Adjustable handle for a treadmill
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-11
- Publication Date
- 2026-08-11
AI Technical Summary
传统跑步机的设计大多采用固定把手,虽然在运行性能上满足了基本的使用需求,但随着用户需求的多样化及个性化,固定把手的设计逐渐显露出诸多缺点
[0016] This utility model discloses an adjustable handle for a treadmill, which has at least one of the following beneficial effects during use:
Smart Images

Figure CN224613142U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of handle technology, specifically an adjustable handle for a treadmill. Background Technology
[0002] With increasing awareness of fitness, treadmills, as a convenient indoor exercise device, are being used more and more widely in home fitness, gyms, and rehabilitation training. Traditional treadmills mostly use fixed handles. While this meets basic usage needs in terms of performance, the fixed handle design has gradually revealed many shortcomings as user needs become more diverse and personalized. For example, the height and angle of traditional fixed handles are usually only suitable for users within a specific height range, making it difficult for shorter users to have a comfortable grip, while taller users may feel the handles are too low, increasing discomfort during exercise. Utility Model Content
[0003] In order to overcome the shortcomings of existing technical solutions, this utility model provides an adjustable handle for treadmills, which can effectively solve the problems mentioned in the background art.
[0004] The technical solution adopted by this utility model to solve its technical problem is:
[0005] An adjustable handle for a treadmill includes a control base for the treadmill and handle structures disposed on both sides of the control base. The handle structures are composed of a first adjustment component, a second adjustment component, a third adjustment component, and a fourth adjustment component, wherein the second adjustment component, the third adjustment component, and the fourth adjustment component are electrically driven.
[0006] The first adjustment component includes a handle and a connector disposed on the handle. The connector is connected to the third adjustment component. The connector includes a first connecting block and a second connecting block. The first connecting block is connected to the handle. The third adjustment component includes a telescopic rod and a rod sleeve. The rod sleeve is movably connected to the telescopic rod. The telescopic rod is connected to the second connecting block. The telescopic rod is coaxially inserted into the rod sleeve, and the telescopic rod moves along the axial direction of the rod sleeve.
[0007] The rod sleeve is connected to a second adjusting component and a fourth adjusting component. The second adjusting component includes a first angle adjusting seat, a second angle adjusting seat, and a support arm. The support arm is connected to the first angle adjusting seat and the second angle adjusting seat. The second angle adjusting seat is connected to a locking member for connecting the rod sleeve. The fourth adjusting component includes a drive seat and a height adjusting seat on the drive seat. The drive seat is located on a fixing member for connecting the rod sleeve.
[0008] As a further description of the above technical solution, the first connecting block is fixedly disposed at one end of the handle, the second connecting block is fixedly disposed at one end of the telescopic rod, the first connecting block and the second connecting block are connected, and a hinge is provided at the connection between the first connecting block and the second connecting block.
[0009] As a further description of the above technical solution, the first connecting block is provided with a locking block at its end, and the second connecting block is provided with a slot for connecting the locking block at its end. The adjustment angle between the first connecting block and the second connecting block via a hinge is 0°-90°.
[0010] As a further description of the above technical solution, the rod sleeve is provided with an adjusting motor and a connecting sleeve. The connecting sleeve is connected to the adjusting motor and the telescopic rod respectively, and there is an movable gap between the connecting sleeve and the rod sleeve.
[0011] As a further description of the above technical solution, the inner wall of the connecting sleeve is also provided with threads, and the connecting sleeve is engaged with the telescopic rod through the threads.
[0012] As a further description of the above technical solution, the first angle adjustment seat is provided with a movable shaft one and a mounting seat for connecting the control base, the second angle adjustment seat is provided with a movable shaft two, the support arm swings along the vertical direction of the control base through the movable shaft one, and the rod sleeve swings along the vertical direction of the control base through the movable shaft two.
[0013] As a further description of the above technical solution, the fixing component includes a first fixing seat and a second fixing seat. The first fixing seat is fixedly connected to the rod sleeve, the second fixing seat is connected to the height adjustment seat, the height adjustment seat is connected to the drive seat, and the height adjustment seat is provided with adjustment gears on both sides.
[0014] As a further description of the above technical solution, the locking component includes a fixing sleeve, which is coaxially sleeved on the rod sleeve, and the fixing sleeve is connected to the support arm through a second angle adjustment seat.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] This utility model discloses an adjustable handle for a treadmill, which has at least one of the following beneficial effects during use:
[0017] With multiple adjustable components, the handle height and angle can be easily adjusted to suit individual height and comfort needs, enhancing comfort and convenience. The electrically driven adjustment allows for intelligent operation via the control unit, improving the user experience. The adjustable handles allow users to lower them to a lower position when not using the treadmill, saving storage space. Precise handle height and angle adjustments help users maintain optimal posture during different exercises, improving workout results. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the assembly structure of an adjustable handle for a treadmill according to the present invention.
[0019] Figure 2 This is a schematic diagram of the overall structure of an adjustable handle for a treadmill according to the present invention.
[0020] Figure 3 This is a schematic diagram of the first side view of an adjustable handle for a treadmill according to the present invention.
[0021] Figure 4 This is a schematic diagram of the second side structure of an adjustable handle for a treadmill according to the present invention.
[0022] Figure 5 This is a perspective structural diagram of an adjustable handle for a treadmill according to the present invention.
[0023] Numbering on the map:
[0024] 1. Handle structure; 101. Control base; 2. First adjustment component; 201. Grip; 202. First connecting block; 203. Second connecting block; 204. Hinge; 205. Locking block; 3. Second adjustment component; 301. Mounting base; 302. First angle adjustment base; 303. Support arm; 304. Second angle adjustment base; 305. Locking component; 306. Fixing sleeve; 4. Third adjustment component; 401. Telescopic rod; 402. Rod sleeve; 403. Connecting sleeve; 404. Adjustment motor; 5. Fourth adjustment component; 501. Height adjustment base; 502. Fixing base one; 503. Drive base; 504. Fixing base two. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] like Figure 1-5 As shown, this utility model provides an adjustable handle for a treadmill, including a control base 101 for the treadmill and handle structures 1 disposed on both sides of the control base 101. The handle structure 1 is composed of a first adjustment component 2, a second adjustment component 3, a third adjustment component 4 and a fourth adjustment component 5, wherein the second adjustment component 3, the third adjustment component 4 and the fourth adjustment component 5 are electrically driven.
[0027] The adjustable handle consists of multiple adjustment components: a first adjustment component 2, a second adjustment component 3, a third adjustment component 4, and a fourth adjustment component 5. The first adjustment component 2 is a mechanical structure, adjustable manually. The second, third, and fourth adjustment components 5 are all electrically driven, meaning they can be adjusted by electricity, providing more flexible adjustment capabilities. The second, third, and fourth adjustment components 5 are connected to a control unit, allowing users to operate them via a control panel or other input devices. The control unit interprets user commands and controls the corresponding components to adjust, thus realizing the function of the adjustable handle. The second, third, and fourth adjustment components 5 are all equipped with electric motors; through signals from the control unit, the motors adjust the handle's angle or height as needed.
[0028] The first adjustment component 2 includes a handle 201 and a connector disposed on the handle 201. The connector is connected to the third adjustment component 4. The connector includes a first connecting block 202 and a second connecting block 203. The first connecting block 202 is connected to the handle 201. The third adjustment component 4 includes a telescopic rod 401 and a rod sleeve 402. The rod sleeve 402 is movably connected to the telescopic rod 401. The telescopic rod 401 is connected to the second connecting block 203. The telescopic rod 401 is coaxially inserted into the rod sleeve 402 and moves along the axial direction of the rod sleeve 402.
[0029] In this embodiment, the first connecting block 202 is connected to the handle 201, and the second connecting block 203 is connected to the telescopic rod 401. The rod sleeve 402 is movably connected to the telescopic rod 401, and the telescopic rod 401 is coaxially inserted within the rod sleeve 402, allowing it to move along the axis of the rod sleeve 402. Since the telescopic rod 401 is connected to the handle 201, its length can be adjusted to accommodate different users. The telescopic rod 401 is adjusted by an adjusting motor 404 within the rod sleeve 402. After the user selects the desired distance via the control panel, the control unit executes this path to determine the extension or retraction of the telescopic rod 401.
[0030] The sleeve 402 is connected to the second adjusting component 3 and the fourth adjusting component 5 respectively. The second adjusting component 3 includes a first angle adjusting seat 302, a second angle adjusting seat 304 and a support arm 303. The support arm 303 is connected to the first angle adjusting seat 302 and the second angle adjusting seat 304 respectively. The second angle adjusting seat 304 is connected to a locking member 305 for connecting the sleeve 402. The fourth adjusting component 5 includes a drive seat 503 and a height adjusting seat 501 provided on the drive seat 503. The drive seat 503 is provided on a fixing member for connecting the sleeve 402.
[0031] In this embodiment, the sleeve 402 connects the second adjusting component 3 and the fourth adjusting component 5, serving as a support and guide structure for the entire handle system. The support arm 303 connects to the first and second angle adjusting seats 304 respectively, forming an adjustable handle structure 1, a drive seat 503, and a height adjusting seat 501 disposed on the drive seat 503. The fixing member is used to connect the sleeve 402 to ensure the stability of the height adjustment. At the same time, the height adjusting seat 501 is fixedly connected to the treadmill frame through the fixing member, which can realize the overall raising or lowering of the handle structure 1.
[0032] The angle between the first angle adjustment seat 302 and the second angle adjustment seat 304 is adjusted by controlling the main motor. The electric drive system drives the movement of the support arm 303, thereby changing the angle of the handle and allowing the user to adjust it according to their needs and exercise posture.
[0033] This embodiment allows for easy adjustment of the handle height and angle according to individual height and comfort needs, enhancing comfort and convenience. The electrically driven adjustment allows for intelligent operation via the control unit, improving the user experience. The handle's adjustability allows users to lower it when not using the treadmill, saving storage space. Precise handle height and angle adjustment helps users maintain optimal posture during different exercises, improving workout results.
[0034] To further explain, the first connecting block 202 is fixedly disposed at one end of the handle 201, and the second connecting block 203 is fixedly disposed at one end of the telescopic rod 401. The first connecting block 202 is connected to the second connecting block 203, and a hinge 204 is provided at the connection between the first connecting block 202 and the second connecting block 203.
[0035] The grip 201 folds left and right via the first connecting block 202 and the second connecting block 203. The hinge 204 allows the first connecting block 202 and the second connecting block 203 to fold when the user operates the handle or adjusts the height or angle of the handle as needed.
[0036] Furthermore, the first connecting block 202 has a locking block 205 at one end, and the second connecting block 203 has a slot for connecting the locking block 205 at one end. The adjustment angle between the first connecting block 202 and the second connecting block 203 via the hinge 204 is 0°-90°. When the handle 201 is at 90° via the hinge 204 on the two connecting blocks, the locking block 205 in the connecting block is separated from the slot; conversely, when the handle 201 is at 0°, the locking block 205 is engaged with the slot.
[0037] Furthermore, the rod sleeve 402 is internally equipped with an adjusting motor 404 and a connecting sleeve 403. The connecting sleeve 403 is connected to both the adjusting motor 404 and the telescopic rod 401, and there is a play between the connecting sleeve 403 and the rod sleeve 402. The inner wall of the connecting sleeve 403 is also provided with threads, and the connecting sleeve 403 is engaged with the telescopic rod 401 via the threads.
[0038] The sleeve 402 serves as an external enclosure structure, housing an adjusting motor 404 and a connecting sleeve 403. The adjusting motor 404, driven by electricity, controls the movement of the connecting sleeve 403. The connecting sleeve 403 connects to the adjusting motor 404 and the telescopic rod 401. The inner wall of the connecting sleeve 403 is threaded, engaging with the telescopic rod 401 to form a tight connection. A space is provided between the connecting sleeve 403 and the sleeve 402, allowing the connecting sleeve 403 to move freely within a certain range. The adjusting motor 404 drives the connecting sleeve 403 to rotate or move linearly within the sleeve 402. Due to the threaded structure of the inner wall of the connecting sleeve 403, the telescopic rod 401 can be extended or shortened.
[0039] Furthermore, the first angle adjustment seat 302 is provided with a movable shaft and a mounting seat 301 for connecting the control base 101, and the second angle adjustment seat 304 is provided with a movable shaft. The support arm 303 swings along the up and down direction of the control base 101 via the movable shaft, and the rod sleeve 402 swings along the up and down direction of the control base 101 via the movable shaft.
[0040] The first angle adjustment seat 302 includes a movable shaft for connecting the support arm 303, and a mounting seat 301 for docking with the control base 101 to provide basic support. The second angle adjustment seat 304 has a movable shaft for connecting with the sleeve 402, allowing the sleeve 402 to swing relative to the control base 101. The support arm 303 is connected to the first angle adjustment seat 302 via the movable shaft and can swing up and down. The sleeve 402 is connected to the second angle adjustment seat 304 via the movable shaft and can also swing up and down.
[0041] Due to the design of the first angle adjustment seat 302 and the second angle adjustment seat 304, the support arm 303 and the rod sleeve 402 can be adjusted independently, making the whole structure more flexible in practical applications.
[0042] Furthermore, the fixing component includes a first fixing seat 502 and a second fixing seat 504. The first fixing seat 502 is fixedly connected to the rod sleeve 402, the second fixing seat 504 is connected to the height adjustment seat 501, the height adjustment seat 501 is connected to the drive seat 503, and the height adjustment seat 501 is provided with adjustment gears on both sides.
[0043] When the electronic controller rotates the adjusting gear, the rotation of the gear causes the height adjusting seat 501 to move up and down, thereby changing the position of the fixed seat 502. Since the fixed seat 502 is connected to the drive seat 503, the movement of the fixed seat 502 also causes a change in the height of the drive seat 503, thereby raising or lowering the overall height.
[0044] Furthermore, the locking component 305 includes a fixing sleeve 306, which is coaxially sleeved on the rod sleeve 402. The fixing sleeve 306 is connected to the support arm 303 via the second angle adjustment seat 304.
[0045] The second angle adjustment seat 304 is connected to the support arm 303, which swings within a certain angle range. At the same time, it ensures that the support arm 303 can be stably held in the target position after adjustment. Through the design of the locking device, the connection between the fixing sleeve 306 and the second angle adjustment seat 304 can ensure that the support arm 303 remains stable at the required angle position and avoid displacement due to vibration or external force.
[0046] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. An adjustable handle for a treadmill, comprising a control console for the treadmill and handle structures provided on both sides of the control console, characterized in that, The handle structure consists of a first adjusting component, a second adjusting component, a third adjusting component, and a fourth adjusting component, wherein the second adjusting component, the third adjusting component, and the fourth adjusting component are electrically driven. The first adjustment component includes a handle and a connector disposed on the handle. The connector is connected to the third adjustment component. The connector includes a first connecting block and a second connecting block. The first connecting block is connected to the handle. The third adjustment component includes a telescopic rod and a rod sleeve. The rod sleeve is movably connected to the telescopic rod. The telescopic rod is connected to the second connecting block. The telescopic rod is coaxially inserted into the rod sleeve, and the telescopic rod moves along the axial direction of the rod sleeve. The rod sleeve is connected to a second adjusting component and a fourth adjusting component. The second adjusting component includes a first angle adjusting seat, a second angle adjusting seat, and a support arm. The support arm is connected to the first angle adjusting seat and the second angle adjusting seat. The second angle adjusting seat is connected to a locking member for connecting the rod sleeve. The fourth adjusting component includes a drive seat and a height adjusting seat on the drive seat. The drive seat is located on a fixing member for connecting the rod sleeve.
2. An adjustable handle for a treadmill as defined in claim 1, wherein: The first connecting block is fixedly mounted on one end of the handle, and the second connecting block is fixedly mounted on one end of the telescopic rod. The first connecting block and the second connecting block are connected, and a hinge is provided at the connection between the first connecting block and the second connecting block.
3. An adjustable handle for a treadmill according to claim 2, characterized in that: The first connecting block has a locking block at its end, and the second connecting block has a slot at its end for connecting the locking block. The first connecting block and the second connecting block can be adjusted at an angle of 0°-90° via a hinge.
4. An adjustable handle for a treadmill according to claim 1, characterized in that: The rod sleeve is equipped with an adjusting motor and a connecting sleeve. The connecting sleeve is connected to the adjusting motor and the telescopic rod respectively, and there is an movable gap between the connecting sleeve and the rod sleeve.
5. An adjustable handle for a treadmill according to claim 4, characterized in that: The inner wall of the connecting sleeve is also provided with threads, and the connecting sleeve is engaged with the telescopic rod through the threads.
6. An adjustable handle for a treadmill according to claim 1, characterized in that: The first angle adjustment seat is provided with a movable shaft and a mounting seat for connecting to the control base. The second angle adjustment seat is provided with a movable shaft. The support arm swings along the vertical direction of the control base via the movable shaft. The rod sleeve swings along the vertical direction of the control base via the movable shaft.
7. An adjustable handle for a treadmill according to claim 1, characterized in that: The fixing component includes a first fixing seat and a second fixing seat. The first fixing seat is fixedly connected to the rod sleeve, the second fixing seat is connected to the height adjustment seat, the height adjustment seat is connected to the drive seat, and the height adjustment seat is provided with adjustment gears on both sides.
8. An adjustable handle for a treadmill according to claim 1, characterized in that: The locking component includes a fixing sleeve, which is coaxially fitted onto the rod sleeve, and the fixing sleeve is connected to the support arm via a second angle adjustment seat.