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    • 1. 发明公开
    • FLOATING ISLAND
    • SCHWIMMENDE INSEL
    • EP3095687A1
    • 2016-11-23
    • EP14806107.0
    • 2014-09-12
    • Novikov, Aleksandr Aleksandrovich
    • Novikov, Aleksandr Aleksandrovich
    • B63B35/38B63B5/14B63B35/44
    • B63B35/38B63B5/14B63B2035/4426B63B2035/4493B63B2231/64
    • The invention refers to structures of floating islands. Floating island is a partially submerged volumetric structure made from floating facilities with positive buoyancy, which are connected by a flexible non-stretchable link and a resilient damping link. These floating facilities are located adjacent to each other and are spaced in horizontal direction, and every facility is a volumetric shallow structure with side walls, bottom and roof used as basic surface located above water level for installation of island infrastructure objects on it. Every floating facility is made in the form of a shallow tight unit with positive buoyancy and in the form of a parallelepiped or prism with a height that is less than the length of either side of the base, and every wall of floating facility located opposite to the wall of adjacent floating facility is connected with said wall by means of a flexible non-stretchable link and a resilient damping link along the whole length of said wall, whereas said resilient damping link enables damping on at least two mutually perpendicular directions.
    • 本发明涉及浮岛的结构。 浮岛是由具有正浮力的浮动设施制成的部分浸没的体积结构,其通过柔性不可拉伸的连杆和弹性阻尼环连接。 这些浮动设施彼此相邻并且在水平方向上间隔开,并且每个设施是容积浅的结构,其侧壁,底部和屋顶用作位于水面上方的基本表面,用于在其上安装岛屿基础设施物体。 每个浮动设施都是以一个具有正浮力的浅紧密单元的形式制成的,其形式为平行六面体或棱柱形,其高度小于基座任一侧的长度,以及浮动设施的每个墙壁 相邻浮动设施的壁通过柔性不可拉伸的连接件和沿着所述壁的整个长度的弹性阻尼连杆与所述壁连接,而所述弹性阻尼连杆能够在至少两个相互垂直的方向上进行阻尼。
    • 4. 发明申请
    • DEVICE FOR HELICAL ARRANGEMENT OF BODIES OF HIGH-PRESSURE VESSELS
    • 用于高压容器机构安装的装置
    • WO1982002156A1
    • 1982-07-08
    • PCT/SU1980000212
    • 1980-12-24
    • KHISMATULIN ENVER RAKHMATULLOVICHSHCHEL MARAT MOISEEVICHNOVIKOV ALEKSANDR NIKOLAEVICHMAKAROV VIKTOR MATVEEVICHSEROV PETR GAVRILOVICHTROTSENKO VASILY DAVYDOVICHNIKOLSKY SERGEI IGOREVICHPIMSHTEIN PAVEL GDALEVICH
    • B21D51/24
    • B21C37/06B01J3/04B01J3/048B21C37/123B21D51/24B65H81/00
    • A device for helical arrangement of the bodies of high-pressure vessels comprises a frame (4) mounted movably along the axis of the body (1) of a high-pressure vessel. The lower part of the frame (4) carries a pressing mechanism (50 mounted movably along the radius of the body (1) of the high-pressure vessel in the vertical direction. A mechanism (6) for tightening the arranged steel strip (13) is mounted before the pressing mechanism (5) following the feeding direction of the arranged steel strip from a roll (9) of the steel strip (13) to the body (1) of the high-pressure vessel. The pressing mechanism (5) is provided with a beam (23) fixed on the frame (4) and provided in its turn with forks and rollers (20) oriented in the direction to the body. All rollers (20) are mounted in their forks (21) at a distance from each other which is equal to 10 to 50 thicknesses of the arranged steel strip (13) and are placed on the generatrix of the body (1) of the vessel along the whole width of the arranged steel strip (13). The mechanism (6) for tightening the arranged steel strip consists of a group of rollers (16). The last two rollers (18, 19) following the feeding direction of the steel strip are provided correspondingly with convex and concave surfaces facing the surface of the steel strip (13). Radius of curvature of those surfaces is determined by the thickness and mechanical properties of the steel strip (13) and by the value of plastic deformation needed for compensation of the bend of the edges of the steel strip (13) upon its winding on the body (1) of the vessel after the pressing mechanism (5).
    • 用于螺旋排列高压容器本体的装置包括一个可沿着高压容器主体(1)的轴线可移动地安装的框架(4)。 框架(4)的下部承载着沿着高度方向的主体(1)的半径可移动地安装的按压机构(50),用于将布置好的钢带(13) )按照所配置的钢带的进给方向从钢带(13)的辊(9)到高压容器的主体(1)安装在按压机构(5)之前,按压机构(5) )设置有固定在框架(4)上的梁(23),并且依次设置有与沿着主体的方向定向的叉和辊(20)。所有的辊(20)都安装在其叉(21)中 彼此相距的距离等于所配置的钢带(13)的厚度为10至50的厚度,并沿着排列的钢带(13)的整个宽度放置在容器的主体(1)的母线上。 用于紧固排列的钢带的机构(6)由一组辊(16)组成,最后两个辊(18,19) 钢带的进给方向相应地设有面向钢带(13)表面的凸表面和凹面。 这些表面的曲率半径由钢带(13)的厚度和机械性能以及钢带(13)在其卷绕在主体上的边缘的弯曲所需的塑性变形值所决定 (5)之后的容器(1)。
    • 5. 发明专利
    • КОНСТРУКТИВНЫЙ ОПАЛУБОЧНЫЙ БЛОК ПРОЕМНЫЙ
    • RU2525242C1
    • 2014-08-10
    • RU2013132314
    • 2013-07-11
    • MIKHAJLOV GENNADIJ JAKOVLEVICHNOVIKOV ALEKSANDR VIKTOROVICH
    • MIKHAJLOV GENNADIJ JAKOVLEVICHNOVIKOV ALEKSANDR VIKTOROVICH
    • E04C1/00E04B2/86
    • Изобретениеотноситсяк областистроительстваутепленныхи холодныхстензданийи сооружений, обрамленийоконныхпроемов, встроенныхжелезобетонныхкаркасов, атакжефундаментов, колонн, балок, подпорныхстенокв монолитномжелезобетонномисполнениис применениемконструктивныхопалубочныхблоков. Техническийрезультат: сокращениематериальныхи трудовыхзатратнаопалубочныхработах, повышениемонолитности, сейсмостойкости, теплозвукоизолирующихсвойствстензданийи сооружений, улучшениекачестваработ. Конструктивныйопалубочныйблокпроемныйизмелкозернистогобетонаилидругогоматериала, близкогопосвойствамсодержитпараллельныенаружнуюлицевуюи тыльнуюпродольныестенки, соединенныетремяперегородками. Продольныестенкии соединительныеперегородкиобъединеныобщимпространственнымарматурнымкаркасом, приэтомоднаизкрайнихперегородокбетонирована, средняяпредставленав видепрямоугольнойдеревяннойраспорки, смещеннойк центрублоканаглубину, равнуюеетолщине, аееторцы, выходящиенанаружныеповерхностиблока, защемленыи заанкерованыв продольныхстенкахи могутслужитькреплениемотделочныхматериалов. 1 з.п. ф-лы, 3 ил.