Pedal spring exerciser
By designing a pedal tensioner with two independent stretching parts, the problem of the inability to achieve double-leg separation exercise training in the prior art is solved, a wider use scenario and stronger functionality are achieved, while simplifying the assembly process and reducing production costs.
Patent Information
- Application Number
- CN202421458445.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-24
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-24
AI Technical Summary
Existing pedal tensioners cannot achieve the exercise training of legs separation, such as splits, and the production and assembly processes are cumbersome and the cost is high.
A foot pedal tensioner including a handle, an elastic rope and two independent foot pedals is designed. The elastic rope is divided into two stretching parts, and the two foot pedals are connected to the stretching part respectively, allowing the legs to move separately, and at the same time, the installation part and the stretching part are formed integrally to simplify the assembly process.
The training scenario of two legs separation exercise is realized, which enhances functionality, while simplifies the assembly process and reduces production costs.
Smart Images

Figure CN222900116U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fitness equipment, in particular to a pedal tensioner. Background Art
[0002] A pedal tensioner, also known as a pedal rope device, is a device used for lower body muscle training. It usually consists of a pedal, a rope or a spring to provide resistance for the exercise of leg, hip and abdominal muscles. When using the pedal tensioner, the user fixes the pedal on the foot and then applies force through the pedal for muscle training. This device can help strengthen the leg muscle strength, improve the lower body line, and enhance the explosive power and endurance.
[0003] However, the existing pedal tensioners mainly install two pedals on an elastic rope, and the two legs cannot be separated, so more scenarios such as splits cannot be exercised. Occasionally, there is a pedal tensioner that can perform split training, which is formed by using two separate elastic ropes sleeved on the handles. Such a split-type pedal tensioner has complicated production and assembly processes, is not convenient to use, and increases production costs. Summary of the Utility Model
[0004] The utility model aims at the above problems and provides a pedal tensioner.
[0005] The technical solution adopted by the utility model is as follows:
[0006] The present application provides a pedal tensioner, including a handle, an elastic rope and pedals. The elastic rope includes an installation part and two stretching parts, and one ends of the two stretching parts are respectively connected to the installation part;
[0007] The elastic rope is installed on the handle through the installation part;
[0008] There are two pedals, and the two pedals are respectively connected to the ends of the stretching parts far away from the installation part.
[0009] The elastic rope is divided into two stretching parts, and the two legs can do split and other leg separation movement training through the two pedals and the two stretching parts. Compared with the traditional single-elastic-rope single-type pedal tensioner, the pedal tensioner of the present application has more usage scenarios and stronger functionality. At the same time, the two stretching parts are installed on one installation part. When assembling the pedal tensioner, only one installation is required, that is, installing the installation part on the handle can complete the assembly of the handle and the elastic rope. The assembly process is simple, convenient to use and reduces production costs.
[0010] Further, the installation part and the two stretching parts are integrally formed.
[0011] Further, the installation part includes an installation body and a first connection section provided on the installation body. The first connection section is used to connect the installation body and the stretching part.
[0012] The stretching part is smoothly and transitionally connected to the installation body through the first connection section.
[0013] The smooth and transitional connection of the stretching part to the installation body through the first connection section enables the first connection section to function as a reinforcing rib. During actual use, the connection structural strength between the stretching part and the installation part can be enhanced, avoiding breakage.
[0014] Further, the installation body has a first through hole. The axial direction of the first through hole is perpendicular to the length direction of the stretching part. The installation part is installed on the handle through the first through hole.
[0015] Further, the handle includes a handle shaft and a handle sleeve sleeved on the handle shaft. The handle shaft cooperates with the first through hole so that the installation part of the elastic cord is sleeved on the handle.
[0016] Further, anti-slip ridges are provided on the handle sleeve.
[0017] Further, continuous reinforcing ridges are provided on the first connection section, the stretching part, and the footrest. When the elastic cord is stretched, the reinforcing ridges function as reinforcing ribs.
[0018] Further, the two stretching parts are arranged in parallel, and the two stretching parts are integrally formed with the two footrests respectively.
[0019] During actual use, the two stretching parts arranged in parallel and the two footrests form a split-type footrest tensioner. In addition to normal lower limb stretching training, the two lower limbs can also be stretched at any angle separately, such as split stretching and other training.
[0020] In addition, the installation part, the two stretching parts, and the two footrests are integrally formed. After all are integrally formed, the assembly process between them is omitted, reducing the labor assembly cost in the production process. Moreover, as long as the installation part is assembled with the handle, the entire assembly of the handle, the installation part, the two stretching parts, and the two footrests is completed, making the entire assembly process very simple and convenient, and greatly improving the assembly efficiency.
[0021] Further, the stretching part is made of an elastic soft rubber material.
[0022] The soft rubber material of this application is one or a mixture of silicone, TPE, TPR, latex, PE, rubber, etc.
[0023] Further, the two pedals are symmetrically arranged with respect to two juxtaposed stretching portions, and protrude toward the side away from the stretching portions.
[0024] Further, the pedal has a stepping surface for providing a stepping position for the foot, and there is an included angle between the plane where the stepping surface is located and the length direction of the stretching portion, and the range of the included angle is between 30° and 90°.
[0025] When the pedal is inclined relative to the elastic cord, it is convenient for the user to perform training such as splitting the legs horizontally by using the pedal exerciser.
[0026] Further, the included angle is preferably 45° - 90°; when the included angle is 90°, the plane where the stepping surface is located is perpendicular to the length direction of the stretching portion, which is convenient for leg stretching training with the legs together.
[0027] The stepping surface in this application refers to the surface for cooperating with the sole of the foot. The stepping surface can be a flat surface or a curved surface. When the stepping surface is a curved surface, the plane where the stepping surface is located refers to the plane passing through the stepping surface and parallel to the sole plane.
[0028] The beneficial effects of the present utility model are:
[0029] (1) The elastic cord is divided into two stretching portions, and the two legs can perform splitting and other leg-separating movement training through the two pedals and the two stretching portions. Compared with the traditional single-elastic-cord single-pedal exerciser, the exerciser in this application has more usage scenarios and stronger functionality. At the same time, the two stretching portions are installed on one installation portion. When assembling the pedal exerciser, only one installation is required, that is, installing the installation portion on the handle to complete the assembly of the handle and the elastic cord. The assembly process is simple, which is convenient for use and reduces production costs.
[0030] (2) When the pedal is inclined relative to the elastic cord, it is convenient for the user to perform training such as splitting the legs horizontally by using the pedal exerciser. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 is an axonometric structural schematic diagram of the pedal exerciser according to an embodiment of the present utility model;
[0032] Figure 2 is an axonometric structural schematic diagram of the elastic cord and the pedal according to an embodiment of the present utility model;
[0033] Figure 3 is Figure 2 a partial enlarged structural schematic diagram of A in
[0034] The reference numerals in the drawings are as follows:
[0035] 10. Handle; 110. Handle shaft; 120. Handle sleeve; 121. Anti-slip convex rib; 20. Elastic cord; 210. Installation part; 211. Installation body; 2111. First through hole; 212. First connection section; 220. Tensile part; 221. Reinforcing convex rib; 30. Pedal; 310. Pedal body; 320. Second connection section. Detailed implementation mode
[0036] The following will describe the present utility model in detail with reference to the accompanying drawings.
[0037] As Figures 1 to 3 shown, the present application provides a pedal tensioner, which includes a handle 10, an elastic cord 20 and a pedal 30. The elastic cord 20 includes an installation part 210 and two tensile parts 220. One ends of the two tensile parts 220 are respectively connected to the installation part 210;
[0038] The elastic cord 20 is installed on the handle 10 through the installation part 210;
[0039] There are two pedals 30, and the two pedals 30 are respectively connected to one ends of the tensile parts 220 far away from the installation part 210.
[0040] The elastic cord 20 is divided into two tensile parts 220. The two legs can perform split and other leg separation movement trainings through the two pedals 30 and the two tensile parts 220. Compared with the traditional single-elastic-cord 20 single-pedal tensioner, the pedal tensioner of the present application has more usage scenarios and stronger functionality. At the same time, the two tensile parts 220 are installed on one installation part 210. When assembling the pedal tensioner, only one installation is required, that is, installing the installation part 210 on the handle 10 can complete the assembly of the handle 10 and the elastic cord 20. The assembly process is simple, which is convenient for use and reduces production costs.
[0041] In this embodiment, the installation part 210 and the two tensile parts 220 are integrally formed.
[0042] In this embodiment, the installation part 210 includes an installation body 211 and a first connection section 212 provided on the installation body 211. The first connection section 212 is used to connect the installation body 211 and the tensile part 220;
[0043] The tensile part 220 is smoothly and transitionally connected to the installation body 211 through the first connection section 212.
[0044] The tensile part 220 is smoothly and transitionally connected to the installation body 211 through the first connection section 212, so that the first connection section 212 has the function of a reinforcing rib. In the actual use process, the connection structure strength between the tensile part 220 and the installation part 210 can be enhanced, and breakage can be avoided.
[0045] In this embodiment, the mounting body 211 has a first through hole 2111, the axial direction of the first through hole 2111 is perpendicular to the length direction of the stretching part 220, and the mounting part 210 is mounted on the handle 10 through the first through hole 2111.
[0046] In this embodiment, the handle 10 includes a handle shaft 110 and a handle sleeve 120 sleeved on the handle shaft 110. The handle shaft 110 cooperates with the first through hole 2111 so that the mounting part 210 of the elastic cord 20 is sleeved on the handle 10.
[0047] In this embodiment, the handle sleeve 120 is provided with anti-slip ridges 121.
[0048] In this embodiment, continuous reinforcing ridges 221 are provided on the first connecting section 212, the stretching part 220 and the footrest 30. When the elastic cord 20 is stretched, the reinforcing ridges 221 act as reinforcing ribs.
[0049] In this embodiment, two stretching parts 220 are arranged in parallel, and the two stretching parts 220 are integrally formed with the two footrests 30 respectively.
[0050] During actual use, the two stretching parts 220 arranged in parallel and the two footrests 30 form a split-type footrest tensioner. In addition to normal lower limb stretching training, training such as splits can also be carried out.
[0051] In this embodiment, the stretching part 220 is made of elastic soft rubber material.
[0052] In this embodiment, the material of the stretching part 220 is silicone.
[0053] In this embodiment, the two footrests 30 are symmetrically arranged with respect to the two stretching parts 220 arranged in parallel, and protrude toward the side away from the stretching part 220.
[0054] In this embodiment, the footrest 30 has a stepping surface for providing a stepping position for the foot, and an included angle is formed between the plane where the stepping surface is located and the length direction of the stretching part 220.
[0055] In this embodiment, an included angle of 50° is formed between the plane where the stepping surface is located and the length direction of the stretching part 220.
[0056] The stepping surface in this application refers to the surface for cooperating with the sole of the foot. The stepping surface can be a plane or a curved surface. When the stepping surface is a curved surface, the plane where the stepping surface is located refers to the plane passing through the stepping surface and parallel to the sole plane.
[0057] In this embodiment, the footrest 30 includes a footrest body 310 and a second connecting section 320 connected to the footrest body 310. The second connecting section 320 is used to connect the footrest 30 and the stretching part 220 of the elastic cord 20 together;
[0058] The pedal body 310 is a "one"-shaped pull rod structure.
[0059] In this embodiment, the stepping surface is arranged on the side of the pedal body 310 facing the handle 10.
[0060] In other embodiments, the included angle between the plane where the stepping surface is located and the length direction of the stretching part 220 is 90°, that is, the plane where the stepping surface is located is perpendicular to the length direction of the stretching part 220, and there is an included angle between the axial direction of the first through hole 2111 and the length direction of the stretching part 220, and the included angle is greater than 30° and less than 90°.
[0061] The above are only the preferred embodiments of the present invention, and thus do not limit the patent protection scope of the present invention. Any equivalent structural transformation made by using the content of the specification and drawings of the present invention, directly or indirectly applied in other related technical fields, shall be similarly included in the protection scope of the present invention.
Claims
1. A pedal puller, characterized in that: It includes a handle, an elastic rope and a pedal, wherein the elastic rope includes a mounting portion and two stretching portions, and one end of the two stretching portions is respectively connected to the mounting portion; The elastic rope is installed on the handle through the installation part; The pedals include two pedals, and the two pedals are respectively connected to one end of the stretching portion away from the mounting portion.
2. A pedal puller as claimed in claim 1, characterized in that: The mounting portion is integrally formed with the two stretching portions.
3. A pedal puller as claimed in claim 1, characterized in that: The mounting portion includes a mounting body and a first connecting section disposed on the mounting body, wherein the first connecting section is used to connect the mounting body and the stretching portion; The stretching portion is smoothly connected to the mounting body through the first connecting section.
4. A pedal puller as claimed in claim 3, characterized in that: The mounting body has a first through hole, the axial direction of the first through hole is perpendicular to the length direction of the stretching portion, and the mounting portion is mounted on the handle through the first through hole.
5. A pedal puller as claimed in claim 4, characterized in that: The handle comprises a handle shaft and a handle sleeve sleeved on the handle shaft, and the handle shaft cooperates with the first through hole so that the mounting portion of the elastic rope is sleeved on the handle.
6. A pedal puller as claimed in claim 3, characterized in that: The first connecting section, the stretching portion and the pedal are provided with continuous reinforcing ridges, and when the elastic rope is stretched, the reinforcing ridges act as reinforcing ribs.
7. A pedal puller as claimed in claim 1 or 2, characterized in that: The two stretching parts are arranged in parallel, and the two stretching parts are respectively formed integrally with the two pedals.
8. A pedal puller as claimed in claim 1, characterized in that: The stretching part is made of elastic soft rubber material.
9. A pedal puller as claimed in claim 1, characterized in that: The two pedals are symmetrically arranged with respect to the two parallel stretching parts, and are convexly arranged toward a side away from the stretching parts.
10. A pedal puller as claimed in claim 9, characterized in that: The pedal has a treading surface for providing a treading position for the foot, and an angle is formed between the plane where the treading surface is located and the length direction of the stretching portion, and the range of the angle is between 30° and 90°.