Unit force device
By designing a unit force device based on air pressure and mechanical structure, clean and environmentally friendly power output is achieved, solving the energy shortage and high cost problems of traditional power devices, and is applied in the fields of transportation and power generation.
Patent Information
- Application Number
- CN202510198109.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2025-09-30
AI Technical Summary
Traditional power plants have problems of energy shortage, environmental pollution and high maintenance costs, and there is a lack of power plants with simple structure, high efficiency and environmental protection.
A unit force device based on air pressure and mechanical structure is designed. Force conversion and power output are achieved through the interaction between the slide and the connecting rod. The concave shell is driven by air pressure or spring force, and energy conversion is performed in combination with a generator.
It provides a clean, cheap and sustainable power source, suitable for transportation and power generation, reduces environmental pollution and maintenance costs, and has broad application prospects.
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Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of power devices, specifically a unit force device based on a unique mechanical structure and force conversion principle, which can be applied to fields such as power generation, energy conversion and driving of related mechanical equipment. Background Art
[0002] In today's energy and power landscape, traditional power devices face numerous limitations. For example, fossil fuel-powered engines face energy shortages and environmental pollution, while some power equipment relying on complex electrical or hydraulic systems is not only expensive but also difficult to maintain. Therefore, there is an urgent need to develop a power device that is simple in structure, efficient, environmentally friendly, and low in cost. Currently, there are no unit force devices similar to the present invention that cleverly combine air pressure and mechanical structure, and they are expected to bring new solutions to the power sector. Summary of the Invention
[0003] (1) Purpose of the invention The present invention aims to provide a unit force device that, through innovative mechanical structure design and force conversion method, can achieve stable power output and meet the power needs in different scenarios. In particular, it provides a clean, cheap and sustainable energy power option that can be applied to transportation, power generation and other fields.
[0004] (II) Technical solution: Solution 1: The structure consists primarily of a concave housing, slides, and connecting rods. A slide is mounted at each end of the concave housing, allowing for vertical sliding, and two slides are positioned in the middle. Air pressure is applied between the slides and the concave housing, and between the slides. The two slides are also pressurized, and the two slides are connected by a connecting rod. Working Principle: When the air pressure between the sliding plates reaches a sufficient level, the plates slide sideways. The force generated by this sliding motion is transmitted through the connecting rod. Based on this force transmission and conversion, the connecting rod at the other end compresses the air pressure between the sliding plate and the concave housing, increasing this pressure and, in turn, driving the concave housing to move, achieving force conversion and power output.
[0005] Option 2: The structure consists of a concave shell, a sleeve with a slot, a slide, a connecting rod, and a spring. The sleeve with a slot is fixed to the bottom of the concave shell. There are two slides on the left and right of the sleeve. The concave shell has a slide at each end that can slide up and down. The concave shell also has connecting rods at both ends that can contact the slides. A spring is installed in the sleeve, and its two ends are connected to the slides on the sleeve that can slide left and right and up and down, respectively. Working principle: When the slide on the sleeve slides due to external force and compresses the spring, the elastic force generated by the spring will act on the slides at both ends that can slide up and down. These slides then transmit the force to the connecting rod, and finally drive the concave shell to move, completing the generation and transmission of power.
[0006] (III) Beneficial Effects: Clean and environmentally friendly: Compared with power devices that rely on fossil fuels, if the present invention uses clean energy such as air pressure as a power source, it will not produce pollutants during operation and is environmentally friendly. Cost advantage: The structure is relatively simple, the required parts are relatively common, the manufacturing and maintenance costs are low, and it has high economic feasibility. Wide range of applications: It can be used as a power source for a variety of equipment, such as driving vehicles in the transportation field, and driving generators in the power generation field to generate electricity and power systems such as lighting and energy storage. It has broad application prospects. DETAILED DESCRIPTION 1. Implementation steps of Plan 1: Device assembly: First, fix the concave shell on a suitable foundation. Then install the two sliding slides that can slide up and down and the middle sliding slide that can slide left and right respectively, ensuring that the slides can slide flexibly in the corresponding directions. Then install the connecting rod to achieve a stable connection between the vertical sliding slide and the left and right sliding slide. Finally, use suitable inflation equipment to fill the space between the vertical sliding slide and the concave shell, and between the left and right sliding slides with an appropriate amount of air pressure to achieve the initial air pressure state required by the design. Operation: Increase the air pressure between the left and right sliding slides through an external control system or equipment. When the air pressure increases to a level sufficient to overcome resistance such as friction between the slide and related components, the left and right sliding slides will slide to both sides. At this time, observe and monitor the force transmitted by the connecting rod, as well as the changes in air pressure between the vertical sliding slide and the concave shell, to ultimately achieve the movement of the concave shell. Parameters such as air pressure can be adjusted according to actual needs to optimize the power output effect.
[0007] 2. Implementation steps of Option 2: Device assembly: First, firmly fix the sleeve with the slot to the bottom of the concave shell. Then install the left and right slides on the sleeve into the slots to ensure that they can slide left and right smoothly. Then install the slides that can slide up and down at both ends of the concave shell, and connect the connecting rod so that the connecting rod can effectively contact the slides that slide up and down. Finally, accurately connect the two ends of the spring to the slide that can slide left and right and the slide that can slide up and down on the sleeve respectively, to ensure that the spring is firmly installed and has normal elastic properties. Operation: Apply external force to the slide on the sleeve to make it slide left and right and compress the spring. The elastic force generated by the compression of the spring will act on the slide that can slide up and down, driving the concave shell to move through the connecting rod. During operation, the elastic coefficient of the spring, the mass and size of the slide and other parameters can be adjusted according to actual conditions to obtain ideal power output and movement performance.
[0008] 3. Implementation Method for Integration with Generators. Install the unit force device tangentially to the inner circumference of the generator handwheel according to the design requirements. Ensure a secure installation and smooth transmission at the connection points. Start the unit force device, causing it to move the handwheel in a circular motion. By monitoring the generator's power generation parameters, such as voltage and current, adjust the unit force device's operating parameters to achieve stable and efficient power generation, providing power support for electrical devices such as lighting and battery charging. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Figure 1-1 It is the unit force principle diagram; Figure 1-2 It is the unit force analysis diagram; Figure 1-3 It is the unit force structure diagram; Figure 2 It is the plan view of unit force scheme 2; Figure 3 It is a simplified diagram of a generator; Figure 4 It is the diagram of the combination of the generator handwheel and the unit force. The plan is the same Figure 1-1 、 1-2 As shown in 1-3, a slide plate is placed at each end of a concave shell, which can slide up and down, and two slide plates are placed in the middle, which can slide left and right. The slide plates that can slide up and down and the slide plates that can slide left and right are connected by a connecting rod. There is air pressure between the slide plates that can slide up and down and the concave shell, and there is air pressure between the slide plates that can slide left and right. When the air pressure between the slide plates that slide left and right increases sufficiently and slides to both sides to act on the connecting rod, will the connecting rod at the other end compress the air pressure between the slide plates that can slide up and down and the concave shell to increase and drive the concave shell. (1) Unit force principle: According to Newton's third law, the action of forces is mutual. Forces will generate an equal and opposite collinear force, and the unit force is to transform a pair of opposite interaction forces in the horizontal direction into a pair of resultant forces in the same direction in the vertical direction through the connecting rod. Figure 1-2 Force analysis, as shown in the figure, shows four movable slides within a concave housing. The horizontal and vertical slides are connected by connecting rods, and air pressure is applied between the horizontal slides and between the vertical slides and the concave housing. When the air pressure is high enough, it can overcome friction and gravity, driving the concave housing to move. Figure 1-3 The connecting rod is a crankshaft or a straight rod, and the power is provided by air pressure, spring force, or the thrust of a telescopic rod. When the power is greater than the friction and gravity, the concave shell can be driven to move. (2) Application: Using unit force as power to convert kinetic energy into electrical energy. For example, unit force + generator + light bulb / battery for lighting. Used to provide power systems for trains or aviation. (3) Significance: It is a clean, cheap and sustainable energy source. It can be used for transportation and transport. Option 2 Figure 2 、 Figure 3 、 Figure 4 As shown, there is a concave shell, a sleeve with a slot fixed to the bottom of the concave shell, a slide on each side of the sleeve, and a slide that can slide up and down at each end of the concave shell. There is a connecting rod at both ends of the concave shell that can contact the slides that can slide up and down. There is a spring inside the sleeve with both ends connected to the slide that can slide left and right and the slide that can slide up and down on the sleeve. When the slide on the sliding sleeve compresses the spring, the slides that can slide up and down at both ends will be subjected to elastic force and act on the connecting rod to drive the concave shell. Install the unit force on the generator (such as Figure 3 The tangent direction of the inner circumference of the handwheel can drive the handwheel to do endless circular motion, thus replacing manual power. Figure 4 Combination of unit forces and generator handwheel shown.
Claims
1. A unit force device, characterized in that: Including Option 1 structure or Option 2 structure: The first scheme has a concave housing with a vertically sliding slide at each end and two horizontally sliding slides in the middle. The vertically sliding slides and the horizontally sliding slides are connected by a connecting rod. Air pressure is maintained between the vertically sliding slides and the concave housing, and between the horizontally sliding slides. The second scheme includes a concave housing, a sleeve with a slot fixed to the bottom of the concave housing, a left and right slide on the sleeve, a vertically sliding slide at each end of the concave housing, a connecting rod at each end of the concave housing that contacts the vertically sliding slides, and a spring inside the sleeve that connects the horizontally sliding slides and the vertically sliding slides on the sleeve.
2. The unit force device according to claim 1, characterized in that In solution one, when the air pressure between the left and right sliding slides increases sufficiently so that they slide to both sides and act on the connecting rod, the connecting rod at the other end compresses the air pressure between the up and down sliding slide and the concave shell, thereby driving the concave shell.
3. The unit force device according to claim 1, characterized in that In the second solution, when the slide plate on the sliding sleeve compresses the spring, the slide plates that can slide up and down at both ends are subjected to elastic force and act on the connecting rod to drive the concave shell.
4. The unit force device according to claim 1, characterized in that The air pressure between the slide plate capable of sliding up and down and the concave shell and between the slide plate capable of sliding left and right are adjustable.
5. The unit force device according to claim 1, characterized in that The elastic coefficient of the spring can be replaced and adjusted according to actual needs.
6. The unit force device according to claim 1, characterized in that The unit force device is installed in the tangential direction of the inner circumference of the generator handwheel to drive the handwheel to perform circular motion.
7. The unit force device according to any one of claims 1 to 6, characterized in that: The concave shell, slide plate, connecting rod and sleeve are made of materials whose strength and wear resistance meet the use requirements.