WO2020042322A1 - 一种柔性弹发射装置 - Google Patents

一种柔性弹发射装置 Download PDF

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Publication number
WO2020042322A1
WO2020042322A1 PCT/CN2018/112726 CN2018112726W WO2020042322A1 WO 2020042322 A1 WO2020042322 A1 WO 2020042322A1 CN 2018112726 W CN2018112726 W CN 2018112726W WO 2020042322 A1 WO2020042322 A1 WO 2020042322A1
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WO
WIPO (PCT)
Prior art keywords
channel
bomb
flexible
projectile
filling
Prior art date
Application number
PCT/CN2018/112726
Other languages
English (en)
French (fr)
Inventor
梁贵彬
Original Assignee
深圳市大疆创新科技有限公司
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 深圳市大疆创新科技有限公司 filed Critical 深圳市大疆创新科技有限公司
Priority to CN201880039193.8A priority Critical patent/CN110972464A/zh
Publication of WO2020042322A1 publication Critical patent/WO2020042322A1/zh
Priority to US17/179,335 priority patent/US20210172700A1/en

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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F9/00Games not otherwise provided for
    • A63F9/02Shooting or hurling games
    • A63F9/0252Shooting devices therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B11/00Compressed-gas guns, e.g. air guns; Steam guns
    • F41B11/50Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines
    • F41B11/55Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines the projectiles being stored in stacked order in a removable box magazine, rack or tubular magazine
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B11/00Compressed-gas guns, e.g. air guns; Steam guns
    • F41B11/60Compressed-gas guns, e.g. air guns; Steam guns characterised by the supply of compressed gas
    • F41B11/64Compressed-gas guns, e.g. air guns; Steam guns characterised by the supply of compressed gas having a piston effecting a compressor stroke during the firing of each shot
    • F41B11/642Compressed-gas guns, e.g. air guns; Steam guns characterised by the supply of compressed gas having a piston effecting a compressor stroke during the firing of each shot the piston being spring operated
    • F41B11/646Arrangements for putting the spring under tension
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B69/00Training appliances or apparatus for special sports
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F9/00Games not otherwise provided for
    • A63F9/02Shooting or hurling games
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/18Throwing or slinging toys, e.g. flying disc toys
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B1/00Blow guns, i.e. tubes for impelling projectiles, e.g. peas or darts, by the force of the breath
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B11/00Compressed-gas guns, e.g. air guns; Steam guns
    • F41B11/50Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines
    • F41B11/52Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines the projectiles being loosely held in a magazine above the gun housing, e.g. in a hopper
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B11/00Compressed-gas guns, e.g. air guns; Steam guns
    • F41B11/50Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines
    • F41B11/52Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines the projectiles being loosely held in a magazine above the gun housing, e.g. in a hopper
    • F41B11/53Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines the projectiles being loosely held in a magazine above the gun housing, e.g. in a hopper the magazine having motorised feed-assisting means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B11/00Compressed-gas guns, e.g. air guns; Steam guns
    • F41B11/60Compressed-gas guns, e.g. air guns; Steam guns characterised by the supply of compressed gas
    • F41B11/64Compressed-gas guns, e.g. air guns; Steam guns characterised by the supply of compressed gas having a piston effecting a compressor stroke during the firing of each shot
    • F41B11/642Compressed-gas guns, e.g. air guns; Steam guns characterised by the supply of compressed gas having a piston effecting a compressor stroke during the firing of each shot the piston being spring operated
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F9/00Games not otherwise provided for
    • A63F9/02Shooting or hurling games
    • A63F9/0252Shooting devices therefor
    • A63F2009/0265Shooting devices therefor using resilient elements
    • A63F2009/0273Catapults

Definitions

  • the present application relates to the technical field of athletic equipment, and in particular, to a flexible projectile launching device.
  • bullet launchers are mainly used for games and training.
  • hard bullets are commonly used, such as BB or steel ball bullets, which have a great lethality under the action of launchers, causing great damage to people or animals. Big threat.
  • BB steel ball bullets
  • Big threat In some scenarios, such as in the course of competition, if a hard bullet is used, the risk of injury to people or animals from the launching device will be increased.
  • the use of flexible bullets is an ideal choice.
  • the current launching devices will normally launch hard bombs loaded by mistake.
  • a launching device with safety protection needs to be proposed. While ensuring that the flexible bombs can be fired normally, the hard bombs are also prevented from being normally fired. Launch to avoid the harm of hard bullets to people or animals.
  • the purpose of this application is to propose a flexible bullet launching device with safety protection.
  • the launching device can not only ensure the normal firing of the flexible bullet, but also prevent the hard bullet from being fired normally, thereby reducing the risk of misuse of the hard bullet. Risk of major injuries.
  • a flexible projectile launching device comprising: a launching tube, an advancing tube and a power component; the launching tube includes a power channel, a bomb filling channel and a bomb discharging channel which are sequentially connected and arranged;
  • the power component is connected to the free end of the power channel to provide power for launching a flexible bomb
  • the bomb feeding tube includes a bomb feeding channel, and is in communication with the bomb filling channel, and provides a flexible bomb for the bomb filling channel;
  • At least a part of the bombardment channel, the bombardment channel and / or the bombardment channel is an oval channel.
  • the power assembly includes a compression chamber and a compression piston; the compression piston moves along the interior of the compression chamber and is air-tightly slidingly connected to the inner wall of the compression chamber; the compression chamber is opposite to the compression piston One end is air-tightly connected to the power channel.
  • the power assembly further includes an extension tube;
  • the extension tube includes an extension channel, one end of which is air-tightly connected to the compression cavity, and the other end of which is air-tightly connected to the power channel; wherein the extension The nozzle of the channel can closely fit the flexible bomb in the bomb filling channel.
  • an edge of the nozzle of the extension channel is provided with an air inlet gap.
  • the flexible projectile launching device further includes a bomb filling mechanism
  • the bomb filling mechanism includes a bomb filling disc and a dial turntable; the bottom of the bomb filling disc is rotatably installed with the dial turntable, and the The side part is provided with at least one bullet notch, and the bottom of the ammunition disc corresponding to one of the bullet notches is provided with a bullet inlet, and the bullet inlet is in communication with the free end of the bullet inlet channel.
  • the wall surface of the plunger notch is inclined.
  • the reclamation channel and the ejection channel are arranged in a straight line coaxially or in a smooth curve.
  • the bomb feeding channel and the bomb filling channel are arranged perpendicular to each other.
  • the ejection path includes a first ejection trajectory and a second ejection trajectory, and the first ejection trajectory is in communication with the bomb filling channel; wherein the first ejection trajectory and the second ejection trajectory Gas-tight connection through pipe fittings.
  • the first ballistic trajectory is an elliptical channel arrangement; the shape and size of the second ballistic trajectory are the same as the first ballistic trajectory.
  • At least a part of the loading channel, the filling channel and / or the discharging channel is set as an oval channel, and the process of loading and firing bullets is scientifically and rationally designed, which can ensure that Normal firing of flexible bullets can also prevent hard bullets from being fired normally.
  • FIG. 1 is a schematic perspective view of a flexible projectile launching device provided by an embodiment of the present application
  • Figure 2 is a sectional view of Figure 1;
  • FIG. 3 is a schematic structural view of a part of FIG. 1; FIG.
  • FIG. 4 is a sectional view of FIG. 3.
  • Hard projectiles such as BB projectiles or steel ball projectiles
  • Hard projectiles are highly lethal under the action of launching devices and pose a great threat to people or animals.
  • this application proposes a safe flexible bomb launching device.
  • the launching device not only guarantees the normal launch of the flexible bomb, but also prevents the hard bomb from being normally Launch, thereby reducing the risk of major injuries due to misuse of hard bullets.
  • a flexible projectile launching device including: a launch tube, an ejection tube, and a power component; the launch tube includes a power channel, a bomb filling channel, and a bomb discharging channel which are sequentially connected and arranged;
  • the power component is connected to the free end of the power channel to provide power for launching a flexible bomb
  • the bomb feeding tube includes a bomb feeding channel, and is in communication with the bomb filling channel, and provides a flexible bomb for the bomb filling channel;
  • At least a part of the bombardment channel, the bombardment channel and / or the bombardment channel is an oval channel.
  • a flexible bullet refers to a bullet that can undergo elastic deformation, such as a water-absorbing bullet, a soft plastic bullet, or a bullet made of other soft materials.
  • FIG. 1 is a schematic perspective view of a flexible projectile launching device provided by an embodiment of the present application.
  • FIG. 2 is a cross-sectional view of FIG. 1.
  • the flexible projectile launching device of this embodiment includes a launching tube 10, an ejection tube 20, and a power assembly 30.
  • the flexible bullet launching device of this embodiment further includes a housing 60.
  • the casing 60 is used for fixedly mounting the launch tube 10, the ejection tube 20 and the power assembly 30.
  • the launch tube 10 includes a power section 11, a bomb filling section 12 and a bomb ejecting section 13 which are arranged in this order.
  • the inside of the power section 11 is a power channel
  • the inside of the bomb filling section 12 is a bomb filling channel
  • the inside of the bomb ejecting section 13 is a bomb discharging channel
  • the power channel, the bomb filling channel and the bomb discharging The channels are connected in sequence, and are arranged in a straight line and coaxially. Wherein, at least a part of the bomb filling channel and / or the ejection channel is an oval channel.
  • the power channel, the bomb filling channel and the ejection channel are connected in sequence, and may be partially non-coaxially arranged.
  • the power component 30 is connected to the power channel for
  • the flexible bullet in the bomb filling channel is ejected along the ejection channel.
  • the bomb filling channel is disposed coaxially with the ejection channel, and is non-coaxial with the power channel.
  • the power channel is non-coaxially disposed with the bomb filling channel, and the power component 30 is connected to the power channel for flexing the flexible elastic edge in the bomb filling channel.
  • the ejection channel shoots out.
  • the bomb filling channel and / or the ejection channel may be partly oval channels or all oval channels.
  • the power section 11, the bomb filling section 12 and the bomb ejecting section 13 are integrally formed, and the launch tube 10 is formed by injection molding of a mold.
  • the launch section 10 can still be formed by splicing the power section 11, the bomb filling section 12, and the eject section 13.
  • the bomb feeding tube 20 includes a bomb feeding channel, and is in communication with the bomb filling channel to provide a flexible bomb for the bomb filling channel.
  • the inside of the loading tube 20 is the loading channel
  • the loading tube 20 and the launching tube 10 are arranged perpendicular to each other, and the loading channel and the loading channel are perpendicular to each other Settings.
  • the bomb feeding channel and the bomb filling channel may be disposed in a non-vertical state, and the bomb feeding channel is used to be able to load a flexible bomb into the bomb filling channel.
  • the ejection tube 20, the power section 11, the bomb filling section 12 and the ejection section 13 are integrally formed, and a T-shaped structure is formed by injection molding.
  • the ejection tube 20, the power section 11, the bomb filling section 12, and the eject section 13 can still be formed into a T-shaped structure by splicing.
  • the entry channel, the filling channel or the exit channel only allows a single flexible bullet to pass in sequence, but not two or more flexible bullets to pass in parallel.
  • Flexible bullets enter the bomb-filling channel from the bomb-entry channel, and the flexible bombs are elastically deformed in the bomb-filling channel section or the bomb-exiting channel section, especially in the elliptical channel section, and are stuck in the channel and interact with the channel.
  • the walls are snug.
  • the power assembly 30 provides power and acts on flexible bullets in the channel. The flexible bullets are fired and smoothly fired along the ejection channel to realize the launching process.
  • the flexible bomb in the bomb filling channel is acted on by the power assembly 30 so as to be fired along the bomb discharging channel.
  • the bomb filling channel is smoothly connected to the bomb ejection channel, and is arranged coaxially in a straight line, or the bomb filling channel and the bomb ejection channel are arranged in a smooth curve.
  • the bomb filling channel is smoothly connected with the ejection channel to reduce the resistance at the boundary between the two. While ensuring that the flexible bullet is fired, it also makes full use of the power of the power component 30 to achieve a better launch effect.
  • the power assembly 30 is used to provide power so as to be able to launch a flexible bomb in the bomb filling channel.
  • the power assembly 30 includes a compression chamber 31 and a compression piston 32.
  • the compression piston 32 moves along the inside of the compression chamber 31 and is air-tightly slidingly connected to the inner wall of the compression chamber 31.
  • the compression cavity 31 is surrounded by a tube wall 311, and the tube wall 311 is fixedly mounted on the casing 60.
  • An end of the compression chamber 31 opposite to the compression piston 32 is air-tightly connected to the power passage, and provides compressed air for the power passage.
  • one end of the compression piston 32 is connected to the casing 60 through a compression spring 33.
  • a spring force of the compression spring 33 acts on the compression piston 32, and the compression piston 32 moves rapidly along the inside of the compression chamber 31.
  • the air in the compression chamber 31 is rapidly compressed by the compression of the compression piston 32.
  • the compressed air enters the power channel and pushes the flexible bomb in the bomb filling channel, so that the flexible bomb is Launch out.
  • the flexible projectile launching device of the present application further includes an extension tube 34.
  • the extension tube 34 includes an extension channel. One end of the compression cavity 31 opposite to the compression piston 32 is air-tightly connected to one end of the extension channel, and the other end of the extension channel is air-tightly connected to the power channel.
  • the extension tube 34 extends into the bomb filling channel, the nozzle of the extension channel extends into the bomb filling channel, and the mouth of the extension channel can closely fit the flexible bomb in the bomb filling channel. Surface.
  • an air inlet gap 341 is provided at the edge of the nozzle of the extension channel in the bomb filling channel.
  • the compression cavity 31 is air-tightly connected to the power channel through the extension tube 34, and the compressed air generated in the compression cavity 31 enters the power channel through the extension tube 34, which is a launch Flexible to provide power.
  • the compression cavity 31 is formed into a cylindrical shape surrounded by a tube wall 311, and is air-tightly slidingly matched with the compression piston 32.
  • the compression cavity 31 is extended by using the extension tube 34
  • the compressed air inside is guided into the power passage.
  • the nozzle of the extension channel of the extension tube 34 may directly extend into the bomb filling channel, and the nozzle of the extension channel may be in close contact with the flexible elastic curved surface in the bomb filling channel, thereby compressing the air. Directly aiming at the flexible bullet, and launching the flexible bullet along the ejection channel, the effect is more ideal.
  • the nozzle of the extension channel may not closely adhere to the flexible elastic curved surface in the bomb filling channel, and external air may enter through the ejection channel and / or the intake channel. Into the extension channel and into the compression cavity 31.
  • external air can enter from the side of the tube wall 311 close to the compression piston 32.
  • an air inlet gap (not shown) is provided at the opening of the tube wall 311.
  • the compression piston 32 is far from the side of the extension pipe 34, external air enters the compression chamber 31 through the air intake gap; when the compression piston 32 is compressed toward the side of the extension pipe 34, the compression piston 32 and The cavity wall of the compression cavity 31, that is, the tube wall 311, is air-tightly slidingly fitted to compress the air in the compression cavity 31.
  • an air inlet gap 341 is provided at the edge of the nozzle of the extension channel (see FIG. 4).
  • the compression piston 32 moves away from the extension tube 34 side under the action of external force, air enters the compression chamber 31 through the air intake gap 341.
  • the compression piston 32 is in Under the action of the compression spring 33, the air in the compression cavity 31 is rapidly compressed, and the compressed air enters the power channel from the extension channel and acts on the flexible bomb, so that the flexible bomb is launched.
  • the external power in the above may be electric power and transmitted through a gear structure to enable the compression piston 32 to move away from the extension tube 34 side, and the transmission structure therein may be understood as a conventional existing design .
  • compressed air is used as a power source, and compressed air acts on the flexible bombs in the bomb filling channel, so that the flexible bombs are launched along the bomb ejection channel.
  • the flexible bomb is elastically deformed in the bomb filling channel section or the ejection channel section, especially in the elliptical channel section.
  • the flexible bomb is stuck in the channel and is tightly air-tight with the wall surface of the channel, and the compressed air can be long. Time and effectively act on the flexible bomb, so that the flexible bomb ejected along the ejection channel has greater kinetic energy, launches further, and has a better launch effect.
  • the bomb filling channel and / or the ejection channel is an oval channel
  • a flexible bomb elastically deforms in the bomb filling channel section or the ejection channel section and is tightly connected to the wall surface of the channel. Being airtight, the airtightness is stronger, so that the firing effect of the flexible projectile launching device is better.
  • the power assembly 30 may also be a striking mechanism.
  • the striking mechanism directly strikes the flexible bomb in the bomb filling channel, so that the flexible bomb is launched along the ejection channel.
  • the flexible projectile launching device further includes a bomb filling mechanism 40 and a magazine 50.
  • the bomb filling mechanism 40 and the magazine 50 are fixedly mounted on the casing 60.
  • the ammunition filling mechanism 40 includes a ammunition filling plate 41 and a bounce turntable 42.
  • the ammunition filling plate 41 and the magazine 50 are enclosed to form a bomb-receiving space 51.
  • the bomb-receiving space 51 is used for containing flexible bullets.
  • the deflector turntable 42 of the ammunition loading mechanism 40 is used to load a flexible ammunition in the ammunition holding space 51 into the ammunition passage so that the flexible ammunition enters the ammunition passage from the ammunition passage.
  • the magazine 50 is mounted on an upper portion of the bomb filling mechanism 40.
  • the ammunition filling plate 41 of the ammunition filling mechanism 40 is a part of the bottom of the ammunition magazine 50 and is enclosed with the ammunition magazine 50 as a ammunition holding space 51.
  • the flexible bombs in the bomb-receiving space 51 are gathered on the bomb-filling disc 41.
  • the dart turntable 42 is rotatably installed, and at least one of the ammunition discs 421 is provided at an edge of the ammunition turntable 42.
  • the ammunition disc corresponding to one of the ammunition discs 421 is provided.
  • An elastic inlet 411 is provided at the bottom of the 41, and the elastic inlet 411 is in communication with the free end of the elastic channel.
  • the size of the bullet notch 421 is equivalent to that of a flexible bullet.
  • a pusher 422 is formed on the bottom of the plucking turntable 42, and the plucking turntable 42 can be rotated by rotating the pusher 422.
  • the wall surface of the bounce notch 421 is inclined, and the bounce turntable 42 is rotated, and the slant wall surface of the bounce notch 421 can press a flexible bullet into the bullet inlet 411.
  • the magazine 60 and the refilling mechanism 40 are fixedly installed on the casing 60.
  • Flexible bullets are gathered in the ammunition filling plate 41 and are pushed into the bullet inlet 411 by the bounce turntable 42.
  • the wall surface of the bounce gap 421 is inclined, and The pusher 422 drives the plunger turntable 42 to rotate, and the inclined wall of the plunger notch 421 presses the flexible bullet downward, and the flexible bullet is squeezed into the bullet inlet channel at the bullet inlet 411 to achieve flexibility. Reloading.
  • the bounce turntable 42 is rotated to prevent the flexible bullets from being jammed, and the flexible bullets are used to smoothly enter the bombardment channel.
  • the ejection channel includes a first ejection trajectory and a second ejection trajectory, and the first ejection trajectory is air-tightly connected to the bomb filling channel.
  • the first ballistic trajectory and the second ballistic trajectory are air-tightly connected with each other through a tube.
  • the ejection section 13 includes a first ejection tube 131 and a second ejection tube 132.
  • the inside of the first ejection tube 131 is the first trajectory
  • the inside of the second ejection tube 132 is the second trajectory.
  • the first ejection tube 131 is connected to the bomb filling section 12.
  • the first ejection tube 131 is integrally formed, so that the first ejection path is air-tightly connected to the bomb filling channel.
  • the first ejection tube 131 and the second ejection tube 132 are nested and airtightly connected.
  • an air-tight pad is provided between the first ejection tube 131 and the second ejection tube 132 to achieve an air-tight connection effect.
  • the first ejection tube 131 and the second ejection tube 132 may still be welded or sealed or integrally formed.
  • the ejection path is divided into the first ejection path and the second ejection path, and the distance that the flexible projectile moves along the path can be extended.
  • the elastic tube 20, the power section 11, the elastic filling section 12, and the first elastic tube 131 are integrally formed.
  • the second ejection tube 132 is connected to the free end of the first ejection tube 131 to extend the distance that the flexible projectile moves along the channel to enhance the launching effect.
  • the shape and size of the first trajectory of the first ejection tube 131 and the second trajectory of the second ejection tube 132 may have various combinations.
  • the first trajectory may be circular or An elliptical channel
  • the second exit trajectory may be a circular or oval channel.
  • the first ballistic trajectory is provided in an oval channel, and the shape and size of the second ballistic trajectory are the same as the first ballistic trajectory.
  • compressed air is used as a power source.
  • the ejection channel is an elliptical channel
  • the distance that the flexible elastic moves along the elliptical channel is extended, the flexible elastic is in close contact with the channel wall due to elastic deformation. If the airtightness is strong, the action time of compressed air on the flexible bomb is longer, that is, the impulse of the compressed air on the flexible bomb is greater, so the launched flexible bomb has greater kinetic energy, a longer range, and a better launch effect. .
  • At least a part of the projecting channel is an oval channel to match the projectile filling channel and the The ejection channel prevents the hard bullet from being fired normally.
  • a hard bomb cannot enter the bomb filling channel from the bomb feeding channel of an elliptical channel.
  • the hard bullet cannot be fired normally in the channel.
  • At least a part of the loading channel, the filling channel and / or the discharging channel is set as an oval channel, and the process of loading and firing bullets is scientifically and rationally designed, which can ensure that Normal firing of flexible bullets can also prevent hard bullets from being fired normally.

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  • General Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Toys (AREA)

Abstract

一种柔性弹发射装置,包括:发射管、进弹管及动力组件;所述发射管包括依次连通设置的动力通道、填弹通道及出弹通道;所述动力组件连接于所述动力通道的自由端,为发射柔性弹提供动力;所述进弹管包括进弹通道,且与所述填弹通道相连通,为所述填弹通道提供柔性弹;其中,所述进弹通道、所述填弹通道和/或所述出弹通道的至少一部分为椭圆形通道。

Description

一种柔性弹发射装置 技术领域
本申请涉及竞技器械技术领域,具体地,涉及一种柔性弹发射装置。
背景技术
目前,子弹发射装置主要用于游戏和训练,而其中的子弹普遍使用的是硬质弹,比如BB弹或钢珠弹,在发射装置的作用下具有很大的杀伤力,对人或动物造成很大威胁。在一些场景下,例如在竞技的过程中,如果使用硬质弹,会提高发射装置对人或动物造成伤害的风险。使用柔性弹是一种理想的选择。
然而,当前的发射装置会将误装入的硬质弹正常发射,为此,需要提出一种具有安全防护性的发射装置,在保证柔性弹能够正常发射的同时,也防止硬质弹被正常发射,避免硬质弹对人或动物造成伤害。
发明内容
本申请旨在于提出一种具有安全防护性的柔性弹发射装置,该发射装置既能够保证将柔性弹正常发射,同时也能够防止硬质弹被正常发射,从而降低因误用硬质弹而造成较大伤害的风险。
本申请采用的技术方案为:一种柔性弹发射装置,包括:发射管、进弹管及动力组件;所述发射管包括依次连通设置的动力通道、填弹通道及出弹通道;
所述动力组件连接于所述动力通道的自由端,为发射柔性弹提供动力;
所述进弹管包括进弹通道,且与所述填弹通道相连通,为所述填弹通道提供柔性弹;
其中,所述进弹通道、所述填弹通道和/或所述出弹通道的至少一部分为椭圆形通道。
可选地,所述动力组件包括压缩腔及压缩活塞;所述压缩活塞沿所述压缩腔内部移动,且与所述压缩腔的内壁气密滑动配合连接;所述压缩腔相对所述压缩活塞的一端与所述动力通道气密连接。
可选地,所述动力组件还包括延伸管;所述延伸管包括延伸通道,该延伸通道一端与所述压缩腔气密连接,另一端与所述动力通道气密连接;其中,所述延伸通道的管口能够紧贴在所述填弹通道内的柔性弹。
可选地,所述延伸通道的管口边缘开设有进气间隙。
可选地,所述柔性弹发射装置还包括填弹机构,所述填弹机构包括填弹盘及拨弹转盘;所述填弹盘底部旋转安装所述拨弹转盘,所述拨弹转盘的边部开设有至少一个拨弹缺口,与其一所述拨弹缺口相对应的所述填弹盘底部开设有进弹口,所述进弹口与所述进弹通道的自由端相连通。
可选地,所述拨弹缺口的壁面呈倾斜设置。
可选地,所述填弹通道与所述出弹通道呈直线同轴设置或平滑曲线设置。
可选地,当所述填弹通道与所述出弹通道呈直线同轴设置时,所述进弹通道与所述填弹通道相互垂直设置。
可选地,所述出弹通道包括第一出弹道及第二出弹道,且所述第一出弹道与所述填弹通道连通;其中,所述第一出弹道与所述第二出弹道通过管件嵌套气密连接。
可选地,所述第一出弹道是椭圆形通道设置;所述第二出弹道的形状及大小与所述第一出弹道相同。
本申请技术方案中,所述进弹通道、所述填弹通道和/或所述出弹通道的至少一部分被设置为椭圆形通道,从进弹、发射子弹过程,科学合理设计,既能够保证将柔性弹正常发射,同时也能够防止硬质弹被正常发射。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1是本申请实施例提供的一种柔性弹发射装置的立体示意图;
图2是图1的剖视图;
图3是图1中的部分结构示意图;
图4是图3的剖视图。
其中,主要附图标记说明:
发射管10 动力段11 填弹段12
出弹段13 第一出弹管131 第二出弹管132
进弹管20 动力组件30 压缩腔31
管壁311 压缩活塞32 压缩弹簧33
延伸管34 进气间隙341 填弹机构40
填弹盘41 进弹口411 拨弹转盘42
拨弹缺口421 推动件422 弹仓50
容弹空间51 壳体60  
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
除非另有定义,本文所使用的所有的技术和科学术语与属于本申请的技术领域的技术人员通常理解的含义相同。若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
为了使本领域技术人员更好地理解本申请技术方案,下面将结合附图,对本申请实施例中的技术方案进行清楚、完整地描述。
硬质弹,比如BB弹或钢珠弹,在发射装置的作用下具有很大的杀伤力,对人或动物造成很大威胁。为防止发射装置误将硬质的BB弹或钢珠弹进行发射,本申请提出一种安全的柔性弹发射装置,该发射装置既保证能够将柔性弹正常发射,同时也能够防止硬质弹被正常发射,从而降低因误用硬质弹而造成较大伤害的风险。
本申请采用的主要技术方案为:一种柔性弹发射装置,包括:发射管、进弹管及动力组件;所述发射管包括依次连通设置的动力通道、填弹通道及出弹通道;
所述动力组件连接于所述动力通道的自由端,为发射柔性弹提供动力;
所述进弹管包括进弹通道,且与所述填弹通道相连通,为所述填弹通道提供柔性弹;
其中,所述进弹通道、所述填弹通道和/或所述出弹通道的至少一部分为椭圆形通道。
本申请技术方案中,所述进弹通道、所述填弹通道和/或所述出弹通道的至少一部分被设置为椭圆形通道,从进弹、发射子弹过程,科学合理设 计,既能够保证将柔性弹正常发射,同时也能够防止硬质弹被正常发射。在本申请中,柔性弹是指可以发生弹性形变的子弹,比如吸水弹、软塑胶弹或者其他软质材料做成的子弹。
请参阅图1-4,图1是本申请实施例提供的一种柔性弹发射装置的立体示意图,图2是图1的剖视图,图3是图1中的部分结构示意图,图4是图3的剖视图。
具体地,如图1-4,本实施例的柔性弹发射装置包括:发射管10、进弹管20及动力组件30。参见图1-2,本实施例的柔性弹发射装置还包括壳体60。所述壳体60用于固定安装所述发射管10、所述进弹管20及所述动力组件30。
请继续参见图3-4,所述发射管10包括依次设置的动力段11、填弹段12及出弹段13。所述动力段11内部是动力通道,所述填弹段12内部是填弹通道,所述出弹段13内部是出弹通道,且所述动力通道、所述填弹通道及所述出弹通道依次相连通,呈直线、同轴设置。其中,所述填弹通道和/或所述出弹通道的至少一部分为椭圆形通道。
当然,在另一实施例中,所述动力通道、所述填弹通道及所述出弹通道依次相连通,可部分非同轴设置,所述动力组件30连接于所述动力通道,用以将所述填弹通道内的柔性弹沿所述出弹通道射出。例如,所述填弹通道与所述出弹通道同轴设置,而与所述动力通道非同轴设置。
特别地,在又一实施例中,所述动力通道与所述填弹通道非同轴设置,所述动力组件30连接于所述动力通道,用以将所述填弹通道内的柔性弹沿所述出弹通道射出。
可以理解地,在本申请中,所述填弹通道和/或所述出弹通道可以部分为椭圆形通道或全部为椭圆形通道。
在具体制造过程中,所述动力段11、所述填弹段12及所述出弹段13一体成型设置,通过模具注浇而形成所述发射管10。当然,所述动力段11、 所述填弹段12及所述出弹段13仍可通过拼接而形成所述发射管10。
所述进弹管20包括进弹通道,且与所述填弹通道相连通,用以为所述填弹通道提供柔性弹。本实施例中,所述进弹管20内部即为所述进弹通道,所述进弹管20与所述发射管10呈相互垂直设置,所述进弹通道与所述填弹通道相互垂直设置。当然,在另一实施例中,所述进弹通道与所述填弹通道可呈非垂直状态设置,所述进弹通道用以能够将柔性弹装入所述填弹通道内。在具体制造过程中,所述进弹管20、所述动力段11、所述填弹段12及所述出弹段13一体成型设置,通过模具注浇而形成T型结构。当然,所述进弹管20、所述动力段11、所述填弹段12及所述出弹段13仍可通过拼接而形成T型结构。
在本申请中,所述进弹通道、所述填弹通道或所述出弹通道仅容许单个柔性弹依次通过,而不能两个或多个柔性弹并列通过。
柔性弹由所述进弹通道进入所述填弹通道内,柔性弹在所述填弹通道段或所述出弹通道段,尤其在椭圆通道部分,发生弹性形变,卡在通道内并与通道的壁面紧贴。所述动力组件30提供动力,并作用于通道内的柔性弹,柔性弹被击发并沿所述出弹通道顺利射出,实现发射过程。
本申请中,所述填弹通道内的柔性弹被所述动力组件30作用,从而沿所述出弹通道发射出去,为了保证柔性弹能够从所述填弹通道沿所述出弹通道顺利射出,所述填弹通道与所述出弹通道平滑连接,呈直线同轴设置或者所述填弹通道与所述出弹通道呈平滑曲线设置。所述填弹通道与所述出弹通道平滑连接,减少两者分界处的阻力,在保障柔性弹被发射出去的同时,也是充分利用所述动力组件30的动力,达到更好的发射效果。
本申请中,所述动力组件30用于提供动力,以能够将在所述填弹通道内的柔性弹发射出去。
请继续参见图1-4,本实施例中,所述动力组件30包括压缩腔31及压缩活塞32。所述压缩活塞32沿所述压缩腔31内部移动,且与所述压缩腔 31的内壁气密滑动配合连接。具体地,所述压缩腔31由管壁311围合而成,管壁311固定安装于所述壳体60上。所述压缩腔31相对所述压缩活塞32的一端与所述动力通道气密连接,为所述动力通道提供压缩空气。
具体地,如图2,所述压缩活塞32的一端通过压缩弹簧33与所述壳体60连接。所述压缩弹簧33的弹簧力作用于所述压缩活塞32,所述压缩活塞32急速沿所述压缩腔31内部移动。所述压缩腔31内的空气在所述压缩活塞32的挤压作用下,急速被压缩,压缩后的空气进入所述动力通道并推动在所述填弹通道内的柔性弹,使得柔性弹被发射出去。
进一步地,本申请的所述柔性弹发射装置还包括延伸管34。所述延伸管34包括延伸通道。所述压缩腔31相对所述压缩活塞32的一端与所述延伸通道的一端气密连接,所述延伸通道的另一端与所述动力通道气密连接。进一步地,所述延伸管34延伸至所述填弹通道内,所述延伸通道的管口延伸至所述填弹通道内,且该延伸通道口能够紧贴所述填弹通道内的柔性弹曲面。进一步地,在所述填弹通道内的所述延伸通道的管口边缘开设有进气间隙341。
本实施例中,所述压缩腔31通过所述延伸管34与所述动力通道气密连接,所述压缩腔31内产生的压缩空气经由所述延伸管34进入所述动力通道内,为发射柔性弹而提供动力。其中,所述压缩腔31由管壁311围合而成圆柱形,与所述压缩活塞32气密滑动配合,在具体生产制造中,根据情况,使用所述延伸管34将所述压缩腔31内的压缩空气引导至所述动力通道内。其中,所述延伸管34的延伸通道的管口可直接延伸至所述填弹通道内,且所述延伸通道的管口可与所述填弹通道内的柔性弹曲面紧贴,从而压缩空气直接对准柔性弹,将柔性弹沿所述出弹通道发射,发效果更理想。
可以理解地,在另一实施例中,所述延伸通道的管口可以不紧贴所述填弹通道内的柔性弹曲面,外部空气可由所述出弹通道和/或所述进弹通道 进入所述延伸通道内,并且进入所述压缩腔31。
在又一实施例中,外部空气可由所述管壁311靠近所述压缩活塞32一侧进入,可选地,所述管壁311开口处开设有进气缺口(图未示),当所述压缩活塞32远离所述延伸管34一侧时,外部空气由进气缺口进入所述压缩腔31;当所述压缩活塞32向所述延伸管34一侧压缩时,所述压缩活塞32与所述压缩腔31的腔壁,即所述管壁311,气密滑动配合,从而将所述压缩腔31内的空气进行压缩。
进一步地,本实施例中,所述延伸通道的管口边缘处开设有进气间隙341(如图4)。当所述压缩活塞32在外动力的作用下远离所述延伸管34一侧时,空气由所述进气间隙341进入所述压缩腔31,当解除外动力的情况下,所述压缩活塞32在所述压缩弹簧33的作用下,急速压缩所述压缩腔31内的空气,被压缩的空气由所述延伸通道进入所述动力通道内并作用于柔性弹,以使柔性弹被发射出去。可以理解地,上述中的外动力可以是电动力,并通过齿轮结构传输,以能够使得所述压缩活塞32远离所述延伸管34一侧移动,其中的传输结构可以理解为常规的现有设计。
本实施例中,采用压缩空气作为动力源,压缩空气作用于所述填弹通道内的柔性弹,从而柔性弹沿所述出弹通道发射出去。其中,柔性弹在所述填弹通道段或所述出弹通道段,尤其在椭圆通道部分,发生弹性形变,柔性弹卡在通道内,且与通道的壁面紧贴气密,压缩空气可长时间、有效地作用于柔性弹,从而使得沿所述出弹通道射出的柔性弹具有更大的动能,发射得更远,发射效果更好。
特别地,当所述填弹通道和/或所述出弹通道为椭圆形通道时,柔性弹在所述填弹通道段或所述出弹通道段内发生弹性形变,且与通道的壁面紧贴气密,气密性更强,从而使得该柔性弹发射装置的发射效果更好。
当然,在另一实施例中,所述动力组件30还可以是击打机构。击打机构直接敲打所述填弹通道内的柔性弹,以使柔性弹沿所述出弹通道发射出 去。
请继续参见图1-4,所述柔性弹发射装置还包括填弹机构40和弹仓50,所述填弹机构40和所述弹仓50固定安装于所述壳体60。所述填弹机构40包括填弹盘41及拨弹转盘42,所述填弹盘41与所述弹仓50围合形成容弹空间51,该容弹空间51用于容装柔性弹,所述填弹机构40的拨弹转盘42用于将在所述容弹空间51中的柔性弹装入所述进弹通道,以使柔性弹由所述进弹通道进入所述填弹通道。
具体地,参见图1-2,所述弹仓50安装于所述填弹机构40的上部。所述填弹机构40的填弹盘41作为所述弹仓50底部的一部分,与所述弹仓50围合为容弹空间51。所述容弹空间51内的柔性弹在所述填弹盘41聚集。
所述填弹盘41底部旋转安装所述拨弹转盘42,所述拨弹转盘42的边部开设有至少一个拨弹缺口421,与其一所述拨弹缺口421相对应的所述填弹盘41底部开设有进弹口411,所述进弹口411与所述进弹通道的自由端相连通。可选地,所述拨弹缺口421的大小与一柔性弹大小相当。其中,所述拨弹转盘42的底部向外延伸形成一推动件422,旋转所述推动件422即可将所述拨弹转盘42旋转。
进一步地,所述拨弹缺口421的壁面呈倾斜设置,转动所述拨弹转盘42,所述拨弹缺口421的倾斜壁面可将柔性弹挤压入所述进弹口411。
本实施例中,在所述壳体60上固定安装有所述弹仓50及所述填弹机构40。柔性弹在所述填弹盘41聚集,且被所述拨弹转盘42作用而被挤入所述进弹口411。进一步地,当所述进弹通道为椭圆形通道时,柔性弹不易于进入所述进弹通道内,为此,在本实施例中,所述拨弹缺口421的壁面呈倾斜设置,由所述推动件422带动所述拨弹转盘42旋转,所述拨弹缺口421的倾斜壁面向下挤压柔性弹,柔性弹在所述进弹口411被挤入所述进弹通道内,实现柔性弹装填。本实施例中,旋转所述拨弹转盘42,避免柔性弹聚集卡住,利用柔性弹顺利进入所述进弹通道内。
进一步地,本实施例中,所述出弹通道包括第一出弹道及第二出弹道,且所述第一出弹道与所述填弹通道气密连接。其中,所述第一出弹道与所述第二出弹道通过管件嵌套气密连接。
具体地,如图3-4,所述出弹段13包括第一出弹管131及第二出弹管132。所述第一出弹管131内部即为所述第一出弹道,所述第二出弹管132内部即为所述第二出弹道。所述第一出弹管131与所述填弹段12连接,可选地,一体成型设置,从而所述第一出弹道与所述填弹通道气密连接。其中,所述第一出弹管131与所述第二出弹管132嵌套气密连接。可选地,所述第一出弹管131与所述第二出弹管132之间设置有气密垫,以达到气密连接效果。当然,在另一实施例中,所述第一出弹管131与所述第二出弹管132之间仍可进行焊接密封或一体成型设置。
本实施例中,所述出弹通道分为所述第一出弹道及所述第二出道,可将柔性弹沿通道移动的距离进行延长设置。在具体的生产制造中,所述进弹管20、所述动力段11、所述填弹段12及所述第一出弹管131一体成型设置。其中,所述第二出弹管132连接于所述第一出弹管131的自由端,用以延长柔性弹沿通道移动的距离,以增强发射效果。
所述第一出弹管131的第一出弹道与所述第二出弹管132的第二出弹道的形状及大小可具有多种组合,比如,所述第一出弹道可为圆形或椭圆形通道,所述第二出弹道可为圆形或椭圆形通道。
特别地,所述第一出弹道是椭圆形通道设置,且所述第二出弹道的形状及大小与所述第一出弹道相同。
本实施例中,采用压缩空气作为动力源,当所述出弹通道为椭圆形通道,柔性弹沿椭圆形通道移动的距离进行延长设置时,柔性弹因为弹性形变而与通道面壁紧贴气密,气密性强,则压缩空气对柔性弹的作用时间更长,即压缩空气对柔性弹的冲量更大,从而被发射出去的柔性弹具有更大的动能,射程更远,发射效果更理想。
进一步地,本实施例中,为防止硬质弹在本实施例的柔性弹发射装置中被正常发射,所述进弹通道的至少一部分为椭圆形通道,以配合所述填弹通道和所述出弹通道,共同防止硬质弹被正常击发射出。其中,硬质弹不能从椭圆形通道的所述进弹通道进入所述填弹通道,进一步地,即使硬质弹从所述进弹通道进入所述填弹通道,当所述填弹通道或所述出弹通道为椭圆形通道时,或者所述发射管10内的通道与硬质弹不符时,硬质弹也不能在通道内正常被击发射出。
本申请技术方案中,所述进弹通道、所述填弹通道和/或所述出弹通道的至少一部分被设置为椭圆形通道,从进弹、发射子弹过程,科学合理设计,既能够保证将柔性弹正常发射,同时也能够防止硬质弹被正常发射。
上述实施例为本申请较佳的实施方式,但本申请的实施方式并不受上述实施例的限制,其他的任何未背离本申请的精神实质与原理下所作的改变、修饰、替代、组合、简化,均应为等效的置换方式,都包含在本申请的保护范围之内。

Claims (10)

  1. 一种柔性弹发射装置,其特征在于,包括:发射管、进弹管及动力组件;所述发射管包括依次连通设置的动力通道、填弹通道及出弹通道;
    所述动力组件连接于所述动力通道的自由端,为发射柔性弹提供动力;
    所述进弹管包括进弹通道,且与所述填弹通道相连通,为所述填弹通道提供柔性弹;
    其中,所述进弹通道、所述填弹通道和/或所述出弹通道的至少一部分为椭圆形通道。
  2. 根据权利要求1所述的一种柔性弹发射装置,其特征在于,所述动力组件包括压缩腔及压缩活塞;所述压缩活塞沿所述压缩腔内部移动,且与所述压缩腔的内壁气密滑动配合连接;所述压缩腔相对所述压缩活塞的一端与所述动力通道气密连接。
  3. 根据权利要求2所述的一种柔性弹发射装置,其特征在于,所述动力组件还包括延伸管;所述延伸管包括延伸通道,该延伸通道一端与所述压缩腔气密连接,另一端与所述动力通道气密连接;其中,所述延伸通道的管口能够紧贴在所述填弹通道内的柔性弹。
  4. 根据权利要求3所述的一种柔性弹发射装置,其特征在于,所述延伸通道的管口边缘开设有进气间隙。
  5. 根据权利要求1-4任一项所述的一种柔性弹发射装置,其特征在于,所述柔性弹发射装置还包括填弹机构,所述填弹机构包括填弹盘及拨弹转盘;
    所述填弹盘底部旋转安装所述拨弹转盘,所述拨弹转盘的边部开设有至少一个拨弹缺口,与其一所述拨弹缺口相对应的所述填弹盘底部开设有进弹口,所述进弹口与所述进弹通道的自由端相连通。
  6. 根据权利要求5所述的一种柔性弹发射装置,其特征在于,所述拨 弹缺口的壁面呈倾斜设置。
  7. 根据权利要求1所述的一种柔性弹发射装置,其特征在于,所述填弹通道与所述出弹通道呈直线同轴设置或平滑曲线设置。
  8. 根据权利要求7所述的一种柔性弹发射装置,其特征在于,当所述填弹通道与所述出弹通道呈直线同轴设置时,所述进弹通道与所述填弹通道相互垂直设置。
  9. 根据权利要求1所述的一种柔性弹发射装置,其特征在于,所述出弹通道包括第一出弹道及第二出弹道,且所述第一出弹道与所述填弹通道连通;其中,所述第一出弹道与所述第二出弹道通过管件嵌套气密连接。
  10. 根据权利要求9所述的一种柔性弹发射装置,其特征在于,所述第一出弹道是椭圆形通道设置;所述第二出弹道的形状及大小与所述第一出弹道相同。
PCT/CN2018/112726 2018-08-30 2018-10-30 一种柔性弹发射装置 WO2020042322A1 (zh)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1994011695A1 (en) * 1992-11-06 1994-05-26 Eric Scott Paint ball gun and assemblies therefor
CN1355416A (zh) * 2000-11-28 2002-06-26 阮志成 机械式全自动漆弹枪
CN2926977Y (zh) * 2006-06-15 2007-07-25 郭沛文 一种电动发射柔性弹的玩具枪
JP2014059108A (ja) * 2012-09-18 2014-04-03 Marushin Kogyo Kk ガスガン

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB978502A (en) * 1959-12-31 1964-12-23 Birmingham Small Arms Co Ltd Improvements in or relating to air or gas pressure guns
RU64752U1 (ru) * 2007-02-12 2007-07-10 Открытое акционерное общество "Вятско-Полянский машиностроительный завод "Молот" Пистолет (револьвер)

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1994011695A1 (en) * 1992-11-06 1994-05-26 Eric Scott Paint ball gun and assemblies therefor
CN1355416A (zh) * 2000-11-28 2002-06-26 阮志成 机械式全自动漆弹枪
CN2926977Y (zh) * 2006-06-15 2007-07-25 郭沛文 一种电动发射柔性弹的玩具枪
JP2014059108A (ja) * 2012-09-18 2014-04-03 Marushin Kogyo Kk ガスガン

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