Multi-angle and multi-directional goal-scoring and ball-releasing pipe-hole ball fitness and entertainment device

By designing a multi-angle and multi-directional tube hole ball device, players need to overcome the constraints of the ball channel before scoring the goal, solving the problem of insufficient ball path control in existing ball sports and achieving diversified fitness and entertainment effects.

CN108310744BActive Publication Date: 2025-07-08邓其辉
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN201710065350.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2017-01-17
Publication Date
2025-07-08
Estimated Expiration
2037-01-17

AI Technical Summary

Technical Problem

The existing ball sports lack the rules for restricting ball sports with different angles, heights and directions, which leads to insufficient difficulty in controlling the ball's path and lack of diversity and fun.

Method used

A multi-angle and multi-directional pipe hole ball device is designed. Through the loading through-hole facilities, pipe ball components, fastening and protection facilities, ball blocking and ball blocking facilities, ball collection and return facilities, ball hitting location facilities and ball exit and receiving components, players are assembled into a pipe hole court with various ways of playing. Players need to overcome the constraints of the ball channel before they can score.

Benefits of technology

It achieves multi-angle, multi-direction, and multi-gradient goals and output, improving the players' skills and sports fun, and is suitable for fitness and entertainment for men, women, young and old, and exercising all parts of the body, especially hands and legs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN108310744B_ABST
    Figure CN108310744B_ABST
Patent Text Reader

Abstract

A pipe-hole ball fitness and entertainment device for multi-angle and multi-directional shooting and passing. Through seven functional facilities, it sets passing holes at different angles, different heights, different curves, and different directions as the hitting targets. The paths of the spherical balls passing through are restricted by the holes with various orientations, so that the balls hit out need to overcome the restrictions of the holes to score goals. It is a new type of sports and entertainment device with diverse assembly structures, capable of exerting various skills for hitting, catching the ball, and having diverse and interesting playing methods, suitable for people of all ages and genders to participate. For example, if classified according to the hitting means, the pipe-hole ball device can be divided into two major categories: the shapes for kicking the ball with feet and the shapes for hitting the ball with hands. Hitting the ball with hands can be further subdivided into several modes such as throwing the ball with hands, pushing the ball with hands, tossing the ball with hands, and jumping up to throw the ball. The pipe-hole ball device can be called the "Transformer" among sports equipment due to its diverse shapes, combinations, and playing methods, enabling participants to fully experience the competitiveness of different shapes in the same sports event and enjoy the fun of different playing methods.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a pipe-hole ball fitness and entertainment device for multi-angle and multi-directional goal-scoring and ball-throwing. The device includes seven functional facilities: a bearing through-hole facility, a pipe-ball component, a fastening and protecting facility, a ball-blocking and ball-catching facility, a ball-collecting and ball-returning facility, a hitting area facility, and a ball-throwing and ball-catching component. It can be used to create a court for two players to play against each other from two directions on each half of the court, or a small court for players to hit the ball facing one direction. Participants can, according to certain rules, use various ball-throwing forms to aim and throw a round ball at passing-hole channels at different angles, different heights, and different directions, achieving the effects of physical exercise and relaxation and entertainment. Background Art

[0002] Currently, many sports have been developed, such as basketball, football, badminton, volleyball, table tennis, billiards, and tennis. Some are played with large balls, some with small balls, some require large venues and large facilities, and some use small facilities. Nowadays, the vast majority of ball games involve hitting the ball over a net, into a net, or into a basket within certain boundaries. The ball that is hit into the air is only restricted by air resistance and not by other equipment. Once the ball is hit, it is like a runaway horse or spilled water and cannot be controlled. There are few sports that set game rules with passing-hole channels at different angles, different heights, and different directions as the hitting targets and use the channels to restrict the path of the round ball. Summary of the Invention

[0003] The present invention supplements the fields not covered by current major sports, sports equipment, and their rules, and provides a pipe-hole ball device capable of multi-angle, multi-direction, multi-curve, and multi-gradient goal-scoring and ball-throwing. Players can use various playing methods on the pipe-hole ball device for fitness and entertainment, making the ball need to overcome the restraint of the passing-hole channels to score a goal, breaking through the limitations of strength and height on the hitting performance. It is a new type of sports and entertainment equipment with diverse assembly structures, requiring relatively high skills to control the strength and angle, diverse and interesting playing methods, suitable for people of all ages, and having good fitness and entertainment effects.

[0004] The present invention is achieved through the following technical solutions.

[0005] The components of this device include a bearing base, a vertical frame, a through-hole ball wall, a ball passage, a support column, a straight pipe, a bent pipe, an elbow, a straight-through joint, a variable-diameter pipe, a sleeve fastener, a pipe-padding block, a pipe-end connecting plate, a shock-absorbing and sound-reducing layer, a ball-blocking plate, a court fence, a court door, a connecting cable, a leak-proof observation net, a slope, a passing groove, a ball-returning groove, a ball-returning ground interface, a ball-out transmission pipe, a receiving basket, a receiving combination cabinet, a pitching platform, and a player activity area. These components are classified into seven functional facilities: First, the bearing base, vertical frame, through-hole ball wall, and support column form the bearing through-hole facility; second, the straight pipe, bent pipe, elbow, straight-through joint, and variable-diameter pipe form the pipe-ball component; third, the sleeve fastener, pipe-padding block, pipe-end connecting plate, and shock-absorbing and sound-reducing layer form the fastening and protection facility; fourth, the ball-blocking plate, court fence, court door, connecting cable, and leak-proof observation net form the ball-blocking and intercepting facility; fifth, the slope, passing groove, ball-returning groove, and ball-returning ground interface form the ball-collecting and ball-returning facility; sixth, the pitching platform and player activity area form the hitting position facility; seventh, the ball-out transmission pipe, receiving basket, and receiving combination cabinet form the ball-out and ball-receiving component. The seven functional facilities can be fully or partially assembled. After the pipe-hole ball device is assembled, it is a pipe-hole court, abbreviated as the pipe-ball device and the pipe-ball court.

[0006] The bearing base, vertical frame, and through-hole ball wall in the above-mentioned bearing through-hole facility are the core facilities that provide the ball passage and bear the hitting target. The lengths of the three are the same, but the widths are different. The width of the bearing base is wider than the widths of the vertical frame and the through-hole ball wall, and the width of the bearing base is not less than the length of the pipe-ball component. The bearing through-hole facility is the hub of the entire pipe-ball device, and the pipe-ball component, fastening and protection facility, ball-blocking and intercepting facility, and ball-collecting and ball-returning facility all need to be docked or assembled with the bearing through-hole facility.

[0007] The load-bearing base, the vertical frame, and the through-hole ball-passing wall can be processed and manufactured from rigid materials such as metal, wood, stone, plastic, and concrete. The bottom of the load-bearing base is horizontal, and the walls on its top for placing the vertical frame, the through-hole ball-passing wall, and the pipe-attaching pads are also horizontal. The vertical frame is placed on top of the load-bearing base, and the through-hole ball-passing wall is placed on the vertical frame. The height of the load-bearing base is set according to the height of the ball-passing hole channel. Since there are various playing methods for the pipe ball, such as kicking the ball with the foot, pushing the ball with the hand, standing and throwing the ball with the hand, throwing the ball, and jumping and throwing the ball with the hand, according to the height requirements of various playing methods, the height of the ball-passing hole channel from the ground ranges from 5 cm to 30 cm, 160 cm, 300 cm, and 390 cm. Generally speaking, the height range of the ball-passing hole channel applicable is from the ground up to within 6 meters from the ground. Correspondingly, the height range of the load-bearing base is also from the ground up to within 6 meters. Generally, the four sides of the load-bearing base are sealed, but openings can also be set as needed. The function of the openings can save materials, and can also be used as a passage for setting slopes and an observation window for players. The load-bearing base and the through-hole ball-passing wall are essential equipment for the load-bearing through-hole facility. Generally, their shapes are rectangles standing vertically, and can also be made into a dam shape with two inclined surfaces. These two shapes of rectangle and dam body are beneficial for placing the pipe ball components to maintain balance and stability. The shape of the vertical frame is like the frame of a window, with an opening in the middle. The opening not only saves materials, but also is for installing a leak-proof observation net so that both players can observe the situation on the opposite field through the opening. If the ball-passing hole channel does not need to be set too high, then the vertical frame can be not used, and the load-bearing through-hole ball-passing facility can be directly composed of the load-bearing base and the through-hole ball-passing wall. In addition to setting up the vertical frame and the through-hole ball-passing wall, the top wall surface of the load-bearing base also needs to set concave grooves for placing the pipe orifice connecting plate and the leak-proof observation net. In the pipe hole court with a vertical frame, the leak-proof observation net is placed in the concave groove set by the load-bearing base or the vertical frame and clamped, so that the leak-proof observation net stands up and is not easy to shift. The main function of the through-hole ball-passing wall is to open the ball-passing hole channel to create a hitting target. The shape of the channel can be set arbitrarily and generally shows an inclined trend. The through-hole ball-passing channel can be directly set manually on the through-hole ball-passing wall. Since the surrounding of the channel requires a hole wall, the wall body of the through-hole ball-passing wall must be opened. It is necessary to ensure that the round ball hits the inner wall of the channel and then rushes out outside due to the slope after collision, which is called the manual through-hole ball-passing channel. Or a pipe hole can be set to allow the pipe ball component to pass through, and the ball-passing hole channel is generated by the industrially processed pipe ball component, which is called the industrially processed through-hole ball-passing channel. The orifice of the pipe hole is slightly larger than the diameter of the pipe ball component, which plays a role in supporting the pipe ball component so that it will not fall down. The pipe hole can be opened from the top of the through-hole ball-passing wall downwards so that the upper part of the pipe hole is not capped. The advantage is that it is convenient for the pipe ball component to be placed in the through-hole ball-passing wall from top to bottom. Or the pipe hole can be opened at the middle and upper part of the through-hole ball-passing wall so that there are wall bodies around the orifice to limit it and it will not swing greatly. The strut can be vertically erected on the load-bearing base and the vertical frame, or can be horizontally or obliquely connected to the load-bearing base, the vertical frame, and the through-hole ball-passing wall to obtain support, so that the strut can stably support and connect and fix the pipe orifice connecting plate and the ball-blocking plate.The two edge parts at both ends of the bearing base, the vertical frame, and the through-hole ball wall must be closely connected so that the entire set of bearing through-hole facilities stands upright neatly and vertically. The lengths of the three are the width of the entire court. The court fence is set according to the size of the pipe-hole ball device for the length of the court and stands vertically around the bearing through-hole facilities, higher than the height of the through-hole ball wall, jointly constructing the length, width, and height of the court.

[0008] The above-mentioned pipe-ball components refer to straight pipes, bent pipes, elbows, straight-throughs, and pipes with variable diameters that have undergone industrial processing. The ball-passing channels of the pipe-ball components are more complex, diverse, variable, and precise than those manually set. Therefore, the pipe-ball components are important facilities that can reflect the characteristics of pipe-ball sports. Among them, bent pipes, elbows, straight-throughs, and pipes with variable diameters are common equipment names in construction, water supply, and gas supply. These parts can be matched in various ways to assemble pipe-ball components with different curves and angles, creating more paths that cannot or are difficult to create by manually set ball-passing channels, making the path of the ball-passing channels for the spherical ball straight, or inclined, or a combination of straight and inclined, or winding. It should be emphasized that there is a basic configuration and installation principle that must be followed for pipe-ball components and ball-passing channels manually set: that is, at least one of the channels directly connected to the goal inlet (13) and the channel directly connected to the ball outlet (14) must be inclined towards the ground, so that the spherical ball has at least one opening inclined towards the ground and can fall along the potential energy to the external space at a lower place without staying in the channel. For example, if the ball outlet is inclined upwards, then the goal inlet should be inclined towards the ground; if the goal inlet is inclined upwards, then the ball outlet must be inclined towards the ground. It is allowed that both the goal inlet and the ball outlet are inclined towards the ground, but they cannot be inclined upwards or vertically at the same time, because if both the goal inlet and the ball outlet are inclined upwards or vertically, it will be very difficult for the ball to come out after being hit into the channel. According to the basic configuration principle, the pipe-ball components are matched and installed with relevant equipment of other functional facilities, and different pipe-ball devices with different curves, different heights, and different angles can be stably constructed, enabling players to adopt various playing methods to hit the ball towards the target of the ball-passing channel and achieving the effect of relaxation and fitness.

[0009] When the inclined directions of the goal inlet and the ball outlet in the pipe-hole ball device are the same, then the goal inlet is also the ball outlet, that is, the goal inlet on one's own court is the ball outlet for the opponent to score, and the goal inlet on the opponent's court is the ball outlet for one's own side to score. Sometimes, the player hits the ball into the goal inlet, but due to insufficient force or poor angle, the spherical ball collides in the pipe and then falls back to one's own court. This situation is that one's own side hits the ball into one's own goal inlet and then falls from one's own goal inlet, which is a special case where the goal inlet acts as the ball outlet.

[0010] The above-mentioned casing fasteners, pipe-attached pads, pipe orifice connection plates, and impact reduction and noise reduction layers form a fastening and protection facility. As the name implies, it is a facility for fastening and protecting the load-bearing through-hole facilities and pipe-ball components of the stadium. Among them, the pipe orifice connection plate can be firmly erected on the load-bearing base or the vertical frame according to the different structures of the stadium, or it can be obliquely connected to the through-hole wall for passing balls, or it can be connected to the support column to obtain support force and horizontally span on the load-bearing through-hole facilities. The pipe orifice connection plate is provided with connection holes that match the diameters of the ball inlet and outlet of the pipe-ball component. After fixed installation, the connection holes of the pipe orifice connection plate communicate with the through-ball holes. The plate surface of the pipe orifice connection plate covers and protects the pipe-ball component and the through-ball holes, so that the thrown ball will not directly hit the through-hole wall for passing balls and the pipe wall of the pipeline, reducing the wear of the spherical ball and the wall body. The pipe orifice connection plate must be erected vertically or inclined towards the ground in the direction of the player hitting the ball, so that the spherical ball will not stay on the plate surface. The pipe orifice connection plate and the ball blocking plate are provided with impact reduction and noise reduction layers on the side plate facing the hitting direction according to the needs of the stadium. The impact reduction and noise reduction layer can be made of materials such as rubber, plastic, cloth, paint, and varnish that help reduce the collision rebound force and lower the collision sound, and are tightly combined on the plate surface of the pipe orifice connection plate and the ball blocking plate that contacts the spherical ball.

[0011] When the pipe-ball component passes through the through-hole wall for passing balls, there will be some gaps that are easy to move. The pipe-attached pads are specifically set to fill the gaps. Usually, several pieces are tightly attached and connected to the load-bearing through-hole facilities. The shape and volume of the pipe-attached pads are set according to the direction, bend, and diameter of the pipe-ball component, so that the exposed gaps of the pipe-ball component are supported or filled by the pipe-attached pads to form a tightly contacted and stable layout. After the pipe-attached pads are in close contact with the pipe-ball component, the casing fasteners are used to clamp the pipe-ball component. The casing fasteners can rely on the pipe-attached pads and the through-hole wall for passing balls as the force-taking carriers to clamp the pipe-ball component, or they can be tightly connected to the load-bearing base as the force-taking carrier to clamp the pipe-ball component. The link of using the casing fasteners and the pipe-attached pads to tightly and safely fix the pipe-ball component is very important. If the pipe-ball component loosens and shakes, it will affect the accuracy of hitting the ball and make the movement impossible to carry out.

[0012] The above-mentioned ball blocking board, field fence, connecting cable, leak-proof observation net, and field door form a ball blocking and intercepting facility. Among them, the ball blocking board and the leak-proof observation net are the main equipment to prevent the spherical ball from flying out of the field. Generally, the ball blocking board is installed closely against the field fence, and can also be installed on the through-hole ball-passing wall as needed. The ball blocking board must be erected vertically or tilted towards the hitting direction of the court, so that the spherical ball can fall to the ball return terminal or the ball dropping terminal according to the potential energy. Placing the ball blocking board on the top of the through-hole ball-passing wall and the top of the pipe orifice connecting plate can seal the pipe ball component, preventing the spherical ball from falling into the bearing through-hole facility and getting stuck. The top of the pipe orifice connecting plate is lower than the top of the through-hole ball-passing wall, so that the sealing surface formed by the ball blocking board connecting the top of the through-hole ball-passing wall and the top of the pipe orifice connecting plate for the pipe ball component is tilted towards the hitting direction of the court, preventing the spherical ball from staying on the sealing surface. The leak-proof observation net is mostly installed closely against the field fence and can also be installed between the openings of the vertical frames, enabling the players on both sides to see the situation on the opposite side through the net. The connecting cable strings the field fences together, making it easier to install the ball blocking board or the leak-proof observation net on the field fence. The field door is also installed on the field fence. Some pipe ball courts have field fences erected on all four sides of the boundary, while some pipe ball courts are only enclosed by field fences on two sides, and the other two sides are provided with ball-throwing platforms as the court boundaries.

[0013] The above-mentioned slope, passing groove, ball return groove, and ball return ground interface form a ball gathering and returning facility. Its main function is to gather and guide the spherical balls that fall through the ball passing holes or drop after colliding with relevant facilities back to the ball return terminal, so that the players can pick up the spherical balls and continue to use them according to the game rules. Among them, the slope utilizes the principle of potential energy, making the balls that enter the pipeline and the balls that do not enter the pipeline and drop after collision roll down the slope to the ball return terminal of the court. In some pipe ball devices, the ball return ground interface is used as the ball return terminal, and in some pipe ball devices, the ball return groove is used as the ball return terminal. The ball return groove can be set on the ground or on the field fence, connecting cable, ball-throwing platform, or bearing base above the ground. Therefore, the ball return terminal is not necessarily the lowest point of the entire court, but generally lower than the ball dropping terminal. In addition to the main function of making the spherical ball fall from a high place to a low place in the court, the slope also has other functions: First, the lowest point of the slope is the boundary of the player activity area. When the player hits the ball, the body cannot cross the boundary to hit the ball, otherwise it is a foul. Second, in pipe ball courts where the playing methods are kicking the ball with the foot and pushing the ball with the hand, the spherical ball needs to stick to the slope to overcome the resistance of going uphill and rush towards the pipe orifice connecting plate and the pipe ball component. The slope is the platform for the spherical ball to run uphill and downhill for hitting the ball. It should be noted that in some pipe ball courts, according to the playing rules, there is no ball sending and receiving component, and only a ball gathering and returning facility is set. In this case, the ball gathering and returning facility also undertakes some functions of the ball sending and receiving component. Generally speaking, the spherical balls that enter the hole and the spherical balls that do not enter the hole are directly received by the ball gathering and returning facility.

[0014] Some courts need to set up a passing trough above the slope. As the name implies, this passing trough is not sealed but at least one side is open-air. The open-air passing trough is set up to convey the spherical balls falling from a high place, so as to facilitate the players to directly see the conveying direction of the spherical balls. The passing trough is not directly connected to the passing hole like the ball outlet conveying pipe, but the higher end of the passing trough is butted below the goal inlet or the ball outlet, and the lower end is installed in the space above the ball return groove or the ball return ground interface, so that the players can reach out their hands to catch the balls conveyed in the passing trough. The height of the inclined passing trough is higher than the slope and lower than the goal inlet and the ball outlet of the pipe ball component.

[0015] The above-mentioned ball-throwing platform and the player activity area form the hitting area facilities. The player activity area can be set inside or outside the court enclosed by the court fence and the leak-proof observation net. The specific position inside the court is between the lowest point of the slope, the ball return ground interface and the three-sided boundary of the court. The players walk, hit and catch the balls in the activity area, and it is convenient to get the balls for exercise inside the court; the ball-throwing platform is set on the court boundary facing the bearing through-hole facility. In some courts, the slope and the ball return groove are set in front of the ball-throwing platform. The left and right sides of the ball-throwing platform are enclosed by the court fence and the leak-proof observation net. In this way, the ball-throwing platform actually also serves as the court boundary. The players in the player activity area outside the court can rely on the ball-throwing platform to hit and catch the balls, pick up the returned balls from the slope and the ball return groove in front and continuously hit the balls. This setting is called the off-court playing method. The advantage is that it is not restricted by the court fence and the leak-proof observation net inside the court, and the disadvantage is that it is not convenient for the players to pick up the balls when the balls fly out of bounds.

[0016] The above-mentioned ball outlet and receiving component can be assembled by three kinds of equipment, namely the ball outlet conveying pipe, the receiving basket or the receiving combination cabinet, or any two of them can be used in combination. The ball outlet conveying pipe is connected to the ball outlet of the passing hole channel and can convey the spherical balls from high to low to the falling ball terminals at different heights and positions. The receiving basket and the receiving combination cabinet are used as the common falling ball terminals and are generally installed in front of the court fence, the connecting cable and the ball-throwing platform for the convenience of the players to get the balls. In order to facilitate the distinction, we correspond the falling ball terminal to the ball outlet and receiving component, and the ball return terminal to the ball collecting and returning facility. The balls reaching the falling ball terminal are generally the basis for scoring. Since there are many structures and playing methods in the pipe hole court, the ball outlet and receiving component is not necessarily set in every court.

[0017] The ball receiving basket and the ball outlet pipe can be installed on any equipment of the seven functional facilities. The ball receiving cabinet is usually installed above the slope, or on the field fence, connecting rope, or in front of the player's platform. The ball receiving area in the cabinet is usually 10 cm higher than the ground interface to connect with the ball outlet. The setting above the ground interface does not affect the ground interface to receive the dropped ball. The setting of the ball receiving cabinet is divided into two structures. One is to set up several ball receiving positions on the same plane of the ball receiving, and the other is to set up several levels of ball receiving layers at different heights. The ball rushing out of the ball outlet falls into the ball receiving positions at different distances and the ball receiving layers at different heights in the ball receiving cabinet, and there will be different scoring results.

[0018] By installing the above seven functional facilities in different combinations and using accessories such as screws, glue, pointed nails and paint to assist in connection, reinforcement and beautification, you can get tube-ball devices with various structural shapes and multiple playing methods. According to different structural shapes, they can be summarized into the following modes.

[0019] According to the processing method of the ball-passing hole, the tube-hole-ball device can be divided into a manual ball-passing hole structure and an industrially processed tube-ball component structure.

[0020] According to the method of hitting the ball, the tube-hole ball device can be divided into two major categories, namely the tube-hole ball court for kicking the ball with feet and the tube-hole ball court for hitting the ball with hands. The latter can be further divided into several modes: throwing the ball with hands, catching the ball with hands, pushing the ball with hands, throwing the ball with hands, and jumping up to throw the ball.

[0021] According to the direction of the goal mouth, it can be divided into structural patterns in which the goal mouth is horizontal, the goal mouth is inclined toward the ground (including vertical direction), and the goal mouth is inclined toward the sky (including vertical direction).

[0022] According to the direction of the ball's passage through the ball hole, it can be divided into straight direction, inclined direction, a combination of straight and inclined direction, or multiple direction patterns with turns and corners.

[0023] According to the position where the players stand, it can be divided into playing inside the field fence and playing outside the field fence, referred to as playing inside the field and playing outside the field.

[0024] According to the direction of hitting the ball, there are two types of court layouts. One is a court for playing in two directions, that is, a court with two symmetrical halves with the carrying through-hole facility as the middle boundary, and players on both sides of the court play against each other; the other is a court with one hitting direction, with the carrying through-hole facility as the terminal boundary of the court, and only for players on one side of the court to play.

[0025] The pipe-hole ball device can be called the "Transformers" among sports equipment because of its various shapes, combinations and playing methods, enabling participants to fully experience the competitiveness of different shapes in the same sports event and enjoy the fun of different playing methods. With the expansion of urbanization and urban-rural integration, the urban population is increasing, and people have more needs for fitness and entertainment activities. The pipe-ball device makes full use of the three-dimensional space with little occupation of ground resources, enabling participants to carry out various sports such as kicking with feet, pushing with hands, throwing with hands, tossing with hands and catching with hands, so that all organs of the body, especially the hands, legs and head, can get exercise, improving the competitive level, promoting physical and mental health and enhancing people's friendly exchanges. Brief Description of the Drawings

[0026] Figure 1 Floor plan of the load-bearing through-hole facility with standard configuration

[0027] Figure 2 Floor plan of the load-bearing through-hole facility with an open load-bearing base without a stand

[0028] Figure 3 Floor plan of the manually opened ball-passing hole channel in the through-hole ball-passing wall

[0029] Figure 4 Floor plan of the through-hole ball-passing wall with pipe holes opened

[0030] Figure 5 Floor plan of the pipe-ball component installed in the load-bearing through-hole facility

[0031] Figure 6 Schematic diagram of the pipe orifice with a connecting plate and a pipe-ball component

[0032] Figure 7 Schematic diagram of the fastening and protection facility connecting the pipe-ball component

[0033] Figure 8 Schematic diagram of the through-hole ball-passing wall with the pipe orifice, connecting plate and ball-blocking plate sealed

[0034] Figure 9 Floor plan of the ball-blocking and ball-intercepting facility docking with the load-bearing through-hole facility

[0035] Figure 10 Schematic diagram of the ball-collecting and ball-returning facility docking with the load-bearing through-hole facility

[0036] Figure 11 Schematic diagram of the ball-output and ball-receiving facility docking with the load-bearing through-hole facility

[0037] Figure 12 Schematic diagram of the combined cabinet ball-receiving with different positions for ball-receiving on the same plane

[0038] Figure 13 Schematic diagram of the combined cabinet ball-receiving with different heights for ball-receiving

[0039] Figure 14 A pipe-ball component composed of a straight pipe section

[0040] Figure 15 A pipe-ball component composed of a bent pipe section

[0041] Figure 16 A pipe-ball component composed of a straight pipe section and a bent pipe section

[0042] Figure 17 A pipe-ball component composed of two straight pipe sections and a bent pipe section

[0043] Figure 18 A pipe-ball component composed of two bent pipe sections and a straight pipe section

[0044] Figure 19 A pipe-ball component for a pipe with variable caliber connecting multiple directions

[0045] Figure 20 Schematic diagram of the structure of a pipe-hole stadium with horizontal inlet and outlet for the ball

[0046] Figure 21 Schematic diagram of the structure of a pipe-hole stadium with both inlet and outlet for the ball inclined towards the ground

[0047] Figure 22 Schematic diagram of the structure of a pipe-hole stadium with the inlet for the ball inclined towards the ground and the outlet inclined towards the sky

[0048] Figure 23 Schematic diagram of the structure of a pipe stadium with the inlet for the ball inclined towards the sky and the outlet inclined towards the ground

[0049] Figure 24 Schematic diagram of the structure of a pipe-hole stadium for playing the ball with feet and pushing the ball with hands

[0050] Figure 25 Schematic diagram of the structure of a pipe-hole stadium for throwing the ball with hands with the bent pipe set at a high place

[0051] Figure 26 Schematic diagram of the structure of a pipe-hole stadium for throwing and catching the ball with a combination of straight and bent pipes

[0052] Figure 27 Schematic diagram of the structure of a pipe-hole stadium with manually set ball-passing channels

[0053] Figure 28 Schematic diagram of the structure of a pipe-hole stadium for off-site play with a ball-throwing platform set

[0054] Figure 29 Floor plan of a pipe-hole stadium with a conventional layout of a hitting position

[0055] Figure 30 Floor plan of a pipe-hole stadium with an overall layout of two hitting positions for face-to-face play Detailed implementation mode

[0056] The invention will be further described in detail below with reference to the accompanying drawings. As shown in the figure, the numbers in the figure are respectively: 1 bearing base, 2 vertical frame, 3 through-hole ball wall, 4 pipe through-hole, 5 concave groove, 6 leak-proof observation net, 7 ball through-hole channel, 8 straight pipe, 9 elbow pipe, 10 elbow, 11 straight-through, 12 variable-diameter pipe, 13 goal inlet, 14 ball outlet, 15 sleeve fastener, 16 pipe-padding block, 17 pipe orifice connection plate, 18 connection hole, 19 support column, 20 ball blocking plate, 21 elastic-reducing and sound-reducing layer, 22 sealing surface, 23 field fence, 24 field door, 25 connecting cable, 26 slope, 27 passing groove, 28 ball-returning groove, 29 ball-returning ground interface, 30 ball-out transmission pipe, 31 receiving basket, 32 receiving combination cabinet, 33 pitching platform, 34 player activity area, 35 spherical ball

[0057] The present invention is a pipe-ball sports entertainment device, mainly composed of seven functional facilities: a bearing through-hole facility, a pipe-ball component, a fastening and protecting facility, a ball blocking and intercepting facility, a ball collecting and returning facility, a hitting area facility, and a ball-out and receiving component, and can assemble a pipe-hole ball device with multiple angles, multiple orientations, multi-gradient goals and ball-outs, and multiple playing methods.

[0058] As Figure 1 shown is the conventional configuration of the bearing through-hole facility. It can be directly seen that the bearing through-hole facility is vertically standing on the ground as a whole. The lengths of the bearing base 1, the vertical frame 2, and the through-hole ball wall 3 are the same and are respectively in the shape of a cuboid. The three are vertically connected upward in sequence, and the widths decrease upward in sequence, forming a balanced and stable structure that is conducive to placing the pipe-ball component to pass through. Concave grooves 5 are respectively provided at the top position of the bearing base 1 for placing and restraining the leak-proof observation net 6, and the concave grooves 5 can be set at multiple angles. The pipe through-hole 4 is provided at the upper-middle position of the through-hole ball wall 3, facilitating the vertical or inclined covering of the through-hole ball wall 3 by the pipe orifice connection plate 17 and the ball blocking plate 20 with a larger plate surface than the through-hole ball wall 3. According to the requirements of the pipe-hole ball court with different playing methods, the heights of the bearing base 1 and the vertical frame 2 can be set higher or lower, and the specifications of the length, width, and height of the through-hole ball wall 3 are set according to the sizes of the ball through-hole channel 7 and the aperture of the pipe-ball component.

[0059] Figure 2 Shown is a configuration of the bearing through-hole facility from the bottom to the nearly top opening of the bearing base 1. The vertical frame 2 is not set up, and a slope 26 is provided through the bearing base 1 at the opening part for collecting the dropped spherical balls. A leak-proof observation net 23 can also be installed at the opening, enabling players to observe the activities of the opposing players from a lower position.

[0060] Figure 3 、 Figure 4 Shows two situations of manually setting the ball through-hole channel 7 and setting the pipe through-hole 4 in the through-hole ball wall 3 Figure 3It is shown that the ball passing hole 7 is manually opened from one end of the through hole through the ball wall 3 to the other end in an inclined direction. No equipment is placed inside the manually formed ball passing hole 7, and the ball directly passes through by overcoming the hole obstacles. Figure 4 It is shown that these pipe passing holes 4 opened through the through hole through the ball wall 3 are for placing pipe ball components. The ball passing hole 7 is constructed by the industrially processed pipe ball components. The pipe passing holes 4 and the manually formed ball passing hole 7 are generally arranged horizontally at a certain interval through the through hole through the ball wall 3, with at least one row set, and there are more than two holes in each row. It is also possible to combine horizontal and vertical settings to form two rows, three rows or multiple arrays.

[0061] Figure 5 、 Figure 6 What is shown is a situation where the pipe ball component passes through the bearing through hole facility and is docked with the pipe orifice containing plate 17. It can be seen that the bent pipe ball component is placed in the pipe passing hole 4 of the through hole through the ball wall 3. The containing hole 8 of the pipe orifice containing plate 17 corresponds to the ball inlet 13 of the pipe ball component, constructing the path of the ball passing hole 7 and the target for the player to aim and hit the ball; the pipe orifice containing plate 17 is supported by the support column 19 below, and the support column 19 is firmly standing on the top wall surface of the bearing base 1 to provide strong support for the pipe orifice containing plate 17. But now the pipe ball component is installed without support and is very easy to shake, and relevant equipment is needed for reinforcement. Figure 7 It is shown that multiple pipe sticking pads 16 are used at different positions to fill the gaps between the pipe ball component, the through hole through the ball wall 3 and the upright frame 2. Then, the sleeve fastener 15 combines with the pipe sticking pads 16 to precisely clamp the pipeline, so that the pipe ball component will not move randomly.

[0062] After the pipe ball component passes through the through hole through the ball wall 3 and is clamped and reinforced for docking, next Figure 8 It is shown that the ball blocking plate 20 covers the pipe orifice containing plate 17 and the through hole through the ball wall 3. The top of the pipe orifice containing plate 17 is lower than the top of the through hole through the ball wall 3. In this way, the ball blocking plate 20 will tilt towards the side of the pipe orifice containing plate 17, and the formed sealing surface 22 will also be inclined so that the ball will not stay on the plate surface. The sealing surface 22 includes the through hole through the ball wall 3, the sleeve fastener 15, the pipe sticking pads 16 and the pipe ball component inside, which not only ensures that the ball will not fall into it, but also protects the relevant facilities from being directly damaged by the collision with the ball.

[0063] Figure 9The invention relates to a scenario in which a ball blocking and intercepting facility is connected to a bearing through-hole facility. A field fence 23 is erected with the two ends of the bearing through-hole facility as the boundary. The length of the bearing through-hole facility is the width of the court. The bearing through-hole facility is the middle boundary or the terminal boundary. The field fence 23 is firmly erected at a set length according to the specifications of the court. The field fence 23 is connected in series with a connecting rope 25. A leak-proof observation net 6 is installed between the field fence 23 and the connecting rope 25. The height of the field fence (23) is the height of the court. Thus, a three-dimensional space of the entire tube-hole court is constructed. A leak-proof observation net 6 is also installed at the opening between the bearing base 1 and the stand 2, so that the players of both sides can see the situation of the opposite court through the net opening. In order to prevent the ball from flying out of the court, the height of the ball blocking and intercepting facility is required to be higher than that of the bearing through-hole facility. Specifically, the height of the field fence 23 is higher than the through-hole ball wall 3 at the highest position in the bearing through-hole facility. The court gate 24 relies on the field fence 23 for power, and is generally opened at the boundary position of the player activity area 34 to facilitate the players to enter and exit the court. Figure 9 The field shows that the field fence 23 is set at the four corners of the court. The field fence 23 also has the function of placing or carrying the pass slot 27, the ball conduction tube 30, the ball receiving basket 31, and the ball receiving combination cabinet 32. Multiple ones can be set according to different playing styles. The field gate 24 is set according to the playing requirements of the tube hole court.

[0064] Figure 10 This is a scenario where the ball collection and return facility is connected with the bearing through-hole facility. It can be seen that the ball passing groove 27 is placed on the field fence 23 and the connecting rope 25. The high end of the ball passing groove 27 corresponds to the goal entrance 13 or the ball outlet 14, and the low end is above the bottom of the slope 26, so that the ball falling into the ball passing groove 27 is transmitted along the slope to a position where the player can reach it; some balls fall directly on the slope 26 and can roll down to the ball return groove 28; in some stadiums, the ball that is hit into the pipeline is transmitted to the receiving basket 31 by the ball outlet transmission pipe 30, and the ball passing groove 27 is not needed. The equipment in the ball collection and return facility is also matched according to the needs of the stadium.

[0065] Figure 11 This is a scenario where the ball outlet and ball receiving facilities are connected with the bearing through-hole facilities. It can be seen that the ball outlet transmission tube 30 can transmit the ball to the ball receiving basket 31 or to the ball receiving combination cabinet 32. The field fence 23 and the connecting rope 25 that provide support for the ball outlet transmission tube 30 are arranged near the bearing base 1. The ball receiving combination cabinet 32 ​​is arranged on the connecting rope 25 across the slope 26 to receive the ball rushing out of the goal hole 13 and the ball outlet 14. In this way, the interface of the player's activity area 34 is not occupied, and the body part of the player throwing the ball cannot cross the boundary of the ball receiving combination cabinet 32. The equipment in the ball outlet and ball receiving facilities are often used in combination with the equipment in the ball collecting and returning facilities. Some courts only need ball collecting and returning facilities and do not need to install ball outlet and ball receiving facilities.

[0066] The ball receiving assembly cabinet 32 ​​is a device that can embody the skill of overcoming the obstacle of the curved channel by the movement of the tube hole ball. Figure 12 , Figure 13 Two structures of this equipment are introduced. How far can the ball that hits the ball hole 7 go? Figure 12 As shown, the impact force of each ball rushing out of the channel can be reflected. The ball receiving cabinet 32 ​​is divided into several ball receiving areas on the plane at the same height. The farther the area where the ball overcomes the obstacles of the bend pipe 9 and the elbow 10 and falls is from the ball outlet 14, the greater the impact force of the goal this time, and the higher the score. How high can the ball hit the curved channel? Figure 13 The ball receiving assembly cabinet 32 ​​shown in the figure is provided with several ball receiving levels of different heights. The higher the height of the ball receiving level is, the greater the score is.

[0067] The ability to throw, score and release the ball from multiple angles and directions is one of the significant features of the tube-hole ball device that distinguishes it from other sports equipment. Therefore, it is very important to process and install tube-hole ball components in any direction. Figure 14 , Figure 15 , Figure 16 , Figure 17 , Figure 18 , Figure 19 Lists some scenarios after the installation of various device combinations of tube and ball components, from Figures 14 to 19 It can be seen that by using the straight pipe 8, the curved pipe 9, the elbow 10, the straight-through 11, and the variable-diameter pipe 12, it is indeed possible to assemble a tube-ball component connected by various pipes and produce a ball-passing channel 7 with different paths. The ball-passing channel 7 is tilted toward the ground as a whole. The pipe for the ball to pass through, of which the two sections of the pipe connected to the ball inlet or the ball outlet are at least one section of the pipe is tilted toward the ground, so that the ball can rush out of the external space along the potential energy. The master engaged in water and electricity installation should be very familiar with the operation. Being able to make the ball enter and exit the channel along the slope is a basic principle that must be followed in the configuration and installation of the tube-ball component. If the ball is hit into the channel and it is difficult to come out, then the use value of the tube-ball device for people's fitness and entertainment will be greatly reduced.

[0068] Figure 20 The schematic diagram of the structure of the pipe hole court with the goal hole 13 and the ball outlet 14 in horizontal direction is shown in the figure. Although the goal hole 13 and the ball outlet 14 of the court are in horizontal direction, the pipe connecting the goal hole 13 and the ball outlet 14 is inclined, so the ball will not stop in the pipe. The pipe mouth connecting plate 17 is supported by the pillar 19 to connect the ball receiving member. The ball baffle plate 20 is placed on the sealing surface 22 formed by the through hole ball wall 3 and the top of the pipe mouth connecting plate 17, which is also inclined. Even if a ball flies onto the sealing surface 22, it will not stay on it. Figure 20This kind of court structure is generally suitable for the playing method of hand-throwing the ball. For the convenience of explanation, we set the left half court as the goal inlet 13 and the right half court as the ball outlet 14. The goal inlet 13 and the ball outlet 14 with the same walking path actually perform the same role, that is, they simultaneously serve as the functions of scoring goals and discharging balls. For a clear view Figure 20 from Figure 28 The floor plan shows a group of ball-passing channels 7. In fact, at least two groups of ball-passing channels 7 are installed in each venue for players to hit the ball.

[0069] Figure 21 Shown is the pipe-hole court structure where both the goal inlet 13 and the ball outlet 14 slope towards the ground. This kind of court structure is suitable for the playing methods of throwing, pushing or tossing the ball by hand into the goal inlet. The same Figure 20 principle Figure 21 Both the goal inlet 13 and the ball outlet 14 serve the roles of scoring goals and discharging balls. Figure 21 Since the goal inlet 13 is set relatively high and the slope 26 is located under the support 2, it is suitable for the playing method of hand-throwing the ball. A relatively strong hit and a good angle are required to make the ball pass through the curved ball-passing channel 7. The playing method of hand-pushing the ball does not require the support 2 but requires the slope 26 to be directly opened under the goal inlet 13 and the ball outlet 14, Figure 24 which will be specifically introduced; for the playing method of hand-tossing the ball, the placement orientation of the pipe orifice connection plate 17 and Figure 21 shown are different, Figure 26 which will be specifically introduced.

[0070] Figure 22 Schematic diagram of the pipe-hole court structure where the goal inlet 13 slopes towards the ground and the ball outlet 14 slopes towards the sky. This kind of orientation is suitable for the playing methods of throwing or pushing the ball by hand into the goal inlet 13. Figure 22 Due to the installation of the support 2, the goal inlet 13 is relatively high. Therefore, the throwing playing method is suitable for this court. A receiving basket 31 and a receiving combination cabinet 32 are set on the slope 26 below the goal inlet and the ball outlet 14 and are hung on the connecting cable 25 to receive the spherical balls falling from the goal inlet 13 and the ball outlet 14 and serve as the basis for scoring. The spherical balls that miss the goal inlet 13 will roll back to the return ball ground interface 29 of the hitting side along the slope 26 after hitting the collision board surface, and the player picks up the ball and throws it again. Figure 22 Shown is the floor plan of the structure with the left field as the goal inlet 13. In fact, there is also a goal inlet 13 in the right field that is not shown, Figure 30 and there will be a detailed description in the overall layout diagram of the court.

[0071] Figure 23 Schematic diagram of the pipe-hole court structure where the goal inlet 13 slopes towards the sky and the ball outlet 14 slopes towards the ground. It can be seen that the installation orientation of the pipe orifice connection plate 17 and Figure 22The goal opening 13 of this structure is the highest in the ball passing channel 7. Since the goal opening 13 is inclined upward to the sky at a high position, it is suitable for the playing method of jumping up to throw the ball. The pipe orifice containing the connecting plate 17 needs to enclose the goal opening 13 and not retain the spherical ball, so it should be placed obliquely on the through-hole ball passing wall 3, the support column 19 and the ball blocking plate 20, so that the pipe orifice containing the connecting plate 17 shows an inclined trend and exposes the connecting hole 18, allowing the player to jump up and throw the ball to the goal opening 13 on the right side; the outlet opening 14 on the left side is at a low position, and the ball is transmitted to the receiving basket 31 through the outlet transmission conduit 30. When the player's throw misses the goal opening 13, the ball bounces off the pipe orifice containing the connecting plate 17 and falls on the receiving combination cabinet 32 placed on the connecting cable 25. It is very convenient for the player to pick up the ball from the combination cabinet and then jump up and drop the ball towards the goal opening 13. The stadium with this structure can especially exercise the jumping ability of the player.

[0072] Figure 24 The following is a schematic diagram of the structure of the pipe orifice stadium for the playing methods of kicking the ball with the foot and pushing the ball with the hand. Figure 24 The structure and Figure 21 are similar, the difference is that Figure 24 the support 2 is not set up while Figure 21 the standing support 2 is set up. Figure 24 As shown, the highest point of the slope 26 directly connects the goal opening 13 and the outlet opening 14. In this way, when the player kicks the ball with the foot or pushes the ball with the hand, the spherical ball will rush into the goal opening 13 along the slope. Adopting the playing method of kicking the ball with the foot is the structure with the smallest required height for the ball passing channel 7, and it is only necessary to set the appropriate low height for the load-bearing through-hole facilities and the slope 26; when adopting the playing method of pushing the ball with the hand, the load-bearing through-hole facilities and the slope 26 are set higher. This structure can make the spherical ball stick to the slope 26, overcome the slope resistance and rush into the curved ball passing channel 7, and then roll down along the slope 26, exercising different competitive abilities of the player.

[0073] Figure 25 The following is a schematic diagram of the structure of the pipe orifice stadium for the playing method of throwing the ball by hand with the ball passing channel 7 set at a high position. This diagram and Figure 24 have a similar structure. The difference is that Figure 25 the standing support 2 is added to set the ball passing channel 7 higher, which also causes corresponding changes in the installation orientations of the pipe orifice containing the connecting plate 17 and the ball blocking plate 20. Since the goal opening 13 is inclined from a high position to the ground, when throwing the ball by hand towards the goal opening 13 at a high position, it is necessary to have the plate face corresponding to the angle of the goal opening 13 and prevent the spherical ball from being thrown out of bounds. Therefore, the pipe orifice containing the connecting plate 17 is not erected vertically to cover the pipe ball component, but is horizontally mounted at a high position to enclose the goal opening 13. As Figure 25 shown, the support column 19 not only connects to the standing support 2 for power but also connects to the through-hole ball passing wall 3 for power. The support column 19 with multiple power connections firmly connects the pipe orifice containing the connecting plate 17 and the ball blocking plate 20, so that the pipe orifice containing the connecting plate 17 is horizontally mounted at a high position and exposes the connecting hole 18, and the ball blocking plate 20 is in a vertical and inclined state to jointly seal the pipe ball component, allowing the player to throw the ball from a low position towards the goal opening 13 at a high position.

[0074] The above-introduced are all the court structures that allow the balls to fall down the slope 26 and the ground in the conventional playing method. There are two kinds of scoring rules for the conventional playing method. The first one is that within the specified time, the player of which side hits the ball of his own side into the ball hole channel 7 to reach the other side's court first. The side with more balls passing through wins, that is, the side with fewer remaining balls of its own side wins. For example, each of the left court and the right court is equipped with 4 balls, and the specified time for each game is half an hour. At the beginning of the game, the player of Party A tries to hit the ball towards the goal opening 13 of the left court, so that the ball passes through the channel and reaches the court of Party B. The player of Party B also tries to hit the ball towards the goal opening 13 of the right court to hit the ball over. Both Party A and Party B can hit the ball hit by the other side back to the other side's court. After half an hour like this, there are still 2 balls left in the court of Party A with a higher hit rate, while 6 balls are accumulated in the court of Party B. Then, since there are fewer balls left in the court of Party A, the result of the game is that Party A wins Party B. This rule is a common scoring method for various pipe-hole courts. The second rule is for the court equipped with the receiving combination cabinet 32 and consists of two scoring links. The first link is that both players hit the same number of balls and see which player hits the ball farther and higher. For example, each of the left court and the right court is equipped with 4 balls. If the player of Party A in the left court hits 1 ball beyond the farthest area of the receiving combination cabinet 32 of Party B in the right court, he gets 3 points; if he hits 2 balls beyond the middle area of the receiving combination cabinet 32 of Party B, he gets 4 points; if he hits 1 ball beyond the nearest area of the receiving combination cabinet 32 of Party B, he gets 1 point. Party A's score is 8 points. While the player of Party B in the right court hits 2 balls beyond the farthest area of the receiving combination cabinet 32 of Party A in the left court, he gets 6 points; if he hits 1 ball beyond the middle area of the receiving combination cabinet 32 of Party A, he gets 2 points; if he hits 1 ball beyond the nearest area of the receiving combination cabinet 32 of Party A, he gets 1 point. Party B gets 9 points. As a result of this link, Party B wins Party A. The second scoring link adds the scoring factor of time and sees who can add 1.5 points by hitting all 4 balls of his own side into the other side's court first. Next, calculate. In this game, Party A hits all 4 balls beyond the receiving combination cabinet 32 of Party B first. Although the score of Party A's hitting area is 8 points, which is lower than the 9 points obtained by Party B, because he hits all the balls first and grabs 1.5 points, Party A's total score rises to 9.5 points and wins Party B.

[0075] Figure 26The following is a schematic diagram of a pipe hole court for the hand-throwing and catching method, where the ball is not allowed to fall to the ground. As shown in the figure, the lower ball passing hole channel 7 is set by the straight pipe 8. The left goal inlet 13 is inclined upward, and the right ball outlet 14 is lower and inclined toward the ground; the upper ball passing hole channel 7 is set by the bent pipe 9. The left goal inlet 13 is inclined toward the ground, and the right ball outlet 14 is higher and inclined upward. A connecting cable 25 is horizontally installed above the slopes 26 on both sides of the court to place the passing trough 27 to catch the dropped ball. The main feature of the hand-throwing and catching method is that the ball is not allowed to land. The specific rules are as follows: The player on the left side of the court hits the ball into the goal inlet 13 of the left side. When the ball rushes out from the ball outlet 14 on the right side, the player on the right side of the court should catch the ball with their hand to prevent it from falling down the slope 26 and to the ground. The player on the right side who catches the ball must throw the ball back into the goal inlet 13 of their own court within three seconds. If the ball hits the hole channel, it will rush out from the ball outlet 14 on the left side. The player on the left side should also catch the ball with their hand and quickly throw the ball back. If the ball is not thrown within three seconds, points will be deducted. And so on, the two sides throw and catch the ball back and forth. Whenever the ball cannot be caught and falls to the ground, points will be lost; sometimes the ball rushes out from the ball outlet 14 and is directly caught by the player, and sometimes the ball falls into the passing trough 27 and is then caught by the player. As long as the ball does not fall down the slope 26 and to the ground, no points will be lost. Whoever fails to catch the ball once will have points deducted once, and the opponent player will obtain the serving right. If the ball thrown by the serving side cannot pass through the hole channel and falls into the passing trough 27, the serving will continue. If the serving causes the ball to fall down the slope 26 or to the ground, points will also be deducted once, and the opponent player will serve. The game will continue according to this rule. Within the specified time, the side that drops more balls and loses more points is the loser, and the side that drops fewer balls and loses fewer points is the winner.

[0076] Figure 27 The following is a schematic diagram of a pipe hole court showing the structure of the manual ball passing hole channel 7. The rule that the ball is not allowed to fall to the ground is also adopted. It is suitable for the method of hitting the ball, catching the ball, or using a blocking racket to hit and block the ball. This structure can be formed by matching four functional facilities, namely, the load-bearing through-hole facility, the ball-blocking and ball-catching facility, the ball-collecting and ball-returning facility, and the ball-hitting area facility, with the elastic-reducing and sound-absorbing layer 21. A connecting cable 25 is set above the slope 26 as the boundary that cannot be crossed during ball hitting and catching. The equipment used is less and the assembly is relatively convenient. The inclined ball passing hole channel 7 is manually set in the through-hole ball passing wall 3, and it is relatively easier to process with metal, wood, or plastic. Figure 27 It shows that the goal inlet 13 of the ball passing hole channel 7 at the lower left side of the through-hole ball passing wall 3 is inclined toward the ground, and the ball outlet 14 on the right side is also inclined toward the ground. The goal inlet 13 of the ball passing hole channel 7 at the upper left side is inclined toward the ground, and the ball outlet 14 on the right side is inclined upward. The elastic-reducing and sound-absorbing layer 21 is used to closely adhere to the through-hole ball passing wall 3. The playing rules are the same as Figure 26As introduced, players on both sides of the court hit and catch the ball with their hands or a paddle. During the game, players must strive to prevent the ball from falling off the slope 26 and the ground; otherwise, points will be deducted. A player's hit must reach the opponent's court and the opponent must fail to catch the ball in order to score points.

[0077] Figure 28 The figure shows a schematic diagram of the structure of a pipe-hole court with an off-site playing method using a pitching platform. The characteristics of this structure are as follows: the height at the lower end of the slope 26 should be set close to but lower than the height of the pitching platform 33. The lower end of the slope 26 is connected to the return ball groove 28. The return ball groove 28 is lower than the lowest end of the slope 26 but cannot be set too low, and its position is between the slope 26 and the pitching platform 33. The ball falling from the slope 26 returns to the return ball groove 28, and the player picks up the ball and aims at the goal opening 13 to hit the ball. The pipe-hole court with the pitching platform 33 can eliminate the link of installing the court gate 24 and is suitable for playing methods such as hand pitching, hand pushing, and hand throwing.

[0078] Figure 29 The figure shows a plan view of a pipe-hole court with a conventional layout of a hitting position. It can be seen that the bearing through-hole facilities of this layout serve as the terminal boundary of the court. Behind the bearing through-hole facilities on the right side of the figure, a site fence 23, a leak-proof observation net 6, or a ball blocking board 20 is installed, so that the ball that fails to hit the through-ball hole 7 cannot fly out of bounds. After hitting and turning around, it falls on the slope 26 and then returns to the return ball interface 29 of the hitting position, and the player picks up the ball and throws it again; while the ball that enters the through-ball hole 7 falls through the ball outlet 14 into the ball outlet transfer pipe 30, and the ball outlet transfer pipe 30 turns and sends it back to the receiving basket 31 hanging on the leak-proof observation net 6 on the left hitting position. This layout of the court is suitable for installation in places with a small site area. Figure 29 What is shown is the configuration of the in-site playing method with a conventional court gate 24. In fact, the layout of a hitting position can also eliminate the court gate 24 and adopt the off-site playing method configuration of the pitching platform 33, and install it according to Figure 28 the structure of the pitching platform 33 playing method.

[0079] Figure 30 The figure shows an overall plan view of a pipe-hole court with a conventional layout for a two-sided hitting position. It includes most of the equipment of seven functional facilities. Since there are many components, for the convenience of viewing and explanation Figure 30The height of the court surrounded by the leak-proof observation net 6 is drawn lower. It can be seen that the bearing through-hole facilities of the two hitting positions are used as the middle boundary of the ball pipe device, and the left court and the right court are symmetrically distributed. The court shown in the figure adopts a structure in which the goal hole 13 is inclined to the ground and the ball outlet 14 is inclined to the sky. The left court and the right court are respectively provided with two goal holes 13 and two ball outlets 14 at a certain interval. The first and third positions of the left court from the left are the ball outlets 14 inclined to the sky, and the second and fourth positions are the goal holes 13 inclined to the ground. Then the corresponding right court from the left is the goal hole 13 inclined to the ground, and the second and fourth positions are the ball outlets 14 inclined to the sky. The ball baffle plate 20 placed on the top of the through-hole ball wall 3 is respectively connected to the pipe openings of the left court and the right court with the connecting plate 17, forming a sealing surface 22 to contain the ball pipe component inside, so that the ball will not be trapped in the pipeline and on the board surface. The pipe mouth including the connecting plate 17 is pasted with a resilient and sound reducing layer 21 to reduce the impact force of the ball and reduce the collision sound.

[0080] Figure 30 When the game is played using conventional playing rules, the players of Party A on the left side of the court try their best to throw the ball into the goal holes 13 at the second and fourth positions from the left, and the balls that are hit will rush out from the ball outlets 14 at the second and fourth positions from the left on the right side of the court, and fall into the ball receiving combination cabinet 32 ​​on the right side of the court; the players of Party B on the right side of the court also try their best to throw the ball into the goal holes 13 at the first and third positions from the left, and the balls that are hit will rush out from the ball outlets 14 at the first and third positions from the left on the left side of the court, and fall into the ball receiving combination cabinet 32 ​​on the left side of the court. Within the specified time, see which side finishes the game first, which side's ball lands farther, and which side's ball rushes higher, and the scores are calculated according to the scoring rules of the two conventional playing methods.

[0081] The above-listed structures are only those with reasonable configuration, convenient installation and sufficient competitiveness and fun of the tube hole ball game. In fact, more tube hole ball courts can be assembled according to the seven parts of the infrastructure of this technical solution, so that people can enjoy the benefits of this new sport in strengthening the body, relaxing and entertaining.

Claims

1. A pipe-hole ball fitness and entertainment device for multi-angle and multi-directional goal-scoring and ball-throwing. Through seven functional facilities, ball-passing holes (7) with different angles, different heights, different curves, and different directions are set as the hitting targets. The path of the round ball passing through is restricted by the holes, so that the ball hit out needs to overcome the restriction of the holes to score a goal; It is characterized in that: The seven functional facilities include: First, a bearing base (1), a vertical frame (2), a through-hole ball-passing wall (3), a ball-passing hole (7), and a support column (19) form a bearing through-hole facility; Second, a straight pipe (8), a bent pipe (9), an elbow (10), a straight-through pipe (11), and a variable-diameter pipe (12) form a pipe-ball component; Third, a sleeve fastener (15), a pipe-attached cushion block (16), a pipe-mouth connecting plate (17), and a shock-absorbing and sound-reducing layer (21) form a fastening and protecting facility; Fourth, a ball-blocking plate (20), a field fence (23), a field door (24), a connecting cable (25), and a leak-proof observation net (6) form a ball-blocking and ball-catching facility; Fifth, a slope (26), a passing groove (27), a ball-returning groove (28), and a ball-returning ground interface (29) form a ball-collecting and ball-returning facility; Sixth, a ball-throwing platform (33) and a player activity area (34) form a hitting area facility; Seventh, a ball-throwing conduit (30), a receiving basket (31), and a receiving combination cabinet (32) form a ball-throwing and receiving component. All or part of the seven functional facilities are matched and assembled into devices with different structures. The assembled device is a pipe-hole ball court; The ball-passing hole (7) is opened in the through-hole ball-passing wall (3); The through-hole ball-passing wall (3) is set with the specifications of length, width, and height according to the sizes of the ball-passing hole (7) and the aperture of the pipe-ball component; The ball-passing holes (7) are arranged horizontally on the through-hole ball-passing wall (3) at a certain interval, with at least one row set, and there are more than two holes in each row, or multiple arrays are set in combination horizontally and vertically.

2. The pipe-hole ball fitness and entertainment device for multi-angle and multi-directional goal-scoring and ball-throwing according to claim 1, characterized in that: The above-mentioned bearing through-hole facility is the core facility that provides the ball-passing hole (7) and bears the hitting target. When the bearing base (1), the vertical frame (2), and the through-hole ball-passing wall (3) are all set, they are erected vertically in the above order. The lengths of the three are the same, but the widths are different. The width of the bearing base (1) is wider than the widths of the vertical frame (2) and the through-hole ball-passing wall (3). The through-hole ball-passing wall (3) is set at the top of the bearing through-hole facility. The bearing through-hole facility is the hub and main skeleton of the entire pipe-hole ball fitness and entertainment device. The pipe-ball component, the fastening and protecting facility, the ball-blocking and ball-catching facility, and the ball-collecting and ball-returning facility all need to be assembled with the bearing through-hole facility; The bottom of the bearing base (1) is horizontal, and the top surfaces for placing the vertical frame (2), the through-hole ball-passing wall (3), and the pipe-attaching pad block (16) are also horizontal. The bearing base (1) and the through-hole ball-passing wall (3) are essential equipment for the bearing through-hole facility. Their shapes are rectangles standing vertically or dike shapes with two inclined surfaces. These two shapes of rectangle and dike are beneficial for the balanced and stable setting of the ball-passing hole channel (7). Both the bearing base (1) and the vertical frame (2) are provided with access openings. If the ball-passing hole channel (7) does not need to be set too high, the vertical frame (2) is not used. For the pipe ball court with the vertical frame (2) set, the bearing base (1) and the vertical frame (2) are respectively provided with grooves (5) to place and restrain the leak-proof observation net (6). The grooves (5) are set at multiple angles so that the leak-proof observation net (6) stands up and is not easily displaced and can block the round ball back to the slope (26). The main function of the through-hole ball-passing wall (3) is to create a hitting target by opening the ball-passing hole channel (7). The shape of this channel can be set arbitrarily and generally shows an inclined trend. Manually drill through the wall body of the through-hole ball-passing wall (3) according to the set trend to directly set the ball-passing hole channel (7), which is called the manual ball-passing hole channel (7), or set a through-pipe hole (4) to accommodate the pipe ball component to pass through, and the ball-passing hole channel (7) is generated by the industrially processed pipe ball component, which is called the industrially processed ball-passing hole channel (7). The support column (19) stands vertically on the bearing base (1) and the vertical frame (2), or is horizontally or obliquely connected to the bearing base (1), the vertical frame (2), and the through-hole ball-passing wall (3) to obtain support, so that the support column (19) can stably support and connect and fix the pipe orifice connection plate (17) and the ball-blocking plate (20). The two end edge parts of the bearing base (1), the vertical frame (2), and the through-hole ball-passing wall (3) must be tightly connected. The lengths of the three are the width of the entire court. The height of the bearing through-hole facility is set according to the height required by the ball-passing hole channel (7). According to the size specifications of the pipe hole court, the site fence (23) is erected at a certain position to determine the length and height of the entire court. The site fence (23) should be higher than the height of the through-hole ball-passing wall (3), jointly constructing the length, width, and height of the court.

3. The pipe hole ball fitness and entertainment device with multi-angle and multi-directional goal-scoring and ball-putting according to claim 1, characterized in that: The above-mentioned pipe ball component includes industrially processed straight pipes (8), bent pipes (9), elbows (10), straight-throughs (11), and variable-diameter pipes (12). These parts can be variously matched to assemble pipe ball components with different curves and different angles, so that the path of the hole through which the round ball passes shows an inclined trend, or a straight trend, or a combination of a straight trend and an inclined trend, or various tortuous trends. At least one section of the channel directly connected to the goal-scoring port (13) and at least one section of the channel directly connected to the ball-putting port (14) are inclined towards the ground, so that the round ball has at least one opening inclined towards the ground and can fall along the potential energy to the external space at a lower place without staying in the channel.

4. The pipe hole ball fitness and entertainment device with multi-angle and multi-directional goal-scoring and ball-putting according to claim 1, characterized in that: The above-mentioned fastening and protecting facility is a facility for fastening and protecting the bearing through-hole facility and the pipe ball component of the stadium; among them, the pipe orifice containing the connecting plate (17) is stably erected on the bearing base (1) or the vertical frame (2) according to different structures of the stadium, or is obliquely connected to the through-hole ball-passing wall (3), or is connected to the support column (19) to obtain the supporting force and horizontally span on the bearing through-hole facility. The pipe orifice containing the connecting plate (17) is provided with a containing hole (18) to match the goal inlet (13) and the goal outlet (14) of the ball-passing hole channel (7). After being fixedly installed, the containing hole (18) of the pipe orifice containing the connecting plate (17) is communicated with the ball-passing hole channel (7). The pipe orifice containing the connecting plate (17) and the ball-blocking plate (20) cover and protect the pipe ball component and the ball-passing hole channel (7), so that the thrown ball will not directly hit the through-hole ball-passing wall (3) and the pipe wall, reducing the abrasion between the spherical ball and the pipe wall and the wall; the pipe orifice containing the connecting plate (17) is vertically erected or inclined towards the ground in the direction facing the player hitting the ball, so that the spherical ball will not stay on the plate surface; whether the plate surface of the pipe orifice containing the connecting plate (17) and the ball-blocking plate (20) facing the player hitting the ball is provided with a shock-absorbing and sound-reducing layer (21) according to the needs of the stadium. The shock-absorbing and sound-reducing layer (21) is made of rubber, plastic, cloth, paint, and is tightly combined on the plate surface of the pipe orifice containing the connecting plate (17) and the ball-blocking plate (20) in contact with the spherical ball; The pipe-attaching cushion block (16) is tightly attached and connected to the bearing through-hole facility. The shape and volume of the pipe-attaching cushion block (16) are set according to the direction, bend, and pipe diameter of the pipe ball component, so that the gap where the pipe ball component exposes through the through-hole ball-passing wall (3) is supported or filled by the pipe-attaching cushion block (16) to form a tightly contacting layout; after the pipe-attaching cushion block (16) is in close contact with the pipe ball component, the pipe ball component is clamped by the sleeve fastener (15). The sleeve fastener (15) relies on the pipe-attaching cushion block (16) or is connected to the bearing through-hole facility as a force-taking carrier to clamp the pipe ball component.

5. The multi-angle and multi-direction goal and outlet pipe orifice ball fitness and entertainment device according to claim 1, characterized in that: For the above-mentioned ball blocking and intercepting facilities, the ball blocking plate (20) is installed on the site fence (23), the through-hole ball-passing wall (3), and the pipe orifice connecting plate (17). The ball blocking plate (20) stands vertically or slopes towards the hitting direction of the court, so that the spherical ball can fall to the lower part of the pipe orifice court according to its potential energy. Placing the ball blocking plate (20) on the top of the through-hole ball-passing wall (3) and the top of the pipe orifice connecting plate (17) can seal the ball-passing hole channel (7) and the pipe-ball component, preventing the spherical ball from falling into the horizontal wall surface of the through-hole facility and being unable to come out. The top of the pipe orifice connecting plate (17) is lower than the top of the through-hole ball-passing wall (3), so that the sealing surface (22) formed by the ball blocking plate (20) connecting the top of the through-hole ball-passing wall (3) and the top of the pipe orifice connecting plate (17) to the pipe-ball component slopes, preventing the spherical ball from staying on the sealing surface (22). The leak-proof observation net (6) is installed against the site fence (23) and the connecting cable (25), and is also installed at the openings of the bearing base (1) and the upright frame (2), enabling both players to see the situation on the opposite side through the leak-proof observation net (6). The connecting cable (25) connects the site fences (23) in series, making it easier to install the ball blocking plate (20) and the leak-proof observation net (6). The connecting cable (25) and the site fence (23) also bear facilities such as the passing groove (27), the ball outlet and conveying pipe (30), the receiving basket (31), and the receiving combination cabinet (32). The site door (24) is installed on the site fence (23). The site fence (23) standing at the set position can determine the length of the court.

6. The pipe orifice ball fitness and entertainment device for multi-angle and multi-directional goal-scoring and ball outlet according to claim 1, characterized in that: In the above-mentioned ball collecting and returning facilities, the highest point of the slope (26) is lower than the goal inlet (13), and the lowest point is connected to the ball returning channels (28), the ball returning ground interface (29) or the player activity area (34) and other ball returning terminals. The ball returning channels (28) are arranged on the ground or on the site fence (23), the connecting cable (25), and the ball throwing platform (33) above the ground. The lowest point of the slope (26) is the boundary of the player activity area (34), and the slope (26) is a platform for the spherical ball to run uphill and downhill for hitting the ball. Above the slope (26), there is a passing groove (27). At least one side of the passing groove (27) is open-air, which is used to convey the spherical ball falling from a high place, facilitating the players to directly see the conveying direction of the spherical ball. The higher end of the passing groove (27) is butted below the goal inlet (13) or the ball outlet (14), and the lower end is installed in the space above the bottom of the slope (26), facilitating the players to stretch out their hands to catch the spherical ball in the passing groove (27).

7. The pipe orifice ball fitness and entertainment device for multi-angle and multi-directional goal-scoring and ball outlet according to claim 1, characterized in that: The ball outlet and ball receiving assembly is assembled from two or three of the following equipment: a ball outlet transmission pipe (30), a ball receiving basket (31), and a ball receiving combined cabinet (32). The ball outlet transmission pipe (30) is connected to the ball outlet (14) of the ball passage (7). The ball outlet transmission pipe (30) can transmit the ball to a ball drop terminal at any position below the ball outlet (14). The ball receiving basket (31) and the ball receiving combined cabinet (32) serve as common ball drop terminals. The ball receiving basket (31) is connected to the ball outlet transmission pipe (30) and is installed on any equipment of the seven functional facilities. The ball receiving combined cabinet (32) is suspended above the slope (26), or placed on the field fence (23), the connecting rope (25), or is set in front of the pitching platform (33). The ball receiving combined cabinet (32) is arranged in two structures. One is to arrange several ball receiving positions on the same plane for receiving the ball, and the other is to arrange several ball receiving levels at different heights. When the ball rushing out of the ball outlet (14) falls into the ball receiving positions at different distances and the ball receiving levels at different heights in the ball receiving combined cabinet (32), different scoring results are obtained.

8. The tube-hole ball fitness and entertainment device for scoring and discharging balls in multiple angles and directions according to claim 1, characterized in that: According to the processing method of the ball passageway (7), the tube-hole ball fitness and entertainment device is divided into a manual ball passageway (7) structure and an industrially processed tube-ball component structure, wherein: The structure of the manual ball-passing hole (7) is to directly open the ball-passing hole (7) in the wall of the through-hole ball-passing wall (3) according to a set direction; The industrially processed tube-ball component structure is provided with a tube hole (4) in a through hole ball wall (3) to allow the tube-ball component to pass through, and a ball passage channel (7) is generated by the tube-ball component.

9. The tube-hole ball fitness and entertainment device for scoring and discharging balls in multiple angles and directions according to claim 1, characterized in that: According to the hitting method, the hole-in-the-tube court can be divided into two categories, namely, the hole-in-the-tube court for hitting the ball with the feet and the hole-in-the-tube court for hitting the ball with the hands. The shape of the kicking ball by foot is characterized by: selecting and constructing the relevant equipment of the six functional facilities of the bearing through hole facility, the ball pipe component, the fastening and protection facility, the ball blocking and intercepting facility, the ball collecting and returning facility, and the hitting area facility; the bearing through hole facility adopts a bearing base (1) and a through hole ball wall (3); no equipment is arranged above the slope (26); the goal hole (13) of the ball passage (7) is inclined toward the ground to match the slope of the slope (26), so that the ball kicked by the foot will rush into the goal hole (13) along the slope; and the player activity area (34) is arranged in the field for kicking the ball; The shape of the hand-playing ball is characterized in that the equipment in the seven functional facilities are all selected and installed, wherein the ball-passing channel (7) and the ball-pipe component can be set with channels of any direction so that the paths through which the bound ball passes are varied in height, curvature and straightness, and a passing groove (27), a ball receiving basket (31) and a ball receiving combination cabinet (32) are arranged above the slope (26) as needed, and the player activity area (34) is arranged inside or outside the court, so that various skills of directly hitting the ball with the hand and catching the ball with the hand can be fully exerted.

10. The tube-hole ball fitness and entertainment device for scoring and discharging balls in multiple angles and directions according to claim 1, characterized in that: According to the direction of hitting the ball, the hole golf course is divided into two types of golf courses: One is a court with two hitting directions, that is, a court is divided into two symmetrical halves with the carrying hole facility as the middle boundary, and players on both sides of the court play against each other. This layout can expand the area of ​​the two sides of the court to allow more players to participate in sports games across the carrying hole facility; The other is a ball-hitting-oriented court, which carries through-hole facilities as the terminal boundary of the court for players on one side of the court to play, and is suitable for setting up in places with small court areas.

11. The tube-hole ball fitness and entertainment device for scoring and discharging balls in multiple angles and directions according to claim 1, characterized in that: Based on the position of the players, the hole court is divided into two structures: the structure for playing inside the court fence and the structure for playing outside the court fence, where: The court is surrounded by a court fence (23) and a leak-proof observation net (6) on all four sides to form a four-sided boundary. A court gate (24) is set on the court fence (23) to enter and exit the player activity area (34) on the court; The off-court playing structure adopts a pitching platform (33), which is arranged on the boundary of the court facing the through-hole facility, and the left and right sides of the pitching platform (33) are surrounded by a court fence (23) and a leak-proof observation net (6). When a player pitches in an off-court player activity area (34), the player hits and catches the ball by leaning against the pitching platform (33).

Citation Information

Patent Citations

  • Diversified tube hole ball exercise and entertainment device of scoring and going out ball of multi -angle

    CN206965064U