E-Liquid Chamber Sealing Structure for Leak-Free Atomizer Storage
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Solution Overview
Problem
Existing electronic atomizers face issues with e-liquid leakage during storage and transportation due to the communication between the e-liquid chamber and the atomization core.
Innovation Solution
The atomization device incorporates an e-liquid chamber assembly with multiple sealing structures and a detachable atomization core assembly, allowing the e-liquid chamber inner-housing to switch between sealed and open states, preventing leakage during storage and enabling automatic e-liquid feeding upon assembly.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If the e-liquid chamber is in communication with the atomization core during storage and transportation, then e-liquid can be fed to the atomization core, but e-liquid leakage occurs
Solution Approach 1:
The patent applies preliminary action by pre-positioning the e-liquid chamber inner-housing at different locations depending on the state: in the first location during storage/transportation to seal the e-liquid storage chamber and prevent leakage, and in the second location during use to enable e-liquid feeding. This advance positioning resolves the contradiction by ensuring the correct state is maintained before the corresponding operation occurs.
Solution Approach 2:
The patent implements dynamics by making the e-liquid chamber inner-housing movable between two distinct locations. The housing can be positioned in the first location to seal the e-liquid storage chamber during storage, or moved to the second location to communicate with the atomization core during use. This dynamic repositioning allows the system to adapt its sealing state based on operational requirements, resolving the contradiction between leakage prevention and e-liquid feeding.
2Reliability
If the e-liquid chamber inner-housing is sealed during storage, then e-liquid leakage is prevented, but e-liquid feeding is blocked
Solution Approach 1:
The patent applies dynamics by enabling the e-liquid chamber inner-housing to move between two positions: a first position during storage that seals the e-liquid storage chamber to prevent leakage, and a second position during use that opens communication with the atomization core for e-liquid feeding. This dynamic repositioning resolves the contradiction by allowing the system to switch between sealed and feeding states as needed.
Solution Approach 2:
The patent uses preliminary action by pre-positioning the e-liquid chamber inner-housing in the first location during storage to ensure sealing and leakage prevention. Before use, the housing is moved to the second location to enable feeding. This advance positioning ensures that sealing is established before storage begins and feeding is enabled before use commences, resolving the contradiction between these two opposing requirements.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The solution effectively reduces e-liquid leakage during storage and transportation while ensuring seamless e-liquid feeding upon assembly, enhancing the reliability and usability of the atomization device.
Implementation Method 1
A connecting end of the atomization device is provided with at least one first magnetic member, a connecting end of the atomization rod is provided with at least one second magnetic member, the atomization device and the atomization rod are magnetically connected to each other via the first magnetic member and the second magnetic member
Data Source
AI summary
An atomization device and an electronic atomizer are provided. The atomization device includes an e-liquid chamber assembly and an atomization core assembly. The e-liquid chamber assembly includes an e-liquid chamber outer-housing, an e-liquid chamber inner-housing, a first sealing structure, and a second sealing structure. The e-liquid chamber inner-housing is disposed within the e-liquid chamber outer-housing, the first sealing structure forms a seal between a first end of the e-liquid chamber outer-housing and a first end of the e-liquid chamber inner-housing, the second sealing structure forms a seal between a second end of the e-liquid chamber outer-housing and a second end of the e-liquid chamber inner-housing, the second end of the e-liquid chamber outer-housing defines at least one first e-liquid hole, and the e-liquid chamber outer-housing, the e-liquid chamber inner-housing, the first sealing structure, and the second sealing structure cooperatively define an e-liquid storage chamber.


