Motor-Driven Swing Rod for Solo Dodge Training
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Solution Overview
Problem
Existing fighting training devices require human cooperation for effective dodge training and lack the ability to simulate dynamic kicking or punching movements, making them inefficient for solo training.
Innovation Solution
A fighting self-training device comprising a housing with a rotatable turntable and swing rod, controlled by a motor and microprocessor, which simulates kicking or punching motions, along with a limiting mechanism and soft body to prevent injury, allowing for adjustable height and realistic training scenarios.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If existing fighting training devices are used, then training cost is reduced, but the ability to simulate dynamic kicking or punching movements is lost
Solution Approach 1:
The patent applies the dynamics principle by implementing a motor-driven swing rod mechanism that can dynamically simulate various kicking and punching movements. The swing rod rotates and swings to mimic realistic combat motions, transforming a static training device into a dynamic one capable of adapting to different training scenarios without requiring human operators.
2Reliability
If human cooperation is used for dodge training, then training effectiveness is improved, but training cost increases
Solution Approach 1:
The patent implements the self-service principle by creating an autonomous training device that operates independently without requiring human partners. The motor-controlled swing rod automatically performs attacking movements, and the system can self-regulate through the limiting mechanism and sensor feedback, enabling fighters to conduct effective dodge training alone while eliminating the need for additional human trainers or sparring partners.
Solution Approach 2:
The patent applies the feedback principle through sensors that detect the fighter's dodging actions and provide real-time feedback to the control system. This allows the training device to adjust its movements and provide meaningful training resistance, ensuring training effectiveness while operating autonomously without human intervention.
3Device complexity
If existing training devices are used, then device complexity is reduced, but the ability to provide realistic training scenarios is lost
Solution Approach 1:
The patent applies the universality principle by designing a multi-functional training device that can simulate various types of attacks (kicking, punching) and adapt to different training scenarios. The swing rod mechanism can be programmed to perform multiple movement patterns, and the limiting mechanism with adjustable constraints provides versatile training resistance, allowing one device to replace multiple specialized training tools.
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
Enables solo fighters to train their dodging skills effectively by simulating kicking and punching motions, reducing training costs and enhancing their overall fighting abilities without the need for human assistance.
Implementation Method 1
a gear is driven by a motor
Implementation Method 2
a soft body is provided on the swing rod
Data Source
AI summary
The present application provides a fighting self-training device. The adopted technical solution is that a turntable is arranged on the housing, and a swing rod is arranged on the turntable. By controlling the motor to drive the swing rod to rotate, the tilted downward swing rod can be rotated upward from the bottom. When the swing rod is rotated to the highest position, the swing rod is flush with the bottom surface. The rotation of the swing rod simulates the kicking or punching of the training personnel, so as to realize the dodge training of the fighters. A left and right belts are arranged on the housing, and a limiting mechanism is arranged between the left and right belts, and the left and right belts can be connected through the limiting mechanism, so that the height of the device from the ground can be adjusted.


