Dual-Loop Golf Trainer Adjustment for Different User Sizes
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Solution Overview
Problem
Existing golf trainers are limited by being adjustable with only one hand, cannot be freely adjusted, and are not adaptable to accommodate people of different ages and sizes, making them inconvenient for a broad range of users.
Innovation Solution
A golf trainer design featuring a first and second annular part connected by an adjusting member, allowing for independent adjustment of each part's length and tightness using both hands, accommodating various user sizes and ages.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If existing golf trainers use a fixed single-hand adjustment mechanism, then the structure is simple, but the adaptability to different users is poor
Solution Approach 1:
The adjustment mechanism is divided into two independent parts: a first adjustment mechanism for adjusting the first annular part and a second adjustment mechanism for adjusting the second annular part. Each mechanism can be operated independently, allowing different users to adjust the device according to their own size and requirements, thereby improving adaptability without requiring an overly complex integrated system
Solution Approach 2:
The device is designed with two annular parts that can both be adjusted, making it universally applicable to users of different ages and sizes. The dual adjustment mechanisms allow the same device to accommodate various hand sizes and training needs, achieving multi-functionality in terms of user accommodation
2Ease of operation
If existing golf trainers allow only single-hand adjustment, then the operation is simple, but the ease of operation for precise adjustment is reduced
Solution Approach 1:
The adjustment function is segmented into two separate mechanisms, each capable of being operated by one hand. This segmentation allows each mechanism to be optimized for ease of operation while maintaining a relatively simple structure, as each individual mechanism only needs to handle one aspect of the adjustment
Solution Approach 2:
The adjustment mechanisms are designed to be dynamically adjustable during use, allowing users to modify the annular parts' dimensions as needed. This dynamic capability enhances ease of operation for precise adjustment without requiring a completely complex reconfigurable structure
3Adaptability or versatility
If existing golf trainers have fixed annular part lengths, then the manufacturing is simple, but the adaptability to different user sizes is limited
Solution Approach 1:
The adjustment mechanism is divided into two independent parts: a first adjustment mechanism for adjusting the first annular part and a second adjustment mechanism for adjusting the second annular part. Each mechanism can be operated independently, allowing different users to adjust the device according to their own size and requirements, thereby improving adaptability without requiring an overly complex integrated system
Solution Approach 2:
The device allows changes in the dimensional parameters of the annular parts through the adjustment mechanisms. By modifying the length and circumference of the annular parts, the device can accommodate users of different ages and sizes, achieving adaptability through parameter variation
Data Source
AI summary
A golf trainer is disclosed comprising a first annular portion, a second annular portion, and an adjusting member. One end of the first annular portion passes through the adjusting member and is fixedly connected to the second annular portion. Another end of the first annular portion passes through the adjusting member and is movably connected to the adjusting member. One end of the second annular portion passes through the adjusting member and is fixedly connected to the first annular portion. Another end of the second annular portion passes through the adjusting member and is movably connected to the adjusting member. The adjusting member selectively changes the length of the first annular portion, and the adjusting member selectively changes the length of the second annular portion.


