Split type pet ball dispenser
The pet ball launcher features a split design, a detachable base, and a positioning and locking mechanism, which solves the problem of traditional pet ball launchers being difficult to clean, achieving a balance between efficient cleaning and structural strength.
Patent Information
- Application Number
- CN202422798151.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-11-15
AI Technical Summary
Traditional pet ball launchers have channels that are difficult to disassemble and clean, which can easily breed bacteria, affecting the pet's health and the lifespan of the equipment.
Designed as a split structure, this pet ball launcher features a detachable base. Each base has a channel splicing section, which allows for quick assembly and disassembly through a positioning and locking mechanism, facilitating cleaning.
It enables convenient cleaning of the passage, improves cleaning efficiency, and ensures the structural strength and safety of the equipment.
Smart Images

Figure CN223488976U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of ball-serving technology, specifically referring to a split-type pet ball-serving device. Background Technology
[0002] With the continuous advancement of technology, pet ball launchers are becoming increasingly widely used. Pet ball launchers can throw pet balls far away and attract pet dogs to chase after the launched pet balls, thus achieving the function of walking dogs or playing and entertaining them.
[0003] The utility model patent with patent number CN2015202800228 discloses a pet ball launcher, including a shell, a pet ball throwing channel, a launching channel, and a conveying channel connecting the two formed inside the shell; a ball feeding mechanism, disposed below the conveying channel and used to deliver the pet balls in the throwing channel one by one to the entrance of the launching channel; a ball launching mechanism, disposed in the pet ball launching channel and used to launch the pet ball out of the launching channel's exit; and a sensing trigger mechanism, disposed on the side wall of the throwing channel to sense whether the pet ball has entered the throwing channel.
[0004] In actual use, pet dogs need to use their mouths to pick up the pet ball and put it into the delivery channel of the automatic launcher. Large dogs such as Golden Retrievers drool a lot, and when playing, they will put drool, weeds and other contaminants into the delivery channel, delivery channel and conveying channel of the launcher through the pet ball. The channels of traditional ball launchers are fixed to the shell, and the channels are relatively long and narrow, which is inconvenient for users to disassemble and clean. Over time, bacteria can easily grow, affecting the pet's health, and also affecting the normal use and lifespan of the pet ball launcher. Summary of the Invention
[0005] The purpose of this invention is to provide a simple, easy-to-clean, split-type pet ball launcher.
[0006] The purpose of this utility model is achieved as follows:
[0007] A split-type pet ball launcher for launching pet balls includes: multiple detachable bases, each base having at least one channel splicing part for forming a ball-scoring channel; when all bases are installed together, all channel splicing parts are spliced together to form a complete ball-scoring channel inside; the ball-scoring channel has a ball-scoring section with a ball-scoring opening and a ball-launching section with a ball-launching opening; the ball-launching section is provided with a ball-launching device for launching pet balls.
[0008] This utility model proposes a split-type pet ball launcher, which has the following features: the base has two parts, namely a first base and a second base. The first base has at least one first channel splicing part for forming a ball-scoring channel, and the second base has at least one second channel splicing part for forming a ball-scoring channel. When the first base and the second base are installed together, the first channel splicing part and the second channel splicing part are spliced together, and the interior of the two parts forms a ball-scoring channel.
[0009] This utility model proposes a split-type pet ball launcher, characterized by the following features: a first base and a second base arranged vertically; a first channel splicing part having a first ball-scoring splicing section with a ball-scoring opening and a first ball-serving splicing section; and a second channel splicing part having a second ball-scoring splicing section adapted to the first ball-scoring splicing section and a second ball-serving splicing section adapted to the first ball-serving splicing section.
[0010] This utility model proposes a split-type pet ball launcher, which has the following features: the channel splicing part has a partial splicing section and / or a ring splicing section.
[0011] This utility model proposes a split-type pet ball launcher, which has the following features: the outer end of the first ball-launching segment is connected to a launch base, the launch base has a launch port and is fixed on the first base.
[0012] This utility model proposes a split-type pet ball launcher, characterized by a positioning mechanism and / or locking mechanism provided between the first base and the second base.
[0013] This utility model proposes a split-type pet ball launcher, which has the following features: the positioning mechanism includes at least one positioning groove formed on a first base and at least one positioning post correspondingly disposed on a second base.
[0014] This utility model proposes a split-type pet ball launcher, characterized by the following features: a slot is provided in the middle of the positioning post, and a corresponding insertion post is provided in the middle of the positioning slot; a locking mechanism for locking the insertion post is provided inside the positioning post, the locking mechanism including a button, a locking block and a locking spring; clearance holes and locking holes are provided on the positioning post and the insertion post respectively; the locking block has a locking part, one end of the locking block is connected to the button, and the other end is abutted against the second base by the locking spring; when the insertion post enters the slot, the locking part is engaged with the locking hole.
[0015] This utility model proposes a split-type pet ball launcher, which has the following features: the first base includes a first outer shell and a first base that are fixed to each other; the upper part of the first outer shell has a ball mounting port and the side wall has a launch mounting port; the bottom of the first base has a first splicing mounting port and a plurality of first buckles are provided on the first splicing mounting port; the ball mounting port of the first channel splicing part extends outward from the ball mounting port and the splicing part is provided with a first stop edge that matches the first splicing mounting port around its perimeter, and the first stop edge is provided with a first slot that matches the first buckle.
[0016] This utility model proposes a split-type pet ball launcher, characterized in that the second base further includes a second outer shell and a second base that are fixed to each other. The upper end of the second outer shell is adapted to the shape of the lower end face of the first base and has a second splicing installation port with multiple second buckles. The second base is fixed with a second channel splicing part, and the splicing part of the second channel splicing part has a second baffle adapted to the second splicing installation port around its splicing area. The second baffle has a second slot adapted to the second buckles.
[0017] The outstanding and beneficial technical effects of this utility model compared to the prior art are:
[0018] 1. This utility model includes multiple detachable bases, each base having a channel splicing part. All channel splicing parts are spliced together to form a complete goal-scoring channel inside. When it is necessary to clean the goal-scoring channel, each base can be disassembled and the corresponding channel splicing part on the base can be cleaned, thereby facilitating the cleaning of the goal-scoring channel.
[0019] 2. The channel splicing part of this utility model has a partial splicing section and / or annular splicing section. The channel cross-section of the annular splicing section is a complete circle, while the channel cross-section of the partial splicing section is not a complete circle. The partial splicing section needs to be spliced together with other partial splicing sections to form a complete circle in the channel cross-section. During the cleaning process, the partial splicing section is easier to clean than the annular splicing section because of its larger exposed channel surface area; while the annular splicing section has greater structural strength than the partial splicing section. With proper design, both can ensure structural strength and improve cleaning efficiency.
[0020] 3. This utility model has a positioning mechanism and a locking mechanism between two adjacent substrates, which facilitates the assembly and disassembly of each substrate. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of this utility model.
[0022] Figure 2 This is a cross-sectional view of the present invention.
[0023] Figure 3This is a split view of the first and second substrates of this utility model.
[0024] Figure 4 This is a schematic diagram of the structure of the goal channel of this utility model.
[0025] Figure 5 This is an exploded view of the goal channel of this utility model.
[0026] Figure 6 This is an exploded view of the first substrate of this utility model.
[0027] Figure 7 This is an exploded view of the second substrate of this utility model.
[0028] Figure 8 This is a structural schematic diagram of the locking mechanism of this utility model.
[0029] Figure 9 This is a cross-sectional view of the locking mechanism of this utility model.
[0030] Figure 10 This is a cross-sectional view of a second embodiment of the pet ball launcher of the present invention.
[0031] Figure 11 This is a schematic diagram of the structure of the ball-scoring channel of the second type of pet ball-scoring device of the present invention.
[0032] Figure 12 This is an exploded view of the scoring channel of the second type of pet ball launcher of the present invention.
[0033] The meaning of the labels in the diagram:
[0034] First base 1; Second base 2; Positioning mechanism 3; Locking mechanism 4; Ball serving device 5; Ball delivery device 6; Drive control device 7;
[0035] First channel splicing part 11; Goal inlet 111; First goal splicing section 112; First serve splicing section 113; Partial splicing section 114; Circular splicing section 115; Outer mounting edge 116; Goal inlet fixing hole 1161; First guard edge 117; First slot 118; Reinforcing part 119; First outer shell 12; Goal mounting port 121; Launch mounting port 122; Snap-fit groove 123; First base 13; First splicing mounting port 131; First buckle 132; Lower connecting hole 133; First connecting post 14; Upper positioning hole 141; Upper connecting hole 142; Lower threaded hole 143; Launch seat 15; Launch port 151; Snap-fit buckle 152; Goal inlet fixing ring 16; Fixing pin 161;
[0036] Second channel splicing section 21; Second goal splicing section 211; Second serve splicing section 212; Second side guard 213; Second slot 214; Fixed arm 215; Second outer shell 22; Second splicing mounting port 221; Second buckle 222; Second base 23; Splicing mounting column 232; Second connecting column 24; Anti-slip pad 25;
[0037] Positioning groove 31; Insertion post 311; Locking hole 3111; Positioning post 32; Insertion slot 321;
[0038] Button 41; Locking block 42; Locking part 421; Guide hole 422; Locking spring 43; Locking seat 44; Locking pin 45; Guide pin 46;
[0039] 51; mounting platform; 52; ball drive source; 53; drive wheel; 57; support connector;
[0040] 71. Main control module; 72. Serve sensor module; 73. Power supply module; 74. Switch module; 75. Serve level adjustment module;
[0041] Goal lane 100; Drive window 101; Passing window 102; Pet ball 200. Detailed Implementation
[0042] The present invention will be further described below with reference to specific embodiments:
[0043] Example 1:
[0044] like Figure 1 , 2 As shown, a split-type pet ball launcher is used to launch pet balls for pets to play with. It includes multiple detachable bases, a launching device 5 for launching pet balls, a feeding device 6 for feeding pet balls into the launching device 5, and a drive control device 7 for controlling the operation of the feeding device 6 and the launching device 5.
[0045] The pet ball launcher is equipped with an L-shaped ball-scoring channel 100. Each base has at least one channel splicing part for forming the ball-scoring channel 100. When all bases are installed together, all channel splicing parts are spliced together to form a complete ball-scoring channel 100 inside. The ball-scoring channel 100 has a ball-scoring section with a ball-scoring port 111 and a ball-launching section with a launch port 151. The axis of the ball-launching section is inclined upward to form a parabolic ball-launching trajectory. A drive window 101 is provided on each of the left and right sides of the ball-launching section. A ball-launching device 5 for launching pet balls is provided at the drive window 101. A ball-feeding window 102 is opened on the ball-scoring channel 100 in front of the ball-launching device 5. A ball-feeding device 6 is provided at the ball-feeding window 102.
[0046] When it is necessary to clean the goal channel 100, each base is disassembled and the corresponding channel splicing parts on the base are cleaned, thus facilitating the cleaning of the goal channel 100.
[0047] like Figure 3 As shown, this embodiment has two bases, namely a first base 1 and a second base 2. The first base 1 has a first channel splicing part 11 for forming a goal channel 100, and the second base 2 has a second channel splicing part 21 for forming a goal channel 100. The first base 1 and the second base 2 are arranged vertically. When the first base 1 and the second base 2 are installed together, the first channel splicing part 11 and the second channel splicing part 21 are spliced together, and the goal channel 100 is formed inside both.
[0048] like Figure 4 , 5 As shown, the first channel splicing part 11 has a first goal-scoring splicing section 112 with a goal-scoring opening 111 and a first serving splicing section 113. The goal-scoring opening 111 is located at the top of the first base 1 and is shaped like a trumpet, wider at the top and narrower at the bottom. The second channel splicing part 21 is provided with a second goal-scoring splicing section 211 adapted to the first goal-scoring splicing section 112 and a second serving splicing section 212 adapted to the first serving splicing section 113. The first goal-scoring splicing section 112 and the second goal-scoring splicing section 211 are spliced together to form the goal-scoring section of the goal-scoring channel 100, and the first serving splicing section 113 and the second serving splicing section 212 are spliced together to form the serving section of the goal-scoring channel 100. After the pet places the pet ball into the goal-scoring opening 111, it enters the goal-scoring section under the action of gravity. The drive control device 7 recognizes the signal of the pet ball entering and controls the ball delivery device 6 to work, sending the pet ball 200 into the serving section. Finally, it is launched from the launching port 151 by the ball delivery device 5 for the pet to play and have fun.
[0049] The channel splicing section includes a partial splicing segment 114 and / or annular splicing segment 115. The cross-section of the annular splicing segment 115 is a complete circle, while the cross-section of the partial splicing segment 114 is not a complete circle. The partial splicing segment 114 needs to be spliced together with other partial splicing segments 114 to form a complete circle in the channel cross-section. During the cleaning process, the partial splicing segment 114 is easier to clean than the annular splicing segment 115 because of its larger exposed channel surface area. However, the annular splicing segment 115 has greater structural strength than the partial splicing segment 114. With proper design, both structural strength and cleaning efficiency can be guaranteed.
[0050] In this embodiment, the first goal-scoring segment 112 and the first serve-scoring segment 113 of the first channel splicing part 11 are both composed of a partial splicing segment 114 and a ring-shaped splicing segment 115, and are integrally formed; the second goal-scoring segment 211 and the second serve-scoring segment 212 of the second channel splicing part 21 are both partial splicing segments 114, and are integrally formed. Generally, impurities will accumulate at the bottom of the goal-scoring channel 100, which is the second channel splicing part 21 in this embodiment. Therefore, setting the second channel splicing part 21 as a partial splicing segment 114 makes it easier to clean.
[0051] like Figure 4 As shown, a plate-shaped reinforcing part 119 is provided between the first goal splicing section 112 and the first serve splicing section 113. The reinforcing part 119 is used to improve the strength of the first channel splicing section 11.
[0052] In addition, the driving window 101 in this embodiment consists of two parts: one part is located on the first serve splicing segment 113, and the other part is located on the second serve splicing segment 212. The first serve splicing segment 113 and the second serve splicing segment 212 are spliced together to form a complete driving window 101.
[0053] like Figure 6 As shown, the first base 1 also includes a first outer shell 12 and a first base 13 fixed to each other. The top body of the first base 13 is annular, and a ball mounting port 121 is provided inside the top body. The front and rear ends of the top body extend downward to form front and rear side walls, making the entire first base 13 inverted U-shape. A launch mounting port 122 is provided on its front side wall. The bottom of the first base 13 has a first splicing mounting port 131, and left and right side walls extend upward on the left and right sides of the first splicing mounting port 131, making the entire first base 13 U-shaped.
[0054] The first base 13 is fixed to the first outer shell 12 by a combination of multiple first connecting posts 14 and screws. The first connecting posts 14 can be separate components or integrally formed on one of the parts; this embodiment uses a separate component design. The upper end of the first connecting post 14 has an upper connecting portion with upper positioning holes 141 and upper connecting holes 142. The first outer shell 12 has corresponding upper positioning protrusions and upper threaded posts. The upper end of the first connecting post 14 is initially positioned by the upper positioning holes 141 and upper positioning protrusions, and then the screws pass through the upper connecting holes 142 to achieve a fixed connection with the upper threaded posts. The lower end of the first connecting post 14 has lower threaded holes 143, and the first base 13 has multiple lower connecting holes 133. Screws pass through the lower connecting holes 133 and are fixedly connected to the lower threaded holes, thus connecting the first base 13 and the first outer shell 12.
[0055] An outer mounting edge 116 extends outward from the inlet 111 of the first channel splicing part 11. An inlet mounting groove is provided on the outer side of the inlet mounting opening 121 of the first outer shell 12, and multiple inlet fixing holes 1161 are provided in the inlet mounting groove. An annular mounting groove is provided on the upper surface of the outer mounting edge 116, and multiple inlet through holes adapted to the inlet fixing holes 1161 are provided in the annular mounting groove. An annular inlet fixing ring 16 is provided in the annular mounting groove, and a fixing pin 161 adapted to the inlet fixing hole 1161 extends from the bottom of the inlet fixing ring 16. The fixing pin 161 passes through the inlet through hole and is inserted into the inlet fixing hole 1161 with an interference fit, thereby realizing the fixed connection between the upper end of the first channel splicing part 11 and the first outer shell 12.
[0056] Multiple first buckles 132 are provided extending upward from the periphery of the first splicing mounting port 131 of the first base 13; the periphery of the splicing area at the lower end of the first channel splicing part 11 is provided with first guard edges 117 adapted to the first splicing mounting port 131. The first guard edges 117 can be continuous guard edges or discontinuous guard edges formed by multiple spaced blocks; the first guard edges 117 are provided with first slots 118 adapted to the first buckles 132. When the first buckles 132 are engaged with the first slots 118, the lower end of the first channel splicing part 11 is fixedly connected to the first base 13.
[0057] The ball-serving section of the goal channel 100 is provided with a launch seat 15 at the end, and a launch port is formed in the middle of the launch seat 15. The launch seat 15 can be directly connected to the end of the first ball-serving splicing section 113 or / and the second ball-serving splicing section 212; at the same time, the launch seat 15 can be installed on the first base 1 or / and the second base 2.
[0058] In this embodiment, a launch mounting port 122 is provided on the front side wall of the first base 13. Since the end of the first launch splicing section 113 is an annular splicing section 115, the launch base 15 is directly connected to the first launch splicing section 113 and fixedly installed in the launch mounting port 122 of the first base 13. For easy installation, the launch mounting port 122 is designed with a recessed groove, and multiple snap-fit grooves 123 are provided around the circumference of the recess. Snap-fit buckles 152 are correspondingly provided around the launch base 15. After the snap-fit buckles 152 are snapped into the corresponding snap-fit grooves 123, the launch base 15 is fixedly installed on the first base 1.
[0059] like Figure 7 As shown, the second base 2 also includes a second outer shell 22 and a second base 23 that are fixed to each other. The second base 23 is disc-shaped. The second base 23 is fixedly connected to the second outer shell 22 by a combination of multiple second connecting posts 24 and screws. The shape of the second connecting posts 24 is basically the same as that of the first connecting posts 14, and the length can be designed as needed.
[0060] The upper end of the second outer shell 22 is adapted to the lower end face shape of the first base 13 and has a second splicing mounting port 221. Multiple second buckles 222 are provided extending downward from the second splicing mounting port 221. The splicing part of the second channel splicing part 21 is provided with a second guard edge 213 adapted to the second splicing mounting port 221 around the splicing part. The second guard edge 213 can be a continuous guard edge or a discontinuous guard edge formed by multiple blocks at intervals. The second guard edge 213 is provided with a second slot 214 adapted to the second buckle 222. When the second buckle 222 is engaged with the second slot 214, the upper end of the second channel splicing part 21 is fixedly connected to the second outer shell 22.
[0061] The left and right sides of the second serving splicing section 212 are integrally formed with mounting platforms 51 for mounting the serving device 5. The mounting platforms 51 are fixedly connected to the second base 23 via support connecting seats 57. In addition, the lower surface of the second ball-scoring splicing section 211 is provided with a fixing arm 215 with fixing holes, and the corresponding position of the second base 23 is provided with a splicing mounting post 232 with threaded holes. The fixing arm 215 is fixed to the splicing mounting post 232 of the second base 23 by screws.
[0062] like Figure 3 As shown, a positioning mechanism 3 and a locking mechanism 4 are provided between the first base 1 and the second base 2 for convenient and quick positioning and locking. The positioning mechanism 3 includes at least one positioning groove 31 formed on the first base and at least one positioning post 32 correspondingly provided on the second base; the positioning post 32 has a slot 321 in the middle, and the positioning groove 31 has a corresponding insertion post 311 in the middle. In this embodiment, there are two positioning grooves 31 and two positioning posts 32. The two positioning grooves 31 are respectively provided at the bottom of the first base 13; the two positioning posts 32 are respectively provided on the upper surface of the second outer shell 22.
[0063] like Figure 7-9 As shown, a locking mechanism 4 for locking the insertion post 311 is provided inside the positioning post 32. The locking mechanism 4 includes a button 41, a locking block 42, a locking spring 43, and a locking seat 44. Four locking posts 45 extend from the inside of the second outer casing 22 where the positioning post 32 is located. The locking seat 44 has a locking through hole and is fixed to the locking post 45 with screws, so that a space for installing the locking block 42 is formed between the locking seat 44 and the bottom of the positioning post 32. In order to facilitate the sliding of the locking block 42, a guide post 46 is provided at the bottom of the positioning post 32, and an elongated guide hole 422 is provided in the middle of the locking block 42.
[0064] The positioning post 32 and the insertion post 311 are respectively provided with clearance holes and locking holes 3111. The locking block 42 has a locking part 421 with an inclined guide surface. One end of the locking block 42 is connected to a button 41, which extends out of the second housing 22. The other end of the locking block 42 is abutted against the second base 2 by a locking spring 43. When the insertion post 311 enters the insertion slot 321, the locking part 421 is engaged in the locking hole 3111. When it is necessary to remove the first base 1, press the button 41 to disengage the locking part 421 from the locking hole 3111 to unlock.
[0065] like Figure 2 , 7 As shown, the ball-serving device 5 includes a symmetrically arranged left drive mechanism and a right drive mechanism, which correspond to two drive windows 101 respectively. The left drive mechanism and / or the right drive mechanism include a mounting platform 51, a ball-serving drive source 52, and a drive wheel 53.
[0066] Mounting platform 51 is located on one side of drive window 101 of goal channel 100 and is equipped with a ball-launching drive source 52, preferably a motor. A drive wheel 53 is mounted on the main shaft of the ball-launching drive source 52, with a portion of the drive wheel 53 extending into drive window 101. The drive wheels 53 of the left and right drive mechanisms interact to drive the pet ball 200 in goal channel 100 out of launch port 151. The mounting platforms 51 of the left and right drive mechanisms are integrally formed on the left and right sides of the ball-launching section of goal channel 100, specifically on the left and right sides of the second channel splicing part 21. Several reinforcing ribs 515 are provided between the two mounting platforms 51 and the bottom of the ball-launching section to increase the strength of the mounting platforms 51. The left and / or right drive mechanisms also include a support connecting seat 57, the upper end of which is fixed to the mounting platform 51, and the lower end of which is fixed to the second base 23. In this embodiment, the second base 23, the support connecting seat 57, the mounting platform 51, and the ball-scoring channel 100 (second channel splicing part 21) form a fixed support structure, which can ensure the working stability of the drive wheel 53.
[0067] A ball delivery window 102 is provided on the upper part of the goal channel 100. The ball delivery window 102 has a strip-shaped perforation structure. A ball delivery device 6 is provided on the outer side of the ball delivery window 102. The ball delivery device 6 is used to transport the pet ball between the two drive wheels 53 of the serving device 5. When the drive control device 7 senses the signal that the pet ball 200 has entered, it drives the ball delivery device 6 and the serving device 5 to work. The lever part 62 rotates and moves the pet ball 200 between the two drive wheels 53, thus realizing the serving.
[0068] Specifically, the drive control device 7 includes a ball-serving sensing module 72 disposed on the ball-scoring section, a main control module 71 disposed on the base (i.e., the second base in this embodiment), a power supply module 73, a switch module 74, and a ball-serving gear adjustment module 75.
[0069] The main control module 71 is connected to the motors of the ball-serving device 5 and the ball-feeding device 6, the ball-serving sensor module 72, the power supply module 73, the switch module 74, and the ball-serving gear adjustment module 75.
[0070] The main control module 71 has a main control chip, which controls the motors of the ball-serving device 5 and the ball-feeding device 6; the power supply module 73 is used for power supply, which can be a battery box, rechargeable battery and battery cover set in the second base 23, or an external power cord; the switch module 74 is used to turn the power on and off; the ball-serving gear adjustment module 75 is used to adjust the force of the ball-serving device 5, that is, the rotation speed of the drive wheel 53, and the distance of the ball is adjusted by changing the rotation speed of the drive wheel 53.
[0071] The ball-launching speed adjustment module 75 includes a speed indicator light and a speed button. Pressing the speed button switches the speed of the ball-launching device 5, thereby changing the launch distance and speed of the pet ball. The ball-launching sensing module 72 is preferably an infrared sensor and is installed on the second ball-scoring splicing section 211 of the second channel splicing part 21. The second ball-scoring splicing section 211 has an identification hole. When the pet ball 200 passes through the identification hole, the ball-launching sensing module 72 sends the number signal of the pet ball 200 to the main control chip. The main control chip first controls the ball-launching device 5 to start. When the motor of the ball-launching device 5 reaches the predetermined speed (the set speed corresponding to the speed), it then controls the ball-feeding device 6 to work, which can ensure that the pet ball 200 is launched at the predetermined speed, ensuring the stability of the ball launch.
[0072] In this embodiment, the drive control device 7 is installed on the second base, while the first base does not have any electrical components installed. Therefore, the first base can be directly washed with water.
[0073] In another embodiment, the bottom of the second base 23 is provided with a plurality of anti-slip pads 25.
[0074] Example 2:
[0075] This embodiment is basically the same as Embodiment 1, except that the substrate in this embodiment has three parts, namely substrate A, substrate B and substrate C. Substrate A has a channel splicing part A forming the goal channel 100, substrate B has a channel splicing part B forming the goal channel 100, and substrate C has a channel splicing part C forming the goal channel 100. When substrate A, substrate B and substrate C are installed together, the channel splicing parts A, B and C are spliced together, and the interior of the three parts forms a complete goal channel 100.
[0076] Corresponding positioning and locking mechanisms are provided between substrate A and substrate B, between substrate A and substrate C, and between substrate B and substrate C.
[0077] Example 3:
[0078] This embodiment is basically the same as Embodiment 1, except that the transmitter mounting port can also be set on the second housing 22; or, the transmitter mounting port can also be set between the second housing 22 and the first housing 12, that is, a part of the transmitter mounting port 122 is located on the first housing 12 and another part is located on the second housing 22, and the two are spliced together to form a complete transmitter mounting port 122. A transmitter base 15 is provided on the transmitter mounting port 122, and the transmitter base 15 is connected to the end of the second channel splicing part 21 and / or the first channel splicing part 11.
[0079] Example 4:
[0080] This embodiment is basically the same as Embodiment 1, except that there are two bases in this embodiment, namely a first base 1 and a second base 2. The first base 1 has a first channel splicing part 11 forming a goal-scoring channel 100, and the second base 2 has a second channel splicing part 21 forming a goal-scoring channel 100. The first base 1 and the second base 2 are arranged left and right, preferably symmetrically. When the first base 1 and the second base 2 are installed together, the first channel splicing part 11 and the second channel splicing part 21 are spliced together, and the goal-scoring channel 100 is formed inside both.
[0081] Example 5:
[0082] This embodiment is basically the same as Embodiment 1, except that, as Figure 10-12 As shown, the substrate in this embodiment has two parts, namely a first substrate 1 and a second substrate 2. The first substrate 1 has two first channel splicing parts 11 forming a goal channel 100, and the second substrate 2 has two second channel splicing parts 21 forming a goal channel 100. The first substrate 1 and the second substrate 2 are arranged vertically. When the first substrate 1 and the second substrate 2 are installed together, the two first channel splicing parts 11 and the two second channel splicing parts 21 are spliced together, and the interior of the two forms a goal channel 100.
[0083] In this embodiment, each first channel splicing part 11 is integrally formed with a portion of the first goal splicing segment and a portion of the first serve splicing segment. The first channel splicing parts 11 are preferably arranged symmetrically on the left and right, and the connection position of the first channel splicing parts 11 is provided with a first mounting edge. A first positioning structure and a first mounting hole are provided between the first mounting edges, and the first mounting edges are fixedly connected by fasteners such as screws, thereby fixing the first channel splicing part 11 with the first goal splicing segment 112 and the first serve splicing segment 113.
[0084] One of the second channel splicing parts 21 forms the second goal splicing section 211, and the other second channel splicing part 21 forms the second serve splicing section 212. The connection position of the two is provided with a second mounting edge. A second positioning structure and a second mounting hole are provided between the second mounting edges. The second mounting edges are fixedly connected by fasteners such as screws, thereby fixing them into the second channel splicing part 21.
[0085] In this embodiment, the first positioning structure and the second positioning structure are positioning protrusions and positioning grooves provided on the corresponding mounting edges.
[0086] The design of the goal channel 100 in this embodiment has the advantages of simple process and convenient production.
[0087] In addition, in this embodiment, the second ball-scoring splicing sections 211 on both sides of the ball-sending window 102 bulge inward to form a ball-sending avoidance part 65. The ball-sending avoidance part 65 is equipped with a rotating body 61 and a lever part 62 of the ball-sending device, so that the center of the rotating body 61 is closer to the ball-scoring channel, thereby giving the lever part 62 more space to contact the pet ball 200.
[0088] The above embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of protection of the present utility model. Therefore, all equivalent changes made to the structure, shape, and principle of the present utility model should be covered within the scope of protection of the present utility model.
Claims
1. A split-type pet ball launcher for launching pet balls, characterized in that, include: Multiple detachable substrates, each substrate having at least one channel joint for forming a goal channel (100), When all the said substrates are assembled together, all the said channel joints are spliced together to form a complete ball-goal channel (100) inside. The goal channel (100) has a goal section with a goal opening (111) and a launch section with a launch port, wherein a launch device (5) for launching the pet ball is provided on the launch section.
2. The split-type pet ball launcher according to claim 1, characterized in that: The matrix has two components, namely a first matrix (1) and a second matrix (2). The first substrate (1) has at least one first channel splice (11) for forming the ball channel (100), The second substrate (2) has at least one second channel splice (21) for forming the ball channel (100), When the first substrate (1) and the second substrate (2) are installed together, the first channel splicing part (11) and the second channel splicing part (21) are spliced together, and the interior of the two forms the ball-goal channel (100).
3. A split-type pet ball launcher according to claim 2, characterized in that: The first substrate (1) and the second substrate (2) are arranged vertically. The first channel splicing section (11) has a first goal splicing section (112) with a goal opening (111) and a first serve splicing section (113). The second channel splicing section (21) is provided with a second goal splicing section (211) adapted to the first goal splicing section (112) and a second serve splicing section (212) adapted to the first serve splicing section (113).
4. A split-type pet ball launcher according to claim 1, characterized in that: The channel splicing section has a partial splicing segment (114) and / or a ring splicing segment (115).
5. A split-type pet ball launcher according to claim 3, characterized in that: The outer end of the first serving splicing section (113) is connected to a launching seat (15), which has a launching port and is fixed on the first base (1).
6. A split-type pet ball launcher according to claim 2, characterized in that: A positioning mechanism (3) and / or a locking mechanism (4) are provided between the first substrate (1) and the second substrate (2).
7. A split-type pet ball launcher according to claim 6, characterized in that: The positioning mechanism (3) includes at least one positioning groove (31) formed on the first base and at least one positioning post (32) correspondingly disposed on the second base.
8. A split-type pet ball launcher according to claim 7, characterized in that: The positioning post (32) has a slot (321) in the middle, and the positioning slot (31) has a corresponding insertion post (311) in the middle. The positioning post (32) is provided with a locking mechanism (4) for locking the insertion post (311). The locking mechanism (4) includes a button (41), a locking block (42) and a locking spring (43). The positioning post (32) and the insertion post (311) are respectively provided with clearance holes and locking holes (3111). The locking block (42) has a locking part (421). One end of the locking block (42) is connected to the button (41), and the other end is abutted against the second base through the locking spring (43). When the insertion post (311) enters the insertion slot (321), the locking part (421) is engaged in the locking hole (3111).
9. A split-type pet ball launcher according to any one of claims 2, 3, 5-8, characterized in that: The first base (1) also includes a first outer shell (12) and a first base (13) fixed to each other. The first outer casing (12) has a ball mounting port (121) on its upper part and a launch mounting port (122) on its side wall. The bottom of the first base (13) has a first splicing installation port (131), and a plurality of first buckles (132) are provided on the first splicing installation port (131); The first channel splicing part (11) has an outer mounting edge (116) extending outward from the ball inlet (111). The splicing part is provided with a first stop edge (117) that is compatible with the first splicing mounting opening (131). The first stop edge (117) is provided with a first slot (118) that is compatible with the first buckle (132).
10. A split-type pet ball launcher according to claim 9, characterized in that: The second base (2) also includes a second outer shell (22) and a second base (23) that are fixed to each other. The upper shape of the second outer shell (22) is adapted to the lower shape of the first base (13) and has a second splicing mounting port (221). Multiple second buckles (222) are provided on the second splicing mounting port (221). The second base (23) is fixed with the second channel splicing part (21). The splicing part (21) is provided with a second stop (213) around the splicing part (21) that is compatible with the second splicing installation port (221). The second stop (213) is provided with a second slot (214) that is compatible with the second buckle (222).
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Split type pet ball dispenser
CN119183974A