Heavy object rotation device
The heavy-duty rotating device addresses inefficiencies in exercise equipment by using weights and chains to generate power through a system of interconnected sprockets and shafts, achieving efficient power generation.
Patent Information
- Application Number
- PCT/KR2025/001298
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-01-30
- Filing Date
- 2025-01-23
- Publication Date
- 2025-08-07
AI Technical Summary
Existing exercise equipment lacks efficiency in energy utilization.
A heavy-duty rotating device with a support frame, inner and outer chains connected by sprockets, weights with fluid containers, and guide rails, which utilize the weight of descending weights to rotate chains and generate power through interconnected linkage sprockets and shafts.
The device achieves high efficiency by continuously rotating the generator due to the weight of descending weights, ensuring stable power generation.
Smart Images

Figure KR2025001298_07082025_PF_FP_ABST
Abstract
Description
Heavy load rotating device
[0001] The present invention relates to a new structured heavy-duty rotating device with improved efficiency.
[0002] In recent years, as interest in environmental friendliness has increased, various types of exercise equipment are being developed to improve energy efficiency.
[0003] However, these exercise devices had the problem of low efficiency.
[0004] Therefore, a new method to solve these problems became necessary.
[0005] The present invention is intended to solve the above problems, and its purpose is to provide a new structured heavy-duty rotating device with improved efficiency.
[0006] In order to achieve the above object, the present invention comprises a support frame (11), an inner chain (13) coupled to an inner sprocket (12) coupled to the support frame (11), an outer chain (15) coupled to an outer sprocket (14) coupled to the support frame (11) so as to be positioned on the outside of the inner chain (13), a weight (20) extending inwardly and outwardly and having its inner and outer sides coupled to the inner chain (13) and the outer chain (15), and a guide rail (31) positioned between the upper side of the inner chain (13) and the outer chain (15), wherein the inner sprocket (12) and the outer sprocket (14) are connected to each other by a connecting chain (16), the weight (20) extends inwardly and outwardly and has a weight container (21) storing fluid therein, and an inner end of the weight container (21) provided to extend inwardly and outwardly. A heavy load rotation device is provided, characterized by including a slide rail (22), a connecting bar (23) that is slidably connected to the slide rail (22) in an inward and outward direction and connected to the inner chain (13), a connecting member (24) that is provided on the outer end of the heavy load container (21) and connected to the outer chain (15), and a support wheel (25) that is provided on the upper side of the heavy load container (21) and is in close contact with the upper surface of the guide rail (31) to guide the movement of the heavy load container (21).
[0007] According to another feature of the present invention, a heavy load rotating device is provided, characterized in that the inner chain (13) and the outer chain (15) are configured in two rows.
[0008] According to another feature of the present invention, a heavy object rotation device is provided, characterized in that the heavy object container (21) is configured in a polygonal cylinder shape extending inward and outward and a through hole (21a) penetrating both sides is formed in the central portion.
[0009] According to another feature of the present invention, a heavy object rotation device is provided, characterized in that the slide rail (22) is configured in a bar shape that extends inwardly and outwardly and has a long hole (22a) formed in the center thereof and is provided on both sides of the heavy object container (21), and the connecting bar (23) is configured with a pair of penetrating portions (23a) penetrating the long hole (22a), a pair of extension portions (23b) extending upward from the penetration portions (23a), and a connection portion (23c) connecting the upper ends of the extension portions (23b).
[0010] According to another feature of the present invention, a heavy object rotation device is provided, characterized in that it further includes a linkage sprocket (32) connected to the external sprocket (14), the heavy object rotation device is composed of a plurality of linkage sprockets, and the linkage sprockets (32) provided in each of the heavy object rotation devices are interconnected by a linkage shaft (34).
[0011] According to the present invention, the heavy object rotating device has a plurality of heavy object containers connected to an external chain and descending, and another plurality of heavy object containers ascend along the external chain and then detach to load all of their weight onto the internal chain, so that the force exerted by the descending plurality of heavy object containers on the connecting sprocket is greater than the force exerted by the ascending plurality of heavy object containers on the connecting sprocket, and thus the device continuously rotates in one direction, thereby rotating the generator to generate power as the connecting sprocket (32) and the connecting shaft (34) rotate, and thus has the advantage of very high efficiency.
[0012] Figure 1 is a side view showing a heavy object rotation device according to the present invention;
[0013] Figure 2 is an enlarged side view of a main part of a heavy object rotation device according to the present invention.
[0014] Figure 3 is a perspective view showing a weight of a weight rotation device according to the present invention.
[0015] Figure 4 is a cross-sectional view of a heavy object of a heavy object rotating device according to the present invention.
[0016] Figures 5 to 10 are reference drawings showing the operation of a heavy object rotation device according to the present invention.
[0017] Figures 10 and 11 are reference drawings showing modified examples of a heavy object rotation device according to the present invention.
[0018] Hereinafter, the present invention will be described in detail based on the attached exemplary drawings.
[0019] FIGS. 1 to 9 illustrate a heavy object rotation device according to the present invention, which comprises a support frame (11), an inner chain (13) coupled to an inner sprocket (12) coupled to the support frame (11), an outer chain (15) coupled to an outer sprocket (14) coupled to the support frame (11) so as to be positioned on the outside of the inner chain (13), a weight (20) extending inwardly and outwardly and having its inner and outer sides coupled to the inner chain (13) and the outer chain (15), a guide rail (31) positioned between the upper side of the inner chain (13) and the outer chain (15), and a linkage sprocket (32) connected to the outer sprocket (14).
[0020] The above support frame (11) is composed of a support plate (11a) and a plurality of support bars (11b) extending upward from the support plate (11a).
[0021] The above internal sprocket (12) is composed of four pieces and is connected to the support bar (11b) to form a square.
[0022] The above external sprocket (14) is composed of five pieces and is connected to the support bar (11b) to form a pentagon.
[0023] The above inner chain (13) and outer chain (15) are connected to the circumference of the inner sprocket (12) and outer sprocket (14), and are configured to circulate along the circumference of the inner sprocket (12) and outer sprocket (14).
[0024] At this time, one of the internal sprocket (12) and the external sprocket (14) is connected to each other by a connecting chain (16), so that the internal chain (13) and the external chain (15) rotate in the same direction (counterclockwise in this embodiment).
[0025] At this time, the external sprocket (14) is provided with a connecting sprocket (17) to which the connecting chain (16) is coupled, and the connecting sprocket (17) is configured to have the same diameter as the internal sprocket (12), so that the time required for the external sprocket (14) to rotate once is the same as the time required for the internal sprocket (12) to rotate once.
[0026] Additionally, the outer chain (15) is arranged so that the upper right circumference is spaced further outward from the upper right circumference of the inner chain (13) compared to other parts of the outer chain (15).
[0027] In addition, the inner chain (13) and outer chain (15) are configured in two rows and are arranged to be spaced apart in the front-back direction in parallel with each other.
[0028] As shown in FIGS. 2 to 4, the above-mentioned weight (20) is composed of a weight container (21) that extends inwardly and outwardly and stores fluid therein, a slide rail (22) that is provided to extend inwardly and outwardly at the inner end of the weight container (21), a connecting bar (23) that is slidably connected inwardly and outwardly to the slide rail (22) and connected to the inner chain (13), a connecting member (24) that is provided at the outer end of the weight container (21) and connected to the outer chain (15), and a support wheel (25) that is provided on the upper side of the weight container (21) and is in close contact with the upper surface of the guide rail (31) to guide the movement of the weight container (21).
[0029] The above-mentioned weight tank (21) is configured in a polygonal cylinder shape extending inward and outward, and a through hole (21a) penetrating both sides is formed in the central portion, so that fluid is concentratedly stored in the front and rear sides of the weight tank (21).
[0030] The fluid is generally water or oil, and is stored in the weight (20) by dividing it into 1 / 2 each to the left and right, so that when the weight container (21) rotates, the fluid moves inside the weight (20), causing the center position of the weight (20) to change.
[0031] The above slide rail (22) is configured in a square shape that extends to the inner and outer ends and has a long hole (22a) formed in the center that extends inward and outward, and is configured in two pieces, and is fixed to extend inward on both sides of the inner end of the weight container (21).
[0032] At this time, the slide rail (22) is provided with a protrusion (22b) that extends inward at the front and rear ends, and is fixed so as to be spaced laterally from both sides of the heavy object container (21).
[0033] The above connecting bar (23) is made by cutting a pipe made of a high-strength metal material, and is composed of a pair of penetration portions (23a) penetrating the long hole (22a), a pair of extension portions (23b) extending upward from the penetration portions (23a), and a connection portion (23c) connecting the upper ends of the extension portions (23b), and the penetration portions (23a) are connected to the inner chain (13).
[0034] The above-mentioned connecting member (24) is configured in the form of a frame with an open outer end, and is provided at the front end of a support bar (24a) extending forward and upward from both sides of the outer end of the weight container (21), so that it is detachably connected to the external chain (15) as the weight container (21) rotates.
[0035] The above support wheel (25) is rotatably connected to a support bracket (25a) that is provided to extend upward on both sides of the upper surface of the middle portion of the above weight container (21).
[0036] The above guide rail (31) is configured to be rounded so as to slope downward from the upper central portion of the inner chain (13) to the right.
[0037] The above-mentioned linkage sprocket (32) is connected to an external sprocket (14) on one side by an auxiliary link chain (33).
[0038] At this time, the above-mentioned heavy object rotation device is provided in multiple units and is arranged to be spaced apart from each other in the front-back direction.
[0039] And, the interlocking sprockets (32) provided in each heavy load rotating device are interconnected by a linkage shaft (34).
[0040] The operation of the heavy load rotating device configured in this manner is explained as follows.
[0041] First, as shown in Fig. 1, the weight (20) is positioned on the left side of the inner and outer chains (15), the weight (20) is positioned to extend horizontally in the inner and outer directions, and the connecting member (24) is maintained in a state of being connected to the outer chain (15).
[0042] At this time, the weight container (21) falls downward while applying all of its own weight to the external chain (15), causing the external chain (15) and the internal chain (13) to rotate counterclockwise.
[0043] And, when the above-mentioned heavy object (20) is rotated to extend in the vertical direction as shown in Fig. 5, most of the weight of the heavy object container (21) is applied to the external chain (15) and falls, causing the external chain (15) and the internal chain (13) to rotate.
[0044] And, when the weight (20) reaches the position shown in Fig. 6, the weight container (21) rotates by inertia, thereby rotating the outer chain (15) and the inner chain (13).
[0045] And, when the weight (20) reaches the position shown in Fig. 7, the weight of the point of application becomes greater than the point of force, so that the connecting member (24) is detached from the external chain (15), and as shown in Fig. 8, the support wheel (25) is placed on the upper surface of the guide rail (31).
[0046] At this time, the fluid is collected at the lower side inside the weight tank (21), and the weight tank (21) is fixed to the internal chain (13) through a connecting bar (23) coupled to the slide rail (22).
[0047] However, since the slide rail (22) is located on the right side of the weight tank (21), a counterclockwise rotational force is applied to the weight tank due to the load of the fluid, and the weight tank rotates counterclockwise, i.e., to the left.
[0048] At this time, since the support wheel (25) is placed on the upper surface of the guide rail (31), when the heavy object container (21) is rotated to the left, the heavy object container (21) rotates while moving to the left along the guide rail (31), and when the support wheel (25) is detached from the guide rail (31), as shown in FIG. 9, the coupling member (24) is re-coupled to the external chain (15), and the heavy object (20) is further rotated, resulting in the state shown in FIG. 1.
[0049] And, by repeating the above-described process, the outer chain (15) is continuously rotated, thereby rotating the linkage sprocket (32) and linkage shaft (34).
[0050] At this time, since multiple heavy-duty rotating devices are connected to the above-mentioned linkage shaft (34), the above-mentioned linkage shaft (34) rotates at a constant speed, and a generator can be connected to the above-mentioned linkage shaft (34) to generate power.
[0051]
[0052] *That is, by setting the positions of the weights (20) provided in each of the interconnected weight rotation devices differently, as in a multi-cylinder internal combustion engine, the weight container (21) of one weight rotation device is lowered, thereby pushing upward the weight container (21) provided in the other weight rotation device, thereby allowing the linkage shaft (34) to rotate stably at a constant speed.
[0053] The heavy load rotating device configured in this manner has the advantage of very high efficiency, as the heavy load container (21) rotates the external chain (15) as it descends due to its own weight, and accordingly, the linkage sprocket (32) and linkage shaft (34) rotate, thereby rotating the generator to generate power.
[0054] Meanwhile, the external chain (15) of the aforementioned heavy object rotation device can be configured in various forms, as shown in Fig. 10.
[0055] In addition, the above-mentioned weight tank (21) and slide rail (22) can be configured in various shapes.
[0056] Fig. 11 illustrates another modified example of a heavy object rotation device according to the present invention, wherein the inner chain (13) is configured to form a triangle extending in the vertical direction by three inner sprockets (12).
[0057] And, the external chain (15) is configured so that the lower right side is spaced far apart from the lower right side.
[0058] Additionally, the above-mentioned connecting member (24) is fixedly connected to one side of the external chain (15).
[0059] The heavy-duty rotating device configured in this manner has the advantage of improved stability compared to the embodiment described above, as the connecting member (24) rotates while being connected to the external chain (15) without being separated from the external chain (15).
[0060] The present invention is not limited to the described embodiments, and it will be apparent to those skilled in the art that various modifications and variations can be made without departing from the spirit and scope of the present invention. Therefore, such modifications or variations should fall within the scope of the claims of the present invention.
[0061] The mode for carrying out the invention has been described together with the best mode for carrying out the invention above.
[0062] The present invention has industrial applicability because it can generate power by rotating a generator while a linkage sprocket and a linkage shaft rotate.
Claims
1. Support frame (11) and An internal chain (13) coupled to an internal sprocket (12) coupled to the above support frame (11), An outer chain (15) coupled to an outer sprocket (14) coupled to the support frame (11) so as to be positioned on the outside of the inner chain (13), It includes a weight (20) that extends inwardly and outwardly and is connected to the inner chain (13) and the outer chain (15) on the inner and outer sides, The above internal sprocket (12) and external sprocket (14) are connected to each other by a connecting chain (16), The above heavy object (20) It extends inward and outward and has a weight tank (21) inside which fluid is stored, A slide rail (22) provided to extend inward and outward on the inner end of the above-mentioned heavy weight container (21), A connecting bar (23) that is slidably connected to the inner and outer sides of the above slide rail (22) and connected to the inner chain (13), A heavy load rotation device characterized by including a coupling member (24) provided on the outer end of the above-mentioned heavy load container (21) and coupled to the above-mentioned external chain (15).
2. In paragraph 1, A guide rail (31) provided to be positioned between the upper side of the inner chain (13) and the outer chain (15), A heavy object rotation device is provided, characterized in that it further includes a support wheel (25) which is provided on the upper side of the heavy object container (21) and is in close contact with the upper surface of the guide rail (31) to guide the movement of the heavy object container (21).
3. In paragraph 1, A heavy load rotation device characterized in that the inner chain (13) and the outer chain (15) are composed of two rows.
4. In paragraph 1, A heavy object rotation device characterized in that the above-mentioned heavy object container (21) is configured in a polygonal cylinder shape extending inward and outward and has a through hole (21a) formed in the central portion that penetrates both sides.
5. In paragraph 1, The above slide rail (22) is configured in a bar shape that extends inward and outward and has a long hole (22a) extending inward and outward in the center, and is configured in two pieces and is provided on both sides of the heavy weight tank (21). The above connecting bar (23) A pair of penetration parts (23a) penetrating the above-mentioned hole (22a), A pair of extension parts (23b) extending upward from the above penetration part (23a), A heavy load rotating device characterized by comprising a connecting portion (23c) connecting the upper end of the above extension portion (23b).
6. In paragraph 1, It further includes a linkage sprocket (32) connected to the external sprocket (14), The above heavy load rotating device is composed of multiple units, A heavy object rotating device characterized in that the interlocking sprockets (32) provided in each heavy object rotating device are interconnected by a linkage shaft (34).
Citation Information
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