Portable Gym Structure with Modular A-Frame Climbing Walls
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Solution Overview
Problem
Existing playground and climbing structures lack portability, variability, and appropriate sizing, leading to limited user appeal and safety concerns due to fixed installations and difficult disassembly.
Innovation Solution
A portable gym structure with variable configurability and sizing, featuring movable climbing walls that form an A-frame configuration with adjustable angles, lightweight polymer materials, and removable feet anchors for stability, allowing easy assembly and disassembly.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Stability of the object's composition
If playground and climbing structures are permanently fixed in the ground, then structural stability is improved, but portability deteriorates
Solution Approach 1:
The climbing structure is divided into separate modular components including climbing walls, base units, and feet anchors that can be independently assembled and disassembled. This segmentation allows the structure to be stable when assembled yet easily movable when disassembled, resolving the contradiction between structural stability and portability.
Solution Approach 2:
The structure incorporates dynamic elements such as removable feet anchors and adjustable climbing walls that transition between fixed and movable states. The feet anchors can be inserted into the ground to provide stability during use, then removed for portability, allowing the structure to adapt its stability characteristic based on operational needs.
2Ease of manufacture
If climbing structures have fixed height and configuration, then manufacturing simplicity is improved, but adaptability deteriorates
Solution Approach 1:
The climbing structure uses standardized modular components with uniform connection interfaces. Each climbing wall and base unit is manufactured to the same specifications, allowing simple mass production while enabling unlimited configuration possibilities through different arrangements of the same standardized parts.
Solution Approach 2:
The climbing walls are designed with universal connection points and standardized mounting mechanisms that allow them to be configured in multiple orientations and heights. The same climbing wall component can serve different functions depending on its position and orientation, providing adaptability without requiring multiple specialized parts.
3Reliability
If climbing structures are designed for outdoor permanent installation, then durability is improved, but ease of disassembly deteriorates
Solution Approach 1:
The structure incorporates pre-designed connection and disconnection mechanisms that are built into the modular components from manufacturing. The feet anchors include pre-formed insertion features, and the climbing walls have pre-positioned mounting points, allowing durable assembly without complex tools or procedures, and equally simple disassembly when needed.
4Strength
If structures use heavy materials for stability, then structural integrity is improved, but portability deteriorates
Solution Approach 1:
The climbing structure utilizes composite construction combining high-strength polymers and engineered materials that provide exceptional strength-to-weight ratios. The modular components maintain full structural integrity for safe climbing use while being lightweight enough for easy transport and repositioning, resolving the contradiction between strength and portability.
Data Source
AI summary
A portable gym structure that is light weight and allows variable arrangement is disclosed. The portable gym structure is comprised of climbing walls and feet anchors for stability. The portable gym structure has variable configurations for different ages and abilities. The portable gym structure includes climbing walls that can be used for a slide or can be interchanged to be a climbing wall with variable climbing pieces.


