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WO2013127264A1 - 一种真人cs用激光发射枪 - Google Patents

一种真人cs用激光发射枪 Download PDF

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Publication number
WO2013127264A1
WO2013127264A1 PCT/CN2013/000197 CN2013000197W WO2013127264A1 WO 2013127264 A1 WO2013127264 A1 WO 2013127264A1 CN 2013000197 W CN2013000197 W CN 2013000197W WO 2013127264 A1 WO2013127264 A1 WO 2013127264A1
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WO
WIPO (PCT)
Prior art keywords
gun
smoke
laser
human
laser emitting
Prior art date
Application number
PCT/CN2013/000197
Other languages
English (en)
French (fr)
Inventor
马卡里
Original Assignee
Ma Kali
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ma Kali filed Critical Ma Kali
Publication of WO2013127264A1 publication Critical patent/WO2013127264A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A33/00Adaptations for training; Gun simulators
    • F41A33/02Light- or radiation-emitting guns ; Light- or radiation-sensitive guns; Cartridges carrying light emitting sources, e.g. laser
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A33/00Adaptations for training; Gun simulators
    • F41A33/04Acoustical simulation of gun fire, e.g. by pyrotechnic means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A33/00Adaptations for training; Gun simulators
    • F41A33/06Recoil simulators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41HARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
    • F41H9/00Equipment for attack or defence by spreading flame, gas or smoke or leurres; Chemical warfare equipment
    • F41H9/06Apparatus for generating artificial fog or smoke screens

Definitions

  • the present invention relates to a prop of a real human CS game, and more particularly to a laser emitting gun for a real human CS. Background technique
  • the laser launching gun In the current live-action laser battle game, the laser launching gun often only mimics the shape of the gun in the shape, and the current laser gun cannot be imitated for the fire and smoke generated by the real gun when it is launched. To a certain extent, it reduces the authenticity and inspiration of the game. It does not allow the player to experience the smoke and the battlefield atmosphere on the real battlefield, which makes the simulation reality of the existing laser battle game lacking. Customer needs.
  • the object of the present invention is to overcome the deficiencies of the prior art and provide a laser emitting gun for a real human CS.
  • the laser emitting gun can simulate the smoke and flare generated by the real gun firing, and increase the realism and playability of the laser emitting gun. Sex.
  • a laser emitting gun for a real human CS includes a gun body and a barrel, the gun body includes a control unit, a laser emitting unit connected to the control unit, and a tapping electromagnet, and includes a hair for generating smoke when the laser beam is emitted.
  • the smoke device and the light-emitting device disposed in the barrel, the smoke device and the light-emitting device are connected to the control unit.
  • the smoking device includes a smoke oil tank connected to each other and a smoke storage chamber for storing the smoke, and an atomizer is disposed between the smoke oil tank and the smoke storage chamber, and the atomizer includes a heating wire.
  • the smoke storage chamber is provided with a smoke-discharging piston at one end, and the other end is provided with a smoke exhausting hole communicating with the barrel.
  • the tapping electromagnet comprises an electromagnetic coil and an armature, and the electromagnetic coil is fixed.
  • the smoke-sparking piston is connected to the armature through a connecting rod.
  • the smoke storage cavity is provided with an escape hole and a movable sealing cover for sealing the escape hole
  • the beat type electromagnet includes an electromagnetic coil and an armature, and the electromagnetic coil is fixed to the gun body.
  • the movable sealing cover is connected to the armature through a connecting rod.
  • the soot tank is connected to the atomizer through a metal fiber, and the atomizer is provided with a nozzle for discharging smoke to the smoke storage chamber.
  • the barrel is provided with a through hole penetrating inside and outside, and the butt of the gun body is connected to the armature through a transmission rod.
  • the illuminating device is an LED tube or a fiber tube, and the illuminating device is distributed in the axial direction inside the barrel.
  • the muzzle of the front end of the barrel is further provided with a muffler flame suppressor, and the muzzle is provided with an acousto-optic control button, and the muffler is connected to the muzzle.
  • the light control buttons are in contact, and the sound and light control buttons are connected to the control unit.
  • a display screen is further disposed on the gun body, and a skill launch button for instructing the control unit to generate laser coded information corresponding to the control unit is disposed around the display screen, the display screen and the skill The start button is connected to the control unit.
  • the gun body of the gun body is provided with a slot for placing a spare magazine, the number of the slots being at least one.
  • the smoke gun and the illuminating device are arranged on the laser gun, which can simulate the smoke and flare effect generated by the real gun launching cymbal, enhance the realism of the laser launching gun and the irritability of the laser battle game system, and the live-action game equipped with the prop. Can further increase the appeal to players.
  • FIG. 1 is a schematic view showing the functional modules of a laser emitting gun for a real human CS according to the present invention.
  • m 2 is a schematic diagram of the internal structure of Embodiment 1 of the present invention.
  • Fig. 3 is a schematic view showing the internal structure of a second embodiment of the present invention.
  • a laser emitting gun for a real human CS includes a gun body 100 and a barrel 200, and the gun body 100 includes a control unit, a laser emitting unit connected to the control unit, and a tapping electromagnet 3,
  • An atomizer 35 is disposed between the soot tank 82 and the smoke storage chamber 85.
  • the atomizer 35 includes a heating wire 83.
  • the smoke storage chamber 85 is provided with a smoke-dissipating piston at one end. 34, the other end is provided with a smoke exhaust hole 36 communicating with the barrel 200
  • the tapped electromagnet is preferably a circular tube, and includes an electromagnetic coil 31 and an armature 32, and the electromagnetic coil 31 is fixed on the gun body 100.
  • the armature 32 is movably disposed in a linear chute in the gun body 100, wherein the armature 32 is pushed and pulled by the on/off of the electromagnetic coil 31, and the fume piston 34 is connected to the armature 32 through the connecting rod 33, and
  • the assembly of the armature 32 further includes a stock 12 disposed at the rear end of the gun body. Referring to Fig. 2, the soot can 82 is in communication with the atomizer 35 via a metal fiber 86, and the atomizer 35 is provided for the smoke The nozzle of the storage chamber 85 is exhausted.
  • the illuminating device 7 of the laser emitting gun is an LED tube or a fiber-optic tube, and the illuminating device 7 is axially distributed inside the barrel 200, and the barrel 200 is provided with a through hole 44 penetrating inside and outside.
  • the gun body 100 is also provided with a through hole 44 penetrating inside and outside at a position close to the barrel 200, and a silencer flame arrester 5 is disposed on the gun mouth, and the sound and light control button 6 is disposed on the gun mouth.
  • the sound-absorbing flame extinguisher 5 is in contact with the sound and light control button 6 when the sleeve is attached to the muzzle, the sound and light control button 6 is connected to the control unit, and the gun body 100 is provided with a laser receiver, the laser receiver The gun receiver is connected to the control unit, and the laser receivers are at least three groups, which are respectively disposed on the left and right sides of the gun body and directly in front of the gun body, the laser receiver is a silicon photocell, and the gun body 200 is further provided with a display.
  • the periphery of the display screen 9 is provided with a skill launch button II for instructing the control unit to generate one-to-one corresponding laser-encoded information, and the display screen 9 and the skill-generating button 1 1 are connected to the control unit, gun
  • the rear end portion 100 is also provided with a slot for placing a spare elastic clip, fixed to the deck by a slot on the butt 1s, the number of slots is at least 1,
  • the main components of the above-mentioned smoke oil 84 are water, glycerin, ethylene glycol, propylene glycol, a stabilizer, etc., wherein the eucalyptus oil, ethylene glycol and propylene glycol are medical grades, even if the smoke generated by the smoke oil 84 is heated even if It is harmless to be inhaled by the human body.
  • the laser gun for real human CS can simulate the smoke and the flare of the real gun. Specifically, due to the capillary action of the metal fiber 86, the smoke 84 in the soot tank 82 continuously enters.
  • the heating wire 83 starts to generate heat, so that the smoke entering the atomizer 35 through the metal fiber 86 becomes smoke, and is stored in the smoke storage chamber 85, when the player pulls the laser
  • the electromagnetic coil 3 1 of the tapping electromagnet 3 is electromagnetically galvanized, and the armature 32 is rapidly moved toward the electromagnetic coil 31 by the electromagnetic force of the electromagnetic coil 31 and hits the end face of the electromagnetic coil 31, and the action of the armature 32
  • the transmission rod 2 is transmitted to the butt position to generate the recoil force
  • the connecting rod 33 drives the smoke-discharging piston 34 built in the smoke storage chamber 85 to generate a reciprocating motion, and when the smoking piston 34 moves in the direction of the barrel 200 At this time, the smoke of the smoke storage chamber 85 escapes from the exhaust hole 36 due to compression and ejects smoke to the barrel 200 and the through hole 44 of the gun body 100.
  • I simulate the gun to generate the pyrotechnic charge.
  • the smoke, J LED tube or fiber optic tube on the barrel 200 is illuminated by the control unit, and the light is reflected by a plurality of through holes 44 in the barrel 200, which can be simulated when the gun (such as a submachine gun) is launched.
  • Fire A silicon photocell (41 and 43) is mounted on the left and right sides of the laser gun, and the neon cell (41 and 43) is smashed by the laser emitting gun.
  • the control unit will lock the laser emission in the fixed chamber.
  • the module so that the laser launching gun can not be normally fired after being hit by the laser, and simulates the damage caused by the hit of the real gun, and the jam; the laser launching gun is placed on the gun body 100.
  • the laser launcher also uses a circle similar to a realistic silencer to be mounted on the tip of the gun to simulate the elimination of the flame arrester 5, after the installation of the muffler flame arrester 5, located in the gun
  • the acousto-optic control button 6 in the mouth is pressed and pressed by the screw interface 51, and the button instructs the control unit to change the output effect and the light effect, so that the sound emitting light and the light effect of the laser emitting gun when the flame extinguisher 6 is equipped are eliminated and the sound is eliminated.
  • Different times specifically, Make the sound effect smaller and simulate the noise reduction effect, so that the luminous intensity is weakened to simulate the effect of the flame.
  • the smoke storage chamber 85 is provided with an escape hole 87 and a movable sealing cover 81 for sealing the escape hole.
  • the electromagnetic coil 31 of the electromagnet is fixed on the gun body 100, and the movable sealing cover 81 is connected to the armature 32 through the connecting rod 33.
  • the armature 32 of the tapping electromagnet 3 is electromagnetic The electromagnetic force of the coil 31 rapidly approaches the electromagnetic wire cabinet 31 and drives the movable sealing cover 81 of the smoke storage chamber 85 through the connecting rod 33 to generate a direct motion reciprocating motion. Referring to FIG.
  • the movable sealing cover 81 when the movable sealing cover 81 is attached to the gun body 100 When moving in the 12 direction, the movable sealing cover 81 opens the escape hole 87, at which time the air will enter the smoke storage chamber 85 to mix with the smoke, and at the moment when the sealing cover 81 is reset toward the barrel 200, the movable sealing cover 81 compresses the smoke.
  • the smoke in the storage chamber 85 is allowed to escape and is ejected from the barrel 200 and the through hole 44 in the gun body 100 to simulate the smoke generated by the burning of the gun during the firing of the gun.
  • the main components of the smoke oil 84 according to the present invention are water, glycerin, B: alcohol, propylene dilute, stabilizer, etc., and the glycerin, ethylene alcohol and internal glycol are medical grade, so that the smoke oil 84 is heated to produce The smoke is harmful even if it is inhaled by the human body.
  • the tapping electromagnet of the present invention can be replaced by other electromagnets or motors, and is suitably replaced with a rotating electric motor to achieve the same function.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Aiming, Guidance, Guns With A Light Source, Armor, Camouflage, And Targets (AREA)
  • Toys (AREA)

Abstract

一种真人CS用激光发射枪,包括枪体(100)和枪管(200),所述枪体(100)包括控制单元、与控制单元连接的激光发射单元和拍打式电磁铁(3),还包括用于在发射激光时产生烟雾的发烟装置(8)和设置于枪管(200)内的发光装置(7),所述发烟装置(8)和发光装置(7)与控制单元相连,所述发烟装置(8)包括相互连通的烟油罐(82)和用于存储烟雾的烟雾存储腔(85),烟油罐(82)和烟雾存储腔(85)之间设置有雾化器(35),所述雾化器(35)包括电热丝(83),该激光发射枪可以对真枪发射时产生的烟雾及火光效果进行模拟,增强了激光发射枪的真实感和激光对战游戏系统的刺激性,配备该道具的真人游戏可以进一步增加对玩家的吸引力。

Description

一种真人 CS用激光发射枪 技术领域
本发明涉及一种真人 CS游戏的道具, 更具体地, 涉及一种真人 CS用激光发射枪。 背景技术
现有真人激光对战游戏中,激光发射枪往往只是在外形上模仿枪的造型,而对于真实枪 支在发射时随之产生的火光和硝烟, 目前的激光发射枪并不能对其进行模仿, 这在一定程 度上降低了游戏的真实性和剌激性, 不能让玩家体验真实战场上硝烟弥漫, 火光冲天的战 场氛围, 使得现有激光对战游戏的模拟真实性有所欠缺, 不满足部分要求较高的客户的需 求。
发明内容
本发明的目的, 就是克服现有技术的不足, 提供一种真人 CS用激光发射枪, 所述激光 发射枪可以模仿真实枪支发射吋产生的硝烟和火光, 增加激光发射枪的真实感和可玩性。
为了达到上述目的, 采用如下技术方案:
一种真人 CS用激光发射枪, 包括枪体和枪管, 所述枪体包括控制单元、 与控制单元连 接的激光发射单元和拍打式电磁铁, 还包括用于在发射激光吋产生烟雾的发烟装置和设置 于枪管内的发光装置, 所述发烟装置和发光装置与控制单元相连。 进一步地, 所述发烟装置包括相互连通的烟油罐和用于存储烟雾的烟雾存储腔, 烟油 罐和烟雾存储腔之间设置有雾化器, 所述雾化器包括电热丝。 作为一种具体实施例, 所述烟雾存储腔在一端设置有驱烟活塞, 另一端设置有与枪管 连通的排烟孔, 所述拍打式电磁铁包括电磁线圈和衔铁, 所述电磁线圈固定于枪体上, 所 述驱烟活塞通过连接杆与衔铁相连。 作为 -种具体实施例, 所述烟雾存储腔上设置有逸出孔和用于密封逸出孔的活动密封 盖, 所述拍打式电磁铁包括电磁线圈和衔铁, 所述电磁线圈固定于枪体上, 所述活动密封 盖通过连接杆与衔铁相连。 作为一种具体实施例, 所述烟油罐通过金属纤维与雾化器连通, 所述雾化器上开有用 于向烟雾存储腔排烟的喷嘴。 作为一种具体实施例, 所述枪管上设置有内外贯穿的通孔, 所述枪体的枪托通过传动 杆与衔铁连接。 作为一种具体实施例, 所述发光装置为 LED灯管或光纤灯管, 所述发光装置沿轴向分 布于枪管内部。 作为一种具体实施例, 与枪管前端的枪口套接还设置有消音消焰器, 所述枪口上设置 有声光控制按钮, 所述消音销焰器在套接于枪口时与声光控制按钮相接触, 所述声光控制 按钮与控制单元连接。 作为一种具体实施例, 所述枪体上还设置有显示屏, 所述显示屏的周围设置有用于指 令控制单元产生与之 · 对应的激光编码信息的技能发动按钮, 所述显示屏和技能发动按 钮与控制单元相连。 作为一种具体实施例,所述枪体的枪托上设置有用于放置备用弹夹的插槽,所述插槽的 数量至少为 1个。
与现有技术相比, 本发明的有益效果在于:
在激光枪上设置发烟装置和发光装置,可以对真枪发射吋产生的烟雾及火光效果进行模 拟, 增强了激光发射枪的真实感和激光对战游戏系统的刺激性, 配备该道具的真人游戏可 以进一步增加对玩家的吸引力。
附图说明
图 1是本发明所述真人 CS用激光发射枪的功能模块示意图。
m 2是本发明实施例 1的内部结构示意图。
图 3是本发明实施例 2的内部结构示意图。
图中: 1 -卡座; 10-弹夹; 1 1 -技能发动按钮; 12-枪托; 2-传动杆; 3-拍打式电磁铁; 31 - 电磁线圈: 32-衔铁; 33-连接杆; 34-驱烟活塞; 35-雾化器; 36-排烟孔; 41 -侧面硅光电池; 43-正面硅光电池; 44-通孔; 5-消声消焰器; 51-螺旋接口; 6-声光控制按钮; 7-发光装置; 8-发烟装置; 81 -活动密封盖; 82-烟油罐; 83-电热丝: 84-烟油; 85-烟雾存储腔; 86-金属纤 维; 87-逸出孔; 9-显示屏。
具体实施方式
下面参见附图和实施例, 对本发明做进一步说明:
实施例 1
参见图 1和图 2 , —种真人 CS用激光发射枪, 包括枪体 100和枪管 200, 所述枪体 100 包括控制单元、与控制单元连接的激光发射单元和拍打式电磁铁 3,还包括用于在发射激光 时产牛.烟雾的发烟装置 8和设置于枪管 200内的发光装置 7, 所述发烟装置 8和发光装置 7 与控制单元相连, 所述发烟装置 8包括相互连通的烟油罐 82和用于存储烟雾的烟雾存储腔 85, 烟油罐 82和烟雾存储腔 85之间设置有雾化器 35, 所述雾化器 35包括电热丝 83, 在 本实施例中,所述烟雾存储腔 85在一端设置有驱烟活塞 34, 另 *端设置有与枪管 200连通 的排烟孔 36, 所述拍打式电磁铁优选为圆管状, 其包括电磁线圈 31和衔铁 32, 所述电磁 线圈 31固定于枪体 100上, 所述衔铁 32活动设置于枪体 100内的线性滑槽内, 其中衔铁 32因电磁线圈 31 的通断电进行推拉式往复动作, 所述驱烟活塞 34通过连接杆 33与衔铁 32相连, 与衔铁 32相连的组件还包括置于枪体后端的枪托 12, 参见图 2, 所述烟汕罐 82 通过金属纤维 86与雾化器 35连通, 所述雾化器 35上开有用于向烟雾存储腔 85排烟的喷 嘴。
在本实施例中, 激光发射枪的发光装置 7为 LED灯管或光纤灯管, 所述发光装置 7沿 轴向分布于枪管 200内部, 枪管 200上设置有内外贯穿的通孔 44, 所述枪体 100在靠近枪 管 200位置处也设置有内外贯通的通孔 44, 与枪口套接还设置有消音消焰器 5, 所述枪口 上设置有声光控制按钮 6,所述消音销焰器 5在套接于枪口时与声光控制按钮 6相接触,所 述声光控制按钮 6与控制单元连接, 所述枪体 100上设置有激光接收器, 所述激光接收器 与控制单元相连, 所述激光接收器至少分为三组, 分别设置于枪体的左右两侧及枪体正前 方, 所述激光接收器为硅光电池, 所述枪体 200上还设置有显示屏 9, 所述显示屏 9的周围 设置有用于指令控制单元产生与之一一对应的激光编码信息的技能发动按钮 I I , 所述显示 屏 9和技能发动按钮 1 1与控制单元相连, 所述枪体 100后端部上还设置有用于放置备用弹 夹的插槽, 所述插槽由固定于枪托上的卡座 1组成, 所述插槽的数量至少为 1个,
在本实施例中, 上述烟油 84的主要成分是水、 甘油、 乙二醇、 丙二醇、 稳定剂等, 其 中廿油、乙二醇和丙二醇为医用级,使烟油 84加热后产生的烟雾即使被人体吸入也都无害。
基于上述结构, 本发明所述的真人 CS用激光发射枪可以对真枪发射时的硝烟和火光进 行模拟,具体地,由于金属纤维 86的毛细作用,烟油罐 82中的烟油 84不断进入雾化器 35, 则开动激光发射枪的电源后, 电热丝 83开始发热使通过金属纤维 86进入雾化器 35的烟油 变成烟雾, 并存储在烟雾存储腔 85内, 当玩家扣动激光发射枪的扳机时, 拍打式电磁铁 3 的电磁线圈 3 1通电磁化, 衔铁 32因为电磁线圈 31的电磁力急速向电磁线圈 31靠拢并击 打在电磁线圈 31的端面上, 衔铁 32的动作一方面通过传动杆 2传至枪托位置产生后座力, 另一方面通过连接杆 33带动内置于烟雾存储腔 85的驱烟活塞 34产生往返运动, 当驱烟活 塞 34沿枪管 200方向运动时, 烟雾存储腔 85的烟雾因为受到压缩而从排烟孔 36逸出并向 枪管 200和枪体 100 . I:的通孔 44喷出烟雾, 以模仿真枪在发射吋火药燃烧产生的烟雾, J 时枪管 200上的 LED灯管或光纤灯管由控制单元启动发光, 其光线通过枪管 200上的多个 通孔 44映照出来, 可以模仿真枪 (如冲锋枪) 发射时的火光。 激光发射枪左右两侧与正前方安装有硅光电池 (41和 43 ), 该砬光 ¾池 (41和 43 ) 被 艽它激光发射枪射中后控制单元将在 定吋间内锁住激光发射模块, 以使得激光发射枪被 激光' /·弹打中后短时间内不能正常发射, 模拟出现实中枪被击中造成的损坏、 卡弹 情况; 该激光发射枪的枪体 100上安置了多个用于安插存放备用弹夹的卡座 1,相邻卡座 1之间形 成插槽, 该插槽使玩家将多余的弹夹插在枪上, 使激光发射枪外形更酷, J时也使玩家能 携带更多备用弹夹; 该激光发射枪还采用一个类似现实消音器的圆^安装在枪头以模拟消 咅消焰器 5, 当安装上消音消焰器 5后, 位于枪口内的声光控制按钮 6被螺旋接口 51接触 按压, 该按钮指令控制单元更改输出咅效和光效, 使激光发射枪在装有消咅消焰器 6 的时 候其音效和光效与没有消音消焰器的时候不尽相同, 具体地, 使音效变小模拟消声效果, 使发光强度变弱以模拟销焰效果。
应该理解, 除发烟装置的结构外, 本实施例所述的激光发射枪的工作原理也适用于本说 叨书中的其他实施例。
实施例 2
本实施例与实施例 1的不同在于发烟装置的结构, 具体地说, 所述烟雾存储腔 85上设 置有逸出孔 87和用于密封逸出孔的活动密封盖 81, 所述拍打式电磁铁的电磁线圈 31 固定 于枪体 100上, 所述活动密封盖 81通过连接杆 33与衔铁 32相连, 当玩家扣动激光发射枪 的扳机时, 拍打式电磁铁 3的衔铁 32丙为电磁线阇 31的电磁力急速向电磁线阁 31靠拢并 通过连接杆 33带动烟雾存储腔 85的活动密封盖 81产生直动往返运动, 参见图 3, 当活动 密封盖 81 向枪体 100的枪托 12方向运动时, 活动密封盖 81打开逸出孔 87, 此时空气将进 入烟努存储腔 85与烟雾混合, 在^动密封盖 81 向枪管 200方向复位的瞬间, 活动密封盖 81压缩烟雾存储腔 85内的烟雾使其逸出并由枪管 200和枪体 100上的通孔 44喷出, 以模 仿真枪在发射时火药燃烧产生的烟雾。 本发明所述的的烟油 84的主要成分是水、 甘油、 乙 :醇、 丙二醉、 稳定剂等, 其屮甘 油、 乙―醇和内二醇为医用级, 使烟油 84加热后产生的烟雾即使被人体吸入也都 害。 本发明所述的拍打式电磁铁可以由其他电磁铁或电机代替, 非常合适用扭矩人的旋转 电机代替, 以实现相同的功能。
J、'、该理解, 以上具体实施例所公布的内容仅为本发明的部分优选方案, 凡是基于本发明 的技术方案、 符合本发明的技术精神, 属于本领域技术人员无需进行创造性劳动即可得到 的实施都应属于本发明的保护范围。

Claims

权 利 要 求 书
1、 一种真人 CS用激光发射枪, 包括枪体和枪管, 所述枪体包括控制单元、 与控制单 元连接的激光发射单元和拍打式电磁铁, 其特征在丁 ·, 还包括用于在发射激光时产生烟雾 的发烟装置和设置于枪管内的发光装置, 所述发烟装置和发光装置与控制单元相连。
2、 如权利耍求 1所述的真人 CS用激光发射枪, 其特征在于, 所述发烟装置包括相互 连通的烟油罐和 ffl于存储烟雾的烟雾存储腔, 烟油罐和烟雾存储腔之间设置有雾化器, 所 述雾化器包括电热丝。
3、 如权利要求 2所述的真人 CS用激光发射枪, 其特征在于, 所述烟雾存储腔在一端 设置有驱烟活塞, 另- ·端设置有与枪管连通的排烟孔, 所述拍打式电磁铁包括电磁线圈和 衔铁, 所述电磁线圈固定于枪体上, 所述驱烟活塞通过连接杆与衔铁相连。
4、 如权利要求 2所述的真人 CS用激光发射枪, 其特征在于, 所述烟雾存储腔. h设置 有逸出孔和用于密封逸出孔的活动密封盖, 所述拍打式电磁铁包括电磁线圈和衔铁, 所述 电磁线圈固定于枪体上, 所述活动密封盖通过连接杆与衔铁相连。
5、 如权利要求 2-4任一项所述的真人 CS用激光发射枪, 其特征在于, 所述烟油罐通 过金属纤维与雾化器连通. 所述雾化器上开有用于向烟雾存储腔排烟的喷嘴。
6、 如权利要求 3-4任 ·项所述的真人 CS用激光发射枪, 其特征在于, 所述枪管上设 置有内外员'穿的通孔, 所述枪体的枪托通过传动杆与衔铁连接。
7、 如权利要求 1 -4任一项所述的真人 CS用激光发射枪, 艽特征在于, 所述发光装置 为 LED灯管或光纤灯管, 所述发光装置沿轴向分布于枪管内部。
8、 如权利要求 1 -4任一项所述的真人 CS用激光发射枪, 其特征在于, 与枪管前端的 枪口套接还设置有消音消焰器, 所述枪口上设置有声光控制按钮, 所述消音销焰器在套接 于枪口时与声光控制按钮相接触, 所述声光控制按钮与控制单元连接。
9、 如权利要求 1 -4所述的真人 CS用激光发射枪, 其特征在于, 所述枪体上还设置有 显示屏, 所述显示屏的周围设置有用于指令控制单元产生与之一一对应的激光编码信息的 技能发动按钮, 所述显示屏和技能发动按钮与控制单元相连。
10、 如权利要求 1 -4任一项所述的真人 CS用激光发射枪, 其特征在于, 所述枪体的枪 托上设置有用于放置备用弹夹的插槽, 所述插槽的数量至少为 1个。
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