in the inhalation channel and at least partially protruding from an inner end opening of the inhalation channel. 
     
     
         3 . The method for manufacturing a vaporizer of  claim 2 , wherein, when the vaporization assembly seals the liquid storage cavity and replaces the auxiliary member to serve as at least a partial boundary of the liquid storage cavity, the auxiliary member partially abuts between the vaporization assembly and the inner end opening of the inhalation channel, and the auxiliary member is maintained in the liquid storage member. 
     
     
         4 . The method for manufacturing a vaporizer of  claim 2 , wherein, when the vaporization assembly seals the liquid storage cavity and replaces the auxiliary member to serve as at least a partial boundary of the liquid storage cavity, the vaporization assembly sealedly abuts the inner end opening of the inhalation channel, and
 wherein the auxiliary member is taken out from an outer end opening of the inhalation channel.   
     
     
         5 . The method for manufacturing a vaporizer of  claim 2 , wherein, when the vaporization medium is injected into the liquid storage cavity and the vaporization medium is caused to cover at least a partial surface of the auxiliary member, a liquid level height of the vaporization medium is between the inner end opening of the inhalation channel and an abutting end of the auxiliary member. 
     
     
         6 . The method for manufacturing a vaporizer of  claim 1 , wherein, when the vaporization medium is injected into the liquid storage cavity and the vaporization medium is caused to cover at least a partial surface of the auxiliary member, the liquid storage cavity is placed in a predetermined direction such that the liquid storage cavity has a maximum liquid storage height in a vertical direction. 
     
     
         7 . The method for manufacturing a vaporizer of  claim 1 , wherein, when the auxiliary member is nested and fitted with the inhalation channel to serve as at least a partial boundary of the liquid storage cavity, the auxiliary member is sleeved outside the inhalation channel and an inner end opening of the inhalation channel is accommodated in the auxiliary member. 
     
     
         8 . A vaporizer, comprising:
 a liquid storage member internally provided with a liquid storage cavity and an inhalation channel;   an auxiliary member nested and fitted with the inhalation channel, the auxiliary member being configured, when at a first position, to construct at least a partial boundary of the liquid storage cavity; and   a vaporization assembly connected to the liquid storage member and configured to abut the auxiliary member so as to cause the auxiliary member to be at a second position, to at least partially replace the auxiliary member to construct at least a partial boundary of the liquid storage cavity.   
     
     
         9 . The vaporizer of  claim 8 , wherein the liquid storage member further comprises a shell portion connected to the inhalation channel,
 wherein the shell portion is arranged surrounding the inhalation channel, and the liquid storage cavity is provided between an inner side of the shell portion and the inhalation channel,   wherein one end of the shell portion is connected to the inhalation channel to form a suction nozzle end of the liquid storage member, and an other end of the shell portion is configured to accommodate the vaporization assembly, and   wherein the auxiliary member is inserted in the inhalation channel, or the auxiliary member is sleeved outside the inhalation channel.   
     
     
         10 . The vaporizer of  claim 9 , wherein, if the auxiliary member is inserted in the inhalation channel, the inhalation channel or the shell portion forms a limiting step surface on the suction nozzle end, the limiting step surface being configured to limit the auxiliary member from protruding out of the suction nozzle end. 
     
     
         11 . The vaporizer of  claim 8 , wherein the vaporization assembly comprises a vapor outlet, and
 wherein the auxiliary member comprises an airflow channel that communicates the vapor outlet with an inner cavity of the inhalation channel when the vaporization assembly abuts the auxiliary member.   
     
     
         12 . The vaporizer of  claim 11 , further comprising:
 a flexible buffering docking member that at least partially abuts between the vaporization assembly and the auxiliary member.   
     
     
         13 . The vaporizer of  claim 12 , wherein the auxiliary member is folded at the abutting end to form a flange portion, and
 wherein the buffering docking member abuts the flange portion.   
     
     
         14 . The vaporizer of  claim 8 , wherein the vaporization assembly comprises a vapor outlet, and
 wherein the auxiliary member isolates the vapor outlet from the liquid storage cavity when the vaporization assembly abuts the auxiliary member.   
     
     
         15 . The vaporizer of  claim 8 , wherein the auxiliary member is in an interference fit with an inner wall of the inhalation channel, or
 wherein the vaporizer further comprises a seal member arranged surrounding the auxiliary member, and the seal member abuts between the auxiliary member and an inner wall of the inhalation channel.   
     
     
         16 . The vaporizer of  claim 8 , wherein the vaporization assembly comprises a vaporization sleeve accommodated in the liquid storage member, a liquid guide member arranged in the vaporization sleeve, and a heating member arranged in the liquid guide member, and
 wherein the vaporization sleeve is provided with a vapor outlet configured to be in communication with an inner cavity of the inhalation channel and a liquid inlet configured to be in communication with the liquid storage cavity.   
     
     
         17 . The vaporizer of  claim 16 , wherein the vaporization assembly further comprises a base connected to the vaporization sleeve, the base being connected to the liquid storage member and configured to limit the vaporization sleeve in the liquid storage member. 
     
     
         18 . The vaporizer of  claim 17 , wherein the vaporization sleeve is partially accommodated in the base,
 wherein the liquid inlet is exposed to the outside of the base, and   wherein a first leakage-proof distance is formed between the liquid inlet and the vapor outlet in a communication direction of the inhalation channel.   
     
     
         19 . The vaporizer of  claim 8 , wherein, when the auxiliary member is at the second position, the auxiliary member is partially replaced by the vaporization assembly and partially maintained to construct at least a partial boundary of the liquid storage cavity, or
 wherein, when the auxiliary member is at the second position, the vaporization assembly completely replaces the auxiliary member, abuts the inhalation channel, and constructs at least a partial boundary of the liquid storage cavity.   
     
     
         20 . A vaporizer, comprising:
 a liquid storage member internally provided with a liquid storage cavity and an inhalation channel, a filling end of the liquid storage cavity and an inner end opening of the inhalation channel being located on an assembling end of the liquid storage member, and a bottom end of the liquid storage cavity and an outer end opening of the inhalation channel being located on a suction nozzle end of the liquid storage member; and   a vaporization assembly connected to the liquid storage member and configured to seal the filling end, the bottom end of the liquid storage cavity being filled with a vaporization medium and at least a part of the vaporization assembly being covered by the vaporization medium.   
     
     
         21 . The vaporizer of  claim 20 , wherein the liquid storage member further comprises a shell portion connected to the inhalation channel, the shell portion surrounding the inhalation channel, and the liquid storage cavity being provided between an inner side of the shell portion and the inhalation channel, and
 wherein one end of the shell portion is connected to the inhalation channel to form the suction nozzle end, and an other end of the shell portion is configured to accommodate the vaporization assembly.   
     
     
         22 . The vaporizer of  claim 21 , wherein the vaporization assembly comprises a vapor outlet in communication with an inner cavity of the inhalation channel. 
     
     
         23 . The vaporizer of  claim 22 , further comprising:
 a flexible buffering docking member abutting between the vaporization assembly and the inner end opening of the inhalation channel.   
     
     
         24 . The vaporizer of  claim 23 , wherein the buffering docking member comprises a partition portion and an embedded portion connected to the partition portion, the embedded portion running through the vapor outlet, and the partition portion abutting between the vaporization assembly and the inner end opening of the inhalation channel. 
     
     
         25 . An electronic vaporization device, comprising:
 the vaporizer of  claim 8 ; and   a power supply component connected to the vaporizer and configured to supply power to the vaporizer.

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