Rotating Atomization Assembly for Compact Multi-Flavor Aerosol Storage
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Solution Overview
Problem
The existing multi-flavor electronic atomization devices suffer from a low utilization rate of liquid storage space due to the large space occupied by the rotating structure, which includes a screw engaged with the central shaft and rotates horizontally.
Innovation Solution
The device incorporates a rotating assembly with a rotating seat and a fixed seat that can rotate relative to each other, allowing the atomization assembly to rotate relative to a supporting assembly, thereby reducing the occupied space and improving space utilization.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a traditional rotating structure with screw and central shaft is used, then the device can achieve multi-flavor atomization, but the rotating structure occupies large space leading to low liquid storage space utilization
Solution Approach 1:
The rotating seat is nested within the fixed seat, with the rotating seat's outer wall fitting inside the fixed seat's inner cavity. This nested arrangement allows the rotating assembly to occupy minimal space while maintaining the multi-flavor atomization function, directly resolving the contradiction between versatility and space utilization.
Solution Approach 2:
The patent transitions from a horizontal rotation mechanism (occupying radial space) to a vertical rotation mechanism where the rotating seat rotates within the fixed seat's vertical cavity. This dimensional change allows rotation functionality to be achieved without compromising the liquid storage volume, effectively resolving the space utilization issue.
2Volume of stationary object
If a compact rotating assembly is used to improve space utilization, then liquid storage space increases, but the reliability and ease of rotation may be compromised
Solution Approach 1:
The rotating seat is designed with rotational freedom within the fixed seat, allowing dynamic movement between different angular positions. This dynamic capability ensures reliable rotation for multi-flavor selection while maintaining compact dimensions, resolving the contradiction between space utilization and rotation reliability.
Solution Approach 2:
The rotating assembly is segmented into the rotating seat and fixed seat as separate but cooperating components. The rotating seat contains the atomization cores and can independently rotate within the fixed seat's guiding cavity, ensuring reliable rotation while maximizing liquid storage space in the lower portion of the device.
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 rotating assembly design effectively reduces the occupied space, enhances the space utilization rate, and allows for more efficient use of the liquid storage space while maintaining reliability and ease of rotation.
Implementation Method 1
The atomization assembly is configured to heat and atomize a substance to form an aerosol
Implementation Method 2
heat and atomize a substance to form an aerosol
Data Source
AI summary
The application provides an electronic atomization device including an atomization assembly and a rotating assembly. The atomization assembly is configured to heat and atomize a substance to form an aerosol and includes an upper housing. The rotating assembly is arranged at an end of the upper housing and includes a rotating seat and a fixed seat. The rotating seat and the fixed seat are capable of rotating relative to each other. The rotating seat is fixedly attached to the upper housing. The rotating seat and the fixed seat are sleeved together. The fixed seat is configured to be fixedly attached to a supporting assembly, so that the atomization assembly is capable of rotating relative to the supporting assembly.


