A conveyor belt treadmill and a treadmill with the same
Patent Information
- Application Number
- CN202522253269.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-24
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-10-24
AI Technical Summary
[0003]传统的走步机,其跑台主要由钢架焊接而成,因此具有较大的重量,不利于整台设备的包装及运输
1、空心的跑台能够有效降低跑台重量,从而降低包装及运输成本,同时空心内腔能够起缓震作用,从而有效降低走步时对于膝盖的伤害。由上下对接的上凹陷点与下凹陷点组合而成的若干加强机构,能够在跑台本体上分布形成多组支撑点位,从而避免空心跑台因为支撑力不足而下陷,进而使跑台强度得到提升;
Smart Images

Figure CN224762377U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fitness equipment technology, and in particular to a conveyor belt treadmill and a walking machine with the treadmill. Background Technology
[0002] With increasing health awareness, more and more people are choosing to exercise at home, especially low-to-moderate intensity workouts, which are widely accepted. Among these, brisk walking is the most popular low-to-moderate intensity exercise, leading to a year-on-year increase in the sales of treadmills. For example, the utility model patent with announcement number CN210813707U discloses a similar treadmill.
[0003] Traditional treadmills primarily use a welded steel frame for the running platform, resulting in significant weight and making packaging and transportation difficult. Furthermore, the rigidity of the steel frame can easily injure the knees of novice or elderly users with incorrect walking posture, thus requiring improvement. Utility Model Content
[0004] The primary objective of this invention is to provide a conveyor belt running platform that can reduce the weight of the platform while enhancing its shock absorption effect.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: A conveyor belt type running table includes a running table body with a hollow interior. Several reinforcing mechanisms are distributed on the running table body. The reinforcing mechanisms include an upper recessed point formed by a downward indentation from the upper side wall of the running table body and a lower recessed point formed by a downward indentation from the lower side wall of the running table body. The upper recessed point is directly opposite the lower recessed point and the two are connected in the inner cavity of the running table body.
[0006] Using the above solution, the hollow running board can effectively reduce its weight, thereby reducing packaging and transportation costs. Simultaneously, the hollow cavity acts as a shock absorber, effectively reducing knee injuries during walking. Several reinforcing mechanisms, composed of upper and lower concave points, can be distributed across the running board body to form multiple sets of support points, preventing the hollow running board from sagging due to insufficient support and thus improving its strength.
[0007] Preferably, the upper and lower recessed points are integrated into one piece.
[0008] By adopting the above solution, the connection stability of the upper and lower recessed points can be improved, and vibration and collision between the two can be avoided during the use of the treadmill, thereby reducing the noise during the operation of the treadmill.
[0009] Preferably, one side of the upper recessed point has an upper reinforcing strip formed by a downward recess through the upper sidewall of the running platform body.
[0010] By adopting the above solution, the upper reinforcing strip can form a reinforcing rib between the upper concave point and the upper side wall of the running platform body. This can not only avoid stress concentration between the upper concave point and the upper side wall of the running platform body, but also form a tensile force between the two, thereby improving the bending resistance of the running platform body.
[0011] Preferably, the upper reinforcing strip is set along the length of the running platform body.
[0012] The above scheme improves the bending resistance of the running platform itself along its length.
[0013] Preferably, there are two upper reinforcing strips located on the front and rear sides of the upper recess point, respectively.
[0014] By adopting the above scheme, reinforcement structures can be formed on both the front and rear sides of the upper concave point, further improving the bending resistance of the running track body.
[0015] Preferably, a lower reinforcing strip extends from one side of the recessed point, formed by an upward indentation through the lower sidewall of the running platform body.
[0016] By adopting the above solution, the lower reinforcing strip can form a reinforcing rib between the lower recess and the lower side wall of the running platform body. This can not only avoid stress concentration between the lower recess and the lower side wall of the running platform body, but also generate tensile force between the two, thereby further improving the bending resistance of the running platform body.
[0017] Preferably, the lower reinforcing strip is set along the length of the running platform body.
[0018] By adopting the above scheme, the bending resistance of the treadmill body in its own length direction is further improved.
[0019] Preferably, there are two lower reinforcing strips located on the front and rear sides of the lower recess point, respectively.
[0020] By adopting the above scheme, reinforcement structures can be formed on both the front and rear sides of the concave point, further improving the bending resistance of the running track body.
[0021] Preferably, the inner cavity of the treadmill body is formed by blow molding.
[0022] The above solution is simple, efficient and low-cost, and can effectively improve the production efficiency of the production line and reduce manufacturing costs.
[0023] The second objective of this invention is to provide a walking machine with the aforementioned conveyor belt treadmill, which can reduce the overall weight of the machine, lower packaging and transportation costs, and improve shock absorption performance, thereby reducing knee injuries during walking.
[0024] The above-mentioned technical objective of this utility model is achieved through the following technical solution: A walking machine includes the above-mentioned conveyor belt type running platform. The front and rear ends of the running platform body are respectively provided with a driving roller and a driven roller, and a running belt is wound on the driving roller and the driven roller.
[0025] The above solution enables users to walk steadily and continuously on the treadmill, thereby improving the user experience.
[0026] Preferably, the upper surface of the treadmill body is provided with a running board for isolating the running belt.
[0027] By adopting the above solution, since the upper surface of the running board is smooth, the friction of the running belt during operation can be reduced, thereby improving the smoothness of the running belt operation and preventing wear on the upper surface of the running platform.
[0028] This utility model, by adopting the above technical solution, has significant technical effects: 1. A hollow running board effectively reduces its weight, thereby lowering packaging and transportation costs. The hollow interior also acts as a shock absorber, effectively reducing knee injuries during walking. Several reinforcing mechanisms, consisting of upper and lower concave points, are distributed across the running board to create multiple support points, preventing the hollow board from sagging due to insufficient support and thus improving its overall strength. 2. Users can walk steadily and continuously on the treadmill, thereby improving the user experience. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the structure of this embodiment. Figure 1 ; Figure 2 This is an exploded view of this embodiment; Figure 3 for Figure 2 An enlarged schematic diagram of part A shown; Figure 4 This is a schematic diagram of the structure of this embodiment. Figure 2 ; Figure 5 for Figure 4 An enlarged schematic diagram of part B is shown below; Figure 6 This is a schematic diagram of the structure of this embodiment. Figure 3 ; Figure 7 for Figure 6 An enlarged schematic diagram of section C shown.
[0030] The parts referred to by the numbers in the above attached diagrams are as follows: 1. Running board body; 2. Reinforcing mechanism; 3. Upper recessed point; 4. Lower recessed point; 5. Upper reinforcing strip; 6. Lower reinforcing strip; 7. Inner cavity; 8. Drive roller; 9. Driven roller; 10. Running belt; 11. Running board; 12. Support strip; 13. Foot pad; 14. Lower mounting cover; 16. Drive motor; 17. Output shaft; 18. Belt drive system; 20. Control board; 21. Upper mounting cover; 22. Connecting seat; 23. Screw. Detailed Implementation
[0031] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.
[0032] Example 1 like Figures 1 to 7 As shown, this embodiment discloses a conveyor belt treadmill, including a treadmill body 1. Support bars 12 are integrally formed on both sides of the treadmill body 1, and the support bars 12 are arranged along the length direction of the treadmill body 1. Several foot pads 13 are fixedly arranged at the bottom of the support bars 12 along their own length direction. The interior of the treadmill body 1 is hollow, and its inner cavity 7 is formed by blow molding. The blow molding process is common knowledge in the art and will not be described in detail here. Several reinforcing mechanisms 2 are distributed on the treadmill body 1. The reinforcing mechanism 2 includes an upper recessed point 3 formed by a downward indentation from the upper sidewall of the treadmill body 1 and a lower recessed point 4 formed by a downward indentation from the lower sidewall of the treadmill body 1. The upper recessed point 3 is directly opposite the lower recessed point 4, and the two are connected in the inner cavity 7 of the treadmill body 1.
[0033] To enhance the stability of the reinforcing mechanism 2 and the overall bending resistance of the running track, the upper recess 3 and the lower recess 4 are integrally formed. An upper reinforcing strip 5 extends from one side of the upper recess 3, formed by a downward indentation through the upper sidewall of the running track body 1. The upper reinforcing strip 5 is positioned along the length of the running track body 1. Two upper reinforcing strips 5 are provided, located on the front and rear sides of the upper recess 3, respectively. Correspondingly, a lower reinforcing strip 6 extends from one side of the lower recess 4, formed by an upward indentation through the lower sidewall of the running track body 1. The lower reinforcing strip 6 is positioned along the length of the running track body 1. Two lower reinforcing strips 6 are provided, located on the front and rear sides of the lower recess 4, respectively.
[0034] Example 2 like Figures 1 to 7As shown in Embodiment 1, this embodiment discloses a walking machine including the aforementioned conveyor belt treadmill. A lower mounting cover 14 is fixedly installed at the front end of the treadmill body 1. An active roller 8 is rotatably mounted between the two side plates of the lower mounting cover 14. A drive motor 16 is fixedly installed on the lower mounting cover 14. The output shaft 17 of the drive motor 16 is connected to the active roller 8 via a belt transmission system 18 to provide power to the active roller 8. A control board 20 providing the operating program for the drive motor 16 is also installed inside the lower mounting cover 14. An upper mounting cover 21 is fixedly covered on the lower mounting cover 14, providing protection for the components inside. Connecting seats 22 are fixedly installed at the rear end and on both sides of the treadmill body 1. A driven roller 9 is rotatably mounted between the two connecting seats 22. An annular running belt 10 is wound around the outer sides of the active roller 8 and the driven roller 9.
[0035] To improve the durability of the running platform body 1, a running board 11 for isolating the running belt 10 is provided on the upper surface of the running platform body 1. The upper surface of the running board 11 is smooth and is fixed to the surface of the running platform body 1 by multiple screws 23.
[0036] The working principle of this utility model will now be explained in conjunction with Embodiment 1 and Embodiment 2: The hollow design of the treadmill effectively reduces its weight, thereby lowering packaging and transportation costs. Simultaneously, the hollow inner cavity 7 acts as a shock absorber, effectively reducing knee injuries during walking. Several reinforcing mechanisms 2, composed of upper and lower recessed points 3 and 4, are distributed across the treadmill body 1 to form multiple support points, preventing the hollow treadmill from sagging due to insufficient support and thus increasing its strength. Combined with the upper and lower reinforcing strips 5 and 6, the bending resistance of the treadmill body 1 along its length is improved, enhancing the durability of the walking machine.
[0037] In addition, the hollow running platform body 1 can play a sound insulation role, making the walking machine quieter during use, thereby improving the user experience.
Claims
1. A conveyor belt type running platform, comprising a running platform body (1), characterized in that: The interior of the running track body (1) is hollow. Several reinforcing mechanisms (2) are distributed on the running track body (1). The reinforcing mechanism (2) includes an upper recessed point (3) formed by the downward indentation from the upper side wall of the running track body (1) and a lower recessed point (4) formed by the upward indentation from the lower side wall of the running track body (1). The upper recessed point (3) is directly opposite the lower recessed point (4), and the two are connected in the inner cavity (7) of the running track body (1).
2. A conveyor belt treadmill as claimed in claim 1, wherein: The upper recessed point (3) and the lower recessed point (4) are set as one piece.
3. A conveyor belt type running platform according to claim 1 or 2, characterized in that: One side of the upper recess (3) extends an upper reinforcing strip (5) formed by the downward indentation of the upper sidewall of the running platform body (1).
4. A conveyor belt treadmill as claimed in claim 3, wherein: The upper reinforcing strip (5) is set along the length of the running platform body (1).
5. A conveyor belt treadmill as claimed in claim 4 wherein: The upper reinforcing strip (5) has two strips, which are located on the front and rear sides of the upper recess (3) respectively.
6. A conveyor belt treadmill according to claim 1 or 2, wherein: A lower reinforcing strip (6) extends from one side of the recessed point (4) and is formed by the upward indentation of the lower sidewall of the running platform body (1).
7. A conveyor belt treadmill as claimed in claim 6 wherein: The lower reinforcing strip (6) is set along the length of the running platform body (1).
8. A conveyor belt treadmill as claimed in claim 7, wherein: The lower reinforcing strip (6) has two strips located on the front and rear sides of the lower recess (4).
9. A conveyor belt treadmill as claimed in claim 1 or 2, wherein: The inner cavity (7) of the treadmill body (1) is formed by blow molding.
10. A treadmill comprising a conveyor belt treadmill as claimed in any one of claims 1 to 9, characterized in that: The front and rear ends of the running platform body (1) are respectively provided with a driving roller (8) and a driven roller (9), and a running belt (10) is wound on the driving roller (8) and the driven roller (9).
11. A treadmill according to claim 10 wherein: The upper surface of the treadmill body (1) is provided with a running board (11) for isolating the running belt (10).
Citation Information
Patent Citations
Telescopic walking machine
CN210813707U