Slow-moving fixed driving machine

By designing a slow-moving fixed driving motor that combines a counterweight shaft and a driving wheel, the problem of difficulty in driving a fast-moving rotating machine in the prior art is solved, low-speed and efficient rotation is achieved, fuel consumption and pollution are reduced, suitable for long-term operation and maintenance costs are reduced.

CN120083804APending Publication Date: 2025-06-03贾政通
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Patent Information

Application Number
CN202311605954.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-24
Publication Date
2025-06-03

AI Technical Summary

Technical Problem

The prior art is difficult to effectively drive fast-moving machines, and traditional machines have problems of high fuel consumption and pollution when driving fixed machines efficiently.

Method used

A slow-moving fixed driving motor is designed. By installing the counterweight shaft and the driving wheel, the position difference of the counterweight shaft is controlled by using the track to achieve the machine's low-speed and efficient rotation. The machine is made of common materials on the market, which is fuel-efficient and environmentally friendly, and is suitable for long-term rotation.

Benefits of technology

It effectively drives the low-speed rotation of fixed machines, reduces fuel consumption and pollution, is suitable for long-term operation, and reduces maintenance costs by simplifying the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The slow-moving fixed driving machine is installed on the ground and can drive a fixed machine which is maintained manually through lubricating oil, and the slow-moving fixed driving machine can also drive the machine to rotate in the mode that when the machine rotates to the left side, the track controls the balance weight shaft to rotate above 5.25 m, when the machine rotates to the right side, the track controls the balance weight to range from 4.25 m to 1.75 m, and when the machine rotates to the right side, the machine can rotate only when the left side is heavy and the right side is light. The machine is high in real-time cost when being made, the used time can be saved, a large amount of money can be saved for later people, and a great amount of strength can be made for the later people who benefit the money.
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Description

Technical Field

[0001] The present invention is a slow-running fixed driving machine. Background Art

[0002] 1. The machine of the present invention can rotate at a minimum of 25 revolutions per minute and a maximum of no more than 30 revolutions. It can drive a machine with a low rotational speed after being fixed. If you want to drive a fast-running machine, you can add a large driving gear. This kind of machine is fuel-efficient and can use lubricating oil.

[0003] 2. The machine of the present invention is fuel-efficient and pollution-free, which can benefit future generations. People can perform maintenance on it at regular intervals. The slow-running driving machine can rotate continuously for 24 hours. This kind of machine consumes less and does more work. It can be said to be a good helper and good partner of mankind. Summary of the Invention

[0004] It can drive various fixed and immobile machines, and is made of common steel, carbon steel, rubber, aluminum alloy, titanium alloy on the market. It is convenient to manufacture and easy to mass-produce mechanized.

[0005] The principle of why it can rotate Figure 4 Explanation: The total diameter of the machine is 10.5 meters, and the center is 5.25 meters. In the figure, the positions from 1 to 12 are all places where counterweight shafts of 1 ton are installed. When rotating, the tracks on the outer shell control the differential rotation of the distance. When rotating, the distance from the left 1 counterweight shaft to the center 14 is 5.25 meters long, and the distance from the opposite right 7 counterweight shaft to the center 14 is 1.75 meters long. 5.25 - 1.75 = 3.5 meters. When rotating, the distance from the left 2 counterweight shaft to the center 14 is 5.25 meters long, and the distance from the opposite right 8 counterweight shaft to the center 14 is 2.75 meters long. 5.25 - 2.75 = 2.5 meters. When rotating, the distance from the left 3 counterweight shaft to the center 14 is 5.25 meters long, and the distance from the opposite right 9 counterweight shaft to the center 14 is 4.25 meters long. 5.25 - 4.25 = 1 meter. When rotating, the distance from the 4 counterweight shaft above to the center 14 is 5.25 meters long, and the distance from the opposite 10 counterweight shaft to the center 14 is 5.25 meters long. 5.25 - 5.25 = 0 meters. When rotating, the distance from the left 11 counterweight shaft to the center 14 is 5.25 meters long, and the distance from the opposite 5 counterweight shaft to the center 14 is 4.25 meters long. 5.25 - 4.25 = 1 meter. When rotating, the distance from the left 12 to the center 14 is 5.25 meters long, and the distance from the opposite 6 counterweight shaft to the center 14 is 2.75 meters long. 5.25 - 2.75 = 2.5 meters. The distance from the left long counterweight rotation to the center 14 minus the distance from the right length to the center 14: 1 - 7 = 3.5 meters, 2 - 8 = 2.5 meters, 3 - 9 = 1 meter, 4 - 10 = 0 meter, 11 - 5 = 1 meter, 12 - 6 = 2.5 meters.

[0006] 3.5 + 2.5 + 1 + 0 + 1 + 2.5 = 10.5 meters in length, which means that when rotating, the left side is 10.5 meters longer than the right side in total length, that is, the left side is 10.5 tons heavier than the right side when rotating, which means that the 10.5 tons on the left side presses down and rotates.

[0007] On the left side, there are 3, 2, 1, 12, 11, 5.25 meters in length x 5 = 26.25 meters. The position of the center 14 when the counterweight shaft rotates is 26.25 tons in weight. On the right side, the distance of 5 from the center 14 is 4.25 meters, the distance of 6 from the center 14 is 2.75 meters, the distance of 7 from the center 14 is 1.75 meters, the distance of 8 from the center 14 is 2.75 meters, and the distance of 9 from the center 14 is 4.25 meters. 4.25 + 2.75 + 1.75 + 2.75 + 4.25 = 15.75 meters in length, which means 15.75 tons in weight.

[0008] When it rotates to the left, the total length is 26.25 meters, that is, 26.25 tons in weight. When it rotates to the right, the total length is 15.75 meters, that is, 15.75 tons in weight. That is, the extra 10.5 tons on the left side presses down and rotates. Detailed implementation method

[0009] 1. Figure 1 On both the front and back sides of the middle shaft, install Figure 2 . 3 a 0.5-meter disc, Figure 2 . 3 On the 0.5-meter disc, install Figure 3 . 3 a 0.5-meter wooden board shaft with a buckle.

[0010] 2. Figure 1 Install a 3.5-meter disc outside the middle shaft and install it Figure 7 with a track installed inside the 10.5-meter shell. The 10.5-meter shell is installed outside on Figure 11 the machine's frame and fixed firmly. There is a hole in the middle of the shell that can pass through the middle shaft. The hole for passing through the middle shaft should be 3 to 5 times larger than the middle shaft. Then pass the middle shaft through the shell. After passing through the shell, install Figure 8 bearings on both the left and right sides of the middle shaft. Then fix the machine's bearings on Figure 11 a 5.5-meter frame, install the machine on the frame, and install Figure 9 a driving wheel on the left side of the frame on the middle shaft and a brake wheel on the right side of the middle shaft. The brake wheel is mainly used for maintenance and repair of the counterweight shaft.

[0011] 3. Figure 4 There is a 15 on the drawing of Figure 6The buckle on the plate shaft head is installed, and it is placed on the plate shaft to flash back and forth. There are a total of 12 counterweight shafts, with bearings and steel plates installed at both ends, and the machine is fixed with screws.

[0012] 4、 Figure 7 The outer shell with tracks is installed and fixed on Figure 11 a 5.5-meter shelf.

[0013] 5、 Figure 12 It is the machine that I successfully made rotate. Description of the Drawings

[0014] Figure 1 is the central shaft, Figure 2 is a 3.5-meter disc installed on the central shaft, Figure 3 is the plate shaft with a buckle, Figure 4 Power combination diagram, Figure 5 The bearing and steel plate can be a counterweight shaft that can roll back and forth, up and down, left and right, Figure 6 Install wheels with bearings that can roll up and down, left and right on the counterweight shaft, Figure 7 is a 10.5-meter outer shell with tracks, Figure 8 is the bearing installed on the central shaft, Figure 9 is the driving wheel installed on the central shaft, Figure 10 The brake wheel installed on the central shaft, Figure 11 Install the shelf for installing the machine after the machine is installed, Figure 12 A model of the successfully made machine.

[0015] Brief Description

[0016] This machine can drive the machine that is fixed in place when installed on the ground. It is maintained with lubricating oil manually, and it can also drive a ship. Its rotation is such that when it rotates to the left, the track controls the counterweight shaft to rotate at 5.25 meters, and when it rotates to the right, the track controls the counterweight to be from 4.25 meters to 1.75 meters. It can only rotate when it is heavier on the left and lighter on the right, and it can drive other machines to rotate. The cost of making this machine is high when it is completed, but the time used can save costs, which can save a large amount of wealth for future generations and contribute a part to benefiting future generations.

Claims

1. On both the front and back sides of the shaft in Figure 1, discs with a length of 2 and 3.5 meters in Figure 2 are installed. On the discs with a length of 2 and 3.5 meters, a wooden board shaft with a length of 3 and 3.5 meters and a buckle in Figure 3 is installed.

2. The disc with a length of 3.5 meters is installed outside the shaft in Figure 1. The outer casing with a track in Figure 7 is installed inside the 10.5-meter outer shell. The 10.5-meter outer shell is fixed on the frame of the machine in Figure 11 on the outside. There is a hole in the middle of the outer shell through which the shaft can pass. The hole for passing the shaft should be 3 to 5 times larger than the shaft. Then the shaft is passed through the outer shell. After passing through the outer shell, bearings in Figure 8 are installed on both the left and right sides of the shaft. Then the bearings of the machine are fixed on the 5.5-meter frame in Figure 11. The machine is installed on the frame. On the outside left of the frame, a driving wheel in Figure 9 is installed on the shaft. On the right side of the shaft, a brake wheel is installed. The brake wheel is mainly used for maintenance and repair of the counterweight shaft.

3. There is a number 15 on the drawing in Figure 4. That is an installation and maintenance opening where the outer shell is connected to the outer track. After opening, a 1-ton counterweight shaft is installed in the middle of the track and the board shaft. After the counterweight shaft is installed, the buckle on the head of the board shaft in Figure 6 is installed, and the board shaft is allowed to flash back and forth. There are a total of 12 counterweight shafts, with bearings and steel plates installed at both ends. The machine is fixed with screws.

4. The outer shell with a track in Figure 7 is installed and fixed on the 5.5-meter frame in Figure 11.