Atomizing Device Diversion Channel for Uniform Filler Mixing
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Solution Overview
Problem
Existing atomizing devices lack a specific diversion channel, leading to non-uniform mixing of atomized filler with outside air, resulting in significant concentration differences and poor user experience.
Innovation Solution
The atomizing device incorporates a diversion channel between the outer case and the atomizing component, ensuring fluid communication with the air inlet and outlet, featuring a connecting space, disc space, and cylindrical space, with protrusions and distribution channels to enhance gas mixing.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If atomizing equipment is used without a specific diversion channel, then the structure is simple, but the atomized filler is not easy to mix with outside air, resulting in significant concentration difference
Solution Approach 1:
The air outlet is divided into multiple ejection holes arranged in different directions, segmenting the smoke ejection into multiple streams. This segmentation allows better mixing with surrounding air and eliminates the concentration difference problem while maintaining structural simplicity.
2Stability of the object's composition
If a diversion channel is added to improve mixing, then concentration uniformity improves, but device complexity increases
Solution Approach 1:
The outer case serves multiple functions: it provides structural enclosure, forms the diversion channel for air flow control, and incorporates the air outlet with multiple ejection holes. This multi-functionality achieves uniform concentration distribution without adding separate dedicated components.
Solution Approach 2:
The ejection holes are arranged in different spatial directions (upward, sideways, downward), adding dimensional diversity to the smoke ejection. This multi-directional arrangement enhances mixing with ambient air from various directions, achieving uniform concentration without complex internal channels.
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 design allows for uniform mixing of air with atomized filler, improving user experience by ensuring sufficient kinetic energy and consistent concentration of the smoke output.
Implementation Method 1
The air inlet, the diversion channel, and the air outlet are in fluid communication to each other
Implementation Method 2
the atomizing component can atomize the filler in the silo to simulate the smoke of traditional cigarettes
Data Source
AI summary
The present disclosure provides an atomizing device including an outer case and an atomizing component. The outer case has an air inlet. The atomizing component is disposed in the outer case. Wherein, the atomizing component and the outer case jointly form an air outlet, and the air outlet is located on one side of the atomizing component away from the air inlet. Wherein, a diversion channel is formed between the outer case and the atomizing component. The diversion channel surrounds the atomizing component. The air inlet, the diversion channel, and the air outlet are in fluid communication to each other. The gas entering the atomizing device through the diversion channel may have greater kinetic energy, so as to be uniformly mixed with the atomized filler. The evenly mixed smoke may effectively improve the user experience.


