Supporting device
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Solution Overview
Problem
Existing supporting devices with ventilation holes compromise structural strength and do not efficiently dissipate heat from electronic apparatuses.
Innovation Solution
A supporting device with first and second brackets, each featuring ventilation hole structures, allowing alignment and communication for enhanced heat dissipation, and incorporating resilient members to manage displacement speeds for safety.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Temperature
If ventilation hole structures are arranged densely throughout the lateral walls of the outer rail portion and inner rail portion, then heat dissipation efficiency is improved, but structural strength deteriorates
Solution Approach 1:
The ventilation hole structures are divided into multiple parts (first part on the first wall, second part on the lateral wall) rather than being densely distributed throughout the entire lateral wall. This segmentation allows ventilation functionality to be maintained while preserving structural integrity in critical areas.
Solution Approach 2:
Ventilation holes are selectively positioned at specific locations (first wall and lateral wall intersection areas) rather than being uniformly distributed. This local quality approach ensures that heat dissipation occurs at strategically chosen positions while maintaining structural strength in other critical regions.
2Temperature
If ventilation holes are positioned to align between first and second brackets, then heat dissipation efficiency is improved, but manufacturing precision requirements increase
Solution Approach 1:
The ventilation hole structures of the first bracket and second bracket are designed to align and communicate with each other when mounted, creating a combined ventilation pathway. This merging of ventilation channels from both brackets enhances heat dissipation efficiency while the alignment is achieved through the mounting configuration rather than requiring extremely tight manufacturing tolerances.
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
Enhances heat dissipation efficiency while maintaining structural integrity and ensuring safe operation by managing displacement speeds.
Implementation Method 1
The at least one first ventilation hole structure and the at least one second ventilation hole structure are communicated with each other for dissipating heat generated from a predetermined portion of the electronic apparatus
Data Source
AI summary
A supporting device is provided and includes a first bracket, a second bracket, a first ventilation hole structure, and a second ventilation hole structure. The first bracket includes a first wall, a second wall and a lateral wall connected between the first wall and the second wall. The second bracket is displaceable relative to the first bracket along a longitudinal direction. The first ventilation hole structure is arranged on the first bracket and includes a first part arranged on the first wall of the first bracket and a second part arranged on the lateral wall of the first bracket. The second ventilation hole structure is arranged on the second bracket. When the second bracket is located at a predetermined position relative to the first bracket, the first ventilation hole structure is located at a position corresponding to the second ventilation hole structure.


