CN219879020U - Rope skipping handle and rope skipping with same - Google Patents

Rope skipping handle and rope skipping with same Download PDF

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Publication number
CN219879020U
CN219879020U CN202321315064.1U CN202321315064U CN219879020U CN 219879020 U CN219879020 U CN 219879020U CN 202321315064 U CN202321315064 U CN 202321315064U CN 219879020 U CN219879020 U CN 219879020U
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China
Prior art keywords
rope
handle
cap
skipping
rope skipping
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CN202321315064.1U
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Chinese (zh)
Inventor
沈杰
郑璐
史庆新
杨席东
潘龙龙
李玲玉
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Lege Information Technology Shanghai Co ltd
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Lege Information Technology Shanghai Co ltd
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Priority to CN202321315064.1U priority Critical patent/CN219879020U/en
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Abstract

The utility model relates to a rope skipping handle and a rope skipping with the same. The rope skipping handle includes: the anti-skid part, the handle rod and the rope cap; the anti-skid part is spirally sleeved on the handle rod body, and a preset gap is arranged between spiral structures of the anti-skid part; the rope cap is rotatably connected with one end of the handle rod body in the length direction, the rope skipping rope body is suitable for being fixed on the rope cap, and one end of the rope cap, which is away from the handle rod, is of an arc surface structure; concave structures are arranged on the arc surface of the rope cap at intervals. The skipping rope comprises a skipping rope body and a handle; the two handles are respectively connected with two ends of the rope skipping rope body, and at least one of the two handles is the rope skipping handle. The outer part of the rope skipping handle is recessed at the preset gap of the anti-slip part, and the part covered by the anti-slip part is raised, so that the friction force of the rope skipping handle can be increased.

Description

Rope skipping handle and rope skipping with same
Technical Field
The utility model relates to the technical field of sports equipment, in particular to a rope skipping handle and a rope skipping with the same.
Background
The existing rope skipping handle has smooth surface and poor anti-skid effect, and is easy to fall off in the movement process, for example, patent document CN209500624U. The rope skipping handle falls off, so that the movement is stopped, and a certain danger exists.
Therefore, how to improve the anti-slip effect of the rope skipping handle is a problem to be solved by the person skilled in the art.
Disclosure of Invention
In order to improve the anti-slip effect of a rope skipping handle, the utility model provides the rope skipping handle and a rope skipping with the same.
The utility model provides a rope skipping handle for realizing the purpose, which comprises:
the anti-skid part, the handle rod and the rope cap;
the anti-skid part is spirally sleeved on the handle rod body, and a preset gap is arranged between spiral structures of the anti-skid part;
the rope cap is rotatably connected with one end of the handle rod body in the length direction, the rope skipping rope body is suitable for being fixed on the rope cap, and one end of the rope cap, which is away from the handle rod, is of an arc surface structure; concave structures are arranged on the arc surface of the rope cap at intervals.
In one possible implementation, the concave structure is elliptical, and the long diameter of the elliptical structure of the concave structure is consistent with the length direction of the handle bar.
In one possible implementation manner, a connecting hole is formed in the rope cap, the connecting hole is integrally U-shaped, two ends of the U-shaped structure of the connecting hole penetrate out of the outer side wall of the rope cap, and the rope skipping rope body is suitable for being fixed to the rope cap through the connecting hole.
In one possible implementation, the device further comprises an inductor and a display screen;
the two ends of the handle rod body in the long direction are provided with a holding part and a display part, the rope cap is rotatably connected with one end of the display part, which is away from the holding part, and the anti-skid part is sleeved on the holding part;
the display part is provided with an internal cavity, the inductor is positioned in the internal cavity of the display part, the inductor is electrically connected with the display screen, and the display screen is fixed on the outer side wall of the display part.
In one possible implementation, the sensor is provided with a switch, which is fixed to the outer side wall of the display portion.
In one possible implementation manner, one end of the holding part, which faces away from the display part, is in an arc surface structure.
According to another aspect of the present utility model, there is provided a jump rope, comprising:
rope skipping rope body and handle;
the two handles are respectively connected with two ends of the rope skipping rope body, and at least one of the two handles is the rope skipping handle.
The utility model is convenient for a sporter to hold by arranging the handle rod; the anti-slip part is arranged on the outer side wall of the handle rod body in a spiral sleeved mode, a preset gap is arranged between the spiral structures of the anti-slip part, the outer portion of the rope skipping handle is recessed at the preset gap of the anti-slip part, the cover of the anti-slip part is convex, friction force of the rope skipping handle can be increased, compared with the existing rope skipping handle, the surface of the rope skipping handle is smooth, the rope skipping handle is easy to fall off, friction force of the rope skipping handle can be increased, and anti-slip effect of the rope skipping handle is improved.
Drawings
Fig. 1 shows a schematic diagram of the structure of a jump rope according to an embodiment of the utility model;
fig. 2 shows a partial schematic view of a jump rope handle of an embodiment of the utility model.
Detailed Description
Various exemplary embodiments, features and aspects of the utility model will be described in detail below with reference to the drawings. In the drawings, like reference numbers indicate identical or functionally similar elements. Although various aspects of the embodiments are illustrated in the accompanying drawings, the drawings are not necessarily drawn to scale unless specifically indicated.
It should be understood, however, that the terms "length," "width," "height," "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate describing the present utility model or simplify the description, and do not indicate or imply that the devices or elements being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present utility model.
In addition, numerous specific details are set forth in the following description in order to provide a better illustration of the utility model. It will be understood by those skilled in the art that the present utility model may be practiced without some of these specific details. In some instances, well known methods, procedures, components, and circuits have not been described in detail so as not to obscure the present utility model.
Fig. 1 shows a schematic diagram of a rope skipping structure according to an embodiment of the present utility model; fig. 2 shows a partial schematic view of a jump rope handle according to an embodiment of the utility model.
According to an aspect of the present utility model, there is provided a rope skipping handle, as shown in fig. 1, including an anti-slip part 110 and a handle bar and a rope cap 130; the anti-slip part 110 is spirally sleeved on the handle rod body, a preset gap is arranged between spiral structures of the anti-slip part 110, the rope cap 130 is rotatably connected with one end of the handle rod body in the long direction, the rope skipping rope body is suitable for being fixed on the rope cap 130, and one end of the rope cap 130, which is away from the handle rod, is of an arc surface structure; the arc surface of the rope cap 130 is provided with concave structures 131 at intervals, namely, the rope cap 130 is provided with more than two concave structures 131, and the more than two concave structures 131 are distributed on the arc surface of the rope cap 130 at intervals.
The utility model is convenient for a sporter to hold by arranging the handle rod; by arranging the anti-slip part 110, the anti-slip part 110 is spirally sleeved on the outer side wall of the handle rod body, a certain preset gap is reserved between the spiral structures of the anti-slip part 110, the outer part of the rope skipping handle is sunken at the preset gap of the anti-slip part 110, and the cover part of the anti-slip part 110 is convex, so that the friction force of the rope skipping handle can be increased.
According to the utility model, the rope cap 130 is arranged, and the rope cap 130 is rotatably connected with the handle rod, so that an installation foundation is provided for the rope skipping rope body, and the rope skipping body is prevented from being wound on the rope skipping handle due to rotation in the rope skipping process. The end of the rope cap 130, which is far away from the handle rod, is close to the end of the rope skipping handle, is provided with an arc surface, the angle is smooth, and a person who moves is prevented from being scratched. The rope cap 130 is convenient to grasp or press by a sporter, and the cambered surface of the rope cap 130 is pressed when the length of the rope is connected or adjusted, so that the rope cap 130 is prevented from rotating in disorder, and the rope cap is difficult to operate.
In one possible implementation, the end of the handle bar is of a rounded configuration, with a smooth angle that prevents scratching the athlete.
In one possible implementation, the anti-slip portion 110 is made of an elastic material, which has a certain elasticity, and is convenient for a sporter to grasp, so that the abrasion damage of the rope skipping handle to the hand during the exercise is reduced. Further, the anti-slip part 110 adopts the sponge, can absorb sweat in the motion process, increases the friction force of the rope skipping handle, and increases the anti-slip effect of the rope skipping handle.
In one possible implementation, the device further comprises a rotating shaft; the rope cap 130 and the handle rod are rotatably connected through the rotating shaft, the opposite ends of the rotating shaft are respectively connected with the rope cap 130 and the handle rod, and the opposite ends of the rotating shaft are provided with limiting parts, so that the connection stability is improved, and the rope cap 130 is prevented from falling off in the movement process. Further, the rope cap 130 is provided with an inner cavity with one end opened, the rope cap 130 further comprises an upper cover which covers the opened end of the rope cap 130 and is detachably connected with the rope cap 130, and the handle rod is provided with an inner cavity. The rotation axis is from the inside cavity of handle pole, and handle pole and upper cover are worn out in proper order to the one end of handle pole shaft-like structure, and the one end that the rotation axis left the inside cavity of handle pole is equipped with spacing portion, and the one end that the rotation axis worn out the upper cover is equipped with spacing portion. The perforation of the rotating shaft at the handle rod and the upper cover is matched with the rotating shaft, and a certain movable gap is arranged between the inner side wall of the perforation and the rotating shaft. The present utility model realizes rotatable connection of the rope cap 130 and the handle bar by providing the rotation shaft.
In one possible implementation, the concave structure 131 is elliptical, and the long diameter of the elliptical structure of the concave structure 131 coincides with the length direction of the body of the handle bar.
In one possible implementation, more than two recessed structures 131 are circumferentially distributed about the rotational axis of rope cap 130.
In one possible implementation, the end of the cap 130 facing away from the handle bar is generally semi-elliptical in cross-section.
In one possible implementation, the rope cap 130 is internally provided with a connection hole, the connection hole is integrally U-shaped, two ends of the U-shaped structure of the connection hole penetrate out of the outer side wall of the rope cap 130, and the rope skipping rope body is suitable for being fixed on the rope cap 130 through the connection hole. One end of the rope skipping rope body penetrates into the rope cap 130 from one end of the U-shaped structure of the connecting hole, and the rope cap 130 penetrates out from the other end of the U-shaped structure of the connecting hole. The length of the rope body of the rope skipping is convenient to adjust, and the rope skipping rope is suitable for the requirements of different sporters on the length of the rope skipping.
In one possible implementation, the rope cap 130 is provided with a first hole and a second hole therethrough, and the jump rope body is adapted to be fixed to the rope cap 130 through the first hole and the second hole. The end part of the rope skipping rope body passes through the first hole, rotates to the second hole position and passes through the second hole, thus completing one-time adjustment and installation.
In one possible implementation, the device further comprises a fixing member; the fixing piece is provided with the hole of stepping down in a penetrating way, and the fixing piece is suitable for being connected with the rope skipping rope body. The end of the rope skipping rope body passes through a relief hole of the fixing member and then is connected with the rope cap 130, and then passes through the relief hole of the fixing member again, and at this time, one-time adjustment and installation are completed. The skipping rope is fixed on the skipping rope handle through the rope cap 130, the connecting stability of the skipping rope body and the skipping rope handle is further enhanced by adding the fixing piece,
in one possible implementation manner, the connecting hole is in a U-shaped structure, the fixing piece is provided with a yielding hole, friction is utilized to reduce the sliding of the rope skipping rope body and the handle in the moving process, and the rope skipping rope body is prevented from being in play.
In one possible implementation manner, the connecting hole penetrates through the first hole and the second hole, the fixing piece is provided with a yielding hole, and friction force is utilized to reduce sliding of the rope skipping rope body and the handle in the moving process, so that the rope skipping rope body is prevented from being out.
In one possible implementation, the fixture has two relief holes, and the jump rope body is adapted to be fixed to the rope cap 130 through the first hole and the second hole of the rope cap 130. The end of the rope skipping rope body passes through one relief hole of the fixing member, then is connected with the rope cap 130, and then passes through the other relief hole of the fixing member, and at this time, one-time adjustment and installation are completed.
In one possible implementation, further comprises an inductor and display 150; the two ends of the handle rod body in the length direction are provided with a holding part 121 and a display part 122, the rope cap 130 is rotatably connected with one end of the display part 122, which is away from the holding part 121, and the anti-skid part 110 is sleeved on the holding part 121; the display part 122 is provided with an internal cavity, the sensor is positioned in the internal cavity of the display part 122 and is electrically connected with the display screen 150, the display screen 150 is fixed on the outer side wall of the display part 122, and the display surface of the display screen 150 is arranged away from the display part 122; the display 150 and the anti-slip part 110 are respectively located at opposite ends of the handle bar. The type of setting up the inductor is selected, can respond to the motion data such as the rotational speed of rope skipping rope body, rope skipping number of times and external temperature to show through the display, make things convenient for the record and the motion monitoring of sporter. The rope cap 130 is rotatably connected with one end of the display part 122, which is away from the holding part 121, so that a sporter pauses movement, continues to hold the holding part 121, and lifts hands to view the content of the display screen 150, thereby facilitating the sporter to view the content of the display screen 150.
Further, the sensor is a counter.
In one possible implementation, the sensor is provided with a switch 141, and the switch 141 is fixed to the outer wall of the display portion 122. The sporter decides whether this motion starts the inductor according to needs, and flexible control is energy-concerving and environment-protective.
In one possible implementation manner, the rope skipping handle is integrally cylindrical, the outer parts of the holding part 121, the display part 122 and the anti-slip part 110 are integrally cylindrical, the axial directions of the columnar structures of the holding part 121, the display part 122 and the anti-slip part 110 are consistent, one end of the rope cap 130, which is away from the display part 122, is provided with an arc surface, and one end of the holding part 121, which is away from the display part 122, is provided with an arc surface, so that the rope skipping handle has a certain protection effect on a sporter and prevents scratches.
Further, the switches 141 and the display 150 are adjacently distributed along the axial direction of the columnar structure of the display 122, the switches 141 are disposed close to the holding portion 121, and the display 150 is disposed far from the holding portion 121. The switch 141 is disposed near the grip 121 to facilitate the operator's control and view the information of the display 150.
In one possible implementation, the switch 141 is a push button switch 141, and the push button switch 141 is generally oblong. Low cost, easy obtaining and simple operation.
According to another aspect of the present utility model, there is provided a jump rope, comprising: the rope skipping rope comprises a rope body and two handles; the opposite ends of the rope skipping rope body are respectively connected with the two handles. At least one of the two handles is the rope skipping handle, and the rope skipping rope body is rotatably connected with the rope skipping handle through a rope cap 130. Compared with the existing skipping rope, the anti-skid effect of the skipping rope handle is improved.
In one possible implementation, the two handles are both the rope skipping handles, and opposite ends of the rope skipping rope body are respectively rotatably connected with one ends of the two rope skipping handles, and two ends of the rope skipping rope body are rotatably connected with the rope skipping handles through rope caps 130. Further, the rope skipping handle further comprises an inductor and a display screen 150, the handle rod comprises a display part 122 and a holding part 121, the display part 122 is connected with the holding part 121, and one end of the display part 122, which is away from the holding part 121, is rotatably connected with the rope cap 130.
In one possible implementation, the rope cap 130 of the rope skipping handle is internally provided with a connecting hole, the connecting hole is integrally U-shaped, and two ends of the U-shaped structure of the connecting hole penetrate out of the outer side wall of the rope cap 130. One end of the rope skipping rope body penetrates into the rope cap 130 from one end of the U-shaped structure of the connecting hole, and the rope cap 130 penetrates out from the other end of the U-shaped structure of the connecting hole. The length of the rope body of the rope skipping is convenient to adjust, and the rope skipping rope is suitable for the requirements of different sporters on the length of the rope skipping.
The foregoing description of embodiments of the utility model has been presented for purposes of illustration and description, and is not intended to be exhaustive or limited to the embodiments disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the various embodiments described. The terminology used herein was chosen in order to best explain the principles of the embodiments, the practical application, or the improvement of technology in the marketplace, or to enable others of ordinary skill in the art to understand the embodiments disclosed herein.

Claims (7)

1. A jump rope handle, comprising:
the anti-skid part, the handle rod and the rope cap;
the anti-skid part is spirally sleeved on the handle rod body, and a preset gap is arranged between spiral structures of the anti-skid part;
the rope cap is rotatably connected with one end of the handle rod body in the length direction, the rope skipping rope body is suitable for being fixed on the rope cap, and one end of the rope cap, which is away from the handle rod, is of an arc surface structure; concave structures are arranged on the arc surface of the rope cap at intervals.
2. The jump rope handle of claim 1, wherein the recessed structure is oval, and a long diameter of the oval structure of the recessed structure coincides with a body length direction of the handle bar.
3. The rope skipping handle according to claim 1, wherein a connecting hole is formed in the rope cap, the connecting hole is integrally U-shaped, two ends of the U-shaped structure of the connecting hole penetrate out of the outer side wall of the rope cap, and the rope skipping rope body is suitable for being fixed on the rope cap through the connecting hole.
4. The jump rope handle of claim 1, further comprising an inductor and a display screen;
the two ends of the handle rod body in the long direction are provided with a holding part and a display part, the rope cap is rotatably connected with one end of the display part, which is away from the holding part, and the anti-skid part is sleeved on the holding part;
the display part is provided with an internal cavity, the inductor is positioned in the internal cavity of the display part, the inductor is electrically connected with the display screen, and the display screen is fixed on the outer side wall of the display part.
5. The rope-skipping handle of claim 4 wherein said inductor is provided with a switch, said switch being secured to the outer side wall of said display.
6. The rope skipping handle of claim 5, wherein the end of the gripping portion facing away from the display portion is of an arcuate configuration.
7. A jump rope, comprising:
rope skipping rope body and handle;
the two handles are respectively connected with two ends of the rope skipping rope body, and at least one of the two handles is the rope skipping handle according to any one of claims 1 to 6.
CN202321315064.1U 2023-05-26 2023-05-26 Rope skipping handle and rope skipping with same Active CN219879020U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321315064.1U CN219879020U (en) 2023-05-26 2023-05-26 Rope skipping handle and rope skipping with same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321315064.1U CN219879020U (en) 2023-05-26 2023-05-26 Rope skipping handle and rope skipping with same

Publications (1)

Publication Number Publication Date
CN219879020U true CN219879020U (en) 2023-10-24

Family

ID=88396990

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321315064.1U Active CN219879020U (en) 2023-05-26 2023-05-26 Rope skipping handle and rope skipping with same

Country Status (1)

Country Link
CN (1) CN219879020U (en)

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