FOOT PRESSURE SPRING

TR202509563YPending Publication Date: 2026-09-21ERGUN GÜLER
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Patent Information

Application Number
TR202509563U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-07-11
Publication Date
2026-09-21
Estimated Expiration
2035-07-11

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Patent Text Reader

Abstract

The invention is a portable exercise device powered by spring energy that stimulates leg movement by applying up-and-down pressure with the sole of the foot. The "Foot Press Pedal Block" made of hard plastic is located at the top, and the "Base Mounting Block" at the bottom; both are connected by steel shafts and shaft bearings. Steel torsion / leaf springs generate the recoil force, and a "Pressure Force Adjustment Rod" attached to the top allows for forward and backward adjustment of the spring resistance. Metal clamps secure the spring arms, and all parts are modularly assembled using laser-cut or injection-molded plastic, heat-treated springs, and screw-in steel shafts. The result is a foot press pedal that offers a quiet, lightweight, low-cost exercise solution suitable for all ages in office, home, or travel environments.
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Description

1 TARIFF FOOT PRESSURE SPRING The invention stimulates leg movement by applying up-and-down pressure with the sole of the foot. It is a portable exercise device powered by spring energy. Made of hard plastic, it is called "Foot Pedal 5". The "Block" is located at the top, and the "Base Mounting Block" is located at the bottom; both contain steel shafts and spindles. It is connected by bearings. Steel torsion / leaf springs generate the recoil force, on top The "Resistance Changing Rod" attached to the section adjusts the spring resistance back and forth. It allows for adjustment. Metal clamps secure the spring arms, while all parts Laser-cut or injection-molded plastics, heat-treated springs, and screw steel 10 They are assembled modularly with shafts. Ultimately, they are suitable for office, home, or travel environments. Foot training offers a quiet, lightweight, low-cost, and age-appropriate exercise solution. It is a compression spring. Technical Field and State of the Art 15 The systems currently in use connect many parts of the human body in different ways. There are similar exercise equipment and inventions that work, however, these are very large. built on specific dimensions, requiring special spaces and leisure time, and demanding a lot of energy, power, and effort-intensive, impractical, non-portable, suitable for homes, workplaces, and offices. 20 that cannot be moved, have high installation and operating costs, and are difficult to own. These are exercise machines that appeal to a very limited number of people. The purpose of the invention is; Those who sit in front of screens and monitors for long periods of time, those who do sedentary work, Workers in similar places should keep their feet and legs, which are usually immobile, at 25°C. by moving; the respiratory, circulatory and digestive systems function It contributes to the increase in their activities. For all age groups except young children. For people to use, recommended by elderly and sick people, and by healthcare professionals. and must be used in accordance with permission, My invention easily provides the desired compressive force. Adjustable, quiet operation, convenient to use anywhere 30 It is a portable, lightweight, easy-to-use, and practical piece of sports equipment. 2 A brief description of the invention. The invention allows for up-and-down movement of the foot using energy-storing springs. By applying pressure, the legs of individuals who sit or remain immobile for long periods of time... and a portable sport designed to effectively activate the circulatory systems It relates to the device; the device in question has a 5 made of hard plastic or wood at the top. a "Foot Pedal Block" and a "Base Mounting Block" located underneath shaft bearings connected by steel shafts, articulated to these shafts and selected a spring that produces a recoil force through steel torsion or steel leaf springs The mechanism, a metal coupling box that synchronizes the spring arms, allows the user to... 10 that provides resistance adjustment by positioning it forward and backward according to force requirement. rectangular prism-shaped "Compression Force Change Rod" and spring arms It consists of limiting clamps that fix it in the horizontal plane; all parts are laser-made. plastic sheets prepared by cutting or injection molding, heat-treated spring wires. and are modularly assembled with threaded steel shafts and screw fasteners; Thus, it can be produced with different spring thicknesses for various age and strength groups, 15 Lightweight and suitable for quiet use in offices, homes, travel, or any indoor or outdoor setting. By obtaining an easily portable exercise platform, respiratory and blood circulation, Simple, low-calorie foods that support digestion and especially lower extremity musculoskeletal health. A costly solution that appeals to a wide audience is presented. Advantages of the Invention • Improves circulation – Increases blood flow by rhythmically exercising the muscles of the feet and legs. It speeds up the process and reduces the negative effects of prolonged sitting. • Supports respiration and digestion – Mild cardio-like exercise, lung function It stimulates its capacity and promotes the functioning of the digestive system. 25 • Adjustable resistance – thanks to the “Resistance Adjustment Lever” Spring stiffness can be selected to suit different age and fitness levels. • Quiet operation – The spring mechanism is noiseless; suitable for the office, home, or at night. suitable for use. • Portable and lightweight – Compact design, easy to carry; ideal for travel, business trips. It can be used comfortably on-site or at home. • Low-cost production – Plastic injection, laser cutting, and standard springs. 3 It is economically scalable thanks to its manufacturing process. • Easy maintenance – Simple mechanical parts; special service apart from lubrication. It is not required. • Wide user base – Different options for women, men, children, the elderly, and athletes. Available with various spring options. 5 • Multi-environment compatibility – Indoor sports hall, park, under office desk It can be used in various settings, such as during long journeys. • Protects musculoskeletal health – Strengthens lower extremity muscles and joints. It increases flexibility and reduces the risk of injury. Figure Captions Figure 1: Footrest Spring – Steel Torsional Spring, Side View Figure 2: Footrest Spring – Steel Torsional Spring, Top View Figure 3: Footrest Spring – Steel Torsional Spring, Side Perspective View Figure 4: Footrest Spring – alternative configuration (Steel Leaf Spring) 15 Side detail perspective view of the references. Figure 5: Footrest Spring (alternative configuration) – Steel Leaf Spring, Side view Figure 6: Footrest Spring (alternative configuration) – Steel Leaf Spring, Top Mounted Appearance 20 Reference numbers in the figures 1: Foot Pedal Block 2: Base Mounting Block 3: Lower Right Shaft Bearing 4: Lower Left Shaft Bearing 25 5: Upper Right Shaft Bearing 6: Upper Left Shaft Bearing 7: Right Steel Shaft 8: Left Steel Shaft 9: Left Steel Burmese Bow 30 10: Right Steel Burmese Bow 11: Left Cylinder Body Shaft Bearing 4 12: Right Cylinder Body Shaft Bearing 13: Cylinder Body Steel Shaft 14: Cylinder Body 15: Pressure Force Adjustment Rod 16: Spring Arm Assembly Box 5 17: Lower Section Spring Arm Fixing Clamp 1b: Foot Pedal Block 2b: Base Mounting Block 3b: Lower Right Shaft Bearing 4b: Lower Left Shaft Bearing 10 5b: Right Upper Shaft Bearing 6b: Left Upper Shaft Bearing 7b: Right Steel Shaft 8b: Left Steel Shaft 9b: Steel Leaf Spring 15 10b: Compression Force Adjustment Rod 11b: Restraint Clamp 12b: Lower Section Fixing Clamp 1 13b: Lower Section Fixing Clamp 2 Technical Specifications Foot pedal block (1) As the title of the piece suggests, the foot pedal is located at the very top. block (1), right upper shaft bearing (5) and left upper shaft located on the lower rear side base mounting block 25 via bearing (6), right steel shaft (7) and left steel shaft (8) (2) is connected to the lower right shaft bearing (3) and the lower left shaft bearing (4), It is a hard plastic or wooden block. Base mounting block (2) At the bottom of the base mounting block (2), on the upper rear corners, lower right shaft bearing (3) and lower left shaft bearing (4) with right steel shaft (7) and left steel shaft (8) 30 These are located in the upper right shaft bearing (5) behind the foot pedal block (1) and It is connected to the upper left shaft bearing (6). The part is made of hard plastic or wood. Lower right shaft bearing (3) – lower left shaft bearing (4) Secured to the rear upper corners of the base mounting block (2) with two screws each. These L-shaped steel plate bearings provide the connection with the foot pedal block (1). and includes shaft transition housings. Right upper shaft bearing (5) – left upper shaft bearing (6) 5 The foot pedal block (1) is mounted to the rear lower corners with two screws each. These L-shaped steel plate bearings, with their counterparts on the base mounting block (2) Together they provide bearing support for steel shafts. Right steel shaft (7) – left steel shaft (8) Right upper shaft bearing (5) and left upper shaft bearing (6) and right lower shaft bearing (3) and 10 working between the lower left shaft bearing (4), with threads on the ends and fixed with a nut They are steel shafts. Left steel twist bow (9) – right steel twist bow (10) left steel torsion spring placed spirally inside the cylinder body (14) (9) and right steel torsion bow (10), upper arms pointing upwards, lower arms pointing downwards 15 It is assembled in this way and manufactured from thick, heat-treated steel wire. Left cylinder body shaft bearing (11) – right cylinder body shaft bearing (12) The base mounting block (2) is fixed to the rear upper part with two screws each. Shaped steel bearings provide support for the steel shaft (13) of the cylinder body. Cylinder body steel shaft (13) 20 Passing through the cylinder body (14) the left cylinder body shaft bearing (11) and the ends of which are threaded, are connected to the shaft bearing (12) of the right cylinder body. It is a steel shaft secured with a nut. Cylinder body (14) The bearing of the left steel torsion spring (9) and the right steel torsion spring (10) is 25 providing, the inner cylinder body of steel shaft (13) with diameter drilled, metal or hard It is a cylindrical body made of plastic. Pressure change lever (15) The spring arms are attached to the spring upper arms outside the assembly box (16). rectangular prism-shaped rigid plastic rod, single 30 to the foot pedal block (1). It serves to adjust the spring resistance by making contact at the cross-section and moving it back and forth. Spring arm assembly box (16) 6 Left steel torsion spring (9) and right steel torsion spring (14) on the cylinder body. connecting the upper arms of the spring (10), also changing the compressive force. It is the metal box that allows the rod (15) to slide on a smooth surface. Lower part spring arm fixing clamp (17) Rectangular metal 5 attached to the base mounting block (2) with two screws. plate, lower arms of left steel torsion spring (9) and right steel torsion spring (10) to the right- It holds the device in a fixed position without shifting to the left. Alternative configuration of the invention: foot spring – steel leaf spring. (alternative configuration) 10 Foot pedal block (1b); foot pedal block (1b) is at the top. Bottom via the upper right shaft bearing (5b) and upper left shaft bearing (6b) located on the rear side right steel shaft (7b) and left steel shaft (8b) on the base mounting block (2b) The part is connected to the lower shaft bearing (3b) and the left lower shaft bearing (4b). The part is made of hard plastic or 15 It is made of wood. Base mounting block (2b); base mounting block (2b) is located at the bottom. Top rear At its corners are the lower right shaft bearing (3b) and the lower left shaft bearing (4b); these are the right Foot pedal block (1b) via steel shaft (7b) and left steel shaft (8b) It is connected to the upper right shaft bearing (5b) and the upper left shaft bearing (6b) at the rear. Body 20 It is made of hard plastic or wood. Right lower shaft bearing (3b) – left lower shaft bearing (4b); The L-shaped base mounting block (2b) is secured to the rear upper corners with two screws each. Steel plate bearings provide the connection with the foot pedal block (1b) and the shaft. It has transition slots. 25 Right upper shaft bearing (5b) – left upper shaft bearing (6b); The foot pedal block (1b) is mounted to the rear lower corners with two screws each. Shaped steel plate bearings, steel shafts together with corresponding lower shaft bearings. beds. Right steel shaft (7b) – left steel shaft (8b); right upper shaft bearing (5b) and left upper shaft bearing 30 (6b) running between the lower right shaft bearing (3b) and the lower left shaft bearing (4b), to its ends These are steel shafts that are threaded and secured with nuts. 7 Steel leaf spring (9b); one-piece steel bent into a U shape and heat treated. The leaf spring (9b) is placed vertically in the center of the base mounting block (2b). Center lower part fixing clamp 1 (12b) and lower part fixing clamp from the region It is fixed with 2 (13b); the pressure force change bar (10b) is attached to its upper end. Compression force change rod (10b); steel leaf spring (9b) on top 5 a rectangular prism-shaped rigid plastic rod inserted, foot pedal block It contacts (1b) through a single section; adjusting the spring resistance by moving back and forth. benefit. Limiting clamp (11b); the upper end of the steel leaf spring (9b) slides left and right. metal clamp that restrains and allows vertical free movement, foot pedal 10 The block (1b) is fixed to the lower front face with two screws. Bottom fixing clamp 1 (12b) – bottom fixing clamp 2 (13b); Two steel leaf springs (9b) that secure the lower section to the base mounting block (2b) The metal plate holds the spring in a fixed position horizontally. Footrest spring – how it works; The downward pressure force is applied by the user onto the foot pedal block (1). It starts with movement. This block passes through the upper right shaft bearing (5) and the upper left shaft bearing (6). on the base mounting block (2) via the right steel shaft (7) and the left steel shaft (8) It is hinged to the lower right shaft bearing (3) and the lower left shaft bearing (4). Pedal 20 steel torsion spring (9) and steel torsion spring (10), cylinder body (14) as it descends It is compressed axially inside; spring arms with spring arms coupling box (16) They work synchronously and store potential energy during compression. When released, the springs expand, returning the energy and pushing the pedal block upwards. The cylinder housing rotates along the bearings of the shaft, with the help of the steel shaft (13) the system 25 It brings it back to the starting position. The resistance will move closer to or further away from the spring arms. The pressure force is changed by the adjustable pressure change lever (15). Position fixation at the ends, lower part spring arm fixing clamp (17) This is provided by. Thus, continuous pushback in the pedal up-down cycle. A silent and enclosed spring-piston mechanism is obtained that generates the force. 30 Alternative configuration (steel leaf spring) – operational differences; 8 This version uses a single piece of steel leaf spring (9b) instead of double spiral springs. The spring is fixed perpendicular to the center of the base mounting block (2b); its lower end is at the bottom. with fixing clamp 1 (12b) and lower part fixing clamp 2 (13b), upper end It is held in place by the limiting clamp (11b) which prevents sideways sliding. Pedal down When lowered, the leaf spring compresses its flexible U-shape, storing energy; when released, 5 The spring expands by its own elasticity and pushes the foot pedal block (1b) upwards. Resistance is the forward and backward movement of the compression force change rod (10b) attached to the spring body. It is adjusted according to its position. Compared to steel torsion designs, the spring force is more linear. It disperses, and the return movement occurs more smoothly.

Claims

9 Requests 1. The invention is a foot spring, the feature of which is; foot pedal block (1) and base The upper right shaft bearing (5) is located between the mounting block (2), the upper left shaft rotating on bearing (6), right lower shaft bearing (3) and left lower shaft bearing (4) right steel shaft (7) and left steel shaft (8); cylinder 5 around these shafts with left steel torsion spring (9) axially positioned inside the body (14) and right steel torsion spring (10); connecting the spring arms at the upper end of the spring arms box (16) and bottom end fixing clamp (17) for the lower part spring arms along with adjusting the distance between the spring arms by changing the pressing force. It includes the bar (15). 10 2. The foot spring in claim 1, its characteristic is; changing the pressing force. The distance between the bar (15) and the spring arms should be adjustable. The key to enabling this is finding the rod in question.

3. The foot spring in Claim 1 is characterized by its connection to the cylinder body (14). cylinder body steel shaft (13) made of metal or hard plastic material 15 It is the formation of.

4. The foot spring in Claim 1 has the following features: right upper shaft bearing (5), left upper L-shaped shaft bearing (6), lower right shaft bearing (3) and lower left shaft bearing (4). It is made of steel plate.

5. The footrest spring in Claim 1 has the following features: right steel shaft (7) and left steel 20 The ends of the shaft (8) can be threaded and removed with a nut and readjusted. The goal is to provide a shaft connection.

6. The foot pedal spring in Claim 1 has the following feature: foot pedal block (1b) right upper shaft bearing (5b) located between the base mounting block (2b), upper left shaft bearing (6b), lower right shaft bearing (3b) and lower left shaft bearing (4b) 25 Push force with the rotating right steel shaft (7b) and left steel shaft (8b) It contains a single piece U-shaped steel leaf spring (9b) that produces it.

7. The foot spring in claim 6 is characterized by; steel leaf spring (9b) on top spring resistance with the pressure force change rod (10b) attached to the part adjustment and lower 30 with the limiting clamp (11b) of the upper end of the spring in question. bottom end fixing clamp 1 (12b) and bottom end fixing The clamp contains 2 (13b).