CN217448899U - Laser shooting game machine and laser gun - Google Patents

Laser shooting game machine and laser gun Download PDF

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Publication number
CN217448899U
CN217448899U CN202220874851.9U CN202220874851U CN217448899U CN 217448899 U CN217448899 U CN 217448899U CN 202220874851 U CN202220874851 U CN 202220874851U CN 217448899 U CN217448899 U CN 217448899U
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China
Prior art keywords
laser
assembly
gun
trigger
sliding sleeve
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Active
Application number
CN202220874851.9U
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Chinese (zh)
Inventor
韩光磊
潘胜海
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Zhongshan Dacheng Mutual Entertainment Co.,Ltd.
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Zhongshan Ace Amusement Technology Co ltd
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Abstract

The application discloses a laser shooting game machine and a laser gun, wherein the laser gun comprises a gun shell assembly, a trigger assembly, a control circuit board, a laser emitter, a sliding sleeve assembly and an electromagnet assembly; the laser emitter is arranged at the muzzle of the gun shell assembly, the control circuit board is arranged in the gun shell assembly and is positioned at the front side of the trigger assembly, the sliding sleeve assembly is connected above the rear part of the gun shell assembly in a sliding manner, and the electromagnet assembly is arranged in the gun shell assembly and is fixedly connected below the sliding sleeve assembly; trigger subassembly includes trigger body, trigger spring and trigger switch, and the equal electric connection control circuit board of trigger switch, laser emitter and electro-magnet subassembly to when the realization is pulled trigger body, trigger switch closure, control circuit board control laser emitter transmission laser and control electro-magnet subassembly drive sliding sleeve subassembly motion. The laser gun provided by the application improves the proportion of matching when holding, and it is dynamic to simulate the rifle and hit simultaneously, improves user experience.

Description

Laser shooting game machine and laser gun
Technical Field
The application relates to the field of recreation, in particular to laser shooting recreational apparatus and laser gun.
Background
The game machine is the expression and the purpose of various physical states in people's thinking, is realized and completed through modern technology and scientific means (sound, light, electricity, machinery, pneumatics, swimming, etc.), and then reacts through people's perception to achieve vivid and interesting stimulating equipment or facilities. In the prior art, a sound, light and electricity shooting game machine projects light spots on a display screen through a laser generator installed on a shooting device such as a laser gun, captures the light spots projected on the display screen through a capture device, the capture device can feed captured light spot information back to a controller, and the controller judges and scores according to the information fed back by the capture device. The existing shooting devices such as laser guns imitate the appearance of a real gun and neglect the layout of internal parts and the proportion weight when holding, thereby influencing the use experience of users.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a laser gun can improve the proportion of joining in marriage when gripping, can simulate the rifle simultaneously and hit the sensation of movement, improves user experience. It is another object of the present application to provide a laser shooting game machine including the above laser gun.
In order to achieve the purpose, the application provides a laser gun which comprises a gun shell assembly, a trigger assembly, a control circuit board, a laser emitter, a sliding sleeve assembly and an electromagnet assembly; the laser emitter is arranged at the muzzle of the gun shell assembly, the control circuit board is arranged in the gun shell assembly and positioned on the front side of the trigger assembly, the sliding sleeve assembly is connected to the upper part of the rear part of the gun shell assembly in a sliding manner, and the electromagnet assembly is arranged in the gun shell assembly and fixedly connected to the lower part of the sliding sleeve assembly;
trigger subassembly includes trigger body, trigger spring and trigger switch, trigger switch laser emitter and the equal electricity of electro-magnet subassembly is connected control circuit board to the realization is withheld during the trigger body, trigger switch is closed, control circuit board control laser emitter transmission laser and control electro-magnet subassembly drives the sliding sleeve subassembly motion.
In some embodiments, a trigger part extending towards the rear of the gun housing assembly is arranged below the rear of the trigger body, and a trigger elastic sheet matched with the trigger part is arranged on one side of the trigger switch facing the trigger body.
In some embodiments, the gun housing assembly comprises a left gun housing and a right gun housing which are symmetrically arranged, the trigger body is provided with a sliding rib plate, and the left gun housing and the right gun housing are provided with sliding chutes matched with the sliding rib plate; the rear portion of trigger body set up with the reference column of trigger spring adaptation, left rifle shell with right rifle shell sets up and is used for the holding the constant head tank of trigger spring.
In some embodiments, the sliding sleeve assembly comprises a sliding sleeve fixing frame, a sliding sleeve bearing, and a left sliding sleeve and a right sliding sleeve which are symmetrically arranged, wherein the sliding sleeve fixing frame fixedly connects the left sliding sleeve and the right sliding sleeve; the bottom middle part of sliding sleeve mount set up with electromagnet assembly complex dress card portion, sliding sleeve bearing for connect in sliding sleeve mount bottom front portion with linear bearing between the electromagnet assembly.
In some embodiments, the electromagnet assembly comprises an electromagnet body and an electromagnet mount; the front end of the electromagnet fixing frame is connected with the sliding sleeve bearing, a through hole for the moving part of the electromagnet body to penetrate is formed in the rear end of the electromagnet fixing frame, and a clamping matching part matched with the clamping part is arranged at the tail end of the moving part.
In some embodiments, the gun case assembly further comprises a decorative weight case assembly sleeved outside the front end of the gun case assembly, and the decorative weight case assembly comprises a left decorative case and a right decorative case which are symmetrically arranged.
In some embodiments, the laser transmitter further comprises a switching control button, wherein the switching control button is electrically connected with the control circuit board so as to adjust the transmitting frequency of the laser transmitter by pressing the switching control button; the left decorative shell and the right decorative shell are provided with mounting holes for fixing the switching control button.
In some embodiments, the decorative weight housing assembly further comprises a muzzle decorative weight piece clamped between the front sides of the left decorative housing and the right decorative housing, the muzzle decorative weight piece is provided with a laser through hole, and a laser head protective sheet is installed in the laser through hole.
The application also provides a laser shooting recreational apparatus, which comprises a recreational apparatus body and the laser gun.
In some embodiments of the present invention, the,
according to the laser gun provided by the application, the circuit board is arranged in the gun shell assembly and positioned on the front side of the trigger assembly, the electromagnet assembly and the sliding sleeve assembly are arranged on the rear portion of the gun shell assembly, the proportion of the whole gun shell assembly is optimized, and the weight is concentrated on the holding portion on the rear portion of the gun shell assembly; in addition, through pulling trigger subassembly, trigger body compression trigger spring triggers trigger switch, and control circuit board receives trigger body action, and control laser emitter transmission laser controls electromagnet assembly simultaneously and drives sliding sleeve subassembly seesaw, and the simulation is hit the sensation of movement, improves user experience.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced below, it is obvious that the drawings in the following description are only embodiments of the present application, and for those skilled in the art, other drawings can be obtained according to the provided drawings without creative efforts.
FIG. 1 is a general schematic view of a laser gun provided in an embodiment of the present application;
FIG. 2 is a longitudinal sectional view of FIG. 1;
FIG. 3 is an exploded view of FIG. 1;
FIG. 4 is a schematic view of a trigger assembly;
FIG. 5 is a schematic view of the assembly of the sliding sleeve assembly and the electromagnet assembly;
FIG. 6 is an assembled view of the decorative weight housing assembly;
FIG. 7 is a schematic diagram of a laser shooting game machine according to an embodiment of the present disclosure;
fig. 8 is an exploded view of fig. 7.
Wherein:
100-lamp box, 200-display, 300-display support, 400-guardrail, 500-sound, 600-console, 610-gun sleeve, 620-coin selector, 630-lottery ticket machine, 700-laser gun;
710-gun case assembly, 711-left gun case, 712-right gun case;
720-trigger assembly, 721-trigger body, 722-trigger spring, 723-trigger switch, 724-trigger part and 725-trigger spring sheet;
730-control circuit board;
740-a laser emitter;
750-sliding sleeve component, 751-sliding sleeve fixing frame, 752-sliding sleeve bearing, 753-left sliding sleeve, 754-right sliding sleeve and 755-clamping part;
760-electromagnet assembly, 761-electromagnet body, 762-electromagnet fixing frame, 763-fitting and clamping matching part;
770-decorative weight balance shell component, 771-left decorative shell, 772-right decorative shell, 773-muzzle decorative weight balance piece, 774-laser head protective sheet, 775-control button;
780-tail.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
In order to enable those skilled in the art to better understand the scheme of the present application, the present application will be described in further detail with reference to the accompanying drawings and the detailed description.
Referring to fig. 1 and 2, embodiments of the present application provide a laser gun 700, wherein the laser gun 700 mainly includes a gun housing assembly 710, a trigger assembly 720, a control circuit board 730, a laser emitter 740, a slide sleeve assembly 750, and an electromagnet assembly 760. The gun shell assembly 710 is formed by a left gun shell 711 and a right gun shell 712 which are symmetrically arranged and matched to form a gun shape, the laser emitter 740 is arranged at a muzzle in the cavity gun shell assembly 710, the control circuit board 730 is arranged in the gun shell assembly 710 and positioned at the front side of the trigger assembly 720, the sliding sleeve assembly 750 is arranged above the rear part of the gun shell assembly 710, the electromagnet assembly 760 is connected below the sliding sleeve 750, the matching ratio of the gun shell assembly 710 is adjusted by using the sliding sleeve 750 and the electromagnet assembly 760, the weight is concentrated on the holding part of the gun shell assembly 710, and the matching ratio of the laser gun 700 and the holding experience of a user are improved; trigger assembly 720 includes trigger body 721, trigger spring 722 and trigger switch 723; by means of the laser emitter 740, the electromagnet assembly 760 and the electric connection between the trigger switch 723 and the control circuit board 730, when the trigger body 721 is pulled, the trigger body 721 compresses the trigger spring 722 to trigger the trigger switch 723, when the control circuit board 730 senses that the trigger switch 723 is triggered, the laser emitter 740 is controlled to emit laser, meanwhile, the electromagnet assembly 760 is controlled to be electrified to generate magnetic motion, the sliding sleeve assembly 750 is driven to move relative to the gun shell assembly 710, the gun striking dynamic sense is simulated, and the use experience of a user is improved.
The electromagnet assembly 760 with the function of energizing movement can refer to the prior art, and is not a modified part of the present application, and one skilled in the art can select an appropriate type of electromagnet assembly 760 according to the size of the gun housing assembly 710, and the working principle of the electromagnet assembly will be briefly described below.
In one embodiment, referring to fig. 2-4, a trigger 724 extending horizontally toward the grip is disposed below the rear of the trigger body 721 near the grip of the gun housing assembly 710, a trigger switch 723 is disposed in the grip of the gun housing assembly 710, and a trigger spring 725 is disposed on a side of the trigger switch 723 facing the trigger body 721. When the trigger body 721 is pulled, the trigger body 721 moves, the trigger portion 724 presses the trigger spring 725, and the trigger switch 723 is closed. When the trigger body 721 is released, the trigger spring 722 drives the trigger body 721 to reset, the trigger portion 724 is separated from the trigger elastic sheet 725, the trigger elastic sheet 725 resets, and the trigger switch 723 is switched off.
In this embodiment, the trigger body 721 is slidably connected to the left gun housing 711 and the right gun housing 712, the top of the trigger body 721 is provided with a sliding rib, the left gun housing 711 and the right gun housing 712 are both provided with sliding grooves, and after the two are assembled, the sliding rib is positioned in the sliding grooves, so that the trigger body 721 can only slide back and forth; the rear part of the trigger body 721 is provided with a positioning column, the left gun housing 711 and the right gun housing 712 are positioned at the rear side of the trigger assembly 720 and are provided with positioning slots, the positioning column is positioned above the triggering part 724 and is shorter than the triggering part 724 in length, one end of the trigger spring 722 is sleeved on the positioning column of the trigger body 721, and the other end is accommodated in the positioning slots. It is understood that the trigger body 721 is not limited to the above-mentioned slide driving manner, and the gun housing assembly 710 may be rotatably connected, and the settings of the trigger 724 and the trigger switch 723 may be adaptively adjusted.
In one embodiment, referring to fig. 2, 3 and 5, the sliding sleeve assembly 750 includes a sliding sleeve fixing frame 751, a sliding sleeve bearing 752, and a left sliding sleeve 753 and a right sliding sleeve 754 which are symmetrically arranged, the left sliding sleeve 753 and the right sliding sleeve 754 are abutted and then fixedly connected with the sliding sleeve fixing frame 751 through fasteners such as screws, and the left sliding sleeve 753 and the right sliding sleeve 754 are slidably sleeved over the rear portion of the gun housing assembly 710. The sliding sleeve bearing 752 is a linear bearing, the bottom end of the sliding sleeve bearing is fixedly connected with the electromagnet assembly 760, the top end of the sliding sleeve bearing is connected to the front end of the sliding sleeve fixing frame 751, the middle part of the bottom end of the sliding sleeve fixing frame 751 is provided with a clamping part 755, the clamping part 755 is used for being matched with a moving part of the electromagnet assembly, the moving part drives the clamping part 755 and the sliding sleeve bearing 752 to be arranged, and the electromagnet assembly 760 drives the sliding sleeve assembly 750 to move relative to the front shell assembly.
With continued reference to fig. 3 and 5, in one embodiment, the electromagnet assembly 760 includes an electromagnet body 761 and an electromagnet mount 762, the electromagnet body 761 being mounted within the gun housing assembly 710 via the electromagnet mount 762; the front end of the electromagnet fixing frame 762 is fixedly connected with a sliding sleeve bearing 752, the rear end is provided with a through hole, the electromagnet body 761 at least comprises a moving part, an elastic part and an electromagnetic coil, the electromagnetic coil is electrically connected with the control circuit board 730 and can be electrified to generate the magnetic adsorption moving part, the elastic part is arranged between the moving part and the electromagnetic coil, and the elastic part drives the moving principle electromagnetic coil to reset when the electromagnetic coil is powered off. The moving part penetrates through a through hole of the electromagnet fixing frame 762, the moving part is provided with a clamping matching part 763 matched with the clamping part 755, the electromagnet body 761 and the sliding sleeve assembly 750 are fixedly connected with each other through the clamping part 755 and the clamping matching part 763, the sliding sleeve assembly 750 is driven to move by the movement of the moving part of the electromagnetic coil, and the specific structure of the electromagnet assembly 760 can be arranged by referring to the prior art.
Referring to fig. 2, 3 and 6, based on the above embodiments, the laser gun 700 provided by an embodiment of the present application further includes a decorative weight housing assembly 770, the decorative weight housing assembly 770 is disposed at the front end of the gun housing assembly 710, and the proportion weight of the laser gun 700 is adjusted by using the decorative weight housing assembly 770. The decorative weight balancing shell assembly 770 comprises a left decorative shell 771 and a right decorative shell 772 which are symmetrically arranged, and further comprises a muzzle decorative weight 773 arranged between the front ends of the left decorative shell 771 and the right decorative shell 772, the muzzle decorative weight 773 is provided with a laser through hole, laser emitted by the laser emitter 740 is emitted from the laser through hole, a laser head protection plate 774 can be installed in the laser through hole as required, and dust and impurities are prevented from entering the laser gun 700.
In one embodiment, the laser gun 700 further includes a switch control button 775, the left trim 771 and the right trim 772 have mounting holes, the switch control button 775 is mounted in the mounting holes, and the switch control button 775 is electrically connected to the control circuit board 730 for controlling the emitting frequency/wavelength of the laser emitter 740 to simulate the weapon switching function. A tail 780 is provided at the bottom end of the grip portion of the gun housing assembly 710, and the tail 780 and the control circuit board 730 are electrically connected to provide power and transmit signals to the laser gun 700.
Referring to fig. 7 and 8, the present embodiment provides a laser shooting amusement machine including an amusement machine body and a laser gun 700 as described in the above embodiments. Wherein, the recreational apparatus body includes display 200, lamp house 100, display supporting seat 300, guardrail 400, stereo set 500, accuse platform 600 and camera device, display 200 is used for receiving the laser of laser emitter 740 transmission and realizes man-machine interaction, lamp house 100 sets up the top at display 200, display supporting seat 300 sets up in display 200 below and is used for supporting display 200, the both sides of display supporting seat 300 set up guardrail 400, stereo set 500 and accuse platform 600 set up the anterior top at display supporting seat 300, the bottom of display supporting seat 300 sets up pulley and landing leg as required. The control console 600 is provided with gun sleeves 610 at both sides, the laser gun 700 is arranged in the gun sleeves 610 and is electrically connected with the control console 600 through a tail line 780, the control console 600 is also provided with a coin-operated device 620 and a lottery device 630, the laser gun 700 is started through coin-operated, and the lottery device 630 is used for printing commemorative tickets/pictures after certain conditions are met, so that the man-machine interaction is increased, and the user experience is improved. Other parts of laser shooting recreational apparatus still can refer to prior art setting, and this application is no longer repeated.
It is noted that, in this specification, relational terms such as first and second, and the like are used solely to distinguish one entity from another entity without necessarily requiring or implying any actual such relationship or order between such entities.
The laser shooting game machine and the laser gun provided by the application are described in detail above. The principles and embodiments of the present application are explained herein using specific examples, which are provided only to help understand the method and the core idea of the present application. It should be noted that, for those skilled in the art, it is possible to make several improvements and modifications to the present application without departing from the principle of the present application, and such improvements and modifications also fall within the scope of the claims of the present application.

Claims (10)

1. A laser gun is characterized by comprising a gun shell assembly, a trigger assembly, a control circuit board, a laser emitter, a sliding sleeve assembly and an electromagnet assembly; the laser emitter is arranged at the muzzle of the gun shell assembly, the control circuit board is arranged in the gun shell assembly and is positioned at the front side of the trigger assembly, the sliding sleeve assembly is connected above the rear part of the gun shell assembly in a sliding manner, and the electromagnet assembly is arranged in the gun shell assembly and is fixedly connected below the sliding sleeve assembly;
trigger subassembly includes trigger body, trigger spring and trigger switch, trigger switch laser emitter and the equal electricity of electro-magnet subassembly is connected control circuit board to the realization is withheld during the trigger body, trigger switch is closed, control circuit board control laser emitter transmission laser and control electro-magnet subassembly drives the sliding sleeve subassembly motion.
2. The laser gun according to claim 1, wherein a trigger portion extending toward the rear of the gun housing assembly is provided below the rear of the trigger body, and a trigger spring engaged with the trigger portion is provided on a side of the trigger switch facing the trigger body.
3. The laser gun according to claim 2, wherein the gun housing assembly comprises a left gun housing and a right gun housing which are symmetrically arranged, the trigger body is provided with a sliding rib plate, and the left gun housing and the right gun housing are provided with sliding grooves matched with the sliding rib plate; the rear portion of trigger body set up with the reference column of trigger spring adaptation, left rifle shell with right rifle shell sets up and is used for the holding the constant head tank of trigger spring.
4. The laser gun according to claim 1, wherein the sliding sleeve assembly comprises a sliding sleeve fixing frame, a sliding sleeve bearing, and a left sliding sleeve and a right sliding sleeve which are symmetrically arranged, and the sliding sleeve fixing frame is fixedly connected with the left sliding sleeve and the right sliding sleeve; the bottom middle part of sliding sleeve mount set up with electromagnet assembly complex dress card portion, sliding sleeve bearing for connect in sliding sleeve mount bottom front portion with linear bearing between the electromagnet assembly.
5. The laser gun according to claim 4, wherein the electromagnet assembly comprises an electromagnet body and an electromagnet mount; the front end of electro-magnet mount is connected the sliding sleeve bearing, the through-hole that supplies the motion portion of electro-magnet body wears to establish is seted up to the rear end of electro-magnet mount, the end of motion portion set up with dress card portion complex dress card cooperation portion.
6. The laser gun according to any one of claims 1 to 5, further comprising a decorative weight housing assembly sleeved outside the front end of the gun housing assembly, wherein the decorative weight housing assembly comprises a left decorative housing and a right decorative housing which are symmetrically arranged.
7. The laser gun according to claim 6, further comprising a switch control button electrically connected to the control circuit board for adjusting the firing frequency of the laser emitter by pressing the switch control button; the left decorative shell and the right decorative shell are provided with mounting holes for fixing the switching control button.
8. The laser gun according to claim 7, wherein the decorative weight housing assembly further comprises a muzzle decorative weight piece clamped between the front sides of the left and right decorative housings, the muzzle decorative weight piece is provided with a laser through hole, and a laser head protective sheet is installed in the laser through hole.
9. A laser shooting amusement machine comprising an amusement machine body and a laser gun according to any one of claims 1 to 8.
10. The laser shooting game machine according to claim 9, wherein the game machine body comprises a display, a lamp box arranged on the top of the display, a display support arranged on the bottom of the display, guardrails arranged on two sides of the display support, a sound box arranged above the front part of the display support, and a console, wherein the console is provided with a coin selector, a lottery machine and a gun sleeve for installing the laser gun, and the tail part of the laser gun is electrically connected with the console and the tail line of the control circuit board.
CN202220874851.9U 2022-04-08 2022-04-08 Laser shooting game machine and laser gun Active CN217448899U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220874851.9U CN217448899U (en) 2022-04-08 2022-04-08 Laser shooting game machine and laser gun

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220874851.9U CN217448899U (en) 2022-04-08 2022-04-08 Laser shooting game machine and laser gun

Publications (1)

Publication Number Publication Date
CN217448899U true CN217448899U (en) 2022-09-20

Family

ID=83270574

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220874851.9U Active CN217448899U (en) 2022-04-08 2022-04-08 Laser shooting game machine and laser gun

Country Status (1)

Country Link
CN (1) CN217448899U (en)

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GR01 Patent grant
GR01 Patent grant
CP01 Change in the name or title of a patent holder

Address after: 528447 Room 101, 201, 301, 401, unit 2, 201, 202, 302, 402, unit 1, building 5, No. 6, Hengfeng Sixth Road, Gangkou Town, Zhongshan City, Guangdong Province

Patentee after: Zhongshan Dacheng Mutual Entertainment Co.,Ltd.

Address before: 528447 Room 101, 201, 301, 401, unit 2, 201, 202, 302, 402, unit 1, building 5, No. 6, Hengfeng Sixth Road, Gangkou Town, Zhongshan City, Guangdong Province

Patentee before: ZHONGSHAN ACE AMUSEMENT TECHNOLOGY CO.,LTD.

CP01 Change in the name or title of a patent holder