Shooting control module and vehicle
By introducing a removable access cover and convenient ammunition addition design into the shooting control module, the inconvenience of launcher maintenance and ammunition addition in the prior art is solved, and simpler and more convenient operation and maintenance are achieved.
Patent Information
- Application Number
- CN202010705881.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-07-21
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2040-07-21
AI Technical Summary
The existing shooting control module needs to be disassembled for inspection or replacement when the launcher is damaged, which is time-consuming and labor-intensive, and the ammunition addition function is inconvenient, which affects the user's operation fun.
A shooting control module is designed, using a removable access cover. The transmitter can be accessed directly through the removal of the access cover, so that it can be repaired or replaced without dismantling the entire module. In addition, the module design includes an ammunition compartment and an ammunition cover to facilitate ammunition addition.
Simplifies the maintenance and replacement process of the transmitter, reduces disassembly steps and actions, improves operational convenience and user experience, and reduces maintenance costs.
Smart Images

Figure CN111840979B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of vehicles, and in particular to a shooting control module and a vehicle. Background Art
[0002] In the related art, after the launcher is damaged, the entire shooting control module structure needs to be disassembled for inspection or replacement, which is time-consuming and labor-intensive. In addition, the ammunition adding function of the current shooting control module design also has great defects, and ammunition cannot be added conveniently, thus affecting the user's operating pleasure. Summary of the invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, one object of the present invention is to provide a shooting control module, which can more conveniently repair or replace the launcher.
[0004] The present invention further provides a vehicle.
[0005] According to the shooting control module of the present invention, it includes: a shell, the shell includes: a main shell and an inspection cover, wherein the main shell has an installation cavity and an inspection port connected to the installation cavity, and the inspection cover is detachably installed at the inspection port; a launcher, the launcher is arranged in the installation cavity and is located adjacent to the inspection cover.
[0006] According to the shooting control module of the present invention, an inspection cover is provided, and the inspection cover is detachably installed at the inspection port. When the launcher is damaged and needs to be inspected or replaced, without disassembling the entire shooting control module, it is only necessary to remove the inspection cover from the inspection port, and then the launcher can be removed from the main shell to implement the inspection or replacement of the launcher. In this way, excessive disassembly processes and actions can be avoided, making the entire disassembly and installation process simpler.
[0007] In some examples of the present invention, the inspection port is located on one side of the main shell in the width direction or the height direction, and an avoidance opening for avoiding the trajectory of the launcher is formed at one end in the length direction of the main shell; the inspection cover is slidably connected to the main shell, and has an assembly position covering the inspection port and being fastened to the main shell on its sliding path, and a disassembly position that can be freely removed from the main shell.
[0008] In some examples of the present invention, when the inspection cover is in the assembly position, the inspection cover is engaged with the main shell; when the inspection cover is in the disassembly position, the inspection cover still covers the inspection opening or avoids at least a part of the inspection opening.
[0009] In some examples of the present invention, a first clamping portion is formed on the surface of the inspection cover facing the inspection port, and a second clamping portion is formed on the surface of the main shell opposite to the inspection cover, and during the sliding process of the inspection cover from the disassembly position to the assembly position, the first clamping portion and the second clamping portion gradually engage with each other.
[0010] In some examples of the present invention, the first clamping portion is a hook structure, and the hook structure includes a connecting arm section and a hooking arm section connected along the direction away from the inspection cover, wherein a clamping space is formed between the hooking arm section and the surface of the inspection cover facing the inspection port; the second clamping portion is a stop plate, and during the process of the inspection cover sliding from the disassembly position to the assembly position, the stop plate gradually enters the clamping space and cooperates with the stop and / or presses with the hook structure.
[0011] In some examples of the present invention, the stop plate is protrudingly disposed on the edge of the main shell located at the inspection port; and / or a clearance groove for the hook structure to extend into is formed on the surface of the main shell opposite to the inspection cover, and the stop plate is disposed at the notch of the clearance groove and covers a portion of the notch.
[0012] In some examples of the present invention, there are multiple first clamping parts, and the multiple first clamping parts are arranged at intervals along the length direction of the inspection cover, and there are multiple second clamping parts that are arranged in a one-to-one correspondence with the multiple first clamping parts.
[0013] In some examples of the present invention, a first plug-in portion is provided at one end in the length direction of the inspection cover, a portion of the surface of the main shell body where the inspection opening is opened is recessed to form a step structure, and a second plug-in portion that is plug-matched with the first plug-in portion is provided on the step surface of the step structure.
[0014] In some examples of the present invention, the first plug-in portion is a protruding plug-in terminal, and the second plug-in portion is a plug-in hole; during the process of the inspection cover sliding from the disassembly position to the assembly position, the outer wall surface of the plug-in terminal is always in contact and fit with the hole wall surface of the plug-in hole; or during the process of the inspection cover sliding from the disassembly position to the assembly position, the outer wall surface of the plug-in terminal and the hole wall surface of the plug-in hole switch from a clearance fit to an interference fit.
[0015] In some examples of the present invention, a sliding length of the inspection cover from the disassembly position to the assembly position is less than or equal to a depth of the plug hole.
[0016] In some examples of the present invention, after the inspection cover slides to the assembly position, the surface at the connection between the inspection cover and the main shell is a plane or a curved surface with a smooth transition.
[0017] In some examples of the present invention, the shooting control module includes: a magazine, which is arranged in the installation cavity, the magazine has a loading port and a bullet dropping port, and the launcher has a bullet receiving port docked with the bullet dropping port; the main shell has a magazine port connected to the installation cavity, the magazine port and the loading port are arranged opposite to each other, and the shell also includes: a loading cover, the first end of the loading cover in the length direction is pivotally connected to the main shell and can be opened and closed at the magazine port, the second end of the loading cover in the length direction is provided with an elastic protrusion, the elastic protrusion is selectively arranged on both sides of the width direction of the loading cover, and the elastic protrusion is tightly fitted with the side edge of the magazine port.
[0018] The vehicle according to the present invention comprises: a vehicle body; and the above-mentioned shooting control module, wherein the shooting control module is arranged on the vehicle body.
[0019] Additional aspects and advantages of the present invention will be given in part in the following description and in part will be obvious from the following description, or will be learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0021] Figure 1 is a structural schematic diagram of a shooting control module according to an embodiment of the present invention;
[0022] Figure 2 is a schematic diagram of the structure of the firing control module after the inspection cover is removed, and the inspection cover is in a removed state;
[0023] Figure 3 It is a schematic diagram of the structure of the shooting control module after the cover is opened;
[0024] Figure 4 yes Figure 3 A magnified view of part A;
[0025] Figure 5 is a cross-sectional view of a shooting control module according to an embodiment of the present invention;
[0026] Figure 6 is an exploded diagram of a shooting control module according to an embodiment of the present invention;
[0027] Figure 7 is a schematic structural diagram of a vehicle equipped with the shooting control module of the present invention;
[0028] Figure 8 is a schematic diagram of the structure of the shooting control module from another angle after the inspection cover is removed;
[0029] Fig. 9 It is a schematic diagram of the structure of the inspection cover.
[0030] Reference numerals:
[0031] Shooting control module 1;
[0032] Shell 10; main shell 11; inspection port 110; second clamping portion 111; clearance groove 1110;
[0033] Second plug-in portion 112; mounting cavity 113; avoidance opening 114; step structure 115;
[0034] Magazine opening 116; Assembly position 117;
[0035] Inspection cover 12; first clamping portion 120; connecting arm section 1200; hooking arm section 1201; clamping space 1202;
[0036] First plug-in portion 121; elastic cover 13; elastic protrusion 130; pivot shaft 131;
[0037] Launcher 20; bullet receiving port 21; magazine 30; bullet loading port 31; bullet dropping port 32;
[0038] Vehicle 2; vehicle body 3. DETAILED DESCRIPTION
[0039] Embodiments of the present invention are described in detail below. The embodiments described with reference to the accompanying drawings are exemplary. Embodiments of the present invention are described in detail below.
[0040] Reference below Figure 1-Figure 9 The shooting control module 1 according to the embodiment of the present invention is described, and the vehicle 2 includes: a vehicle body 3 and the shooting control module 1 described above, and the shooting control module 1 is arranged on the vehicle body 3, and the shooting control module 1 can be operated to play games and entertainment. The vehicle 2 can be a drift car, a kart or a somatosensory car.
[0041] like Figure 2 , Figure 5 and Figure 8 As shown, the shooting control module 1 according to the embodiment of the present invention comprises a housing 10 and a transmitter 20. The transmitter 20 is arranged in the housing 10. The housing 10 can protect the transmitter 20, and the transmitter 20 can launch ammunition. The ammunition can be water bullets, which can facilitate users to play corresponding games and entertainment activities.
[0042] The housing 10 includes: a main housing 11 and an inspection cover 12, wherein the main housing 11 has an installation cavity 113 and an inspection port 110 connected to the installation cavity 113, the inspection cover 12 can be detachably installed at the inspection port 110, the transmitter 20 is arranged in the installation cavity 113, and the transmitter 20 is located at a position adjacent to the inspection cover 12. That is, the transmitter 20 is arranged in the main housing 11, and the housing 10 includes the inspection cover 12, and the transmitter 20 is located on the inner side of the inspection cover 12, the inspection cover 12 is arranged at the inspection port 110 opened in the main housing 11, the inspection cover 12 can completely cover the inspection port 110, and the inspection cover 12 can be removed from the inspection port 110, when the inspection cover 12 is removed, the transmitter 20 can be inspected or replaced. The inspection port 110 can be of an irregular shape, and it is necessary to ensure that it is convenient for the transmitter 20 to be taken out of it.
[0043] Therefore, by providing an inspection cover 12, and the inspection cover 12 is detachably installed at the inspection port 110, when the launcher 20 is damaged and needs to be inspected or replaced, without disassembling the entire shooting control module 1, it is only necessary to remove the inspection cover 12 from the inspection port 110, and then the launcher 20 can be removed from the main shell 11 to realize the inspection or replacement of the launcher 20. In this way, excessive disassembly processes and actions can be avoided, making the entire disassembly and installation process simpler, and at least to a certain extent, the maintenance or replacement cost of the vehicle 2 can be reduced.
[0044] Among them, Figure 3 and Figure 6 As shown, the inspection port 110 is located on one side of the width direction or the height direction of the main housing 11, that is, the inspection port 110 can be located on one side of the width direction of the main housing 11, for example, the inspection port 110 can be located on the side of the width direction of the main housing 11 facing the outside of the vehicle body 3, so that when the user repairs or replaces the launcher 20, there is no need to disassemble the shooting control module 1, and the user can directly repair or replace it on the outside. The inspection port 110 can also be located on one side of the height direction of the main housing 11, for example, the inspection port 110 can be located on the top of the main housing 11, so that when the user repairs or replaces the launcher 20, there is no need to disassemble the shooting control module 1, and the user can directly repair or replace it on the top. The width direction of the main housing 11 is the left-right direction, the height direction is the up-down direction, and the length direction is the front-back direction.
[0045] An escape opening 114 for avoiding the trajectory of the launcher 20 is formed at one end of the length direction of the main housing 11. It can be understood that the escape opening 114 for avoiding the trajectory of the launcher 20 is formed at one end of the length direction of the main housing 11, and the trajectory of the launcher 20 can be effectively arranged in the main housing 11 through the escape opening 114, so that the water bullet can be shot to the external target position through the trajectory, so that the launcher 20 can fire ammunition better, forming a real shooting feeling, and satisfying the user's game and entertainment needs.
[0046] The inspection cover 12 is slidably connected to the main housing 11, and the inspection cover 12 has an assembly position 117 on its sliding path that covers the inspection port 110 and is tightly connected to the main housing 11, and a disassembly position that can be freely disassembled from the main housing 11. By providing the assembly position 117 and the disassembly position, the position state between the inspection cover 12 and the main housing 11 can be more clearly shown. When the inspection cover 12 is at the assembly position 117, the inspection cover 12 and the main housing 11 are in a tight state, and when the inspection cover 12 is at the disassembly position, the inspection cover 12 and the main housing 11 can enter a disassembled state.
[0047] Among them, the sliding connection method is simple and convenient. For example, when the inspection cover 12 needs to disassemble the transmitter 20, the user can slide the inspection cover 12 from the assembly position 117 to the disassembly position by sliding. Then, after completing the repair or replacement of the transmitter 20, the user can slide the inspection cover 12 from the disassembly position to the assembly position 117 by sliding. In this way, the repair or replacement process of the transmitter 20 can be completed. The sliding method can make the whole process simple and convenient.
[0048] Furthermore, if Figure 1-Figure 3 As shown, when the inspection cover 12 is in the assembly position 117, the inspection cover 12 is engaged with the main housing 11, and when the inspection cover 12 is in the disassembly position, the inspection cover 12 still covers the inspection opening 110 or avoids at least a part of the inspection opening 110. The inspection cover 12 is engaged with the main housing 11, so that the inspection cover 12 and the main housing 11 are kept in a fastened state, so that the inspection cover 12 is in the assembly position 117, and the engaging method is simple and stable, which can further facilitate the assembly and disassembly of the inspection cover 12. When the inspection cover 12 is in the disassembly position, the fastening relationship between the inspection cover 12 and the main housing 11 is released, and the inspection cover 12 can still cover the inspection opening 110 or partially expose the inspection opening 110. If the transmitter 20 is damaged and needs to be repaired or replaced, the inspection cover 12 needs to avoid part or all of the inspection opening 110 to facilitate the inspection or replacement of the transmitter 20.
[0049] Alternatively, if Figure 2 , Figure 6 , Figure 8 and Fig. 9 As shown, a first clamping portion 120 is formed on the surface of the inspection cover 12 facing the inspection port 110, and a second clamping portion 111 is formed on the surface of the main housing 11 opposite to the inspection cover 12. During the sliding process of the inspection cover 12 from the disassembly position to the assembly position 117, the first clamping portion 120 and the second clamping portion 111 are gradually clamped and matched. A first clamping portion 120 is formed on the surface of the inspection cover 12 facing the inspection port 110, and a second clamping portion 111 is formed on the surface of the main housing 11 opposite to the inspection cover 12. During the sliding process of the inspection cover 12 from the disassembly position to the assembly position 117, the first clamping portion 120 and the second clamping portion 111 are gradually clamped and matched, so that the inspection cover 12 can be fixedly mounted on the main housing 11, ensuring the integrity of the shooting control module 1, and preventing the launcher 20 from being affected by the external environment during operation. In order to ensure the reliability of the inspection cover 12 , the first clamping portion 120 and the second clamping portion 111 may be the same in number and both may be multiple for matching clamping.
[0050] Among them, Fig. 9 As shown, the first clamping portion 120 is a hook structure, and the hook structure includes a connecting arm section 1200 and a hooking arm section 1201 connected to each other along the direction away from the inspection cover 12, wherein a clamping space 1202 is formed between the hooking arm section 1201 and the surface of the inspection cover 12 facing the inspection port 110, and the second clamping portion 111 is a stop plate. During the sliding process of the inspection cover 12 from the disassembly position to the assembly position 117, the stop plate gradually enters the clamping space 1202 and cooperates with and / or presses against the hook structure.
[0051] By providing the hook structure with a connecting arm section 1200 and a hooking arm section 1201, and a locking space 1202 is formed between the hooking arm section 1201 and the surface of the inspection cover 12 facing the inspection port 110, in this way, when the inspection cover 12 slides from the disassembly position to the assembly position 117, the stop plate will enter the locking space 1202, thereby engaging with the stop and / or pressing with the hook structure, so that the inspection cover 12 is fixedly installed on the main shell 11, thereby ensuring the integrity of the shooting control module 1.
[0052] Specifically, there are many ways to set the stop plate, for example, Figure 2 , Figure 6 and Figure 8As shown, the stop plate is protrudingly disposed on the edge of the main housing 11 located at the inspection opening 110, and / or a clearance groove 1110 for the hook structure to extend into is formed on the surface of the main housing 11 opposite to the inspection cover 12, and the stop plate is disposed at the notch of the clearance groove 1110 and blocks a portion of the notch. When the stop plate is protrudingly disposed on the edge of the main housing 11 located at the inspection opening 110, the stop plate and the hook structure stop and cooperate, so that the inspection cover 12 can be fixedly installed on the main housing 11. When the stop plate is disposed at the notch of the clearance groove 1110 and blocks a portion of the notch, the hook structure can extend into the clearance groove 1110, so that it can be pressed and matched with the stop plate, so that the inspection cover 12 can also be fixedly installed on the main housing 11.
[0053] Thus, there are three ways to set the stopper: all the stopper plates are protrudingly set on the edge of the main shell 11 at the inspection opening 110; all the stopper plates are set at the notch of the clearance groove 1110 and cover a part of the notch; part of the stopper plates are protrudingly set on the edge of the main shell 11 at the inspection opening 110, part of the stopper plates are set at the notch of the clearance groove 1110 and cover a part of the notch, and the two parts of the stopper plates can be respectively set on the upper and lower sides of the main shell 11 at the inspection opening 110. By setting different forms of stopper plates, it can at least play an anti-misinstallation effect to a certain extent, and can ensure that the inspection cover 12 is smoothly assembled at the inspection opening 110.
[0054] Of course, if Figure 2 , Figure 6 and Figure 8 As shown, there are a plurality of first clamping parts 120, and the plurality of first clamping parts 120 are arranged at intervals along the length direction of the inspection cover 12, and a plurality of second clamping parts 111 are arranged in one-to-one correspondence with the plurality of first clamping parts 120. There are a plurality of first clamping parts 120, and there are a plurality of second clamping parts 111, and they are arranged in one-to-one correspondence with the plurality of first clamping parts 120, so that the installation between the inspection cover 12 and the main housing 11 can be more firmly made, and the plurality of first clamping parts 120 are arranged at intervals along the length direction of the inspection cover 12, so that the first clamping parts 120 and the second clamping parts 111 can be installed between the inspection cover 12 and the main housing 11 more evenly and comprehensively, thereby improving the stability between the inspection cover 12 and the main housing 11.
[0055] According to an optional embodiment of the present invention, Figure 2 , Figure 6 , Figure 8 and Fig. 9As shown, a first plug-in portion 121 is provided at one end of the inspection cover 12 in the length direction, a portion of the surface of the main housing 11 with the inspection opening 110 is recessed to form a step structure 115, and a second plug-in portion 112 is provided at the step surface of the step structure 115 to be plugged and matched with the first plug-in portion 121. A portion of the surface of the main housing 11 with the inspection opening 110 is recessed to form a step structure 115, and a second plug-in portion 112 is provided at the step surface of the step structure 115, so that the first plug-in portion 121 and the second plug-in portion 112 can be plugged and matched more conveniently, and after the first plug-in portion 121 and the second plug-in portion 112 are plugged and matched, the inspection cover 12 and the main housing 11 are installed more firmly, so as to better ensure the integrity of the shooting control module 1 and prevent the launcher 20 from being affected by the external environment during operation.
[0056] It can be understood that, on the basis of providing multiple first clamping parts 120 and multiple second clamping parts 111, further providing a first plug-in part 121 and a second plug-in part 112 can make the connection method of the inspection cover 12 to the main shell 11 a combination of clamping and plugging, which can improve the reliability of the inspection cover 12 on the main shell 11 and prevent the inspection cover 12 from falling off from the main shell 11 under a small external force.
[0057] Among them, Figure 2 , Figure 6 , Figure 8 and Fig. 9 As shown, the first plug-in portion 121 is a protruding plug-in terminal, and the second plug-in portion 112 is a plug-in hole. The first plug-in portion 121 is set as a protruding plug-in terminal, and the second plug-in portion 112 is set as a plug-in hole. The plug-in terminal and the plug-in hole have a better plug-in matching effect, so that the installation between the inspection cover 12 and the main housing 11 is more stable.
[0058] Optionally, during the sliding process of the inspection cover 12 from the disassembly position to the assembly position 117, the outer wall surface of the plug-in terminal is always in contact with the hole wall surface of the plug-in hole. In other words, the cross-sectional area of the plug-in terminal is equal to the cross-sectional area of the plug-in hole, so that the outer wall surface of the plug-in terminal is always in contact with the hole wall surface of the plug-in hole, and the contact area between the two is also increased, thereby increasing the friction resistance, preventing the inspection cover 12 from loosening after installation, and further ensuring the installation reliability of the inspection cover 12.
[0059] Alternatively, during the sliding process of the inspection cover 12 from the disassembly position to the assembly position 117, the outer wall surface of the plug-in terminal and the hole wall surface of the plug-in hole switch from a clearance fit to an interference fit. That is to say, at the beginning, the cross-sectional area of the plug-in terminal is smaller than the cross-sectional area of the plug-in hole, but as the inspection cover 12 continues to slide toward the assembly position 117, the cross-sectional area of the plug-in terminal gradually becomes larger than the cross-sectional area of the plug-in hole, and finally the outer wall surface of the plug-in terminal and the hole wall surface of the plug-in hole have an interference fit, which can also make the plug-in terminal and the plug-in hole fit more firmly, avoiding the looseness of the inspection cover 12 after installation, and adopting this structure can make the plug-in terminal and the plug-in hole fit more simply and conveniently.
[0060] Furthermore, the sliding length of the inspection cover 12 from the disassembly position to the assembly position 117 is less than or equal to the depth of the plug hole. It is understandable that when the inspection cover 12 slides from the disassembly position to the assembly position 117, the end of the plug terminal is just plugged into the bottom of the plug hole or has not yet been plugged into the bottom of the plug hole. In this way, when the plug terminal and the plug hole can be firmly matched, it can also be ensured that the inspection cover 12 slides to the assembly position 117.
[0061] Preferably, when the inspection cover 12 is in the disassembly position, the end of the plug-in terminal is just located at the orifice of the plug-in hole. In this way, when the inspection cover 12 is in the disassembly position, the inspection cover 12 can be easily removed from the main housing 11, and the operation is also simpler.
[0062] In this way, after the inspection cover 12 slides to the assembly position 117, the surface of the connection between the inspection cover 12 and the main housing 11 is a plane or curved surface with a smooth transition. The surface of the connection between the inspection cover 12 and the main housing 11 is a plane or curved surface with a smooth transition, which will provide a better touch when in use, avoid uneven feeling, and avoid gaps.
[0063] Optionally, Figure 5 and Figure 6 As shown, the shooting control module 1 includes: a magazine 30, and the magazine 30 is arranged in the installation cavity 113. By providing the magazine 30, it is convenient for the shooting control module 1 to store ammunition, so that it is convenient for the shooting control module 1 to provide ammunition to the launcher 20, which can further ensure that the launcher 20 can continue to shoot, thereby improving the user's gaming and entertainment experience. In addition, by arranging the magazine 30 in the installation cavity 113, on the one hand, it is possible to avoid damage to the magazine 30, and the main housing 11 can effectively protect the magazine 30, and on the other hand, it is possible to avoid the problem of the ammunition in the magazine 30 being spilled when the vehicle 2 moves, thereby further ensuring that the launcher 20 can continue to shoot.
[0064] In addition, it should be noted that the magazine 30 can form an integral skeleton structure with a part of the structure surrounding the launcher 20, and the skeleton can be fixedly connected to the main housing 11, which can improve the installation stability of the magazine 30 and further improve the overall structural reliability of the shooting control module 1. There are many ways to fix the magazine 30 and the main housing 11, for example, the two can be fixedly connected by fasteners, or by a snap-fit structure, or by a positioning structure, for example, a combination of a positioning hole and a positioning column.
[0065] The magazine 30 has a loading port 31 and a dropping port 32, and the launcher 20 has a receiving port 21 that docks with the dropping port 32. When filling ammunition, the ammunition can be added to the magazine 30 from the loading port 31, and when the ammunition needs to be fired, the ammunition can be directly delivered from the magazine 30 to the receiving port 21 of the launcher 20 through the dropping port 32. In this way, the automatic dropping function of the shooting control module 1 during use can be realized without manual vibration, which can enhance the user's use pleasure.
[0066] In addition, Figure 2 and Figure 8 As shown, the main shell 11 has a magazine opening 116 connected to the installation cavity 113, and the magazine opening 116 is arranged opposite to the loading port 31. The shell 10 also includes: a loading cover 13, a first end of the loading cover 13 in the length direction is pivotally connected to the main shell 11, and the first end of the loading cover 13 in the length direction can be opened and closed at the magazine opening 116, and the second end of the loading cover 13 in the length direction is provided with an elastic protrusion 130, and the elastic protrusion 130 is selectively arranged on both sides of the width direction of the loading cover 13, and the elastic protrusion 130 is tightly fitted with the side edge of the magazine opening 116.
[0067] That is to say, the shell 10 also includes a bullet-adding cover 13. When the bullet-adding cover 13 is opened, ammunition can be added to the magazine 30 through the magazine opening 116 arranged opposite to the bullet-adding opening 31. This arrangement can make the operation more convenient and can enhance the user's use pleasure. The first end of the bullet-adding cover 13 in the length direction is pivotally connected to the main shell 11 and can be opened and closed to cover the magazine opening 116. The first end can be provided with a pivot shaft 131. There can be two pivot shafts 131. The two pivot shafts 131 can be distributed on both sides of the width direction of the first end of the bullet-adding cover 13. The main shell 11 can be provided with matching holes at positions corresponding to the two pivot shafts 131. The bullet-adding cover 13 is rotatably mounted on the magazine opening 116 through the pivot shaft 131. In this arrangement, when adding ammunition to the magazine 30, it is not necessary to disassemble the bullet-adding cover 13. The bullet-adding cover 13 can be rotatably opened through the pivot shaft 131 at the first end, which is more convenient when adding ammunition.
[0068] In addition, an elastic protrusion 130 is provided at the second end of the bullet-adding cover 13 in the length direction, and the elastic protrusion 130 is selectively provided on both sides of the bullet-adding cover 13 in the width direction. The elastic protrusion 130 can be tightly fitted with the side edge of the magazine opening 116, and the elastic protrusion 130 has elastic deformation. The elastic protrusion 130 may include a convex point, and the convex point can be elastically deformed. In this way, the bullet-adding cover 13 can be pressed against the side position of the magazine opening 116 through the elastic deformation of the elastic protrusion 130, thereby making the shooting control module 1 simple and stable in structure and more convenient to use.
[0069] Specifically, a handle may be provided at the second end of the elastic cover 13 in the length direction, and the handle may be convenient for the user to press it with the finger. Of course, the main shell 11 may also be provided with a smaller avoidance opening at the position corresponding to the second end of the elastic cover 13 in the length direction, so that the user can conveniently insert the finger or nail of the user into the avoidance opening to open the elastic cover 13.
[0070] like Figure 7 As shown, the vehicle 2 according to the embodiment of the present invention includes: a vehicle body 3 and the shooting control module 1 mentioned above, the shooting control module 1 is arranged on the vehicle body 3, there may be two shooting control modules 1, and the two shooting control modules 1 may be distributed on the left and right sides of the vehicle body 3, so that the user can operate with both hands, thereby realizing shooting control with both hands at the same time, which can further improve the playability and entertainment of the vehicle 2.
[0071] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples" means that the specific features, structures, materials, or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example.
[0072] Although the embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.
Claims
1. A shooting control module, characterized in that: include: A housing, the housing comprising: a main housing and an inspection cover, wherein the main housing has an installation cavity and an inspection port communicating with the installation cavity, and the inspection cover is detachably mounted at the inspection port; a transmitter, the transmitter being disposed in the mounting cavity and located adjacent to the inspection cover; The inspection port is located at one side of the main housing in the width direction or the height direction, and an escape opening for avoiding the trajectory of the launcher is formed at one end of the main housing in the length direction; the inspection cover is slidably connected to the main housing, and has an assembly position covering the inspection port and being tightly connected to the main housing on its sliding path, and a disassembly position capable of being freely disassembled from the main housing; A first clamping portion is formed on a surface of the inspection cover facing the inspection port, and a second clamping portion is formed on a surface of the main housing opposite to the inspection cover, and the first clamping portion and the second clamping portion are gradually clamped and matched during the sliding process of the inspection cover from the disassembly position to the assembly position; The first clamping portion is a clamping hook structure, and the clamping hook structure includes a connecting arm section and a hooking arm section connected in a direction away from the inspection cover, wherein a clamping space is formed between the hooking arm section and a surface of the inspection cover facing the inspection port; The second engaging portion is a stop plate. When the inspection cover slides from the disassembly position to the assembly position, the stop plate gradually enters the engaging space and engages with the stopper and / or the presser of the hook structure.
2. The shooting control module according to claim 1, characterized in that: When the inspection cover is in the assembly position, the inspection cover is engaged with the main shell; when the inspection cover is in the disassembly position, the inspection cover still covers the inspection opening or avoids at least a part of the inspection opening.
3. The shooting control module according to claim 1, characterized in that: The stop plate is protrudingly disposed on an edge of the main housing located at the inspection opening; and / or A clearance groove for the hook structure to extend into is formed on the surface of the main shell body opposite to the inspection cover, and the stop plate is arranged at the notch of the clearance groove and covers a part of the notch.
4. The shooting control module according to claim 1, characterized in that: There are a plurality of the first clamping parts, and the plurality of the first clamping parts are arranged at intervals along the length direction of the inspection cover. There are a plurality of the second clamping parts that are arranged in a one-to-one correspondence with the plurality of the first clamping parts.
5. The shooting control module according to claim 1, characterized in that: A first plug-in portion is provided at one end of the inspection cover in the length direction, and a portion of the surface of the main shell where the inspection opening is opened is recessed to form a step structure, and a second plug-in portion that plugs and cooperates with the first plug-in portion is provided on the step surface of the step structure.
6. The shooting control module according to claim 5, characterized in that: The first plug-in portion is a protruding plug-in terminal, and the second plug-in portion is a plug-in hole; During the sliding of the inspection cover from the disassembly position to the assembly position, the outer wall surface of the plug-in terminal is always in contact with the hole wall surface of the plug-in hole; or During the sliding of the inspection cover from the disassembly position to the assembly position, the outer wall surface of the plug-in terminal and the hole wall surface of the plug-in hole switch from a clearance fit to an interference fit.
7. The shooting control module according to claim 6, characterized in that: The sliding length of the inspection cover from the disassembly position to the assembly position is less than or equal to the depth of the plug hole.
8. The shooting control module according to claim 1, characterized in that: After the inspection cover slides to the assembly position, the surface at the connection between the inspection cover and the main shell is a plane or a curved surface with a smooth transition.
9. The shooting control module according to claim 1, characterized in that: The shooting control module comprises: a magazine, the magazine is arranged in the installation cavity, the magazine has a bullet loading port and a bullet dropping port, and the launcher has a bullet receiving port docking with the bullet dropping port; The main shell body has a magazine opening connected to the mounting cavity, and the magazine opening is arranged opposite to the loading opening. The shell further includes: a loading cover, a first end of the loading cover in the length direction is pivotally connected to the main shell body and can be opened and closed to cover the magazine opening, and a second end of the loading cover in the length direction is provided with an elastic protrusion, and the elastic protrusion is selectively arranged on both sides of the width direction of the loading cover, and the elastic protrusion is tightly fitted with the side edge of the magazine opening.
10. A vehicle, characterized in that: include: Vehicle body; The shooting control module according to any one of claims 1 to 9, wherein the shooting control module is arranged on the vehicle body.
Citation Information
Patent Citations
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