CN219128155U - Rope skipping of function is corrected to area jump appearance - Google Patents

Rope skipping of function is corrected to area jump appearance Download PDF

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Publication number
CN219128155U
CN219128155U CN202223609574.8U CN202223609574U CN219128155U CN 219128155 U CN219128155 U CN 219128155U CN 202223609574 U CN202223609574 U CN 202223609574U CN 219128155 U CN219128155 U CN 219128155U
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rope
jump
clamping unit
clamping
handles
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CN202223609574.8U
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Chinese (zh)
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周金娥
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Jinhua Shuge Technology Co ltd
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Jinhua Shuge Technology Co ltd
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Abstract

The utility model relates to a jump rope with a jump posture correcting function, which comprises a jump rope body and a jump posture correcting clamping part, wherein the jump posture correcting clamping part is used for clamping the inner sides of left and right armpits or left and right large arms of a human body when the jump rope moves, namely, when the jump rope body is held by a human body to carry out the jump rope movement, the jump posture correcting clamping part is used for clamping the inner sides of the left and right armpits or left and right large arms of the human body, so that the opening amplitude of the two arms of the human body can be restrained, thereby helping the human body to correct or standardize the upper limb posture when the jump rope is carried out, and further improving the jump rope number and duration time and the like. The utility model has the advantages of simple and practical structure, good correction effect, flexible use and the like.

Description

Rope skipping of function is corrected to area jump appearance
Technical Field
The utility model relates to the field of sports equipment, in particular to a jump rope with a jump gesture correcting function.
Background
As is known in the art, when people perform rope skipping, the body is required to be upright, eyes can visually see the front, the large arms are close to the two sides of the body after rope skipping, the small arms are close to the middle of the body, the rope is jumped when being hit, knee joints are slightly bent in the rope skipping process, wrists are hard, and breathing is naturally rhythmed. The upper limb posture of a beginner is irregular, for example, the opening amplitude of the double arms is too large, so that the number of rope skipping is small and the duration time is short.
Disclosure of Invention
The utility model aims to overcome the defects of the prior art and provide the skipping rope with the skipping gesture correcting function, which can restrict the opening amplitude of the two arms of a human body when the skipping rope moves, thereby correcting or standardizing the gesture of the upper limbs when the human body skips.
The aim of the utility model is realized by the following technical scheme:
the jump rope with the jump posture correcting function comprises a jump rope body and a jump posture correcting clamping component, wherein the jump posture correcting clamping component is used for clamping the jump rope at the inner sides of the left armpits and the right armpits or the left and the right large arms of a human body during movement.
In a preferred embodiment, the jump posture correcting clamping component comprises two clamping unit bodies which are respectively clamped at the left armpits and the right armpits or the inner sides of the left and the right large arms of the human body when the jump rope moves.
In this preferred embodiment, as a preferred solution, the jump rope body includes two handles, and the two clamping units are respectively connected to the two handles through a connecting rope.
Further, the lengths of the two connecting ropes are adjustable.
Further, the two clamping unit bodies are internally provided with rope winding mechanisms, one ends of the two connecting ropes extend into the two clamping unit bodies respectively and are connected with the rope winding mechanisms, the other ends of the two connecting ropes are detachably fixed on the two handles respectively, the rope winding mechanisms in each clamping unit body can be used for adjusting the lengths of the connecting ropes by outwards stretching or inwards shrinking the connecting ropes connected with the two clamping unit bodies, and the two clamping unit bodies are also respectively provided with limiting mechanisms for limiting the two connecting ropes after being adjusted to the required lengths.
Further, the rope winding mechanism comprises a supporting shaft fixedly arranged, a rope winding wheel rotatably arranged on the supporting shaft and a coil spring, wherein one end of the coil spring is fixed in an inner cavity of the rope winding wheel, the other end of the coil spring is fixed on the rope winding wheel, one ends of two connecting ropes are respectively wound on the corresponding rope winding wheels, and connecting rope perforation holes for the two connecting ropes to extend in/out are respectively arranged on the front end walls of the two clamping unit bodies.
Further, stop gear is including fixed the setting in the clamping unit internal and be located the fixed stopper and the activity setting of connecting rope one side in the clamping unit internal and be located the movable stopper of connecting rope opposite side, the clamping unit internal is equipped with and is used for supplying the gliding arc spout of movable stopper, be equipped with the spring between the one end that deviates from the fixed stopper of movable stopper and the end wall of arc spout, movable stopper supports tightly connecting rope on fixed stopper under the tension effect of spring, the operating portion of movable stopper exposes in the front end one side of clamping unit body, offer the open slot that is used for supplying the operating portion of movable stopper to expose on the front end wall of clamping unit body.
Further, the tail ends of the two handles are detachably connected with a stop cap through threads, the other ends of the two connecting ropes respectively penetrate through the central through holes of the corresponding stop caps and then are detachably connected with a clamp, and the clamp is matched with the inner wall stop of the stop cap.
In this preferred embodiment, as another alternative, the jump rope body includes two handles, and the two clamping units are independent components which are not connected to each other and are not connected to the two handles.
In this preferred embodiment, as a further alternative, the jump rope body includes two handles, and the two clamping units are not connected to the two handles, but are connected to each other by an adjustable length connecting rope.
In another preferred embodiment, the jump posture correcting clamping component is a flexible component with a certain length, the flexible component is provided with a left clamping part and a right clamping part, and the left clamping part and the right clamping part are respectively clamped at the inner sides of the left armpits and the right armpits or the left and the right big arms of the human body during the jump rope movement.
Further, the rope skipping body comprises two handles, and two ends of the flexible component are connected with the two handles through a connecting rope respectively.
Compared with the prior art, the utility model has the following beneficial effects:
the jump rope provided by the utility model has the jump gesture correcting function, specifically, the jump gesture correcting clamping part is clamped at the inner sides of the left armpits and the right armpits or the left and right large arms of a human body, and the opening amplitude of the two arms of the human body can be restrained when the jump rope moves, so that an exerciser, especially a beginner, is helped to correct or standardize the upper limb gesture when the jump rope is performed, the number and the duration of the jump rope are improved, and the jump rope has the advantages of simple and practical structure, good correcting effect, flexible use and the like.
Drawings
Fig. 1 is a rear perspective view schematically showing a preferred embodiment of embodiment 1 of the present utility model.
Fig. 2 is a front perspective view of a preferred embodiment of embodiment 1 of the present utility model.
Fig. 3 is an exploded view of a preferred embodiment of embodiment 1 of the present utility model.
Fig. 4 is a schematic view showing the internal structure of the holding unit in a preferred embodiment of embodiment 1 of the present utility model.
Fig. 5 is a schematic perspective view of another alternative embodiment of embodiment 1 of the present utility model.
Fig. 6 is a schematic perspective view of still another alternative of embodiment 1 of the present utility model.
Fig. 7 is a perspective view of a preferred embodiment of embodiment 2 of the present utility model.
Fig. 8 is a schematic perspective view of a further alternative of embodiment 2 of the present utility model.
Detailed Description
The utility model is described in further detail below with reference to examples given in the accompanying drawings.
As shown in fig. 1, 2, 5, 6, 7 and 8, the present utility model provides a jump rope with jump posture correcting function, which comprises a jump rope body 1 and a jump posture correcting clamping component 2, wherein the jump posture correcting clamping component 2 is used for clamping at the left and right armpits or the inner sides of left and right big arms of a human body when the jump rope moves, that is, when the jump rope body 1 is held by the human body to perform the jump rope movement, the jump posture correcting clamping component 2 is used for clamping at the left and right armpits or the inner sides of left and right big arms of the human body, so that the opening amplitude of two arms of the human body can be restrained, thereby helping the human body correct or standardize the upper limb posture when the jump rope is performed, and further improving the jump rope number and duration time and the like.
Example 1:
as shown in fig. 1, 2, 5 and 6, the jump posture correcting holding member 2 includes two holding unit bodies 21, 22, and the two holding unit bodies 21, 22 are respectively held under the left and right armpits or inside the left and right large arms of the human body when the jump rope moves.
As shown in fig. 1, 2, 3 and 4, as a preferred embodiment, the jump rope body 1 includes two handles 11 and 12 and a rope body 13 connected to front ends of the two handles 11 and 12, and the two clamping units 21 and 22 are respectively connected to the two handles 11 and 12 through one connecting rope 3 and 4.
The lengths of the two connecting ropes 3 and 4 are adjustable, that is, the distance between the two clamping unit bodies 21 and 22 and the two handles 11 and 12 is adjustable, so that the two clamping unit bodies 21 and 22 can meet the clamping requirements of people with different arm lengths during rope skipping.
The two clamping unit bodies 21 and 22 are internally provided with a rope winding mechanism 5, one ends of the two connecting ropes 3 and 4 respectively extend into the two clamping unit bodies 21 and 22 and are connected with the rope winding mechanism 5, and the other ends of the two connecting ropes are respectively and detachably fixed on the two handles 11 and 12. The rope winding mechanism 5 in each clamping unit body 21 or 22 can be used for outwards stretching or inwards shrinking the connecting ropes 3 or 4 connected with the clamping unit bodies to adjust the length of the rope winding mechanism, and the two clamping unit bodies 21 and 22 are respectively provided with a limiting mechanism 6 used for limiting the two connecting ropes 3 and 4 after the two connecting ropes are adjusted to the required length.
The rope winding mechanism 5 comprises a supporting shaft 51 fixedly arranged, a rope winding wheel 52 rotatably arranged on the supporting shaft 51, and a coil spring 53 arranged in the inner cavity of the rope winding wheel 52, one end of the coil spring is fixed on the supporting shaft 51, the other end of the coil spring is fixed on the rope winding wheel 52, one ends of the two connecting ropes 3 and 4 are respectively wound on the corresponding rope winding wheels 52, and connecting rope penetrating holes 211 and 221 for enabling the two connecting ropes 3 and 4 to extend in/out are respectively arranged on the front end walls of the two clamping unit bodies 21 and 22.
The limiting mechanism 6 comprises a fixed limiting block 61 fixedly arranged in the clamping unit body 21 or 22 and positioned on one side of the connecting rope 3 or 4 and a movable limiting block 62 movably arranged in the clamping unit body 21 or 22 and positioned on the other side of the connecting rope 3 or 4, an arc-shaped chute 212 or 222 for sliding the movable limiting block 62 is arranged in the clamping unit body 21 or 22, a spring 63 is arranged between one end of the movable limiting block 62, which is far away from the fixed limiting block 61, and the end wall of the arc-shaped chute 212 or 222, the movable limiting block 62 abuts against the connecting rope 3 or 4 on the fixed limiting block 61 under the tension of the spring 63, an operation part 621 of the movable limiting block 62 is exposed on one side of the front end of the clamping unit body 21 or 22, and an opening groove 213 or 223 for exposing the operation part 621 of the movable limiting block 62 is formed in the front end wall of the clamping unit body 21 or 22.
When the length of the two connecting ropes 3 and 4 needs to be increased, the exerciser only needs to apply a certain force (the force should overcome the resistance of the springs 63 acting on the movable limiting blocks 62 and the resistance of the coil springs 53 acting on the rope winding wheels 52 in the two clamping unit bodies 21 and 22) to stretch the two connecting ropes 3 and 4 outwards to the required length.
When the length of the two connecting ropes 3 and 4 needs to be shortened, an exerciser only needs to press the operation part 621 of the movable limiting block 62 on the two clamping unit bodies 21 and 22 to move in the direction away from the fixed limiting block 61, so that the two connecting ropes 3 and 4 are loosened, at the moment, the resilience force of the coil springs 53 in the two clamping unit bodies 21 and 22 drives the rope winding wheels 52 to drive the two connecting ropes 3 and 4 to retract inwards, and when the rope winding wheels retract to the position with the required length, the operation part of the movable limiting block 62 on the two clamping unit bodies 21 and 22 is loosened again, so that the limiting and the tightening of the two connecting ropes 3 and 4 can be restored.
The tail ends of the two handles 11 and 12 are detachably connected with a stop cap 111 and 121 through threads, the other ends of the two connecting ropes 3 and 4 respectively pass through central through holes 1111 and 1211 of the corresponding stop caps 111 and 121 and are detachably connected with a clamp 7, and the clamp 7 is in stop fit with the inner walls of the stop caps 111 and 121, so that the other ends of the two connecting ropes 3 and 4 are respectively detachably fixed on the two handles 11 and 12.
When the exerciser is skilled in grasping the correct jump posture without using the jump posture correcting clamping member, the two clamping unit bodies 21, 22 together with the two connecting ropes 3, 4 can be detached from the two handles 11, 12, and specifically, when the two connecting ropes 3, 4 are detached from the clip 7 only by detaching the stopper caps 111, 121, and then the two connecting ropes 3, 4 are pulled out of the stopper caps 111, 121.
As another alternative, as shown in fig. 5, the jump rope body 1 includes two handles 11, 12 and a rope body 13 connected to the front ends of the two handles 11, 12, and the two clamping units 21, 22 are independent components which are not connected to each other and are not connected to the two handles 11, 12.
As still another alternative, as shown in fig. 6, the jump rope body 1 includes two handles 11, 12 and a rope body 13 connected to the front ends of the two handles 11, 12, the two clamping units 21, 22 are not connected to the two handles 11, 12, but the two clamping units 21, 22 are connected to each other by the adjustable length connecting rope 8, and the length adjusting structure of the adjustable length connecting rope 8 can be designed with reference to the length adjusting structures of the two connecting ropes 3, 4.
Example 2:
as shown in fig. 7 and 8, the jump posture correcting holding member 2 is a flexible member 9 having a certain length, and the flexible member 9 has left and right holding portions 91, 92, the left and right holding portions 91, 92 being respectively held under the left and right armpits or inside the left and right large arms of the human body for the jump rope movement.
Preferably, the jump rope body 1 comprises two handles 14, 15 and a rope body 16 connected to the front ends of the two handles 14, 15, and two ends of the flexible member 9 are respectively connected with the two handles 14, 15 through a connecting rope 10.
Alternatively, the two ends of the flexible member 9 may not be connected to the two handles 14, 15.
The foregoing description is only illustrative of the preferred embodiments of the present utility model and is not intended to limit the scope of the utility model, i.e., the utility model is not limited to the specific embodiments described herein, but is to be accorded the full scope of the claims.

Claims (12)

1. The utility model provides a take jump rope of gesture correction function which characterized in that: the jump rope comprises a jump rope body and a jump gesture correcting and clamping component, wherein the jump gesture correcting and clamping component is used for clamping the jump rope at the inner sides of the left armpits and the right armpits or the left and the right large arms of a human body during movement.
2. The jump rope with jump posture correcting function according to claim 1, wherein: the jump gesture correcting and clamping component comprises two clamping unit bodies which are respectively clamped at the inner sides of the left armpits and the right armpits or the left and the right big arms of a human body when the jump rope moves.
3. The jump rope with jump posture correcting function according to claim 2, wherein: the skipping rope body comprises two handles, and the two clamping unit bodies are connected with the two handles through a connecting rope respectively.
4. A jump rope with jump posture correcting function according to claim 3, characterized in that: the lengths of the two connecting ropes are adjustable.
5. The jump rope with jump posture correcting function according to claim 4, wherein: the two clamping unit bodies are internally provided with rope winding mechanisms, one ends of the two connecting ropes extend into the two clamping unit bodies respectively and are connected with the rope winding mechanisms, the other ends of the two connecting ropes are detachably fixed on the two handles respectively, the rope winding mechanisms in each clamping unit body can be used for adjusting the lengths of the connecting ropes by outwards stretching or inwards shrinking the connecting ropes connected with the two clamping unit bodies, and the two clamping unit bodies are also respectively provided with limiting mechanisms for limiting the two connecting ropes after the two connecting ropes are adjusted to the required lengths.
6. The jump rope with jump posture correcting function according to claim 5, wherein: the rope winding mechanism comprises a supporting shaft, a rope winding wheel and a coil spring, wherein the supporting shaft is fixedly arranged, the rope winding wheel is rotatably arranged on the supporting shaft, the coil spring is arranged in an inner cavity of the rope winding wheel, one end of the coil spring is fixed on the supporting shaft, the other end of the coil spring is fixed on the rope winding wheel, one ends of two connecting ropes are respectively wound on the corresponding rope winding wheels, and connecting rope perforation holes for the two connecting ropes to extend in/out are respectively arranged on front end walls of the two clamping unit bodies.
7. The jump rope with jump posture correcting function according to claim 5, wherein: the limiting mechanism comprises a fixed limiting block fixedly arranged in a clamping unit body and positioned on one side of a connecting rope and a movable limiting block movably arranged in the clamping unit body and positioned on the other side of the connecting rope, an arc-shaped chute used for the movable limiting block to slide is arranged in the clamping unit body, a spring is arranged between one end, deviating from the fixed limiting block, of the movable limiting block and the end wall of the arc-shaped chute, the movable limiting block abuts against the connecting rope under the tension action of the spring, an operation part of the movable limiting block is exposed out of one side of the front end of the clamping unit body, and an opening groove used for exposing the operation part of the movable limiting block is formed in the front end wall of the clamping unit body.
8. The jump rope with jump posture correcting function according to claim 5, wherein: the tail ends of the two handles are detachably connected with a stop cap through threads, the other ends of the two connecting ropes respectively penetrate through the central through holes of the corresponding stop caps and then are detachably connected with a clip, and the clip is matched with the inner wall stop of the stop cap.
9. The jump rope with jump posture correcting function according to claim 2, wherein: the rope skipping body comprises two handles, and the two clamping unit bodies are independent components which are not connected with each other and are not connected with the two handles.
10. The jump rope with jump posture correcting function according to claim 2, wherein: the skipping rope body comprises two handles, the two clamping unit bodies and the two handles do not generate connection relation, but the two clamping unit bodies are connected with each other through the length-adjustable connecting rope.
11. The jump rope with jump posture correcting function according to claim 1, wherein: the jump gesture correcting clamping part is a flexible part with a certain length, the flexible part is provided with a left clamping part and a right clamping part, and the left clamping part and the right clamping part are used for respectively clamping the inner sides of the left armpit and the right armpit or the left and the right big arms of a human body during the jump rope movement.
12. The jump rope with jump posture correcting function according to claim 11, wherein: the rope skipping body comprises two handles, and two ends of the flexible component are connected with the two handles through a connecting rope respectively.
CN202223609574.8U 2022-12-28 2022-12-28 Rope skipping of function is corrected to area jump appearance Active CN219128155U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223609574.8U CN219128155U (en) 2022-12-28 2022-12-28 Rope skipping of function is corrected to area jump appearance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223609574.8U CN219128155U (en) 2022-12-28 2022-12-28 Rope skipping of function is corrected to area jump appearance

Publications (1)

Publication Number Publication Date
CN219128155U true CN219128155U (en) 2023-06-06

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223609574.8U Active CN219128155U (en) 2022-12-28 2022-12-28 Rope skipping of function is corrected to area jump appearance

Country Status (1)

Country Link
CN (1) CN219128155U (en)

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