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    • 3. 发明授权
    • Remote control mine neutralization delivery system
    • 遥控矿山中和输送系统
    • US09561842B1
    • 2017-02-07
    • US13987922
    • 2013-09-17
    • Normary Camacho-CardozaJean Pierre Ledee
    • Normary Camacho-CardozaJean Pierre Ledee
    • B63G7/00B63G7/02G05D1/00G05D1/02
    • G05D1/0206B63G7/06
    • Mine neutralization provides for radio control of a small boat having associated therewith: a projection mounted onto the boat and pointing forward; a primary magnet; a housing holding the primary magnet and joined at the front end of the projection; a fluid-dynamically shaped explosive device detachably attached underneath the boat; at least one secondary magnet affixed to the explosive device; and, a rope or cable tautly connected at its upper end to the primary magnet and at its lower end to the explosive device. The boat journeys near a floating mine to bring about magnetic interaction between the primary magnet and the mine. The primary magnet magnetically attaches to the mine, and a pulling force is exerted on the explosive device. The explosive device detaches from the boat, moves toward the mine, and magnetically attaches (via at least one secondary magnet) to the mine.
    • 矿井中和提供了与其相关联的小船的无线电控制:安装在船上并向前指向的突起; 主磁铁 保持所述主磁体并且在所述突起的前端处接合的壳体; 可拆卸地安装在船下面的流体动态形状的爆炸装置; 固定在所述爆炸装置上的至少一个次级磁体; 以及在其上端绷紧地连接到初级磁体并且在其下端绷紧地连接到爆炸装置的绳索或电缆。 在一个浮动的矿山附近的船只行驶,以使主磁铁和矿井之间的磁性相互作用。 主磁体磁力附着在矿井上,并且拉力施加在爆炸装置上。 爆炸装置从船上离开,向矿井移动,并通过至少一个次级磁铁磁力附着到矿井。
    • 5. 发明申请
    • Towing Device
    • 牵引装置
    • US20080196651A1
    • 2008-08-21
    • US11570235
    • 2005-06-02
    • Axford Nigel
    • Axford Nigel
    • B63G8/42B63B21/66B63G7/00B63G8/14
    • B63G8/42B63B21/66
    • An apparatus for towing behind an underwater vehicle has a body and a yoke pivotally connected to the body at a pivot point and having a tether remote from the pivot point by which the apparatus us towed. The yoke has wings which generate a resultant force on the body when the apparatus is towed. By varying the orientation of the yoke relative to the body, the magnitude of the resultant force may be varied. The resultant force tends to reduce the displacement of the tether relative to the pivot point in at least one plane, thereby generating a force to counter the buoyancy of the apparatus, and so stabilize the apparatus when it is being towed.
    • 用于在水下航行器后面牵引的装置具有主体和轭,其在枢轴点处枢转地连接到主体并且具有远离我们拖动的装置的枢转点的系绳。 轭具有在装置被牵引时在身体上产生合力的翼。 通过改变轭相对于身体的取向,可以改变合力的大小。 合力倾向于在至少一个平面中减小系链相对于枢转点的位移,从而产生抵抗装置浮力的力,因此当装置被拖曳时使装置稳定。
    • 6. 发明授权
    • Surface effect ship engine mount system
    • 表面效果船用发动机支架系统
    • US4978320A
    • 1990-12-18
    • US522499
    • 1988-08-03
    • John B. ChaplinRobert G. MooreJohn M. Ryken
    • John B. ChaplinRobert G. MooreJohn M. Ryken
    • B63G7/00B63H21/30
    • B63H21/305B63G7/00
    • There is disclosed a marine vessel which is particularly suited for mine hunting operations or the like because of improved survivability characteristics in the presence of multi-directed underwater transmitted excessive shock or vibration forces, such as are generated by a nearby exploding mine or the like. The ship is of the propeller driven type having a propeller shaft driving engine and gearbox unit mounted inboard of the vessel hull upon a rigid sled-like platform which in turn is resiliently supported relative to rigid structure of the vessel by spring means sandwiched therebetween. The spring means are of such nature as to resiliently yield in response to excessive compression, tension, shear or roll forces encountered from any direction. The spring means comprises an array of spaced apart spring devices, and back-up blocks of non-resilient compression-deformable material are provided in association therewith.
    • 公开了一种特别适用于矿山打猎作业等的海洋船舶,因为在存在多方向水下传输的过度冲击或振动力(例如由附近的爆炸矿等产生的)的情况下,存在可改善的特性。 该船是螺旋桨驱动型的,其具有传动轴驱动发动机和齿轮箱单元,其安装在容器船体的内部,在刚性滑板平台上,弹性支撑件相对于容器的刚性结构通过夹在其间的弹簧装置弹性支撑。 弹簧装置具有响应于从任何方向遇到的过度压缩,张力,剪切或滚动力而弹性屈服的性质。 弹簧装置包括间隔开的弹簧装置的阵列,并且与之相关地提供非弹性可压缩变形材料的支撑块。
    • 10. 发明授权
    • Method for detecting naval mines and naval mine detection system
    • 海军雷达检测系统检测方法
    • US09340267B2
    • 2016-05-17
    • US14387656
    • 2013-02-13
    • ATLAS ELEKTRONIK GmbH
    • Detlef LambertusRalf Richter
    • G01S15/00B63G7/00B63G8/00G01S15/04G05D1/02
    • B63G7/00B63G8/001B63G2007/005G01S15/04G05D1/0206
    • The invention concerns a group of vessels (24), having an unmanned surface vessel (3) and an unmanned underwater vessel (1, 1a), wherein the underwater vessel comprises a location device, in particular a sonar device, for sensing location data (12) in the underwater area and one evaluation unit or more evaluation units, and the evaluation unit or the evaluation units are arranged in such a manner that these comprise detection means (20) for detecting (14) a contact (MILEC) with the aid of the sensed location data (12) and with classification means (21) for classifying (15) the detected contact (MILEC) as a mine-like contact (MILCO) or non mine-like contact (NONMILCO), whereby classification is accomplished by comparing the contact (MILEC) with known mine information so that a mine-like contact (MILCO) can be identified as a mine contact (MINE) or as another object (NOMBO).
    • 本发明涉及一组具有无人表面容器(3)和无人水下容器(1,1a)的容器(24),其中水下容器包括用于感测位置数据的定位装置(特别是声纳装置) 12)和一个评价单元或多个评价单元,并且评价单元或评估单元以这样的方式排列,使得它们包括用于通过辅助来检测(14)接触(MILEC)的检测装置(20) 的检测位置数据(12)和用于将检测到的接触(MILEC)分类为类雷丝接触(MILCO)或非类似接触(NONMILCO)的分类装置(21),从而通过 将联系人(MILEC)与已知的矿井信息进行比较,以便可以将矿物接触(MILCO)识别为矿井接触(MINE)或另一个目标(NOMBO)。