Dual Atomization Mechanisms for Adjustable Vapor Concentration
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Solution Overview
Problem
Existing atomization devices have a single atomization mechanism with limited functionality, failing to meet the diverse requirements of users for aerosol substrate atomization.
Innovation Solution
The atomization device incorporates two atomization mechanisms with different volumes and powers, allowing for multiple operating modes to achieve varying atomization effects and flavors, including independent operation and combined operation of the mechanisms.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a single atomization mechanism is used, then the device structure is simple, but the atomization effect is limited and cannot meet diverse user requirements
Solution Approach 1:
The atomization device is divided into two independent atomization mechanisms (first atomization mechanism and second atomization mechanism) with different volumes and power levels. Each mechanism can operate independently or together, allowing users to select different atomization effects based on their needs, thus resolving the contradiction between simplicity and versatility.
Solution Approach 2:
The device is designed to perform multiple atomization functions through two mechanisms with different characteristics. The first mechanism provides strong atomization power for high concentration vapor, while the second mechanism provides gentle atomization for low concentration vapor. This multi-functionality allows a single device to meet diverse user requirements without requiring multiple separate devices.
2Quantity of substance
If a large volume atomization mechanism is used, then the aerosol substrate storage capacity is increased, but the atomization power becomes excessive causing discomfort
Solution Approach 1:
The atomization function is segmented into two mechanisms with different volume and power characteristics. The first mechanism has large volume for high storage capacity but is used with controlled power to avoid excessive atomization. The second mechanism has small volume for low storage capacity but provides precise control for gentle atomization. This segmentation allows the system to achieve both high capacity and comfortable usage by selecting the appropriate mechanism for each scenario.
Solution Approach 2:
The system changes the operating parameters (power level, volume) by selecting different atomization mechanisms. When high storage capacity is needed, the first mechanism is activated with appropriate power control. When comfortable gentle atomization is needed, the second mechanism is activated. This parameter change strategy resolves the contradiction between storage capacity and comfortable usage.
3Object-affected harmful factors
If a small volume atomization mechanism is used, then the atomization power is controlled for comfort, but the aerosol substrate storage capacity is reduced
Solution Approach 1:
The atomization system is segmented into two mechanisms with different volume-power characteristics. The second mechanism provides comfortable controlled atomization for users who prefer gentle vapor, while the first mechanism provides high storage capacity for users who need prolonged usage. Both mechanisms coexist in the device, allowing users to select based on their specific comfort and capacity needs.
Solution Approach 2:
The device achieves multi-functionality by incorporating both small volume (comfort-oriented) and large volume (capacity-oriented) atomization mechanisms. This allows the single device to serve multiple user scenarios: comfortable gentle atomization when using the second mechanism, and high capacity prolonged usage when using the first mechanism, thus resolving the contradiction between comfort and storage capacity.
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 dual mechanism design enhances user experience by providing adjustable vapor concentration and flavor changes, reducing waste and discomfort, and improving overall usability.
Implementation Method 1
a heating element configured to heat the aerosol substrate in the atomization chamber to atomize the aerosol substrate
Data Source
AI summary
An atomization device is provided. The atomization device includes an outer housing, a first atomization mechanism and a second atomization mechanism. The first atomization mechanism and the second atomization mechanism are both disposed in the outer housing. The first atomization mechanism and the second atomization mechanism are configured to store and atomize an aerosol substrate. The volume of the first atomization mechanism is greater than the volume of the second atomization mechanism. The atomization device is configured to have at least two operating modes. In each of the at least two operating modes, the atomization power of the first atomization mechanism is greater than the atomization power of the second atomization mechanism.


