Treadmill for cooperative training
By integrating foldable support bars and linkage structures, rubber pads, and magnetic safety locks into the treadmill, the design achieves multi-functional collaborative training and enhanced safety, solving the problems of large footprint and noise associated with treadmills, and providing a more comprehensive home fitness solution.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO NEW NOBLE SPORT EQUIP
- Filing Date
- 2025-04-30
- Publication Date
- 2026-05-01
AI Technical Summary
Existing treadmills occupy a large area, making it difficult to conduct multiple training programs simultaneously at home, and their noise and safety features need improvement.
A collaborative training treadmill was designed, which can realize various training programs such as sit-ups and push-ups by installing a foldable second support rod and connecting rod on the base, combined with handrails, footrests and push-up supports; rubber pads and magnetic safety locks are used to ensure safety and noise control; a servo motor is used to drive the running belt and shock-absorbing pads and wheels are set in the mounting frame to reduce noise and impact.
By effectively utilizing the space occupied by a treadmill for various training programs, the diversity and safety of home fitness are improved, while noise interference and usage risks are reduced.
Smart Images

Figure CN224180177U_ABST
Abstract
Description
A treadmill for collaborative training Technical Field
[0001] This utility model relates to the field of fitness equipment, specifically to a treadmill for collaborative training. Background Technology
[0002] In people's daily lives, more and more people are choosing running as a form of exercise. Compared with some other sports, running generally has many advantages, such as: it is not very demanding in terms of location, and can be run in parks, playgrounds, and neighborhood roads; it does not require much equipment, as long as you have a pair of running shoes; and it is not limited by time of day, allowing for morning runs, evening runs, and runs at any free time. However, due to air pollution and increasingly busy work schedules, people sometimes do not have time for outdoor exercise, so many people are starting to choose treadmills to exercise at home. However, existing treadmills have relatively hard conveyor belt support surfaces, which can generate considerable noise when running indoors, thus affecting the lives of neighbors or downstairs residents.
[0003] Chinese patent application number CN202010622159.2 discloses a treadmill for collaborative training, including a base, an incline adjustment mechanism, a frame, a conveyor mechanism, and a control panel. The incline adjustment mechanism is mounted on the base and is used to drive the frame to rise and fall. The conveyor mechanism includes a drive motor, a reducer, an active roller, a passive roller, a conveyor belt, a support shaft, an elastic component, and pedals. The conveyor belt covers the active and passive rollers. The motor shaft of the drive motor is connected to the input shaft of the reducer, and the output shaft of the reducer is connected to the active roller. The conveyor belt has multiple sets of fixed side plates, and the two ends of the support shaft pass through the corresponding fixed side plates and are fixed by locking rings. The bottom of the pedals has a groove, and the support shaft has symmetrical cutting parts around its periphery. The side wall of the groove near the outer end face has a limiting rib. The elastic component is set in the groove, and the elastic force of the elastic component acts on the support shaft and the pedals respectively. However, this treadmill occupies a large area, and it is difficult for a typical family to have a separate gym to place it. The space occupied by a treadmill makes it difficult to find space for other exercises.
[0004] Chinese patent application number CN201520486781.X discloses a multi-functional treadmill, comprising: a base, a support frame, and a main unit; one end of the support frame is fixedly connected to the base, and the other end is fixedly connected to the main unit; a running belt is provided on the base, and a shock-absorbing pad is provided between the running belt and the base, with a first shock-absorbing spring housed on the front and multiple second shock-absorbing springs housed on the back; a support seat is movably connected to the support frame, and a massager and supine foot hooks for use in conjunction with the massager are installed on the support seat. This multi-functional treadmill, with its movably connected support seat on the support frame, and the massager and supine foot hooks, provides a massage function, and the height adjustment of the support seat is very convenient, suitable for different runners; the shock-absorbing pad between the running belt and the base, with the first shock-absorbing spring housed on the front and multiple second shock-absorbing springs housed on the back, provides the treadmill with good shock absorption. However, this type of treadmill can only provide a single aerobic exercise and relaxation for the user, and cannot be used to exercise other parts of the body. Other equipment still needs to be placed in the home. Summary of the Invention
[0005] To address the aforementioned technical problems, a treadmill for collaborative training is provided. This technical solution resolves the issue of how to utilize the space occupied by a treadmill to perform more training programs, thereby achieving the collaborative training capability of the treadmill.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0007] A treadmill for collaborative training includes a base and a running belt. The running belt is mounted on the base via a running belt mounting bracket. A first hinge seat is provided at the rear end of the base. One end of the running belt mounting bracket is inserted into the first hinge seat and hinged to the base. An incline adjustment mechanism for changing the height position of the front end of the running belt is provided at the front end of the base and connected to the running belt mounting bracket. Vertically upward-extending first support rods are provided on both sides of the front end of the base. Second support rods are hinged to the first support rods via damping hinges. The cross-sectional shape of the second support rods matches that of the first support rods. The second support rods extend upward and have a certain curvature. A horizontally extending handrail is provided at the top of the second support rods. The two second support rods are connected by horizontally arranged connecting rods. The connecting rods are evenly spaced and push-up supports are inserted into the connecting rods.
[0008] Preferably, one end of the handrail is fitted with a replaceable second rubber pad, and the handrail is made of metal.
[0009] Preferably, the second support rod is further provided with a hanging rod, which is fixedly connected to the second support rods on both sides. The hanging rod is located at the end of the second support rod near the first support rod and faces outward.
[0010] Preferably, the push-up support includes a handle, which is horizontally positioned above the mounting base. The handle is fixedly connected to the mounting base via a support rod. The mounting base has two downward-opening limiting slots, the size of which matches the diameter of the connecting rod, and the distance between the two limiting slots matches the distance between adjacent connecting rods.
[0011] Preferably, the first support rod of the base has a first wiring cavity inside, the second support rod has a second wiring cavity inside, and the connection between the first wiring cavity and the second wiring cavity is provided with a first magnetic safety lock first component and a first magnetic safety lock second component, respectively.
[0012] Preferably, a control panel is fixedly installed on one end of the second support rod near the damping hinge. The display end of the control panel faces the extension direction of the damping hinge. A clip is provided on the control panel, and one end of the clip is connected to a user via a rope.
[0013] Preferably, one end of the running belt is connected to the working end of the first rotary drive device via a transmission belt, and the working shaft of the first rotary drive device is horizontally arranged with the rotation shaft of the running belt.
[0014] Preferably, the treadmill mounting bracket includes a baffle that conforms to the shape of the treadmill belt, and the front end of the treadmill mounting bracket is provided with a mounting cavity for fixing and mounting the first rotary drive device. The upper opening of the mounting cavity is closed by a cover plate.
[0015] Preferably, the treadmill mounting frame also includes multiple insert seats, which are evenly distributed within the treadmill belt. A first shock-absorbing pad is installed around the insert seat. The two sides of the treadmill mounting frame are provided with wheels corresponding to the insert seats. The wheels are used to insert the insert seats. A second shock-absorbing pad is provided inside the wheel. The second shock-absorbing pad is tightly fitted to both ends of the insert seat.
[0016] Preferably, the base has a support foot at the bottom, and a first rubber pad is fitted on the support foot. The surface of the first rubber pad has anti-slip texture.
[0017] The advantages of this application compared to the prior art are:
[0018] 1. This application, through the second support rod hinged to the base, in conjunction with the connecting rod and push-up bracket, enables the second support rod to be lowered horizontally when not in running mode, so that the handrail supports the ground to form a support frame suitable for sit-ups and push-ups, thereby solving the technical problem of how to utilize the space occupied by the treadmill to carry out more training programs and thus realize the treadmill's collaborative training capabilities.
[0019] 2. This application uses a metal handrail set with a second rubber pad to ensure the stability of the second support rod while preventing users from making strong contact with the handrail during exercise and avoiding scratches on the floor or tiles of the home caused by the metal material of the handrail.
[0020] 3. This application uses a footrest to allow users to lie on the connecting bar for sit-ups or crunches, ensuring a stable position during exercise and reducing the need for core engagement, thus guaranteeing the effectiveness of the exercise.
[0021] 4. This application allows users to perform push-ups in various postures by adjusting the position of the push-up support mounted on the connecting rod, thereby exercising different muscle groups.
[0022] 5. This application achieves concealed wiring through the first wiring cavity and the second wiring cavity. The first magnetic safety lock first component and the second magnetic safety lock second component set at the connection with the second wiring cavity disconnect the power line when the second support rod is laid flat, avoiding unnecessary damage caused by the user accidentally activating the running belt or incline adjustment mechanism during exercise.
[0023] 6. This application utilizes a second magnetic safety lock installed on the control panel of the second support rod to quickly activate the second magnetic safety lock, disconnecting the power and stopping the rotation of the treadmill belt in the event of an accidental fall or other emergency, thus protecting the user.
[0024] 7. This application enables the treadmill belt to rotate at multiple speeds via a first rotary drive device, thereby adapting to the different speed requirements of the user.
[0025] 8. This application achieves rational use of space by installing the first rotary drive device that drives the treadmill belt to rotate in the mounting cavity and sealing the mounting cavity with a cover plate.
[0026] 9. This application uses wheels inserted into the inserts on both sides of the treadmill belt mounting bracket to support the treadmill belt. The inserts are equipped with a first shock-absorbing pad to provide some cushioning at the connection between the wheels and the inserts, ensuring the stability of the treadmill belt while running and reducing noise, and reducing the impact of pressure without affecting the rotation of the wheels.
[0027] 10. This application uses a first rubber pad made of rubber or silicone material to wrap the support foot, thereby avoiding scratches when in contact with the ground, reducing noise generation, and the anti-slip texture can increase the friction between the first rubber pad and the ground, thus ensuring the stability of the base position and protecting the user during running. Attached Figure Description
[0028] Figure 1 is a perspective view of the present invention in a running state;
[0029] Figure 2 is a perspective view of the present invention in a running state;
[0030] Figure 3 is a perspective view of another working state of this utility model;
[0031] Figure 4 is a front view of the present invention in another working state;
[0032] Figure 5 is a side view of this utility model;
[0033] Figure 6 is a cross-sectional view of section AA in Figure 5;
[0034] Figure 7 is a cross-sectional view of section BB in Figure 5;
[0035] Figure 8 is a perspective view of the second support rod of this utility model;
[0036] Figure 9 is a perspective view of the second support rod of this utility model;
[0037] Figure 10 is a perspective view of the push-up support of this utility model;
[0038] Figure 11 is a perspective view of the base of this utility model;
[0039] Figure 12 is a perspective view of the base of this utility model.
[0040] Figure 13 is a magnified view of part C in Figure 12;
[0041] Figure 14 is a perspective view of the running belt mounting bracket of this utility model;
[0042] Figure 15 is an exploded three-dimensional view of the running belt mounting bracket of this utility model;
[0043] The numbers on the map are:
[0044] 1-Base; 1a-First hinge seat; 1b-First support rod; 1b1-First wiring cavity; 1b2-First magnetic safety lock first component; 1c-Feet; 1c1-First rubber pad; 1c2-Anti-slip texture;
[0045] 2-Running belt; 2a-Transmission belt; 2b-First rotary drive device;
[0046] 3-Treadmill belt mounting bracket; 3a-Baffle; 3b-Mounting cavity; 3b1-Cover plate; 3c-Installation seat; 3c1-First shock absorber; 3d-Roller; 3d1-Second shock absorber;
[0047] 4-Slope adjustment mechanism;
[0048] 5-Second support rod; 5a-Damping hinge; 5b-Handrail; 5b1-Second rubber pad; 5c-Connecting rod; 5c1-Foot hanger; 5d-Push-up support; 5d1-Handle; 5d2-Mounting base; 5d3-Support rod; 5d4-Limiting slot; 5e-Second wiring cavity; 5e1-Second component of the first magnetic safety lock; 5f-Control panel; 5f1-Second magnetic safety lock; 5f2-Clamp. Detailed Implementation
[0049] The following description is intended to disclose the present invention so that those skilled in the art can implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art.
[0050] To address the technical challenge of utilizing the space occupied by a treadmill for more training programs, thereby achieving synergistic training capabilities, as shown in Figures 1 to 5, the following preferred technical solutions are provided:
[0051] A treadmill for collaborative training includes a base 1 and a running belt 2. The running belt 2 is mounted on the base 1 via a running belt mounting bracket 3. A first hinge seat 1a is provided at the rear end of the base 1. One end of the running belt mounting bracket 3 is inserted into the first hinge seat 1a and hinged to the base 1. An incline adjustment mechanism 4 for changing the height position of the front end of the running belt 2 is provided at the front end of the base 1 and connected to the running belt mounting bracket 3. Vertically upward extending first support rods 1b are provided on both sides of the front end of the base 1. Second support rods 5 are hinged to the first support rods 1b via damping hinges 5a. The cross-sectional shape of the second support rods 5 matches that of the first support rods 1b. The second support rods 5 extend upward and have a certain curvature. A horizontally extending handrail 5b is provided at the top of the second support rods 5. The two second support rods 5 are connected by horizontally arranged connecting rods 5c. The connecting rods 5c are evenly distributed and push-up supports 5d are inserted into the connecting rods 5c.
[0052] Specifically, in this embodiment, the treadmill for collaborative training functions by using a running belt 2 mounted on a base 1. A first support rod 1b and a second support rod 5 are hinged together on the base 1 to form the front mounting frame of the treadmill. When the user runs on the treadmill, the second support rod 5 is vertically mounted on the first support rod 1b. The connection position between the second support rod 5 and the first support rod 1b can be secured by a locking mechanism to maintain the vertical position of the second support rod 5. The incline adjustment mechanism 4 can change the height of the front end of the running belt 2 to adjust the running incline for the user. To meet different functional training needs, the incline adjustment mechanism 4 includes an electric push rod, which is fixedly installed above the front end of the base 1. The working end of the electric push rod is positioned to move vertically perpendicular to the surface of the base 1. The working end of the electric push rod is hinged to a hinge joint, which is limited and installed in a groove below the treadmill belt mounting bracket 3. Since the rear end of the treadmill belt mounting bracket 3 is inserted into the first hinge seat 1a of the base 1, when the electric push rod causes the front end of the treadmill belt 2 to tilt upwards, the position of the treadmill belt 2 is kept stable. The incline adjustment mechanism 4 can also be hinged to the treadmill belt mounting bracket 3 and the base 1 via a connecting rod. The base 1 has limiting grooves on both sides. One end of the connecting rod can be hinged to a limiting block installed in the limiting groove. When the slope of the treadmill belt 2 changes, the connecting rod moves accordingly, and the limiting block moves in the limiting groove to ensure the stability of the treadmill belt 2 and support the treadmill belt 2, avoiding excessive pressure on the electric push rod. When the second support rod 5 rotates to a horizontal position, the handrail 5b contacts the ground to support the second support rod 5. The connecting rod 5c between the two second support rods 5 allows the user to lie down or do sit-ups. A push-up support 5d is inserted into the connecting rod 5c. The 5d support frame allows users to perform push-ups. Traditional push-ups can be done directly on the ground, but they only target the pectoralis major. The 5d support frame, inserted into the connecting rod 5c, allows users to increase the distance between their body and the ground, providing stable support and thus exercising the lower chest. Because the second support rod 5 has a certain curvature, it is convenient for users to perform sit-ups or crunches. It is also convenient for users to support themselves with their hands and feet on the connecting rod 5c at different heights to perform push-ups, thereby solving the problem of space occupation of the treadmill and achieving the effect of multiple coordinated training.
[0053] Furthermore, in order to solve the technical problem of how to protect the handrail 5b, as shown in Figures 6 and 8, the following preferred technical solution is provided: one end of the handrail 5b is fitted with a replaceable second rubber pad 5b1, and the handrail 5b is made of metal.
[0054] Specifically, in this embodiment, the handrail 5b is positioned on either side of the runner during running, providing support and protection when the user is exhausted. Since the handrail 5b is made of metal, a second rubber pad 5b1 is fitted over one end of the handrail 5b to prevent injury from strong contact with the handrail 5b during exercise. When the second support rod 5 is rotated down, the handrail 5b contacts the ground to support the second support rod 5. The metal material of the handrail 5b ensures the structural stability of the second support rod 5, preventing deformation and making it suitable for heavy users. The second rubber pad 5b1, fitted over one end of the handrail 5b in contact with the ground, prevents the second support rod 5 from sliding and also prevents the metal material of the handrail 5b from scratching the floor or tiles in the home.
[0055] Furthermore, in order to solve the technical problem of how to facilitate users to perform sit-ups on the second support rod 5, as shown in Figures 8 and 9, the following preferred technical solution is provided: the second support rod 5 is also provided with a foot hanging rod 5c1, the foot hanging rod 5c1 is fixedly connected to the second support rods 5 on both sides, the foot hanging rod 5c1 is located at the end of the second support rod 5 near the first support rod 1b, and the foot hanging rod 5c1 is set outward.
[0056] Specifically, in this embodiment, the second support rod 5 is also equipped with a footrest 5c1. When the user is running, the footrest 5c1 is located outside the second support rod 5, which does not affect the runner's leg movements. When the second support rod 5 is rotated down, the footrest 5c1 is located on the upper side of the higher end of the second support rod 5, which makes it convenient for the user to place their feet on the footrest 5c1 for positioning when lying on the connecting rod 5c to perform sit-ups or crunches. This ensures the user's position is stable during exercise, reduces core exertion, and ensures the user's training effect.
[0057] Furthermore, to address the technical challenge of adapting the push-up support 5d to different types of push-ups, as shown in Figure 10, the following preferred technical solution is provided: The push-up support 5d includes a grip bar 5d1, which is horizontally positioned above the mounting base 5d2. The grip bar 5d1 and the mounting base 5d2 are fixedly connected by a support rod 5d3. The mounting base 5d2 is provided with two downward-opening limiting slots 5d4. The size of the limiting slots 5d4 matches the diameter of the connecting rod 5c, and the distance between the two limiting slots 5d4 matches the distance between adjacent connecting rods 5c.
[0058] Specifically, in this embodiment, a push-up support 5d is installed on the connecting rod 5c. By adjusting the position of the push-up support 5d, the user can perform push-ups in various postures, thereby exercising different muscle groups. The push-up support 5d includes a grip bar 5d1 for easy gripping by the user. The mounting base 5d2 can be inserted into any two adjacent connecting rods 5c through the limiting slot 5d4 below. At the same time, the push-up support 5d can slide on the connecting rod 5c to adjust the distance between the two push-up supports 5d, thereby realizing different training for wide-grip push-ups and narrow-grip push-ups.
[0059] Furthermore, in order to solve the technical problem of how to ensure that the treadmill will not be accidentally started and cause safety hazards after the second support rod 5 is lowered, as shown in Figures 7, 9 and 11, the following preferred technical solution is provided: the first support rod 1b of the base 1 is provided with a first wiring cavity 1b1, the second support rod 5 is provided with a second wiring cavity 5e, and the connection between the first wiring cavity 1b1 and the second wiring cavity 5e is respectively provided with a first magnetic safety lock first component 1b2 and a first magnetic safety lock second component 5e1.
[0060] Specifically, in this embodiment, the first support rod 1b and the second support rod 5 are respectively provided with a first wiring cavity 1b1 and a second wiring cavity 5e to achieve hollowness, which facilitates the concealment of the wiring required by the treadmill. The connection position between the first support rod 1b and the second support rod 5 is respectively provided with a first magnetic safety lock first component 1b2 and a first magnetic safety lock second component 5e1. When the first support rod 1b and the second support rod 5 are in a vertical state, the first magnetic safety lock first component 1b2 and the first magnetic safety lock second component 5e1 are engaged, establishing a power supply path. The treadmill belt 2 and the incline adjustment mechanism 4 are powered to ensure their operation. When the user rotates and lowers the second support rod 5 to perform sit-ups or push-ups or other exercises, the first magnetic safety lock first component 1b2 and the second magnetic safety lock second component 5e1 disconnect, causing the power line to break. This prevents the treadmill belt 2 and the incline adjustment mechanism 4 from receiving power to start, thus avoiding accidental activation of the treadmill belt 2 or the incline adjustment mechanism 4 by the user during exercise, which could cause unnecessary damage. The first magnetic safety lock is existing technology and will not be described in detail here.
[0061] Furthermore, in order to solve the technical problem of how to ensure that the treadmill can be stopped quickly in case of an emergency, as shown in Figure 9, the following preferred technical solution is provided: A control panel 5f is fixedly installed on one end of the second support rod 5 near the damping hinge 5a. The display end of the control panel 5f faces the extension direction of the damping hinge 5a. A clip 5f2 is provided on the control panel 5f. One end of the clip 5f2 is connected to a 5f3 for connecting the user via a rope.
[0062] Specifically, in this embodiment, the speed and incline of the running belt 2 are displayed and adjusted via a control panel 5f located on the second support rod 5. The control panel 5f can also display and record the user's running time and mileage. When the user is running, the first support rod 1b and the second support rod 5 are vertically connected to the power supply. A second magnetic safety lock 5f1 is provided on the control panel 5f. The second magnetic safety lock 5f1 is existing technology and will not be described in detail here. One end of the second magnetic safety lock 5f1 is connected to a clip 5f2 via a rope. The clip 5f2 can be clipped onto the user's clothing when the user is using the product. In case of an accidental fall or other emergency, the second magnetic safety lock 5f1 can be quickly activated to disconnect the power supply and stop the rotation of the running belt 2, thus protecting the user.
[0063] Furthermore, in order to solve the technical problem of how the running belt 2 is driven, as shown in Figure 6, the following preferred technical solution is provided: one end of the running belt 2 is connected to the working end of the first rotary drive device 2b through a transmission belt 2a, and the working shaft of the first rotary drive device 2b is set horizontally with the rotation shaft of the running belt 2.
[0064] Specifically, in this embodiment, the treadmill belt 2 is driven to rotate by the first rotation drive device 2b, which can be a servo motor. The first rotation drive device 2b can realize the rotation of the treadmill belt 2 at various speeds to adapt to the different speed needs of the user.
[0065] Furthermore, in order to solve the technical problem of how to install the running belt 2 on the running belt mounting bracket 3, as shown in Figures 14 and 15, the following preferred technical solution is provided: the running belt mounting bracket 3 includes a baffle 3a that conforms to the shape of the running belt 2, and the front end of the running belt mounting bracket 3 is provided with a mounting cavity 3b, which is used to fix and install the first rotary drive device 2b. The upper opening of the mounting cavity 3b is closed by a cover plate 3b1.
[0066] Specifically, in this embodiment, the running belt mounting bracket 3 surrounds the running belt 2 with a baffle 3a to ensure the overall appearance of the treadmill is aesthetically pleasing. The first rotation drive device 2b that drives the running belt 2 to rotate is installed in the mounting cavity 3b and the mounting cavity 3b is sealed with a cover plate 3b1, thereby achieving reasonable use of space.
[0067] Furthermore, in order to solve the technical problem of excessive noise during treadmill operation, as shown in Figures 14 and 15, the following preferred technical solution is provided: the treadmill mounting frame 3 also includes multiple insertion seats 3c, which are evenly distributed within the treadmill belt 2. A first shock-absorbing pad 3c1 is installed around the insertion seat 3c. The two sides of the treadmill mounting frame 3 are provided with rollers 3d corresponding to the insertion seats 3c. The rollers 3d are used to insert the insertion seats 3c. A second shock-absorbing pad 3d1 is provided inside the rollers 3d. The second shock-absorbing pad 3d1 is tightly fitted to both ends of the insertion seat 3c.
[0068] Specifically, in this embodiment, the running belt 2 is supported by the rollers 3d inserted into the running belt mounting bracket 3, ensuring the stability of the running belt 2 while reducing noise during user running. The rollers 3d are evenly spaced, and a second shock-absorbing pad 3d1 is fitted around the periphery of each roller 3d. When the user runs, the pressure on the running belt 2 causes the lower side of the running belt 2 to contact the second shock-absorbing pad 3d1. The second shock-absorbing pad 3d1 can buffer the pressure, thereby effectively alleviating the noise caused by the direct contact between the running belt 2 and the rollers 3d, and also protecting the structure of the running belt 2 and the rollers 3d. The two ends of the rollers 3d are inserted into the mounting seats 3c provided on both sides of the running belt mounting bracket 3. The mounting seats 3c are provided with first shock-absorbing pads 3c1, which can buffer the connection between the rollers 3d and the mounting seats 3c to a certain extent, thereby reducing the impact of pressure without affecting the rotation of the rollers 3d, and avoiding noise generation to a certain extent.
[0069] Furthermore, in order to solve the technical problem of how to ensure the stability of the equipment, as shown in Figures 11 to 13, the following preferred technical solution is provided: the bottom of the base 1 is provided with a support leg 1c, the support leg 1c is fitted with a first rubber pad 1c1, and the ground of the first rubber pad 1c1 is provided with anti-slip texture 1c2.
[0070] Specifically, in this embodiment, the base 1 has a support leg 1c at its bottom. The support leg 1c can be columnar or strip-shaped. A first rubber pad 1c1 conforming to the shape of the support leg 1c is fitted on the support leg 1c. The first rubber pad 1c1 is made of rubber or silicone material, which can prevent scratches when in contact with the ground and reduce noise generation. The side of the first rubber pad 1c1 that contacts the ground is provided with anti-slip texture 1c2. The anti-slip texture 1c2 can increase the friction between the first rubber pad 1c1 and the ground, thereby ensuring the stability of the base 1 and protecting the user during running.
[0071] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A treadmill for collaborative training, comprising, The base (1) and the running belt (2) are mounted on the base (1) via a running belt mounting bracket (3). The base (1) has a first hinge seat (1a) at its rear end. One end of the running belt mounting bracket (3) is inserted into the first hinge seat (1a) and hinged to the base (1). A slope adjustment mechanism (4) for changing the height position of the front end of the running belt (2) is located at the front end of the base (1) and connected to the running belt mounting bracket (3). Vertically upward-extending first... A first support rod (1b) is connected to the first support rod (1b) by a damping hinge (5a). The cross-sectional shape of the second support rod (5) matches that of the first support rod (1b). The second support rod (5) extends upward and has a certain curvature. A horizontally extending handrail (5b) is provided at the top of the second support rod (5). The two second support rods (5) are connected by a horizontally arranged connecting rod (5c). The connecting rods (5c) are evenly distributed. A push-up support (5d) is inserted into the connecting rod (5c).
2. The treadmill for collaborative training according to claim 1, characterized in that, One end of the armrest (5b) is fitted with a replaceable second rubber pad (5b1), and the armrest (5b) is made of metal.
3. The treadmill for collaborative training according to claim 1, characterized in that, The second support rod (5) is also provided with a hanging rod (5c1). The hanging rod (5c1) is fixedly connected to the second support rods (5) on both sides. The hanging rod (5c1) is located at one end of the second support rod (5) near the first support rod (1b) and is set to face outward.
4. The treadmill for collaborative training according to claim 1, characterized in that, The push-up support (5d) includes a handle (5d1), which is horizontally positioned above the mounting base (5d2). The handle (5d1) and the mounting base (5d2) are fixedly connected by a support rod (5d3). The mounting base (5d2) is provided with two downward-opening limiting slots (5d4). The size of the limiting slots (5d4) matches the diameter of the connecting rod (5c), and the distance between the two limiting slots (5d4) matches the distance between adjacent connecting rods (5c).
5. A treadmill for collaborative training according to claim 1, characterized in that, The base (1) has a first wiring cavity (1b1) inside the first support rod (1b) and a second wiring cavity (5e) inside the second support rod (5). The connection between the first wiring cavity (1b1) and the second wiring cavity (5e) is provided with a first magnetic safety lock first component (1b2) and a first magnetic safety lock second component (5e1).
6. A treadmill for collaborative training according to claim 1, characterized in that, The second support rod (5) has a control panel (5f) fixedly installed at one end near the damping hinge (5a). The display end of the control panel (5f) faces the extension direction of the damping hinge (5a). A clip (5f2) is provided on the control panel (5f). One end of the clip (5f2) is connected to a 5f3 for connecting the user via a rope.
7. A treadmill for collaborative training according to claim 1, characterized in that, One end of the running belt (2) is connected to the working end of the first rotary drive device (2b) via a transmission belt (2a), and the working shaft of the first rotary drive device (2b) is set horizontally with the rotation shaft of the running belt (2).
8. A treadmill for collaborative training according to claim 1, characterized in that, The treadmill mounting bracket (3) includes a baffle (3a) that conforms to the shape of the treadmill (2). The front end of the treadmill mounting bracket (3) is provided with a mounting cavity (3b). The mounting cavity (3b) is used to fix the first rotary drive device (2b). The upper opening of the mounting cavity (3b) is closed by a cover plate (3b1).
9. A treadmill for collaborative training according to claim 1, characterized in that, The treadmill mounting bracket (3) also includes multiple insert seats (3c), which are evenly distributed within the treadmill belt (2). A first shock-absorbing pad (3c1) is installed around the insert seat (3c). The two sides of the treadmill mounting bracket (3) are provided with rotating wheels (3d) corresponding to the insert seats (3c). The rotating wheels (3d) are used to insert the insert seats (3c). A second shock-absorbing pad (3d1) is provided inside the rotating wheels (3d). The second shock-absorbing pad (3d1) is tightly fitted to both ends of the insert seat (3c).
10. A treadmill for collaborative training according to claim 1, characterized in that, The base (1) has a support foot (1c) at the bottom, and a first rubber pad (1c1) is fitted on the support foot (1c). The ground of the first rubber pad (1c1) is provided with anti-slip texture (1c2).
Citation Information
Patent Citations
Treadmill for cooperative training
CN111589053A
Multi -functional treadmill
CN204767177U