Combined training device
By designing a comprehensive training device that includes a frame, integrated training, push training, and pull training mechanisms, the problem of existing fitness equipment being unable to meet the needs of multiple users has been solved, enabling multiple people to train simultaneously and improving fitness results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- 河北彪悍运动器械有限公司
- Filing Date
- 2023-12-28
- Publication Date
- 2026-07-24
AI Technical Summary
Existing fitness equipment has limited functionality and cannot meet the needs of multiple users simultaneously, thus affecting the fitness experience.
Design a comprehensive training device, including a frame, a comprehensive training mechanism, a thrust training mechanism, and a pull training mechanism. The frame is equipped with counterweights. The comprehensive training mechanism is used for standing pull training, the thrust training mechanism is used for standing thrust and pull training, and the pull training mechanism is used for vertical pull training. It is equipped with multiple functional modules to meet the needs of multiple people training at the same time.
It enables multiple people to train simultaneously, enhancing the enjoyment and effectiveness of fitness and solving the problem of limited functionality in existing fitness equipment.
Smart Images

Figure CN117653987B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of combined processing technology, and more specifically, relates to a comprehensive training device. Background Technology
[0002] Modular manufacturing involves combining multiple structures or mechanisms with different functions into a single integrated device or apparatus. This modular manufacturing process allows for the creation of equipment with various functions for user convenience, such as multi-functional fitness equipment. As people's living standards improve, more and more people are going to gyms to exercise. To enhance the enjoyment of fitness, many people go to gyms in groups. The market and gyms offer a wide variety of fitness equipment for users. Currently, most fitness equipment used by users is limited to single-function machines, which cannot meet the needs of multiple people exercising simultaneously, thus affecting the overall fitness experience. Summary of the Invention
[0003] The purpose of this invention is to provide a comprehensive training device that addresses the technical problem that existing fitness equipment has limited functionality, is inconvenient for multiple people to use simultaneously, and negatively impacts the fitness experience.
[0004] To achieve the above objectives, the technical solution adopted by the present invention is: to provide a comprehensive training device, comprising: The frame has a first counterweight and a second counterweight respectively installed on the bottom of two opposite sides inside. A comprehensive training apparatus, connected to the frame, is used by fitness enthusiasts to perform resistance training in a standing position; A thrust training mechanism is connected to the frame and simultaneously connected to the first counterweight and the second counterweight, for exercisers to perform thrust and pull training in a standing position. A resistance training mechanism, connected to the inner side of the frame, is used by fitness enthusiasts to perform vertical resistance training in a standing position.
[0005] In one possible implementation, the thrust training mechanism includes: Both sets of first columns are connected to the frame and are arranged vertically and at intervals; Two sets of sliding sleeves are respectively fitted onto the two sets of the first columns and are slidably connected to the first columns in the upper and lower directions. Two sets of rotating rods, one end of which is respectively hinged to the side of the two sets of sliding sleeves, and the other end is respectively connected to the first counterweight and the second counterweight; The push rod is horizontally positioned with its two ends connected to two sets of rotating rods. The exerciser stands on one side of the push rod and pushes it, causing the two sets of rotating rods to rotate away from the first column. At the same time, the rotating rods pull the first and second counterweights to perform pushing force training. Alternatively, the exerciser can stand and push the push rod to move away from the first column to perform pushing force training.
[0006] In one possible implementation, the first column has a plurality of first insertion holes evenly distributed along the height direction, and the side of the sliding sleeve is provided with a first limiting member. The first limiting member is used to insert into the first insertion hole to limit the sliding of the sliding sleeve, and the position of the sliding sleeve on the first column can be adjusted.
[0007] In one possible implementation, a plurality of second insertion holes are evenly distributed along the length of the rotating rod, a push plate is sleeved on the rotating rod, the push plate has a sliding degree of freedom along the length of the rotating rod, a second limiting member is provided on the side of the push plate, the second limiting member is used to insert into the second insertion hole to limit the sliding of the push plate, and the position of the push plate on the rotating rod is adjustable.
[0008] In one possible implementation, when the rotating rod is vertically positioned, it moves towards the first column, with the length direction of the rotating rod parallel to the height direction of the first column. The two ends of the push rod are respectively inserted into the second holes on the two sets of rotating rods. The push rod can move along the length direction of the rotating rod to adjust its position, allowing fitness enthusiasts of different heights to perform vertical pulling training in a standing position; or, in a standing position, the push rod can be pushed away from the first column to perform pushing training.
[0009] In one possible implementation, a first fixed pulley group, a second fixed pulley group, and a third fixed pulley group are arranged sequentially from far to near the two sets of first columns on the upper end of the frame. A movable pulley group is arranged in the middle of the frame, below the middle of the line connecting the second and third fixed pulley groups. A fourth fixed pulley group and a fifth fixed pulley group are arranged in the lower part of the frame. The comprehensive training device also includes a first pull wire and a second pull wire arranged near the two sets of first columns. One end of the first pull wire is connected to the first or second counterweight, and the other end is fixedly connected to the lower part of the first column. The first pull wire is sequentially wrapped around the first fixed pulley group, the second fixed pulley group, the movable pulley group, and the third fixed pulley group; one end of the second pull wire is fixedly connected to the lower part of the frame, and the other end is used to connect to the other end of the rotating rod. The middle part of the second pull wire is sequentially wrapped around the movable pulley group, the fourth fixed pulley group, and the fifth fixed pulley group. When the push rod is pushed to move and the rotating rod rotates, the second pull wire pulls the movable pulley group to move up and down, the movable pulley group pulls the first pull wire to move, and the first pull wire pulls the first counterweight or the second counterweight to move up and down.
[0010] In one possible implementation, a sleeve is fitted onto the first column, and a third limiting member is provided on the side of the sleeve for inserting into the first insertion hole. The other end of the first pull wire is fixedly connected to the side of the sleeve. The sleeve has a degree of freedom to slide up and down along the first column. A housing is rotatably connected to the side of the sleeve. The housing has a degree of freedom to rotate or swing in the horizontal plane. A first directional pulley and a second directional pulley are rotatably connected inside the housing. The first directional pulley is located above the second directional pulley. The middle part of the second pull wire is led out from the fifth fixed pulley group and then led out between the second directional pulley and the first directional pulley to wrap around the second directional pulley or the first directional pulley. After being led out, it is detachably connected to the other end of the rotating rod. The first directional pulley is used to guide the second pull wire to extend horizontally or diagonally upward, and the second directional pulley is used to guide the second pull wire to extend diagonally downward.
[0011] In one possible implementation, the tensile training mechanism includes: Two sets of second columns are vertically and fixedly connected to the middle of the frame, and multiple clamps are evenly distributed at equal intervals along the height direction on the outer side of the second columns; Two sets of guide rods are vertically arranged on the sides of the two sets of second columns, and the guide rods and the clamp rods are spaced apart; Two sets of guide sleeves are respectively fitted onto the two sets of guide rods, and have the degree of freedom to slide along the height direction of the guide rods; The pull rod is horizontally positioned and fixedly connected to two sets of guide sleeves near both ends. Hooks are fitted on the pull rod near the two sets of guide sleeves. The hooks are used to attach to the clamps at the same height on the two sets of second columns. The hooks have a degree of freedom of rotation along the circumference of the pull rod. The pull rod is attached to the clamps at different heights to adjust the vertical pull training height of the exerciser.
[0012] In one possible implementation, the integrated training mechanism includes: Both pull rings are detachably connected to the frame, allowing fitness enthusiasts to grip them while standing for strength training. The U-shaped pendant is detachably connected to the frame and is used by fitness enthusiasts to hold it in a standing position for body tension training. Multiple resistance bars are installed on the outer wall of the frame at different heights, for fitness enthusiasts to perform leg resistance training in a standing position; Two sets of suspension rods are connected to the top of the frame, allowing exercisers to hold them in a standing position and suspend their bodies for resistance training.
[0013] In one possible implementation, the inner sidewall of the frame is provided with a fixing bracket for clamping and securing the item.
[0014] The beneficial effects of the integrated training device provided by this invention are as follows: Compared with the prior art, the integrated training device of this invention includes a frame, an integrated training mechanism, a pushing training mechanism, and a pulling training mechanism. A first counterweight and a second counterweight are respectively arranged at the bottom of two opposite sides inside the frame. The integrated training mechanism is connected to the frame and is used for pull training by the user in a standing position. The pushing training mechanism is connected to the frame and simultaneously connected to the first and second counterweights, used for pushing and pulling training by the user in a standing position. The pulling training mechanism is connected to the inner side of the frame and is used for vertical pulling training by the user in a standing position. This solves the technical problem in the prior art where fitness equipment has a single function, is inconvenient for multiple users to use simultaneously, and affects the fitness experience. It has multiple functions, enabling multiple users to train simultaneously and improving the fitness experience. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1This is a schematic diagram of the structure of the integrated training device provided in an embodiment of the present invention; Figure 2 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 3 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 4 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 5 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 6 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 7 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 8 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 9 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 10 for Figure 9 A schematic diagram of the fixed support structure in the diagram; Figure 11 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 12 This is a schematic diagram of the integrated training device provided in an embodiment of the present invention from another perspective. Figure 13 for Figure 12 Enlarged view of point A in the image.
[0017] Explanation of reference numerals in the attached figures: 1. Frame; 11. Base; 12. Vertical bar; 13. Horizontal bar; 14. Protective plate; 15. Intermediate bar; 16. Fixing bracket; 2. Thrust training mechanism; 21. First column; 22. Sliding sleeve; 23. Rotating rod; 24. Push rod; 25. First insertion hole; 26. First limiting component; 27. Second insertion hole; 28. Push plate; 29. Second limiting component; 210. First fixed pulley group; 211. Second fixed pulley group; 212. Third fixed pulley group; 213. Movable pulley group; 214. Fourth fixed pulley group; 215. Fifth fixed pulley group; 216. First pull wire; 217. Second pull wire; 218. Sleeve; 219. Third limiting component; 220. Housing; 221. First reversing pulley; 222. Second reversing pulley; 3. Comprehensive training mechanism; 31. Pull ring; 32. U-shaped hanger; 33. Resistance bar; 34. Hanging rod; 4. Tension training mechanism; 41. Second column; 42. Guide rod; 43. Guide sleeve; 44. Tension rod; 45. Clamping rod; 46. Hook; 5. First counterweight; 6. Second counterweight. Detailed Implementation
[0018] To make the technical problems to be solved, the technical solutions, and the beneficial effects of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and are not intended to limit the present invention.
[0019] Please refer to the following: Figures 1 to 13 The comprehensive training device provided by the present invention will now be described. The comprehensive training device includes a frame 1, a pushing training mechanism 2, a comprehensive training mechanism 3, and a pulling training mechanism 4. A first counterweight 5 and a second counterweight 6 are respectively disposed at the bottom of two opposite sides inside the frame 1. The comprehensive training mechanism 3 is connected to the frame 1 and is used for the exerciser to perform pulling training in a standing position. The pushing training mechanism 2 is connected to the frame 1 and simultaneously connected to the first counterweight 5 and the second counterweight 6, and is used for the exerciser to perform both pushing and pulling training in a standing position. The pulling training mechanism 4 is connected to the inner side of the frame 1 and is used for the exerciser to perform vertical pulling training in a standing position.
[0020] The integrated training device provided by this invention, compared with the prior art, by setting up an integrated training mechanism 3, a push training mechanism 2 and a pull training mechanism 4 on the frame 1, can meet the needs of multiple fitness enthusiasts to train at the same time, improve the function of fitness equipment, enhance the fitness fun and experience of fitness enthusiasts, and solve the technical problem that the fitness equipment used by fitness enthusiasts in the prior art has a single function, is inconvenient for multiple people to use at the same time, and affects the fitness experience of fitness enthusiasts. It has multiple functions, enables multiple people to train at the same time, and improves the technical effect of fitness experience.
[0021] Frame 1 includes two rod-shaped, spaced-apart bases 11, 7-shaped vertical bars 12 mounted on the two bases 11, and a horizontal bar 13 connecting the two vertical bars 12 at their tops. The horizontal bar 13 is horizontally positioned and connects to the two vertical bars 12 at both ends. Some users can use the comprehensive training mechanism 3, some can use the push training mechanism 2, and some can use the pull training mechanism 4. In short, it allows for simultaneous training by multiple people, enhancing the functionality and enjoyment of the fitness equipment, and ensuring that multiple users do not interfere with each other during training. A protective plate 14 is fixedly installed on frame 1 to surround and protect the first counterweight 5 and the second counterweight 6, preventing collisions among users.
[0022] In some embodiments, please refer to Figures 1 to 13 The thrust training mechanism 2 includes two sets of first columns 21, two sets of sliding sleeves 22, two sets of rotating rods 23, and a push rod 24. The two sets of first columns 21 are connected to the frame 1, are vertical, and are spaced apart. The two sets of sliding sleeves 22 are respectively fitted onto the two sets of first columns 21 and are slidably connected to the first columns 21. One end of the two sets of rotating rods 23 is respectively hinged to the side of the two sets of sliding sleeves 22, and the other end is respectively connected to the first counterweight 5 and the second counterweight 6. The push rod 24 is horizontally arranged and its two ends are respectively connected to the two sets of rotating rods 23. The exerciser stands on one side of the push rod 24 and pushes the push rod 24 to make the two sets of rotating rods 23 rotate away from the first columns 21. At the same time, the rotating rods 23 pull the first counterweight 5 and the second counterweight 6 to perform thrust training. Alternatively, the exerciser pushes the push rod 24 in a standing position to move away from the first columns 21 to perform thrust training. By pushing the push rod 24 with their hands, the trainee can move the push rod 24. The movement of the push rod 24 can be either a swing or a rotation, rotating or swinging around one end. By simultaneously pulling the first counterweight 5 and the second counterweight 6, the trainee can achieve the effect of pushing force training. Different weights of counterweights can be used; that is, the weights of the counterweights on the first counterweight 5 and the second counterweight 6 can be adjusted, such as 20 kg. It is best to keep the weights of the first counterweight 5 and the second counterweight 6 equal. The position of the push rod 24 on the rotating rod 23 is adjustable to accommodate people of different heights. When the rotating rod 23 is not in use, it is vertically set and stationary. When the push rod 24 is pushed, the rotating rod 23 rotates accordingly, simultaneously pulling the counterweight up and down. The trainee stands between the two sets of first uprights 21 for training.
[0023] To accommodate fitness enthusiasts of different heights, please refer to some embodiments of this invention. Figures 1 to 13 The first column 21 has multiple first insertion holes 25 evenly distributed along its height. A first limiting member 26 passes through the side of the sliding sleeve 22. The first limiting member 26 is inserted into the first insertion hole 25 to limit the sliding of the sliding sleeve 22. The position of the sliding sleeve 22 on the first column 21 is adjustable. By adjusting the height of the sliding sleeve 22, the heights of the rotating rod 23 and the push rod 24 can be adjusted, making it suitable for people of different heights. The first limiting member 26 is a set screw or bolt that can be inserted into the first insertion hole 25, facilitating the adjustment of the height of the sliding sleeve 22 and limiting its position. This adjustment method is simple and convenient, making it easy for fitness enthusiasts to use and adjust. The sliding sleeve 22 acts as a hinged seat. One end of the rotating rod 23, as shown in the figure, is hinged or rotatably connected to the sliding sleeve 22. The plane formed by the rotation of the rotating rod 23 is in the vertical plane.
[0024] To facilitate exercisers in using a method other than push bar 24 to rotate the rotating rod 23 for push training purposes, please refer to some embodiments. Figures 1 to 13 The rotating rod 23 has multiple second insertion holes 27 evenly distributed along its length. A push plate 28 is fitted onto the rotating rod 23, and the push plate 28 has the freedom to slide along the length of the rotating rod 23. A second limiting member 29 passes through the side of the push plate 28 and is used to insert into the second insertion hole 27 to limit the sliding of the push plate 28. The position of the push plate 28 on the rotating rod 23 is adjustable. There are two push rods 24, which are respectively connected to the two rotating rods 23 and are located at the same height. By holding the two push plates 28 with both hands and pushing the push plates 28, the rotating rod 23 can be rotated, realizing the function of pushing force training. By using the push plates 28, the exerciser can easily push the rotating rod 23 to rotate in different ways to achieve the effect of pushing force training. The second limiting member 29 can be a set screw or bolt, inserted into the second insertion hole 27, and its height can be adjusted. The height of the push rod 24 can also be adjusted on the rotating rod 23. The two sets of first columns 21, the two sets of rotating rods 23, the push plate 28, etc. are arranged symmetrically with the middle part of the frame 1 as the axis of symmetry.
[0025] In some embodiments, please refer to Figures 1 to 13 When the rotating rod 23 is vertically positioned, it moves closer to the first column 21, with its length parallel to the height of the first column 21. The push rod 24 is inserted into the second insertion holes 27 on the two sets of rotating rods 23 at both ends. The push rod 24 can move along the length of the rotating rod 23 to adjust its position, allowing users of different heights to perform vertical pulling exercises while standing; or, while standing, to push the push rod 24 away from the first column 21 for pushing exercises. Plates are provided at both ends of the push rod 24, with second limiting members 29 passing through them. These second limiting members 29 are inserted into the second insertion holes 27 at a certain height, thus limiting the height or position of the push rod 24. The rotating rod 23 has two states: one is a vertical stationary state, and the other is a tilted state after being pushed by the exerciser. When there is no pushing force on the push rod 24, the push rod 24 will gradually move closer to the first column 21 and gradually become stationary.
[0026] In some embodiments, please refer to Figures 1 to 13The frame 1 has a first fixed pulley group 210, a second fixed pulley group 211, and a third fixed pulley group 212 arranged sequentially from far to near the two sets of first columns 21 at its upper end. A movable pulley group 213 is arranged in the middle of the frame 1, below the middle of the line connecting the second fixed pulley group 211 and the third fixed pulley group 212. A fourth fixed pulley group 214 and a fifth fixed pulley group 215 are arranged at the lower part of the frame 1. The comprehensive training device also includes a first pull wire 216 and a second pull wire 217 arranged near the two sets of first columns 21. One end of the first pull wire 216 is connected to the first counterweight 5 or the second counterweight 6, and the other end is fixedly connected to the lower part of the first column 21. The middle part of the first pull wire 216 is successively wrapped around the first fixed pulley group 210, the second fixed pulley group 211, the movable pulley group 213 and the third fixed pulley group 212; one end of the second pull wire 217 is fixedly connected to the lower part of the frame 1 and the other end is used to connect to the other end of the rotating rod 23. The middle part of the second pull wire 217 is successively wrapped around the movable pulley group 213, the fourth fixed pulley group 214 and the fifth fixed pulley group 215. When the push rod 24 is pushed to move and the rotating rod 23 is rotated, the second pull wire 217 pulls the movable pulley group 213 to move up and down, the movable pulley group 213 pulls the first pull wire 216 to move, and the first pull wire 216 pulls the first counterweight 5 or the second counterweight 6 to move up and down. There are two pull lines, 216 and 217. There are also two fixed pulley systems and two movable pulley systems, 213, arranged symmetrically on frame 1. The movable pulley system 213 consists of two movable pulleys, while the fixed pulley system consists of one fixed pulley. This arrangement of the first pull line 216 and the second pull line 217 allows for more flexible resistance training and more precise adjustment of the weight, thus improving the effectiveness of resistance training. The upper movable pulley of the movable pulley system 213 wraps around the first pull line 216, or the movable pulley slides onto the first pull line 216 (as shown in the diagram; when the movable pulley system 213 moves downwards, it slides downwards onto the first pull line 216, pulling the first pull line 216 down, causing the weight to rise). The lower movable pulley wraps around the second pull line 217. The first counterweight 5 and the second counterweight 6 have the same structure. Unless otherwise specified, the counterweights referred to are the weights of the first counterweight 5 and the second counterweight 6. The pulley system located above the counterweights is the first fixed pulley system 210.
[0027] In some embodiments, please refer to Figures 1 to 13A sleeve 218 is fitted onto the first column 21. A third limiting member 219 for inserting into the first insertion hole 25 is provided on the side of the sleeve 218. The other end of the first pull wire 216 is fixedly connected to the side of the sleeve 218. The sleeve 218 has a degree of freedom to slide up and down along the first column 21. A housing 220 is rotatably connected to the side of the sleeve 218. The housing 220 has a degree of freedom to rotate or swing in the horizontal plane. A first reversing pulley 221 and a second reversing pulley 222 are rotatably connected inside the housing 220. Position 221 is located above the second reversing pulley 222. The middle part of the second pulley 217 extends from the fifth fixed pulley group 215 and then extends between the second reversing pulley 222 and the first reversing pulley 221, wrapping around either the second reversing pulley 222 or the first reversing pulley 221. After extending, it is detachably connected to the other end of the rotating rod 23. The first reversing pulley 221 guides the second pulley 217 to extend horizontally or diagonally upward, while the second reversing pulley 222 guides the second pulley 217 to extend diagonally downward. To adjust the tension of the first pulley 216, a sleeve 218 is installed on the first column 21. One end of the first pulley 216 is connected to the sleeve 218. By adjusting the height of the sleeve 218, the tension of the first pulley 216 can be adjusted, facilitating training with different tension levels. The end of the housing 220 near the sleeve 218 is hinged or rotatably connected to the sleeve 218. The third limiting member 219 is a set screw or bolt. After adjusting the height of the sleeve 218, the third limiting member 219 is inserted into the first insertion hole 25, thus limiting the sleeve 218 and adjusting the tension of the first pull line 216 on the second pull line 217. By setting the first reversing pulley 221 and the second reversing pulley 222, the pulling direction or angle of the second pull line 217 can be adjusted. That is, when the rotating rod 23 rotates, by pulling the second pull line 217, the second pull line 217 slides on one of the reversing pulleys, and the reversing pulley plays the role of adjusting the pulling direction of the second pull line 217. Of course, the second pull line 217 can also move in a swinging manner in the horizontal plane, at which time the housing 220 also swings accordingly, which is convenient for training. Near the housing 220 is the fifth fixed pulley group 215. The fifth fixed pulley group 215 and the fourth fixed pulley group 214 are at the same height and are spaced apart. The first fixed pulley group 210, the second fixed pulley group 211 and the third fixed pulley group 212 are all at the same height and are spaced apart.
[0028] In some embodiments, please refer to Figures 1 to 13The tension training mechanism 4 includes two sets of second columns 41, two sets of guide rods 42, two sets of guide sleeves 43, and tension rods 44. The two sets of second columns 41 are vertically and fixedly connected at intervals in the middle of the frame 1. Multiple locking rods 45 are evenly distributed at equal intervals along the height direction on the outer side of the second columns 41. The two sets of guide rods 42 are vertically positioned on the sides of the two sets of second columns 41, with the guide rods 42 and locking rods 45 spaced apart. The two sets of guide sleeves 43 are respectively fitted onto the two sets of guide rods 42. The upper part has a sliding degree of freedom along the height direction of the guide rod 42; the tension rod 44 is set horizontally and is fixedly connected to two sets of guide sleeves 43 near both ends. Hooks 46 are sleeved on the tension rod 44 near the two sets of guide sleeves 43. The hooks 46 are used to hang on the clamps 45 of the same height on the two sets of second columns 41. The hooks 46 have a rotational degree of freedom along the circumference of the tension rod 44. The tension rod 44 is hung on the clamps 45 of different heights to adjust the vertical tension training height of the exerciser. The second column 41 is positioned close to the first column 21. The upper and lower ends of both columns are fixedly connected to the base 11 and the upper end of the vertical rod 12 of the frame 1. By hooking the hook 46 onto the levers 45 at different heights, the height of the pull rod 44 is limited. Users can hold the pull rod 44 with their hands and lift their feet off the ground to perform stretching exercises. When used by children, the height of the pull rod 44 can be adjusted to its lowest position. When used by adults, it can be adjusted according to their height. The hook 46 can be rotated to attach to the lever 45 and will not detach from it. Both ends of the pull rod 44 are located outside the frame 1, allowing it to be used outside the frame 1, thus giving the invention multiple functions. By rotating the hook 46 in the opposite direction, it can be disengaged from the locking bar 45. At this time, by moving the pull rod 44 up and down, the guide sleeve 43 slides on the guide rod 42. After the height of the pull rod 44 is adjusted, the hook 46 is rotated again and hooked onto the locking bar 45, which again serves to limit and fix the pull rod 44. This pull rod 44 is equivalent to a horizontal bar, which is beneficial for fitness enthusiasts to perform vertical pulling exercises. One end of the hook 46 is circular and fits onto the pull rod 44, while the other end is hook-shaped and can hook onto the locking bar 45.
[0029] In some embodiments, please refer to Figures 1 to 13The comprehensive training mechanism 3 includes two pull rings 31, U-shaped hangers 32, multiple resistance bars 33, and two sets of hanging rods 34. Both pull rings 31 are detachably connected to the frame 1, allowing users to grip them in a standing position for body resistance training. The U-shaped hangers 32 are also detachably connected to the frame 1, allowing users to grip them in a standing position for body resistance training. Multiple resistance bars 33 are located on the outer wall of the frame 1 at different heights, allowing users to perform leg resistance training in a standing position. The two sets of hanging rods 34 are connected to the top of the frame 1, allowing users to grip them in a standing position for body suspension and resistance training. An intermediate rod 15 connects between the two sets of vertical rods 12. The intermediate rod 15 is horizontally positioned and detachably connected to both ends of the two sets of vertical rods 12. Its height on the vertical rods 12 is adjustable. The pull rings 31 and U-shaped hangers 32 are hung on the intermediate rod 15. There are multiple intermediate rods 15. The resistance bar 33 is mounted on the vertical bar 12 at various heights, and the hanging rod 34 is fixedly connected to the horizontal bar 13, located on the outside of the frame 1, and is F-shaped. The push training mechanism 2 is not required when using the hanging rod 34. Placing the legs on the resistance bar 33 and pulling allows the leg muscles to be engaged, achieving the function of resistance training. By holding the pull rings 31 with both hands and lifting the feet off the ground, the user can achieve full-body resistance training. Holding the two ends of the U-shaped hanging piece 32 with both hands and lifting the feet off the ground also provides full-body resistance training. Users can also hang clothing on the resistance bar 33. The pull rings 31 and U-shaped hanging piece 32 can also be hung in other positions on the frame 1, depending on the actual situation, for user convenience.
[0030] Preferably, a resistance bar 33 is connected to the outside of the push plate 28. The resistance bar 33 is located outside the rotating rod 23 for use by the exerciser. When the resistance bar 33 is pushed, the rotating rod 23 is also pushed at the same time, causing it to rotate. That is, the rotating rod 23 can be pushed even from the outside of the frame 1, achieving the effect of pushing training for the exerciser.
[0031] In some embodiments, please refer to Figures 1 to 13 The inner wall of frame 1 is provided with a fixing bracket 16, which is used to clamp and fix items. The fixing bracket 16 can fix one or more of the following items used by the exerciser: mobile phone, tablet, computer, book, paper, drawing board. For example, the fixing bracket 16 can be used to fix a mobile phone, making it convenient to look at the phone while exercising. This fixing bracket 16 is a common type of bracket in the prior art, such as a mobile phone holder. It has a claw-type structure, and the enclosed range is adjustable, or it can be understood as being telescopic and adjustable, which makes it easy to clamp and fix mobile phones of different sizes.
[0032] Specifically, the fixed bracket 16 is rectangular, with both ends detachably connected to the middle of the vertical rod 12. Its height is consistent with or matches the height of the fitness user, making it convenient for the fitness user to watch during training.
[0033] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A comprehensive training device, characterized in that, include: The frame has a first counterweight and a second counterweight respectively installed on the bottom of two opposite sides inside. A comprehensive training apparatus, connected to the frame, is used by fitness enthusiasts to perform resistance training in a standing position; A thrust training mechanism is connected to the frame and simultaneously connected to the first counterweight and the second counterweight, for exercisers to perform thrust and pull training in a standing position. A resistance training mechanism is connected to the inner side of the frame and is used by fitness enthusiasts to perform vertical resistance training in a standing position. The tensile training mechanism includes: Two sets of second columns are vertically and fixedly connected to the middle of the frame, and multiple clamps are evenly distributed at equal intervals along the height direction on the outer side of the second columns; Two sets of guide rods are vertically arranged on the sides of the two sets of second columns, and the guide rods and the clamp rods are spaced apart; Two sets of guide sleeves are respectively fitted onto the two sets of guide rods, and have the degree of freedom to slide along the height direction of the guide rods; The pull rod is horizontally positioned and fixedly connected to two sets of guide sleeves near both ends. Hooks are fitted on the pull rod near the two sets of guide sleeves. The hooks are used to attach to the clamps at the same height on the two sets of second columns. The hooks have a degree of freedom of rotation along the circumference of the pull rod. The pull rod is attached to the clamps at different heights to adjust the vertical pull training height of the exerciser.
2. The integrated training device as described in claim 1, characterized in that, The thrust training mechanism includes: Both sets of first columns are connected to the frame and are arranged vertically and at intervals; Two sets of sliding sleeves are respectively fitted onto the two sets of the first columns and are slidably connected to the first columns in the upper and lower directions. Two sets of rotating rods, one end of which is respectively hinged to the side of the two sets of sliding sleeves, and the other end is respectively connected to the first counterweight and the second counterweight; The push rod is horizontally positioned with its two ends connected to two sets of rotating rods. The exerciser stands on one side of the push rod and pushes it, causing the two sets of rotating rods to rotate away from the first column. At the same time, the rotating rods pull the first and second counterweights to perform pushing force training. Alternatively, the exerciser can stand and push the push rod to move away from the first column to perform pushing force training.
3. The integrated training device as described in claim 2, characterized in that, The first column has a plurality of first insertion holes evenly distributed along its height direction. The side of the sliding sleeve is provided with a first limiting member. The first limiting member is used to be inserted into the first insertion hole to limit the sliding of the sliding sleeve. The position of the sliding sleeve on the first column can be adjusted.
4. The integrated training device as described in claim 2, characterized in that, The rotating rod has a plurality of second insertion holes evenly distributed along its length. A push plate is sleeved on the rotating rod. The push plate has a sliding degree of freedom along the length of the rotating rod. A second limiting member is inserted through the side of the push plate. The second limiting member is used to insert into the second insertion hole to limit the sliding of the push plate. The position of the push plate on the rotating rod is adjustable.
5. The integrated training device as described in claim 4, characterized in that, When the rotating rod is set vertically, it moves closer to the first column, and the length direction of the rotating rod is parallel to the height direction of the first column. The two ends of the push rod are respectively inserted into the second holes on the two sets of rotating rods. The push rod can move along the length direction of the rotating rod to adjust the position of the push rod so that fitness participants of different heights can perform vertical pulling training in a standing position; or push the push rod away from the first column in a standing position to perform pushing training.
6. The integrated training device as described in claim 3, characterized in that, The upper part of the frame is provided with a first fixed pulley group, a second fixed pulley group, and a third fixed pulley group arranged sequentially from far to near the two sets of first columns. A movable pulley group is provided in the middle of the frame, below the midpoint of the line connecting the second and third fixed pulley groups. A fourth fixed pulley group and a fifth fixed pulley group are provided at the lower part of the frame. The comprehensive training device also includes a first tension line and a second tension line arranged near the two sets of first columns. One end of the first tension line is connected to the first or second counterweight, and the other end is fixedly connected to the lower part of the first column. The middle portion of the second pull wire is sequentially wrapped around the first fixed pulley group, the second fixed pulley group, the movable pulley group, and the third fixed pulley group; one end of the second pull wire is fixedly connected to the lower part of the frame, and the other end is used to connect to the other end of the rotating rod. The middle portion of the second pull wire is sequentially wrapped around the movable pulley group, the fourth fixed pulley group, and the fifth fixed pulley group. When the push rod is pushed to move and the rotating rod rotates, the second pull wire pulls the movable pulley group to move up and down, the movable pulley group pulls the first pull wire to move, and the first pull wire pulls the first counterweight or the second counterweight to move up and down.
7. The integrated training device as described in claim 6, characterized in that, A sleeve is fitted onto the first column. A third limiting member is provided on the side of the sleeve for inserting into the first insertion hole. The other end of the first pull wire is fixedly connected to the side of the sleeve. The sleeve has the freedom to slide up and down along the first column. A housing is rotatably connected to the side of the sleeve. The housing has the freedom to rotate or swing in the horizontal plane. A first directional pulley and a second directional pulley are rotatably connected inside the housing. The first directional pulley is located above the second directional pulley. The middle part of the second pull wire is led out from the fifth fixed pulley group and then led out between the second directional pulley and the first directional pulley to wrap around the second directional pulley or the first directional pulley. After being led out, it is detachably connected to the other end of the rotating rod. The first directional pulley is used to guide the second pull wire to extend horizontally or diagonally upward. The second directional pulley is used to guide the second pull wire to extend diagonally downward.
8. The integrated training device as described in claim 1, characterized in that, The comprehensive training institution includes: Both pull rings are detachably connected to the frame, allowing fitness enthusiasts to grip them while standing for strength training. The U-shaped pendant is detachably connected to the frame and is used by fitness enthusiasts to hold it in a standing position for body tension training. Multiple resistance bars are installed on the outer wall of the frame at different heights, for fitness enthusiasts to perform leg resistance training in a standing position; Two sets of suspension rods are connected to the top of the frame, allowing exercisers to hold them in a standing position and suspend their bodies for resistance training.
9. The integrated training device as described in claim 1, characterized in that, The inner sidewall of the frame is provided with a fixing bracket, which is used to clamp and fix the item.