Atomization Device With Independent Airflow Channels
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Solution Overview
Problem
The internal airflow channels of existing dual-flavor atomization devices are complex, leading to unstable airflow and difficulties in ensuring the atomization effect.
Innovation Solution
The atomization device features independent air inlet channels and microphones for each atomizer, reducing airflow complexity and improving stability by ensuring a fixed airflow direction.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If one air inlet channel is shared by two atomizers, then the device structure is simplified, but the airflow becomes unstable and atomization effect deteriorates
Solution Approach 1:
The patent divides the airflow system into two independent air inlet channels, with each channel dedicated to one atomizer. This segmentation eliminates airflow interference between the two atomizers, ensuring stable and reliable airflow for each atomization process while maintaining a relatively simple overall device structure.
2Device complexity
If one air inlet channel serves two atomizers, then the number of components is reduced, but the atomization effect becomes difficult to ensure
Solution Approach 1:
The patent implements separate air inlet channels for each atomizer, ensuring that each atomizer receives dedicated and controlled airflow. This segmentation allows for precise control of airflow parameters for each atomization process, thereby ensuring high atomization effect and quality without significantly increasing device complexity.
3Device complexity
If a single microphone senses airflow for both atomizers, then the sensing structure is simplified, but the airflow sensing accuracy decreases
Solution Approach 1:
The patent places one microphone in each air inlet channel, with each microphone dedicated to sensing airflow for its corresponding atomizer. This segmentation enables accurate and independent airflow detection for each atomizer, improving measurement precision while maintaining a simple and symmetric microphone arrangement that does not significantly increase device complexity.
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
This design enhances the stability of airflow and improves the atomization effect, while ensuring accurate airflow sensing by the microphones, thereby improving the overall performance of the device.
Implementation Method 1
a first microphone and a second microphone spaced apart from each other and mounted on the mounting bracket, the mounting bracket being provided with a first triggering hole and a second triggering hole that are independent from each other, two ends of the first triggering hole being in communication with a side of the first microphone and the first air inlet space, respectively, and two ends of the second triggering hole being in communication with a side of the second microphone and the second air inlet space, respectively
Implementation Method 2
the first atomizer being provided with a first atomization channel, the second atomizer being provided with a second atomization channel
Data Source
AI summary
An atomization device includes: a housing provided with a first air inlet hole and a second air inlet hole; a mounting bracket formed with a first air inlet duct in communication with the first air inlet hole and a second air inlet duct in communication with the second air inlet hole; a first atomizer provided with a first atomization channel and a second atomizer provided with a second atomization channel, a bottom portion of the first atomizer and a top portion of the mounting bracket enclosing a first air inlet space, a bottom portion of the second atomizer and the top portion of the mounting bracket enclosing a second air inlet space, the first atomization channel and the first air inlet duct being in communication with the first air inlet space, and the second atomization channel and the second air inlet duct being in communication with the second air inlet space.


