Vaporizer Magnetic Electrode Assembly for Easier Core Connection
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Solution Overview
Problem
Existing vaporizers face high assembly difficulty and a complicated process due to the complex manner in which the electrode of the vaporization core passes through to be electrically connected to the body component.
Innovation Solution
The vaporizer incorporates magnetic electrodes that are assembled in electrode holes to establish electrical connections with electrode wires, simplifying the assembly process by eliminating the need for the electrode to pass through the vaporizer exterior.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If the electrode passes through the vaporizer exterior to be electrically connected to the body component, then electrical connection is achieved, but the assembly difficulty increases and the process becomes complicated
Solution Approach 1:
The patent combines the electrical connection function with the magnetic field interaction by integrating the electrode wire within the vaporization core structure. The magnetic electrodes on opposite sides of the base establish electrical connection through the vaporization core without requiring the electrode to pass through the vaporizer exterior, thus simplifying the assembly process while maintaining reliable electrical connection.
Solution Approach 2:
The vaporization core acts as an intermediary structure that carries the electrode wire between the magnetic electrodes. This intermediary structure enables electrical connection without requiring the electrode to traverse the entire vaporizer assembly, reducing assembly complexity while ensuring reliable electrical connectivity.
2Reliability
If the electrode passes through the vaporizer exterior, then electrical connection is established, but assembly difficulty increases
Solution Approach 1:
The patent merges the electrical connection function with the magnetic field interaction system. The electrode wire is integrated within the vaporization core, and electrical connection is achieved through magnetic electrodes that interact with the vaporization core structure, eliminating the need for complex external routing and simplifying manufacturing assembly.
Solution Approach 2:
Instead of having the electrode pass through the vaporizer exterior from one side to the other, the patent inverts the approach by having magnetic electrodes on opposite sides of the base interact with the vaporization core internally. This inverted configuration simplifies assembly by eliminating external penetration requirements while maintaining electrical connectivity.
3Reliability
If the electrode passes through the vaporizer exterior, then electrical connection is achieved, but the process becomes complicated
Solution Approach 1:
The patent combines multiple functions into the vaporization core structure: it serves as both the vaporization chamber and the electrical connection pathway. The magnetic electrodes interact with the vaporization core to establish electrical connection without requiring separate external routing steps, thus reducing assembly time while ensuring reliable electrical connectivity.
Solution Approach 2:
The electrode wire is pre-integrated into the vaporization core structure before assembly. This preliminary integration eliminates the need for complex external routing and connection steps during final assembly, significantly reducing assembly time while maintaining reliable electrical connection.
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 simplification reduces assembly difficulty and improves efficiency by streamlining the mounting process of the vaporizer.
Implementation Method 1
a first magnetic electrode and a second magnetic electrode, wherein the first magnetic electrode is assembled in the first electrode hole
Data Source
AI summary
A vaporizer includes: a base having a first cavity, and, on a bottom wall of the base, a first electrode hole and a second electrode hole, both of which are in communication with the first cavity; a vaporization core mounted in the first cavity, the vaporization core including a first electrode wire and a second electrode wire; and a first magnetic electrode and a second magnetic electrode. The first magnetic electrode is assembled in the first electrode hole so as to be in contact with and press the first electrode wire against the base so that the first magnetic electrode is electrically connected to the first electrode wire. The second magnetic electrode is assembled in the second electrode hole so as to be in contact with and press the second electrode wire against the base so that the second magnetic electrode is electrically connected to the second electrode wire.


