CN216456805U - Ball returning device for training - Google Patents

Ball returning device for training Download PDF

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Publication number
CN216456805U
CN216456805U CN202122259479.9U CN202122259479U CN216456805U CN 216456805 U CN216456805 U CN 216456805U CN 202122259479 U CN202122259479 U CN 202122259479U CN 216456805 U CN216456805 U CN 216456805U
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ball
unit
training
ball returning
limiting
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CN202122259479.9U
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Chinese (zh)
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颜宏达
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Hongchang International Co ltd
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Hongchang International Co ltd
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Abstract

The utility model provides a ball returning device for training, which comprises a supporting unit, a ball returning unit pivoted on the supporting unit, and a limiting unit formed between the supporting unit and the ball returning unit and used for stabilizing the ball returning unit at a first included angle. The ball returning unit comprises a plate which has elasticity and plasticity and is suitable for a ball returning piece. In the process of sportsman's batting, through the ball spare of the rebound striking of the ball unit that can angle regulation, make the ball spare can produce different bounce-back angles according to the impact angle of difference, borrow this, the sportsman except can constantly tieing back the ball spare of bounce-back, can also under the bounce-back angle and the unfixed situation of bounce-back distance of ball spare, real-time reaction, ball control strength when training meets the ball, and the angle of tieback, and promote the diversity effect of training, contain agility, flesh endurance, stability, ball control feel, and the simulation degree of simulating the batting.

Description

Ball returning device for training
Technical Field
The utility model relates to a ball returning device, in particular to a ball returning device for training.
Background
Since ball games require both sufficient endurance and explosive force and good skills, professional players need to repeatedly practice the games in addition to coaching to improve the skills.
Taking badminton as an example, the training modes of the current players are about two types:
1. coaching or other players partner training: because two players play in pairs, different paths exist under different thinking and different situations, and therefore the paths change most. However, training time is limited by the time of the trainee or trainer, and mobility is low.
2. Serving balls by a serving machine: can cooperate the sportsman of training, train at any time, and the ball way can have multiple change according to setting for the mode. However, the serving machine cannot hit the shuttlecocks back, so that each shot of shuttlecocks can be hit back by the player only once, a large amount of shuttlecocks are consumed in the training process, and the shot path is fixed under the same setting mode, so that the on-site reaction of the player in receiving the shuttlecocks cannot be trained.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a ball returning device for training, which has no limit on the service time, does not need self-simulation training of an opponent and can improve the on-site reaction of a player.
The utility model relates to a ball returning device for training, which comprises a supporting unit, a ball returning unit and a limiting unit.
The support unit includes at least one bracket.
The ball returning unit is arranged on the at least one support, can be contracted and contracted with the first axis clamp at a first included angle, and comprises a plate which has elastoplasticity and is suitable for a ball returning piece.
The limiting unit is formed between the supporting unit and the ball returning unit and used for stabilizing the ball returning unit at the first included angle.
The training ball returning device comprises a plate and an elastic layer, wherein the plate is provided with a supporting layer and the elastic layer is superposed on the supporting layer and is suitable for rebounding the ball, the supporting layer is used for supporting the elastic layer, and the elastic layer is made of high-hardness foam cotton.
The support unit further comprises a rotating set, the rotating set is provided with a first reversing piece which is pivoted to the at least one support and swings around the first axis, and at least one second reversing piece which is installed on the ball returning unit, the first reversing piece and the support unit clamp can form a second included angle in a retractable mode, the at least one second reversing piece is pivoted to the first reversing piece, swings around a second axis and forms the first included angle with the first axis, and the second axis is substantially perpendicular to the first axis.
According to the ball returning device for training, the limiting unit comprises at least one pitching limiting group which is arranged between the at least one support and the ball returning unit and is used for driving the ball returning unit to zoom the first included angle, and the pitching limiting group takes one of hydraulic pressure, air pressure and electric power as a power source.
The support unit further comprises a connecting piece connected to the at least one support and pivoted to the first reversing piece, the connecting piece and the first reversing piece form a second included angle, the limiting unit further comprises at least one deflection limiting group which is installed between the first reversing piece and the ball returning unit and can be used for contracting and expanding the second included angle, and the deflection limiting group takes one of hydraulic pressure, pneumatic pressure and electric power as a power source.
The ball returning device for training disclosed by the utility model is characterized in that the limiting unit further comprises a remote controller, the pitching limiting group and the deflection limiting group take electric power as power sources, and the remote controller is used for controlling the pitching limiting group to drive the ball returning unit and controlling the deflection limiting group to drive the ball returning unit.
The training ball returning device comprises two supports which are spaced along a second axis direction, and a base which is connected with one end of each support and is suitable for being vertically placed on a court, wherein the second axis is substantially perpendicular to the first axis.
The training ball returning device comprises a ball returning unit, a frame and a limiting unit, wherein the ball returning unit can be rotatably pivoted between the supports, the frame surrounds the plate and is provided with two screw holes formed in two sides, the limiting unit comprises two first bolt pieces, each first bolt piece is provided with a screw rod which can rotatably pass through the corresponding support and is screwed in the corresponding screw hole, and a bolt head which is pressed against the corresponding support.
The ball returning device for training of the utility model is characterized in that the limiting unit further comprises two swing arms pivoted on the support and two second bolt pieces arranged on the frame and spaced along the second axis, each swing arm extends along the length direction and is provided with a plurality of through holes arranged along the length direction, and each second bolt piece can be detachably arranged in the corresponding through hole of the corresponding swing arm.
In the training ball return device according to the present invention, each of the brackets extends in the first axial direction, and has a plurality of through holes arranged in the first axial direction, and each of the first bolts passes through the corresponding through hole of the respective bracket.
The ball returning unit of the training ball returning device further comprises a back frame connected to the plate and at least one linkage piece connected to the back frame and pivoted to the at least one support.
The ball returning device for training comprises at least one support, at least one linkage piece, at least one screw hole and at least one first bolt piece, wherein the screw hole is formed in one end of the support, the linkage piece is provided with a connecting section connected with the back frame, the two ear seats are opposite to the connecting section and define a groove, the groove is used for the at least one support to penetrate through, the limiting unit comprises at least one first bolt piece, the at least one first bolt piece is provided with a screw rod and a bolt head, the screw rod can rotatably pass through the ear seats of the linkage piece and is screwed in the screw hole of the at least one support, and the bolt head is pressed against the corresponding ear seat.
The support unit comprises two supports, two linkage parts and two elastic groups, each support is provided with a first sleeve part and a second sleeve part which can be movably sleeved in the first sleeve part along the first axis direction, the first sleeve part is provided with a plurality of positioning holes which are arranged along the first axis direction, the second sleeve part penetrates through the first sleeve part and is provided with the screw holes and broken holes, and each elastic group can be arranged in the second sleeve part in a compression mode and is provided with a clamping and abutting part which penetrates through the broken holes and can be elastically clamped and abutted against the corresponding positioning hole.
According to the training ball returning device, the supporting unit comprises a support extending along the first axis direction, the limiting unit comprises a plurality of limiting pieces connected to the support, the limiting pieces are spaced along the first axis direction, and one end of the ball returning unit abuts against the limiting pieces.
According to the training ball returning device, the supporting unit further comprises a back frame which is suitable for being installed on the wall surface and forms a third included angle with the support, and the other end of the ball returning unit abuts against one of the back frame and the wall surface.
The utility model has the beneficial effects that: through the ball returning unit with adjustable angle and elasticity and plasticity, the player can continuously return the rebounded ball piece, and can train the real-time reaction, the ball control force and the return stroke angle when receiving the ball under the condition that the rebounding angle and the rebounding distance of the ball piece are not fixed, so that the diversity effect of the training is improved, and the effects of agility, muscle endurance, stability, ball control hand feeling and simulation of playing the ball are included.
Drawings
Other features and effects of the present invention will be apparent from the embodiments with reference to the accompanying drawings, in which:
FIG. 1 is an exploded perspective view illustrating a first embodiment of the training ball return apparatus of the present invention;
FIG. 2 is a perspective view of the first embodiment;
FIG. 3 is a cross-sectional view taken along line III-III in FIG. 2;
FIG. 4 is a schematic side view illustrating that the ball returning unit of the first embodiment can adjust the first angle;
FIG. 5 is a side schematic view similar to FIG. 4, but with the ball return unit being adjustable in height along a first axis;
FIG. 6 is a schematic side view illustrating the first embodiment as applied to a rebound ball;
FIG. 7 is a side schematic view similar to FIG. 6 but with a different flight path after rebound of the ball;
FIG. 8 is a perspective view similar to FIG. 2, but with the ball return unit at a first angle of 0 degrees to the two brackets;
FIG. 9 is a perspective view illustrating a second embodiment of the training ball return apparatus of the present invention;
FIG. 10 is a schematic side view of the second embodiment;
FIG. 11 is an exploded perspective view illustrating a third embodiment of the training ball return apparatus of the present invention;
FIG. 12 is a perspective view of the third embodiment;
FIG. 13 is a schematic side view of the third embodiment;
FIG. 14 is a partial cross-sectional view of the third embodiment;
FIG. 15 is a perspective view illustrating a fourth embodiment of the training ball return apparatus of the present invention;
FIG. 16 is a schematic side view of the fourth embodiment;
FIG. 17 is a schematic bottom view of the fourth embodiment;
FIG. 18 is a perspective view similar to FIG. 15, but with the remote control being used to control the ball return unit to adjust the angle;
FIG. 19 is a schematic side view of a fifth embodiment of the training ball return apparatus of the present invention; and
fig. 20 is a side view similar to fig. 19 but with the ball return unit abutting the wall and the stand.
Detailed Description
Referring to fig. 1, 2, 3 and 4, a first embodiment of the training ball returning device of the present invention comprises a supporting unit 1, a ball returning unit 2, and a limiting unit 3.
The supporting unit 1 comprises two supports 11 extending along a first axis Z direction and spaced apart along a second axis X direction, and a base 12 connected to one end of the supports 11 and adapted to stand on a court (not shown). Each of the brackets 11 has a plurality of through holes 111 arranged in the Z direction of the first axis. The second axis X is substantially perpendicular to the first axis Z.
The ball returning unit 2 is pivoted between the brackets 11, forms a first included angle θ 1 with the first axis Z, can swing in pitch relative to the brackets 11 with the second axis X as a center, and includes a plate 21 having elasticity and plasticity and adapted to bounce a ball 4 (see fig. 6), and a frame 22 surrounding the periphery of the plate 21. In this embodiment, the plate member 21 has a support layer 211, and an elastic layer 212 stacked on the support layer 211. The support layer 211 may be wood or reinforced glass for supporting the elastic layer 212. The elastic layer 212 is made of high hardness foam. The bezel 22 has two screw holes 221 formed at both sides. The first included angle theta 1 is smaller than 90 degrees.
The limiting unit 3 is installed between the supporting unit 1 and the ball returning unit 2 and comprises two first bolts 31. Each of the first bolts 31 has a threaded rod 311 and a head 312 opposite to the threaded rod 311. The screws 311 are rotatably inserted into the through holes 111 of the brackets 11 and screwed into the screw holes 221 of the frame 22. The heads 312 are forced against the respective brackets 11.
Referring to fig. 1, 4 and 5, when the first included angle θ 1 of the ball returning unit 2 is adjusted and zoomed, the first bolt 31 is only required to be rotated back, and the ball returning unit 2 is pulled to a required angle, and then the first bolt 31 is rotated in, so that the screw 311 of the first bolt 31 is screwed into the screw hole 221 of the frame 22, and the bolt head 312 is forced to abut against the bracket 11 to lock the frame 22, so that the ball returning unit 2 can be stabilized at the default first included angle θ 1.
When the height of the ball returning unit 2 is adjusted, the ball returning unit 2 can be fixed at the default height only by detaching the first bolt 31, adjusting the ball returning unit 2 to the predetermined height along the first axis Z direction to make the screw hole 221 of the frame 22 aligned with the through hole 111 corresponding to the bracket 11, and then screwing the first bolt 31 in to make the screw 311 of the first bolt 31 pass through the through hole 111 of the bracket 11 and screwed into the screw hole 221 of the frame 22.
Referring to fig. 3, 4 and 6, taking the ball 4 as a badminton as an example, when training, the badminton training device is only placed in front of the player, so that when the player strikes the ball 4 to the elastic layer 212 of the plate 21, the ball 4 is rebounded through the elasticity and the plasticity of the elastic layer 212, and at this time, the player can receive the ball 4 rebounded by the plate 21 and strike the ball 4 to the elastic layer 212 of the plate 21 again. This is repeated until the player misses the ball 4 and the ball 4 falls to the ground.
Since the first angle θ 1 between the plate 21 and the first axis Z determines the rebound height of the ball 4, the player can adjust the plate 21 to a proper angle according to the training requirement, for example, as shown in fig. 6, when the first angle θ 1 is larger, the rebound height of the ball 4 is higher, and the flight path of the ball 4 is lifted upwards by the plate 21, thereby the training for killing the ball can be repeated, as shown in fig. 7, when the first angle θ 1 is smaller, the rebound height of the ball 4 is lower, and the flight path of the ball 4 is closer to a straight line, thereby the ball-drawing training and the flat training of the forward or reverse bat can be repeated.
In addition, because the angle and the strength of the ball 4 hitting the plate 21 affect the rebound angle and rebound distance of the ball 4, the rebound angle and the rebound distance of the ball 4 are different, and the rebound angle and the rebound force of the ball 4 are different, so that the drop point of the ball 4 can be changed, and the ball can train the skills of the ball receiving and the on-site reaction of the ball.
Referring to fig. 4 and 8, when the ball returning device of the present invention is to be stored, only by adjusting the first included angle θ 1 of the ball returning unit 2 to 0 degree, the ball returning unit 2 can be parallel to the bracket 11, so as to reduce the overall occupied space and improve the space efficiency during storage.
Referring to fig. 9 and 10, a second embodiment of the present invention is substantially the same as the first embodiment, and also includes the supporting unit 1, the ball returning unit 2, and the limiting unit 3, with the difference that:
the limiting unit 3 further includes two swing arms 32 pivotally mounted on the bracket 11, and two second bolts 33 mounted on the frame 22 and spaced apart from each other along the second axis X. Each of the swing arms 32 extends along a length direction L and has a plurality of through holes 321 arranged along the length direction L. Each of the second bolts 33 is detachably inserted into the corresponding through hole 321 of the respective swing arm 32.
Therefore, after the ball returning unit 2 is stabilized at the first predetermined angle θ 1, the swing arm 32 can be rotated until the through hole 321 corresponding to the swing arm 32 is aligned with the second bolt 33 fixed on the frame 22, the ball returning unit 2 can be supported by the swing arm 32, and the angle of the ball returning unit 2 is limited by the second bolt 33. Therefore, the first included angle θ 1 of the plate 21 is maintained during the process of hitting the ball by the player, and the ball 4 (not shown) does not have an angular deviation due to the excessive force of hitting the plate 21.
It should be noted that, since the swing arm 32 has a limiting function, the first bolt 31 is not limited to be a bolt, and may be a bolt in other variations of the present embodiment.
Referring to fig. 11 to 14, a third embodiment of the present invention is substantially the same as the first embodiment, and also includes the supporting unit 1, the ball returning unit 2, and the limiting unit 3, with the difference that:
the support unit 1 further comprises two compressible elastic groups 13. Each of the brackets 11 has a first sleeve 112 and a second sleeve 113 movably sleeved on the first sleeve 112 along the first axis Z. The first sleeve 112 has a plurality of positioning holes 114 arranged along the first axis Z direction, and the second sleeve 113 is inserted into the first sleeve 112 and has a screw hole 115 formed at one end and a broken hole 116. Each elastic assembly 13 is installed in the second sleeve member 113, and has a clamping portion 131 penetrating through the hole 116 and elastically clamping against the corresponding positioning hole 114.
The ball returning unit 2 further includes a back frame 23 connected to the plate 21, and two linking members 24 connected to the back frame 23 and pivotally connected to the support 11. Each of the linkages 24 has a connecting segment 241 connected to the back frame 23, and two ear seats 243 opposite to the connecting segment 241 and defining a groove 242. The grooves 242 are provided for the respective holder 11 to pass through.
The screw 311 of each first bolt 31 of the limiting unit 3 can rotatably pass through the ear seat 243 of the corresponding linkage 24 along the second axis X direction and is screwed into the screw hole 115 of the corresponding bracket 11, and the bolt head 312 of each first bolt 31 is forced to abut against the corresponding ear seat 243.
Therefore, when the first included angle θ 1 of the ball returning unit 2 is adjusted, the first bolt 31 is also rotated back, the ball returning unit 2 is pulled to drive the back frame 23 and the linkage member 24, the required first included angle θ 1 can be rotated around the second axis X, and then the first bolt 31 is rotated in, so that the screw 311 of the first bolt 31 is screwed in the screw hole 115 of the bracket 11, and the bolt head 312 is pressed against the ear seat 243 to lock the linkage member 24, so that the ball returning unit 2 can be stabilized at the default first included angle θ 1.
When the height of the ball returning unit 2 is adjusted, the second sleeve 113 can be extended and retracted by only forcing the engaging portion 131 of the elastic set 13 to disengage from the positioning hole 114 of the first sleeve 112 of the bracket 11, and driving the ball returning unit 2 to ascend and descend to a predetermined height along the first axis Z direction, and then releasing the elastic set 13, so that the engaging portion 131 of the elastic set 13 engages with the corresponding positioning hole 114, and the ball returning unit 2 can be fixed at a default height.
It should be noted that the height of the ball returning unit 2 is not limited to the way of extending and contracting the second sleeve 113, but in other variations of the present embodiment, the height of the support 11 may be changed by hydraulic pressure, pneumatic pressure, electric power, or the like, and a person skilled in the art can deduce the details of the expansion from the above description, so the description is not repeated.
Referring to fig. 15, 16 and 17, a fourth embodiment of the present invention is substantially the same as the first embodiment, and also includes the supporting unit 1, the ball returning unit 2 and the limiting unit 3, with the difference that:
the supporting unit 1 further comprises a connecting member 16 connected to the other end of the bracket 11 and extending along the second axis X, and a rotating group 17.
The rotating group 17 has a first direction-changing member 171 pivotally connected to the bracket 11 and swinging left and right about the first axis Z, and two second direction-changing members 172 installed on the ball-returning unit 2 and spaced apart from each other along the second axis X. The first direction changing member 171 and the connecting member 16 form a second angle θ 2 capable of being scaled. The second direction-changing member 172 is pivotally connected to the first direction-changing member 171, swings relative to the first direction-changing member 171 with the second axis X as a center, and forms the first included angle θ 1 with the first axis Z.
The limiting unit 3 comprises two pitch limiting groups 35 mounted on the first direction changer 171 and spaced apart along the second axis X, and a yaw limiting group 36 mounted on the first direction changer 171 and adjacent to one of the pitch limiting groups 35.
Each of the pitch limiting groups 35 is used for zooming the first included angle θ 1, and has a first linking member 351 connected to the respective second direction-changing member 172 and extending and retracting along a third axis Y. Each of the pitch limit groups 35 can be powered by hydraulic pressure, or pneumatic pressure or electric power, and in the present embodiment, each of the pitch limit groups 35 is an electric motor, which is a product generally commercially available and will not be described herein. The third axis Y is substantially perpendicular to the first axis Z, the second axis X.
The deflection limiting group 36 is used for zooming the second included angle θ 2, and has a second linking member 361 connected to the connecting member 16 and extending and contracting along the third axis Y. The deflection limiting group 36 can be powered by hydraulic pressure, pneumatic pressure or electric power, and in the present embodiment, the deflection limiting group 36 is an electric motor, which is a product generally available on the market, and therefore, the description thereof is omitted.
Therefore, when the first included angle θ 1 of the ball returning unit 2 is adjusted, the first linking member 351 of the pitching limiting group 35 is controlled to stretch and retract only by a switch (not shown), so that the ball returning unit 2 can be pushed to rotate around the second axis X by the pivot connection between the second direction changing member 172 and the first direction changing member 171, and after the ball returning unit 2 rotates to the required first included angle θ 1, the ball returning unit 2 is stabilized at the default first included angle θ 1 by abutting against the pitching limiting group 35 between the second direction changing member 172 and the first direction changing member 171.
In addition, in addition to the first included angle θ 1 of the ball returning unit 2, in this embodiment, the second included angle θ 2 of the ball returning unit 2 can be adjusted, when adjusting, the first reversing member 171, the second reversing member 172 and the ball returning unit 2 can be pushed to rotate around the first axis Z through the pivot connection between the first reversing member 171 and the connecting piece 16 by controlling the second linking member 361 of the deflection limiting group 36 to extend and retract through a switch (not shown), and after rotating to the required second included angle θ 2, the ball returning unit 2 is stabilized at the default second included angle θ 2 by abutting against the deflection limiting group 36 between the first reversing member 171 and the connecting piece 16.
It should be noted that the pitch limit group 35 and the yaw limit group 36 are not limited to be controlled by switches, and in other variations of this embodiment, as shown in fig. 18, the limit unit 3 may further include a remote controller 37. Therefore, the remote controller 37 can control the pitching limiting group 35 to drive the ball returning unit 2 or control the deflection limiting group 36 to drive the ball returning unit 2 in a wireless remote control mode.
Referring to fig. 19, a fifth embodiment of the present invention includes the supporting unit 1, the ball returning unit 2, and the limiting unit 3, which are the same as the first embodiment, and the difference is that:
the support unit 1 comprises a back frame 14 adapted to be mounted to a wall 5, and a bracket 15 connected to the back frame 14 and forming a third angle θ 3 with the back frame 14. The support 15 extends along a first axis Z. Preferably, the third included angle θ 3 is substantially 90 degrees, and certainly, different third included angles θ 3 can be used according to the field or the use requirement.
The limiting unit 3 comprises a plurality of limiting members 34 connected to the bracket 15. The limiting members 34 are spaced apart along the first axis Z and extend along a second axis (not shown). In this embodiment, the stopper 34 is a pyramid.
When the ball returning device is used, the ball returning unit 2 can be stabilized between the back frame 14 and the support 15 only by abutting the ball returning unit 2 between the back frame 14 and the support 15 and blocking and limiting the ball returning unit 2 through one limiting piece 34. When one end of the ball returning unit 2 abuts against the limiting piece 34 which is closer to the back frame 14, the other end of the ball returning unit 2 is farther away from the support 15, the first included angle θ 1 between the ball returning unit 2 and the support 15 is larger, and conversely, when the one end of the ball returning unit 2 abuts against the limiting piece 34 which is farther away from the back frame 14, the other end of the ball returning unit 2 is closer to the support 15, and the first included angle θ 1 between the ball returning unit 2 and the support 15 is smaller. Thereby, the first included angle theta 1 of the ball returning unit 2 can be maintained during the process of hitting the ball by the player.
It should be noted that the ball returning unit 2 is not limited to abutting against the back frame 14, and in other variations of the present embodiment, the ball returning unit may abut against the wall surface 5 when the back frame 14 is short or only one connecting medium. In addition, the back frame 14 is not limited to the back frame 14 connected to the wall surface 5, and in another modification of the present embodiment, the back plate 14 may be omitted, and the ball returning unit 2 may be stabilized between the wall surface 5 and the bracket 15 as shown in fig. 20.
It should be noted that the ball 4 is not limited to a badminton ball, and in other variations of the present embodiment, it may be a table tennis ball, a soccer ball …, etc., but not limited thereto.
From the above description, the advantages of the foregoing embodiments can be summarized as follows:
1. the utility model has high maneuverability, can perform self-simulation training without limiting the use time and needing an opponent, thereby improving the convenience and the practicability in use.
2. And importantly, the angle and the height of the ball returning unit 2 can be adjusted at will according to the training requirements, so that the rebounded ball piece 4 can have different ball path changes, and the ball piece 4 can be continuously returned as long as the ball piece 4 does not fall to the ground.
3. Besides, the player can continuously receive the rebounded ball element 4, and can train the real-time reaction, the ball control force and the return stroke angle when receiving the ball under the condition that the rebounding angle and the rebounding distance of the ball element 4 are not fixed, so that the diversity effect of the training is improved, and the effects comprise agility, muscle endurance, stability, the hand feeling of ball control and the simulation degree of playing the ball.
The above description is only for the preferred embodiment of the present invention, and it is not intended to limit the scope of the present invention, and any person skilled in the art can make further modifications and variations without departing from the spirit and scope of the present invention, therefore, the scope of the present invention should be determined by the claims of the present application.

Claims (15)

1. A training ball return apparatus, the ball return apparatus comprising:
a support unit including at least one bracket;
the ball returning unit is arranged on the at least one bracket, can form a first included angle with the first shaft clamp in a retractable manner, and comprises a plate which has elastoplasticity and is suitable for returning a ball part; and
and the limiting unit is formed between the supporting unit and the ball returning unit and is used for stabilizing the ball returning unit at the first included angle.
2. A training return device as claimed in claim 1, wherein: the plate is provided with a supporting layer and an elastic layer which is superposed on the supporting layer and is suitable for rebounding the ball piece, the supporting layer is used for supporting the elastic layer, and the elastic layer is made of foam.
3. A training return device as claimed in claim 1, wherein: the supporting unit further comprises a rotating set, the rotating set is provided with a first reversing piece and at least one second reversing piece, the first reversing piece is pivoted to the at least one support and swings with the first axis as the center, the at least one second reversing piece is installed on the ball returning unit, the first reversing piece and the supporting unit clamp can zoom in and out a second included angle, the at least one second reversing piece is pivoted to the first reversing piece and swings with the second axis as the center, the at least one second reversing piece and the first axis clamp form the first included angle, and the second axis is substantially perpendicular to the first axis.
4. A training return device as claimed in claim 3, wherein: the limiting unit comprises at least one pitching limiting group which is arranged between the at least one support and the ball returning unit and is used for driving the ball returning unit to zoom the first included angle, and the pitching limiting group takes one of hydraulic pressure, air pressure and electric power as a power source.
5. A training ball return apparatus as in claim 4 wherein: the supporting unit further comprises a connecting piece connected to the at least one support and pivoted to the first reversing piece, the connecting piece and the first reversing piece clamp the second included angle, the limiting unit further comprises at least one deflection limiting group which is installed between the first reversing piece and the ball returning unit and can be used for zooming the second included angle, and the deflection limiting group takes one of hydraulic pressure, air pressure and electric power as a power source.
6. A training ball return apparatus as in claim 5 wherein: the limiting unit further comprises a remote controller, the pitching limiting group and the deflection limiting group use electric power as power sources, and the remote controller is used for controlling the pitching limiting group to drive the ball returning unit and controlling the deflection limiting group to drive the ball returning unit.
7. A training return device as claimed in claim 1, wherein: the supporting unit comprises two supports which are spaced along the direction of a second axis and a base which is connected with one end of each support and is suitable for being vertically arranged on a court, and the second axis is substantially perpendicular to the first axis.
8. A training return device as claimed in claim 7, wherein: the ball returning unit can be rotatably pivoted between the brackets and also comprises a frame surrounding the plate, the frame is provided with two screw holes formed in two sides, the limiting unit comprises two first bolts, each first bolt is provided with a screw rod which can rotatably pass through the respective bracket and is screwed in the respective screw hole, and a bolt head which is pressed against the respective bracket.
9. A training return device as claimed in claim 8, wherein: the limiting unit further comprises two swing arms pivoted on the support and two second bolt pieces installed on the frame and spaced along the second axis, each swing arm extends along the length direction and is provided with a plurality of through holes arranged along the length direction, and each second bolt piece can be detachably arranged in the corresponding through hole of the corresponding swing arm in a penetrating mode.
10. A training return device according to claim 8 or 9, wherein: each bracket extends along the first axial direction and is provided with a plurality of through holes which are arranged along the first axial direction, and each first bolt passes through the corresponding through hole of the corresponding bracket.
11. A training return device as claimed in claim 1, wherein: the ball returning unit further comprises a back frame connected to the plate and at least one linkage piece connected to the back frame and pivoted to the at least one support.
12. A training return device as claimed in claim 11, wherein: the at least one support is provided with a screw hole formed at one end, the at least one linkage part is provided with a connecting section connected with the back frame and two lug seats opposite to the connecting section and defining a groove, the groove is used for the at least one support to penetrate through, the limiting unit comprises at least one first bolt part, and the at least one first bolt part is provided with a screw rod which can rotatably pass through the lug seat of the at least one linkage part and is screwed in the screw hole of the at least one support, and a bolt head which is pressed against the corresponding lug seat.
13. A training return device as defined in claim 12, wherein: the supporting unit comprises two supports, two linkage parts and two elastic groups, each support is provided with a first sleeve part and a second sleeve part which can be movably sleeved in the first sleeve part along the first axial direction, the first sleeve part is provided with a plurality of positioning holes which are arranged along the first axial direction, the second sleeve part penetrates through the first sleeve part and is provided with screw holes and broken holes, and each elastic group can be compressively installed in the second sleeve part and is provided with a clamping and abutting part which penetrates through the broken holes and can be elastically clamped and abutted to the corresponding positioning holes.
14. A training return device as claimed in claim 1, wherein: the supporting unit comprises a support extending along the first axis direction, the limiting unit comprises a plurality of limiting parts connected to the support, the limiting parts are spaced at intervals along the first axis direction, and one end of the ball returning unit is abutted against the limiting parts.
15. A training return device as claimed in claim 14, wherein: the supporting unit further comprises a back frame which is suitable for being installed on the wall surface and forms a third included angle with the support, and the other end of the ball returning unit abuts against one of the back frame and the wall surface.
CN202122259479.9U 2021-04-22 2021-09-17 Ball returning device for training Active CN216456805U (en)

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