Hanging ring device and pull-up system
By designing a ring device with tension monitoring and drying functions, the problems of hand slippage and inconvenient adjustment during the use of traditional ring devices have been solved, achieving a safer, more comfortable and scientific rehabilitation training effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-03-24
AI Technical Summary
Traditional rings devices tend to cause sweaty hands after prolonged use, leading to unstable grip and increased risk of slippage. They also cannot monitor the distribution of pulling force between the hands in real time, resulting in poor training effects. Furthermore, they are inconvenient to adjust, affecting the user experience.
A lifting ring device was designed, comprising a lifting ring unit, a tension monitoring unit, first and second traction units, and a drying unit. Through a detachable connection and adjustable structure, tension monitoring, hand drying, and length adjustment are achieved to ensure stable traction and balanced training.
It improves the safety and comfort of training, achieves balanced and targeted training results, reduces the risk of slippage, and enhances training efficiency and scientific rigor.
Smart Images

Figure CN224024143U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rings technology, and in particular to a rings device and a pull-up system. Background Technology
[0002] Scoliosis is a common spinal deformity, mainly characterized by lateral curvature of the spine in the coronal plane. Rehabilitation training is one of the important means of treating scoliosis, and pull-ups, as an effective way to exercise the upper limb and back muscles, are widely used in the rehabilitation training of scoliosis patients. However, traditional pull-up training equipment has some limitations, affecting the training effect and the patient's experience.
[0003] First, traditional pull-up rings tend to cause sweaty hands after prolonged use, leading to unstable grip and an increased risk of slippage. This not only affects training effectiveness but may also pose a safety hazard to patients. Second, traditional rings cannot monitor the distribution of pull force in both hands in real time, failing to provide targeted training guidance. This can result in patients using the wrong hand during training, such as using the arm that should exert more force equally or less force during pull-ups, thus affecting rehabilitation outcomes. Furthermore, existing ring devices are mostly directly attached to a support bar, with only unidirectional length adjustment. The pull ropes on the rings are relatively long, making them prone to slipping and wobbling during pull-ups, requiring constant adjustments and impacting patient training efficiency and user experience.
[0004] There are currently no effective solutions to the problems in related technologies, such as the inability to accurately monitor hand tension, the inability to conduct targeted training, the ease with which hands can grip the rings due to sweating, and the difficulty in adjusting the rings, which affects training. Utility Model Content
[0005] The purpose of this invention is to address the shortcomings of existing technologies by providing a ring device and a pull-up system, thereby solving problems such as the inability of the ring to accurately monitor hand tension, the inability to conduct targeted training, the ease with which the hand can grip the ring securely due to sweating, and the difficulty in adjusting the ring, which affects training.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0007] The first aspect of this utility model is to provide a lifting ring device, comprising:
[0008] The ring unit is for gripping;
[0009] A tension monitoring unit is disposed at the top of the lifting ring unit and detachably connected to the lifting ring unit, for monitoring the tension exerted by the hand on the lifting ring unit;
[0010] a first traction unit, a bottom end of the first traction unit detachably connected with a top end of the tension monitoring unit, a top end of the first traction unit sleeved on a supporting device, for traction.
[0011] In some embodiments, the lifting ring unit comprises:
[0012] a lifting ring element, the lifting ring element arranged in a semicircle, for gripping;
[0013] a first connecting element, the first connecting element arranged at a top end of the lifting ring element, detachably connected with the tension monitoring unit.
[0014] In some embodiments, the lifting ring unit further comprises:
[0015] a buffer element, the buffer element arranged at a side of the lifting ring element, for relieving the force of the hand on the lifting ring element.
[0016] In some embodiments, the tension monitoring unit comprises:
[0017] a tension monitoring element, the tension monitoring element arranged between the lifting ring unit and the first traction unit, for monitoring the tension of the hand on the lifting ring unit;
[0018] a second connecting element, the second connecting element arranged at a bottom end of the tension monitoring element, detachably connected with the lifting ring unit;
[0019] a third connecting element, the third connecting element arranged at a top end of the tension monitoring element, detachably connected with the first traction unit.
[0020] In some embodiments, the first traction unit comprises:
[0021] a first traction element, the first traction element arranged at a top end of the tension monitoring unit, for traction;
[0022] a first base element, the first base element arranged at a bottom end of the first traction element;
[0023] a fourth connecting element, the fourth connecting element arranged at a bottom end of the first base element, detachably connected with a top end of the tension monitoring unit;
[0024] a fifth connecting element, the fifth connecting element arranged at a top end of the first base element, slidingly connected with the first traction element.
[0025] In some embodiments, the first traction unit further comprises:
[0026] A movable element is disposed at the top end of the first traction element and slidably sleeved on the support device for adjusting the position of the first traction element;
[0027] A sixth connecting element is disposed on the side of the movable element and is slidably connected to the first traction element.
[0028] In some embodiments, the first traction unit further includes:
[0029] A first adjusting element is disposed on the first traction element and is used to adjust the length of the first traction element.
[0030] In some embodiments, the first traction unit further includes:
[0031] An anti-slip element is disposed at the top of the first traction element to prevent the first traction element from sliding relative to the support device during traction.
[0032] In some of these embodiments, it also includes:
[0033] The second traction unit has its bottom end detachably connected to the top end of the lifting ring unit, and its top end detachably connected to the bottom end of the tension monitoring unit, for use in traction.
[0034] In some embodiments, the second traction unit includes:
[0035] A second traction element is disposed between the tension monitoring unit and the lifting ring unit, and the bottom end of the second traction element is slidably connected to the lifting ring unit for traction.
[0036] The second base element is disposed at the top end of the second traction element;
[0037] A seventh connecting element is disposed at the bottom end of the second base element and is slidably connected to the second traction element;
[0038] The eighth connecting element is disposed at the top of the second base element and is detachably connected to the bottom of the tension monitoring unit.
[0039] In some embodiments, the second traction unit further includes:
[0040] The second adjusting element is disposed on the second traction element and is used to adjust the length of the second traction element.
[0041] In some embodiments, further comprising:
[0042] a drying unit, disposed inside the ring unit, for blowing air to dry hands.
[0043] In some embodiments, the ring unit further comprises:
[0044] a chamber element, disposed at a top end of the ring unit, for disposing the drying unit;
[0045] a channel element, disposed through the ring unit, and in communication with the chamber element, for ventilation;
[0046] a plurality of air outlet elements, disposed through the ring unit and in communication with the channel element, for blowing air to hands.
[0047] In some embodiments, the drying unit comprises:
[0048] a fan element, disposed inside the ring unit, for blowing air to dry hands;
[0049] a mounting element, disposed at the fan element, and connected with the ring unit, for mounting the fan element to the ring unit.
[0050] A second aspect of the present application is to provide a pull-up system for scoliosis rehabilitation training, comprising:
[0051] two ring devices as described in the first aspect;
[0052] support devices, respectively connected with the first traction units of the two ring devices, for supporting the two ring devices;
[0053] control devices, disposed at the support devices, and respectively connected with the tension monitoring units of the two ring devices.
[0054] In some embodiments, the control device comprises:
[0055] a control unit, disposed at the support device, and respectively connected with the tension monitoring units of the two ring devices;
[0056] a voice unit, connected with the control unit, for at least voice broadcast.
[0057] In some embodiments, the control device further comprises:
[0058] a connecting unit, an inside of the connecting unit is provided with the control unit and the voice unit, and the connecting unit is detachably connected with the supporting device; and / or
[0059] a communication unit, the communication unit is in communication connection with a terminal device, and is used for pushing information to the terminal device.
[0060] The utility model discloses the above technical scheme, compared with the prior art, has the following technical effects:
[0061] 1) the first traction unit is movably connected with the supporting device, can be adjusted according to the use demand of different users, and the relative sliding of the first traction unit and the supporting device in the use process can be avoided, the training safety and the comfort of the patient with scoliosis are improved;
[0062] 2) the tensile monitoring unit is arranged between the first traction unit and the ring unit, the tensile distribution of both hands can be monitored in real time, so that more balanced and targeted training is realized, the effect and the scientific nature of rehabilitation training are improved, and the problems that the ring cannot accurately monitor the hand tension and cannot be trained in a targeted manner are solved;
[0063] 3) the length of the first traction unit or the length of the second traction unit can be selected and adjusted according to the use requirement by using the second traction unit, which is suitable for users of different heights, is more flexible and convenient to use, the tensile distribution is more uniform, the data monitored by the tensile monitoring unit is more accurate, and the problem that the ring is not easy to adjust and affects training is solved;
[0064] 4) the hand is blown in real time by using the drying unit, the relative sliding of the hand and the ring unit due to sweating is avoided, the hand can be kept dry during training, thereby ensuring that the ring unit is firmly held, a comfortable exercise environment is improved, exercise efficiency is improved, risk is reduced, and the problem that the hand is not firmly gripped on the ring due to sweating is solved;
[0065] 5) the user can effectively perform pull-up exercise by using the ring device in cooperation with the supporting device, the data of the user's exercise can be obtained in real time by using the control device connected with the ring device, the user can be reminded in time, the user can adjust the arm tension in time, the scoliosis rehabilitation training is effectively completed, and the training effect is more efficient. BRIEF DESCRIPTION OF DRAWINGS
[0066] Figure 1 is a schematic view of the ring device according to the embodiment of the utility model (one);
[0067] Figure 2 is a schematic view of the ring unit according to the embodiment of the utility model (one);
[0068] Figure 3 is a schematic view of a pulling force monitoring unit according to an embodiment of the present utility model;
[0069] Figure 4 is a schematic view of a first traction unit according to an embodiment of the present utility model;
[0070] Figure 5 is a schematic view of a lifting ring device according to an embodiment of the present utility model (two);
[0071] Figure 6 is a schematic view of a second traction unit according to an embodiment of the present utility model;
[0072] Figure 7 is a schematic view of a lifting ring device according to an embodiment of the present utility model (three);
[0073] Figure 8 is a schematic view of a lifting ring unit according to an embodiment of the present utility model (two);
[0074] Figure 9 is a schematic view of a drying unit according to an embodiment of the present utility model;
[0075] Figure 10 is a schematic view of a pull-up system according to an embodiment of the present utility model;
[0076] Figure 11 is a schematic view of a control terminal according to an embodiment of the present utility model.
[0077] The reference signs therein are:
[0078] 10, lifting ring unit; 11, lifting ring element; 12, first connecting element; 13, buffer element; 14, chamber element; 15, passage element; 16, air outlet element;
[0079] 20, pulling force monitoring unit; 21, pulling force monitoring element; 22, second connecting element; 23, third connecting element;
[0080] 30, first traction unit; 31, first traction element; 32, first base element; 33, fourth connecting element; 34, fifth connecting element; 35, movable element; 36, sixth connecting element; 37, anti-skid element; 38, first adjusting element;
[0081] 40, second traction unit; 41, second traction element; 42, second base element; 43, seventh connecting element; 44, eighth connecting element; 45, second adjusting element;
[0082] 50, drying unit; 51, fan element; 52, mounting element;
[0083] A, lifting ring device; B, support device; C, control device. DETAILED DESCRIPTION
[0084] In order to make the purpose, technical solutions and advantages of the present application clearer, the present application is described and explained below in connection with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and should not be used to limit the present application. Based on the embodiments provided in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of the present application.
[0085] Obviously, the drawings described below are only some examples or embodiments of the present application, and for those of ordinary skill in the art, the present application can be applied to other similar scenarios without creative labor on the basis of these drawings. In addition, it can be understood that although the efforts made in this development process can be complex and lengthy, for those of ordinary skill in the art related to the content disclosed in the present application, some design, manufacture or production changes based on the technical content disclosed in the present application are only routine technical means and should not be understood as insufficient disclosure of the present application.
[0086] In the present application, the phrase "embodiment" means that the specific features, structures or characteristics described in connection with the embodiment can be included in at least one embodiment of the present application. The appearance of this phrase at various places in the specification does not necessarily mean the same embodiment, nor is it an independent or alternative embodiment that is not mutually exclusive with other embodiments. Those of ordinary skill in the art explicitly and implicitly understand that the embodiments described in the present application can be combined with other embodiments without conflict.
[0087] Unless otherwise defined, the technical or scientific terms used in this application shall have the ordinary meaning understood by one of ordinary skill in the art to which this application pertains. The terms “a,” “an,” “an,” “the,” and similar words used in this application do not indicate quantity limitation and may indicate singular or plural. The terms “comprising,” “including,” “having,” and any variations thereof used in this application are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or device that includes a series of steps or units (elements) is not limited to the listed steps or units, but may also include steps or units not listed, or may include other steps or units inherent to these processes, methods, products, or devices. The terms “connected,” “linked,” “coupled,” and similar words used in this application are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. “Multiple” used in this application refers to two or more. “And / or” describes the relationship between related objects, indicating that three relationships may exist; for example, “A and / or B” can represent: A alone, A and B simultaneously, and B alone. The character " / " generally indicates that the preceding and following objects are in an "or" relationship. The terms "first," "second," and "third" used in this application are merely to distinguish similar objects and do not represent a specific ordering of the objects.
[0088] Example 1
[0089] This embodiment relates to the lifting ring device of this utility model.
[0090] An illustrative embodiment of this utility model, such as Figure 1 As shown, a lifting ring device includes a lifting ring unit 10, a tension monitoring unit 20, and a first traction unit 30. The lifting ring unit 10 is used for gripping; the tension monitoring unit 20 is disposed at the top of the lifting ring unit 10 and detachably connected to it, for monitoring the tension exerted by the hand on the lifting ring unit 10; the bottom end of the first traction unit 30 is detachably connected to the top end of the tension monitoring unit 20, and the top end of the first traction unit 30 is sleeved on a support device for traction.
[0091] like Figure 2 As shown, the lifting ring unit 10 includes a lifting ring element 11 and a first connecting element 12. The lifting ring element 11 is semi-circular and used for gripping; the first connecting element 12 is disposed at the top of the lifting ring element 11 and is detachably connected to the tension monitoring unit 20.
[0092] In some embodiments, the lifting ring element 11 includes a connecting portion and a gripping portion. The connecting portion is semi-circular or arc-shaped, and a first connecting element 12 is provided at the top of the connecting portion; the gripping portion is provided at the bottom of the connecting portion, and the two ends of the gripping portion are respectively connected to the two ends of the connecting portion.
[0093] In some of these embodiments, the lifting ring element 11 is a lifting ring.
[0094] The connection between the first connecting element 12 and the lifting ring element 11 is a fixed connection. The fixed connection method includes, but is not limited to, integral molding.
[0095] The dimensions of the first connecting element 12 are matched with the dimensions of the lifting ring element 11. Generally, the radial dimension (e.g., length, width) of the first connecting element 12 is smaller than the radial dimension (e.g., length, width) of the cross section of the lifting ring element 11 to which it is located.
[0096] In some of these embodiments, the first connecting element 12 includes, but is not limited to, a first connecting seat, a first connecting ring, a first connecting bolt, and a first internal thread.
[0097] Furthermore, the ring unit 10 also includes a cushioning element 13. The cushioning element 13 is disposed on the side of the ring element 11 to reduce the force between the hand and the ring element 11.
[0098] Specifically, the cushioning element 13 is disposed on the gripping portion of the lifting ring element 11.
[0099] The connection method of the lifting ring element 11 of the buffer element 13 is a fixed connection. Among them, the fixed connection method includes, but is not limited to, thermo-pressed connection.
[0100] In some embodiments, the material of the buffer element 13 includes, but is not limited to, silicone.
[0101] In some of these embodiments, the cushioning element 13 includes, but is not limited to, a cushioning pad.
[0102] like Figure 3 As shown, the tension monitoring unit 20 includes a tension monitoring element 21, a second connecting element 22, and a third connecting element 23. The tension monitoring element 21 is disposed between the lifting ring unit 10 and the first traction unit 30, and is used to monitor the tension exerted by the hand on the lifting ring unit 10. The second connecting element 22 is disposed at the bottom end of the tension monitoring element 21 and is detachably connected to the lifting ring unit 10. The third connecting element 23 is disposed at the top end of the tension monitoring element 21 and is detachably connected to the first traction unit 30.
[0103] Specifically, the second connecting element 22 is detachably connected to the first connecting element 12.
[0104] In some of these embodiments, the tension monitoring element 21 includes, but is not limited to, a tension sensor.
[0105] The second connecting element 22 is fixedly connected to the tensile monitoring element 21. The fixed connection method includes, but is not limited to, welding and integral molding.
[0106] The detachable connection between the second connecting element 22 and the first connecting element 12 includes, but is not limited to, bolt connection.
[0107] The dimensions of the second connecting element 22 are matched with the dimensions of the first connecting element 12. Generally, the radial dimension (e.g., inner diameter) of the second connecting element 22 is equal to the radial dimension (e.g., outer diameter) of the first connecting element 12, and the height of the second connecting element 22 is not less than the height of the first connecting element 12.
[0108] The dimensions of the second connecting element 22 are matched with the dimensions of the tension monitoring element 21. Generally, the radial dimension (e.g., outer diameter) of the second connecting element 22 is smaller than the radial dimension (e.g., length, width) of the cross section of the tension monitoring element 21 in which it is located, and the length of the second connecting element 22 is smaller than the height of the tension monitoring element 21.
[0109] In some of these embodiments, the second connecting element 22 includes, but is not limited to, a second internal thread and a second connecting bolt.
[0110] The third connecting element 23 is fixedly connected to the tensile monitoring element 21. The fixed connection method includes, but is not limited to, welding and integral molding.
[0111] The dimensions of the third connecting element 23 are matched with the dimensions of the tension monitoring element 21. Generally, the radial dimension (e.g., outer diameter) of the third connecting element 23 is smaller than the radial dimension (e.g., length, width) of the cross section of the tension monitoring element 21 in which it is located, and the length of the third connecting element 23 is smaller than the height of the tension monitoring element 21.
[0112] In some of these embodiments, the third connecting element 23 includes, but is not limited to, a third internal thread and a third connecting bolt.
[0113] like Figure 4 As shown, the first traction unit 30 includes a first traction element 31, a first base element 32, a fourth connecting element 33, and a fifth connecting element 34. The first traction element 31 is disposed at the top of the tension monitoring unit 20 and is used for traction; the first base element 32 is disposed at the bottom of the first traction element 31; the fourth connecting element 33 is disposed at the bottom of the first base element 32 and is detachably connected to the top of the tension monitoring unit 20; the fifth connecting element 34 is disposed at the top of the first base element 32 and is slidably connected to the first traction element 31.
[0114] Specifically, the fourth connecting element 33 is detachably connected with the third connecting element 23.
[0115] In some embodiments, the first traction element 31 includes but is not limited to a first traction rope, a first traction belt.
[0116] The size of the first base element 32 matches the size of the first traction element 31. Generally, the width of the first base element 32 is greater than the width of the first traction element 31.
[0117] In some embodiments, the first base element 32 includes but is not limited to a second connecting seat.
[0118] The fourth connecting element 33 is fixedly connected with the first base element 32. The fixed connection includes but is not limited to integral molding.
[0119] The detachable connection between the fourth connecting element 33 and the third connecting element 23 includes but is not limited to threaded connection.
[0120] The size of the fourth connecting element 33 matches the size of the third connecting element 23. Generally, the radial dimension (such as the outer diameter) of the fourth connecting element 33 is equal to the radial dimension (such as the inner diameter) of the third connecting element 23, and the height of the fourth connecting element 33 is not greater than the height of the third connecting element 23.
[0121] The size of the fourth connecting element 33 matches the size of the first base element 32. Generally, the radial dimension (such as length, width) of the fourth connecting element 33 is not greater than the radial dimension (such as length, width) of the cross section of the first base element 32 where the fourth connecting element 33 is located.
[0122] In some embodiments, the fourth connecting element 33 includes but is not limited to a fourth internal thread, a fourth connecting bolt.
[0123] The fifth connecting element 34 is fixedly connected with the first base element 32. The fixed connection includes but is not limited to integral molding.
[0124] The size of the fifth connecting element 34 matches the size of the first traction element 31. Generally, the length of the fifth connecting element 34 is not less than the width of the first traction element 31.
[0125] The size of the fifth connecting element 34 matches the size of the first base element 32. Generally, the radial dimension (such as length, width) of the fifth connecting element 34 is not greater than the radial dimension (such as length, width) of the cross section of the first base element 32 where the fifth connecting element 34 is located.
[0126] In some embodiments, the fifth connecting element 34 includes but is not limited to a second connecting ring.
[0127] Further, the first traction unit 30 further comprises a movable element 35 and a sixth connecting element 36. The movable element 35 is arranged at the top end of the first traction element 31 and is sleeved on the support device for adjusting the position of the first traction element 31. The sixth connecting element 36 is arranged at the side of the movable element 35 and is in sliding connection with the first traction element 31.
[0128] In some embodiments, the movable element 35 includes but is not limited to a movable ring.
[0129] The sixth connecting element 36 is in fixed connection with the movable element 35. The fixed connection includes but is not limited to one-piece forming and welding.
[0130] The sixth connecting element 36 is in fixed connection with the movable element 35. The fixed connection includes but is not limited to one-piece forming and welding.
[0130] The sixth connecting element 36 is in fixed connection with the movable element 35. The fixed connection includes but is not limited to one-piece forming and welding.
[0131] The sixth connecting element 36 is in fixed connection with the movable element 35. The fixed connection includes but is not limited to one-piece forming and welding.
[0132] In some embodiments, the sixth connecting element 36 includes but is not limited to a third connecting ring.
[0133] Further, the first traction unit 30 further comprises an anti-skid element 37. The anti-skid element 37 is arranged at the top end of the first traction element 31 for preventing the relative sliding between the first traction element 31 and the support device during traction.
[0134] In some embodiments, the anti-skid element 37 is arranged at the side of the first traction element 31 at the top end. The anti-skid element 37 is an array of several points of glue.
[0135] In some embodiments, the anti-skid element 37 is arranged at the inner edge surface of the movable element 35. The anti-skid element 37 includes but is not limited to a non-slip pad such as a silica gel pad.
[0136] Further, the first traction unit 30 further comprises a first adjusting element 38. The first adjusting element 38 is arranged on the first traction element 31 for adjusting the length of the first traction element 31.
[0137] The first adjusting element 38 is in sliding connection with the first traction element 31.
[0138]
[0139] In some embodiments, the first adjustment element 38 is a first adjustment buckle, including but not limited to a first day buckle.
[0140] The use method of the utility model discloses:
[0141] Before use, the user connects the second connecting element 22 with the first connecting element 12, connects the fourth connecting element 33 with the third connecting element 23, and adjusts the length of the first traction element 31 according to the use needs.
[0142] When using, the hand holds the lifting ring element 11 to do the pull-up movement, and the tension monitoring element 21 monitors the tension of the hand in real time, the anti-skid element 37 prevents the first traction element 31 or the movable element 35 from sliding relative to the support device, and the buffer element 13 buffers the force of the hand and the lifting ring element 11.
[0143] The technical effects of the utility model are as follows:
[0144] The first traction unit is movably connected with the support device, which can be adjusted according to the use needs of different users, and can avoid the relative sliding of the first traction unit and the support device during use, thereby improving the training safety and comfort of the patients with scoliosis; the tension monitoring unit is arranged between the first traction unit and the lifting ring unit, which can monitor the tension distribution of the hands in real time, thereby realizing more balanced and targeted training, improving the effect and scientific nature of the rehabilitation training, and solving the problems that the lifting ring cannot accurately monitor the tension of the hands and cannot be trained in a targeted manner.
[0145] Embodiment 2
[0146] This embodiment is a variant of embodiment 1.
[0147] As shown in Figure 5 The lifting ring device further includes a second traction unit 40. The bottom end of the second traction unit 40 is detachably connected with the top end of the lifting ring unit 10, and the top end of the second traction unit 40 is detachably connected with the bottom end of the tension monitoring unit 20, which is used for traction.
[0148] As shown in Figure 6As shown, the second traction unit 40 comprises a second traction element 41, a second base element 42, a seventh connecting element 43 and an eighth connecting element 44. Among them, the second traction element 41 is arranged between the tension monitoring unit 20 and the lifting ring unit 10, the bottom end of the second traction element 41 is slidably connected with the lifting ring unit 10 for traction; the second base element 42 is arranged at the top end of the second traction element 41; the seventh connecting element 43 is arranged at the bottom end of the second base element 42 and is slidably connected with the second traction element 41; and the eighth connecting element 44 is arranged at the top end of the second base element 42 and is detachably connected with the bottom end of the tension monitoring unit 20.
[0149] Specifically, the second traction element 41 is arranged between the tension monitoring element 21 and the lifting ring element 11 and is slidably connected with the first connecting element 12; and the eighth connecting element 44 is detachably connected with the second connecting element 22.
[0150] The size of the second traction element 41 matches the size of the first connecting element 12. Generally, the width of the second traction element 41 is not greater than the width of the first connecting element 12.
[0151] In some embodiments, the second traction element 41 includes but is not limited to a second traction rope and a second traction belt.
[0152] In some embodiments, the second base element 42 includes but is not limited to a second connecting seat.
[0153] The seventh connecting element 43 is fixedly connected with the second base element 42. The fixed connection mode includes but is not limited to one-piece forming.
[0154] The size of the seventh connecting element 43 matches the size of the second traction element 41. Generally, the width of the seventh connecting element 43 is not less than the width of the second traction element 41.
[0155] The size of the seventh connecting element 43 matches the size of the second base element 42. Generally, the radial dimension (such as outer diameter, length, width) of the seventh connecting element 43 is not greater than the radial dimension (such as length, width) of the second base element 42.
[0156] In some embodiments, the seventh connecting element 43 includes but is not limited to a fourth connecting ring.
[0157] The detachable connection mode of the eighth connecting element 44 with the second connecting element 22 includes but is not limited to threaded connection.
[0158] The eighth connecting element 44 is fixedly connected with the second base element 42. The fixed connection mode includes but is not limited to one-piece forming.
[0159] The eighth connecting element 44 is sized to match the second connecting element 22. Generally, the radial dimension (e.g. outer diameter) of the eighth connecting element 44 is equal to the radial dimension (e.g. inner diameter) of the second connecting element 22, and the height of the eighth connecting element 44 is not greater than the height of the second connecting element 22.
[0160] The eighth connecting element 44 is sized to match the second base element 42. Generally, the radial dimension (e.g. length, width) of the eighth connecting element 44 is not greater than the radial dimension (e.g. length, width) of the second base element 42 in which the eighth connecting element 44 is located.
[0161] In some embodiments, the eighth connecting element 44 includes but is not limited to a fifth internal thread, a fifth connecting bolt.
[0162] Further, the second traction unit 40 further comprises a second adjusting element 45. The second adjusting element 45 is arranged on the second traction element 41, and is used to adjust the length of the second traction element 41.
[0163] The second adjusting element 45 is connected to the second traction element 41 in a sliding manner.
[0164] The second adjusting element 45 is sized to match the second traction element 41. Generally, the width of the second adjusting element 45 is greater than the width of the second traction element 41.
[0165] In some embodiments, the second adjusting element 45 is a second adjusting buckle, including but not limited to a second Chinese character buckle.
[0166] The use method of the embodiment is as follows:
[0167] The difference between the embodiment and embodiment 1 is that, in use, the length of the first traction element 31 at the distal end can be adjusted in the manner of embodiment 1, or the length of the second traction element 41 can be adjusted by using the second adjusting element 45.
[0168] The technical effects of the embodiment are as follows:
[0169] By using the second traction unit, the length of the first traction unit or the length of the second traction unit can be selected and adjusted according to the use requirement, which is suitable for users of different heights, and is more flexible and convenient to use, the force distribution is more uniform, the data monitored by the force monitoring unit is more accurate, and the problem that the lifting ring is not easy to adjust and affects the training is solved.
[0170] Embodiment 3
[0171] The embodiment is a variant of embodiment 1 to embodiment 2.
[0172] As Figure 7As shown, the hand ring device also includes a drying unit 50. The drying unit 50 is disposed inside the hand ring unit 10 and is used to blow air onto the hand to dry the hand.
[0173] like Figure 8 As shown, the hanging ring unit 10 also includes a chamber element 14, a channel element 15, and several air outlet elements 16. The chamber element 14 is located at the top of the hanging ring unit 10 and is used to house the drying unit 50; the channel element 15 passes through the hanging ring unit 10 and communicates with the chamber element 14 for ventilation; the several air outlet elements 16 pass through the area of the hanging ring unit 10 that interacts with the hand and communicate with the channel element 15 for discharging air to the hand.
[0174] Specifically, the chamber element 14 is disposed at the top of the hanging ring element 11, the channel element 15 is disposed through both sides and the grip portion of the hanging ring element 11 and is connected to the chamber element 14; a number of air outlet elements 16 are disposed through the area of the hanging ring element 11 (buffer element 13) and the area of hand contact.
[0175] The dimensions of the chamber element 14 are matched with the dimensions of the lifting ring element 11. Generally, the radial dimension (e.g., outer diameter) of the chamber element 14 is smaller than the radial dimension (e.g., outer diameter) of the cross section of the lifting ring element 11 in which it is located, and the axial dimension (e.g., length) of the chamber element 14 is smaller than the length of the lifting ring element 11.
[0176] In some of these embodiments, chamber element 14 is a mounting cavity.
[0177] The dimensions of the channel element 15 are matched with the dimensions of the lifting ring element 11. Generally, the radial dimension (e.g., outer diameter) of the channel element 15 is smaller than the radial dimension (e.g., outer diameter) of the cross section of the lifting ring element 11 in which it is located, and the axial dimension (e.g., length) of the channel element 15 is smaller than the length of the lifting ring element 11.
[0178] The dimensions of the channel element 15 are matched with the dimensions of the chamber element 14. Generally, the radial dimension (e.g., outer diameter) of the channel element 15 is smaller than the radial dimension (e.g., outer diameter) of the chamber element 14.
[0179] In some of these embodiments, the channel element 15 is a ventilation duct.
[0180] Several air outlet elements 16 are arranged in an array in the area where the hanging ring element 11 (buffer element 13) and the hand are interacting.
[0181] The dimensions of the air outlet element 16 are matched with the dimensions of the hanging ring element 11. Generally, the radial dimension (e.g., outer diameter) of the air outlet element 16 is smaller than the radial dimension (e.g., length, width) of the cross section of the hanging ring element 11 in which it is located.
[0182] In some of these embodiments, the air outlet element 16 is an air outlet.
[0183] As shown in Figure 9 The drying unit 50 comprises a fan element 51 and a mounting element 52. The fan element 51 is arranged inside the ring unit 10 for blowing air to the hand for drying; the mounting element 52 is arranged on the fan element 51 and connected with the ring unit 10 for mounting the fan element 51 on the ring unit 10.
[0184] Specifically, the fan element 51 is arranged in the chamber element 14; the mounting element 52 is connected with the ring element 11.
[0185] The size of the fan element 51 matches the size of the chamber element 14. Generally, the radial dimension (such as the outer diameter) of the fan element 51 is smaller than the radial dimension (such as the outer diameter) of the cross section of the chamber element 14 where the fan element 51 is arranged, and the height of the fan element 51 is smaller than the height of the chamber element 14.
[0186] In some embodiments, the fan element 51 is a fan.
[0187] In some embodiments, the switch of the fan element 51 is arranged on the side of the top end of the ring element 11.
[0188] The mounting element 52 is connected with the ring element 11 in a detachable manner. The detachable manner includes but is not limited to screw connection.
[0189] The mounting element 52 is connected with the fan element 51 in a fixed manner. The fixed manner includes but is not limited to one-piece forming.
[0190] The size of the mounting element 52 matches the size of the chamber element 14. Generally, the radial dimension (such as the outer diameter) of the mounting element 52 is smaller than the radial dimension (such as the outer diameter) of the cross section of the chamber element 14 where the mounting element 52 is arranged, and the height of the mounting element 52 is smaller than the height of the chamber element 14.
[0191] In some embodiments, the mounting element 52 is a mounting seat.
[0192] The use method of the present embodiment is as follows:
[0193] When performing pull-up movement, the fan element 51 is turned on, the air blown by the fan element 51 flows to the action area of the ring element 11 and the hand through the channel element 15, and blows air to the hand of the user through the plurality of air outlet elements 16, so that the hand remains dry.
[0194] The technical effects of the present embodiment are as follows:
[0195] The hand is blown in real time by the drying unit, hand sweating and relative sliding of the ring unit are avoided, the hand can be kept dry during the training process, the hand can be firmly gripped on the ring unit, the comfortable sports environment is improved, the sports efficiency is improved, the risk is reduced, and the problem that the hand is not firmly gripped on the ring due to sweating is solved.
[0196] Embodiment 4
[0197] The present embodiment relates to the chin-up system of the present application.
[0198] As shown in FIG. 1, a chin-up system for scoliosis rehabilitation training includes two ring devices A, a support device B and a control device C. Figure 10 As shown in FIG. 1, a chin-up system for scoliosis rehabilitation training includes two ring devices A, a support device B and a control device C.
[0199] In some embodiments, the support device B includes a transverse support unit and two longitudinal support units. The transverse support unit is movably connected with the first traction element 31 or the movable element 35, and is used to provide support for the chin-up movement. The two longitudinal support units are symmetrically arranged at the two ends of the transverse support unit, and are used to fix the transverse support unit.
[0200] The size of the transverse support unit matches the size of the movable element 35. Generally, the radial size (such as the outer diameter) of the transverse support element is smaller than the radial size (such as the inner diameter) of the movable element 35.
[0201] In some embodiments, the transverse support unit is a support rod, including but not limited to a telescopic rod.
[0202] In some embodiments, the connection mode of the two longitudinal support units and the transverse support unit is fixed connection or detachable connection. The fixed connection mode includes but is not limited to integral molding, and the detachable connection mode includes but is not limited to threaded connection.
[0203] In some embodiments, the two longitudinal support units include but are not limited to vertical support rods and vertical fixed discs.
[0204] In some embodiments, the support device B is a single bar of the prior art, an indoor hole-free support rod, etc., which will not be described here.
[0205] Further, the control device C includes a control unit and a voice unit. The control unit is arranged on the support device B and is connected with the tension monitoring units 20 of the two ring devices A. The voice unit is connected with the control unit and is used for voice broadcast.
[0206] Specifically, the control unit is connected with the tension monitoring element 21.
[0207] In some embodiments, the control unit includes but is not limited to a single-chip microcomputer, a chip, and a processor.
[0208] In some embodiments, the voice broadcast includes but is not limited to a voice reminder and a voice encouragement, such as do exercise, pull the left hand more, and today's task is completed well.
[0209] In some embodiments, the voice unit is further used for voice acquisition, such as acquiring the voice of the user.
[0210] For example, when the user is exercising, the user can set the exercise duration by voice, or ask the voice unit "how long is left to complete the exercise", the voice unit acquires the voice and replies by voice, such as 10 seconds left.
[0211] In some embodiments, the voice unit includes but is not limited to a loudspeaker and a microphone.
[0212] Further, the control device C further includes a connecting unit and a communication unit. The connecting unit is internally provided with the control unit and the voice unit, and is detachably connected with the supporting device B; the communication unit is in communication connection with the terminal device, and is used for pushing information to the terminal device.
[0213] Specifically, the connecting unit is detachably connected with the lateral supporting unit.
[0214] In some embodiments, the terminal device includes but is not limited to a mobile phone, a telephone watch, a computer, and the like.
[0215] The detachable connection mode of the connecting unit and the lateral supporting unit includes but is not limited to clamping and bolt connection.
[0216] In some embodiments, the connecting unit includes but is not limited to a placing frame and a protection box.
[0217] In some embodiments, the communication unit includes but is not limited to a Bluetooth module, a WiFi module, a 4G module, and a 5G module.
[0218] The use method of the embodiment is as follows:
[0219] The connecting unit is connected to the transverse support unit in normal use, and the first traction element 31 or the movable element 35 of the two first traction units 30 is sleeved on the transverse support device B, then the length of the transverse support unit is adjusted by the two longitudinal support units, and the transverse support unit is fixed at a position required by a user (such as a vertical wall surface, a horizontal ground, etc.), then the length of the first traction element 31 and the second traction element 41 is adjusted according to the method of the embodiments 1-3, and the pull-up movement is performed by gripping the ring element 11, when the pulling forces of the two hands monitored by the pulling force monitoring element 21 obtained by the control unit are different, the voice reminding unit reminds, such as the right hand pulling force is too large, the left hand pulling force is too large, and the user can adjust the force of the hands according to the reminder. The terminal device can also be preset to remind the movement time, for example, the user starts to move at 7 o'clock in the evening, and the voice reminding unit reminds the user to move at 7 o'clock in the evening.
[0220] The technical effects of the embodiment are as follows:
[0221] The ring device is used in cooperation with the support device to help the user to effectively perform the pull-up movement, the control device is connected with the ring device, the data of the user movement can be obtained in real time, the user is reminded in time, the user can adjust the pulling force of the arms in time, and the training effect is more efficient.
[0222] Embodiment 5
[0223] The embodiment is one of the illustrative embodiments of the utility model.
[0224] A pull-up intelligent ring for scoliosis rehabilitation (corresponding to the pull-up system of the utility model), which comprises a support structure (equivalent to the support device B of the utility model), two rings (equivalent to the ring device A) and a control terminal (equivalent to the control device C of the application). Wherein, the support structure is horizontally arranged, and the two rings are movably arranged on the support structure for gripping when doing pull-up; the control terminal is detachably arranged on the support structure and is electrically connected with the two rings.
[0225] The support structure includes but is not limited to a support frame, a single bar and the like.
[0226] The lifting ring comprises a lifting ring (equivalent to the lifting ring unit 10 of the utility model), a first traction belt (equivalent to the second traction unit 40 of the utility model), a tension sensor (equivalent to the tension monitoring unit 20 of the utility model) and a second traction belt (equivalent to the first traction unit 30 of the utility model). Among them, the lifting ring is used for hand gripping; the first traction belt is slidably connected with the top end of the lifting ring, and is used for adjusting the height of the lifting ring; the bottom end of the tension sensor is detachably connected with the first traction belt, and is used for measuring the tension of the pull ring by the user; the top end of the second traction belt is detachably connected with the tension sensor, and is used for adjusting the height of the lifting ring at the top end.
[0227] As shown in Figure 11 The control terminal comprises an Arduino master control, a tension sensor conversion module, an SP32 master control, a voice recognition module, a voice broadcast module, a loudspeaker and a battery. Among them, the Arduino master control is connected with the tension sensor, and is used for acquiring the value of the tension sensor; the tension sensor conversion module is connected with the Arduino master control, and is used for converting the degree detected by the tension sensor into an analog quantity that can be recognized by the Arduino master control; the SP32 master control is connected with WIFI, acquires network time, and sends exercise reminders to the user end; the voice recognition module is connected with the SP32 master control, and is used for receiving the voice input of the user and identifying it into corresponding text or commands; the voice broadcast module is connected with the Arduino master control, and is used for converting the instructions of the Arduino master control into audible signals; the loudspeaker is connected with the voice broadcast module, and is used for broadcasting voice reminders; the battery is connected with the Arduino master control and the SP32 master control respectively, and is used for power supply.
[0228] In some embodiments, the tension sensor conversion module includes but is not limited to an HX711 conversion module.
[0229] In some embodiments, the SP32 master control sends a push to WeChat.
[0230] In some embodiments, the voice recognition module includes but is not limited to a Tianwen voice recognition module.
[0231] In some embodiments, the voice broadcast module includes but is not limited to a Tianwen voice broadcast module.
[0232] In some embodiments, the battery includes but is not limited to a lithium battery.
[0233] The use method of the embodiment is as follows:
[0234] First, the control terminal is used to set the exercise parameters (such as exercise duration, etc.), and the length of the first traction belt or the second traction belt is adjusted according to the height. After receiving the exercise reminder sent by the SP32 master control, the user starts the exercise, holds the rings with both hands, and starts the pull-up movement. The pull force sensor monitors the pull force of the hands on the pull ring in real time, and the Arduino master control obtains the pull force data of the pull force sensor. When the pull force of the left hand or the right hand does not meet the preset, the user is reminded through the loudspeaker, such as "use more force with the left hand" or "use more force with the right hand". The user can also ask questions such as "how long has the exercise been done" to obtain the exercise time.
[0235] The technical effects of the embodiment are as follows:
[0236] The pull-up intelligent rings for scoliosis rehabilitation of the embodiment form a strong support when the user does pull-ups by connecting the two rings with the support structure. The pull force of the user's two hands is monitored in real time by the two rings, especially for scoliosis problems. The control terminal can be used to obtain the data of the user doing pull-ups and remind the user which hand needs more force. The control terminal can also remind the user to exercise on time, broadcast the exercise progress, precautions and record the user's exercise data in real time, ensure that the user exercises on time, and enable the user to target exercise, making the exercise more efficient.
[0237] The above only describes the preferred embodiments of the present application, and does not limit the implementation and protection scope of the present application. For those skilled in the art, it should be realized that any equivalent replacement and obvious changes made by applying the content of the present application description and drawings should be included in the protection scope of the present application.
Claims
1. A lifting loop device, characterized in that, The utility model relates to a hand drying device, including: a hanging ring unit for gripping; a tension monitoring unit arranged at the top end of the hanging ring unit and detachably connected with the hanging ring unit for monitoring the tension of the hand on the hanging ring unit; a first traction unit, the bottom end of which is detachably connected with the top end of the tension monitoring unit, and the top end of which is sleeved on a supporting device for traction.
2. The lifting ring device of claim 1, wherein The hanging ring unit includes: a hanging ring element arranged in a semicircle for gripping; a first connecting element arranged at the top end of the hanging ring element and detachably connected with the tension monitoring unit; and / or The tension monitoring unit includes: a tension monitoring element arranged between the hanging ring unit and the first traction unit for monitoring the tension of the hand on the hanging ring unit; a second connecting element arranged at the bottom end of the tension monitoring element and detachably connected with the hanging ring unit; a third connecting element arranged at the top end of the tension monitoring element and detachably connected with the first traction unit; and / or The first traction unit includes: a first traction element arranged at the top end of the tension monitoring unit for traction; a first base element arranged at the bottom end of the first traction element; a fourth connecting element arranged at the bottom end of the first base element and detachably connected with the top end of the tension monitoring unit; a fifth connecting element arranged at the top end of the first base element and slidingly connected with the first traction element.
3. The lifting ring device of claim 2, wherein, The hanging ring unit further includes: a buffer element arranged at the side of the hanging ring element for relieving the force of the hand on the hanging ring element; and / or The first traction unit further includes: a movable element arranged at the top end of the first traction element and slidingly sleeved on the supporting device for adjusting the position of the first traction element; a sixth connecting element arranged at the side of the movable element and slidingly connected with the first traction element; and / or The first traction unit further includes: a first adjusting element arranged at the first traction element for adjusting the length of the first traction element; and / or The first traction unit further includes: an anti-skid element arranged at the top end of the first traction element for preventing the relative sliding of the first traction element and the supporting device during traction.
4. A lifting ring device according to any one of claims 1 to 3, characterised in that Further including: a second traction unit, the bottom end of which is detachably connected with the top end of the hanging ring unit, and the top end of which is detachably connected with the bottom end of the tension monitoring unit for traction; and / or a drying unit arranged inside the hanging ring unit for blowing air to dry the hand.
5. The lifting ring device of claim 4, wherein, The second traction unit includes: A second traction element is arranged between the tension monitoring unit and the lifting ring unit, a bottom end of the second traction element is in sliding connection with the lifting ring unit for traction; A second base element is arranged at a top end of the second traction element; A seventh connecting element is arranged at a bottom end of the second base element and in sliding connection with the second traction element; An eighth connecting element is arranged at a top end of the second base element and in detachable connection with a bottom end of the tension monitoring unit.
6. The lifting ring device of claim 5, wherein, The second traction unit further comprises: A second adjusting element is arranged at the second traction element for adjusting the length of the second traction element.
7. The lifting ring device of claim 4, wherein The lifting ring unit further comprises: A chamber element is arranged at a top end of the lifting ring unit for arranging the drying unit; A channel element is arranged through the lifting ring unit and in communication with the chamber element for ventilation; A plurality of air outlet elements are arranged through the lifting ring unit and in communication with the channel element for air outlet to the hands; and / or The drying unit comprises: A fan element is arranged inside the lifting ring unit for air blowing to the hands for drying the hands; An installation element is arranged at the fan element and connected with the lifting ring unit for installing the fan element in the lifting ring unit.
8. A pull-up system for scoliosis rehabilitation training, characterized in that, It comprises: Two lifting ring devices as claimed in any one of claims 1 to 7; Support devices are respectively connected with the first traction units of the two lifting ring devices for supporting the two lifting ring devices; Control devices are arranged at the support devices and respectively connected with the tension monitoring units of the two lifting ring devices.
9. Pull-up system according to claim 8, characterized in that The control devices comprise: Control units are arranged at the support devices and respectively connected with the tension monitoring units of the two lifting ring devices; Voice units are connected with the control units for at least voice broadcast.
10. Pull-up system according to claim 9, characterized in that The control devices further comprise: Connecting units have the control units and the voice units arranged inside and are in detachable connection with the support devices; and / or Communication units are in communication connection with terminal devices for pushing information to the terminal devices.