WO2016151764A1 - 模擬銃における電動機構のカットオフ装置 - Google Patents
模擬銃における電動機構のカットオフ装置 Download PDFInfo
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- WO2016151764A1 WO2016151764A1 PCT/JP2015/058935 JP2015058935W WO2016151764A1 WO 2016151764 A1 WO2016151764 A1 WO 2016151764A1 JP 2015058935 W JP2015058935 W JP 2015058935W WO 2016151764 A1 WO2016151764 A1 WO 2016151764A1
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41B—WEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
- F41B11/00—Compressed-gas guns, e.g. air guns; Steam guns
- F41B11/70—Details not provided for in F41B11/50 or F41B11/60
- F41B11/71—Electric or electronic control systems, e.g. for safety purposes
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41B—WEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
- F41B11/00—Compressed-gas guns, e.g. air guns; Steam guns
- F41B11/60—Compressed-gas guns, e.g. air guns; Steam guns characterised by the supply of compressed gas
- F41B11/64—Compressed-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
- F41B11/642—Compressed-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
- F41B11/646—Arrangements for putting the spring under tension
Definitions
- the present invention has a piston cylinder mechanism, accumulates the pressurizing means by driving the movable part in one direction by an electric mechanism, and drives the piston cylinder mechanism in the opposite direction by releasing the pressurizing means,
- the present invention relates to a cut-off device for an electric mechanism in a simulated gun having a configuration for generating compressed air for firing a bullet.
- the electric gun is called the semi-auto mode, which is called a single-shot mode in which a single firing is performed each time the trigger is pulled, and a full-auto mode in which continuous firing is performed while the trigger is pulled.
- the launch mode selection mechanism is controlled by turning on and off the motor drive circuit, it is necessary to link the trigger operation and the motor in some way.
- the trigger is not far away from the motor that drives the piston-cylinder mechanism, so the conventional electric gun uses a sector gear that is driven by the motor to control the on / off of the switch. It was.
- the sector gear meshes with a rack provided on the piston side to retract the piston, and is fired once for each rotation, which is convenient for on / off control of the switch.
- the sector gear is located close to the electric motor that is the driving source, and it is necessary to arrange the sector gear close in order to link the sector gear and the switch.
- the fact that the sector gear and the switch must be arranged close to each other is a limitation, and there is a problem that the degree of freedom in layout of the piston cylinder mechanism and the electric mechanism in the simulated gun is lowered.
- the limitation is not limited to the layout, which means that it is difficult to electrify with a type of simulated gun whose sector gear is located relatively far from the trigger. For this reason, when the long gun type electric gun is modeled using the above-described conventional method, for example, there is no other way than to shorten the length of the piston cylinder mechanism, which has been an obstacle to product development.
- the present invention has been made in view of the above-mentioned points, and the problem is that the cut-off control of the switch can be performed without depending on the sector gear, and the layout of the piston cylinder mechanism, the electric mechanism, and the like in the simulated gun. It is to remove the restrictions.
- Another object of the present invention is to provide a cut-off device for an electric mechanism in a simulated gun that can be realized without difficulty even if the long gun is a model electric gun, for example. It is to be.
- the present invention has a piston-cylinder mechanism, accumulates the pressurizing means by driving the movable part in one direction by an electric mechanism, and releases the piston-cylinder mechanism by releasing the pressurizing means.
- a single-shot mode that performs a single bullet firing in a single reciprocating motion of the piston cylinder mechanism, and a piston
- a switching mechanism for controlling the drive circuit of the motor is provided, and the switching mechanism is at least a single mode
- a selector part provided to select the continuous mode, a switch that closes the drive circuit by operating the trigger, and the movable part when the single mode is selected
- a cut-off member that engages with the one-way drive and cuts off the switch, and the engagement portion between the movable part of the piston cylinder mechanism and the cut-off member
- the simulation gun according to the present invention has a piston cylinder mechanism, and by accumulating the pressurizing means by driving the movable part in one direction by an electric mechanism, the piston cylinder mechanism is reversed by releasing the pressurizing means. It is configured to generate compressed air for driving in the direction and firing bullets.
- the piston-cylinder mechanism is a combination of a cylinder and a piston. In many cases, the piston becomes a movable part and reciprocates with respect to the cylinder to generate compressed air. However, the reverse configuration may be adopted.
- the moving side for compression is the movable part in the present invention.
- the pressurizing means that accumulates pressure by the movable part is an elastic member, and a spring represented by a coil spring is generally used. With this type of spring, the accumulated force is released all at once, so that the movable part can be operated instantaneously and compressed air can be easily obtained.
- the length of the reciprocating motion of the movable part is short for the so-called short gun type and long for the long gun type, but according to the present invention, the length of the front and rear is not a restriction and contributes to the accurate reproduction of the model. Will lead to an effect.
- the cut-off device performs a single-shot mode in which a single bullet is fired by a single reciprocation of a piston cylinder mechanism, and a plurality of bullets are fired by a plurality of continuous reciprocations of the piston cylinder mechanism.
- a switching mechanism for controlling the drive circuit of the electric motor is provided.
- the switching mechanism includes at least a selector unit provided for selecting a single mode and a continuous mode, a switch that closes a drive circuit by operating a trigger, and a switch that engages with a one-way drive of the movable unit when the single mode is selected. And a cut-off member.
- the cut-off member is operated by engagement with the movable part and does not depend on the sector gear.
- the single shot mode is used to mean a single shot mode, not a single shot, so in the case of a simulated gun having multiple barrels, multiple bullets can be created in a single shot operation. Fired.
- the engagement portion between the movable part of the piston cylinder mechanism and the cut-off member is set at the front part in the reciprocating direction of the movable part, whereby the front part is engaged with the cut-off member after the movable part starts to move backward.
- the range of timing selection until matching is expanded.
- the time until the engagement can be set longer than the engagement at the rear part.
- the cut-off is performed by the inertial force.
- the cut-off is performed by the power, and the certainty is further improved.
- the piston cylinder mechanism has a sufficient stroke, strong compressed air can be generated. However, this requires that the length of the piston cylinder mechanism is less restricted.
- the piston cylinder mechanism has a sufficient operation stroke, the position of engagement between the movable part of the piston cylinder mechanism and the cutoff member also tends to be separated from the trigger. Even in such a case, the present invention can constitute a cut-off device for an electric mechanism without difficulty.
- the present invention is configured and operates as described above, it is possible to control the cut-off of the switch of the electric mechanism without depending on the sector gear, and the layout of the mechanism or the electric mechanism in the simulated gun The above restriction can be eliminated, and the time until the engagement can be set sufficiently long, so that it is cut off by the power and the reliability is further improved. Further, according to the present invention, for example, there is provided a cutoff device for an electric mechanism in a simulation gun that can be realized without difficulty even if the long gun is a model electric gun. Can do.
- FIG. 1 is an overall view of a long gun-type simulated gun to which a cut-off device for an electric mechanism according to the present invention is applied.
- the electric gun G has three barrels 11, 12, and 13. Therefore, the compressed air generation unit 10 includes a cylinder assembly 20 including three cylinders 21, 22, and 23 and three pistons 31. , 32, 33, and an electric mechanism 40 for driving the piston assembly 30.
- a bullet assembly 50 is provided at the rear of the barrel, and a detachable magazine 51 is mounted at the bottom.
- a loading section 14 for setting bullets B is set inside the rear ends of the three barrels 11, 12, 13, respectively.
- the loading section 14 is provided with a hop-up mechanism 15 for adjusting the trajectory. ing.
- the outside of the rear ends of the three barrels 11, 12, and 13 is covered with a connection packing 16, and the connection packing 16 is made of a flexible material such as rubber and has a sealing performance (FIG. 2). .
- the compressed air generation unit 10 is a part that generates air to be injected to each bullet B in order to fire the bullet B from each barrel 11, 12, 13 in the multi-bullet firing electric gun G. Three barrels are combined in a triangular shape when viewed from the front. Inside the electric gun G, a compressed air generator 10 is disposed behind the gun. The cylinder assembly 20, the piston assembly 30, and the electric mechanism 40 constituting the compressed air generating unit 10 are arranged in a substantially straight line in this order.
- the cylinder assembly 20 is located at the rear of the three barrels 11, 12, and 13, has an air injection nozzle 24 at the tip, and three cylinders 21, 22 in which pistons 31, 32, and 33 reciprocate. , 23.
- the illustrated cylinder assembly 20 includes three pipe members 25, a front fixing member 26 that fixes each pipe member 25 at the tip, and a rear fixing member 27 that fixes each pipe member 25 at the rear end. (FIGS. 3 and 4) reference).
- the air injection nozzle 24 is provided in a front fixing member 26, and a piston insertion port 25a is opened in the rear fixing member 27.
- the injection nozzle 24 is provided in front of the pipe attachment member 25b, and the pipe attachment member 25b is attached to the rear surface of the front fixing member 26 with a stopper 25c.
- the pipe attachment member 25b is assembled in an airtight manner using the sealing means 26a in a positional relationship in which the pipe attachment member 25b is fitted inside the pipe member 25 (FIG. 4).
- an inter-nozzle 28 is connected to the bullet loading unit 14 and the air injection nozzle 24, and is provided so as to be movable in the front-rear direction by a nozzle base 29.
- the inter nozzle 28 slides in an airtight manner with respect to the injection nozzle 24 and is in a position to inject the compressed air generated by the compressed air generation unit 10 onto the bullet.
- the inter-nozzle 28 is attached to the rising portion 29a of the nozzle base 29 and is incorporated in the main body of the simulated gun G so as to be able to advance and retreat.
- the inter-nozzle 28 moves backward by engagement with a latch member 49 described later and moves forward by the spring of the urging means 29b acting on the nozzle base 29 as the pistons 31, 32, 33 described later move backward. (See FIG. 2). Then, the tip also slides in an airtight manner with respect to the connection packing 16, moves away from the connection packing 16, retreats to open a gap where the bullet B is pushed up to the rear end of the barrel, and then the bullet B is loaded. It is configured to move forward to push into part 14.
- the air injection nozzle 24 is provided at a position close to the center of the pipe members 25, 25, 25 of the three cylinders 21, 22, 23. This is a measure taken because the plurality of barrels 11, 12, 13 in the illustrated example cannot be aligned with the center of the cylinder pipe having a larger diameter than the barrel. Therefore, the position of the air injection nozzle 24 is determined from the relationship between the barrel and the center position of the cylinder pipe.
- the piston assembly 30 has three pistons 31, 32, 33 that reciprocate inside the cylinders 21, 22, 23 to generate compressed air. Further, these three pistons 31, 32, 33 are grouped together at a rear coupling portion 34, and one piston shaft 35 having a rack 36 along the reciprocating motion direction is defined as a coupling portion. They are integrally provided (see FIG. 5).
- the three pistons 31, 32, 33 are configured to be coupled to the coupling portion 34 with flexibility so that the sealing performance between the pistons 31, 32, 33 and the cylinder inner wall surface is maintained.
- the piston and cylinder constituting the piston / cylinder mechanism are more likely to obtain a high compression ratio when the positional relationship or the fitting accuracy thereof is higher, and the respective shaft cores must also coincide with each other with high accuracy.
- a high compression ratio can be obtained without requiring excessive accuracy.
- the present invention adopts a configuration in which the pistons 31, 32, and 33 are provided at the distal ends of the elongated rods 37, and are movably fixed at the connecting portions 34 at the rear of the rods 37.
- the rod 37 is pivotally fixed to the piston reciprocating direction using a support shaft 37a in the left-right direction, and the rod 37 is configured to be movable in the vertical direction.
- the pistons 31, 32, and 33 are kept airtight by using the illustrated O-rings as seal members 38.
- the piston assembly 30 is combined in a triangular shape when viewed from the front, and coupled with a positional relationship shifted downward from the center of the three sets.
- a piston shaft 35 is disposed in the portion 34, and a rack 36 is configured to be positioned above the portion shifted downward. For this reason, the position of the rack 36 is close to the center of the three sets, and the arrangement space 39 of the output gear 41 of the electric mechanism 40 can be gained, and the driving force by the output gear 41 is also increased from a position close to the center line. It will be transmitted efficiently.
- the electric mechanism 40 is configured to drive the output gear 41 engaged with the rack 36 in order to retract the piston assembly 30 and accumulate the elastic member 42 and compress air by releasing the accumulated pressure.
- 43 is an electric motor or motor
- 44 is a pinion attached to its rotating shaft
- 45 is a reduction gear set consisting of several gears engaged therewith
- the output gear 41 is a sector Consists of gears.
- the sector gear 41 has a toothed portion 41a that meshes with the rack 36 to retract the piston assembly 30, and a toothless portion 41b that allows the piston assembly 30 to advance without meshing.
- the piston shaft 35 has a hollow structure and is urged in the forward direction by an elastic member 42 shown as a coil spring inside the hollow.
- One end of the elastic member 42 formed of the coil spring is in contact with the front end of the hollow inside of the piston shaft, and the other end is supported by the rear end of the space which is a piston moving portion 46 provided in the electric mechanism 40.
- Reference numeral 47 denotes a guide portion made of a concavo-convex structure, which is provided in the longitudinal direction of the side surface of the piston shaft 35 and engages with a projecting portion 46a made of a concavo-convex structure provided on the gun body side, and functions as a straight guide. (See FIG. 6).
- the multiple-gun electric gun G of the embodiment includes a mechanism necessary for operation as an electric gun, such as a power supply battery (not shown), a circuit connecting the power supply battery and the electric motor 43, and a switch for turning on and off the power supply.
- a switch for turning on and off the power supply.
- Reference numeral 18 is a switch
- 19 is an outer barrel containing three barrels
- 48 is a selector for selecting a firing mode
- 49 is a latch member touched before.
- the latch member 49 is supported by a support shaft 29a as an engaging means that can move up and down at the rear end of the nozzle base 29, and can be retracted by engagement with an engaging counterpart 49a provided on the piston shaft 35.
- Reference numeral 49c denotes a spring, which is means for urging the latch member 49 in the direction of engagement with the engagement counterpart 49a (see FIG. 2).
- a spring 29 b acts as a forward biasing means on the nozzle base 29, and is configured to push the supplied bullet B to the loading unit 14.
- the cut-off device of the present invention cuts off the operation of the electric mechanism 40 activated by the trigger operation in the simulated gun G having the above-described configuration.
- the simulated gun G is a long gun type, and the pistons 31, 32, and 33 can be retracted by the stroke, and therefore the piston cylinder mechanism has more than twice the above stroke.
- the electric mechanism is arranged at the rear end of the piston-cylinder mechanism.
- the stroke of the piston cylinder mechanism is longer than that of a general piston cylinder mechanism, so that compressed air having a required pressure can be generated without difficulty.
- the cut-off device of the present invention includes a single-shot mode in which a single bullet is fired by a single reciprocating motion of the piston cylinder mechanism, and a continuous mode in which a plurality of bullets are fired by a plurality of reciprocating motions of the piston cylinder mechanism. One of these is selected.
- a switching mechanism 55 for controlling the drive circuit of the electric motor 43 is provided. The switching mechanism 55 is driven by operating a selector operation unit 52 provided for selecting at least a single mode and a continuous mode, and a trigger.
- the switching member 53 which comprises the switch 18 which closes a circuit, and the cutoff member 54 which engages with the one-way drive of the said movable part at the time of single mode selection, and opens the switching member 53 (refer FIG. 7A).
- the selector operation unit 52 is on the side opposite to the cutoff member 54 (see FIG. 7B).
- the selector operation unit 52 locks the trigger 17 so that the trigger 17 cannot be operated.
- the safety mode is S, the single shot mode in which a single bullet is fired by one trigger operation: It is configured to be able to select three modes of continuous firing mode: F that repeats bullet firing even if it is repeated (see FIG. 7B, etc.).
- the selector operation unit 52 is rotatably mounted on a mounting member at the bottom of the cylinder assembly by a support shaft 52a.
- the selector operation portion 52 is coaxial with the support shaft 52a and is located on the opposite side.
- the selector click 56 and the gear 56a are coaxial with the selector click 56. It has a selector member 57 that can mesh and move back and forth by its rotation (see FIG. 8B).
- Reference numeral 57 a denotes a rack tooth for meshing, and the gear 56 a is on the back surface of the selector click 56.
- the switching member 53 constitutes the switch 18, and the main body is rotatably supported on the switch mounting member 53 b by a support shaft 53 a, and a spring 53 e acting in the switch-off direction is attached to the main body of the switching member 53. (See FIG. 9).
- the switching member 53 is turned on when the core 53c at the front end of the main body is in contact with the switch terminal 53d, and is turned off when not in contact. Further, the switching member 53 has a portion 53 f to be pressed by a pressurizing portion 17 a provided on the upper portion of the trigger 17 at the rear portion. Therefore, the trigger 17 is provided with a spring 17c that acts in a direction that opposes the pulling operation.
- the cut-off member 54 is rotatably attached to the gun body side by a support shaft 54a, and one end 58 thereof extends to the rear end of the piston cylinder mechanism, and the other end 59 is on the switching member 53 side. Is growing.
- One end portion 58 is formed in an approximately L shape so as to be able to engage with the head portion of one of the pistons 31, 32, and 33 which is a movable portion.
- a notch 23a for exposing the rear end of the head portion is formed in the rear end portion of the corresponding cylinder 23.
- the other end 59 of the cut-off member 54 is provided so as to be able to engage with a part 53g formed on the switching member 53 (see FIG. 7A).
- the cut-off member 54 is urged by a spring 54b in a direction in which one end 58 is in contact with the notch 23a of the cylinder (see FIG. 8A).
- Trigger trigger portion 60 is combined with trigger 17.
- the trigger locking portion 60 is pivotally supported so as to be movable integrally with the selector member 57, and has a protrusion fixing portion 60 a that fixes the trigger 17 by engagement with the protrusion 17 b provided on the trigger 17.
- the selector locking portion 60 is formed integrally with the selector member 57 so that the trigger 17 can be operated by a mode selection operation of the selector operation portion 52.
- the selector click 56 is fixed by generating a click feeling at the positions of the three modes, but a mechanism for providing the click feeling can be implemented by a conventionally known method.
- the above three modes are represented by a display 61 such as safety: S, semi-auto :, and full-auto: F (see FIG. 7B, etc.).
- FIG. 10A shows the time of safety as is clear from the position of the selector operation unit 52.
- the pistons 31, 32, and 33 are in the advanced positions, and the trigger locking unit 60 locks the trigger 17. Therefore, the trigger 17 cannot be operated.
- the switching member 53 which comprises the switch 18 is OFF, and the cut-off member 54 exists in the state which one edge part 58 protruded inside from the notch 23a of the cylinder 23.
- FIG. 10B the selector operation unit 52 is switched to semi-auto: and the selector member 57 is moved rearward, whereby the trigger locking unit 60 is unlocked and the trigger 17 can be pulled (FIG. 10B).
- the pressurizing portion 17a on the upper side presses the portion 53f of the switching member 53, so that the pressed core 53c and the switch terminal 53d come into contact with each other and the switching member 53 is turned on (FIG. 11A).
- the switching member 53 is turned on, the drive circuit is closed, and the electric mechanism 40 is started, so that the pistons 31, 32, and 33 start to move backward.
- the pistons 31, 32, 33 reach the retreat limit and hit one end 58 of the cut-off member 54 and push it down, the cut-off member 54 rotates counterclockwise in the figure (FIG. 11B).
- the bullet B can be fired continuously by switching the selector operation unit 52 to full auto: F.
- the trigger locking portion 60 is further retracted together with the selector member 57 by switching the selector operating portion 52, and the cam portion 60 b is engaged with the cut-off member 54 as the trigger locking portion 60 is retracted.
- Engage with the portion 54c see FIG. 13.
- the cutoff member 54 is rotated and moved upward in accordance with the shape of the cam surface.
- the cut-off member 54 is rotated and moved upward to leave the switch 53 and the cut-off mechanism is invalidated.
- the switching member 53 is kept on while the trigger 17 continues to be pulled, and the piston-cylinder mechanism repeats the reciprocating operation. Therefore, the bullets B can be continuously fired three times each.
- the switching mechanism is also shown, with A being an overall perspective view, and B being an explanatory side view showing a surface opposite to A provided with a selector operating portion. Similarly, a switching mechanism is shown, in which A is a left side view and B is a right side view. An example of a switch is shown, A is a perspective view, B is a plan view, and C is a right side view.
- A is a cross-sectional explanatory view showing a ready-to-fire state in which the selector operation unit is in safety mode, and B is in a semi-auto mode state.
- A is a state where the trigger is pulled and the switch is turned on and the piston starts to move backward
- B is the piston reaching the retreat limit and the cut-off member is switched
- A is a cross-sectional explanatory view showing a state where compressed air is generated by advancing the piston
- B is a state where the switch is restored to the original state.
- It is sectional explanatory drawing which shows the state by which a cutoff mechanism is invalidated in full auto mode.
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Abstract
Description
参照)。
11、12、13 バレル
14 装弾部
15 ホップ機構
16 接続パッキング
17 トリガー
18 スイッチ部
19 アウターバレル
20 シリンダーアセンブリー
21、22、23 シリンダー
24 噴射ノズル
25 パイプ部材
26 前部固定部材
27 後部固定部材
28 インターノズル
29 ノズルベース
30 ピストンアセンブリー
31、32、33 ピストン
34 結合部
35 ピストン軸
36 ラック
37 ロッド
38 シール部材
39 ギヤ配置空間
40 電動機構
41 出力ギヤ
42 弾性部材
43 電動機
44 ピニオン
45 減速歯車組
46 ピストン移動部
47 ガイド溝
48 セレクター
49 ラッチ部材
50 装弾アセンブリー
51 マガジン
52 セレクター操作部
53 スイッチング部材
54 カットオフ部材
55 切り替え機構
56 セレクタークリック
57 セレクター部材
58 一方の端部
59 他方の端部
60 トリガー係止部
61 表示
Claims (3)
- ピストンシリンダー機構を有し、その可動部を電動機構により一方向へ駆動することにより加圧手段を蓄圧し、加圧手段の解放によりピストンシリンダー機構を上記と逆方向に駆動し、弾丸を発射するための圧縮エアを生成する構成を備えた模擬銃において、
ピストンシリンダー機構の一回の往復動作にて一回の弾丸発射を行う単発モードと、ピストンシリンダー機構の複数回の往復動作にて複数回の弾丸発射を行う連発モードの何れかを選択するために、電動機の駆動回路を制御する切り替え機構を具備し、
切り替え機構は、少なくとも単発モードと連発モードを選択するために設けたセレクター部と、トリガーの操作により駆動回路を閉じるスイッチと、単発モード選択時に上記可動部の一方向駆動と係合してスイッチを切るカットオフ部材とを有しており、
ピストンシリンダー機構の可動部とカットオフ部材との係合箇所は、可動部の往復動作方向において前部に設定されており、可動部の後退開始後に上記前部がカットオフ部材と係合するまでのタイミング選択の範囲を広げられるようにしたこと
を特徴とする電動機構のカットオフ装置。 - 模擬銃は長銃型であって、ピストンシリンダー機構と電動機構とが離れて配置され、上記ピストンシリンダー機構が一般的なピストンシリンダー機構よりも長く形成されている
請求項1記載の模擬銃における電動機構のカットオフ装置。 - セレクター操作部は銃本体側の取り付け部材に支軸を用いて組み付けられており、
上記支軸と同軸に設けられたセレクタークリック、セレクタークリックと同軸の歯車及びそれと噛合うラック歯を有するとともに、歯車の回転によりそれと噛合い前後に移動可能なラック歯を備えたセレクター部材を有しており、
上記セレクター操作部の操作によりセレクター部材と一体に前後に移動可能に設けられ、一方向への移動によりトリガーと係合して操作を停止し、他方向への移動により上記係合から外れトリガーの操作を許容するように構成された
請求項1記載の模擬銃における電動機構のカットオフ装置。
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
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US15/560,548 US10401120B2 (en) | 2015-03-24 | 2015-03-24 | Cut-off device for electric mechanism in simulation gun |
CN201580077471.5A CN107407542B (zh) | 2015-03-24 | 2015-03-24 | 仿真枪中的电动机构的切断装置 |
EP15886317.5A EP3276295B1 (en) | 2015-03-24 | 2015-03-24 | Cut-off device of electric mechanism in imitation gun |
JP2017507220A JP6649360B2 (ja) | 2015-03-24 | 2015-03-24 | 模擬銃における電動機構のカットオフ装置 |
PCT/JP2015/058935 WO2016151764A1 (ja) | 2015-03-24 | 2015-03-24 | 模擬銃における電動機構のカットオフ装置 |
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PCT/JP2015/058935 WO2016151764A1 (ja) | 2015-03-24 | 2015-03-24 | 模擬銃における電動機構のカットオフ装置 |
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US (1) | US10401120B2 (ja) |
EP (1) | EP3276295B1 (ja) |
JP (1) | JP6649360B2 (ja) |
CN (1) | CN107407542B (ja) |
WO (1) | WO2016151764A1 (ja) |
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Publication number | Publication date |
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EP3276295B1 (en) | 2021-02-24 |
CN107407542A (zh) | 2017-11-28 |
US10401120B2 (en) | 2019-09-03 |
JPWO2016151764A1 (ja) | 2018-01-11 |
EP3276295A4 (en) | 2018-10-31 |
CN107407542B (zh) | 2021-04-06 |
US20180120050A1 (en) | 2018-05-03 |
EP3276295A1 (en) | 2018-01-31 |
JP6649360B2 (ja) | 2020-02-19 |
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