Splicing Assembly With Multi-Directional Screen Seam Adjustment
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Solution Overview
Problem
Existing splicing screen technologies require professional personnel and tools for on-site installation, leading to low installation efficiency due to the complexity of adjusting multiple screens with limited adjustment angles and low accuracy.
Innovation Solution
A splicing assembly comprising a support frame, a connecting piece with a connecting plate and an adjusting part, and an adjusting piece with a first adjustment module, which includes a first support block and a first support pillar, allowing for precise adjustment of splicing panels in multiple directions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Manufacturing precision
If professional personnel use professional tools for on-site installation, then splicing accuracy can be ensured, but installation complexity increases and installation efficiency decreases
Solution Approach 1:
The adjustment device is segmented into multiple independent adjustment modules, each responsible for a specific adjustment function. This modular design allows professional accuracy to be achieved through specialized components while simplifying the overall installation process through standardized interfaces and independent operation of each module.
Solution Approach 2:
The adjustment device incorporates self-aligning features and intuitive adjustment mechanisms that reduce the need for complex professional tools and extensive expertise. The design enables installers to perform adjustments more independently and with simpler equipment while maintaining splicing accuracy.
2Manufacturing precision
If workers repeatedly confirm the position of the screens, then splicing accuracy can be ensured, but installation time increases
Solution Approach 1:
The adjustment device incorporates feedback mechanisms such as position indicators, alignment marks, and mechanical stop features that provide real-time information about screen position and alignment status. This immediate feedback eliminates the need for repeated manual confirmation by workers, maintaining accuracy while significantly reducing installation time.
Solution Approach 2:
The device includes pre-configured alignment features and preset position stops that establish correct screen positions before installation is complete. These preliminary actions guide the installation process and reduce the need for iterative adjustments and repeated confirmations during installation.
3Device complexity
If the splicing adjustment angle is limited, then device complexity is reduced, but adjustment accuracy decreases
Solution Approach 1:
The adjustment capability is segmented into multiple independent adjustment modules, each providing a specific adjustment function (e.g., horizontal adjustment, vertical adjustment, angular adjustment). This segmentation allows for precise multi-dimensional adjustment while keeping each individual module relatively simple in design.
Solution Approach 2:
The device transitions from single-angle adjustment to multi-dimensional adjustment by incorporating adjustment modules that operate in different spatial dimensions. This enables comprehensive screen positioning and alignment accuracy through adjustments in multiple directions rather than being limited to a single adjustment angle.
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 splicing assembly enables efficient and quick adjustment of splicing panels, improving the accuracy of splicing seam adjustments and enhancing the overall installation efficiency of splicing display screens.
Implementation Method 1
the first support pillar is screwed with the first support block
Implementation Method 2
the adjusting part is screwed with the connecting plate
Data Source
AI summary
A splicing assembly and a splicing display screen are disclosed. A first adjustment module includes a first support block and a first support pillar. The first support block is slidably connected to a support frame along a first direction. The first support pillar passes through the first support block and a connecting plate in sequence along a second direction. The first support pillar is screwed with the first support block, and the connecting plate is hung on the first support pillar. An adjusting part passes through the connecting plate along a third direction and abuts against the first support pillar, and the adjusting part is screwed with the connecting plate.


