Display Splicing Component for Seamless Panel Alignment
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Solution Overview
Problem
Existing display screen splicing technologies face inefficiencies in mounting and often result in visible joints, requiring complex alignment and connection processes for multiple display modules.
Innovation Solution
A splicing component with a first and second splicing part, each equipped with through holes and positioning structures, allows for precise alignment and connection via a connecting part, ensuring seamless splicing without visible joints through tenon-and-mortise structures or threaded connections.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Area of stationary object
If traditional splicing methods are used with multiple display modules, then the display area can be increased, but visible splicing joints and complex alignment processes are created
Solution Approach 1:
The patent extracts the splicing joint structure from the display module assembly, using a dedicated splicing component with positioning structures that separate the alignment function from the display modules themselves. This allows the display modules to focus on their primary function while the splicing component handles the complex alignment and connection tasks, reducing overall system complexity.
Solution Approach 2:
The splicing component acts as an intermediary element between adjacent display modules. It includes positioning structures that engage with both modules to achieve precise alignment and eliminate visible joints. This intermediary structure simplifies the splicing process by providing a standardized interface that automatically guides alignment during installation.
2Shape
If ultra narrow bezel designs are implemented to reduce visible joints, then the aesthetic quality improves, but the structural stability and ease of assembly deteriorate
Solution Approach 1:
The patent moves the alignment and connection functions from the lateral dimension (bezel area) to the depth dimension (through-hole positioning). The positioning structures extend through the thickness of the splicing component, providing stable mechanical engagement that ensures accuracy without requiring wide bezels. This dimensional transition allows narrow bezels while maintaining assembly ease through precise through-hole alignment.
Solution Approach 2:
The splicing component is pre-configured with positioning structures and through holes during manufacturing, establishing precise geometric relationships before installation. This preliminary preparation ensures that when the component is installed between display modules, the alignment is automatically achieved without requiring complex field adjustments or specialized assembly tools, thereby maintaining ease of operation despite narrow bezel constraints.
3Manufacturing precision
If precise alignment structures are added to eliminate splicing joints, then the manufacturing precision improves, but the device complexity increases
Solution Approach 1:
The patent combines multiple functions (alignment, positioning, connection, and stabilization) into a single integrated splicing component. The positioning structures and through holes work together as a unified system to achieve precise alignment while eliminating the need for separate alignment devices or multiple adjustment mechanisms. This functional integration maintains manufacturing precision without proportionally increasing device complexity.
Solution Approach 2:
The splicing component is designed as a universal interface that can be applied to various display module configurations. The positioning structures and through holes serve multiple purposes: guiding alignment during installation, providing mechanical connection points, and ensuring stable positioning during operation. This multi-functionality reduces the need for additional specialized components, thereby controlling overall device complexity while achieving high alignment precision.
Data Source
AI summary
A splicing component and a spliced display screen are provided. In the splicing component provided by the embodiments of the present disclosure, splicing panels are aligned and preliminarily spliced through a first positioning structure and a second positioning structure. A first splicing part and a second splicing part are then connected through a connecting part. Therefore, a plurality of splicing panels are efficiently and seamlessly spliced through the splicing component. The splicing component provided by the embodiment of the present disclosure improves the mounting efficiency of a spliced display screen and simplifies the mounting mode.


