Multifunctional fitness equipment
By designing multifunctional fitness equipment that combines gliding, support, and abdominal training mechanisms, the problem of limited functionality in existing fitness equipment has been solved. It achieves diverse functions such as simulating skiing and abdominal training, with a simple structure and strong practicality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-03-06
AI Technical Summary
Existing fitness equipment has limited functionality and cannot simultaneously simulate skiing and abdominal exercises, making it inconvenient to use.
Design a multifunctional fitness equipment that combines a gliding mechanism, a support mechanism, and an abdominal exercise mechanism. The gliding mechanism is used to simulate skiing, the support mechanism provides cushioning, and the abdominal exercise mechanism is used to exercise the abdominal muscles. The three are connected by a connecting structure to achieve diverse functions.
It combines the functions of simulating skiing and abdominal exercise. The gliding mechanism can be used as both a gliding surface and an abdominal exercise area. It is flexible in use, simple in structure, easy to store, and highly practical.
Smart Images

Figure CN223969425U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fitness equipment, and in particular to a multifunctional fitness equipment. Background Technology
[0002] As people's health awareness continues to increase, the demand for home fitness equipment is also growing. However, the fitness equipment on the market now often has limited functions. For example, abdominal exercise boards can only perform simple abdominal exercises with limited exercise methods, while ski mats usually only focus on simulating the experience of skiing and cannot be combined with other fitness functions, which brings inconvenience to people. Summary of the Invention
[0003] This utility model addresses the shortcomings of existing technologies by providing a multifunctional fitness equipment that combines simulated skiing with abdominal exercises, offering diverse functions and strong practicality.
[0004] The technical solution adopted in this utility model is as follows:
[0005] A multifunctional fitness equipment includes a sliding mechanism, a support mechanism, a first connecting structure, and an abdominal exercise mechanism. The sliding mechanism includes a sliding area defined as a long strip, and a first end and a second end located at both ends of the sliding area. The support mechanism includes a support pad made of a soft material and mounting components that partially or completely cover the support pad. The support mechanism and the sliding mechanism are connected by the first connecting structure, with the first end of the sliding mechanism connected to the first connecting structure and the mounting components of the support mechanism connected to the first connecting structure. The abdominal exercise mechanism is placed on the sliding area and close to the first connecting structure during use. The abdominal exercise mechanism includes an abdominal exercise structure and a deformable connecting unit. One end of the connecting unit is connected to the abdominal exercise structure, and the other end is connected to the first connecting structure. The sliding mechanism is used in conjunction with the abdominal exercise mechanism. The user kneels on the support pad to operate the abdominal exercise structure, and the connecting unit deforms relative to the first connecting structure to adjust the position of the abdominal exercise structure.
[0006] Preferably, the first connecting structure has a length dimension greater than the width dimension of the first end and completely covers the first end, and the length dimension of the first connecting structure is greater than the width dimension of the support pad and completely covers the end of the mounting component.
[0007] Preferably, the first connection structure includes a first lower housing and a first upper housing detachably connected to the upper side of the first lower housing. The first lower housing and the first upper housing form a first chamber around each other. A first channel for a first end to extend into the first chamber is formed between one side of the first upper housing and the first lower housing arranged along the length direction. A second channel for the end of an installation component to extend into the first chamber is formed between the other side of the first upper housing and the first lower housing arranged along the length direction.
[0008] Preferably, the inner wall of the first lower housing is provided with a plurality of first lower positioning posts along the first channel and a plurality of second lower positioning posts along the second channel. The inner wall of the first upper housing is provided with a plurality of first upper positioning posts corresponding to the first lower positioning posts and a plurality of second upper positioning posts corresponding to the second positioning posts. The corresponding first upper positioning posts and first lower positioning posts, and the second upper positioning posts and second lower positioning posts are detachably connected by fasteners. The first end is provided with a plurality of first positioning holes fitted outside the first lower positioning posts or the first upper positioning posts along the width direction. The end of the mounting component is provided with a plurality of second positioning holes fitted outside the second lower positioning posts or the second upper positioning posts along the width direction.
[0009] Preferably, the first upper housing includes a first top plate and a first side plate extending downward from around the first top plate. The first channel is arranged between the bottom of the first side plate and the first lower housing. A first connecting hole communicating with the first chamber is provided on the first side plate. The end of the connecting unit is detachably connected to the first connecting structure in the first connecting hole through a first connector.
[0010] Preferably, the first connector includes a first limiting portion, a first connecting portion connected to the connecting unit, and at least two elastic portions arranged with a gap along the circumference of the first connecting portion. The elastic portion includes a second connecting portion connected to the first connecting portion and a second limiting portion connected to the second connecting portion and protruding from the outer wall of the second connecting portion. The first limiting portion and the second limiting portion are arranged opposite to each other and protrude along the outer periphery of the first connecting portion or along the outer wall of the second connecting portion. When the first connector is fitted into the first connecting hole, each second connecting portion is located in the first connecting hole, and the first limiting portion and the second limiting portion are respectively limited to the inner and outer sides of the first side plate around the first connecting hole. The elastic portion can deflect relative to the first connecting portion to allow the second limiting portion or the first limiting portion to pass through the first connecting hole.
[0011] Preferably, the connecting unit is configured as an elastic rope or elastic band, and the first connecting part has a connecting channel through which the connecting unit passes along its axis. The end of the connecting unit is limited to the side of the connecting channel away from the abdominal strengthening structure by wrapping a limiting ball or setting a limiting knot.
[0012] Preferably, the mounting component includes an upper mounting surface arranged on the upper side of the support pad, a lower mounting surface arranged on the lower side of the support pad, and a side mounting surface arranged on the periphery of the support pad. The side mounting surface connects the upper mounting surface and the lower mounting surface, and one end of the upper mounting surface protrudes from the side of the support pad and is connected to the first connecting structure.
[0013] Preferably, the abdominal strengthening structure includes an abdominal strengthening body for supporting the user's arm and a grip for the user to grasp. The grip is connected to the abdominal strengthening body, and the end of the connecting unit is connected to the abdominal strengthening body. The bottom of the abdominal strengthening body is provided with a sliding part for sliding in the sliding area, and the sliding part is integrally formed with the abdominal strengthening body.
[0014] Preferably, the sliding part is configured as an arc-shaped slider protruding downward from the bottom of the abdominal strengthening body, and there are two abdominal strengthening structures, which are respectively connected to the first connecting structure through at least one connecting unit.
[0015] The beneficial effects of this utility model are as follows:
[0016] This utility model of fitness equipment, due to its gliding mechanism, support mechanism, and abdominal exercise mechanism, can achieve a simulated skiing function through the gliding mechanism, allowing the user to stand on the gliding area of the gliding mechanism and glide back and forth to simulate skiing. Simultaneously, it can achieve an abdominal exercise function through the support mechanism and abdominal exercise mechanism, allowing the user to kneel on the support pad of the support mechanism and operate the abdominal exercise structure back and forth to achieve abdominal exercise. It offers multiple functions, and the gliding area of the gliding mechanism can serve both as a gliding surface for the user to stand on and glide along to simulate skiing, and as a surface for the abdominal exercise structure to be placed on and glide along. The sliding surface for abdominal exercises is multi-functional. Compared to traditional fixed-track abdominal exercise equipment, users can operate the abdominal structure to deform the connecting unit and slide in any direction in the sliding area, making the sliding trajectory of the abdominal structure more free and the use of the abdominal structure more flexible. In addition, the first end of the sliding mechanism, the mounting parts of the support mechanism, and the connecting unit of the abdominal mechanism are respectively connected to the first connecting structure, so that the sliding mechanism, support mechanism, and abdominal mechanism can be connected as a whole, preventing the loss of individual parts, and making it easy to store. The structure is simple and highly practical.
[0017] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0018] The accompanying drawings, which are included to provide a further understanding of the present invention and form part of this application, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings:
[0019] Figure 1 This is a schematic diagram of the structure of a fitness equipment according to an embodiment of the present invention.
[0020] Figure 2 This is an exploded view of the structure of a fitness equipment according to an embodiment of the present invention.
[0021] Figure 3 This is a partial structural breakdown diagram of a fitness equipment according to an embodiment of the present invention. Figure 1 .
[0022] Figure 4 This is a partial structural breakdown diagram of a fitness equipment according to an embodiment of the present invention. Figure 2 .
[0023] Figure 5 This is a partial structural breakdown diagram of a fitness equipment according to an embodiment of the present invention. Figure 3 .
[0024] Figure 6 This is a partial structural breakdown diagram of a fitness equipment according to an embodiment of the present invention. Figure 4 .
[0025] Figure 7 This is a schematic diagram of the structure of the first connector according to an embodiment of the present invention.
[0026] Figure 8 This is an exploded view of the structure of the first connector and the connecting unit according to an embodiment of the present invention.
[0027] Figure 9 This is a schematic diagram of the abdominal strengthening structure according to an embodiment of the present invention.
[0028] Reference numerals: 1. Sliding mechanism; 11. First end; 111. First positioning hole; 12. Second end; 13. Sliding area; 2. Support mechanism; 21. Support pad; 22. Mounting component; 221. Upper mounting surface; 221. Second positioning hole; 2211. Lower mounting surface; 222. Side mounting surface; 223. Abdominal strengthening mechanism; 31. Abdominal strengthening structure; 311. Abdominal strengthening body; 312. Grip; 313. Sliding part; 314. Second connecting hole; 32. Connecting unit; 33. First connecting part; 331. Connecting channel; 33. 11. First limiting part 332, second connecting part 333, second limiting part 334, second connecting piece 34, first connecting structure 4, first chamber 40, first lower housing 41, first lower positioning post 411, second lower positioning post 412, fastening hole 413, first upper housing 42, first upper positioning post 421, second upper positioning post 422, first top plate 423, first side plate 424, first channel 43, second channel 44, first connecting hole 45, abutting plate 46, second connecting structure 5. Detailed Implementation
[0029] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model without creative effort are within the scope of protection of this utility model.
[0030] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0031] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0032] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0033] Unless otherwise defined, the technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this invention pertains. The terms “first,” “second,” and similar terms used in this patent application specification and claims do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Similarly, the terms “an” or “a” and similar terms do not indicate a limitation of quantity, but rather indicate the presence of at least one.
[0034] like Figures 1-9As shown in the figure, as an embodiment of the present invention, a multifunctional fitness equipment is provided, including a sliding mechanism 1, a support mechanism 2, an abdominal exercise mechanism 3, and a first connecting structure 4. The sliding mechanism 1 includes a sliding area 13, which is set as a long strip, and a first end 11 and a second end 12 set at both ends of the sliding area 13. The support mechanism 2 includes a support pad 21 made of a soft material such as sponge, and a mounting component 22 that partially or completely covers the support pad 21. The support pad 21 made of soft material can provide good cushioning when supporting the user. The support mechanism 2 is connected to the sliding mechanism 1 through the first connecting structure 4. The first end 11 of the sliding mechanism 1 is connected to the first connecting structure 4, and the mounting component 22 of the support mechanism 2 is connected to the first connecting structure 4. When in use, the abdominal exercise mechanism 3 is placed on the sliding area 13, near the first connecting structure 4. When not in use, it can be placed on a surface such as the ground outside the sliding mechanism 1. The abdominal exercise mechanism 3 includes an abdominal exercise structure 31 and a deformable connecting unit 32. One end of the connecting unit 32 is connected to the abdominal exercise structure 31, and the other end is connected to the first connecting structure 4. The sliding mechanism 1 is used in conjunction with the abdominal exercise mechanism 3. The user kneels on the support pad 21 to operate the abdominal exercise structure 31, and the connecting unit 32 deforms relative to the first connecting structure 4 to adjust the position of the abdominal exercise structure 31. The fitness equipment in this embodiment, equipped with a sliding mechanism 1, a support mechanism 2, and an abdominal exercise mechanism 3, can simulate skiing through the sliding mechanism 1, allowing the user to stand on the sliding area 13 of the sliding mechanism 1 and slide back and forth to simulate skiing. Simultaneously, it can also perform abdominal exercises through the support mechanism 2 and the abdominal exercise mechanism 3, allowing the user to kneel on the support pad 21 of the support mechanism 2 and operate the abdominal exercise structure 31 to move back and forth, thus achieving abdominal exercises. It offers multiple functions, and the sliding area 13 of the sliding mechanism 1 can serve both as a sliding surface for the user to stand on and slide along to simulate skiing, and as a surface for the abdominal exercise structure 31 to be placed on and slide along. The sliding surface for abdominal exercises has a multi-purpose effect. Compared with some traditional fixed track abdominal exercise equipment, users can operate the abdominal structure 31 to drive the connecting unit 32 to deform and slide in any direction in the sliding area 13, making the sliding trajectory of the abdominal structure 31 more free and the use of the abdominal structure 31 more flexible. In addition, the first end 11 of the sliding mechanism 1, the mounting part 22 of the support mechanism 2, and the connecting unit 32 of the abdominal mechanism 3 are respectively connected to the first connecting structure 4, so that the sliding mechanism 1, the support mechanism 2, and the abdominal mechanism 3 can be connected as a whole, preventing the loss of individual parts, and making it easy to store. The structure is simple and highly practical.
[0035] like Figure 1As shown, in some specific embodiments, the dimension of the first connecting structure 4 along the length direction is greater than the width dimension of the first end 11 and completely covers the first end 11. The dimension of the first connecting structure 4 along the length direction is greater than the width dimension of the support pad 21 and completely covers the end of the mounting component 22, so as to protect the first end 11 and the end of the mounting component 22 from wear by external objects, thereby improving the stability of the connection between the first end 11 and the first connecting structure 4, and the stability of the connection between the end of the mounting component 22 and the first connecting structure 4.
[0036] like Figures 2-4 As shown, in some specific embodiments, the first connecting structure 4 includes a first lower housing 41 and a first upper housing 42 detachably connected to the upper side of the first lower housing 41. The first lower housing 41 and the first upper housing 42 form a first chamber 40. A first channel 43 is formed between the first upper housing 42 and the first lower housing 41 along their length direction, allowing the first end 11 to extend into the first chamber 40. A second channel 44 is formed between the first upper housing 42 and the first lower housing 41 along their length direction, allowing the end of the mounting component 22 to extend into the first chamber 40. The first end 11 and the end of the mounting component 22 can be connected to the first connecting structure 4 respectively before assembling the first lower housing 41 and the first upper housing 42, with the first end 11 arranged in the first channel 43 and the end of the mounting component 22 arranged in the second channel 44. This facilitates quick assembly or disassembly of the first end 11 and the end of the mounting component 22 from the first connecting structure 4. Users can selectively install or disassemble the support mechanism 2 or the sliding mechanism 1 according to their needs, adapting to different usage requirements. Of course, in other embodiments, the first channel 43 or the second channel 44 can also be configured as a through hole structure that passes through the side wall of the first lower housing 41 or the first upper housing 42, and can also be used to extend the first end 11 or the end of the mounting component 22 into the first chamber 40 to avoid wear from foreign objects.
[0037] like Figure 5 , Figure 6As shown, in some specific embodiments, the inner wall of the first lower housing 41 is provided with a plurality of first lower positioning posts 411 along the first channel 43 and a plurality of second lower positioning posts 412 along the second channel 44. The inner wall of the first upper housing 42 is provided with a plurality of first upper positioning posts 421 corresponding to the first lower positioning posts 411 and a plurality of second upper positioning posts 422 corresponding to the second lower positioning posts 412. The corresponding first upper positioning posts 421 and first lower positioning posts 411, and the second upper positioning posts 422 and second lower positioning posts 412 are detachably connected by fasteners such as screws and bolts. The first end 11 is provided with a plurality of first positioning holes 111 sleeved on the first lower positioning posts 411 or the first upper positioning posts 421 along the width direction. The end of the mounting component 22 is provided with a plurality of second positioning holes 2211 sleeved on the second lower positioning posts 412 or the second upper positioning posts 422 along the width direction. In this embodiment, the first lower positioning post 411 or the first upper positioning post 421 can serve as a detachable connection structure between the first lower housing 41 and the first upper housing 42, and also as a connection structure connecting the first end 11 to the first connecting structure 4. Similarly, the second lower positioning post 412 or the second upper positioning post 422 can serve as a detachable connection structure between the first lower housing 41 and the first upper housing 42, and also as a connection structure connecting the end of the mounting component 22 to the first connecting structure 4, achieving a multi-purpose effect. In this embodiment, the bottom wall of the first lower housing 41 is provided with several fastening holes 413 corresponding to each of the first lower positioning posts 411 and the second lower positioning posts 412, for fasteners such as screws and bolts to pass through. Fasteners can be connected to the corresponding first lower positioning posts 411 and the first upper positioning posts 421 via the fastening holes 413, or connected to the corresponding second lower positioning posts 412 and the second upper positioning posts 422, facilitating assembly or disassembly. The lower side of the first lower housing 41 is connected to a support plate 46 for mounting on a surface such as the ground. The support plate 46 can be made of materials such as soft silicone or EVA pad, which has a certain anti-slip effect, allowing the first connecting structure 4 to be placed more stably on the surface such as the ground. As another embodiment of this utility model, several feet can also be connected to the lower side of the first lower housing 41, which can also mount the first connecting structure 4 on the surface such as the ground. Optionally, the feet can be set as suction cups, which can stably adhere to the surface such as the ground, or they can be set as ordinary feet.
[0038] like Figure 5As shown, in some specific embodiments, the first upper housing 42 includes a first top plate 423 and a first side plate 424 extending downward from the first top plate 423. A first channel 43 is arranged between the bottom of the first side plate 424 and the first lower housing 41. A first connecting hole 45 communicating with the first chamber 40 is provided on the first side plate 424. The end of the connecting unit 32 is detachably connected to the first connecting structure 4 through the first connecting piece 33 in the first connecting hole 45. When the user experiences the simulated skiing function, he / she can choose to detach the first connecting piece 33, the connecting unit 32 and the abdominal strengthening structure 31 as a whole from the first connecting structure 4 and place them in other positions outside the gliding mechanism 1 to avoid interference during the user's simulated skiing. The setting of the first connecting hole 45 makes the outer surface of the first connecting structure 4 relatively flat after the abdominal strengthening structure 3 is detached. At this time, the first side plate 424 can form a first partition for blocking one end of the gliding area 13 to limit the user's gliding stroke and prevent excessive gliding towards the first end 11 and falling. It also includes a second connecting structure 5 disposed at the second end 12 along the width direction of the sliding mechanism 1. The top of the second connecting structure 5 protrudes above the sliding area 13, and a second partition is formed on the side wall of the second connecting structure 5 near the first connecting structure 4 to block the other end of the sliding area 13, thereby limiting the user's sliding stroke and preventing excessive sliding in the direction of the second end 12 and falling.
[0039] like Figure 7As shown, in some specific embodiments, the first connector 33 includes a first limiting portion 332, a first connecting portion 331 connected to the connecting unit 32, and three elastic portions arranged with gaps along the circumference of the first connecting portion 331. Each elastic portion includes a second connecting portion 333 connected to the first connecting portion 331 and a second limiting portion 334 connected to the second connecting portion 333 and protruding from the outer wall of the second connecting portion 333. The first limiting portion 332 and the second limiting portion 334 are arranged opposite to each other and protrude along the outer periphery of the first connecting portion 331. When the first connector 33 is fitted into the first connecting hole 45, each of the second connecting portions 333 is located within the first connecting hole 45, and the first limiting portion 332 and the second limiting portion 334 are respectively limited to the inner and outer sides of the first side plate 424 surrounding the first connecting hole 45. In this embodiment, the elastic part extends from the first connecting part 331 in a direction away from the abdominal strengthening structure 31. The first limiting part 332 is disposed on the side of the second limiting part 334 near the abdominal strengthening structure 31. The elastic part can deflect relative to the first connecting part 331. When the user pushes the first connecting piece 33 from the outside of the first side plate 424 through the first connecting hole 45 and into the inside of the first side plate 424 for installation, the second limiting part 334 can cause the elastic part to deflect and swing under the pressure of the side wall of the first connecting hole 45 so as to pass through the first connecting hole 45 and enter the first side plate 424. The first limiting part 332 is located inside the side plate 424 and is limited to the inner side of the first side plate 424 after the elastic part is reset. At this time, the first limiting part 332 is limited to the outer side of the first side plate 424, thereby preventing the first connecting member 33 from moving relative to the first connecting hole 45 along its axial direction, so that the first connecting member 33 can be quickly assembled on the first connecting hole 45. When disassembling, the user can squeeze the second limiting part 334 on the inner side of the first side plate 424 to drive the elastic part to deflect and swing so as to pass through the first connecting hole 45 and extend out of the first side plate 424, so that the first connecting member 33 is disconnected from the first connecting hole 45.In other embodiments, the elastic part may be provided in two or four or more forms. The first limiting part may protrude along the outer wall of the second connecting part 333. Optionally, the elastic part may be provided extending from the first connecting part 331 toward the abdominal strengthening structure 31. The first limiting part is located on the side of the second limiting part 334 away from the abdominal strengthening structure 31. When the user pushes the first connecting piece 33 from the outside of the first side plate 424 through the first connecting hole 45 and into the inside of the first side plate 424 for installation, the first limiting part can cause the elastic part to deflect and swing under the pressure of the side wall of the first connecting hole 45. The first connector 33 extends through the first connecting hole 45 into the first side plate 424 and is limited to the inside of the first side plate 424 after the elastic part is reset. At this time, the second limiting part 334 is limited to the outside of the first side plate 424, thereby preventing the first connector 33 from moving relative to the first connecting hole 45 along its axial direction, so that the first connector 33 can be quickly assembled on the first connecting hole 45. When disassembling, the user can squeeze the second limiting part 334 on the outside of the first side plate 424 to drive the elastic part to deflect and swing, so that the first limiting part deflects and swings with the elastic part to pass through the first connecting hole 45 and extend out of the first side plate 424, so that the first connector 33 can be quickly disassembled from the first connecting hole 45.
[0040] like Figure 8 As shown, in some specific embodiments, the connecting unit 32 is configured as an elastic rope, which can provide elastic resistance when the user operates the abdominal exercise structure 31 to slide along the sliding area 13 toward the second end 12, thereby enhancing the intensity of abdominal exercise. In other embodiments, the connecting unit 32 can also be configured as an elastic band, spring, or other structures that can provide elastic resistance through elastic deformation, or as a rope of a certain length that does not have an elastic effect but only serves a connecting function. The position of the abdominal exercise structure 31 can also be adjusted by the deformation of the rope, so that the abdominal exercise structure 31 can slide freely along the sliding area 13. The first connecting part 331 has a connecting channel 3311 through which the connecting unit 32 passes. The end of the connecting unit 32 is limited to the side of the connecting channel 3311 away from the abdominal strengthening structure 31 by wrapping a limiting ball, so as to prevent the end of the connecting unit 32 from detaching from the first connecting part 331. In other embodiments, a limiting knot can also be provided at the end of the connecting unit 32. The limiting knot can also limit the end of the connecting unit 32 to the side of the connecting channel 3311 away from the abdominal strengthening structure 31. The limiting knot can be formed by tying a knot at the end of the connecting unit 32.
[0041] like Figure 5 , Figure 6As shown, in some specific embodiments, the mounting component 22 includes an upper mounting surface 221 arranged on the upper side of the support pad 21, a lower mounting surface 222 arranged on the lower side of the support pad 21, and a side mounting surface 223 arranged around the support pad 21. The side mounting surface 223 connects the upper mounting surface 221 and the lower mounting surface 222, so that the upper, lower, and peripheral sides of the support pad 21 are all wrapped within the mounting component 22 and stably connected to the mounting component 22, making it less likely to detach from the mounting component 22. One end of the upper mounting surface 221 protrudes from the side of the support pad 21 and is connected to the first connecting structure 4 through a second positioning hole 2211 provided on the upper mounting surface 221. The mounting component 22 can be made of materials such as textile fabric or leather fabric, which has a certain degree of softness to ensure the comfort of the user kneeling on the support pad 21. In this embodiment, the upper side of the support pad 21 is completely covered by the upper mounting surface 221, the lower side of the support pad 21 is completely covered by the lower mounting surface 222, and the side of the support pad 21 away from the sliding mechanism 1 is completely covered by the side mounting surface 223. This securely wraps the support pad 21 within the mounting component 22, preventing the support pad 21 from moving away from the sliding mechanism 1 and detaching from the mounting component 22 during user movement. Furthermore, the two sides of the support pad 21 arranged along the width direction of the sliding mechanism 1 are also completely covered by the side mounting surface 223, ensuring that the support pad 21 is almost entirely enclosed within the mounting component 22. This improves the stability of the connection with the mounting component 22 and protects the support pad 21 from wear. In other embodiments, the upper mounting surface 221, lower mounting surface 222, or side mounting surface 223 of the mounting component 22 may also have a hollow structure, allowing the mounting component 22 to partially enclose the support pad 21.
[0042] like Figure 9As shown, in some specific embodiments, the abdominal strengthening structure 31 includes an abdominal strengthening body 311 for supporting the user's arm and a grip 312 for the user to grasp. The grip 312 is connected to the abdominal strengthening body 311, facilitating the gripping of the abdominal strengthening structure 31 and its sliding along the sliding area 13. The end of the connecting unit 32 is connected to the abdominal strengthening body 311. Optionally, the end of the connecting unit 32 is detachably connected to the abdominal strengthening body 311 via a second connector 34. The second connector 34 has the same structure as the first connector 33. The side wall of the abdominal strengthening body 311 has a second connecting hole 314 for cooperating with the second connector 34, enabling rapid assembly of the connecting unit 32 and the abdominal strengthening structure 31. In addition, the bottom of the abdominal exercise body 311 is provided with a sliding part 313 for sliding in the sliding area 13. The sliding part 313 is integrally formed with the abdominal exercise body 311, resulting in a simple structure. In this embodiment, the sliding part 313 is set as an arc-shaped slider protruding downward from the bottom of the abdominal exercise body 311, thereby reducing the contact area between the abdominal exercise structure 31 and the sliding area 13. This facilitates the user's operation of the abdominal exercise structure 31 to slide easily along the sliding area 13. Furthermore, the arc-shaped slider is arranged along the length direction of the sliding area 13, allowing it to slide by contacting the sliding area 13 at different positions. This adapts to the different force angles applied by the user during the back-and-forth movement of the abdominal exercise structure 31 along the length direction of the sliding area 13, making the abdominal exercise more in line with the human body structure. Two sliding parts 313 are arranged side by side, allowing the abdominal exercise structure 31 to be stably placed on the upper side of the sliding area 13, preventing it from deflecting or wobbling along the width direction of the sliding area 13. In other embodiments, more sliding parts 313 may be provided.
[0043] like Figure 1 As shown, in some specific embodiments, two abdominal strengthening structures 31 are provided. The two abdominal strengthening structures 31 are respectively connected to the first connecting structure 4 through two connecting units 32. The two abdominal strengthening structures 31 can slide independently along the sliding area 13, which is suitable for more abdominal strengthening exercises. In other embodiments, only one abdominal strengthening structure 31 may be provided, or each abdominal strengthening structure 31 may be connected to the first connecting structure 4 through only one, three or other numbers of connecting units 32.
[0044] In some specific embodiments, the sliding mechanism 1 is made of a flexible material that can be rolled up along its length, allowing it to be rolled up and stored. The top surface of the sliding mechanism 1 is configured as a sliding surface for gliding, which can be made of a sliding material such as an ice-like surface for easy gliding. The bottom surface of the sliding mechanism 1 is configured as a placement surface for placing on a medium surface such as the ground, which can be made of a non-slip material such as rubber, allowing it to stably adhere to the medium surface and preventing it from easily moving relative to the ground surface. In use, it can be placed on a medium surface such as the ground via the support mechanism 2, the first connecting structure 4, the second connecting structure 5, and the placement surface of the sliding area 13, providing good stability and preventing it from easily moving relative to the medium surface.
[0045] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.
[0046] In summary, the above description is only a preferred embodiment of the present utility model. All equivalent changes and modifications made within the scope of the patent application of the present utility model shall fall within the scope of the patent of the present utility model.
Claims
1. A multi-functional exercise apparatus, characterized by, The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism.
2. The exercise apparatus of claim 1, wherein: The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism.
3. The exercise apparatus of claim 2, wherein: The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism.
4. The exercise apparatus of claim 3, wherein: The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism.
5. The exercise apparatus of claim 3, wherein: The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism, support mechanism, abdominal muscle training mechanism and first connecting structure, and the sliding mechanism is used for the abdominal muscle training mechanism. The utility model relates to a sliding mechanism 6. The exercise apparatus of claim 5, wherein: The first connecting member comprises a first limiting part, a first connecting part connected with the connecting unit, and at least two elastic parts arranged in gaps in the circumference of the first connecting part, the elastic part comprises a second connecting part connected with the first connecting part, and a second limiting part connected on the second connecting part and protruding from the outer wall of the second connecting part, the first limiting part is arranged opposite to the second limiting part, and is protrudingly arranged along the outer circumference of the first connecting part or the outer wall of the second connecting part, when the first connecting member is fitted in the first connecting hole, each second connecting part is located in the first connecting hole, and the first limiting part and the second limiting part are respectively limited on the inner and outer sides of the first side plate around the first connecting hole, the elastic part can be deflected relative to the first connecting part to allow the second limiting part or the first limiting part to pass through the first connecting hole.
7. The exercise apparatus of claim 6, wherein: The connecting unit is provided as an elastic rope or an elastic band, the first connecting part is provided with a connecting channel through which the connecting unit passes along the axis of the first connecting part, and the end of the connecting unit is limited on the side of the connecting channel away from the abdominal exercise structure by wrapping a limiting ball or setting a limiting knot.
8. The exercise apparatus of any one of claims 1-7, wherein: The mounting part comprises an upper mounting surface arranged on the upper side of the support pad, a lower mounting surface arranged on the lower side of the support pad, and a side mounting surface arranged on the side of the support pad, the side mounting surface is connected between the upper mounting surface and the lower mounting surface, and one end of the upper mounting surface protrudes from the side of the support pad and is connected with the first connecting structure.
9. The exercise apparatus of any one of claims 1-7, wherein: The abdominal exercise structure comprises an abdominal exercise body for supporting the arms of the user, and a handle member for the user to grip, the handle member is connected to the abdominal exercise body, the end of the connecting unit is connected to the abdominal exercise body, and the bottom of the abdominal exercise body is provided with a sliding part for sliding on the sliding area, and the sliding part is integrally formed with the abdominal exercise body.
10. The exercise apparatus of claim 9, wherein: The sliding part is provided as an arc-shaped sliding block protruding downward from the bottom of the abdominal exercise body, and the abdominal exercise structure is provided with two, and the two abdominal exercise structures are connected with the first connecting structure through at least one connecting unit. The first connecting member comprises a first limiting part, a first connecting part connected with the connecting unit, and at least two elastic parts arranged in gaps in the circumference of the first connecting part, the elastic part comprises a second connecting part connected with the first connecting part, and a second limiting part connected on the second connecting part and protruding from the outer wall of the second connecting part, the first limiting part is arranged opposite to the second limiting part, and is protrudingly arranged along the outer circumference of the first connecting part or the outer wall of the second connecting part, when the first connecting member is fitted in the first connecting hole, each second connecting part is located in the first connecting hole, and the first limiting part and the second limiting part are respectively limited on the inner and outer sides of the first side plate around the first connecting hole, the elastic part can be deflected relative to the first connecting part to allow the second limiting part or the first limiting part to pass through the first connecting hole. The connecting unit is provided as an elastic rope or an elastic band, the first connecting part is provided with a connecting channel through which the connecting unit passes along the axis of the first connecting part, and the end of the connecting unit is limited on the side of the connecting channel away from the abdominal exercise structure by wrapping a limiting ball or setting a limiting knot. The mounting part comprises an upper mounting surface arranged on the upper side of the support pad, a lower mounting surface arranged on the lower side of the support pad, and a side mounting surface arranged on the side of the support pad, the side mounting surface is connected between the upper mounting surface and the lower mounting surface, and one end of the upper mounting surface protrudes from the side of the support pad and is connected with the first connecting structure. The abdominal exercise structure comprises an abdominal exercise body for supporting the arms of the user, and a handle member for the user to grip, the handle member is connected to the abdominal exercise body, the end of the connecting unit is connected to the abdominal exercise body, and the bottom of the abdominal exercise body is provided with a sliding part for sliding on the sliding area, and the sliding part is integrally formed with the abdominal exercise body. The sliding part is provided as an arc-shaped sliding block protruding downward from the bottom of the abdominal exercise body, and the abdominal exercise structure is provided with two, and the two abdominal exercise structures are connected with the first connecting structure through at least one connecting unit.