Dumbbell storage seat with movable loading and unloading mechanism

The dumbbell storage system addresses the issue of multiple dumbbell sizes and storage challenges by allowing easy weight exchange and storage through a movable loading mechanism, enhancing flexibility and durability.

CN120305626APending Publication Date: 2025-07-15YANCHENG YIFENG FITNESS EQUIP TECH CO LTD
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Patent Information

Application Number
CN202510576119.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-07-15

AI Technical Summary

Technical Problem

The existing dumbbells are cost-effective and do not have dedicated storage devices after use, resulting in poor safety and durability, which is inconvenient for handling and storage.

Method used

A dumbbell storage seat with a mobile loading and unloading mechanism is designed, using an electronically controlled internal guide bracket and a side-mounted counterweight storage box. The installation and disassembly of the detachable dumbbells are controlled through the LCD control screen to realize split storage and rapid replacement of counterweights.

Benefits of technology

It improves the suitability and operability of dumbbells, reduces the cost of later maintenance, enhances the durability and airtightness of the equipment, and facilitates the management and adjustment of dumbbells.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of fitness equipment storage, in particular to a dumbbell storage seat with a movable loading and unloading mechanism, the dumbbell storage seat comprises a main base and detachable dumbbells, and an electric control type internal material guide support used for conveying the detachable dumbbells is movably assembled in the main base. According to the dumbbell storage seat with the movable loading and unloading mechanism, a dumbbell is stored in a split mode, storage can be convenient, balancing weights can be rapidly replaced according to needs, and operability of the dumbbell storage seat is greatly enhanced; side hanging type balancing weight storage boxes used for containing dumbbell balancing weights are installed at the positions, located on the two sides of the electric control type internal material guide support, in the main base, the split type structural layout is adopted, replacement, disassembly and assembly can be convenient, the later maintenance cost is reduced, and the requirement for adaptation is met.
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Description

Technical Field

[0001] The present invention relates to the technical field of fitness equipment storage, and in particular to a dumbbell storage seat with a mobile loading and unloading mechanism. Background Art

[0002] Dumbbells are a type of fitness equipment mainly used for strength training by gripping and lifting. The main material of dumbbells on the market is cast iron, and to improve safety and durability, a layer of rubber is wrapped around their outer side. To improve the adaptability of dumbbells, non-removable counterweights are currently fixedly installed on both sides of the dumbbells, which results in inconsistent dumbbell specifications for different people at different stages, leading to the need to prepare multiple specifications of dumbbells, greatly increasing the usage cost of dumbbells. Moreover, there is no dedicated storage device for dumbbells after use, resulting in them being exposed for a long time, not only having poor safety and durability, but also being inconvenient to carry and store. Summary of the Invention

[0003] The technical problem to be solved by the present invention is: the current usage cost of dumbbells, and there is no dedicated storage device for dumbbells after use, resulting in them being exposed for a long time, not only having poor safety and durability, but also being inconvenient to carry and store.

[0004] The technical solution adopted by the present invention to solve its technical problem is: a dumbbell storage seat with a mobile loading and unloading mechanism, including a main base and a detachable dumbbell. An electrically controlled internal feeding bracket for conveying the detachable dumbbell is movably assembled inside the main base. Side-mounted counterweight storage boxes for storing dumbbell counterweights are installed on both sides of the electrically controlled internal feeding bracket inside the main base. An upper feeding groove is opened on the upper surface of the main base, and an electrically controlled flip-up upper feeding cover plate is movably assembled at the position of the upper feeding groove at the upper end of the main base.

[0005] The electrically controlled internal feeding bracket includes a flip adjustment frame installed inside the upper feeding groove, an internal electrically controlled conveyor belt installed inside the flip adjustment frame, and an internal adjustment strut for controlling the flip adjustment frame.

[0006] Lateral loading and unloading ports are symmetrically opened on both sides of the main base, and the side-mounted counterweight storage boxes are fixedly connected to the main base by being inserted into the lateral loading and unloading ports through bolts.

[0007] The side-mounted counterweight storage box includes a side-mounted box body, an electrically controlled telescopic separating bit head installed inside the side-mounted box body, a plurality of electrically controlled conveyor belts installed inside the side-mounted box body, and lateral limiting flappers installed on the side walls of the electrically controlled conveyor belts.

[0008] The electronically controlled flip-up upper feeding cover plate includes a top flip-up cover plate hinged to the position of the upper feeding chute, a lateral flip support rod for controlling the lateral flipping of the top flip-up cover plate, a built-in transmission frame fixedly installed on the inner wall of the top flip-up cover plate, an external feeding belt installed inside the built-in transmission frame, and an external hook fixed on the side wall of the external feeding belt.

[0009] On the inner side of the upper feeding chute, a lateral flipping groove with an open upper end is provided, and the lateral flip support rod is pivotally installed on the inner wall of the lateral flipping groove.

[0010] On the upper surface of the main base, top storage grooves for receiving the handles are symmetrically provided on both sides of the upper feeding chute.

[0011] On the front surface of the main base, a flip limit frame is elastically assembled at the position of the upper feeding chute, and the end of the flip limit frame has an integrally structured limit hook.

[0012] On the inner side surface of the side hanging box body, a plurality of built-in transmission grooves for installing the electronically controlled feeding belt are provided, and the electronically controlled feeding belt is installed inside the side hanging box body in a circular array manner.

[0013] An infrared positioning module is fixedly assembled on the inner wall of the upper feeding chute.

[0014] The beneficial effects of the present invention are:

[0015] (1) The dumbbell storage base with a mobile loading and unloading mechanism of the present invention can not only facilitate the storage by storing and placing the dumbbells in a split manner, but also quickly replace the counterweight blocks as needed, greatly enhancing its operability.

[0016] (2) On both sides of the electronically controlled internal feeding support in the main base, side hanging counterweight block storage boxes for storing the dumbbell counterweight blocks are installed. The split structure layout can facilitate disassembly and assembly, reduce the later maintenance cost and meet the adaptation requirements.

[0017] (3) The electronically controlled internal feeding support in the main base can convey the dumbbells. By conveying the dumbbells, installation and separation can be carried out inside the side hanging counterweight block storage box. The split storage method can facilitate management and adjustment.

[0018] (4) By adopting the methods of electronically controlled conveying and electronically controlled loading and unloading to operate the detachable dumbbells, the operation is more convenient.

[0019] (5) At the upper end of the main base, an electronically controlled flip-up upper feeding cover plate is movably assembled at the position of the upper feeding chute. Cooperating with the flip limit frame on the side wall, it can not only facilitate guiding and operation, but also close the upper feeding chute, improving the durability and tightness inside the equipment.

[0020] (6) By adopting a detachable structure design, the dumbbell can quickly replace the counterweights according to the needs of the user, thus greatly improving its adaptability. There is no need for manual operation to replace the counterweights, and the structural firmness is also greatly improved. Brief Description of the Drawings

[0021] The present invention will be further described below in conjunction with the drawings and embodiments.

[0022] Figure 1 is a schematic structural diagram of the present invention.

[0023] Figure 2 is a schematic internal structure diagram of the side-mounted counterweight storage box of the present invention in the assembled state.

[0024] Figure 3 is a schematic structural diagram of the electric control type internal material guiding bracket of the present invention. Detailed Embodiment

[0025] The present invention will now be described in further detail with reference to the drawings. These drawings are all simplified schematic diagrams, which only illustrate the basic structure of the present invention in a schematic manner. Therefore, they only show the components related to the present invention.

[0026] In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0027] Figure 1 、 Figure 2 and Figure 3 A dumbbell storage seat with a mobile loading and unloading mechanism shown in the figures includes a main base 1 and a detachable dumbbell 2. An electric control type internal material guiding bracket 3 for conveying the detachable dumbbell 2 is movably assembled inside the main base 1. Side-mounted counterweight storage boxes 4 for storing dumbbell counterweights are installed on both sides of the electric control type internal material guiding bracket 3 inside the main base 1. An upper material guiding groove 5 is opened on the upper surface of the main base 1. An electric control type flip-up upper material guiding cover plate 6 is movably assembled at the position of the upper material guiding groove 5 at the upper end of the main base 1.

[0028] Working principle: A liquid crystal control screen for controlling the entire device is fixedly installed at the upper end of the main base 1. The control system of the existing technology inside the liquid crystal control screen is used to control the entire device. People select the required weight on the liquid crystal control screen, and then the handle of the detachable dumbbell 2 is guided downward into the upper feeding chute 5 through the electrically controlled flipping upper feeding cover plate 6. Then, the electrically controlled internal feeding bracket 3 drives the handle of the detachable dumbbell 2 to move to the inside of the side-mounted counterweight storage box 4 at the specified position. Then, the side-mounted counterweight storage box 4 drives the counterweights at the relative positions to be installed on both sides of the handle of the detachable dumbbell 2. Then, separation and discharging are carried out from the side opening of the upper feeding chute 5. The disassembly principle is the same as the installation principle.

[0029] To cooperate with the electrically controlled flipping adjustment, the electrically controlled internal feeding bracket 3 includes a flipping adjustment frame 31 installed inside the upper feeding chute 5, an internal electrically controlled feeding belt 32 installed inside the flipping adjustment frame 31, and an internal adjustment strut 33 for controlling the flipping adjustment frame 31.

[0030] The internal adjustment strut 33 controls the flipping adjustment of the flipping adjustment frame 31 through electric telescoping, and the internal electrically controlled feeding belt 32 on the side wall of the flipping adjustment frame 31 is used to drive the detachable dumbbell 2 to move and adjust inside the upper feeding chute 5.

[0031] To cooperate with the side assembly, lateral loading and unloading ports are symmetrically opened on both sides of the main base 1. The side-mounted counterweight storage box 4 is fixedly connected to the main base 1 by being inserted into the lateral loading and unloading ports through bolts.

[0032] To cooperate with the side-mounted installation, the side-mounted counterweight storage box 4 includes a side-mounted box body 41, an electrically controlled telescopic separation bit 42 installed inside the side-mounted box body 41, two electrically controlled feeding belts 43 installed inside the side-mounted box body 41, and lateral limiting sliders 44 installed on the side walls of the electrically controlled feeding belts 43.

[0033] The electrically controlled feeding belt 43 drives the lateral limiting slider 44 to move and adjust inside the side-mounted box body 41, and the dumbbell counterweights limit and squeeze the lateral limiting slider 44 from both sides.

[0034] To cooperate with the flipping adjustment to control the detachable dumbbell 2 to descend and be guided into the upper feeding chute 5, the electrically controlled flipping upper feeding cover plate 6 includes a top flipping cover plate 61 hinged to the position of the upper feeding chute 5, a lateral flipping strut 62 for controlling the top flipping cover plate 61, an internal transmission frame 63 fixedly installed on the inner wall of the top flipping cover plate 61, an external feeding belt 64 installed inside the internal transmission frame 63, and an external hook 65 fixed on the side wall of the external feeding belt 64.

[0035] The external feeding belt 64 drives the detachable dumbbell 2 on the external hook 65 to descend, and then the detachable dumbbell 2 is lowered and guided onto the upper surface of the electrically controlled internal feeding bracket 3. Then, it is translated and guided to the inner opening position of the side hanging box body 41 through the electrically controlled internal feeding bracket 3. Then, the electrically controlled feeding belt 43 and the lateral limiting flap 44 on the side wall of the electrically controlled feeding belt 43 are used to drive the dumbbell counterweight to move inward and sleeve on the handle of the detachable dumbbell 2. Then, the electrically controlled telescopic separating bit 42 rotates and adjusts the locking bolts at the ends of the handles of the detachable dumbbell 2 from both sides, so as to control the locking bolts to be inserted and fixed on the inner side surface of the dumbbell counterweight, thereby locking the dumbbell counterweight and the handle of the detachable dumbbell 2.

[0036] In order to cooperate with the inner side assembly and adjustment, a lateral turning groove 51 with an upper end opening is provided on the inner side surface of the upper feeding groove 5, and the lateral turning support rod 62 is axially movably installed on the inner wall of the lateral turning groove 51.

[0037] The lateral turning support rod 62 controls the top turning cover plate 61 to turn and adjust through telescoping, so as to change the angle of the top turning cover plate 61.

[0038] In order to cooperate with the top storage, top storage grooves 52 for storing the handles are symmetrically provided on both sides of the upper feeding groove 5 on the upper surface of the main base 1.

[0039] In order to cooperate with the end limit, a turning limit frame 7 is elastically assembled on the front surface of the main base 1 where the upper feeding groove 5 is located, and the end of the turning limit frame 7 has an integrally structured limit hook 71.

[0040] When the detachable dumbbell 2 moves to the lateral opening position of the upper feeding groove 5 along with the electrically controlled internal feeding bracket 3, it will squeeze the turning limit frame 7. The turning limit frame 7 forms a reverse extrusion force through the outer spring extrusion to ensure the guiding support and stability of the detachable dumbbell 2, and then finally the end is limited by the integrally structured limit hook 71.

[0041] In order to cooperate with the inner side installation and transmission, two built-in transmission grooves 45 for installing the electrically controlled feeding belt 43 are provided on the inner side surface of the side hanging box body 41, and the electrically controlled feeding belt 43 is installed inside the side hanging box body 41 in an annular array manner.

[0042] In order to cooperate with the infrared positioning, an infrared positioning module 8 is fixedly assembled on the inner wall of the upper feeding groove 5.

[0043] Through the infrared positioning module 8, the position of the handle of the detachable dumbbell 2 can be accurately positioned, so as to facilitate the control of the electrically controlled feeding belt 43.

[0044] When the handle of the detachable dumbbell 2 is translated inside the upper guide chute 5 driven by the built-in electric control feeding belt 32, and when the handle of the detachable dumbbell 2 moves to the position of the side hanging box body 41, at this time, the infrared positioning module 8 monitors the position of the handle of the detachable dumbbell 2, starts the electric control guide belt 43, uses the electric control guide belt 43 to translate and sleeve the dumbbell counterweight blocks on both sides of the handle of the detachable dumbbell 2, and uses the electric control telescopic separating bit 42 to squeeze and fix the handle of the detachable dumbbell 2 from the outside, so as to clamp and fix the handle of the detachable dumbbell 2, and then uses the electric control telescopic separating bit 42 to rotate and loosen the locking bolt inside the handle of the detachable dumbbell 2, which is convenient for installation and separation.

[0045] Inspired by the above ideal embodiments of the present invention, through the above description, relevant staff can completely make various changes and modifications without departing from the technical idea of this invention. The technical scope of this invention is not limited to the content in the specification, and its technical scope must be determined according to the scope of the claims.

Claims

1. A dumbbell storage base with a mobile loading and unloading mechanism, comprising a main base (1) and a detachable dumbbell (2), characterized in that: An electric control type internal feeding bracket (3) for conveying a detachable dumbbell (2) is movably assembled inside the main base (1). Side-mounted counterweight storage boxes (4) for storing dumbbell counterweights are installed on both sides of the electric control type internal feeding bracket (3) inside the main base (1). An upper feeding groove (5) is formed on the upper surface of the main base (1). An electric control type flipping upper feeding cover plate (6) is movably assembled at the position of the upper feeding groove (5) at the upper end of the main base (1).

2. The dumbbell storage base with a mobile loading and unloading mechanism according to claim 1, characterized in that: The electric control type internal feeding bracket (3) includes a flipping adjustment frame (31) installed inside the upper feeding groove (5), an internal electric control feeding belt (32) installed inside the flipping adjustment frame (31), and an internal adjustment strut (33) for controlling the flipping adjustment frame (31).

3. The dumbbell storage base with a mobile loading and unloading mechanism according to claim 1, characterized in that: Lateral loading and unloading openings are symmetrically formed on both sides of the main base (1). The side-mounted counterweight storage box (4) is fixedly connected to the main base (1) through bolt insertion inside the lateral loading and unloading openings.

4. The dumbbell storage seat with a mobile loading and unloading mechanism according to claim 2, characterized in that: The side-mounted counterweight storage box (4) includes a side-mounted box body (41), an electric control telescopic separating bit (42) installed inside the side-mounted box body (41), a plurality of electric control feeding belts (43) installed inside the side-mounted box body (41), and lateral limiting flappers (44) installed on the side walls of the electric control feeding belts (43).

5. The dumbbell storage base with a mobile loading and unloading mechanism according to claim 1, characterized in that: The electric control type flipping upper feeding cover plate (6) includes a top flipping cover plate (61) hinged at the position of the upper feeding groove (5), a lateral flipping strut (62) for controlling the top flipping cover plate (61), an internal transmission frame (63) fixedly installed on the inner wall of the top flipping cover plate (61), an external feeding belt (64) installed inside the internal transmission frame (63), and an external hook (65) fixed on the side wall of the external feeding belt (64).

6. The dumbbell storage seat with a mobile loading and unloading mechanism according to claim 5, characterized in that: A lateral flipping groove (51) with an upper end opening is formed on the inner side surface of the upper feeding groove (5). The lateral flipping strut (62) is axially movably installed on the inner wall of the lateral flipping groove (51).

7. A dumbbell storage seat with a mobile loading and unloading mechanism according to claim 1, characterized in that: Top-mounted storage grooves (52) for storing handle grips are symmetrically formed on both sides of the upper feeding groove (5) on the upper surface of the main base (1).

8. The dumbbell storage seat with a mobile loading and unloading mechanism according to claim 1, characterized in that: A flipping limit frame (7) is elastically assembled at the position of the upper feeding groove (5) on the front surface of the main base (1). The end of the flipping limit frame (7) has an integrally structured limit hook (71).

9. The dumbbell storage seat with a mobile loading and unloading mechanism according to claim 4, characterized in that: A plurality of internal transmission grooves (45) for installing the electric control feeding belts (43) are formed on the inner side surface of the side-mounted box body (41). The electric control feeding belts (43) are installed inside the side-mounted box body (41) in an annular array manner.

10. A dumbbell storage seat with a mobile loading and unloading mechanism according to claim 1, characterized in that: An infrared positioning module (8) is fixedly assembled on the inner wall of the upper feeding groove (5).