Magnetic Resonance Imaging Connector with Adjustable Fastening
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Solution Overview
Problem
The existing connectors for magnetic resonance imaging systems are complex, leading to time-consuming and costly installation, as well as a risk of damage during assembly and disassembly, and high manufacturing costs due to their intricate structure.
Innovation Solution
A connector comprising a framework with a fastening structure, including a chute and a ball-socket joint, that simplifies installation by allowing adjustable positioning and reducing the number of required cradles, made from non-magnetic materials like aluminum or stainless steel, with a shock absorption layer to reduce noise.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If a complex connector structure is used to connect the housing and main body, then the connection stability is improved, but the installation time and device complexity increase
Solution Approach 1:
The connector is divided into distinct components: a framework with multiple cradles and a separate fastening structure. This segmentation allows each part to perform its specific function independently, simplifying the overall structure while maintaining connection stability through the distributed cradle arrangement.
Solution Approach 2:
The fastening structure is designed to move along the chute on the framework, providing dynamic adjustment capability. This allows the fastening structure to be positioned at different locations to secure the housing, enabling flexible installation while reducing the need for complex fixed positioning mechanisms.
2Manufacturing precision
If a complex connector structure is used to connect the housing and main body, then the connection precision is improved, but the installation time increases
Solution Approach 1:
The cradles are pre-positioned on the framework at specific locations to provide predetermined support points for the housing. This preliminary arrangement of support structures eliminates the need for complex real-time alignment during installation, ensuring precise positioning while reducing installation time.
Solution Approach 2:
The fastening structure moves along the chute to automatically find and secure at the appropriate position on the framework. This self-positioning mechanism eliminates the need for manual alignment adjustments, achieving precise installation quickly and independently.
3Strength
If a complex connector structure is used to connect the housing and main body, then the connection strength is improved, but the manufacturing cost increases
Solution Approach 1:
The connector is segmented into a framework with multiple cradles and a separate fastening structure, allowing each component to be manufactured independently using standard fabrication processes. This reduces manufacturing complexity and cost while maintaining overall connection strength through the distributed cradle arrangement.
Solution Approach 2:
The framework serves multiple functions: it provides structural support, guides the fastening structure via the chute, and positions multiple cradles to support the housing. This multi-functionality reduces the need for separate components, simplifying manufacturing and reducing costs while maintaining connection strength.
Data Source
AI summary
A connector and medical equipment are provided. The connector includes at least one framework and at least one fastening structure. The at least one connector is used to connect a main body and a housing. The at least one framework is arranged along the outside of the main body. The fastening structure is located on the at least one framework. The at least one fastening structure is used to connect the housing.


