Magnetic Electrode Vaporizer Assembly for Simpler Electrical Connections
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Solution Overview
Problem
The 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 a base with electrode holes, a vaporization core with electrode wires, and magnetic electrodes that are assembled in these holes for electrical connection, simplifying the assembly process by eliminating the need for the electrode to pass through to the outside.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If the electrode passes through to the outside for electrical connection, then electrical connection is achieved, but assembly difficulty increases and process becomes complicated
Solution Approach 1:
The magnetic electrode serves dual functions: it provides electrical connection through magnetic attraction and acts as a connector component. By combining the connection function with the electrical conduction function in a single component, the structure is simplified and assembly is made easier without requiring separate connection elements.
Solution Approach 2:
The patent replaces traditional mechanical electrical connections (such as welded electrodes or screw-connected wires) with a magnetic field-based connection system. The magnetic electrode generates magnetic force to attract and hold the vaporization core's electrode in place, providing both mechanical retention and electrical conduction without complex mechanical fastening mechanisms.
2Productivity
If the electrode passes through to the outside for electrical connection, then electrical connection is achieved, but assembly time increases
Solution Approach 1:
The magnetic electrode is pre-installed in the base with its magnetic pole positioned to attract the vaporization core's electrode. This preliminary positioning eliminates the need for time-consuming alignment and connection operations during final assembly, as the magnetic force automatically guides and secures the components in the correct positions.
Solution Approach 2:
By using magnetic field forces instead of manual mechanical connection operations, the assembly process is significantly accelerated. The magnetic attraction automatically performs the connection function that would otherwise require precise manual positioning and secure fastening, reducing assembly time while maintaining connection reliability.
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 simplifies the mounting process, reduces assembly difficulty, and improves efficiency by enabling direct electrical connections within the vaporizer.
Implementation Method 1
a first magnetic electrode and a second magnetic electrode, wherein the first magnetic electrode is assembled in a first electrode hole of the two electrode holes and in contact with the first electrode wire electrically connectable to the first electrode wire
Data Source
AI summary
A vaporizer includes: a base having a first cavity, and, on a bottom wall of the base, two electrode holes in communication with the first cavity; a vaporization core having a first electrode wire and a second electrode wire and mounted in the first cavity; and a first magnetic electrode and a second magnetic electrode. The first magnetic electrode is assembled in a first electrode hole of the two electrode holes and in contact with the first electrode wire electrically connectable to the first electrode wire. The second magnetic electrode is assembled in a second electrode hole of the two electrode holes and in contact with the second electrode wire electrically connectable to the second electrode wire.


