CN219091039U - Concentration and reaction capability training equipment - Google Patents
Concentration and reaction capability training equipment Download PDFInfo
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- CN219091039U CN219091039U CN202223266385.5U CN202223266385U CN219091039U CN 219091039 U CN219091039 U CN 219091039U CN 202223266385 U CN202223266385 U CN 202223266385U CN 219091039 U CN219091039 U CN 219091039U
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Abstract
The application relates to the field of teaching appliances, in particular to a concentration and reaction capability training device. The device comprises: ball delivering pipe, ball delivering pipe and ball delivering wheel; the ball delivering pipe and the ball delivering pipe are both tubular; the end side of the ball sending pipe, which is close to the ball sending pipe, is rotatable; the bottom side of the ball sending pipe is provided with a ball pushing hole; the service wheel is rotatable and provided with a push plate; the pushing plate can be used for preventing the ball which is conveyed to the ball sending pipe through the ball sending pipe and is positioned above the ball pushing hole from moving, and the pushing plate can be used for pushing the ball out of the ball sending pipe through the ball pushing hole when the ball sending wheel rotates; and a plurality of soft friction blocks are uniformly arranged on the inner wall of the ball sending pipe far away from the end side of the ball sending pipe. This application constitutes service device through setting up service pipe, service pipe and service wheel, through setting up the service pipe into rotatable form for height and the angle that the regulation spheroid sent help training primary and secondary school student's body reaction ability, promote training effect.
Description
Technical Field
The application relates to the field of teaching appliances, in particular to a concentration and reaction capability training device.
Background
The concentration training assessment instrument is a professional instrument for training, testing and evaluating the concentration of students in middle and primary schools.
In the prior art, the utility model patent document 'a combined concentration training device' with the application number of 202022860275.6 discloses a technical scheme that: in this solution, concentration is exercised by placing a drop ball in a cone-shaped placement barrel, and then observing the position at which the drop ball falls into a collection barrel after passing through an observation window.
However, the training effect is limited because the technical scheme only trains the observation ability of the primary and secondary school students, but cannot train the body reaction ability of the primary and secondary school students.
Disclosure of Invention
The application provides a concentration and reaction capability training device, which can solve the problem that the prior training device cannot train the body reaction capability of a pupil, so that the training effect is limited.
The technical scheme of this application is a concentration and reaction ability training equipment, includes: the ball feeding pipe is used for conveying the ball, and the ball feeding pipe and the ball feeding wheel are arranged at the outlet close to the bottom end of the ball feeding pipe;
the ball delivering pipe and the ball delivering pipe are both tubular in arrangement shape;
the end side of the ball sending pipe, which is close to the ball sending pipe, is rotatable;
the bottom side of the ball sending pipe is provided with a ball pushing hole;
the service wheel is rotatable, and a plurality of pushing plates which can extend into the ball pushing holes are uniformly arranged on the rotating peripheral surface;
the pushing plate can be used for preventing a ball which is conveyed to the ball service pipe through the ball service pipe and is positioned above the ball pushing hole from moving to the side far away from the ball service pipe, and the pushing plate can be used for pushing the ball out of the ball service pipe through the ball pushing hole when the ball service wheel rotates;
and a plurality of soft friction blocks are uniformly arranged on the inner wall of the ball sending pipe far away from the end side of the ball sending pipe.
Optionally, the apparatus further comprises: a first housing and a cover;
the first shell is hollowed and provided with an open top;
the ball delivering pipe, the ball delivering pipe and the ball delivering wheel are all arranged in the first shell;
the pipeline between the top end and the bottom end of the ball conveying pipe extends downwards in a spiral mode;
the top end of the ball feeding pipe is provided with a ball inlet with an upward opening;
a ball feeding hole is formed in one side, close to the soft friction block in the ball feeding pipe, of the first shell;
the cover body is detachably connected with the top opening of the first shell.
Optionally, the apparatus further comprises: a first motor;
the first motor is arranged in the first shell;
the output end of the first motor is fixedly connected with the end side, close to the ball sending pipe, of the ball sending pipe and used for driving the ball sending pipe to rotate.
Optionally, the apparatus further comprises: a second motor;
the second motor is arranged in the first shell;
the output end of the second motor is fixedly connected with the service wheel and used for driving the service wheel to rotate.
Optionally, the apparatus further comprises: a second housing and a pushing device;
the second shell is movably connected with the bottom side of the first shell in the vertical direction;
the second shell is hollowed, and the pushing device is arranged in the inner cavity of the second shell and used for pushing the first shell to move in the vertical direction.
Optionally, the pushing device includes: a cross folding bar disposed within the second housing and an adjustment member disposed on a bottom wall of the second housing;
the cross folding rod can be stretched in the vertical direction;
the adjusting piece is connected with the bottom of the cross folding rod and is used for driving the cross folding rod to stretch out and draw back in the vertical direction, and the distance between the top and the bottom of the cross folding rod is indirectly adjusted.
Optionally, the pushing device further comprises: the first slideway is arranged on the bottom wall of the second shell, and the fixing piece and the second slideway are arranged at the bottom end of the first shell;
the adjusting piece is configured as a hydraulic rod which can extend in the horizontal direction;
one end side of the top end of the cross folding rod is rotationally connected with the fixing piece, and the other end side of the top end of the cross folding rod is slidingly connected with the second slideway;
one end side of the bottom end in the cross folding rod is fixedly connected with the rod body of the hydraulic rod, the other end side of the bottom end in the cross folding rod is fixedly connected with the extending end side of the hydraulic rod, and the other end side of the bottom end and the extending end side of the hydraulic rod are in sliding connection with the first slideway.
The beneficial effects are that:
this application constitutes service device through setting up service pipe, service pipe and service wheel, through setting up the service pipe into rotatable form for height and the angle that the regulation spheroid sent help training primary and secondary school student's body reaction ability, promote training effect.
And, this application is provided with soft friction block on the inner wall of the free end side of sending out the bulb for slow down spheroid blowout speed, ensure primary and secondary school student's safety.
To sum up, the problem that the body reaction capacity of students in middle and primary schools cannot be trained by the existing training equipment, so that the training effect is limited can be solved.
Drawings
In order to more clearly illustrate the technical solutions of the present application, the drawings that are needed in the embodiments will be briefly described below, and it will be obvious to those skilled in the art that other drawings can be obtained from these drawings without inventive effort.
FIG. 1 is a front view of a specific force and reaction capacity training device in an embodiment of the present application;
FIG. 2 is a side view of a specific force and reaction capacity training device in an embodiment of the present application;
FIG. 3 is a bottom view of a ball feeder and a ball dispenser in an embodiment of the present application;
FIG. 4 is a partial schematic view of the ball feed hole of FIG. 2;
FIG. 5 is a partial schematic view of portion A of FIG. 1;
in the figure, 1-a ball feeding pipe; 11-a ball inlet; 2-a billiard cue; 21-ball pushing holes; 22-soft friction block; 3-ball serving wheel; 31-pushing plate; 4-a first housing; 41-ball feeding holes; 5-a cover; 6-a first motor; 7-a second motor; 8-a second housing; 9-pushing means; 91-cross folding bars; 92-adjusting member; 93-a first slideway; 94-fixing piece; 95-second slideway.
Detailed Description
Reference will now be made in detail to the embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, the same numbers in different drawings refer to the same or similar elements, unless otherwise indicated. The embodiments described in the examples below do not represent all embodiments consistent with the present application. Merely as examples of systems and methods consistent with some aspects of the present application as detailed in the claims.
The application provides a concentration and reaction capability training device, as shown in fig. 1 and 2, fig. 1 is a front view of the concentration and reaction capability training device in the embodiment of the application, and fig. 2 is a side view of the concentration and reaction capability training device in the embodiment of the application, including: a ball feed pipe 1, a ball feed pipe 2, a ball feed wheel 3, a first shell 4, a cover 5, a first motor 6, a second motor 7, a second shell 8 and a pushing device 9.
The ball feeding pipe 1 and the ball feeding pipe 2 are both tubular in arrangement.
The pipeline between the top end and the bottom end of the ball feeding pipe 1 extends downwards in a spiral mode. The ball feeding pipe 1 is used for conveying balls. The top end of the ball feeding pipe 1 is provided with a ball inlet 11 with an upward opening.
Specifically, the sphere is a soft sphere.
The ball can be guided into the ball feeding pipe 1 from the ball inlet 11, and rolls to the bottom end of the ball feeding pipe 1 under the action of gravity.
The tee pipe 2 and the tee wheel 3 are both arranged at the outlet near the bottom end of the tee pipe 1.
The end of the ball-serving pipe 2 near the ball-serving pipe 1 is rotatably constructed. The bottom side of the billiard cue 2 is provided with a ball pushing hole 21. A plurality of soft friction blocks 22 are uniformly arranged on the inner wall of the ball sending pipe 2 far away from the end side of the ball sending pipe 1.
In particular, the tee 2 is arranged in a rotatable manner in order to adjust the height and angle of the ball pushed out of the tee 2 relative to the apparatus, facilitating multiple training.
As shown in fig. 3, fig. 3 is a bottom view of the ball feeding pipe and the ball dispensing pipe according to the embodiment of the present application, and the arrangement of the ball pushing hole 21 can be seen in fig. 3.
The service wheel 3 is constructed rotatably and has a plurality of push plates 31 extending into the ball pushing holes 21 uniformly provided on the rotating outer circumferential surface.
The push plate 31 may be used to prevent the ball, which is delivered through the tee 1 into the tee 2 above the ball-pushing hole 21, from moving away from the tee 1, and the push plate 31 may also be used to push the ball out of the tee 2 through the ball-pushing hole 21 when the tee 3 rotates.
Specifically, after the ball flows from the ball delivery pipe 1 into the ball delivery pipe 2 under the action of gravity, the pushing plate 31 on the ball delivery wheel 3 can clamp the ball to continue to move in the ball delivery pipe 2, and when the pushing plate 31 rotates along with the ball delivery wheel 3, the pushing plate 31 can drive the ball to move, and when the rotating speed is high, the ball can be directly sprayed out of the ball delivery pipe 2.
In order to smoothly spray the ball out of the ball pipe 2, the rotation speed of the ball-serving wheel 3 should reach a certain degree, but since the user of the device is a pupil, a plurality of soft friction blocks 22 are arranged for reducing the speed of the ball, so as to ensure the safety of the user, in some embodiments, the part of the ball pipe 2 provided with the soft friction blocks 22 is detachably connected with other parts of the ball pipe 2, and the end sides of the soft friction blocks 22 with different obstruction degrees or friction degrees can be selected according to the age and reaction speed of the pupil.
The first housing 4 is hollowed out and the top end is open. The ball feed pipe 1, the ball feed pipe 2 and the ball feed wheel 3 are all arranged in the first shell 4.
A ball feed hole 41 is formed in the first housing 4 on a side close to the soft friction block 22 in the ball-serving pipe 2.
The cover body 5 is detachably connected with the top opening of the first shell 4.
The first motor 6 is disposed within the first housing 4. The output end of the first motor 6 is fixedly connected with the end side, close to the ball sending pipe 1, of the ball sending pipe 2 and is used for driving the ball sending pipe 2 to rotate.
The second motor 7 is disposed within the first housing 4. The output end of the second motor 7 is fixedly connected with the service wheel 3 and is used for driving the service wheel 3 to rotate.
Specifically, as shown in fig. 4, fig. 4 is a partial schematic view of the ball feeding hole in fig. 2, where the first motor 6 and the second motor 7 may be connected to a controller, the controller may be disposed in the apparatus, and the controller may be connected to a client mounted on a mobile phone or a tablet for adjusting the height and angle of the ball feeding, so as to provide a diversified training mode.
In some embodiments, the client may be configured to set different training modes, and may also set various parameters for specifically setting the free training mode.
The second casing 8 is movably connected with the bottom side of the first casing 4 in the vertical direction.
The second casing 8 is hollowed out, and the pushing device 9 is arranged in the inner cavity of the second casing 8 and is used for pushing the first casing 4 to move in the vertical direction.
The pushing device 9 is disposed in the second housing 8, as shown in fig. 5, and fig. 5 is a partial schematic view of a portion a in fig. 1 including: a cross folding bar 91 provided in the second housing 8, and an adjusting member 92 provided on the bottom wall of the second housing 8, a first slide 93 provided on the bottom wall of the second housing 8, and a fixing member 94 and a second slide 95 provided on the bottom end of the first housing 4.
The cross folding bar 91 is retractable in the vertical direction.
The adjusting member 92 is connected to the bottom end of the cross folding bar 91 for driving the cross folding bar 91 to expand and contract in the vertical direction, and indirectly adjusting the distance between the top end and the bottom end of the cross folding bar 91.
The regulating member 92 is constituted as a hydraulic lever that can be extended in the horizontal direction.
And, one end side of the top end of the cross folding bar 91 is rotatably connected to the fixing member 94 and the other end side is slidably connected to the second slide 95.
One end side of the bottom end in the cross folding bar 91 is fixedly connected with the bar body of the hydraulic bar and the other end side is fixedly connected with the extending end side of the hydraulic bar, and the other end side is in sliding connection with the first slideway 93 together with the extending end side of the hydraulic bar.
Specifically, when the height of the first housing 4 relative to the second housing 8 needs to be adjusted, a signal can be sent to the controller through a client mounted on a mobile phone or a tablet, the controller sends a telescopic signal to a hydraulic rod, and the hydraulic rod stretches and contracts to adjust the distance between two end sides of the top end of the cross folding rod 91, thereby indirectly adjusting the vertical distance between the top end and the bottom end of the cross folding rod 91.
Working principle:
when the equipment is required to be used for concentration training, a signal can be sent to a controller through a mobile phone and a client on a flat plate, the controller respectively sends the signal to a first motor 6, a second motor 7 and a hydraulic rod, and the first motor 6 drives the ball feeding pipe 2 to rotate according to the signal so as to adjust the angle and the height of a ball when the ball is ejected from the equipment; the second motor 7 drives the service wheel 3 to rotate according to the signals and is used for ejecting the ball out of the device; the hydraulic rod stretches and contracts according to the signal, and the height of the first shell 4 relative to the second shell 8 is adjusted.
The foregoing detailed description of the embodiments of the present application has been provided for the purpose of illustrating the preferred embodiments of the present application and is not to be construed as limiting the scope of the present application. All equivalent changes and modifications within the scope of the present application should be made within the scope of the present application.
Claims (7)
1. An attentive and reactive capability training apparatus, comprising: the ball feeding pipe is used for conveying the ball, and the ball feeding pipe and the ball feeding wheel are arranged at the outlet close to the bottom end of the ball feeding pipe;
the ball delivering pipe and the ball delivering pipe are both tubular in arrangement shape;
the end side of the ball sending pipe, which is close to the ball sending pipe, is rotatable;
the bottom side of the ball sending pipe is provided with a ball pushing hole;
the service wheel is rotatable, and a plurality of pushing plates which can extend into the ball pushing holes are uniformly arranged on the rotating peripheral surface;
the pushing plate can be used for preventing a ball which is conveyed to the ball service pipe through the ball service pipe and is positioned above the ball pushing hole from moving to the side far away from the ball service pipe, and the pushing plate can be used for pushing the ball out of the ball service pipe through the ball pushing hole when the ball service wheel rotates;
and a plurality of soft friction blocks are uniformly arranged on the inner wall of the ball sending pipe far away from the end side of the ball sending pipe.
2. The concentration and reaction capability training apparatus of claim 1 further comprising: a first housing and a cover;
the first shell is hollowed and provided with an open top;
the ball delivering pipe, the ball delivering pipe and the ball delivering wheel are all arranged in the first shell;
the pipeline between the top end and the bottom end of the ball conveying pipe extends downwards in a spiral mode;
the top end of the ball feeding pipe is provided with a ball inlet with an upward opening;
a ball feeding hole is formed in one side, close to the soft friction block in the ball feeding pipe, of the first shell;
the cover body is detachably connected with the top opening of the first shell.
3. The concentration and reaction capability training apparatus of claim 2 further comprising: a first motor;
the first motor is arranged in the first shell;
the output end of the first motor is fixedly connected with the end side, close to the ball sending pipe, of the ball sending pipe and used for driving the ball sending pipe to rotate.
4. The concentration and reaction capability training apparatus of claim 2 further comprising: a second motor;
the second motor is arranged in the first shell;
the output end of the second motor is fixedly connected with the service wheel and used for driving the service wheel to rotate.
5. The concentration and reaction capability training apparatus of claim 2 further comprising: a second housing and a pushing device;
the second shell is movably connected with the bottom side of the first shell in the vertical direction;
the second shell is hollowed, and the pushing device is arranged in the inner cavity of the second shell and used for pushing the first shell to move in the vertical direction.
6. The concentration and reaction capacity training apparatus of claim 5 wherein said pushing means comprises: a cross folding bar disposed within the second housing and an adjustment member disposed on a bottom wall of the second housing;
the cross folding rod can be stretched in the vertical direction;
the adjusting piece is connected with the bottom of the cross folding rod and is used for driving the cross folding rod to stretch out and draw back in the vertical direction, and the distance between the top and the bottom of the cross folding rod is indirectly adjusted.
7. The concentration and reaction capacity training apparatus of claim 6 wherein said pushing means further comprises: the first slideway is arranged on the bottom wall of the second shell, and the fixing piece and the second slideway are arranged at the bottom end of the first shell;
the adjusting piece is configured as a hydraulic rod which can extend in the horizontal direction;
one end side of the top end of the cross folding rod is rotationally connected with the fixing piece, and the other end side of the top end of the cross folding rod is slidingly connected with the second slideway;
one end side of the bottom end in the cross folding rod is fixedly connected with the rod body of the hydraulic rod, the other end side of the bottom end in the cross folding rod is fixedly connected with the extending end side of the hydraulic rod, and the other end side of the bottom end and the extending end side of the hydraulic rod are in sliding connection with the first slideway.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223266385.5U CN219091039U (en) | 2022-12-07 | 2022-12-07 | Concentration and reaction capability training equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223266385.5U CN219091039U (en) | 2022-12-07 | 2022-12-07 | Concentration and reaction capability training equipment |
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CN219091039U true CN219091039U (en) | 2023-05-30 |
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CN202223266385.5U Active CN219091039U (en) | 2022-12-07 | 2022-12-07 | Concentration and reaction capability training equipment |
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CN (1) | CN219091039U (en) |
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2022
- 2022-12-07 CN CN202223266385.5U patent/CN219091039U/en active Active
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