clean energy source

TR202505121A3Pending Publication Date: 2026-08-21ARİF MALAZGİRTLİOĞLU
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Patent Information

Application Number
TR202505121
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-04-26
Publication Date
2026-08-21

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Abstract

The invention is a device that generates continuous electrical energy using machine parts.
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Description

1 TARIFF CLEAN ENERGY SOURCE The invention is registered under Application No: 2024 / 019278, Application No: 2025 / 004494, Application No: 2025 / 004684. a machine that continuously produces electrical energy, the mechanisms of which are developed in patent applications The mechanism consists of a machine placed inside a rectangular prism-shaped profile structure. It is made up of parts. Figure 1 shows the appearance of a CLEAN ENERGY SOURCE. P: Profile structure P1: The stand on which the alternator is mounted. R1, R2: Ball bearings 10 1: Crankshaft, the part of the crankshaft (K) that moves in a circular motion, on which the crank journal is located. 2: Crankshaft, left, crankshaft (K) with journal and bearing (2a), circular moving shaft. 3: Shelf, circular open shelf 3a: The circular space on the right 3b: The circular space on the left is 15 4: The rope, one end of which is secured to the bearing on the crankshaft on the right. 5: The rope, one end of which is secured to the bearing on the crankshaft on the left. 6: The spring, one end of which is attached to the lower circular surface (3a) of the circular space (3) on the shelf, and the other end to the circular fixed on the metal plate (15) or attached to the tabs (T) on the metal plate 7: The spring, one end of which is fixed to the hook (17) on the profile structure base and the other end to the circular plate (15) 20 8: The spring is fixed with one end attached to the bottom of the circular cavity and the other end attached to the top of the circular plate. 9: The spring, with its ends fixed under the circular plate (16) on the left and to the hook (18) on the ground. 10: Pulley, which transmits torque to the alternator (14) via belt. 11: The flywheel ensures a smooth and wave-free flow of torque. 12: Belt, 25 13: The pulley is fixed to the alternator shaft. 2 14: Alternator 15: Circular metal plate, with springs (6) fixed to its top and bottom surfaces, with claws and hooks on top. 15a: The hook is fixed to the upper middle part of the circular metal plate (15) and to which the rope is attached. 16: Circular metal plate, to whose top and bottom surfaces springs (8), (9) are stretched and fixed 16a: Hook fixed to the upper middle part of the circular metal plate (16), hook to which the rope (5) is attached. 17: The hook is fixed to the center of the projection of the circular cavity (3a) onto the profile structure base. 18: The hook is fixed to the center of the projection of the circular cavity (3b) onto the ground. The profile structure (P) is located in the upper left part, the rotation axis of the pulley (13), the rotation of the upper pulley (10). While positioned parallel to the axis, the alternator (14) is fixed. The profile structure is mounted on the upper part. Bearings (R1, (R2) are fixed. In the upper left part, the coaxial shaft (M1) is attached to bearings (R1, R2) 10 The large diameter pulley (10) and flywheel (11) are fixed in place. Large diameter pulley (10) When it rotates, it transmits torque to the alternator pulley (13) to which it is connected by the belt (12). Crank There are two crankshafts (1), (2) on (K). The crankshaft has the journals of (K). The bearings in the middle journals of the shafts (1), (2) are (1a), (2a) and these bearings are (1a), (2a) One end of the ropes (5), (4) is fixed. The profile structure is attached to the lower part of the crank (K) in the upper right part, 15 A metal or wooden shelf (3) with two circular openings (3a) (3b) on it is fixed. Circular spring retaining tabs or spring retaining tabs on the projection of the gaps (3a), (3b) on the profile structure base Hooks (17), (18) are fixed. The spring (6), whose diameter is larger than the diameter of the circular cavity (3a), surrounding the circular space (3a) from below, the circular space (3a) is contained within the arc (6) In position, it is fixed to the lower lateral circular surface of the gap (3a). Circular metal plate (15), bottom and 20 upper circular surfaces with tabs (T) for fixing springs in the middle of its surface, where the hook (15a) to which the rope (4) will be attached, two springs in series with each other It is a circular metal plate (15) piece used for fastening. One end of the circular metal plate (15) is below The other end of the spring (7) to be fixed to the surface is on the profile structure base of the circular cavity (3a), projection It is fixed to the hook (17) in place. The circular spring (6) is fixed under the circular cavity (3a) and the circular 25 The other ends of the spring (7) are fixed to the hook (17) where the projection of the void is located. stretched, the end of the lower spring (7) is under the circular plate (15), the end of the upper spring (6) is circular It is fixed on top of the plate (15). Since the springs (6) and (7) are stretched and connected in series, both springs The tensile force is the same. The energy stored in the springs (6), (7) is equal to the elongation coefficients of the springs. It is connected. The rope (4), one end of which is fixed to the upper middle of the circular metal plate (15), spring (6) and 30 The other end, which is taken out by passing it through the circular gap (3a), is on the crank journal (1) 3 to the bearing (1a), with the slack in the rope (4) taken up at the position closest to the ground of the crank journal. It is fixed. The same procedure is performed in the other circular cavity (3b). The bottom spring (7) is secured with rope (4) As it is pulled upwards, the upper spring (6) will pull the lower spring (7) upwards, thus gaining strength. is provided. The power gain is then transferred back to the crankshaft (K) in the next half turn. Each The ends of the two ropes (4), (5) extending to the crankshafts (2), (1), on the crankshafts (2), (1) 5 The bearings (2a), (1a) are fixed when the bearings (2a), (1a) are in their closest position to the ground. In the arrangement, series connected springs (6), (7) are used, and parallel connected springs as in Figure 1B. will be used. In production, parallel plates fixed to the top and bottom of circular metal sheets will be used. Connected springs will also be used. In Figure 1B, two springs connected parallel to each other are combined into a single spring in series. It is connected in this way, and this connection method will be included in subsequent patent applications. Figure 1A 10 two springs (x), (y) with different coefficients connected in series by tension, without circular metal plates It appears that it can be used in the setup and is pulled with additional force (F4).

Claims

4 REQUESTS 1. Invention, Application No: 2024 / 019278, Application No: 2025 / 004494, Application No: 2025 / 004684 The devices described in the patent applications are conceptually improved, producing continuous electrical energy and being clean. It is the energy source, and the rectangular prism-shaped profile structure of the device (Figure 1) is in the upper right. In the section, there are two crank journals (1), (2) which are placed by fixing the ends to the bearings. The inclusion of a crankshaft (K) means that the assembly is fixed to the profile structure at the bottom of the crankshaft (K). It contains a planar structure in the form of a shelf (3) with two circular cavities (3a), (3b) on it, In the arrangement, the spring (6), whose diameter is larger than the diameter of the circular gap (3a), the circular gap In the surrounding position, the profile structure of the circular cavity is fixed to the lower surface of the plate (3). 10 to the bottom surface of plate (3) where the other spring (7) is fixed to the hook (17) at the projection point on the base. and the two springs (6) (7) fixed to the hook (17) on the base of the profile structure are stretched, the lower spring (7) on the lower surface of the circular metal plate (15), the upper spring (6) on the upper surface of the circular metal plate (15) The fact that the energy-charged springs (6), (7) are fixed to the surface and are connected in series, the springs (6), (7) The circular plate (15) to which it is stretched and fixed on its bottom and top surfaces, is fixed to the upper middle part. The other end of the rope (4) passes through the spring (6) and the circular gap (3a) to the crank journal 15 (1) in the vertical down position, the crank is fixed to the bearing (1a) on the crank journal (1), crank with the circular motion of the shaft (1) half turn, the rope fixed to the upper center of the circular plate (15) (4) pulls the lower spring (7) upwards, the rope (4) being pulled upwards is stretched by the springs (6), (7) in a circular motion Since they are fixed to the bottom and top surfaces of the plate (15), they are lifted up by the rope (6) on the top spring. because the pull-down was supported by the lower spring (7) and the upward pull-down was supported by the upper spring (6) 20 It is a device that gains power, the power gained is from the rope (4) and the spring (6) the connection is made in the same way, turning the other crankshaft (2), the other crankshaft that rotates Since the same gain in force will be achieved in the shaft (2), the continuity of the cycle the circular motion that occurred and continued, large diameter on the left side of the profile structure The moment transferred to the large diameter pulley is transmitted to the pulley (10) and flywheel (11) by the belt (12) 25 It is a machine mechanism that produces continuous electrical energy, which is transferred to the pulley (13) of the alternator below.

2. In a clean energy source setup as described in Claim 1, two parallel wires as shown in Figure 1B. It is a pedestrian, serially connected broadcast.

3. According to claim 1, it is a clean energy source and two springs can be connected without a circular metal plate. The system will be used by fixing the wires end-to-end (Figure 1A) and attaching a rope to the fixing point. 30 4. According to claim 1, the number of crankshafts (1), (2) that pull and release the rope are clean energy sources. and the number of springs attached to the crankshafts by cables will be increased.