Buttock pushing device
By designing an adjustable-length combined frame and an adjustable pedal angle hip pusher, the problems of poor adaptability and large size of traditional hip pushers are solved, achieving convenient transportation and storage.
Patent Information
- Application Number
- CN202520172228.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-01-23
AI Technical Summary
Traditional hip thrusters cannot adapt to different individuals' body structures and exercise habits, and commercial hip thrusters are large and heavy, making them inconvenient to transport and store.
Design an adjustable length modular frame structure, including an adjustable second frame component and a limiting component, an adjustable pedal angle, and detachable support pads and tension components. The overall structure is compact and easy to store.
It enables the adjustment of the combined frame length and pedal angle according to individual needs, reducing product volume, facilitating transportation and storage, lowering transportation and warehousing costs, and adapting to the usage needs of more users.
Smart Images

Figure CN223641251U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of fitness equipment technology, and in particular relates to a hip thruster. Background Technology
[0002] Traditional hip press machines typically employ a fixed movement trajectory, which may not fully adapt to the different body structures and exercise habits of individuals. Some hip press machines may be designed for people of specific body types or strength levels, potentially causing fit issues for users with larger or smaller body sizes. Furthermore, some commercial-grade hip press machines are bulky, taking up valuable space in gyms, which is inconvenient for small private studios or home users; and their large size and weight also make them difficult to ship after purchase. Utility Model Content
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a hip pusher that is small in size, easy to store and transport.
[0004] This utility model is implemented as follows: a hip thruster, comprising:
[0005] A first frame component, which is generally U-shaped, has an open end and a closed end;
[0006] A second frame component is arbitrarily disposed on the first frame component. The second frame component is coplanar or parallel to the first frame component. The second frame component and the first frame component are combined to form a combined frame with an adjustable length. The second frame component has a proximal end and a distal end. The proximal end of the second frame component is disposed on the first frame component. The distal end of the second frame component and the closed end of the first frame component constitute the two ends of the combined frame.
[0007] A first limiting member is provided on at least one of the first frame assembly and the second frame assembly, and the first limiting member is used to restrict relative rotation between the first frame assembly and the second frame assembly;
[0008] A foot pedal, which is mounted on the second frame assembly and is used to support the exerciser's feet; the angle between the foot pedal and the second frame assembly is adjustable.
[0009] A support pad is installed at the closed end of the first frame assembly;
[0010] A tension component is disposed on the first frame component, and a space for accommodating the exerciser's body is formed between the tension component and the first frame component. The tension component is used to restrict the exerciser's movement away from the combined frame.
[0011] Optionally, the second frame assembly is provided with an angle adjustment member for adjusting the tilt angle of the pedal, and the pedal is fixed on the angle adjustment member.
[0012] Optionally, the second frame assembly has a receiving space, within which the angle adjustment element is disposed.
[0013] Optionally, the angle adjustment component includes a first movable bracket and a connecting rod. The first movable bracket includes a first end and a second end. The first end of the first movable bracket is rotatably connected to the inner wall of the second frame assembly. The second end of the first movable bracket can rotate around the first end to adjust the tilt angle of the first movable bracket. One end of the connecting rod is rotatably connected to the first movable bracket, and the position where the connecting rod is rotatably connected to the first movable bracket is between the first end and the second end of the first movable bracket. The other end of the connecting rod is provided with an adjustment rod. The second frame assembly is provided with a plurality of adjustment slots for accommodating the adjustment rod, and the plurality of adjustment slots are spaced apart.
[0014] Optionally, the first movable bracket is generally U-shaped, with its opening facing / close to the closed end of the first frame assembly. Two symmetrically arranged first rotating pins are provided at the opening of the first movable bracket, and the first movable bracket and the second frame assembly are rotatably connected by the two first rotating pins.
[0015] Optionally, there are two connecting rods, which are spaced apart inside the first movable bracket, and the two connecting rods are rotatably connected to the first movable bracket through two symmetrically arranged second rotating pins.
[0016] The number of adjusting rods is at least one, and the end of the adjusting rod extends to the outside of the first movable bracket and into the adjusting groove;
[0017] The plurality of adjustment slots are interconnected, and the positions where the plurality of adjustment slots are connected allow the adjustment rod to pass through.
[0018] Optionally, the second frame assembly is generally U-shaped, the outer contour of the first movable bracket is adapted to the shape of the inner sidewall of the second frame assembly, a limiting hole is provided at the second end of the first movable bracket, and a first through hole is provided at the position corresponding to the limiting hole of the second frame assembly. The first movable bracket and the second frame assembly can be locked and fixed together by limiting bolts passing through the first through hole and the limiting hole.
[0019] Optionally, the first frame component includes two oppositely disposed sidewalls;
[0020] Optionally, the first frame assembly has a plurality of spaced bolt holes on its sidewall, the plurality of bolt holes being arranged along the length of the sidewall, and the second frame assembly and the first frame assembly bracket assembly being locked and fixed by screws passing through the bolt holes.
[0021] Optionally, the first frame component has a plurality of spaced slots on its sidewall, the plurality of slots being spaced apart along the length of the sidewall, and the second frame component has a locking position that matches the slots, the second frame component and the first frame component support component being locked and fixed together by the slots and the locking position.
[0022] Optionally, the first frame assembly has a sliding groove on two opposite sidewalls, the sliding groove is arranged along the length of the sidewall and passes through the first frame assembly, the second frame assembly has a first threaded hole, and a limiting bolt is slidably arranged in the sliding groove for locking and fixing the second frame assembly to the first frame assembly after being threadedly connected to the first threaded hole.
[0023] Optionally, the first limiting component is a limiting post or a limiting plate.
[0024] The first limiting member is located at the bottom of the first frame component.
[0025] Optionally, the tension component can be any one of an elastic band, an elastic rope, or a tension spring.
[0026] Optionally, the first frame component is provided with a buckle assembly for fixing the tension component, and the number of buckle assemblies is two, and the two buckle assemblies are symmetrically arranged.
[0027] Optionally, the buckle assembly includes a ring-shaped component and a sheet metal component for restricting the ring-shaped component on the first frame assembly. The first frame assembly is provided with two symmetrical second threaded holes, and the two sheet metal components are provided with second through holes corresponding to the two symmetrical second threaded holes. The sheet metal components are fixed to the first frame assembly by screws passing through the second through holes.
[0028] Optionally, multiple sets of the two symmetrical second threaded holes are provided, and the multiple sets of the two symmetrical second threaded holes are spaced apart.
[0029] Optionally, a support column is provided at the closed end of the first frame component, and the support pad is disposed on the support column;
[0030] The support column is detachably connected to the first frame assembly.
[0031] Optionally, the support column is rotatably connected to the first frame assembly:
[0032] Two spaced-apart first limiting plates are provided above the closed end of the first frame component. The two first limiting plates are rotatably connected to the support column by a third rotating pin. A limiting pin for restricting the rotation of the support column relative to the first frame component is also provided between the support column and at least one of the first limiting plates.
[0033] Optionally, the bottom of the support column is provided with an extension plate, which extends to one side of the closed end of the first frame assembly and abuts against one side of the closed end of the first frame assembly.
[0034] Optionally, the support column is hollow inside, the support pad is disposed on a sliding column, the sliding column is adjustablely disposed inside the support column, and a second limiting member is provided on the side wall of the support column to restrict the sliding column from sliding inside the support column.
[0035] Optionally, the first frame component, the second frame component, the support column, and the sliding column are all hollow tubular components.
[0036] Optionally, both the first frame assembly and the second frame assembly are provided with a plurality of spaced-apart pads at their bottoms; the bottom of each pad is at least made of soft rubber material.
[0037] The hip thruster provided in this embodiment of the utility model has an adjustable position for the second frame component on the first frame component, which allows for adjustment of the length of the combined frame formed by the first and second frame components. This allows the combined frame to be adjusted to a suitable length according to the user's height and habits, thus meeting the needs of different users. Furthermore, the length of the combined frame can be adjusted to its shortest state, which not only facilitates storage after use but also reduces the volume of the product packaging, thereby lowering costs for product packaging, warehousing, and logistics. This is particularly advantageous for long-distance transportation, especially for cross-border sales.
[0038] The first limiting component can restrict the relative rotation between the first frame assembly and the second frame assembly, so that the combined frame can maintain the corresponding combined state during use, thereby ensuring the normal use of the hip pusher.
[0039] The angle between the pedal and the second frame assembly is adjustable, allowing exercisers to adjust the pedal angle according to their personal habits, thus conveniently meeting different usage needs.
[0040] Support pads can be used to support the exerciser's back, protect the exerciser's back, and make it easier for the exerciser to apply force;
[0041] The resistance band can restrict the exerciser's movement away from the combined frame, allowing the exerciser to achieve the desired training effect by overcoming the restraint of the resistance band. Attached Figure Description
[0042] To more clearly illustrate the technical solution of this utility model, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0043] Figure 1 This is a schematic diagram of the hip pusher assembly frame in its retracted state according to an embodiment of the present invention.
[0044] Figure 2 This is a schematic diagram of the hip pusher assembly frame in its extended state according to an embodiment of the present invention.
[0045] Figure 3 This is a schematic diagram from another perspective of the hip pusher assembly frame provided in the embodiment of this utility model when its length is extended.
[0046] Figure 4 This is an exploded view of the hip pusher provided in an embodiment of this utility model.
[0047] Figure 5 This is an exploded view from another perspective of the hip pusher provided in this embodiment of the present invention.
[0048] Figure 6 This is an exploded view of the location of the first frame component of the hip pusher provided in this embodiment of the utility model.
[0049] Figure 7 yes Figure 6 Enlarged view of point A in the middle.
[0050] Figure 8 This is an exploded view of the location of the second frame component of the hip pusher provided in this embodiment of the utility model.
[0051] Number: 1. Combined frame; 10. Foot; 11. First frame assembly; 110. Side wall; 111. Open end; 112. Closed end; 113. Slide groove; 114. Limiting bolt; 115. Second threaded hole; 116. Support column; 1161. Extension plate; 1162. Sliding column; 1163. Second limiting element; 117. First limiting plate; 118. Third rotating pin; 119. Limiting pin; 12. Second frame assembly; 121. Proximal end; 122. Distal end 1. End; 2. Adjustment groove; 3. First through hole; 4. First threaded hole; 5. First limiting component; 6. Pedal; 7. Support pad; 8. Tension assembly; 9. Angle adjustment component; 10. First movable bracket; 11. First end; 12. Second end; 13. First rotating pin; 14. Limiting hole; 15. Connecting rod; 16. Second rotating pin; 17. Adjusting rod; 18. Limiting bolt; 19. Pull ring; 20. Buckle assembly; 11. Ring-shaped component; 21. Sheet metal part Detailed Implementation
[0052] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0053] like Figure 1-8 As shown, the hip thruster provided in this embodiment of the present invention includes:
[0054] The first frame component 11 is generally U-shaped and has an open end 111 and a closed end 112.
[0055] The second frame component 12 is arbitrarily disposed on the first frame component 11. The second frame component 12 and the first frame component 11 are coplanar or parallel. The second frame component 12 and the first frame component 11 are combined to form a combined frame 1 with an adjustable length. The second frame component 12 has a proximal end 121 and a distal end 122. The proximal end 121 of the second frame component 12 is disposed on the first frame component 11. The distal end 122 of the second frame component 12 and the closed end 112 of the first frame component 11 constitute the two ends of the combined frame 1. The position of the second frame component 12 can be adjusted toward or away from the closed end 112 of the first frame component 11.
[0056] The first limiting member 2 is provided on at least one of the first frame assembly 11 and the second frame assembly 12, and the first limiting member 2 is used to restrict the relative rotation between the first frame assembly 11 and the second frame assembly 12.
[0057] The pedal 3 is mounted on the second frame assembly 12 and is used to support the exerciser's feet. The angle between the pedal 3 and the second frame assembly 12 is adjustable.
[0058] Support pad 4 is installed at the closed end 112 of the first frame assembly 11;
[0059] The tension component 5 is disposed on the first frame component 11, and a space for accommodating the exerciser's body is formed between the tension component 5 and the first frame component 11. The tension component 5 is used to restrict the exerciser from moving away from the combined frame 1.
[0060] The direction of the central axis of the first frame component 11 is defined as the X direction. The position of the second frame component 12 on the first frame component 11 can be adjusted along the X direction. The length of the combined frame 1 is set along the X direction. The position adjustment direction of the second frame component 12 is set along the X direction.
[0061] The hip thruster provided in this embodiment of the utility model has an adjustable position for the second frame component 12 on the first frame component 11, which allows the length of the combined frame 1 formed by the first frame component 11 and the second frame component 12 to be adjusted. This allows the combined frame 1 to be adjusted to a suitable length according to the user's height and habits, thus meeting the needs of different users. Furthermore, the length of the combined frame 1 can be adjusted to its shortest state, which not only facilitates storage after use but also reduces the volume of the product packaging, lowering costs for packaging, warehousing, and logistics. This is particularly advantageous for long-distance transportation, especially for cross-border sales.
[0062] The first limiting member 2 can restrict the relative rotation between the first frame assembly 11 and the second frame assembly 12, so that the combined frame 1 can maintain the corresponding combined state during use, thereby ensuring the normal use of the hip pusher.
[0063] The angle between the pedal 3 and the second frame assembly 12 is adjustable, so that the exerciser can adjust the angle of the pedal 3 according to their personal usage habits, thereby conveniently meeting different usage needs;
[0064] Support pad 4 can be used to support the exerciser's back, protect the exerciser's back, and make it easier for the exerciser to apply force;
[0065] The tension component 5 can restrict the exerciser from moving away from the combined frame 1, so that the exerciser can achieve the exercise effect by overcoming the restraint of the tension component 5.
[0066] The phrase "generally U-shaped" in the embodiments of this utility model means that it is not limited to the standard U-shape, but can also be a shape that is close to or similar to a U-shape, such as a square U-shape, or other similar shapes, which will not be listed here.
[0067] The second frame assembly 12 and the first frame assembly 11 can be fixed by bolt locking, snap-fit, or sliding fit; the position of the second frame assembly 12 on the first frame assembly 11 can be adjusted by setting a sliding groove 113 or multiple spaced through holes, slots, or other feasible methods on the first frame assembly 11, which will not be elaborated here.
[0068] The angle between the pedal 3 and the second frame assembly 12 can be adjusted by the corresponding angle adjustment piece 6 described later or by other feasible structures, which are not specifically limited here.
[0069] The second frame assembly 12 is provided with an angle adjustment piece 6 for adjusting the tilt angle of the pedal 3, and the pedal 3 is fixed on the angle adjustment piece 6; the angle of the pedal 3 can be adjusted by the angle adjustment piece 6 to meet the needs of different exercisers.
[0070] Optionally, the second frame assembly 12 has a receiving space, and the angle adjustment piece 6 is disposed within the receiving space. In this way, the angle adjustment piece 6 will not increase the volume of the product after being disposed, and the receiving space of the second frame assembly 12 can be effectively utilized, which is convenient for storage, packaging and transportation.
[0071] Optionally, the angle adjustment component 6 includes a first movable bracket 61 and a connecting rod 62. The first movable bracket 61 includes a first end 611 and a second end 612. The first end 611 of the first movable bracket 61 is rotatably connected to the inner wall of the second frame assembly 12. The second end 612 of the first movable bracket 61 can rotate around the first end 611 to adjust the tilt angle of the first movable bracket 61. One end of the connecting rod 62 is rotatably connected to the first movable bracket 61, and the position where the connecting rod 62 is rotatably connected to the first movable bracket 61 is between the first end 611 and the second end 612 of the first movable bracket 61. An adjusting rod 63 is provided at the other end of the rod 62. The second frame assembly 12 is provided with several adjusting slots 123 for accommodating the adjusting rod 63, and the several adjusting slots 123 are spaced apart. By cooperating the adjusting rod 63 with different adjusting slots 123, the setting position of the adjusting rod 63 can be changed. After the position of the adjusting rod 63 changes, the tilt angle of the first movable support 61 will change through the connecting rod 62, thereby changing the tilt angle of the pedal 3. Therefore, during use, the exerciser can make the adjusting rod 63 cooperate with the corresponding adjusting slot 123 according to the actual needs to make the pedal 3 tilt to the appropriate angle, which is very convenient.
[0072] Optionally, the first movable bracket 61 is generally U-shaped, with its opening facing or close to the closed end 112 of the first frame assembly 11. Two symmetrically arranged first rotating pins 613 are provided at the opening of the first movable bracket 61. The first movable bracket 61 and the second frame assembly 12 are rotatably connected by the two first rotating pins 613. The two symmetrically arranged first rotating pins 613 help to ensure the stability of the rotatable connection.
[0073] Optionally, there are two connecting rods 62, which are spaced apart inside the first movable bracket 61 and symmetrically arranged. This allows the connecting rods 62 to be hidden inside the first movable bracket 61, which helps to improve the space utilization of the first movable bracket 61. The two connecting rods 62 are rotatably connected to the first movable bracket 61 through two symmetrically arranged second rotating pins 621. After the two symmetrically arranged connecting rods 62 are rotatably connected to the first movable bracket 61, it helps to ensure the balance of support and push-pull forces, thereby increasing the stability of the rotatable connection between the connecting rods 62 and the first movable bracket 61, and facilitating the smooth rotation of the first movable bracket 61 by the connecting rods 62.
[0074] Optionally, there is one adjusting rod 63, with both ends of the adjusting rod 63 extending to the outside of the first movable bracket 61 and into the adjusting groove 123;
[0075] Optionally, there are two adjusting rods 63. One end of each adjusting rod 63 is connected to one of the two connecting rods 62, and the other end of each adjusting rod 63 extends to the outside of the first movable bracket 61 and into the adjusting groove 123.
[0076] Optionally, several adjustment slots 123 are interconnected, and the positions where several adjustment slots 123 are connected allow the adjustment rod 63 to pass through. In this way, the adjustment rod 63 can be moved directly from one position of adjustment slot 123 to another position of adjustment slot 123, thereby facilitating the adjustment of the angle of the pedal 3.
[0077] Optionally, the second frame assembly 12 is generally U-shaped, and the outer contour of the first movable bracket 61 is adapted to the shape of the inner wall of the second frame assembly 12. The second end 612 of the first movable bracket 61 is provided with a limiting hole 614, and the second frame assembly 12 is provided with a first through hole 124 at the position corresponding to the limiting hole 614. The first movable bracket 61 and the second frame assembly 12 can be locked and fixed together by a limiting bolt 7 passing through the first through hole 124 and the limiting hole 614. A pull ring 71 is provided on the outside of the limiting bolt 7. In this way, when it is not necessary to tilt the pedal 3, the first through hole 124 and the limiting hole 614 can be locked together. The first movable bracket 61 is fixed to the second frame assembly 12 by inserting the limiting bolt 7 into the 14, ensuring that the pedal 3 is always flush with the second frame assembly 12. This allows the hip pusher provided in this embodiment to be used like a traditional hip pusher, and the pedal 3 will not become unstable due to its angle adjustment function. When it is necessary to tilt the pedal 3, the locking state between the first movable bracket 61 and the second frame assembly 12 can be released by moving the limiting bolt 7 out of the limiting hole 614, thereby adjusting the angle of the pedal 3 as needed. The pull ring 71 facilitates the movement of the limiting bolt 7.
[0078] Optionally, the first frame assembly 11 includes two oppositely arranged sidewalls 110. The sidewalls 110 of the first frame assembly 11 are provided with a plurality of spaced bolt holes, which are arranged along the length of the sidewalls 110. The second frame assembly 12 is provided with a first threaded hole 125. The second frame assembly 12 and the bracket assembly of the first frame assembly 11 are locked together by bolts passing through the bolt holes. In this way, by locking the second frame assembly 12 with different bolt holes on the first frame assembly 11, the fixed position of the second frame assembly 12 on the first frame assembly 11 can be adjusted, thereby changing the length of the combined frame 1 to meet different usage requirements.
[0079] Optionally, the first frame assembly 11 includes two oppositely arranged sidewalls 110. The sidewalls 110 of the first frame assembly 11 are provided with a plurality of spaced-apart slots. The plurality of slots are spaced-apart along the length direction of the sidewalls 110. The second frame assembly 12 is provided with a slot that is adapted to the slot. The second frame assembly 12 and the bracket assembly of the first frame assembly 11 are locked and fixed by the slot and the slot. In this way, by allowing the slot to cooperate with different slots, the fixed position of the second frame assembly 12 on the first frame assembly 11 can be changed, thereby changing the length of the combined frame 1 to meet different usage requirements.
[0080] Optionally, the first frame assembly 11 is provided with a sliding groove 113 on two opposite sidewalls 110. The sliding groove 113 is provided along the length of the sidewall 110 and passes through the first frame assembly 11. The second frame assembly 12 is provided with a first threaded hole 125. A limiting bolt 114 is slidably provided in the sliding groove 113 for locking and fixing the second frame assembly 12 to the first frame assembly 11 after being threadedly connected to the first threaded hole 125.
[0081] Optionally, in this embodiment of the present invention, the first limiting member 2 is a limiting plate, which is disposed at the bottom of the first frame assembly 11, and the first limiting member 2 abuts against the bottom of the second frame assembly 12.
[0082] Optionally, in this embodiment of the present invention, the tension component 5 is a tension spring. In other embodiments, the tension component 5 can also be an elastic band, elastic rope, or other feasible elastic components, which will not be listed here. After the corresponding tension component 5 is set, the exerciser's waist and hips need to overcome the corresponding elastic force to move upward, thereby achieving the exercise effect.
[0083] Optionally, the first frame assembly 11 is provided with a buckle assembly 8 for fixing the tension assembly 5. There are two buckle assemblies 8, which are symmetrically arranged. The buckle assemblies 8 are convenient to fix to the first frame assembly 11, and also facilitate the fixing and disassembly of the tension assembly 5.
[0084] Optionally, the buckle assembly 8 includes a ring-shaped part 81 and a sheet metal part 82 for restricting the ring-shaped part 81 on the first frame assembly 11. The first frame assembly 11 is provided with two symmetrical second threaded holes 115, and the two sheet metal parts 82 are provided with second through holes corresponding to the two symmetrical second threaded holes 115. The sheet metal parts 82 are fixed to the first frame assembly 11 by screws passing through the second through holes.
[0085] Optionally, multiple sets of the symmetrical second threaded holes 115 are provided, with the multiple sets of symmetrical second threaded holes 115 spaced apart; this allows the setting position of the corresponding tension component 5 to be adjusted according to the exerciser's needs, thereby meeting different usage requirements.
[0086] Optionally, a support column 116 is provided at the closed end 112 of the first frame component 11, and the support pad 4 is provided on the support column 116. The support column 116 can increase the height of the support pad 4 to facilitate support of the exerciser's back.
[0087] Optionally, the support column 116 is detachably connected to the first frame assembly 11, which facilitates storage, product packaging, storage and transportation, and convenient storage after daily use, thus saving space.
[0088] Optionally, the support column 116 is rotatably connected to the first frame assembly 11:
[0089] Two spaced-apart first limiting plates 117 are provided above the closed end 112 of the first frame assembly 11. The two first limiting plates 117 are rotatably connected to the support column 116 via a third rotating pin 118. A limiting pin 119 is also provided between the support column 116 and at least one of the first limiting plates 117 to limit the rotation of the support column 116 relative to the first frame assembly 11. The limiting pin 119 has a simple structure, strong effectiveness, and is easy to install and disassemble. After the limiting pin 119 is removed, the support column 116 can be folded toward the second frame assembly 12, thereby reducing the height of the product, which is beneficial for product packaging, storage, transportation, and daily storage. When the support column 116 is rotated to a vertical position, the corresponding limiting pin 119 can be used to limit the rotation of the support column 116 relative to the first frame assembly 11, thereby ensuring that the support column 116 can stably support the support pad 4 and ensure the support effect of the support pad 4.
[0090] Optionally, the bottom of the support column 116 is provided with an extension plate 1161, which extends to one side of the closed end 112 of the first frame assembly 11 and abuts against one side of the closed end 112 of the first frame assembly 11. The extension plate 1161 can restrict the support column 116 from rotating away from the second frame assembly 12. When the support pad 4 is in use, the support pad 4 and the support column 116 have a tendency to rotate away from the second frame assembly 12. Therefore, the extension plate 1161 enhances the supporting effect of the support column 116 and helps to ensure the stability of the support pad 4.
[0091] Optionally, the support column 116 is hollow inside, and the support pad 4 is disposed on a sliding column 1162. The sliding column 1162 is adjustablely disposed inside the support column 116. The side wall of the support column 116 is provided with a second limiting member 1163 for restricting the sliding column 1162 from sliding inside the support column 116. The second limiting member 1163 is a limiting pin or a limiting screw, and the corresponding sliding column 1162 is provided with a pin hole or a screw hole. The setting of the sliding column 1162 facilitates the adjustment of the height of the support pad 4, which can meet different usage needs.
[0092] Optionally, the support pad 4 is detachably connected to the sliding column 1162, which facilitates the disassembly of the support pad 4. After disassembly, the support pad 4 can be placed in the accommodating space in the middle of the first frame assembly 11, which further facilitates product, packaging, storage, transportation and organization. Moreover, users can also replace the support pad 4 as needed to adapt to different usage requirements.
[0093] Optionally, the first frame component 11, the second frame component 12, the support column 116 and the sliding column 1162 are all hollow tubes, which can reduce the overall weight of the product while ensuring the structural strength of the product, thereby facilitating the movement and transportation of the product.
[0094] Optionally, the bottom of the first frame assembly 11 and the second frame assembly 12 are provided with a number of spaced-apart pads 10; the pads 10 have a small contact area with the ground, which can make good contact with the ground and effectively reduce the shaking of the hip pusher, thus avoiding the problem of the hip pusher shaking due to the unevenness of the bottom surface of the combined frame 1 or the uneven ground after the entire bottom surface of the combined frame 1 is directly placed on the ground.
[0095] Optionally, the bottom of the foot 10 is at least made of soft rubber material, such as silicone or rubber. The soft rubber material can automatically adapt to the flatness of the ground within a certain range after being subjected to force. Moreover, the soft rubber material can reduce the noise level when the hip pusher contacts the ground during use, reducing the impact of abnormal noise on the surrounding environment. In addition, the soft rubber material often has better friction performance, which can increase the friction between the hip pusher and the ground and prevent the hip pusher from moving relative to the ground during use. Example
[0096] The hip pusher provided in this embodiment of the utility model includes a first frame assembly 11, which is U-shaped and has an open end 111 and a closed end 112. The first frame assembly 11 has two oppositely arranged side walls 110, and two sliding grooves 113 are provided on the two oppositely arranged side walls 110 along the length direction of the side walls 110. The sliding grooves 113 penetrate the inner and outer sides of the first frame assembly 11.
[0097] A second frame assembly 12 is slidably disposed on the inner side of the two opposite sidewalls 110 of the first frame assembly 11. The first frame assembly 11 and the second frame assembly 12 are coplanar. A limit bolt 114 is provided on the first frame assembly 11, and a first threaded hole 125 is provided on the second frame assembly 12. The threaded part of the limit bolt 114 passes through the sliding groove 113 from the outside of the first frame assembly 11 and is threadedly connected to the first threaded hole 125 on the second frame assembly 12. The second frame assembly 12 and the first frame assembly 11 are combined to form a combined frame 1 with an adjustable length. The second frame assembly 12 has a distal end 122 and a proximal end 121. The proximal end 121 of the frame assembly is located on the first frame assembly 11. The closed end 112 of the first frame assembly 11 and the distal end 122 of the second frame assembly 12 constitute the two ends of the combined frame 1. When the position of the second frame assembly 12 is adjusted, the second frame assembly 12 can move toward or away from the closed end 112 of the first frame assembly 11.
[0098] The bottom of the first frame assembly 11 is provided with a limiting plate for restricting the rotation of the second frame assembly 12 relative to the first frame assembly 11;
[0099] The second frame assembly 12 is provided with a pedal 3 for supporting the exerciser's feet. The second frame assembly 12 is also provided with an angle adjustment component 6 for adjusting the tilt angle of the pedal 3. The second frame assembly 12 has a receiving space, within which the angle adjustment component 6 is disposed. The angle adjustment component 6 includes a first movable support 61 and a connecting rod 62. The first movable support 61 includes a first end 611 and a second end 612. The first end 611 of the first movable support 61 is rotatably connected to the inner wall of the second frame assembly 12, and the second end 612 of the first movable support 61 can rotate around the first end 611 to adjust the tilt angle of the first movable support 61. One end of the connecting rod 62 is rotatably connected to the first movable support 61, and the position where the connecting rod 62 is rotatably connected to the first movable support 61 is between the first end 611 and the second end 612 of the first movable support 61. The other end of the connecting rod 62 is provided with an adjusting rod 63. The frame assembly 12 is provided with a plurality of adjustment slots 123 for accommodating adjustment rods 63, and the plurality of adjustment slots 123 are spaced apart; the first movable bracket 61 is generally U-shaped, and the opening of the first movable bracket 61 faces / is located close to the closed end 112 of the first frame assembly 11. Two symmetrically arranged first rotating pins 613 are provided at the opening of the first movable bracket 61, and the first movable bracket 61 and the second frame assembly 12 are rotatably connected by the two first rotating pins 613; there are two connecting rods 62, which are spaced apart inside the first movable bracket 61, and the two connecting rods 62 are rotatably connected to the first movable bracket 61 by two symmetrically arranged second rotating pins 621; there is one adjustment rod 63, and both ends of the adjustment rod 63 extend to the outside of the first movable bracket 61 and extend into the adjustment slot 123; the plurality of adjustment slots 123 are interconnected, and the positions where the plurality of adjustment slots 123 are connected allow the adjustment rod 63 to pass through;
[0100] The closed end 112 of the first frame component 11 is provided with a support column 116. The support column 116 is detachably connected to the first frame component 11. A sliding column 1162 is slidably provided inside the support column 116. A support pad 4 is provided on the sliding column 1162. The support pad 4 is detachably connected to the sliding column 1162.
[0101] The first frame component 11 is also equipped with a tension component 5, which is a tension spring. The tension spring and the combined frame 1 form a space to accommodate the exerciser's body. In this way, the exerciser can overcome the tension of the tension spring to exercise. Moreover, the exerciser can adjust and use tension springs of different strengths according to their own situation, making it highly adaptable.
[0102] The hip thruster provided in this embodiment of the utility model has a simple and easy-to-store structure. The length of its combined frame 1 is adjustable, and the support column 116 and support pad 4 are detachable. This not only meets the requirements of normal use, but also facilitates storage, packaging, and transportation, which can save on packaging, storage and long-distance transportation costs, which is very beneficial for cross-border trade. The angle of its pedal 3 is adjustable, which is more applicable than the traditional hip thruster and can meet the needs of more different exercisers.
[0103] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.
Claims
1. A hip thruster, characterized in that, include: A first frame component, which is generally U-shaped, has an open end and a closed end; A second frame component is arbitrarily disposed on the first frame component. The second frame component is coplanar or parallel to the first frame component. The second frame component and the first frame component are combined to form a combined frame with an adjustable length. The second frame component has a proximal end and a distal end. The proximal end of the second frame component is disposed on the first frame component. The distal end of the second frame component and the closed end of the first frame component constitute the two ends of the combined frame. A first limiting member is provided on at least one of the first frame assembly and the second frame assembly, and the first limiting member is used to restrict relative rotation between the first frame assembly and the second frame assembly; A foot pedal, which is mounted on the second frame assembly and is used to support the exerciser's feet; the angle between the foot pedal and the second frame assembly is adjustable. A support pad is installed at the closed end of the first frame assembly; A tension component is disposed on the first frame component, and a space for accommodating the exerciser's body is formed between the tension component and the first frame component. The tension component is used to restrict the exerciser's movement away from the combined frame.
2. The hip thruster according to claim 1, characterized in that, The second frame assembly is provided with an angle adjustment component for adjusting the tilt angle of the pedal, and the pedal is fixed on the angle adjustment component.
3. The hip thruster according to claim 2, characterized in that, The second frame assembly has a receiving space, and the angle adjustment member is disposed within the receiving space; The angle adjustment component includes a first movable bracket and a connecting rod. The first movable bracket includes a first end and a second end. The first end of the first movable bracket is rotatably connected to the inner wall of the second frame assembly. The second end of the first movable bracket can rotate around the first end to adjust the tilt angle of the first movable bracket. One end of the connecting rod is rotatably connected to the first movable bracket, and the position where the connecting rod is rotatably connected to the first movable bracket is between the first end and the second end of the first movable bracket. The other end of the connecting rod is provided with an adjustment rod. The second frame assembly is provided with a plurality of adjustment slots for accommodating the adjustment rods, and the plurality of adjustment slots are spaced apart.
4. The hip thruster according to claim 3, characterized in that, The first movable bracket is generally U-shaped. The opening of the first movable bracket faces / is close to the closed end of the first frame assembly. Two symmetrically arranged first rotating pins are provided at the opening of the first movable bracket. The first movable bracket and the second frame assembly are rotatably connected by the two first rotating pins. The number of connecting rods is two, and the two connecting rods are spaced apart inside the first movable bracket. The two connecting rods are rotatably connected to the first movable bracket through two symmetrically arranged second rotating pins. The number of adjusting rods is at least one, and the end of the adjusting rod extends to the outside of the first movable bracket and into the adjusting groove; The plurality of adjustment slots are interconnected, and the positions where the plurality of adjustment slots are connected allow the adjustment rod to pass through.
5. The hip thruster according to claim 3 or 4, characterized in that, The second frame assembly is generally U-shaped. The outer contour of the first movable bracket is adapted to the shape of the inner sidewall of the second frame assembly. A limit hole is provided at the second end of the first movable bracket. A first through hole is provided at the position corresponding to the limit hole of the second frame assembly. The first movable bracket and the second frame assembly can be locked and fixed together by a limit bolt passing through the first through hole and the limit hole.
6. The hip thruster according to claim 1, characterized in that, The first frame component includes two oppositely disposed sidewalls; The first frame assembly has a plurality of spaced bolt holes on its side wall, and the plurality of bolt holes are arranged along the length of the side wall. The second frame assembly and the first frame assembly bracket assembly are locked and fixed by screws passing through the bolt holes. or, The first frame component has a plurality of spaced slots on its side wall, and the plurality of slots are spaced apart along the length of the side wall. The second frame component has a slot that is adapted to the slots. The second frame component and the first frame component bracket component are locked and fixed together by the slots and the slots. or, The first frame assembly has a sliding groove on two opposite side walls. The sliding groove is arranged along the length of the side wall and passes through the first frame assembly. The second frame assembly has a first threaded hole. A limiting bolt is slidably arranged in the sliding groove for locking and fixing the second frame assembly to the first frame assembly after being threadedly connected to the first threaded hole. The first limiting component is a limiting post or a limiting plate; The first limiting member is located at the bottom of the first frame component.
7. The hip thruster according to claim 1, characterized in that, The tension component is any one of the following: elastic band, elastic rope, or tension spring; The first frame component is provided with two buckle components for fixing the tension component, and the two buckle components are arranged symmetrically. The buckle assembly includes a ring-shaped component and a sheet metal component for restricting the ring-shaped component on the first frame assembly. The first frame assembly is provided with two symmetrical second threaded holes, and the two sheet metal components are provided with second through holes corresponding to the two symmetrical second threaded holes. The sheet metal components are fixed to the first frame assembly by screws passing through the second through holes. The pairwise symmetrical second threaded holes are provided in multiple sets, and the multiple sets of pairwise symmetrical second threaded holes are spaced apart.
8. The hip thruster according to claim 1, characterized in that, The first frame component has a support column at its closed end, and the support pad is disposed on the support column; The support column is detachably connected to the first frame assembly; or, The support column is rotatably connected to the first frame assembly: Two spaced-apart first limiting plates are provided above the closed end of the first frame component. The two first limiting plates are rotatably connected to the support column by a third rotating pin. A limiting pin for limiting the rotation of the support column relative to the first frame component is also provided between the support column and at least one of the first limiting plates. An extension plate is provided at the bottom of the support column, the extension plate extends to one side of the closed end of the first frame assembly, and the extension plate abuts against one side of the closed end of the first frame assembly.
9. The hip thruster according to claim 8, characterized in that, The support column is hollow inside, and the support pad is disposed on a sliding column. The sliding column is adjustablely disposed inside the support column, and a second limiting member is provided on the side wall of the support column to restrict the sliding column from sliding inside the support column.
10. The hip thruster according to claim 9, characterized in that, The first frame component, the second frame component, the support column, and the sliding column are all hollow tubular components; The bottom of both the first frame assembly and the second frame assembly is provided with a number of spaced-apart pads; the bottom of the pads is at least made of soft rubber material.