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    • 72. 发明申请
    • DISTRIBUTION POLE
    • 分配点
    • WO1994028250A1
    • 1994-12-08
    • PCT/CA1994000305
    • 1994-05-30
    • TRI-STEEL USA INC.
    • TRI-STEEL USA INC.LEGLER, Steve
    • E01F09/01
    • E04H12/2276E01F9/635E01F9/685E04H12/08
    • A hollow utility metal pole (10) comprised of a straight hollow pole and a concrete connecting base (12) to secure the pole above ground. The pole is formed from a hollow slotted pole casing with connecting flanges disposed on opposed sides of a longitudinal slot opening thereof. A clamping sleeve assembly is secured over the connecting flanges to complete the hollow metal pole. The concrete connecting base may be formed with an impact severing joint which is formed in an anchor section of the base and disposed a short distance below ground level. In an electrical distribution pole application, the impact severing joint is configured to display maximum strength in a desired direction and maximum weakness along a transverse direction.
    • 一个中空的公用金属杆(10),由直的中空杆和混凝土连接底座(12)组成,以将杆固定在地面上方。 该极由中空开槽的极壳形成,其中连接凸缘设置在其纵向槽开口的相对侧上。 夹紧套筒组件固定在连接法兰上以完成空心金属杆。 混凝土连接底座可以形成有冲击切断接头,其形成在基座的锚固部分中并且设置在地平面以下的较短距离处。 在配电杆应用中,冲击切断接头被构造成在期望的方向上显示最大强度,并且沿横向方向显示最大弱点。
    • 75. 发明申请
    • TORRE DE UMA OU MAIS COLUNAS METÁLICAS DE PAREDE FINA
    • 一个或多个细壁金属柱塔
    • WO2018049490A1
    • 2018-03-22
    • PCT/BR2016/050229
    • 2016-09-16
    • SECCIONAL BRASIL S/A
    • DE ABREU, Paulo EmmanuelDE ABREU JUNIOR, Paulo Emmanuel
    • E04H12/10E04H12/08
    • E04H12/08E04H12/10
    • Em um primeiro modo de execução a presente invenção compreende uma torre monotublar de parede fina com coluna metálica de seções transversais tronco cônicas variáveis, formada a partir da conexão de módulos M1 à Mn; em que a relação entre o diâmetro (D) e a espessura (t) de cada módulo de coluna é entre 75 e 250; e em que ao menos um módulo da torre possui uma seção transversal frusto cônica variável com conicidade entre 1:50 a 1:90. Em um segundo modo de execução a presente invenção compreende uma torre triangular de parede fina com três colunas metálicas de parede fina dispostas em forma triangular; em que as colunas de parede fina possuem uma relação diâmetro espessura (D/t) de 25 a 115; e em que ao menos um módulo da torre compreende ao menos três colunas cuja seção transversal de cada coluna é frusto cônica com conicidade entre 1:125 a 1:395.
    • 在第一实施例中,本发明包括具有横截面形状的金属柱和多个横截面树干的薄壁单层塔 ,由模块M1和agrave的连接形成; 锰; 其中每个柱参数的直径(D)和厚度(t)之间的比率是(D) 75至250之间; 并且其中至少一个塔架模块具有锥度在1:50和1:90之间的可变的横截面形状。 在第二实施例中,本发明包括薄壁三角形塔架,其具有三个排列成三角形的薄壁金属柱; 其中所述薄壁柱的厚度比(D / t)为25至115; 并且至少一个塔架模块包括至少三个塔,每个塔的横截面是横截面, 具有1:125至1:395的锥度。
    • 76. 发明申请
    • SISTEMA DE VENTILAÇÃO E VEDAÇÃO PARA ABRIGO DE EQUIPAMENTOS EM POSTE
    • 通风外壳设备的通风和密封系统
    • WO2017066856A1
    • 2017-04-27
    • PCT/BR2016/050259
    • 2016-10-17
    • CLEMAR ENGENHARIA LTDA
    • LEICHSENRING, Dalee HollandSILVEIRA, João Kuntze Da
    • E04H12/08E04H12/00
    • E04H12/00E04H12/08
    • Sistema para ventilação e dissipação térmica de equipamentos instalados e camuflados no interior de poste de telecomunicações e compreende uma torre (1) com corpo tubular cilíndrico, montado na base do poste e possui no seu interior compartimentos (23), sobrepostos tipo prateleira, com portas (11), e possui ventilador (22) no pé da torre (1), e a prateleira possui em toda sua extensão, uma parede (24) que atua como face de duto (13), e o duto (13) compreende o espaço formado pela parede (24) e o casco da torre (1), e a parede (24) possui furos (25) alinhados com cada um dos compartimentos (23), e o duto (13) insufla ar desde o ventilador (22) até o último compartimento (23) da torre (1) e o fluxo do ar de ventilação é insuflado independentemente em cada compartimento (23), pelos furos (25) e o volume de ar insuflado em cada compartimento (23) é controlado manual ou automaticamente por válvula de controle de fluxo, junto a cada um dos furos (25), e no topo da torre (1), tem um nicho (26) com piso formado por placa de passagem (28) com dispositivos (29) tipo "boots", para passagem de cabos, e a placa passagem (28) possui calha circular na periferia e dreno para escoamento de água da chuva.
    • 一种用于通风和散热在通信电线杆内安装和伪装的设备的系统,包括具有圆柱形管状体的塔架(1) ndrico安装在所述杆基底上并具有内部隔间(23)重叠而与门(11)的搁板类型,并且具有在腿的通风机(22); 并且搁架具有充当管道面13的全壁24,并且管道13包括由壁24形成的空间, 塔1的外壳,并且壁24具有与每个隔室23对齐的孔25,并且管道13将来自风扇22的空气吹到空气 - 塔(1)的最后一个隔室(23)和通风空气的流动 在每个隔室(23)中独立地膨胀,通过孔(25)和在每个隔室(23)中吹入的空气体积“ 手动或自动地控制用V的阀的流量控制,与每个孔(25)与所述塔架的顶部的沿(1)具有一个利基(26)与设备通过通道板(28)形成的层 (29),并且通道板(28)在周边具有一个圆形的沟槽和一个用于排出雨水的排水管。
    • 77. 发明申请
    • TUBULAR PYLON AND HINGE ARRANGEMENT
    • 管状圆柱和铰链布置
    • WO2016198980A1
    • 2016-12-15
    • PCT/IB2016/053001
    • 2016-05-23
    • STELLENBOSCH UNIVERSITY
    • LANDMAN, Willem AdolphLARMUTH, James NicholasKOTZE, Johannes Paulus
    • F24J2/52
    • F24S25/70E04H12/08F03D13/20F05B2240/913F05B2240/9152F24S25/10F24S2025/802F24S2030/16Y02E10/47
    • A tubular pylon (1) is made of a deformable material with a support end (11) of the pylon (1) being deformed from a generally circular or elliptical cross-sectional shape to a shape in which two diametrically opposite zones of a wall of the end region of the tubular pylon (1) are flattened to form two generally parallel support zones (12) spaced apart from each other. The tubular pylon (1) is preferably a metal pylon of circular shape in cross-section, generally steel. The deformed end region of the tubular pylon may be either generally rectangular shape or oval in shape. The support zones (12) are provided with aligned holes (14) to accommodate a screw threaded or other fastener (15) passing through them and a spacer sleeve (16) encloses a section thereof and maintains a fixed spacing between the generally parallel support zones (12). Preferably, bushings (18) are press fitted to a component (19) to be hinged to the pylon (1) are co-axial with the fastener (15).
    • 管状塔架(1)由可变形材料制成,其中塔架(1)的支撑端(11)从大致圆形或椭圆形横截面形状变形成其中两个直径相对的 管状塔架(1)的端部区域被平坦化以形成彼此间隔开的两个大致平行的支撑区域(12)。 管状塔架(1)优选是横截面为圆形的金属塔,通常为钢。 管状塔架的变形的端部区域可以是大致矩形形状或椭圆形。 支撑区域(12)设置有对准的孔(14)以容纳通过它们的螺纹或其他紧固件(15),并且间隔套筒(16)包围其一部分并且在大致平行的支撑区域 (12)。 优选地,衬套(18)压配合到组件(19)上,以铰接到与所述紧固件(15)同轴的所述塔架(1)。
    • 79. 发明申请
    • HINGED TOWER SEGMENTS AND TRANSPORT METHOD
    • 铰链塔段和运输方式
    • WO2016055070A1
    • 2016-04-14
    • PCT/DK2015/050296
    • 2015-10-02
    • VESTAS WIND SYSTEMS A/S
    • PEDERSEN, Gunnar K. Storgaard
    • F03D11/04
    • F03D13/20E04B1/34357E04B1/40E04H12/08E04H12/085E04H12/342E04H12/345F03D13/10F03D13/40F05B2230/60Y02E10/728Y02P70/523
    • This application relates to hinged tower segments and transport methods, and particularly to methods and apparatus for transporting and storing hinged segments of steel wind turbine towers. The wind turbine tower comprises a plurality of cylindrical vertical tower sections, which in the finished tower are mounted on top of one another. The vertical section of the tower has a longitudinal axis and comprises a plurality of wind turbine tower segments, the tower segments have vertical and horizontal edges and combine to form a complete vertical tower section by joining along their edges. Adjacent vertical tower sections are joined to each other along the horizontal edges of the wind turbine tower segments. Hinges are secured between tower segments and the tower segments rotated about the hinged axis to make them suitable for transport or storage. A method of assembling a tower section is discussed.
    • 本申请涉及铰链塔段和运输方法,特别涉及运输和存储钢风力发电机塔的铰接段的方法和装置。 风力涡轮机塔架包括多个圆柱形垂直塔架部分,其在完成的塔架中彼此安装。 塔的垂直部分具有纵向轴线并且包括多个风力涡轮机塔架段,塔架段具有垂直和水平边缘,并且通过沿它们的边缘接合而组合形成完整的垂直塔架部分。 相邻的垂直塔段沿着风力涡轮机塔段的水平边缘彼此连接。 铰链固定在塔架段和围绕铰链轴线旋转的塔架段之间,使其适合运输或储存。 讨论了组装塔架部分的方法。
    • 80. 发明申请
    • REINFORCEMENT OF AN ACCESS-WAY TO A TOWER
    • 对塔的加固方式
    • WO2015169968A1
    • 2015-11-12
    • PCT/EP2015/060374
    • 2015-05-11
    • DOXATECH APS
    • KAASGAARD, Steen
    • F03D11/04E04H12/08F03D1/00
    • E04H12/08F03D13/10F03D13/20F03D80/50F05B2240/912Y02E10/728Y02P70/523
    • The present invention relates to a method of installing a doorway frame (40) in a tower segment (10) for a tower (1 10) comprising at least one tower segment (10, 10'), wherein said tower segment (10) comprises a tubular steel wall (1 1 ), and where said method comprises the steps of: - in a first production site assembling a doorway frame (40) and an arched wall section (23) into a doorway wall section (20) by welding said doorway frame (40) and said arched wall section (23) together, said arched wall section (23) having a wall thickness (d 1 ), and defining a rim (24, 25, 26, 27); - at a second production site, cutting a portion of said tubular tower segment (10), to form an opening (20') corresponding in size and form to said doorway wall section (20), said tower segment (10) having wall thickness (d 2 ) being equal to the wall thickness (d 1 ) of the arched wall section (23), said opening (20') defining a rim (14, 15, 16, 17); s - welding the rim (14, 15) of said doorway wall section (20) to said rim (24, 25) defined in said opening (20') cut in said tubular tower segment (10).
    • 本发明涉及一种在包括至少一个塔架段(10,10')的塔架(110)的塔架段(10)中安装门口框架(40)的方法,其中所述塔架段(10)包括 管状钢壁(11),并且其中所述方法包括以下步骤:在第一生产场所中,通过焊接所述第一生产现场将门口框架(40)和拱形壁部分(23)组装到门壁壁部分(20)中, 门壁框架(40)和所述拱形壁部分(23)在一起,所述拱形壁部分(23)具有壁厚(d1),并限定边缘(24,25,26,27); - 在第二生产现场,切割所述管状塔架段(10)的一部分,以形成对应于所述门壁壁部分(20)的尺寸和形状的开口(20'),所述塔架段(10)具有壁厚 (d2)等于所述拱形壁部分(23)的壁厚(d1),所述开口(20')限定边缘(14,15,16,17); - 将所述门壁壁部分(20)的边缘(14,15)焊接到限定在所述管状塔架段(10)中切割的所述开口(20')中的所述边缘(24,25)上。