Comprehensive training device
By designing a comprehensive training device, and utilizing a winding rope and guide structure to adjust the direction of the rope, the problem of the single function of existing resistance training equipment is solved. This enables the switching of multiple training modes and improves safety, adapting to the fitness needs of different users.
Patent Information
- Application Number
- CN202423102479.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Existing resistance training equipment has limited functionality and cannot meet the growing fitness needs of consumers. Furthermore, traditional barbell and dumbbell training poses safety hazards and is inconvenient to carry.
Design a comprehensive training device that provides pulling resistance by winding a rope, and combines multiple guide positions and guide structures to adjust the direction of the rope, forming a variety of training modes, including exercises for muscle groups such as the shoulders, hands, legs and abdomen.
It enables switching between multiple exercise modes, enhances the functionality and safety of fitness equipment, is easy to carry, and adapts to the fitness needs of different users.
Smart Images

Figure CN223716320U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of training equipment, in particular to a comprehensive training device. BACKGROUND
[0002] Current strength training such as barbell training is that users use barbells for exercise. However, this traditional exercise method has safety hazards, and the barbell is easy to drop and hurt the user, and is not convenient to carry, and can only be used in professional fitness places.
[0003] Although there are other pull fitness equipment at present, the use function of the existing pull fitness equipment is relatively single, and it is difficult to meet the growing fitness needs of consumers. CONTENT OF THE INVENTION
[0004] The present application mainly solves the technical problem of the single use function of the existing pull fitness equipment in the prior art. A comprehensive training device with multiple exercise modes is provided.
[0005] In order to solve the above technical problems, the present application provides a comprehensive training device, characterized in that the comprehensive training device comprises,
[0006] A training device body, the training device body comprises a force generating assembly, the force generating assembly provides a pulling resistance by winding a pulling rope;
[0007] A first mounting surface, the first mounting surface is arranged along a first direction, and the training device body is arranged on the first mounting surface;
[0008] A pull rod and a pulling rope, the pull rod is connected with the force generating assembly through the pulling rope, and the force generating assembly rotates synchronously when the pull rod is pulled;
[0009] A guide structure and a guide position, a plurality of guide positions are arranged on the comprehensive training device, the guide positions are used to arrange the guide structure, and the pulling rope passes through the force generating assemblies of different guide positions in sequence to adjust the direction of the pulling rope and form multiple exercise modes.
[0010] In an implementable manner, the first mounting surface is located at the bottom of the training device body, the guide positions arranged on the first mounting surface along the first direction are first guide positions, the guide structures arranged on the first guide positions constitute a first guide assembly, one end of the pulling rope passes through the guide structures in the first guide assembly in sequence from the force generating assembly, and then connects the pull rod. When an external force pulls the pull rod upward along a second direction, the force generating assembly rotates synchronously.
[0011] In an implementable manner, the comprehensive training device further comprises,
[0012] A second installation surface is arranged along a second direction, and is arranged on one side of the trainer body along a third direction. A plurality of guide positions are arranged on the second installation surface.
[0013] The guide positions arranged on the second installation surface along the second direction are second guide positions, and the guide structures arranged on the second guide positions form a second guide assembly.
[0014] The guide positions arranged on the second installation surface along the third direction are third guide positions, and the guide structures arranged on the third guide positions form a third guide assembly.
[0015] In an embodiment, one end of the pull rope is sequentially threaded through the guide structures in the third guide assembly from the force generating assembly, and then connected to the pull rod. When an external force pulls the pull rod downward along the second direction, the force generating assembly rotates synchronously.
[0016] In an embodiment, one end of the pull rope is sequentially threaded through the guide structures in the third guide assembly and the guide structures in the first guide assembly from the force generating assembly, and then connected to the pull rod. When an external force pulls the pull rod upward along the second direction, the force generating assembly rotates synchronously.
[0017] In an embodiment, the second guide assembly is located between the first guide assembly and the third guide assembly along the second direction. One end of the pull rope is sequentially threaded through the guide structures in the third guide assembly and the guide structures in the second guide assembly from the force generating assembly, and then connected to the pull rod. When an external force pulls the pull rod forward along the first direction, the force generating assembly rotates synchronously.
[0018] In an embodiment, the second installation surface is formed by a wall or a support.
[0019] In an embodiment, the second guide assembly and the third guide assembly are movably connected to the support.
[0020] In an embodiment, the number of trainer bodies is one or two, and the number of pull rods is two.
[0021] When the number of trainer bodies is two, the two pull rods are connected to the trainer bodies through the pull rope.
[0022] When the number of the training device body is one, the comprehensive training device also includes a traction component. The pull rope includes a first pull rope and a second pull rope. The first end of the first pull rope is wound around the force generating component, the second end of the first pull rope is connected to the traction component, the second pull rope is tactilely connected to the traction component, and the two ends of the second pull rope are respectively connected to the two pull rods.
[0023] In one possible implementation, the guide structure includes,
[0024] Guide frame, wherein a guide cavity is provided through the guide frame along the fourth direction;
[0025] A first guide member is disposed on one side of the guide cavity along the fourth direction, and a first guide groove is formed in the first guide member along the sixth direction.
[0026] A second guide member is disposed on the other side of the guide cavity along the fourth direction, and a second guide groove is formed within the second guide member along the fifth direction; wherein...
[0027] The pull rope passes through the first guide groove and the second guide groove in sequence to form a limit on the pull rope.
[0028] Compared to existing technologies, the comprehensive trainer of this application provides pulling resistance by winding a pull rope. The comprehensive trainer has multiple guide positions arranged on it, which are used to arrange guide structures. The pull rope passes through force generating components at different guide positions in sequence to adjust the direction of the pull rope and further enable the pull rod to be pulled in different directions, thereby forming a variety of training modes.
[0029] Therefore, this application has the characteristics of reasonable structure and convenient use. Attached Figure Description
[0030] Appendix Figure 1 This is a schematic diagram of a structure of a comprehensive trainer when the trainer body is the subject of this application.
[0031] Appendix Figure 2 This is another structural schematic diagram of the integrated trainer body in this application;
[0032] Appendix Figure 3 This is another structural diagram of the integrated trainer body in this application;
[0033] Appendix Figure 4 This is a schematic diagram of a structure of the integrated trainer with dual trainer bodies in this application;
[0034] Appendix Figure 5 This is another structural schematic diagram of the integrated trainer when there are two trainer bodies in this application;
[0035] Figure 8 is another structural schematic view of the dual-trainer body of the present application; Figure 6 Figure 9 is another structural schematic view of the comprehensive trainer of the present application;
[0036] Figure 10 is another structural schematic view of the comprehensive trainer of the present application; Figure 7 Figure 11 is a structural schematic view of the traction assembly of the present application;
[0037] Figure 12 is another structural schematic view of the traction assembly of the present application; Figure 8 Figure 13 is a structural schematic view of the force generating assembly and the sleeve assembly of the present application;
[0038] Figure 14 is another structural schematic view of the force generating assembly and the sleeve assembly of the present application; Figure 9 Figure 15 is a structural schematic view of the guide structure of the present application;
[0039] Figure 16 is a sectional view of the guide structure of the present application; Figure 10 Figure 17 is a sectional view of the guide structure of the present application;
[0040] Figure 18 is a legend of the figures;
[0041] X, first direction; Y, second direction; Z, third direction;
[0042] A, fourth direction; B, fifth direction; C, sixth direction;
[0043] 100, trainer body; 110, force generating assembly; 111, rotor; 112, stator; 113, connecting shaft;
[0044] 200, pull rod;
[0045] 300, pull rope; 310, first pull rope; 320, second pull rope;
[0046] 400, first mounting surface; 410, side edge roller;
[0047] 500, guide structure; 511, first guide position; 512, second guide position; 513, third guide position; 520, first guide assembly; 530, second guide assembly; 540, third guide assembly; 550, guide frame; 551, guide cavity; 560, first guide piece; 561, first guide slot; 562, first avoiding slot; 570, second guide piece; 571, second guide slot; 572, second avoiding slot;
[0048] 600, fixing assembly; 610, first fixing piece; 611, first connecting plate; 612, first limiting cavity; 613, second connecting plate; 620, second fixing piece; 621, third connecting plate; 622, second limiting cavity; 623, opening; 624, connecting hole; 625, limiting slot; 626, limiting column; 630, connecting piece; 631, limiting plate; 632, magnetic attraction piece; 633, limiting rod;
[0049] 700, sleeve assembly; 710, outer sleeve; 720, rotating member; 730, connecting column; 740, intermediate connecting member;
[0050] 800, second mounting surface; 810, vertical rod;
[0051] 900, traction assembly; 910, frame body; 920, roller. DETAILED DESCRIPTION
[0052] In order to make the purpose, features and advantages of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application will be described clearly and completely in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0053] The prior art has the technical problem of single use function of the tension fitness equipment.
[0054] Therefore, the present application provides a comprehensive trainer, characterized in that the comprehensive trainer comprises,
[0055] The trainer body comprises a force generating assembly, which provides a pulling resistance by winding the pulling rope;
[0056] The first mounting surface is arranged in the first direction, and the trainer body is arranged on the first mounting surface;
[0057] The pulling rod is connected to the force generating assembly through the pulling rope, and the force generating assembly rotates synchronously when the pulling rod is pulled;
[0058] The comprehensive trainer is provided with a plurality of guide positions, the guide positions are used to arrange guide structures, the pulling rope passes through the force generating assemblies of different guide positions in sequence to adjust the direction of the pulling rope, and a plurality of exercise modes are formed.
[0059] Embodiment 1:
[0060] Please refer to the drawings Figure 1 to the drawings Figure 10As shown, a specific embodiment of the comprehensive trainer of the present application is shown. The comprehensive trainer of the present application provides pulling resistance by means of winding the pulling rope 300, and the comprehensive trainer is provided with a plurality of guide positions for arranging the guide structure 500, and the pulling rope 300 passes through the force generating assembly 110 of different guide positions in sequence to adjust the direction of the pulling rope 300, and further realize that the pulling rod 200 can be pulled in different directions, and when the pulling direction of the pulling rod 200 changes, the muscle group position of the person exercising changes, thereby forming a plurality of exercise modes.
[0061] Please refer to the accompanying drawings Figure 1 to the accompanying drawings Figure 8 As shown, the first direction X of the present application refers to the length direction of the comprehensive trainer, that is, the front-to-back direction of the comprehensive trainer or the back-to-front direction of the comprehensive trainer, and in the present application, the second guide assembly 530 is arranged rearward relative to the first guide assembly 520, and the first guide assembly 520 is arranged forward relative to the second guide assembly 530. The second direction Y of the present application refers to the height direction of the comprehensive trainer, that is, the top-to-bottom direction of the comprehensive trainer or the bottom-to-top direction of the comprehensive trainer, and in the present application, the first guide assembly 520 is arranged downward relative to the third guide assembly 540, and the third guide assembly 540 is arranged upward relative to the first guide assembly 520.
[0062] Please refer to the accompanying drawings Figure 1 is a structural schematic view of the comprehensive trainer of the present application when the single trainer body 100 is arranged. Please refer to the accompanying drawings Figure 1 As shown, the comprehensive trainer of the present application includes the trainer body 100, and the trainer body 100 includes the force generating assembly 110 for providing resistance when the comprehensive trainer is pulled. Further, the force generating assembly 110 provides pulling resistance by means of winding the pulling rope 300.
[0063] In the present application, the trainer body 100 is arranged in one or two. Further, in the present embodiment, the trainer body 100 is arranged in one.
[0064] Please refer to the accompanying drawings Figure 1 As shown, the comprehensive trainer of the present application further includes the pulling rod 200 and the pulling rope 300, and the pulling rod 200 is connected with the force generating assembly 110 through the pulling rope 300, and when the pulling rod 200 is pulled, the force generating assembly 110 rotates synchronously to realize exercise. Further, the pulling direction of the pulling rod 200 depends on the arrangement direction of the pulling rope 300, and in the present application, the pulling rope 300 is arranged along the limiting structure.
[0065] In the present application, the pull rod 200 is provided with one or two. When the pull rod 200 is one, both hands pull the pull rod 200 simultaneously to exercise. When the pull rod 200 is two, both hands pull one pull rod 200 respectively to exercise. In an embodiment, the pull rod 200 is provided with two.
[0066] Please refer to the accompanying drawings Figure 1 The comprehensive trainer of the present application further comprises a traction assembly 900. In an embodiment of the present application, the pull rod 200 is provided with two, and the trainer body 100 is provided with one. At this time, the trainer body 100 needs to be connected with the two pull rods 200 through the pull rope 300, and the force generating assembly 110 in the trainer body 100 rotates synchronously when the two pull rods 200 are pulled respectively or synchronously.
[0067] Further, the pull rope 300 comprises a first pull rope 310 and a second pull rope 320. The first pull rope 310 and the second pull rope 320 are two sections of ropes which are not directly connected, and the first pull rope 310 realizes force transmission with the second pull rope 320 through the traction assembly 900.
[0068] Among them, the first end of the first pull rope 310 is wound on the force generating assembly 110, the second end of the first pull rope 310 is connected with the traction assembly 900, the second pull rope 320 is in rolling connection with the traction assembly 900, and both ends of the second pull rope 320 are connected with two pull rods 200 respectively. Thus, when the pull rod 200 is pulled, the traction assembly 900 moves synchronously, and further drives the first pull rope 310 and the force generating assembly 110 to move synchronously.
[0069] In an embodiment, the first pull rope 310 comprises a winding section and a straight pull. The winding section is wound outside the force generating assembly 110 and rotates synchronously with the force generating assembly 110. The straight pull section is arranged straight along the second direction Y, the first end of the straight pull section is connected with the traction assembly 900, the second end of the straight pull section is connected with the winding section, and the straight pull section 320 moves along the second direction Y under the pulling of the traction assembly 900.
[0070] In an embodiment, the pull rod 200 comprises a connecting section and a handle section, both ends of the connecting section are provided with the handle section, and the connecting section is connected with the pull rope 300. The exerciser holds the handle section to pull the pull rod 200, so as to realize synchronous rotation of the force generating assembly 110.
[0071] Please refer to the accompanying drawings Figure 1 The comprehensive trainer of the present application further comprises a first mounting surface 400 and a second mounting surface 800, and the first mounting surface 400 and the second mounting surface 800 are used to realize mounting of other components in the comprehensive trainer.
[0072] The first installation surface 400 is arranged along a first direction X, and the trainer body 100 and the first guide assembly 520 are arranged on the first installation surface 400. The first installation surface 400 is composed of an installation plate, and specifically, the installation plate is laid on the ground during use, and the exerciser steps on the first installation surface 400 to perform exercise.
[0073] Further, the first installation surface 400 is composed of a wooden plate, and the guide structure is connected with the wooden plate through an iron plate located between the guide structure and the wooden plate.
[0074] In an embodiment, the side edges of the installation plate constituting the first installation surface 400 are provided with side edge rollers 410, so that the comprehensive trainer can be transported through the side edge rollers 410 when the installation plate is erected, thereby facilitating the transportation of the comprehensive trainer.
[0075] The second installation surface 800 is arranged along a second direction Y, and the second installation surface 800 is arranged on one side of the trainer body 100 along a third direction Z. The second installation surface 800 is provided with a plurality of training positions, and the second guide assembly 530 and the third guide assembly 540 are arranged on the second installation surface 800. The second installation surface 800 is composed of a wall surface or a support. In the present application, the second installation surface 800 is composed of a wall surface, and the second guide assembly 530 and the third guide assembly 540 are installed on the wall surface through mounting members. In an embodiment, the mounting members are pipe-shaped parts, and further, the mounting members are rectangular pipes. The wall-mounted arrangement of the second guide assembly 530 and the third guide assembly 540 can optimize the space occupied by the comprehensive trainer.
[0076] Please refer to the accompanying drawings Figure 1 The comprehensive trainer of the present application comprises a guide structure 500 and a guide position. The comprehensive trainer is provided with a plurality of guide positions, and the guide positions are used to arrange the guide structure 500. The guide structure 500 is rollingly connected with the pull rope 300. Further, the pull rope 300 passes through the guide structure 500 of different guide positions to adjust the direction of the pull rope 300 and form a plurality of exercise modes.
[0077] Please refer to the accompanying drawings Figure 1 The guide positions of the present application are divided into a first guide position 511, a second guide position 512 and a third guide position 513 according to different arrangement positions. The guide structure 500 can be combined to form a guide assembly, and the guide assembly is divided into a first guide assembly 520, a second guide assembly 530 and a third guide assembly 540 according to different mounting positions. In the present application, in order to adapt to two pull rods 200, the first guide assembly 520, the second guide assembly 530 and the third guide assembly 540 are each provided with two groups.
[0078] The first installation surface 400 is located at the bottom of the trainer body 100. The guide position arranged on the first installation surface 400 along the first direction X is the first guide position 511. The guide structure 500 arranged on the first guide position 511 constitutes the first guide assembly 520. The first guide assembly 520 includes a plurality of guide structures 500. In the present application, one guide structure 500 is arranged on the first guide assembly 520 close to the trainer body 100. The guide structure 500 is at the same horizontal plane as the joint between the first pulley segment and the straight pulley segment of the first pulley 310, thereby facilitating the leading of the pulley 300 out of the force generating assembly 110. When the pulley 300 is led out of the guide structure 500 in the first guide assembly 520 and connected with the pull rod 200, the specific pulling direction of the pull rod 200 is upward along the second direction Y.
[0079] The guide position arranged on the second installation surface 800 along the second direction Y is the second guide position 512. The guide structure 500 arranged on the second guide position 512 constitutes the second guide assembly 530. When the pulley 300 is led out of the guide structure 500 in the second guide assembly 530 and connected with the pull rod 200, the specific pulling direction of the pull rod 200 is forward along the first direction X.
[0080] The guide position arranged on the second installation surface 800 along the third direction Z is the third guide position 513. The guide structure 500 arranged on the third guide position 513 constitutes the third guide assembly 540. When the pulley 300 is led out of the guide structure 500 in the third guide assembly 540 and connected with the pull rod 200, the specific pulling direction of the pull rod 200 is downward along the second direction Y.
[0081] Please refer to the accompanying drawings Figure 1 The specific arrangement of the pulley 300 in the present application is that one end of the first pulley 310 is led out of the force generating assembly 110 and then upward, and then connected with the traction assembly 900. The second pulley 320 is limited in the traction assembly 900 and connected with the traction assembly 900 in a rolling manner. Both ends of the second pulley 320 are upward after entering the guide structure 500 in the third guide assembly 540, and then both ends of the second pulley 320 are downward after entering the guide structure 500 in the first guide assembly 520. Finally, the pull rod 200 is connected. When the pull rod 200 is pulled upward along the second direction Y by an external force, the force generating assembly 110 rotates synchronously to enter the first exercise mode, and the shoulder and hand strength are exercised.
[0082] The accompanying drawings Figure 2 is another structure schematic view of the comprehensive trainer of the present application. Please refer to the accompanying drawings Figure 2 Another exercise mode of the comprehensive trainer of the present application is shown. The accompanying drawings Figure 2comprehensive trainer in the Figure 1 The difference between the comprehensive trainer in the
[0083] Please refer to the Figure 2 The comprehensive trainer of the present application adopts a single trainer body 100, and the pull rod 200 is two, and the second mounting surface 800 is arranged on the wall. Further, the specific arrangement of the pull rope 300 of the present application is that one end of the first pull rope 310 is arranged from the force generating assembly 110, then upwardly, and then connected with the traction assembly 900, the second pull rope 320 is limited in the traction assembly 900 and is in rolling connection with the traction assembly 900, both ends of the second pull rope 320 are arranged upwardly and then enter the guide structure 500 in the third guide assembly 540, then both ends of the second pull rope 320 are arranged downwardly and then connected with the pull rod 200, when the external force pulls the pull rod 200 from top to bottom along the second direction Y, the force generating assembly 110 rotates synchronously to enter the second exercise mode, and exercises the leg strength, abdominal strength and the like.
[0084] The Figure 3 is another structure schematic view of the comprehensive trainer when the single trainer body 100 of the present application. Please refer to the Figure 3 Another exercise mode of the comprehensive trainer of the present application is shown. The Figure 3 The comprehensive trainer in the Figure 1 The difference between the comprehensive trainer in the
[0085] Please refer to the Figure 3 The comprehensive trainer of the present application adopts a single trainer body 100, and the pull rod 200 is two, and the second mounting surface 800 is arranged on the wall. Further, the specific arrangement of the pull rope 300 of the present application is that one end of the first pull rope 310 is arranged from the force generating assembly 110, then upwardly, and then connected with the traction assembly 900, the second pull rope 320 is limited in the traction assembly 900 and is in rolling connection with the traction assembly 900, both ends of the second pull rope 320 are arranged upwardly and then enter the guide structure 500 in the third guide assembly 540, then both ends of the second pull rope 320 are arranged downwardly and then connected with the pull rod 200, when the external force pulls the pull rod 200 from top to bottom along the second direction Y, the force generating assembly 110 rotates synchronously to enter the second exercise mode, and exercises the leg strength, abdominal strength and the like.
[0086] The Figure 4This is a schematic diagram of one structure of the integrated trainer with dual trainer bodies (100 units) according to this application. Please refer to the attached diagram. Figure 4 As shown, another training mode of the comprehensive training device of this application is presented. (Attached) Figure 4 The integrated training device and its attachments Figure 1 The difference between this and other comprehensive training devices lies in the number of training device bodies 100. When the number of training device bodies 100 is increased from one to two, the resistance when the trainee pulls can be increased, thus adapting to the needs of trainees with different requirements. Both the second and third training modes of this application can also use dual training device bodies 100.
[0087] Please refer to the attached document. Figure 4 As shown, the comprehensive trainer of this application adopts a dual trainer body 100, and there are two pull rods 200. The second mounting surface 800 is set on the wall. Furthermore, the specific arrangement of the pull rope 300 of this application is as follows: the first end of the pull rope 300 starts from the force generating component 110 and then moves upward into the guide structures 500 in the third guide component 540. Then, both ends of the pull rope 300 move downward and enter the guide structures 500 in the first guide component 520. Finally, it connects to the pull rod 200. When an external force pulls the pull rod 200 from bottom to top along the second direction Y, the force generating component 110 rotates synchronously to enter the fourth training mode and exercise the shoulder and hand strength, etc.
[0088] Appendix Figure 5 This is another structural schematic diagram of the integrated trainer with dual trainer bodies (100) as described in this application. Please refer to the attached diagram. Figure 5 As shown, another training mode of the comprehensive training device of this application is presented. (Attached) Figure 5 The integrated training device and its attachments Figure 1 The difference between this and other comprehensive trainers lies in the number of trainer bodies 100, the setting of the second mounting surface 800, and the orientation of the pull rope 300. The comprehensive trainer of this application eliminates the second mounting surface 800 and uses only the first guide component 520 to form the exercise mode.
[0089] Please refer to the attached document. Figure 5 As shown, the comprehensive trainer of this application can only use a dual trainer body 100, and there are two pull rods 200, and the setting of the second mounting surface 800 is eliminated. Furthermore, the specific arrangement direction of the pull rope 300 of this application is that the first end of the pull rope 300 starts from the force generating component 110, then moves downward and enters each guide structure 500 in the first guide component 520. Then, both ends of the pull rope 300 are led out from the first guide component 520 and finally connected to the pull rod 200. When the external force pulls the pull rod 200 from bottom to top along the second direction Y, the force generating component 110 rotates synchronously to enter the fifth training mode and exercise the shoulder and hand strength, etc.
[0090] Appendix Figure 6This is another structural schematic diagram of the integrated trainer with dual trainer bodies (100) as described in this application. Please refer to the attached diagram. Figure 6 As shown, another training mode of the comprehensive training device of this application is presented. (Attached) Figure 5 The integrated training device and its accessories Figure 1 The difference between this and other comprehensive trainers lies in the number of trainer bodies 100, the setting of the second mounting surface 800, and the orientation of the pull rope 300. In this application, the comprehensive trainer sets the second mounting surface 800 on a support, which consists of a first connecting rod and a second connecting rod. The first connecting rod is positioned along the second direction Y, and the two first connecting rods are spaced apart along the third direction Z. The second connecting rod is also positioned along the third direction Z. The first end of the first connecting rod is connected to the first mounting surface 400, and the second end of the first connecting rod is connected to the second connecting rod. A second guide component 530 is mounted on the first connecting rod, and a third guide component 540 is mounted on the second connecting rod. In this application, the first and fourth training modes can also use a support to form the second mounting surface 800.
[0091] In one embodiment, the comprehensive training device of this application further includes a vertical rod 810, which is disposed between two first connecting members 630. The first end of the vertical rod 810 is connected to the second connecting rod, and the second end of the vertical rod 810 is used to set a bracket for placing a mobile phone or tablet.
[0092] In one embodiment, each guide structure 500 in the second guide assembly 530 and the third guide assembly 540 of this application is movably connected to the first connecting rod or the second connecting rod to form different exercise modes. When the guide structure 500 in the second guide assembly 530 is positioned close to the third guide assembly 540, an external force can pull the pull rod 200 downwards along the second direction Y. When the guide structure 500 in the second guide assembly 530 is located at the middle position of the first connecting rod, an external force can pull the pull rod 200 from back to front along the first direction X.
[0093] Please refer to the attached document. Figure 6 As shown, the comprehensive trainer of this application adopts a dual trainer body 100 and two pull rods 200, and the second mounting surface 800 is set on the bracket. Further, the specific arrangement direction of the pull rope 300 of this application is as follows: one end of the pull rope 300 starts from the force generating component 110, then moves downward and enters the guide structure 500 in the first guide component 520 near the trainer body 100; then one end of the pull rope 300 moves upward and enters the guide structure 500 in the second guide component 530; finally, the pulled end moves downward and connects with the pull rod 200. When an external force pulls the pull rod 200 downward along the second direction Y, the force generating component 110 rotates synchronously to enter the sixth training mode and exercise leg strength, abdominal strength, etc.
[0094] Appendix Figure 7This is a structural schematic diagram of the traction component 900 of this application. Please refer to the attached diagram. Figure 7 As shown, the traction assembly 900 of this application includes a frame 910 and a roller 920. The bottom of the frame 910 is connected to a first pull rope 310. A receiving cavity is provided through the frame 910, and the roller 920 is located in the receiving cavity and is rotatably connected to the frame 910. A gap is provided between the roller 920 and the receiving cavity, and a second pull rope 320 is located in the gap between the roller 920 and the receiving cavity.
[0095] Appendix Figure 8 This is a schematic diagram of a structure between the force generating component 110 and the sleeve component 700 of this application. Please refer to the attached diagram. Figure 5 As shown, the force generating assembly 110 includes a rotor 111 and a stator 112. The stator 112 is located inside the rotor 111 and is rotatably connected to the rotor 111. A magnet is further provided on the rotor 111, and a copper wire is provided on the stator 112. The resistance to relative rotation between the rotor 111 and the stator 112 is adjusted by controlling the current flowing through the copper wire. The force generating assembly 110 of this application also includes a connecting shaft 113, which passes through the stator 112 along a third direction Z and is fixedly connected to the stator 112.
[0096] Please refer to the attached document. Figure 8 As shown, the force generating component 110 is connected to the pull rope via the sleeve assembly 700. The sleeve assembly 700 includes an outer sleeve 710, which is a hollow structure. The outer sleeve 710 has several diameters, and the output resistance value of the force generating component 110 can be adjusted by replacing the outer sleeve 710 with different diameters. The sleeve assembly 700 also includes a connecting post 730, which is disposed on the outer sleeve 710 and connected to the rotor 111 via the connecting post 730. The sleeve assembly 700 also includes a rotating component 720 and an intermediate connecting component 740. The outer sleeve 710 is rotatably connected to the intermediate connecting component 740 via the rotating component 720, and the intermediate connecting component 740 is connected to the connecting shaft 113.
[0097] In one embodiment, the rotating member 720 includes a bearing or a bushing.
[0098] Appendix Figure 9 This is a schematic diagram of one possible structure of the guiding structure 500 of this application. (Attached) Figure 10 This is a cross-sectional view of the guide structure 500 of this application. Please refer to the attached diagram. Figure 9 and appendix Figure 10 As shown, the guide structure 500 of this application includes a guide frame 550, and a guide cavity 551 is also provided through the guide frame 550 along the fourth direction A. In one embodiment, the guide frame 550 is a box-like structure, and the guide frame 550 is used to accommodate the other components within the guide structure 500.
[0099] Please refer to the accompanying drawings Figure 9 and the accompanying drawings Figure 10 As shown in the accompanying drawings, the guide structure 500 further comprises a first guide member 560 and a second guide member 570, which are used to adjust the running direction of the pull rope 300. Further, the pull rope 300 is in rolling connection with the first guide member 560 and the second guide member 570.
[0100] The first guide member 560 is arranged on one side of the guide cavity 551 along the fourth direction A, and a first guide groove 561 along the sixth direction C is formed in the first guide member 560. The second guide member 570 is arranged on the other side of the guide cavity 551 along the fourth direction A, and a second guide groove 571 along the fifth direction B is formed in the second guide member 570. The pull rope 300 passes through the first guide groove 561 and the second guide groove 571 in sequence to form the position limitation of the pull rope 300.
[0101] In an embodiment, the first guide groove 561 and the second guide groove 571 are long strip structures. The projections of the first guide groove 561 and the second guide groove 571 on the guide frame 550 along the fourth direction A intersect, and the pull rope 300 is limited in the intersection region of the first guide groove 561 and the second guide groove 571 along the fourth direction A.
[0102] In an embodiment, the first guide member 560 and the second guide member 570 are both formed by guide wheels arranged at intervals, and the first guide groove 561 and the second guide groove 571 are both located between the two guide wheels. The two guide wheels of the first guide member 560 are arranged along the sixth direction C, and the two guide wheels of the second guide member 570 are arranged along the fifth direction B. The guide wheels of the first guide member 560 and the second guide member 570 comprise a rotating member and a central shaft, the rotating member is sleeved outside the central shaft, the rotating member is in rotational connection with the central shaft, and the central shaft is connected with the guide frame 550.
[0103] Please refer to the accompanying drawings Figure 9 and the accompanying drawings Figure 10As shown, the guiding structure 500 of the present application further comprises a first avoiding slot 562, the first avoiding slot 562 is arranged along the sixth direction C, the first avoiding slot 562 is arranged on the side of the guiding frame 550 close to the first guide 560, and the projection of the first guide slot 561 on the side of the guiding frame 550 close to the first guide 560 at least partially coincides with the first avoiding slot 562. When the pull rope 300 is in the first guide slot 561, it is used to limit the movement of the pull rope 300 in the fourth direction A and the fifth direction B, so that the pull rope 300 is more likely to contact the guiding frame 550 in the sixth direction C. If the pull rope 300 is in contact with the side of the guiding frame 550 for a long time, it is easy to cause friction between the guiding frame 550 and the pull rope 300, which further causes damage to the pull rope 300. Therefore, when the pull rope 300 is pulled in the sixth direction C, the pull rope 300 will directly enter the first avoiding slot 562, thereby protecting the pull rope 300.
[0104] Please refer to the accompanying drawings Figure 9 and the accompanying drawings Figure 10 As shown, the guiding structure 500 of the present application further comprises a second avoiding slot 572, the second avoiding slot 572 is arranged along the fifth direction B, the second avoiding slot 572 is arranged on the side of the guiding frame 550 close to the second guide 570, and the projection of the second guide slot 571 on the side of the guiding frame 550 close to the second guide 570 at least partially coincides with the second avoiding slot 572. When the pull rope 300 is in the second guide slot 571, it is used to limit the movement of the pull rope 300 in the fourth direction A and the sixth direction C, so that the pull rope 300 is more likely to contact the guiding frame 550 in the fifth direction B. If the pull rope 300 is in contact with the side of the guiding frame 550 for a long time, it is easy to cause friction between the guiding frame 550 and the pull rope 300, which further causes damage to the pull rope 300. Therefore, when the pull rope 300 is pulled in the fifth direction B, the pull rope 300 will directly enter the second avoiding slot 572, thereby protecting the pull rope 300.
[0105] In an embodiment, the first avoiding slot 562 and the second avoiding slot 572 are U-shaped structures, and the first avoiding slot 562 and the second avoiding slot 572 are transitionally connected with the guiding frame 550.
[0106] Please refer to the accompanying drawings Figure 9 and the accompanying drawings Figure 10 As shown, the comprehensive trainer of the present application further comprises a fixing assembly 600, and the guiding structure 500 is detachably connected with the guiding position through the fixing assembly 600. In order to realize the multifunctional use of the guiding structure 500.
[0107] Among them, the fixing assembly 600 comprises a first fixing member 610, a second fixing member 620 and a connecting member 630. The first fixing member 610 is arranged on the guiding frame 550, and the second fixing member 620 is arranged on each guiding position. The first fixing member 610 is detachably connected with the second fixing member 620 through the connecting member 630.
[0108] In an embodiment, the first fixing member 610 comprises a first connecting plate 611, which is arranged on one side of the guide member along the sixth direction C, and further, the first connecting plate 611 is fixedly connected with the guide frame 550. Two first connecting plates 611 are arranged at intervals along the fourth direction A to form a first limiting cavity 612 arranged along the fifth direction B. The first fixing member 610 further comprises a second connecting plate 613 arranged along the fourth direction A, and the first connecting plate 611 is connected with the guide frame 550 and the second connecting plate 613 respectively. Further, the first limiting cavity 612 is provided with the guide frame 550 and the second connecting plate 613 on both sides along the sixth direction C.
[0109] Further, the first connecting plate 611 and the second connecting plate 613 are both flat plate structures.
[0110] In an embodiment, the second fixing member 620 comprises a third connecting plate 621, the third connecting plate 621 is provided with a second limiting cavity 622 penetratingly arranged along the fourth direction A, and the third connecting plate 621 is provided with an opening 623 on the side facing the guide frame 550, the opening 623 is in communication with the second limiting cavity 622, and the projection of the opening 623 on the guide frame 550 along the sixth direction C is located in the second limiting cavity 622. In specific implementation, the second connecting plate 613 slides into the second limiting cavity 622 along the fourth direction A to form the limiting of the guide structure 500 along the fifth direction B and the sixth direction C.
[0111] Further, the third connecting plate 621 is a flat plate structure.
[0112] Further, the length of the first connecting plate 611 along the fifth direction B is shorter than the length of the second connecting plate 613 along the fifth direction B.
[0113] In an embodiment, the third connecting plate 621 is provided with a limiting slot 625 along the fifth direction B, and when the limiting rod 633 enters the limiting slot 625, the third connecting plate 621 can move in the second limiting cavity 622 along the fourth direction A.
[0114] In an embodiment, the connecting member 630 comprises a limiting plate 631, the third connecting plate 621 is provided with a connecting hole 624 along the fifth direction B, the connecting hole 624 is in communication with the second limiting cavity 622, the limiting plate 631 enters the second limiting cavity 622 through the connecting hole 624, and the limiting plate 631 is located in the first limiting cavity 612 at the same time to form the limiting of the guide structure 500 along the fourth direction A. When the limiting plate 631 moves out of the first limiting cavity 612, the guide frame 550 can move along the fourth direction A.
[0115] In an embodiment, the second fixing member 620 further comprises a limiting column 626, which is arranged in the sixth direction C in the second limiting cavity 622 and connected with the third connecting plate 621, and the limiting column 626 abuts against the second connecting plate 613 to form further limiting of the second connecting plate 613.
[0116] Please refer to the accompanying drawings Figure 9 and the accompanying drawings Figure 10 It can be seen that the connecting member 630 of the application further comprises a magnetic member 632, which is arranged in the first limiting cavity 612, and the limiting plate 631 is made of metal material, and when the limiting plate 631 approaches the magnetic member 632, the limiting of the guide structure 500 in the fourth direction A is formed to avoid the limiting plate 631 from moving out of the first limiting cavity 612 after vibration.
[0117] Please refer to the accompanying drawings Figure 9 and the accompanying drawings Figure 10 It can be seen that the connecting member 630 of the application further comprises a limiting rod 633, which is arranged in the sixth direction C, and the limiting rod 633 is arranged in the second limiting cavity 622, and one end of the limiting rod 633 is connected with the limiting plate 631, and under the movement of the limiting plate 631 in the fifth direction B, the limiting rod 633 always moves in the second limiting cavity 622 to ensure that the limiting plate 631 and the third connecting plate 621 do not separate.
[0118] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of the different embodiments or examples without contradiction.
[0119] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0120] The above merely provides the specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A comprehensive trainer, characterized by, The comprehensive trainer comprises, a trainer body, the trainer body comprising a force generating assembly, the force generating assembly providing pulling resistance by means of winding a pulling rope; a first mounting surface, the first mounting surface being arranged along a first direction, the trainer body being arranged on the first mounting surface; a pull rod, the pull rod being connected with the force generating assembly through the pulling rope, the force generating assembly rotating synchronously when the pull rod is pulled; a guide structure and a guide position, a plurality of the guide positions being arranged on the comprehensive trainer, the guide positions being used for arranging the guide structure, the pulling rope sequentially passing through the force generating assemblies of different guide positions to adjust the route of the pulling rope and form multiple exercise modes.
2. The integrated trainer of claim 1, wherein, The first mounting surface is located at the bottom of the trainer body, the guide positions arranged along the first direction on the first mounting surface are first guide positions, the guide structure arranged on the first guide positions constitutes a first guide assembly, one end of the pulling rope sequentially passes through the guide structures in the first guide assembly from the force generating assembly, and then is connected with the pull rod, the force generating assembly rotating synchronously when the pull rod is pulled by external force along a second direction from below to above.
3. The integrated trainer of claim 2, wherein, The comprehensive trainer further comprises, a second mounting surface, the second mounting surface being arranged along a second direction, the second mounting surface being arranged on one side of the trainer body along a third direction, and a plurality of the guide positions being arranged on the second mounting surface; wherein, the guide positions arranged along the second direction on the second mounting surface are second guide positions, the guide structure arranged on the second guide positions constitutes a second guide assembly; the guide positions arranged along the third direction on the second mounting surface are third guide positions, the guide structure arranged on the third guide positions constitutes a third guide assembly.
4. The integrated trainer of claim 3, wherein, One end of the pulling rope sequentially passes through the guide structures in the third guide assembly from the force generating assembly, and then is connected with the pull rod, the force generating assembly rotating synchronously when the pull rod is pulled by external force along the second direction from above to below.
5. The integrated trainer of claim 3, wherein, One end of the pulling rope sequentially passes through the guide structures in the third guide assembly and the guide structures in the first guide assembly from the force generating assembly, and then is connected with the pull rod, the force generating assembly rotating synchronously when the pull rod is pulled by external force along the second direction from below to above.
6. The integrated trainer of claim 3, wherein, The second guide assembly is located between the first guide assembly and the third guide assembly along the second direction, one end of the pulling rope sequentially passes through the guide structures in the third guide assembly and the guide structures in the second guide assembly from the force generating assembly, and then is connected with the pull rod, the force generating assembly rotating synchronously when the pull rod is pulled by external force along the first direction from back to front.
7. The integrated trainer of claim 3, wherein, The second mounting surface is constituted by a wall surface or a support.
8. The integrated trainer of claim 7, wherein, The second guide assembly and the third guide assembly are movably connected with the support.
9. The integrated trainer of claim 1, wherein, The number of the trainer bodies is one or two, and the number of the pull rods is two; wherein, when the number of the trainer bodies is two, the two pull rods are connected with the trainer bodies through the pulling rope respectively. When the number of the trainer bodies is one, the comprehensive trainer further comprises a traction assembly, the pull rope comprises a first pull rope and a second pull rope, a first end of the first pull rope is wound on the force generating assembly, a second end of the first pull rope is connected with the traction assembly, the second pull rope is in rolling connection with the traction assembly, and two ends of the second pull rope are respectively connected with the two pull rods.
10. The integrated trainer of claim 1, wherein, The guide structure comprises, a guide frame, a guide cavity being provided through the guide frame in a fourth direction; a first guide member, the first guide member being provided on one side of the guide cavity in the fourth direction, and a first guide groove being formed in the first guide member in a sixth direction; a second guide member, the second guide member being provided on the other side of the guide cavity in the fourth direction, and a second guide groove being formed in the second guide member in a fifth direction; and the pull rope sequentially passes through the first guide groove and the second guide groove to form the limit of the pull rope.