The present application claims the priority benefit of China application No. 202220387031.7, filed on Feb. 24, 2022. The entirety of China application No. 202220387031.7 is incorporated herein by reference and made a part of this specification.
The present application relates to the technical field of fitness equipment, and particularly to a weight-adjustable dumbbell and dumbbell assembly.
Dumbbell is a common fitness equipment. At present, there are dumbbells with a fixed weight or an adjustable weight on the market.
A user needs to use a set of weight-fixed dumbbells to meet the requirements on fitness. A weight-adjustable dumbbell generally includes a central shaft, a plurality of dumbbell plates that are successively connected to both ends of the central shaft and locking nuts that are respectively threaded to the both ends of the central shaft. In particular, the dumbbell plates on the central shaft are increased or decreased, the locking nuts screw for adjusting positions thereof on the central shaft, so that the dumbbell plates abut with each other, and thus adjusting the weight of the dumbbell.
In the above related technology, when the weight of the dumbbell needs to be changed, each time the locking nuts are required to be detached firstly, the dumbbell plates are installed and then the locking nuts are tightly screwed. Therefore, the installation process is complicated and time-consuming, which is inconvenient for adjusting the weight of the dumbbell.
In order to adjust the weight of the dumbbell, the present application provides a weight-adjustable dumbbell and a dumbbell assembly.
In a first aspect, a weight-adjustable dumbbell according to the present application adopts the following technical solution.
A weight-adjustable dumbbell includes a grip rod assembly and a dumbbell plate, wherein the grip rod assembly comprises an outer rotary rod and a telescopic rod, the telescopic rod is telescopically connected to the outer rotary rod, the telescopic rod movably penetrates through the dumbbell plate, and a limit structure is provided between adjacent dumbbell plates for restricting an axial movement between the adjacent dumbbell plates.
In the above technical solution, rotating the outer rotary rod can drive the telescopic rod to lengthen or shorten, and the telescopic rod can be movably inserted into the position of the dumbbell plates to limit the movement of a plurality of dumbbell plates along radial direction at the same time. Further, by limiting the axial movement of adjacent dumbbells via the limit structure, a plurality of dumbbell plates can be lifted. Therefore, in the present application, only rotating the outer rotary rod can adjust the telescopic length of the telescopic rod, that is, different number dumbbell plates can be selected to facilitate adjusting weight of the dumbbell.
In particular, the limit structure comprises an inserting block and an inserting slot, and wherein an outer peripheral surface of the inserting block has a first guiding inclined surface, an inner peripheral surface of the inserting slot has a second guiding inclined surface, and the adjacent dumbbell plates are fitted with each other by means of the first guiding inclined surface and the second guiding inclined surface.
In the above technical solution, when the inserting block is inserted into the inserting slot, the first guiding inclined surface and the second guiding inclined surface are buckled with each other, so that the inserting block and the inserting slot cannot be detached in the axial direction of the dumbbell plate, thereby limiting the adjacent dumbbell plates to moving along the axial direction.
In particular, the inserting block is positioned within an outer peripheral surface of one side of the dumbbell plate.
In the above technical solution, the inserting block is positioned in outer peripheral surface of the dumbbell plate, so that the dumbbell plate can protect the inserting block. When the dumbbell is used, the probability of the inserting block colliding with objects can be reduced, so as to reduce the damage probability of dumbbell plates.
In particular, the dumbbell includes a plate body, a first weight block and a second weight block, the first weight block and the second weight block respectively connect to both sides of the plate body, an inserting slot is formed on the first weight block, and an inserting block is provided on the second weight block.
In the above technical solution, the dumbbell is divided into a plate body and a weight block, which are made of different materials, so that the cost can be saved and it is easy to be repaired and replaced if damaged in the later stage.
In particular, a positioning block is provided on one side of each of the first weight block and the second weight block, and a positioning slot is formed on each of both sides of the plate body for the positioning block to be inserted.
In the above technical solution, the positioning block is inserted into the positioning slot, then the mounted position of the first weight block and the second weight block on the plate body can be pre-positioned, so that the first weight block and the second weight block are conveniently connected to the plate body.
In particular, a positioning part is provided on the outer rotary rod, a spiral slot is formed on an outer peripheral surface of the telescopic rod, and the positioning part is inserted into the spiral slot.
In the above technical solution, the positioning part is inserted into the spiral slot, when the outer rotary rod is rotated, the positioning part can move along the spiral direction of the spiral slot and force the telescopic rod to lengthen or shorten along the axial direction.
In particular, a positioning part is provided at one end of the telescopic rod, a spiral slot is formed on an inner peripheral surface of the outer rotary rod, and the positioning part is inserted into the spiral slot.
In the above technical solution, the positioning part is inserted into spiral slot, when the outer rotary rod is rotated, the positioning part is moved along the spiral direction of the spiral slot and forces the telescopic rod to lengthen or shorten along the axial direction.
In particular, a convex limiting part is provided on an outer peripheral surface of the telescopic rod, a limiting slot is formed on the dumbbell plate, and the limiting part is inserted into the limiting slot.
In the above technical solution, the telescopic rod is penetrated through the dumbbell plate, and the limiting part is movably penetrated through the limiting slot at the same time. The matching of the limiting part and the limiting slot can limit the telescopic rod to rotating along the circumference direction, so that when the outer rotary rod is rotated to force the telescopic rod to move along the axial direction to improve the telescopic stability of the telescopic rod.
In particular, an inserting block is provided on one side of the dumbbell plate, and an inserting slot is provided on the other side for the inserting block to be inserted.
In the above technical solution, the matching of the inserting block and the inserting slot can limit the dumbbell plate to moving along the radial direction, so that the dumbbell plates can be limited to each other. When a plurality of the dumbbell plates is lifted, the plurality of the dumbbell plates can be stably connected to the telescopic rod.
In particular, the weight-adjustable dumbbell further includes a locking assembly, wherein the locking assembly comprises a locking plate and a locking head, and the locking plate and the outer rotary rod are able to be synchronously rotated.
In the above technical solution, when the locking head is unlocked the rotation of the locking plate, the locking plate and the outer rotary rod are rotated synchronously, so that the different number of the dumbbells can be selected. When the locking head is locked the rotation of the locking plate, the locking plate and the outer rotary rod cannot be rotated, so that the telescopic rod cannot be moved along the radial direction, the dumbbell plate is not easy to fall off after hanging to improve the security during exercising.
In particular, a plurality of locking slots are formed on the inner peripheral surface of the locking plate along a circumferential direction, the locking head is inserted to or staggered with the locking slot such that rotation of the locking plate is locked or unlocked.
In the above technical solution, the rotation of the outer rotary rod can drive the locking plate to rotate, and the locking head is inserted into the locking slot corresponding with the locking plate to lock the locking plate. When the locking head is detached from the locking slot corresponding to the locking plate, the locking plate is unlocked.
In particular, the locking assembly further includes an elastic element, which can force the locking head to have a movement trend to be inserted into the locking slot.
In the above technical solution, the elastic element forces the locking head to insert into the locking slot, when the dumbbell is lifted, the locking stability of the locking plate can be improved, so as to improve the security of the dumbbell during used.
In particular, the locking assembly further includes a locking housing rotationally connected with the locking plate, the locking housing is provided with an accommodating slot for sliding insertion of the locking head, one end of the elastic element abuts against the bottom of the accommodating slot, and the other end abuts against one end surface of the locking head.
In the above technical solution, the accommodating slot can provide a space for sliding of the locking head, so as to improve the moving stabilities of the locking head and the elastic element.
In a second aspect, the present application provides a dumbbell assembly, which adopts the following technical solution.
A dumbbell assembly includes one or more weight-adjustable dumbbells weight-adjustable dumbbell as mentioned above and a dumbbell base, a convex block is provided on the dumbbell base, the convex block abuts against a locking head, and the locking head is staggered with a locking slot.
In the above technical solution, when the dumbbell is positioned on the dumbbell base, the convex block is abutted against the locking head and detached the locking head from the locking slot, that is, the locking plate is unlocked, and the outer rotary rod is rotated to adjust the number of the dumbbell plates.
In summary, the present application has at least one of the following beneficial technical effects:
The present application will be described in detail below in combination with the drawings 1-17.
The present application provides a dumbbell assembly. Referring to
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In addition, it should be noted that, in order to facilitate picking and placing of the dumbbell plate 2, for one set of limit structures 3 in which an inserting block 30 and an inserting slot 31 are fitted with each other, in an assembly manner in which the inserting block 30 backs onto the center of the grip rod assembly 1, the inserting slot 31 is formed from top to bottom without penetrating at the bottom of the inserting slots 31, and in an assembly manner in which the inserting slot 31 backs onto the center of the grip rod assembly 1, the inserting slot 31 is formed from bottom to top without penetrating at the top of the inserting slots 31.
The inserting block 30 is arranged within in the outer peripheral surface of a side of the dumbbell plate 2. In this way, when the dumbbell plate 2 is contacted with the other objects, colliding of the inserting block 30 with the objects can be avoided, which can further reduce the possibility of the damage of dumbbell plate 2.
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An accommodating slot 44 is formed on one side of the locking housing 40, and the locking plate 41 is positioned in the accommodating slot 44. The locking plate 41 is able to rotate in the accommodating slot 44. A sliding slot 45 is formed at a lower end of the locking housing 40 for sliding of locking head 42, which communicates with the accommodating slot 44.
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In an embodiment of the present application, the elastic element 43 is preferably a compression spring. In order to improve the locking stability of the locking plate 41, one end of the elastic element 43 abuts against the bottom of the sliding slot 45, and the other end abuts against the top end of the abutting part 422, so that the abutting part 422 is always forced to have a tendency to insert into the locking slot 46.
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When the abutting part 422 is staggered with the locking slot 46, the elastic element 43 is compressed, the outer peripheral portion of the locking plate 41 and the locking block 47 are rotated in the avoidance slot 424, and the locking plate 41 is unlocked to rotate again. That is, the locking plate 41 is in an unlocking state, in which the outer rotary rod 10 is able to rotate.
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The first plate 22 includes a first plate body 220 and a first weight block 221. The first weight block 221 is connected to a side of the first plate body 220 away from the outer rotary rod 10. A first inserting slot 222 for insertion of the locking housing 40 is formed on a side of the first plate body close to the first weight block 221. A through hole 20 and a limiting hole 21 are provided on the first plate body 220 and the first weight block 221.
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A fixing piece 223 is provided between the first plate body 220 and the first weight block 221. The fixing piece 223 is movably sleeved on the telescopic rod 11. A positioning slot 224 for accommodating the fixing piece 223 is formed on one side of the first weight block 221, and an inserting block 30 is provided on the other side of the first weight block 221.
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The implementation principle of the weight-adjustable dumbbell and dumbbell assembly in the present application is as follows: when the dumbbell is placed on the dumbbell base 5, the locking plate 41 is unlock, then the extension length of the telescopic rod 11 can be adjusted by rotating the outer rotary rod 10, so that the telescopic rod 11 can be inserted into the corresponding dumbbell plate 2, and adjacent dumbbell plates 2 can be connected by the limit structure 3.
After the dumbbell plate 2 is selected and lifted, the locking plate 41 is in a locking state, the outer rotary rod 10 cannot be rotated, and the dumbbell plate 2 cannot be detached, so that the safety of the users can be ensured.
The above are the preferred embodiments of the present application, which are not intended to limit the protection scope of the present application. Therefore, all equivalent changes made according to the structure, shape and principle of the present application should be covered within the protection scope of the present application.
1. Grip rod assembly; 10. Outer rotary rod; 11. Telescopic rod; 12. Telescopic hole; 13. Guide column; 14. Guide hole; 15. Spiral slot; 16. Limiting part; 17. Limiting flange; 18. Key plane; 19. Positioning part;
2. Dumbbell plate; 20. Through hole; 21. Limiting hole; 22. First plate; 23. Second plate; 24. Third plate; 25. Forth plate; 26. Fifth plate; 220. First plate body; 221. First weight block; 222. First inserting slot; 223. Fixing piece; 224. Positioning slot; 225. Positioning block; 231. Second weight block;
3. Limiting structure; 30. Inserting block; 31. Inserting slot; 32. First guiding inclined surface; 33. Second guiding inclined surface;
4. Locking assembly; 40. Locking housing; 41. Locking plate; 42. Locking head; 43. Elastic element; 44. Accommodating slot; 45. Sliding slot; 46. Locking slot; 47. Locking block; 48. Limiting ring slot; 49. Central hole; 421. Connecting part; 422. Abutting part; 423. Trigger part; 424. Avoidance slot; 410. Key convex block; and
5. Dumbbell base; 50. Placing slot; 51. Mounting slot; 52. Convex block.
Number | Date | Country | Kind |
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202220387031.7 | Feb 2022 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
8529415 | Svenberg | Sep 2013 | B2 |
8715143 | Svenberg | May 2014 | B2 |
10583318 | Nalley | Mar 2020 | B2 |
11167167 | Weng | Nov 2021 | B1 |
20090305852 | Hoglund | Dec 2009 | A1 |
20100304940 | Svenberg | Dec 2010 | A1 |
Number | Date | Country |
---|---|---|
112587858 | Apr 2021 | CN |
114028764 | Feb 2022 | CN |
M599676 | Aug 2020 | TW |