首页 / 国际专利分类库 / 机械工程;照明;加热;武器;爆破;发动机或泵 / 武器 / 对于轻武器和火炮,例如加农炮,两者通用的功能特征或零部件;轻武器或火炮的安装 / 允许后坐或返回到待发射状态的枪固定装置,例如枪摇架;枪管缓冲器或制动装置(无后坐力枪入F41A1/08)
序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 火炮旋转型磁流变反后坐装置 CN201710041860.3 2017-01-20 CN106871713A 2017-06-20 张红辉; 廖昌荣; 肖允恒; 杨涛
发明公开了一种火炮旋转型磁流变反后坐装置,包括用于将火炮炮身的后坐运动转化为单向旋转运动的后坐运动转化机构和用于对转化形成的单向旋转运动施加阻尼作用以抑制火炮后坐运动的旋转式阻尼装置,本反后坐装置将直线往复运动的火炮后坐运动转化为旋转运动,并使用旋转式阻尼装置对旋转运动施加阻尼作用,进而对火炮的后坐运动进行有效控制。
2 Missile launching device JP19836388 1988-08-09 JPH0250093A 1990-02-20 KAMEI NOBUO
PURPOSE:To permit the remarkable reduction of a vibration upon launching by a method wherein a control power for reducing the vibration effectively utilizing the reaction force of a movable mass is applied on a launching tube by an actuator. CONSTITUTION:A movable mass 4 is attached movably to a launching tube 2 through a spring 5 and an actuator 6. An accerometer 7 detects the vibrating speed of the launching tube 2 through the integrator 9 of a controller 8 and generates a control force, proportional to the vibrating speed and having a reversed direction to the vibrating speed, in the actuator 6 through an electric power amplifier 10. The actuator 6 is constituted of a fixed core 11 and a movable core 12. A missile launching device 1 is added with a vibration controlling function in such a manner whereby the launching accuracy of a missile 3 may be improved and the affection of the vibration to a not yet launched missile may be reduced when the launching device 1 is provided with a plurality of launching tubes 2.
3 Lightweight weapon stabilizer JP50263489 1989-01-23 JP2752208B2 1998-05-18 MURATSU UIRIAMU AASAA; BATORUFU MAATEIN EDOII; FUAANII MAIKERU JEIMUZU
4 JPH02503350A - JP50263489 1989-01-23 JPH02503350A 1990-10-11
5 Gun barrel arms JP2003121553 2003-04-25 JP2004020184A 2004-01-22 KNOERICH FRIEDHELM; BAUMANN BERTHOLD
PROBLEM TO BE SOLVED: To provide gun barrel arms avoiding approximately a stroke effect of the gun barrel, dispensing with a guide slot in a cradle tube, and slidably journaled in the cradle tube capable of replacing the gun barrel. SOLUTION: The gun barrel (2) is journaled to first and second slide bush bearings arranged on the ends on the muzzle side and the rear body side of the cradle tube (3). The first slide bush bearing is constituted without the stroke effect and has a tube bush (7), and the outside face (8) of the tube bush is journaled movably by sliding in the cradle tube. Each tube bush has inside four groove-shaped recessed parts (9) distributed and arranged uniformly in the circumferential direction. Four strip-shaped projections (10) are arranged on the gun barrel, and the projections are inserted into the groove-shaped recessed parts on the tube bush. Plays for absorbing extension of the gun barrel generated at the firing time are provided between the outside surface (11) coupled with the gun barrel in a complementary shape and the inside surface (12) of the tube bush, and between a strip head (13) and the inside surface (14) of the groove-shaped recessed parts. COPYRIGHT: (C)2004,JPO
6 JPS60501621A - JP50264084 1984-06-21 JPS60501621A 1985-09-26
7 크래들 가공장치 KR1020150071469 2015-05-22 KR101628623B1 2016-06-08 이희택; 조경빈; 박창우
크래들가공장치에관한발명이개시된다. 개시된크래들가공장치는, 포신이장착되는크래들에결합되는하우징부재와, 하우징부재에이동가능하게결합되는이동프레임부재와, 이동프레임부재에결합되며, 부싱가공부를구비하여이동프레임부재의이동에따라크래들의힌지부또는힌지부에결합되는부싱을가공하는가공부재;를포함하는것을특징으로한다.
8 반동 제어 장치 KR1020107013090 2003-06-06 KR1020100089101A 2010-08-11 젭센잔헨릭; 제니클라우스; 케르브라르노
본 발명은 다양한 총기에 사용하기 위한, 볼트 헤드(3) 및 관성 블록(2)을 포함하는 개선된 반동 제어 장치를 포함한다. 일 실시예에서, 볼트 헤드(3)의 변위가 총기의 총열(1)의 발사 축을 벗어난 힘 성분을 발생시키도록 볼트 헤드(3)와 관성 블록(2)이 관절 결합된다. 상기 장치는 반동 감소 및/또는 무게 감소의 이점을 이루도록 다양한 사이즈 및 구성의 총기에 병합될 수 있다. 제1의 관성 블록(2)은 총열의 길이방향 축에 수직한 제1의 운동량 성분을 받아들이고, 제2의 관성 블록(2)은 총열의 길이방향 축에 수직한 제2의 운동량 성분을 받아들이며, 제1의 운동량 성분은 제2의 운동량 성분과 그 크기는 동일하며 방향은 반대이다.
9 Force damping shooting rest system and method US15092753 2016-04-07 US10139182B2 2018-11-27 Marvin Badger Duncan; Jeffrey Wade Steffen; Kevin Douglas Bowdy; Stephen Clark Allison
A system for shooting an armament includes a connector configured to connect to a supporting structure, a side to side windage device connected to the connector, an up and down windage device connected to the connector, at least one guide rail connected to the up and down windage device, a carriage slidably connected to the at least one guide rail, and a gas spring connected to the carriage and the up and down windage device. The system rests a gun during shooting, assists steady aim, and limits any significant jarring and recoil impacting the gun, the system and any support, as well as virtually eliminates recoil force borne by the shooter.
10 Firearm recoil control system US15441491 2017-02-24 US10113827B2 2018-10-30 Jeff Elsner
A recoil control system includes a base portion having a main body with a flat bottom surface; a slide portion having a main body with a flat upper surface; at least one structure providing a sliding interface between the base portion and the slide portion such that the slide portion is slidingly engaged with, and can move forward and backward with respect to, the base portion; and a damper in communication with the slide portion. The recoil control system provides sliding interface between at least a portion of a firearm and at least a portion of a support used with the firearm and reduces the possibility of the support hopping or bouncing during recoil.
11 Mounting assembly for a firearm US15612508 2017-06-02 US10006735B1 2018-06-26 Mark Edward Hagedorn; Joe Bebee
The present disclosure provides a mounting assembly for a primary firearm, which may include a non-recoil reducing cradle pivotably coupled to a carriage configured to mount a selectively removable shield assembly. The mounting assembly includes a quick release pintle adaptor locking mechanism, which aids in the rapid mounting and dismounting of a secondary firearm to the mounting assembly.
12 Mounting assembly for a firearm US15445374 2017-02-28 US09739561B1 2017-08-22 Mark Edward Hagedorn; Joe Bebee
The present disclosure provides a mounting assembly for a primary firearm, which may include a non-recoil reducing cradle pivotably coupled to a carriage configured to mount a selectively removable shield assembly. The mounting assembly includes a quick release pintle adaptor locking mechanism, which aids in the rapid mounting and dismounting of a secondary firearm to the mounting assembly.
13 Modular weapon station system US14623244 2015-02-16 US09644916B2 2017-05-09 James C. Hobson
A modular weapon station includes a rotatable frame adapted to be mounted on a platform and is configured to have a removable cradle with a weapon mounted thereon. The rotatable frame may also include a removable ammunition feed chute, an optical sighting unit, and azimuth and elevation drives. The modular weapon station may also include a rotatable drum and ammunition loading assembly coupled with the rotatable frame assembly. The rotatable drum and ammunition loading assembly may be located in an under armor position such that an operator may replenish ammunition from an under armor position and not be subjected to hostile fire while replenishing ammunition. Belted ammunition rounds may travel along an ammunition feed path stemming from the loading assembly within the rotatable drum to a selected weapon.
14 Firearm bump stock assembly US14566257 2014-12-10 US09297602B2 2016-03-29 Bryant A. Marcotte
A firearm bump stock assembly provides a mount and support for a conventional semi-automatic firearm. The firearm bump stock assembly beneficially provides a user with the ability to increase the fire rate efficiency of a firearm by reducing the amount of time between pulling of a trigger on a firearm and reloading of a new bullet into a chamber of said firearm, thus allowing said firearm to be reloaded and fired more rapidly. The firearm bump stock assembly also beneficially provides a user with the ability to maintain accuracy of said firearm and to easily aim and maneuver said firearm, while concurrently being able to increase said firearm's rate of fire.
15 Soft recoil system and cannon having the same US13678674 2012-11-16 US08863636B2 2014-10-21 Sang-Tae Ahn; Kuk-Jeong Kang; Chang-Ki Cho; Sang-Bae Jun
Disclosed are a soft recoil system and a cannon having the same. The soft recoil system includes: a cannon barrel returning device mounted to a recoil device for absorbing a recoil force occurring when ammunition is fired, and configured to backward press a breech ring, such that the cannon barrel is fixed to a preset position; a cannon barrel fixing device installed at the recoil device, and configured to fix the cannon barrel when the cannon barrel returns to the fixed position; and a forward momentum generator connected to the recoil device and the breech ring, respectively, configured to forward move the cannon barrel by applying a force to the breech ring, such that the ammunition is fired while the cannon barrel forward moves, and configured to reduce a recoil force by partially attenuating recoil momentum resulting from the firing of the ammunition, by forward momentum.
16 Systems and Methods for Disrupter Recovery US13783571 2013-03-04 US20140245878A1 2014-09-04 F. Richard Langner
A recovery system for a disrupter barrel. The recovery system limits the distance the disrupter travels as a result of a force or recoil that occurs upon firing the disrupter.
17 METHOD AND ACCESSORY DEVICE TO IMPROVE PERFORMANCES OF BALLISTIC THROWERS US13757500 2013-02-01 US20140215876A1 2014-08-07 Liviu Popa-Simil
Disclosed is a accessory device for a ballistic thrower that can be handgun or a gun or other object throwing device that is meant to improve the quality of the action and the comfort and safety of the operator. It is made of accessory devices that stabilize the operation of the throwing device making it reproducible, predictable and controllable. It adds an improved target visualization system and environment monitoring electronics and actuators for accurately firing/throwing after aiming considering all the major perturbations, as movements, wind, humidity, atmospheric pressure, target movement, shooting post movement, etc. The device adds other features of safety for the shooter, as stealth action, by dampening the shock, flames and heat signature and having a remote operation.
18 Field gun aim US13708605 2012-12-07 US08726784B2 2014-05-20 Keith Dawson; Frederick Herbert; John Michael Webb
A howitzer suitable for deployment on a ground plane, the howitzer having an ordnance for firing a projectile. The ordnance can include a barrel defining a barrel axis and having a muzzle towards the front end of the howitzer and a breech assembly at the back end of the barrel; a cradle for holding the ordnance at a traverse and an elevation; two trunnion pins located on the cradle, which co-locate with receiving trunnion bearings on a saddle, wherein in a first position said breech is located forward of the trunnion, in a second position, at the end of the recoil stroke, the breech is retracted substantially behind the trunnion, wherein a recoil stroke is variable depending on the selection of the elevation.
19 FIELD GUN AIM US13708605 2012-12-07 US20140102286A1 2014-04-17 Keith DAWSON; Frederick Herbert; John Michael Webb
A howitzer suitable for deployment on a ground plane, the howitzer having an ordnance for firing a projectile. The ordnance can include a barrel defining a barrel axis and having a muzzle towards the front end of the howitzer and a breech assembly at the back end of the barrel; a cradle for holding the ordnance at a traverse and an elevation; two trunnion pins located on the cradle, which co-locate with receiving trunnion bearings on a saddle, wherein in a first position said breech is located forward of the trunnion, in a second position, at the end of the recoil stroke, the breech is retracted substantially behind the trunnion, wherein a recoil stroke is variable depending on the selection of the elevation.
20 SOFT RECOIL SYSTEM AND CANNON HAVING THE SAME US13678674 2012-11-16 US20130269507A1 2013-10-17 Sang-Tae AHN; Kuk-Jeong KANG; Chang-Ki CHO; Sang-Bae JUN
Disclosed are a soft recoil system and a cannon having the same. The soft recoil system includes: a cannon barrel returning device mounted to a recoil device for absorbing a recoil force occurring when ammunition is fired, and configured to backward press a breech ring, such that the cannon barrel is fixed to a preset position; a cannon barrel fixing device installed at the recoil device, and configured to fix the cannon barrel when the cannon barrel returns to the fixed position; and a forward momentum generator connected to the recoil device and the breech ring, respectively, configured to forward move the cannon barrel by applying a force to the breech ring, such that the ammunition is fired while the cannon barrel forward moves, and configured to reduce a recoil force by partially attenuating recoil momentum resulting from the firing of the ammunition, by forward momentum.
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