Liquid Storage Body Mounting Structure for Vaporizer Positioning
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Solution Overview
Problem
Existing electronic vaporization devices lack an effective mounting and positioning mechanism for the vaporization body within the liquid storage body, leading to inaccurate placement and potential inefficiencies in liquid substrate utilization and aerosol generation.
Innovation Solution
A liquid storage body with a mounting structure that divides the housing into a liquid storage cavity and a mounting cavity, featuring a vent tube and liquid discharging openings to facilitate accurate positioning and efficient liquid flow, ensuring the vaporization body is securely mounted and positioned for optimal vaporization.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If a run-through structure is used for the liquid storage cavity and mounting cavity, then the device structure is simple, but the vaporization body cannot be securely mounted and positioned
Solution Approach 1:
The liquid storage body is segmented into distinct functional regions: the liquid storage cavity for accommodating liquid substrate and the mounting cavity for securing the vaporization body. This segmentation allows each cavity to perform its specific function effectively while maintaining an integrated structure that avoids excessive complexity.
Solution Approach 2:
A partition wall is introduced as an intermediary structure between the liquid storage cavity and the mounting cavity. This partition wall serves as a mediator that defines the boundaries of each cavity, ensures proper positioning of the vaporization body, and facilitates liquid flow from the liquid storage cavity to the mounting cavity through controlled openings.
2Device complexity
If no mounting structure is provided, then the device structure is simple, but the vaporization body placement is inaccurate
Solution Approach 1:
The mounting cavity is pre-formed within the liquid storage body with specific geometric features that guide and constrain the vaporization body during assembly. This preliminary structuring ensures accurate placement of the vaporization body before operation begins, eliminating the need for complex adjustment mechanisms.
Solution Approach 2:
The mounting cavity is designed with localized structural features such as protrusions, recesses, or specific wall thicknesses that provide precise positioning for the vaporization body. These local quality variations within the mounting cavity enable accurate placement without requiring complex overall structural modifications.
3Device complexity
If liquid flow path is not optimized, then the device structure is simple, but liquid substrate utilization efficiency is reduced
Solution Approach 1:
The liquid flow path is designed to be continuous and unobstructed, with the liquid discharging opening providing a direct pathway from the liquid storage cavity to the mounting cavity. This continuous flow ensures that liquid substrate is constantly supplied to the vaporization body, maximizing utilization efficiency without requiring complex pumping or reservoir systems.
Solution Approach 2:
The liquid discharging opening is positioned to utilize gravitational flow by creating a downward slope or vertical drop from the liquid storage cavity to the mounting cavity. This dimensional arrangement allows liquid to flow naturally under gravity, improving flow efficiency without adding mechanical complexity.
Data Source
AI summary
A liquid storage body for a vaporizer includes: a liquid storage housing; a mounting structure arranged in the liquid storage housing for mounting and positioning a vaporization body, the mounting structure dividing a space inside the liquid storage housing into a liquid storage cavity located at an upper portion for accommodating a liquid substrate, and a mounting cavity located at a lower portion for accommodating the vaporization body; and at least one liquid discharging opening communicating the liquid storage cavity with the mounting cavity.


