CN111330241B - Environment-friendly shooting device for basketball training and using method - Google Patents

Environment-friendly shooting device for basketball training and using method Download PDF

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Publication number
CN111330241B
CN111330241B CN202010276271.5A CN202010276271A CN111330241B CN 111330241 B CN111330241 B CN 111330241B CN 202010276271 A CN202010276271 A CN 202010276271A CN 111330241 B CN111330241 B CN 111330241B
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stabilizing
positioning
driving
counting
driven
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CN111330241A (en
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曾早生
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Shaoxing Dongwei Sports Technology Co ltd
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Shaoxing Dongwei Sports Technology Co Ltd
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B63/00Targets or goals for ball games
    • A63B63/08Targets or goals for ball games with substantially horizontal opening for ball, e.g. for basketball
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B71/00Games or sports accessories not covered in groups A63B1/00 - A63B69/00
    • A63B71/06Indicating or scoring devices for games or players, or for other sports activities
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/34Parallel operation in networks using both storage and other dc sources, e.g. providing buffering
    • H02J7/35Parallel operation in networks using both storage and other dc sources, e.g. providing buffering with light sensitive cells
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2220/00Measuring of physical parameters relating to sporting activity
    • A63B2220/17Counting, e.g. counting periodical movements, revolutions or cycles, or including further data processing to determine distances or speed
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2243/00Specific ball sports not provided for in A63B2102/00 - A63B2102/38
    • A63B2243/0037Basketball

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Photovoltaic Devices (AREA)
  • Finish Polishing, Edge Sharpening, And Grinding By Specific Grinding Devices (AREA)

Abstract

The invention discloses an environment-friendly shooting device for basketball training and a using method thereof, and relates to the technical field of sports goods. The environment-friendly basketball shooting device for basketball training comprises a backboard, wherein two stabilizing columns are fixedly connected to the bottoms of two side faces of the backboard, two stabilizing boxes are fixedly connected to the bottoms of the stabilizing columns, supporting plates are fixedly connected to the bottoms of the two stabilizing boxes, power storage devices are arranged on the tops of two side faces of the backboard and inside the stabilizing boxes, a basket is fixedly mounted at the center of the front face of the backboard, and a counting device is arranged below the basket. This environment-friendly basketball training is with shooting device uses through power storage device, counting assembly, elevating gear and positioner's cooperation, can make the training that the sportsman just can accomplish the basketball shooting through individual, has reduced training personnel's demand, and this basketball shooting trainer can make the more convenient use of sportsman moreover, has so also further increased the efficiency that the sportsman basketball shot the training.

Description

Environment-friendly shooting device for basketball training and using method
The invention relates to a divisional application of an environment-friendly basketball training shooting device, which is applied for 2018, 07, 19 and with the application number of CN 201810798872.5.
Technical Field
The invention relates to the technical field of sports goods, in particular to an environment-friendly shooting device for basketball training and a using method.
Background
Basketball is one of the antagonistic indoor sports with dribbling, shooting, putting and dunking as the center, and basketball has good integration, appreciation, interestingness and fitness.
At present, basketball sports become popular group sports in China, more and more people are added to the group of basketball sports, and to better exercise the basketball, a period of basketball training is required, wherein, the accuracy requirement of the pitching in the basketball training is very high, and the pitching training is also one of the most important links in the basketball training, however, in the current basketball shooting training, two or more people are used for training together, for example, one person is required to pick up the basketball when shooting the basketball, then another person can do the training of the bowling, and if the number of bowling balls to be thrown is calculated, the person is required to write the number of bowling balls aside, therefore, the requirement personnel for basketball shooting training is increased, and the efficiency of the basketball shooting training can be reduced by carrying out shooting training in such a way.
Disclosure of Invention
Technical problem to be solved
Aiming at the defects of the prior art, the invention provides an environment-friendly shooting device for basketball training, and solves the problems that the quantity of people required for basketball shooting training is large, and the efficiency of basketball shooting training is reduced.
(II) technical scheme
In order to achieve the purpose, the invention is realized by the following technical scheme: the utility model provides an environment-friendly basketball training is with throwing basket device, includes the backboard, the bottom fixedly connected with two firm posts of backboard both sides face, the bottom fixedly connected with two firm casees of firm post, two the equal fixedly connected with backup pad in bottom of firm case, the top of backboard both sides face and the inside of firm case all are provided with power storage device, the positive center department fixed mounting of backboard has the basket, the below of basket is provided with counting assembly, counting assembly's both sides and the top surface of backup pad all are provided with elevating gear, the bottom of the relative one side of elevating gear all is provided with positioner.
Preferably, the power storage device comprises a first stabilizing bearing, a first stabilizing rod, stabilizing springs, stabilizing plates, a first driven sheave, a first driving transmission belt, a solar panel, a protective cover, a second stabilizing bearing, a second stabilizing rod, driving sheaves, a crank, a storage battery and an inverter, wherein the two first stabilizing bearings are embedded at the tops of two side surfaces of the backboard, the two first stabilizing rods are inserted into the inner cavities of the two stabilizing bearings, the two stabilizing spring springs are sleeved on the surfaces of the opposite ends of the two first stabilizing rods, the two stabilizing plates are fixedly arranged on the opposite sides of the two stabilizing springs and positioned on the surface of the first stabilizing rod, the two first driven sheaves are sleeved on the opposite sides of the two stabilizing plates and positioned on the surface of the first stabilizing rod, the two first driving transmission belts are sleeved in the grooves of the two first driven sheaves, two the equal fixed mounting of one end that the backboard was kept away from to the one side that first driven sheave is opposite and is located first firm pole has solar cell panel, the equal fixed mounting in top that the outside of solar cell panel was located the backboard both sides face has the protection casing, two the bottom of the opposite one side of firm post is inlayed and is had two second firm bearings, two the inner chamber of second firm bearing is pegged graft and is had two second firm poles, two the surface cover of second firm pole center department is equipped with two drive sheaves, two the equal fixed mounting of the opposite one end of second firm pole has the crank, and the bottom surface fixed mounting of the firm incasement chamber in left side has the battery, and the bottom surface fixed mounting of the firm incasement chamber in right side has the dc-to-ac converter, solar cell panel and dc-to-ac converter electric connection, dc-to-ac converter.
Preferably, the counting device comprises a counting box, a ball inlet, a ball outlet, a partition plate, a first fixing bearing, a fixing rod, a touch plate, a first fixing ring, a second fixing ring, a reset spring, a driving gear, a second fixing bearing, a rotary disc, a driven gear, a counting hole, a material conveying hopper, a counting ball body and a limiting plate, wherein the counting box is arranged under the basket, the ball inlet is formed in the center of the top surface of the technical box, the bottom of the basket is inserted into the inner cavity of the ball inlet, the ball outlet is formed in the center of the bottom surface of the counting box, two partition plates are fixedly arranged at the top ends of the top surface and the bottom surface of the inner cavity of the counting box, two first fixing bearings are embedded at the tops of the two side surfaces of the two partition plates, the fixing rod is inserted into the inner cavities of the two first fixing bearings, and the touch plate is fixedly arranged at the center, the bottom surface of the left end of the fixed rod is fixedly connected with a first fixed ring, the inner cavity of the first fixed ring is sleeved with a second fixed ring, the top of the second fixing ring is fixedly connected with a return spring, one end of the return spring, which is far away from the fixing rod, is fixedly connected with the left end of the top surface of the counting box, a driving gear is fixedly arranged at the right end of the fixed rod, a second fixed bearing is fixedly arranged between the top of the right side surface of the partition plate at the right side and the top of the inner wall at the right side of the counting box, a turntable is sleeved in the inner cavity of the second fixed bearing, a driven gear is welded on the bottom surface of the turntable, the right end of the top surface of the rotary disc is provided with a counting hole, the right end of the top surface of the counting box above the rotary disc is embedded with a material conveying hopper, the inner cavity of the material conveying hopper is provided with a counting ball body, and a limiting plate is fixedly arranged below the driving gear and on the right side surface of the right side partition plate.
Preferably, the lifting device comprises positioning columns, first positioning bearings, a threaded rod, a lifting pipe, strip-shaped holes, lifting plates, a second driven sheave, a stabilizing pipe, fixing boxes, a speed reducing motor, a second positioning bearing, a driving shaft, a double sheave and a second driving transmission belt, wherein two positioning columns are fixedly arranged on one opposite sides of the two stabilizing boxes and positioned at two ends of the top surface of the supporting plate, two first positioning bearings are fixedly arranged at the tops and bottoms of inner cavities of the two positioning columns, the threaded rod is inserted into inner cavities of the two first positioning bearings, the lifting pipe is in threaded connection with the surface of the top end of the threaded rod, two strip-shaped holes are formed in one opposite side of the two positioning columns, two lifting plates are inserted into the tops of the inner cavities of the two strip-shaped holes, and one opposite ends of the two lifting plates are fixedly connected with one opposite side of the lifting pipe, two opposite ends of the lifting plate are fixedly connected with two side surfaces of the counting box respectively, two second driven grooved wheels are sleeved on the surface of the bottom end of each threaded rod, two stabilizing pipes are fixedly connected to the bottoms of the opposite surfaces of the two positioning columns, a fixing box is fixedly mounted at the center of the top surface of each stabilizing pipe, a speed reduction motor is fixedly mounted in an inner cavity of the top of the fixing box, two second positioning bearings are embedded in the centers of the top surface and the bottom surface of each stabilizing pipe below the fixing box, driving shafts are inserted into the inner cavities of the two second positioning bearings, the tail end of an output shaft at the bottom of the speed reduction motor is fixedly connected with the top end of each driving shaft through a coupler, double grooved wheels are fixedly mounted at the center of each driving shaft, two second driving transmission belts are sleeved in upper and lower grooves of the double grooved wheels, and opposite ends of the two second driving transmission belts penetrate through the opposite surfaces of the two positioning columns and are respectively connected with The groove of the movable grooved wheel is sleeved.
Preferably, the positioning device comprises positioning grooved wheels, fixing pipes, positioning holes, driving blocks, positioning blocks, thread grooves, driving bearings, long bolts, positioning springs, positioning plates and a knob, wherein the two positioning grooved wheels are sleeved on the surfaces of the threaded rods and above the two second driven grooved wheels, the two fixing pipes are fixedly arranged below the two strip-shaped holes and on the opposite surfaces of the two positioning columns, the two fixing holes are formed in the opposite ends of the two fixing pipes and on the opposite surfaces of the two positioning columns, the two driving blocks are inserted into the inner cavities of the two positioning holes, the two positioning blocks are fixedly arranged at the opposite ends of the two driving blocks, the two thread grooves are formed in the opposite surfaces of the two driving blocks, the two driving bearings are embedded in the opposite surfaces of the two fixing pipes, and the two long bolts are inserted into the inner cavities of the two driving bearings, two the fixed pipe relative one side and the surperficial cover that is located the long bolt are equipped with two positioning spring, two the relative one end of positioning spring and the fixed surface that is located the long bolt install two locating plates, two the opposite one side of locating plate and the one end fixed mounting that is located the long bolt have two knobs.
Preferably, the first driven sheave and the driving sheave are in transmission connection through a first driving transmission belt, and the double sheaves and the second driven sheave are in transmission connection through a second driving transmission belt.
Preferably, be the transmission connection between drive gear and the driven gear, two the surface of the relative one end of first firm pole and the inner wall fixed connection of first firm bearing, the surface of the relative one end of second firm pole and the inner wall fixed connection of second firm bearing.
Preferably, the surfaces of the two ends of the fixing rod are fixedly connected with the inner wall of the first fixing bearing, the surfaces of the top end and the bottom end of the driving shaft are fixedly connected with the inner wall of the second positioning bearing, and the opposite ends of the long bolts are connected with the inner wall of the thread groove in a threaded mode.
(III) advantageous effects
The invention provides an environment-friendly shooting device for basketball training. The method has the following beneficial effects:
(1) the environment-friendly basketball shooting device for basketball training is characterized in that the solar cell panel can transmit converted electric energy to the inside of a storage battery through the inverter by matching the solar cell panel, the inverter and the storage battery in the power storage device, the storage battery continuously receives the converted electric energy, so that sufficient electric energy can be provided for the whole basketball shooting training device, the crank, the driving grooved wheel, the first driving transmission belt and the first driven grooved wheel are matched for use, the rotation of the crank can drive the driving grooved wheel and the first driving transmission belt to rotate simultaneously, the rotation of the first driving transmission belt can drive the first driven grooved wheel to rotate, the first stabilizing rod can be conveniently driven to rotate by the rotation of the first driven grooved wheel, and the rotation angle of the solar cell panel can be controlled by the rotation of the first stabilizing rod, therefore, the solar cell panel can utilize light energy more fully, the light energy is converted into more electric energy, and the electric energy collection intensity can be improved.
(2) The environment-friendly shooting device for basketball training is used by matching the counting device with a basketball inlet, a touch plate, a fixed rod, a driving gear, a driven gear, a rotary disc, a counting hole and a counting ball body, when a basketball is put into the basket, the basketball body can enter the counting box through the basketball inlet, the basketball body can press the touch plate to move downwards when entering the counting box, the touch plate can drive the fixed rod and the driving gear to rotate simultaneously when moving downwards, the driving gear can drive the driven gear and the rotary disc to rotate, the rotation of the rotary disc can drive the counting hole to correspond to the bottom position of a conveying hopper, so that the counting ball body in the conveying hopper can conveniently fall into the counting hole, when the counting ball body passes through the inner cavity of the counting hole, one-time counting of the shot is completed, through the repeated foretell process, just can take notes the basketball in proper order and throw the number of basket, drop the inside count spheroid of count incasement portion through gathering at last and just can be very clear obtain the basketball and throw the total number of basket into, great increase like this the convenience degree of basketball training.
(3) The environment-friendly shooting device for basketball training is used by matching the speed reducing motor in the lifting device, the driving shaft, the double-grooved pulley, the second driving transmission belt, the second driven grooved pulley, the threaded rod, the lifting pipe and the lifting plate, the driving shaft and the double-grooved pulley can be simultaneously driven to rotate by the starting of the speed reducing motor, the second driven grooved pulley and the threaded rod can be simultaneously driven to rotate by the rotation of the double-grooved pulley, when the speed reducing motor rotates forwards, the threaded rod can also rotate forwards, so that the lifting pipe and the lifting plate can be simultaneously driven to move upwards by the rotation of the threaded rod, the counting device can be driven to be connected with a basket by the upward movement of the lifting plate, the counting device can be conveniently used, when the speed reducing motor rotates backwards, the threaded rod can also rotate backwards, so that the lifting pipe and the lifting plate can be simultaneously moved downwards by the rotation, the downward movement of the lifting plate can drive the counting device to move downwards, the counting device can conveniently check the counting result of the counting device by the downward movement of the counting device, and therefore the basketball shooting training device is more convenient to use.
(4) The environment-friendly shooting device for basketball training is characterized in that the knob, the long bolt, the driving block and the positioning block are matched for use in the positioning device, when the knob rotates forwards, the long bolt can be driven to rotate forwards, the driving block can be driven to move leftwards by the long bolt, the positioning block can be driven to move leftwards by the driving block, the groove wall of the positioning block can be fully contacted with the groove wall of the positioning grooved wheel by the leftward movement of the positioning block, so that the clamping effect is achieved, the counting device can be conveniently fixed when moving to the top, when the knob rotates backwards, the knob can drive the long bolt to rotate, the driving block can be driven to move rightwards by the rotation of the long bolt, the positioning block can be driven to move rightwards by the leftward movement of the driving block, and the shooting device can be conveniently and fully separated from the groove wall of the positioning, this allows the lifting device to continue to be used.
(5) This environment-friendly basketball is shot device for training uses through power storage device, counting assembly, elevating gear and positioner's cooperation, can make the training that the basketball shot just can be accomplished through individual to the sportsman, has reduced training personnel's demand, and this basketball shot training device can make the more convenient use of sportsman moreover, has so also further increased the efficiency of sportsman's basketball shot training.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a front view of the structure of the present invention;
FIG. 3 is a front cross-sectional view of the construction of the counting device of the present invention;
FIG. 4 is an enlarged view of the configuration of the basketball shooting apparatus for basketball training in FIG. 1 according to the present invention;
FIG. 5 is a schematic view of the positioning block structure of the present invention.
In the figure: 1 backboard, 2 stabilizing columns, 3 stabilizing boxes, 4 supporting plates, 5 electric power storage devices, 51 first stabilizing bearings, 52 first stabilizing rods, 53 stabilizing springs, 54 stabilizing plates, 55 first driven sheaves, 56 first driving transmission belts, 57 solar panels, 58 protective covers, 59 second stabilizing bearings, 511 second stabilizing rods, 512 driving sheaves, 513 crank handles, 514 storage batteries, 515 inverter, 6 basket, 7 counting device, 71 counting box, 72 ball inlet, 73 ball outlet, 74 clapboard, 75 first fixing bearings, 76 fixing rods, 77 touch plate, 78 first fixing rings, 79 second fixing rings, 711 reset springs, 712 driving gears, 713 second fixing bearings, 714 turnplate, 715 driven gears, 716 counting holes, 717 ball output hoppers, 718 counting balls, 719 limiting plates, 8 lifting devices, positioning columns 81, 82 first positioning bearings, 83, 713, 8 lifting devices, 8 positioning columns, 84 lifting pipes, 85 strip-shaped holes, 86 lifting plates, 87 second driven sheaves, 88 stabilizing pipes, 89 fixing boxes, 811 speed reduction motors, 812 second positioning bearings, 813 driving shafts, 814 double sheaves, 815 second driving transmission belts, 9 positioning devices, 91 positioning sheaves, 92 fixing pipes, 93 positioning holes, 94 driving blocks, 95 positioning blocks, 96 threaded grooves, 97 driving bearings, 98 long bolts, 99 positioning springs, 911 positioning plates and 912 knobs.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be illustrative of the present invention and should not be construed as limiting the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: the utility model provides an environment-friendly basketball training is with device of shooting, including backboard 1, two firm posts 2 of bottom fixedly connected with of backboard 1 both sides face, two firm casees 3 of bottom fixedly connected with of firm post 2, the equal fixedly connected with backup pad 4 in bottom of two firm casees 3, the top of backboard 1 both sides face and the inside of firm case 3 all are provided with power storage device 5, the positive central fixed mounting of department of backboard 1 has basket 6, basket 6's below is provided with counting assembly 7, counting assembly 7's both sides and backup pad 4's top surface all are provided with elevating gear 8, the bottom of the relative one side of elevating gear 8 all is provided with positioner 9.
The electric power storage device 5 comprises a first stabilizing bearing 51, a first stabilizing rod 52, stabilizing springs 53, stabilizing plates 54, a first driven grooved pulley 55, a first driving transmission belt 56, a solar cell panel 57, a protective cover 58, a second stabilizing bearing 59, a second stabilizing rod 511, a driving grooved pulley 512, a crank 513, a storage battery 514 and an inverter 515, wherein two first stabilizing bearings 51 are embedded in the tops of two side surfaces of the backboard 1, two first stabilizing rods 52 are inserted into the inner cavities of the two first stabilizing bearings 51, the surfaces of the opposite ends of the two first stabilizing rods 52 are fixedly connected with the inner wall of the first stabilizing bearing 51, two stabilizing springs 53 are sleeved on the surfaces of the opposite ends of the two first stabilizing rods 52, two stabilizing plates 54 are fixedly installed on the surfaces of the first stabilizing rods 52 on the opposite sides of the two stabilizing springs 53, two first driven grooved pulleys 55 are sleeved on the surfaces of the first stabilizing rods 52 on the opposite sides of the two stabilizing plates 54, the first driven grooved wheels 55 and the driving grooved wheels 512 are in transmission connection through first driving transmission belts 56, two first driving transmission belts 56 are sleeved in grooves of the two first driven grooved wheels 55, bottom ends of the two first driving transmission belts 56 penetrate through the bottom surface of the protective cover 58 and are sleeved in grooves of the driving grooved wheels 512, solar cell panels 57 are fixedly mounted at one sides of the two first driven grooved wheels 55 opposite to each other and at one ends of the first stabilizing rods 52 far away from the backboard 1, the solar cell panels 57 can transmit converted electric energy to the inside of the storage battery 514 through the inverter 515, the protective covers 58 are fixedly mounted at the outer parts of the solar cell panels 57 and at the tops of two side surfaces of the backboard 1, the protective cover 58 is made of high-hardness transparent glass, two second stabilizing bearings 59 are embedded at the bottoms of the opposite surfaces of the two stabilizing columns 2, two second stabilizing rods 511 are inserted into inner cavities of the two second stabilizing bearings 59, the surface of the opposite end of the second stabilizing rod 511 is fixedly connected with the inner wall of the second stabilizing bearing 59, two driving grooved wheels 512 are sleeved on the surface of the center of the two second stabilizing rods 511, a crank 513 is fixedly installed at the opposite end of the two second stabilizing rods 511, the driving grooved wheels 512 and the first driving transmission belt 56 can be driven to rotate simultaneously by the rotation of the crank 513, the first driven grooved wheel 55 can be driven to rotate by the rotation of the first driving transmission belt 56, the first stabilizing rod 51 can be conveniently driven to rotate by the rotation of the first driven grooved wheel 55, the rotation angle of the solar panel 57 can be controlled by the rotation of the first stabilizing rod 52, so that the solar panel 57 can more fully utilize light energy and convert the light energy into more electric energy, a storage battery 514 is fixedly installed on the bottom surface of the inner cavity of the left stabilizing box 3, and the converted electric energy can be continuously received by the storage battery 514, therefore, sufficient electric energy can be provided for the whole basketball shooting training device, the inverter 515 is fixedly installed on the bottom surface of the inner cavity of the right-side stabilizing box 3, the solar cell panel 57 is electrically connected with the inverter 515, and the inverter 515 is electrically connected with the storage battery 514.
The counting device 7 comprises a counting box 71, a ball inlet 72, a ball outlet 73, partition plates 74, a first fixed bearing 75, a fixed rod 76, a touch plate 77, a first fixed ring 78, a second fixed ring 79, a reset spring 711, a driving gear 712, a second fixed bearing 713, a turntable 714, a driven gear 715, a counting hole 716, a material conveying hopper 717, a counting ball 718 and a limit plate 719, wherein the counting box 71 is arranged right below the basket 6, a material taking port is arranged on the right side of the front surface of the counting box 71, the counting ball 718 can be conveniently taken out by the material taking port, the total quantity of the basketball thrown into the basket 6 can be calculated, the ball inlet 72 is arranged in the center of the top surface of the counting box 71, the bottom of the basket 6 is inserted into the inner cavity of the ball inlet 72, the ball outlet 73 is arranged in the center of the bottom surface of the counting box 71, the two partition plates 74 are fixedly arranged at the top surface, two first fixing bearings 75 are inlaid at the tops of two side surfaces of the two partition plates 74, fixing rods 76 are respectively inserted into the inner cavities of the two first fixing bearings 75, the surfaces of two ends of each fixing rod 76 are fixedly connected with the inner walls of the first fixing bearings 75, a touch plate 77 is fixedly installed at the center of the front surface of each fixing rod 76, when a basketball is thrown into the basket 6, the basketball body enters the inside of the counting box 71 through the basketball inlet 72, the basketball body enters the inside of the counting box 71 and presses the touch plate 77 to move downwards, the touch plate 77 can drive the fixing rods 76 and the driving gear 712 to rotate simultaneously by moving downwards, the driving gear 712 can drive the driven gear 715 and the rotary disc 714 to rotate, the rotation of the rotary disc 714 can drive the counting hole 716 to correspond to the bottom position of the conveying hopper 717, so that the counting ball 718 in the conveying hopper 717 can conveniently fall into the counting hole 716, when the counting ball body 718 passes through the inner cavity of the counting hole 716, one shot of shooting is completed, the number of basketball shooting baskets 6 can be recorded in sequence by repeating the above processes, finally, the total number of the basketball shooting baskets can be clearly obtained by summarizing the counting ball body 718 falling into the counting box 71, the bottom surface of the left end of the fixing rod 76 is fixedly connected with the first fixing ring 78, the inner cavity of the first fixing ring 78 is sleeved with the second fixing ring 79, the top of the second fixing ring 79 is fixedly connected with the reset spring 711, one end of the reset spring 711, which is far away from the fixing rod 76, is fixedly connected with the left end of the top surface of the counting box 71, the right end of the fixing rod 76 is fixedly provided with the driving gear 712, the driving gear 712 is in transmission connection with the driven gear 715, the second fixing bearings 713 are fixedly arranged between the top of the right side surface of the partition plate 74 on, the inner chamber cover of second fixed bearing 713 is equipped with carousel 714, the bottom surface welding of carousel 714 has driven gear 715, count hole 716 has been seted up to the right-hand member of carousel 714 top surface, the top of carousel 714 and the right-hand member that is located the top surface of count case 71 are inlayed and are had defeated hopper 717, the inner chamber of defeated hopper 717 is provided with count spheroid 718, drive gear 712's below and the right flank fixed mounting who is located right side baffle 74 have a limiting plate 719, limiting plate 719 can make things convenient for count spheroid 718 to drop the bottom of count case 71 inner chamber.
The lifting device 8 comprises positioning columns 81, first positioning bearings 82, threaded rods 83, lifting pipes 84, strip-shaped holes 85, lifting plates 86, second driven grooved wheels 87, stabilizing pipes 88, fixed boxes 89, a speed reduction motor 811, second positioning bearings 812, a driving shaft 813, double grooved wheels 814 and a second driving transmission belt 815, wherein two positioning columns 81 are fixedly arranged at two ends of the top surface of the supporting plate 4 and on one opposite side of the two stabilizing boxes 3, two first positioning bearings 82 are fixedly arranged at the top and the bottom of the inner cavities of the two positioning columns 81, the threaded rods 83 are respectively inserted into the inner cavities of the two first positioning bearings 82, the lifting pipes 84 are respectively connected with the surfaces of the top ends of the threaded rods 83 in a threaded manner, two strip-shaped holes 85 are arranged on the opposite surfaces of the two positioning columns 81, two lifting plates 86 are inserted into the top of the inner cavities of the two strip-shaped holes 85, one opposite ends of the two lifting plates 86 are fixedly connected, the opposite ends of the two lifting plates 86 are fixedly connected with the two side surfaces of the counting box 71 respectively, two second driven grooved wheels 87 are sleeved on the surfaces of the bottom ends of the two threaded rods 83, the bottom parts of the opposite surfaces of the two positioning columns 81 are fixedly connected with stabilizing pipes 88, a fixing box 89 is fixedly installed at the center of the top surface of the stabilizing pipes 88, a speed reducing motor 811 is fixedly installed in an inner cavity of the top part of the fixing box 89, by controlling the speed reducing motor 811 to rotate positively, the speed reducing motor 811 can drive the driving shaft 813, the double grooved wheels 814 and the second driving transmission belt 815 to rotate simultaneously, the rotation of the second driving transmission belt 815 can drive the threaded rods 83 to rotate positively, the lifting pipes 84 and the lifting plates 86 can be driven to move upwards simultaneously by the positive rotation of the threaded rods 83, the upward movement of the lifting plates 86 can drive the counting device 7 to be connected with the basket 6, through the reverse rotation of the speed reducing motor 811, the threaded rod 83 can also be reversely rotated, so that the lifting pipe 84 and the lifting plate 86 can be driven to move downwards simultaneously through the rotation of the threaded rod 83, the downward movement of the lifting plate 86 can drive the counting device 7 to move downwards, when the counting device 7 moves at the bottommost part, the counting result of the counting device 7 can be conveniently checked, two second positioning bearings 812 are embedded in the centers of the top surface and the bottom surface of the stabilizing pipe 88 below the fixing box 89, the inner cavities of the two second positioning bearings 812 are respectively inserted with a driving shaft 813, the surfaces of the top end and the bottom end of the driving shaft 813 are respectively and fixedly connected with the inner walls of the second positioning bearings 812, the tail end of an output shaft at the bottom of the speed reducing motor 811 is fixedly connected with the top end of the driving shaft 813 through a coupler, the surface at the center of the driving shaft 813 is fixedly provided with a double grooved pulley 814, and the double grooved pulley 814 and the second driven grooved pulley, two second driving transmission belts 815 are sleeved in the upper and lower grooves of the double grooved pulley 814, and opposite ends of the two second driving transmission belts 815 penetrate through opposite surfaces of the two positioning columns 81 and are respectively sleeved in the grooves of the two second driven grooved pulleys 87.
The positioning device 9 comprises positioning grooved wheels 91, fixing tubes 92, positioning holes 93, driving blocks 94, positioning blocks 95, thread grooves 96, driving bearings 97, long bolts 98, positioning springs 99, positioning plates 911 and knobs 912, wherein the two positioning grooved wheels 91 are sleeved on the surfaces of the threaded rods 83 and above the two second driven grooved wheels 87, two fixing tubes 92 are fixedly installed on the surfaces, opposite to the two positioning columns 81, below the two strip-shaped holes 85, one ends, opposite to the two fixing tubes 92, of the two positioning holes 93 are formed in the surfaces, opposite to the two positioning columns 81, of the two positioning holes 93, the two driving blocks 94 are inserted into the inner cavities of the two positioning holes 93, two positioning blocks 95 are fixedly installed at the ends, opposite to the two driving blocks 94, of the two thread grooves 96 are formed in the surfaces, opposite to the two fixing tubes 92, two driving bearings 97 are embedded in the surfaces, two long bolts 98 are inserted into the inner cavities of the two driving bearings 97, opposite ends of the two long bolts 98 are in threaded connection with the inner wall of the threaded groove 96, two positioning springs 99 are sleeved on the opposite sides of the two fixing pipes 92 and on the surfaces of the long bolts 98, two positioning plates 911 are fixedly installed on the opposite ends of the two positioning springs 99 and on the surfaces of the long bolts 98, two knobs 912 are fixedly installed on the opposite sides of the two positioning plates 911 and on the opposite ends of the long bolts 98, the long bolts 98 can be driven to rotate forward through the forward rotation knobs 912, the driving block 94 can be driven to move leftward by the forward rotation of the long bolts 98, the positioning block 95 can be driven to move leftward by the leftward movement of the driving block 94, the groove wall of the positioning block 95 can be fully contacted with the groove wall of the positioning groove wheel 91 by the leftward movement of the positioning block 95, and thus the positioning groove wheel 91 and the positioning, and then can impel counting assembly 7 fully to fix in the top, through reversal knob 912, knob 912 can drive long bolt 98 and rotate, and long bolt 98 rotates just can drive the drive block 94 and move to the right, and drive block 94 moves left just can drive locating piece 95 and move to the right, just can conveniently fully break away from with the cell wall of location sheave 91 through locating piece 95 moves to the right, just so can make elevating gear 8 continue to use.
When the environment-friendly basketball shooting device for basketball training is used, the solar cell panel 57, the inverter 515 and the storage battery 514 are arranged, the solar cell panel 57 can transmit the converted electric energy to the inside of the storage battery 514 through the inverter 515, the storage battery 514 continuously receives the converted electric energy, so that sufficient electric energy can be provided for the whole basketball shooting training device, the driving grooved wheel 512, the first driving transmission belt 56 and the first driven grooved wheel 55 are matched for use, the driving grooved wheel 512 and the first driving transmission belt 56 can be driven to rotate simultaneously by the rotation of the crank 513, the first driving transmission belt 56 can drive the first driven grooved wheel 55 to rotate, the first stabilizing rod 52 can be conveniently driven to rotate by the rotation of the first driven grooved wheel 55, the rotation angle of the solar cell panel 57 can be controlled by the rotation of the first stabilizing rod 52, therefore, the solar cell panel 57 can make more full use of light energy and convert the light energy into more electric energy, then the deceleration motor 811 is controlled to rotate positively, the deceleration motor 811 rotates positively to drive the driving shaft 813, the double-grooved pulley 814 and the second driving belt 815 to rotate simultaneously, the second driving belt 815 rotates to drive the threaded rod 83 to rotate positively, the lifting pipe 84 and the lifting plate 86 can be driven to move upwards simultaneously by the positive rotation of the threaded rod 83, the counting device 7 can be driven to be connected with the basket 6 by the upward movement of the lifting plate 86, the counting device 7 can be conveniently used, when the counting device 7 moves upwards to the final position, the positioning device 9 can be used, the long bolt 98 can be driven to rotate positively by the positive rotation knob 912, the long bolt 98 can be driven to move leftwards by the driving block 94, when a basketball is put into the basket 6, the basketball body enters the counting box 71 through the ball inlet 72, presses the movable contact plate 77 to move downwards, the movable contact plate 77 moves downwards to drive the fixed rod 76 and the driving gear 712 to rotate simultaneously, and the driving gear 712 rotates to drive the driven gear 715 and the rotating disk 714 to rotate, the rotation of the rotary disc 714 can make the counting hole 716 correspond to the bottom position of the material conveying hopper 717, so that the counting ball body 718 in the material conveying hopper 717 can conveniently fall into the counting hole 716, when the counting ball body 718 passes through the inner cavity of the counting hole 716, one-time counting of basketball shooting is completed, the number of basketball shooting baskets 6 can be sequentially recorded by repeating the processes, finally, the total number of the basketball shooting baskets can be clearly obtained by summarizing the counting ball body 718 falling into the counting box 71, at this time, the knob 912 can drive the long bolt 98 to rotate through the reverse rotation knob 912, the long bolt 98 can drive the driving block 94 to move rightwards, the driving block 94 can drive the positioning block 95 to move rightwards, and the positioning block 95 can conveniently and fully separate from the groove wall of the positioning grooved wheel 91 through the rightward movement of the positioning block 95, just so can make elevating gear 8 continue to use, through gear motor 811's reversal at last, threaded rod 83 also can follow the reversal, just so can drive fall way 84 and lifter plate 86 downstream simultaneously through the rotation of threaded rod 83, and the downstream of lifter plate 86 just can drive counting assembly 7 downstream, and when the downstream of counting assembly 7 was the bottom, just can conveniently look over the result of counting assembly 7 count.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.

Claims (1)

1. The use method of the shooting device for the environment-friendly basketball training comprises a backboard (1), and is characterized in that: the bottom of each side face of the backboard (1) is fixedly connected with two stabilizing columns (2), the bottom of each stabilizing column (2) is fixedly connected with two stabilizing boxes (3), the bottom of each stabilizing box (3) is fixedly connected with a supporting plate (4), the top of each side face of the backboard (1) and the inside of each stabilizing box (3) are respectively provided with an electric power storage device (5), the center of the front face of the backboard (1) is fixedly provided with a basket (6), a counting device (7) is arranged below the basket (6), two sides of the counting device (7) and the top of each supporting plate (4) are respectively provided with a lifting device (8), and the bottom end of one side, opposite to the lifting device (8), is respectively provided with a positioning device (9);
the counting device (7) comprises a counting box (71), a ball inlet (72), a ball outlet (73), partition plates (74), a first fixed bearing (75), a fixed rod (76), a touch plate (77), a first fixed ring (78), a second fixed ring (79), a reset spring (711), a driving gear (712), a second fixed bearing (713), a turntable (714), a driven gear (715), a counting hole (716), a material conveying hopper (717), a counting sphere (718) and a limit plate (719), wherein the counting box (71) is arranged right below the basket (6), the ball inlet (72) is formed in the center of the top surface of the counting box (71), the bottom of the basket (6) is inserted into the inner cavity of the ball inlet (72), the ball outlet (73) is formed in the center of the bottom surface of the counting box (71), and the two partition plates (74) are fixedly arranged at the top surface and the two ends of the inner cavity of the counting box (71), two first fixing bearings (75) are inlaid at the tops of two side faces of the partition board (74), a fixing rod (76) is inserted into an inner cavity of each first fixing bearing (75), a touch plate (77) is fixedly installed at the center of the front face of the fixing rod (76), a first fixing ring (78) is fixedly connected to the bottom face of the left end of the fixing rod (76), a second fixing ring (79) is sleeved on the inner cavity of the first fixing ring (78), a reset spring (711) is fixedly connected to the top of the second fixing ring (79), one end, away from the fixing rod (76), of the reset spring (711) is fixedly connected to the left end of the top face of the counting box (71), a driving gear (712) is fixedly installed at the right end of the fixing rod (76), and a second fixing bearing (713) is fixedly installed between the top of the right side face of the partition board (74) on the right side and the top, a rotating disc (714) is sleeved in an inner cavity of the second fixed bearing (713), a driven gear (715) is welded on the bottom surface of the rotating disc (714), a counting hole (716) is formed in the right end of the top surface of the rotating disc (714), a material conveying hopper (717) is embedded in the right end, located on the top surface of the counting box (71), above the rotating disc (714), a counting ball (718) is arranged in the inner cavity of the material conveying hopper (717), and a limiting plate (719) is fixedly installed below the driving gear (712) and located on the right side surface of the right side partition plate (74);
the electric power storage device (5) comprises first stabilizing bearings (51), first stabilizing rods (52), stabilizing springs (53), stabilizing plates (54), first driven grooved wheels (55), first driving transmission belts (56), a solar cell panel (57), a protective cover (58), second stabilizing bearings (59), second stabilizing rods (511), driving grooved wheels (512), a crank (513), a storage battery (514) and an inverter (515), wherein the two first stabilizing bearings (51) are embedded in the tops of two side surfaces of the backboard (1), two first stabilizing rods (52) are inserted into inner cavities of the two first stabilizing bearings (51), the two stabilizing springs (53) are sleeved on the surfaces of the opposite ends of the two first stabilizing rods (52), and the two stabilizing plates (54) are fixedly mounted on the surfaces of the two opposite sides of the two stabilizing springs (53) and located on the first stabilizing rods (52), two first driven grooved wheels (55) are sleeved on one opposite side of the two stabilizing plates (54) and positioned on the surface of the first stabilizing rod (52), two first driving transmission belts (56) are sleeved in grooves of the two first driven grooved wheels (55), solar panels (57) are fixedly installed on one opposite sides of the two first driven grooved wheels (55) and positioned at one ends, far away from the backboard (1), of the first stabilizing rods (52), protective covers (58) are fixedly installed on the tops of the two side faces of the backboard (1) outside the solar panels (57), two second stabilizing bearings (59) are embedded at the bottoms of the opposite surfaces of the two stabilizing columns (2), two second stabilizing rods (511) are inserted into inner cavities of the two second stabilizing bearings (59), and two driving grooved wheels (512) are sleeved on the surface of the centers of the two second stabilizing rods (511), opposite ends of the two second stabilizing rods (511) are fixedly provided with crank handles (513), the bottom surface of the inner cavity of the stabilizing box (3) on the left side is fixedly provided with a storage battery (514), the bottom surface of the inner cavity of the stabilizing box (3) on the right side is fixedly provided with an inverter (515), the solar cell panel (57) is electrically connected with the inverter (515), and the inverter (515) is electrically connected with the storage battery (514);
the lifting device (8) comprises positioning columns (81), first positioning bearings (82), a threaded rod (83), lifting pipes (84), strip-shaped holes (85), a lifting plate (86), second driven sheaves (87), a stabilizing pipe (88), a fixed box (89), a speed reduction motor (811), second positioning bearings (812), a driving shaft (813), double sheaves (814) and a second driving belt (815), wherein two positioning columns (81) are fixedly arranged at two ends of one opposite side of the two stabilizing boxes (3) and positioned on the top surface of the supporting plate (4), two first positioning bearings (82) are fixedly arranged at the top and the bottom of the inner cavities of the two positioning columns (81), the threaded rod (83) is inserted into the inner cavities of the two first positioning bearings (82), the lifting pipes (84) are in threaded connection with the surface of the top end of the threaded rod (83), two strip-shaped holes (85) are formed in one opposite side of the two positioning columns (81), the top of the inner cavity of the two strip-shaped holes (85) is inserted with two lifting plates (86), one ends of the two lifting plates (86) opposite to each other are fixedly connected with one side of the lifting pipe (84) opposite to each other, one ends of the two lifting plates (86) opposite to each other are respectively fixedly connected with two side surfaces of the counting box (71), two second driven grooved wheels (87) are sleeved on the surface of the bottom end of each threaded rod (83), the bottom of one side of each positioning column (81) opposite to each other is fixedly connected with a stabilizing pipe (88), a fixing box (89) is fixedly installed at the center of the top surface of the stabilizing pipe (88), a speed reducing motor (811) is fixedly installed in the inner cavity of the top of the fixing box (89), two second positioning bearings (812) are embedded in the centers of the top surface and the bottom surface of the stabilizing pipe (88), and driving shafts (813) are inserted in the inner cavities of the two second positioning bearings (812), the tail end of an output shaft at the bottom of the speed reducing motor (811) is fixedly connected with the top end of a driving shaft (813) through a coupler, a double grooved pulley (814) is fixedly installed on the surface of the center of the driving shaft (813), two second driving transmission belts (815) are installed in an upper groove and a lower groove of the double grooved pulley (814), one ends of the two second driving transmission belts (815) opposite to each other penetrate through one surface of two positioning columns (81) and are respectively sleeved with grooves of two second driven grooved pulleys (87), the positioning device (9) comprises a positioning grooved pulley (91), a fixing pipe (92), a positioning hole (93), a driving block (94), a positioning block (95), a thread groove (96), a driving bearing (97), a long bolt (98), a positioning spring (99), a positioning plate (911) and a knob (912), two positioning grooved pulleys (91) are sleeved on the surface, above the two second driven grooved pulleys (87) and located on a threaded rod (83), two fixed tubes (92) are fixedly arranged below the two strip-shaped holes (85) and on the opposite surfaces of the two positioning columns (81), two positioning holes (93) are formed in the opposite ends of the two fixed tubes (92) and on the opposite surfaces of the two positioning columns (81), two driving blocks (94) are inserted into the inner cavities of the two positioning holes (93), two positioning blocks (95) are fixedly arranged at the opposite ends of the two driving blocks (94), two thread grooves (96) are formed in the opposite surfaces of the two driving blocks (94), two driving bearings (97) are embedded in the opposite surfaces of the two fixed tubes (92), two long bolts (98) are inserted into the inner cavities of the two driving bearings (97), two positioning springs (99) are sleeved on the opposite sides of the two fixed tubes (92) and on the surfaces of the long bolts (98), two positioning plates (911) are fixedly arranged at the opposite ends of the two positioning springs (99) and positioned on the surface of the long bolt (98), two knobs (912) are fixedly arranged at the opposite sides of the two positioning plates (911) and positioned at the opposite ends of the long bolt (98), the first driven sheave (55) and the driving sheave (512) are in transmission connection through a first driving transmission belt (56), the double sheaves (814) and the second driven sheave (87) are in transmission connection through a second driving transmission belt (815), the driving gear (712) and the driven gear (715) are in transmission connection, the surfaces of the opposite ends of the two first stabilizing rods (52) are fixedly connected with the inner wall of the first stabilizing bearing (51), and the surface of the opposite end of the second stabilizing rod (511) is fixedly connected with the inner wall of the second stabilizing bearing (59), the surfaces of two ends of the fixing rod (76) are fixedly connected with the inner wall of the first fixing bearing (75), the surfaces of the top end and the bottom end of the driving shaft (813) are fixedly connected with the inner wall of the second positioning bearing (812), and the opposite ends of the two long bolts (98) are in threaded connection with the inner wall of the thread groove (96); when the basketball shooting training device is used, the solar panel (57), the inverter (515) and the storage battery (514) are arranged, the solar panel (57) can transmit converted electric energy to the inside of the storage battery (514) through the inverter (515), the converted electric energy is continuously received by the storage battery (514), so that sufficient electric energy can be provided for the whole basketball shooting training device, the driving grooved wheel (512), the first driving transmission belt (56) and the first driven grooved wheel (55) are matched for use, the driving grooved wheel (512) and the first driving transmission belt (56) can be driven to rotate simultaneously by the rotation of the crank (513), the first driven grooved wheel (55) can be driven to rotate by the rotation of the first driving transmission belt (56), and the first stabilizing rod (52) can be conveniently driven to rotate by the rotation of the first driven grooved wheel (55), the rotation angle of the solar cell panel (57) can be controlled by the rotation of the first stabilizing rod (52), so that the solar cell panel (57) can more fully utilize light energy and convert the light energy into more electric energy, then the reduction motor (811) is controlled to rotate positively, the reduction motor (811) can drive the driving shaft (813), the double grooved pulley (814) and the second driving transmission belt (815) to rotate simultaneously, the second driving transmission belt (815) can drive the threaded rod (83) to rotate positively, the lifting pipe (84) and the lifting plate (86) can be driven to move upwards simultaneously by the positive rotation of the threaded rod (83), the upward movement of the lifting plate (86) can drive the counting device (7) to be connected with the basket (6), the counting device (7) can be conveniently used, when the counting device (7) moves upwards to the final position, at this time, the positioning device (9) can be used, the long bolt (98) can be driven to rotate positively through the positive rotation knob (912), the long bolt (98) can be driven to rotate positively to drive the driving block (94) to move leftwards, the driving block (94) can be driven to move leftwards to drive the positioning block (95), the groove wall of the positioning block (95) can be driven to fully contact with the groove wall of the positioning grooved pulley (91) through the leftward movement of the positioning block (95), so that the positioning grooved pulley (91) and the positioning block (95) are fixedly connected together, the counting device (7) can be driven to be fully fixed at the top, when a basketball is thrown into the interior of the basket (6), the basketball body enters the inside of the counting box (71) through the basketball inlet (72), the basketball body enters the inside of the counting box (71) and presses the contact plate (77) to move downwards, the contact plate (77) moves downwards to drive the fixed rod (76) and the driving gear (712) to rotate simultaneously, the driving gear (712) rotates to drive the driven gear (715) and the rotary disc (714) to rotate, the rotation of the rotary disc (714) can drive the counting hole (716) to correspond to the bottom position of the material conveying hopper (717), so that the counting ball body (718) in the material conveying hopper (717) can conveniently fall into the counting hole (716), when the counting ball body (718) passes through the inner cavity of the counting hole (716), one-time counting of the shot is completed, and by repeating the processes, the number of the basketballs thrown into the basket (6) can be recorded in turn, finally, the total quantity of basketball shooting baskets can be clearly obtained by collecting the counting balls (718) falling into the counting box (71), at the moment, the knob (912) can drive the long bolt (98) to rotate through the reversing knob (912), the long bolt (98) can drive the driving block (94) to move rightwards through the rotation, the driving block (94) moves leftwards to drive the positioning block (95) to move rightwards, the positioning block (95) can conveniently and fully separate from the groove wall of the positioning grooved wheel (91) through the rightward movement, so that the lifting device (8) can be continuously used, finally, the threaded rod (83) can also be reversely rotated through the reversing motor (811), the lifting pipe (84) and the lifting plate (86) can be driven to simultaneously move downwards through the rotation of the threaded rod (83), and the counting device (7) can be driven to move downwards through the downward movement of the lifting plate (86), when the counting device (7) moves downwards to the bottom, the counting result of the counting device (7) can be conveniently checked.
CN202010276271.5A 2018-07-19 2018-07-19 Environment-friendly shooting device for basketball training and using method Active CN111330241B (en)

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CN201810798872.5A CN108671507B (en) 2018-07-19 2018-07-19 Environment-friendly basketball training is with device of shooting
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CN111330241B (en) * 2018-07-19 2021-05-14 绍兴东巍体育科技有限公司 Environment-friendly shooting device for basketball training and using method
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