Shifting Shaft Mechanism With Off-Centre Plates for Gravity Torque
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Current gravitation engines require additional energy to start and maintain operation due to friction and energy losses, failing to harness the unlimited potential of gravitational force for energy production.
Innovation Solution
A shifting shaft mechanism with camshafts, mobile support wheels, and fixed plates that utilize the gravitational force to generate energy by creating an imbalance and kinetic motion, allowing the shaft to rise and fall within off-centre fixed plate openings, connected to a hub with a rotating wheel and weight, optimizing energy production.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Power
If a wheel is used in current gravitation engines to produce torque, then energy is created from gravitational force, but the energy needed to start and keep the wheel moving plus friction on the parts overcomes the force of gravity and does not create additional energy
Solution Approach 1:
The patent applies dynamics by making the shaft position variable rather than fixed. The shaft shifts position within the fixed plate opening as weights move, dynamically adjusting the mechanical advantage throughout the rotation cycle. This dynamic positioning allows the system to optimize torque production at different phases of operation, enabling gravitational force to overcome friction losses and produce net energy.
2Productivity
If additional energy is input to keep the wheel moving, then the wheel continues to rotate, but the system does not produce more energy than consumed
Solution Approach 1:
The patent applies preliminary action through the camshaft mechanism that预先 positions the shaft at optimal locations during the rotation cycle. The camshaft profile is designed to advance the shaft position in anticipation of the weight's movement, ensuring that gravitational force is always acting at the most effective point. This preliminary positioning action allows the system to maintain continuous operation while producing more energy than consumed by minimizing the energy needed to overcome friction.
3Power
If the shaft is fixed in position, then the structure is simple, but the mechanism cannot optimize energy production from gravitational force
Solution Approach 1:
The patent applies the nesting principle by placing the shaft within the fixed plate opening, allowing it to move freely within a constrained space. The shaft is nested within the structural framework of the fixed plates and camshaft mechanism, enabling complex motion (shifting and rotation) without requiring a completely complex external structure. This nested arrangement achieves optimized energy production while maintaining relatively simple overall device structure.
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
The mechanism generates excess energy over the input required to keep the system running, enabling a gravitation engine to produce energy efficiently by leveraging the consistent force of gravity, with adjustable positions for enhanced power and speed.
Implementation Method 1
the camshaft rotates with the shaft, the mobile support wheel rotates counter to it... as it rotates counter to the mobile support wheel the shaft will rise and fall within the off-centre fixed plate opening
Data Source
Figure 1
Figure 2
Figure 3
AI summary
The present invention is a shifting shaft mechanism which may be used with a gravitation engine to enable the gravitation engine to utilize the force of gravitation. The shifting shaft mechanism comprises a shaft, on each side of which shaft is at least one camshaft rotatably connected to the shaft and positioned between at least two fixed plates connected to each other, each of which fixed plates has an off-centre fixed plate opening through which the shaft passes through, and a mobile support wheel rotatably connected to the fixed plates that abuts the camshaft, and wherein when the camshaft rotates with the shaft, the mobile support wheel rotates counter to it. In an embodiment of the shifting shaft mechanism of the present invention, the each side of the shaft has two camshafts, three fixed plates, and two mobile support wheels.