LATERAL SWING PREVENTION DOUBLE PRESSURE SPRING-LOADED CULTIVATOR FOOT MECHANISM
Patent Information
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- KONYA ANADOLU TARIM MAKINALARI HAYVANCILIK VE INSAAT SAN TIC LTD
- Filing Date
- 2026-06-17
- Publication Date
- 2026-06-22
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Abstract
Description
1 TARIFF LATERAL SWAY PREVENTION DOUBLE PRESSURE SPRING LOADED CULTIVATOR FOOT MECHANISM Technical Area 5 Our invention is generally used in the agricultural machinery sector as a tillage machine. This relates to the double-stress spring cultivator foot mechanism used to prevent lateral oscillation. The invention specifically involves the use of symmetrically placed compression springs on the right and left sides of the leg to support the ground. inside it, with millimeter-level stability, it moves perfectly straight without swaying from side to side. This relates to the lateral oscillation-preventing double-stress spring cultivator foot mechanism. State of the Art Today, cultivator tines are used in agriculture to work the soil by entering it. The soil is aerated without being turned over by the cultivator's foot, and organic matter is added to the soil. Mixing is ensured. In addition, weeds are cut or pulled out with the cultivator foot. The soil is cleaned and prepared for planting. Many differences are observed in the current production methods. In the current methods, the cultivator... Springs operate under constant tensile stress. This stress causes the metal of the springs to work. This causes it to become fatigued, wear out rapidly, and eventually stretch and break. This happens. In older model machines, the spring rotates on its own axis the moment it breaks. There is no safety mechanism to prevent this. In the event of a possible accident, 25 would be rendered useless. The cultivator foot can rotate freely and become entangled in or around the tractor tire behind it. This can cause harm to a living creature. This situation can lead to costly tire damage and business. This can lead to security risks. In the current state of the art, compression springs 30 are used as an alternative to the problem of tension spring breakage. These systems have been developed. However, these systems also cause balance problems. In these systems, a single or nested double spring applies pressure to the center of the foot along a single axis. It moves on it. This uniaxial structure allows the leg to be balanced underground. It does not allow it to advance. The cultivator legs turn to the right against the resistance of the soil. and moves by oscillating laterally to the left. As a result, it cannot remain stationary and constantly rotates 35 2 Legs that flex from side to side are subjected to load outside their direction of resistance. They can easily bend or break. Also, the legs, which cannot draw a stable line in the soil, are homogeneous. He cannot do any tillage. Due to the swinging of his legs from side to side, he has no control over the soil. Blind spots can remain untouched. This situation affects crop yield. It lowers. 5 In the utility model application numbered 2024 / 001985 relating to the previous technique, "An Improved One It is referred to as "Cultivator Structure". In the invention abstract, it is stated that "The invention is a semi-automatic cultivator system." It enables productive work even in rocky, barren soils and fields with lots of weeds. An improved cultivator that minimizes potential damage to the system. 10 It is stated that "it is related to its structure." However, in this invention, a double spring is used. There is no mention of preventing emissions. Again, in the utility model application numbered 2019 / 03175 relating to the previous technique, the title was "New Design". It is called a "cultivator". In the invention abstract, it states: "Our invention is used in soil tillage operations, both 15 A special disc harrow that can perform both the functions of a disc harrow and a cultivator, and is easy to assemble and use. It has been stated that "it is related to the machine." However, the springs used in this invention contain springs inside each other. There is no mention of the gijon, which holds the leg in a specific position, nor of these springs that hold the leg in place. It is not in use. The existence of the technical problems explained above and the solutions provided to these problems inadequacy, making a double-pressure spring cultivator foot mechanism to prevent lateral oscillation. This has revealed the necessity. Purpose of the Invention 25 The present invention meets the aforementioned requirements and eliminates all technical problems. Double-stress spring cultivator foot that prevents lateral oscillation and offers some additional advantages. It is related to the mechanism. The main purpose of the invention is to symmetrically attach the cultivator leg to both the right and left sides. With a double spring block in place, when the leg wants to move to the right, the spring on the right moves to the left. When desired, the left spring provides resistance by applying pressure, pushing the legs underground to the right. The goal is to prevent uncontrolled lateral oscillation to the left, ensuring the vehicle moves in a straight line. 3 Another objective of the invention is to determine the direction of resistance without the leg swinging laterally from side to side. Since it is not subjected to external vertical and lateral loads, material fatigue is minimized. The aim is to prevent leg deformities and fracture problems by lowering the leg. Another purpose of the invention is to provide a blind spot across the entire surface of the ground without oscillating laterally from side to side. Maximizing crop yield by processing without leaving any spots is 5. is to ensure. Another purpose of the invention is to allow you to operate for a long time without creeping under constant tension. The purpose is to ensure the usage period. Another aim of the invention is to eliminate the risk of breakage because springs operate by compression. The aim is to prevent potential tire damage and ensure workplace safety. 10 The structural and characteristic features and all the advantages of the invention are given in the figures below. Thanks to the detailed explanation written with references to the figures, it becomes clearer. This will be understood, and therefore the evaluation should also take these figures and detailed explanations into account. It must be done by taking it. Figures that will help understand the invention. The best way to utilize the advantages of the existing invention, together with its structure and additional elements. For it to be understood, it must be considered together with the figures explained below. Figure 1; Double-spring cultivator foot with anti-lateral oscillation feature, which is the subject of the invention. It is a perspective view of the mechanism. Figure 2; The cultivator foot with double-spring anti-lateral oscillation system, which is the subject of the invention. This is a rear view of the mechanism. 25 Figure 3; The cultivator foot with double-spring anti-lateral oscillation system, which is the subject of the invention. This is a side view of the mechanism. Figure – 4; The subject of the invention, a cultivator foot with double-spring lateral oscillation protection, 30 This is a view of the mechanism mounted on an agricultural machine. Figure 5; Double-spring cultivator foot with anti-lateral oscillation feature, which is the subject of the invention. It is a perspective view of the mechanism in its disassembled state. 4 System references 1. Main leg shaft 2. Upper connecting clamp 5 3. Gijon 4. Spring 5. Centering shaft 6. Leg holder Leg 7, Number 10 8. Centering bushing 9. Crow's foot shoe The drawings do not necessarily need to be scaled and are necessary for understanding the invention. Details that are not present may have been fabricated. Furthermore, at least to a large extent, 15 Elements that are identical or at least have substantially identical functions are numbered the same. It is shown. Detailed Description of the Invention The present invention meets the aforementioned requirements while eliminating all disadvantages. Double-stress spring cultivator foot that prevents lateral oscillation and offers some additional advantages. It is related to the mechanism. This detailed description explains the invention, a 25-inch double-spring cultivator with anti-lateral oscillation system. The preferred configurations of the leg mechanism not only contribute to a better understanding of the subject. It is explained in this regard. Figure 5 shows the cultivator foot with double-spring anti-lateral oscillation system, which is the subject of the invention. This is a perspective view of the disassembled mechanism. The lateral oscillation mentioned is 30. Preventive double-pressure spring cultivator foot mechanism; where the cultivator contacts the soil. The cultivator's foot (9) which works the soil, the leg (7) that makes contact between the cultivator and the soil, The main leg used in making the lower connection of the cultivator with the crowbar shoe (9) The body (1), used to make the upper connection of the cultivator with the crowbar shoe (9) upper connection clamp (2), main leg body (1) and upper connection clamp (2) 35 Centering bushing (8) used in centering the leg (7) connected to the cultivator The leg holder (6) used must have at least one symmetrical one on both the right and left of the leg (7). The spring (4) holding the leg (7) from both sides passes through the spring (4) and the spring (4) is determined holding the gijon (3) in one position, the spring (4) passes through the lower part of the gijon (3) and the leg holder (6) It consists of a centering shaft (5) used in its connection to the cultivator. The invention concerns a cultivator foot mechanism with a double-spring lateral oscillation inhibitor. The springs (4) on both sides of the leg (7) hold the leg (7). The leg (7) swings to the right. If he wants to do this, he stops the spring (4) on the right and pushes his leg (7) inwards. Leg (7) to the left If he wants to swing, he stops the spring (4) on the left and pushes his leg (7) inward. The invention concerns a cultivator foot mechanism with a double-spring lateral oscillation inhibitor. Since the springs (4) used work by compressing rather than pulling, the spring (4) will not break and By locking the leg (7) exactly in the middle, it ensures that it goes straight. 20 30 35
Claims
6 REQUESTS 1. The invention relates to a cultivator used as a soil tillage machine in the agricultural machinery sector. The cultivator's shoe (9) which works the soil when it comes into contact with the soil, the cultivator's contact with the soil 5 in making the lower connection of the cultivator with the supporting leg (7), crowbar shoe (9) The main leg body (1) used, the crowbar shoe (9) and the upper link of the cultivator The upper connecting clamp (2) used in its construction, the main leg body (1) and the upper connecting Centering bushing (8) used in centering the clamp (2) of the leg (7) of the cultivator Double anti-lateral swing spring with leg holder (6) used in fastening The cultivator foot mechanism has the following feature: 10 the leg (7) has at least one leg that is symmetrically located on both the right and left sides of the leg (7) bow held from both sides (4), Gijon (3), which passes through the bow (4) and holds the bow (4) in a certain position, The spring (4) passes through the lower part of the guillotine (3) and the leg holder (6) to the cultivator. Centering shaft (5) used in the connection 15 It includes. 25 35