Battery Bracket Airflow Channel Layout for Sensitive Atomization Sensing
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Solution Overview
Problem
The existing atomization apparatuses have a large airflow channel that occupies significant space, affecting structural optimization and reducing the sensitivity of the airflow sensor, leading to poor working performance.
Innovation Solution
The atomization apparatus is redesigned with a starting pipeline integrated into the battery bracket's accommodating slot, allowing the airflow sensor to be positioned near the charging end, reducing the internal space required and improving air tightness, thus enhancing the sensitivity and performance.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If a traditional airflow channel is used, then the airflow sensor can sense air pressure, but the airflow channel occupies a large space inside the atomization apparatus, affecting structural optimization
Solution Approach 1:
The patent merges the airflow channel with the battery bracket by integrating the starting pipeline into the accommodating slot of the battery bracket. This integration allows the airflow sensor to be positioned within the battery bracket structure, eliminating the need for a separate, space-consuming airflow channel, thus resolving the contradiction between sensing capability and space occupation.
2Measurement precision
If a traditional airflow channel is used, then the airflow sensor can sense air pressure, but the airflow channel is poor in air tightness, reducing sensing sensitivity
Solution Approach 1:
By integrating the starting pipeline into the battery bracket's accommodating slot, the patent creates a unified structure that eliminates leakage paths between the airflow channel and external environment. The battery bracket structure naturally provides sealing for the starting pipeline, improving air tightness and thus sensing sensitivity.
3Measurement precision
If the airflow sensor is positioned in a traditional airflow channel, then sensing can be achieved, but the internal space of the atomization apparatus is not optimized
Solution Approach 1:
The battery bracket is designed to serve multiple functions: it accommodates the battery, provides structural support, and integrates the airflow channel through the accommodating slot. This multi-functionality eliminates the need for separate dedicated airflow channel components, simplifying the overall structure and optimizing space utilization while maintaining sensing functionality.
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 optimized structure frees up space for better component arrangement, improves air tightness, and enhances the airflow sensor's sensitivity, resulting in improved working performance.
Implementation Method 1
an airflow sensor, disposed in the housing and capable of sensing an air pressure in the starting pipeline
Data Source
AI summary
The present application provides an atomization apparatus, which includes: a housing; an air inlet channel, disposed in the housing and communicated with an exterior of the housing; a battery bracket, disposed in the housing and provided with an accommodating slot; a starting pipeline, disposed in the accommodating slot, one end of the starting pipeline being an opening end communicated with the air inlet channel; and an airflow sensor, disposed in the housing and capable of sensing an air pressure in the starting pipeline. According to the above-mentioned atomization apparatus, the starting pipeline no longer occupies an internal space of the housing alone, thereby enabling the atomization apparatus to have a larger remaining space to more reasonably arrange other components, and enabling a structure to be optimized.


