WO2017092461A1 - 车厢铰接装置及有轨电车 - Google Patents

车厢铰接装置及有轨电车 Download PDF

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Publication number
WO2017092461A1
WO2017092461A1 PCT/CN2016/098044 CN2016098044W WO2017092461A1 WO 2017092461 A1 WO2017092461 A1 WO 2017092461A1 CN 2016098044 W CN2016098044 W CN 2016098044W WO 2017092461 A1 WO2017092461 A1 WO 2017092461A1
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WO
WIPO (PCT)
Prior art keywords
joint bearing
connecting plate
bearing
hinge device
joint
Prior art date
Application number
PCT/CN2016/098044
Other languages
English (en)
French (fr)
Inventor
王树才
林红
安赟
曹志浩
周家林
陈常江
马凯
翟玉祥
姜青霞
Original Assignee
中车四方车辆有限公司
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Filing date
Publication date
Application filed by 中车四方车辆有限公司 filed Critical 中车四方车辆有限公司
Publication of WO2017092461A1 publication Critical patent/WO2017092461A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61GCOUPLINGS; DRAUGHT AND BUFFING APPLIANCES
    • B61G1/00Couplings comprising interengaging parts of different shape or form and having links, bars, pins, shackles, or hooks as coupling means
    • B61G1/10Couplings comprising interengaging parts of different shape or form and having links, bars, pins, shackles, or hooks as coupling means having links or bars coupling or uncoupling by rotating around a vertical axis
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61GCOUPLINGS; DRAUGHT AND BUFFING APPLIANCES
    • B61G1/00Couplings comprising interengaging parts of different shape or form and having links, bars, pins, shackles, or hooks as coupling means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61DBODY DETAILS OR KINDS OF RAILWAY VEHICLES
    • B61D13/00Tramway vehicles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61GCOUPLINGS; DRAUGHT AND BUFFING APPLIANCES
    • B61G5/00Couplings for special purposes not otherwise provided for
    • B61G5/02Couplings for special purposes not otherwise provided for for coupling articulated trains, locomotives and tenders or the bogies of a vehicle; Coupling by means of a single coupling bar; Couplings preventing or limiting relative lateral movement of vehicles

Definitions

  • the present invention relates to traffic vehicles, and more particularly to a car door hinge device and a tram.
  • Tram is a common means of transportation for people to travel daily. Trams are usually provided with multiple compartments, and two adjacent compartments are connected by articulated joints.
  • Chinese Patent No. 971967709 which is separated by a middle compartment.
  • a composite hinge joint for adjacent vehicles of a traffic vehicle the above patent discloses that two adjacent cars are hingedly connected through a middle compartment, and the intermediate compartment has two hinges respectively hinged to the corresponding compartments, and the longitudinal direction between the two compartments Both the lateral loads and the lateral loads are transmitted to each other through the intermediate compartment.
  • the articulated heads on the intermediate compartment and its intermediate compartment on the one hand bear the longitudinal and lateral forces exerted by the carriage, and on the other hand bear the carriage Vertical force.
  • the technical problem to be solved by the present invention is to provide a car door hinge device and a tram, thereby improving the reliability of the tram.
  • the present invention provides a car door hinge device including a carrier frame, a lower hinge assembly, and an upper hinge assembly, the lower hinge assembly including a first joint bearing, a second joint bearing, a first connecting plate, and a second connecting plate, the first joint bearing and the second joint bearing are coaxially disposed at a bottom of the carrying frame, and the first connecting plate is hinged at the second connection by the first joint bearing a second connecting plate is hinged on the carrying frame by the second joint bearing; an upper portion of the carrying frame is provided with an upper mounting shaft, and the upper mounting shaft is provided with a rubber bearing, the upper portion
  • the hinge assembly includes two first links, one second link, two first mounts, and two a second mounting seat, the first mounting seat is provided with a third joint bearing, the second mounting seat is provided with a fourth joint bearing, and one end of the first connecting rod is hinged at the same by the rubber bearing The other end of the first link is hinged to the first mount by the third joint bearing, and the two ends of the
  • an axis of the fourth joint bearing is parallel to an axis of the rubber bearing.
  • the axis of the third joint bearing is spatially staggered with the axis of the rubber bearing.
  • the adjustment link includes a sleeve and two adjusting screws, one port of the sleeve is formed with a left spiral thread, and the other port of the sleeve is formed with a right spiral thread, the adjustment A screw thread is attached in the sleeve.
  • first connecting plate is connected to the inner ring of the first joint bearing
  • the outer ring of the first joint bearing is connected with the second connecting plate
  • the second connecting plate is further The inner ring of the second joint bearing is connected, and the outer ring of the second joint bearing is fixed on the bearing frame.
  • a fifth joint bearing is further disposed between the first connecting plate and the second connecting plate, and the first connecting plate is connected to an outer ring of the fifth joint bearing, and the second connection a first bolt is disposed on the plate, an inner ring of the fifth joint bearing is sleeved on the first bolt, and the fifth joint bearing is sandwiched between the second connecting plate and the head of the first bolt .
  • a connecting barrel is fixed on the first connecting plate, the connecting barrel is formed with a stepped hole, and the connecting barrel is further provided with a flanged structure, and the connecting barrel is inserted in the first joint bearing
  • the outer ring of the fifth joint bearing is caught in the stepped hole;
  • the second connecting plate is disposed on the mounting groove, and the outer ring of the first joint bearing is located in the mounting groove
  • the second connecting plate is fixed on the inner ring of the second joint bearing; the first joint bearing is sandwiched between the flange structure and the second connecting plate.
  • the second joint bearing further includes a fastening nut and a second bolt that are screwed together, and an outer ring and an inner ring of the second joint bearing are clamped on the head of the second bolt and Between the fastening nuts [0014]
  • the present invention also provides a tram, comprising at least two cars, further comprising a car door hinge device as described above, wherein two adjacent cars are connected by the car door hinge device, wherein the car door hinge device The first connecting plate and the second connecting plate are respectively connected to the bottom of the corresponding car, the first mounting seat in the car hinge device is connected to one of the cars, and the second installation in the car hinge device The seat is connected to the other of the cars.
  • the present invention provides a car door hinge device and a tram, by providing a lower hinge assembly at the bottom of the carrier frame, the two connecting plates of the lower hinge assembly are connected to the carrier frame by two coaxial bearing disposed coaxially, the carriage
  • the hinge position is on the same axis, which effectively avoids the bearing frame from generating large torque due to the force, effectively improving the fatigue resistance of the bearing frame.
  • the first connecting rod is matched with the rubber bearing and the third joint bearing, which can satisfy two The requirements of the rotation between the carriages, and the rubber bearings also play a good buffering role.
  • the rubber bearings can play the role of buffering the longitudinal and lateral impact of the carriage, and the elastic bearings are used for the mounting bolts of the rubber bearing and the load-bearing frame.
  • the pin is positioned to avoid the shearing force of the bolt and the connection mode is more reliable; the second link and the fourth joint bearing can alleviate the impact of the lateral displacement of the vehicle and maintain the relative position between the two cars connected to each other stably. Improve the reliability of the tram.
  • FIG. 1 is a schematic structural view of an embodiment of a tram in accordance with the present invention.
  • FIG. 2 is a cross-sectional view of the lower hinge assembly of the tramcar embodiment of the present invention.
  • FIG. 3 is a schematic structural view of an upper hinge assembly in the embodiment of the tram of the present invention.
  • the tram of the present embodiment includes at least two cars 100, and further includes a car door hinge device 200, and two adjacent cars 100 are connected by the car door hinge device 200.
  • the compartment The hinge device 200 includes a carrier frame 1, a lower hinge assembly 2 and an upper hinge assembly 3, the lower hinge assembly 2 including a first joint bearing 21, a second joint bearing 22, a first connecting plate 23 and a second connecting plate 24,
  • the first joint bearing 21 and the second joint bearing 22 are disposed coaxially above and below the bottom of the carrier frame 1, and the first connecting plate 23 is hinged to the second connecting plate by the first joint bearing 21.
  • the second connecting plate 24 is hinged on the carrying frame 1 by the second joint bearing 22; an upper portion of the carrying frame 1 is provided with an upper mounting shaft (not shown), and the upper mounting shaft Having a rubber bearing 11 disposed thereon, the upper hinge assembly 3 includes two first links 31, a second link 32, two first mounts 33, and two of the second mounts 34, a third joint bearing 311 is disposed on the first mounting seat 33, and a fourth joint bearing 321 is disposed on the second mounting seat 34, and one end portion of the first connecting rod 31 is hinged by the rubber bearing 11 On the carrier frame 1, the other end of the first link 31
  • the third joint bearing 311 is hinged to the first mounting seat 33, and both ends of the second connecting rod 32 are hinged between the two second mounting seats 34 through the fourth joint bearing 321 .
  • One of the second mounts 34 is fixed to an upper portion of the carrier frame, the first mount 33 is connected to one of the compartments 100, and the other second mount 34 is connected to the other compartment 100.
  • the first connecting plate 21 and the second connecting plate 22 are respectively connected to the bottoms of the corresponding cars 100.
  • the two adjacent cars 100 in the tram of the present embodiment are connected together by the car door hinge device 200, wherein the bottom of the car 100 is connected by the first connecting plate 23 and the second connecting plate 24, and the first The connecting plate 23 and the second connecting plate 24 are hinged to the carrying frame 1 through the coaxially disposed first joint bearing 21 and the second joint bearing 22, and the two carriages 100 are rotated to generate an angle ⁇ , and the bearing frame 1 is not subjected to traction and system.
  • the longitudinal alternating load such as power is only subjected to the vertical force, and the load is single and has no alternating characteristics, which improves the fatigue resistance of the bearing frame 1.
  • the two first links 31 of the upper hinge assembly 3 form a V-shaped structure to connect one of the cars 100, and the first link 31 is hinged to the carrier frame 1 by a rubber bearing 11, and the rubber bearing 11 has The better cushioning performance effectively reduces the impact force of the car 100 on the load-bearing frame 1.
  • the other car 100 is hinged to the carrier frame 1 through the second link 32, and the second link 32 can control the two cars 100. The distance between them can alleviate the impact of the lateral displacement ⁇ of the compartment 100, and maintain the relative position between the two compartments 100 connected to each other.
  • the first link 31 and the second link 32 are both adjustable length adjustable links.
  • the adjustment link may include a sleeve and two adjusting screws, and one port of the sleeve is formed. There is a left helical thread, and the other port of the sleeve is formed with a right helix Threaded, the adjustment screw is threaded in the sleeve.
  • an axis of the first joint bearing 21, the second joint bearing 22, and the rubber bearing 11 coincide, and an axis of the fourth joint bearing 321 is parallel to an axis of the rubber bearing 11, the third joint bearing
  • the axis of the 311 is spatially staggered with the axis of the rubber bearing 11.
  • the upper portion of the carrier frame 1 is provided with a mounting bracket 12, the mounting bracket 12 is formed with the upper mounting shaft, and the mounting bracket 12 is provided with a vertical plate 121, the second The mount 34 is fixed to the vertical plate 121.
  • the first connecting plate 23 is connected to the inner ring 211 of the first joint bearing 21, and the outer ring 212 of the first joint bearing 21 is
  • the second connecting plate 24 is connected, the second connecting plate 24 is also connected to the inner ring 221 of the second joint bearing 22, and the outer ring 222 of the second joint bearing 22 is fixed on the carrying frame 1.
  • first connecting plate 23 and the second connecting plate 24 are both connected to the first joint bearing 21, so that an alternating load such as traction force and braking force generated by the car 100 passes through the first joint bearing 21 from the first connecting plate 23 Directly transmitted to the second connecting plate 24 without the aid of the carrier frame 1, and after the first connecting plate 23 and the second connecting plate 24 are hinged together by the first joint bearing 21, the second connecting plate 24 passes through the second joint bearing 22
  • the bearing frame 1 is only subjected to the vertical force, and the load is single and has no alternating characteristics.
  • a fifth joint bearing 25 is further disposed between the first connecting plate 23 and the second connecting plate 24,
  • the first connecting plate 23 is connected to the outer ring 252 of the fifth joint bearing 25, and the second connecting plate 24 is provided with a first bolt 253, and the inner ring 251 of the fifth joint bearing 25 is sleeved
  • the first joint bearing 25 is sandwiched between the second connecting plate 24 and the head of the first bolt 253.
  • the first joint bearing 21 is a main bearing bearing, which is transmitted.
  • Most traction and braking force, fifth The joint bearing 25 is an auxiliary bearing bearing to play a central positioning of the second joint bearing 22, thereby making the overall structure more compact and the pressing force and the radial bearing capacity are stronger, saving the first connecting plate 23 and the second.
  • the first connecting plate 23 is fixed with a connecting cylinder 231
  • the connecting cylinder 231 is formed with a stepped hole (not shown)
  • the connecting cylinder 231 is also provided with a flange a structure (not shown)
  • the connecting cylinder 231 is inserted in the inner ring 211 of the first joint bearing 21, and the outer ring 252 of the fifth joint bearing 25 is caught in the stepped hole;
  • the connecting plate 24 is disposed on the mounting groove (not shown), and the outer ring 212 of the first joint bearing 21 is located in the mounting groove.
  • the second connecting plate 24 is fixed on the inner ring 221 of the second joint bearing 22; the first joint bearing 21 is sandwiched between the flange structure and the second connecting plate 24;
  • the two-joint bearing 22 further includes a fastening nut 224 and a second bolt 223 that are screwed together, an outer ring 222 and an inner ring 221 of the second joint bearing 22 are sandwiched between the head of the second bolt 223 and the
  • the nut 224 is tightened, and in order to provide better support and limit to the inner ring 221, the head of the second bolt 223 forms a first curved surface structure (not shown), and the inside of the second joint bearing 22
  • the ring 221 forms a second arcuate structure (not shown) that mates with the first curved surface structure.
  • the inner ring and the outer ring of the first joint bearing 21, the second joint bearing 22, and the fifth joint bearing 25 disposed at the lower portion of the carrier frame 1 are effectively tightened together by the outer structure, thereby causing the first joint bearing 21
  • the second joint bearing 22 and the fifth joint bearing 25 are capable of withstanding a large load to meet the joint strength requirement between the cars 100.
  • the vehicle hinge device and the tram provided by the present invention, by providing a lower hinge assembly at the bottom of the carrier frame, the two connecting plates of the lower hinge assembly are connected to the carrier frame by two coaxial bearing disposed coaxially, the compartment
  • the hinge position is on the same axis, which effectively avoids the bearing frame from generating large torque due to the force, effectively improving the fatigue resistance of the bearing frame.
  • the first connecting rod is matched with the rubber bearing and the third joint bearing, which can satisfy two The requirements of the rotation between the carriages, and the rubber bearings also play a good buffering role.
  • the rubber bearings can play the role of buffering the longitudinal and lateral impact of the carriage, and the elastic bearings are used for the mounting bolts of the rubber bearing and the load-bearing frame.
  • the pin is positioned to avoid the shearing force of the bolt and the connection mode is more reliable; the second link and the fourth joint bearing can alleviate the impact of the lateral displacement of the vehicle and maintain the relative position between the two cars connected to each other stably. Improve the reliability of the tram.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transportation (AREA)
  • Pivots And Pivotal Connections (AREA)
  • Hinges (AREA)

Abstract

一种车厢铰接装置及有轨电车。车厢铰接装置包括承载框架(1)、下部铰接组件(2)和上部铰接组件(3),下部铰接组件(2)包括第一关节轴承(21)、第二关节轴承(22)、第一连接板(23)和第二连接板(24)。连接板通过关节轴承铰接在承载框架上。承载框架(1)的上部设置有上安装轴,上安装轴上设置有橡胶轴承(11),上部铰接组件(3)包括两根第一连杆(31)、一根第二连杆(32)、两个第一安装座(33)和两个第二安装座(34)。第一连杆(31)的一端部通过橡胶轴承(11)铰接在承载框架(1)上,第一连杆(31)的另一端部通过第三关节轴承(311)与第一安装座(33)铰接,第二连杆(32)的两端通过第四关节轴承(321)铰接在两个第二安装座(34)之间,其中一第二安装座(34)固定在承载框架(1)的上部。该车厢铰接装置提高了有轨电车的可靠性。

Description

发明名称:车厢铰接装置及有轨电车
技术领域
[0001] 本发明涉及交通车辆, 尤其涉及一种车厢铰接装置及有轨电车。
背景技术
[0002] 有轨电车是人们日常出行的常用交通工具, 有轨电车通常设置有多个车厢, 相 邻两个车厢通过铰接接头连接, 中国专利号 971967709, 公幵了一种由中间舱分 隔的交通车辆的相邻车厢用的复合式铰链接头, 上述专利公幵了相邻的两个车 厢通过中间舱铰接连接, 中间舱具有两个铰接头分别铰接对应的车厢, 两个车 厢之间的纵向和横向载荷均需通过中间舱相互传递, 在实际使用过程中, 中间 舱及其中间舱上的铰接头一方面承受车厢对其施加的纵向力和横向力, 另一方 面还承受车厢对其施加的垂向力。
技术问题
[0003] 也就是说, 两个车厢之间产生的力均施加给中间舱并通过中间舱进行传递, 使 得中间舱的受力情况复杂抗疲劳性能较差, 容易发生损坏, 导致有轨电车的可 靠性较低。
问题的解决方案
技术解决方案
[0004] 本发明所要解决的技术问题是: 提供一种车厢铰接装置及有轨电车, 实现提高 有轨电车的可靠性。
[0005] 为实现上述目的, 本发明提供一种车厢铰接装置, 包括承载框架、 下部铰接组 件和上部铰接组件, 所述下部铰接组件包括第一关节轴承、 第二关节轴承、 第 一连接板和第二连接板, 所述第一关节轴承和所述第二关节轴承上下同轴设置 在所述承载框架的底部, 所述第一连接板通过所述第一关节轴承铰接在所述第 二连接板上, 所述第二连接板通过所述第二关节轴承铰接在所述承载框架上; 所述承载框架的上部设置有上安装轴, 所述上安装轴上设置有橡胶轴承, 所述 上部铰接组件包括两根第一连杆、 一根第二连杆、 两个第一安装座和两个所述 第二安装座, 所述第一安装座上设置有第三关节轴承, 所述第二安装座上设置 有第四关节轴承, 所述第一连杆的一端部通过所述橡胶轴承铰接在所述承载框 架上, 所述第一连杆的另一端部通过所述第三关节轴承与所述第一安装座铰接 , 所述第二连杆的两端通过所述第四关节轴承铰接在两个所述第二安装座之间 , 其中一所述第二安装座固定在所述承载框架的上部, 所述第一连杆和所述第 二连杆均为长度可调的调节连杆。
[0006] 进一步的, 所述第一关节轴承、 所述第二关节轴承和所述橡胶轴承的轴线重合
[0007] 进一步的, 所述第四关节轴承的轴线与所述橡胶轴承的轴线平行。
[0008] 进一步的, 所述第三关节轴承的轴线与所述橡胶轴承的轴线空间交错设置。
[0009] 进一步的, 所述调节连杆包括套筒和两根调节螺杆, 所述套筒的一端口形成有 左螺旋螺纹, 所述套筒的另一端口形成有右螺旋螺纹, 所述调节螺杆螺纹连接 在所述套筒中。
[0010] 进一步的, 所述第一连接板与所述第一关节轴承的内圈连接, 所述第一关节轴 承的外圈与所述第二连接板连接, 所述第二连接板还与所述第二关节轴承的内 圈连接, 所述第二关节轴承的外圈固定在所述承载框架上。
[0011] 进一步的, 所述第一连接板和第二连接板之间还设置有第五关节轴承, 所述第 一连接板与所述第五关节轴承的外圈连接, 所述第二连接板上设置有第一螺栓 , 所述第五关节轴承的内圈套在所述第一螺栓上, 所述第五关节轴承夹在所述 第二连接板和所述第一螺栓的头部之间。
[0012] 进一步的, 所述第一连接板上固定有连接筒, 所述连接筒形成有阶梯孔, 所述 连接筒还设置有翻边结构, 所述连接筒插在所述第一关节轴承的内圈中, 所述 第五关节轴承的外圈卡在所述阶梯孔中; 所述第二连接板上幵设在有安装槽, 所述第一关节轴承的外圈位于所述安装槽中, 所述第二连接板固定在所述第二 关节轴承的内圈上; 所述第一关节轴承夹在所述翻边结构和所述第二连接板之 间。
[0013] 进一步的, 所述第二关节轴承还包括螺纹连接在一起的紧固螺母和第二螺栓, 所述第二关节轴承的外圈和内圈夹在所述第二螺栓的头部和所述紧固螺母之间 [0014] 本发明还提供一种有轨电车, 包括至少两个车厢, 还包括如上述车厢铰接装置 , 相邻两个所述车厢通过所述车厢铰接装置连接, 其中, 所述车厢铰接装置中 的第一连接板和第二连接板分别连接对应的所述车厢的底部, 所述车厢铰接装 置中的第一安装座连接在其中一所述车厢上, 所述车厢铰接装置中的第二安装 座连接在另一所述车厢上。
发明的有益效果
有益效果
[0015] 本发明提供的车厢铰接装置及有轨电车, 通过在承载框架的底部设置下部铰接 组件, 下部铰接组件的两个连接板通过同轴设置的两个关节轴承连接在承载框 架上, 车厢的铰接位置在同一轴线上, 有效的避免了承载框架因受力而产生较 大扭矩, 有效的提高了承载框架的抗疲劳性能, 第一连杆配合橡胶轴承和第三 关节轴承, 可以满足两个车厢之间的转动动作的要求, 而橡胶轴承还起到较好 的缓冲作用, 橡胶轴承可起到缓冲车厢纵向及横向冲击的作用, 且橡胶轴承与 承载框架的安装螺栓处均使用弹性圆柱销进行定位, 可避免螺栓受剪切力, 连 接方式更为可靠; 第二连杆配合第四关节轴承能够缓和车辆横向位移吋的冲击 并保持相连接两车厢之间的相对位置的保持稳定, 提高了有轨电车的可靠性。 对附图的简要说明
附图说明
[0016] 图 1为本发明有轨电车实施例的结构示意图;
[0017] 图 2为本发明有轨电车实施例中下部铰接组件的剖视图;
[0018] 图 3为本发明有轨电车实施例中上部铰接组件的结构示意图。
实施该发明的最佳实施例
本发明的最佳实施方式
[0019] 下面结合附图和具体实施方式对本发明做进一步详细说明。
[0020] 如图 1-图 3所示, 本实施例有轨电车, 包括至少两个车厢 100, 还包括车厢铰接 装置 200, 相邻两个所述车厢 100通过所述车厢铰接装置 200连接。 具体的, 车厢 铰接装置 200包括承载框架 1、 下部铰接组件 2和上部铰接组件 3, 所述下部铰接 组件 2包括第一关节轴承 21、 第二关节轴承 22、 第一连接板 23和第二连接板 24, 所述第一关节轴承 21和所述第二关节轴承 22上下同轴设置在所述承载框架 1的底 部, 所述第一连接板 23通过所述第一关节轴承 21铰接在所述第二连接板 24上, 所述第二连接板 24通过所述第二关节轴承 22铰接在所述承载框架 1上; 所述承载 框架 1的上部设置有上安装轴 (未图示) , 所述上安装轴上设置有橡胶轴承 11, 所述上部铰接组件 3包括两根第一连杆 31、 一根第二连杆 32、 两个第一安装座 33 和两个所述第二安装座 34, 所述第一安装座 33上设置有第三关节轴承 311, 所述 第二安装座 34上设置有第四关节轴承 321, 所述第一连杆 31的一端部通过所述橡 胶轴承 11铰接在所述承载框架 1上, 所述第一连杆 31的另一端部通过所述第三关 节轴承 311与所述第一安装座 33铰接, 所述第二连杆 32的两端通过所述第四关节 轴承 321铰接在两个所述第二安装座 34之间, 其中一所述第二安装座 34固定在所 述承载框架的上部, 第一安装座 33连接在其中一所述车厢 100上, 另一第二安装 座 34连接在另一所述车厢 100上, 而第一连接板 21和第二连接板 22分别连接对应 的所述车厢 100的底部。
具体而言, 本实施例有轨电车中相邻的两个车厢 100通过车厢铰接装置 200连接 在一起, 其中, 车厢 100的底部通过第一连接板 23和第二连接板 24连接, 而第一 连接板 23和第二连接板 24通过同轴设置的第一关节轴承 21和第二关节轴承 22铰 接在承载框架 1上, 在两个车厢 100转动产生角度吋, 承载框架 1不承受牵引力和 制动力等纵向交变载荷, 只承受垂向力, 载荷单一且无交变特性, 提高了承载 框架 1的抗疲劳性能。 同吋, 上部铰接组件 3中的两根第一连杆 31形成 V型结构连 接其中一车厢 100, 而第一连杆 31又通过橡胶轴承 11铰接在所述承载框架 1上, 橡胶轴承 11具有较好的缓冲性能, 有效的减缓车厢 100对承载框架 1产生的冲击 力, 同吋, 另一个车厢 100通过第二连杆 32铰接在承载框架 1, 第二连杆 32能够 控制两个车厢 100之间的距离, 可缓和车厢 100横向位移吋的冲击, 保持相连接 的两个车厢 100之间的相对位置的保持稳定。 其中, 所述第一连杆 31和所述第二 连杆 32均为长度可调的调节连杆, 例如: 调节连杆可以包括套筒和两根调节螺 杆, 所述套筒的一端口形成有左螺旋螺纹, 所述套筒的另一端口形成有右螺旋 螺纹, 所述调节螺杆螺纹连接在所述套筒中。 另外, 第一关节轴承 21、 所述第 二关节轴承 22和所述橡胶轴承 11的轴线重合, 所述第四关节轴承 321的轴线与所 述橡胶轴承 11的轴线平行, 所述第三关节轴承 311的轴线与所述橡胶轴承 11的轴 线空间交错设置。 而为了方便安装上部铰接组件 3, 承载框架 1的上部设置有安 装支架 12, 所述安装支架 12上形成有所述上安装轴, 所述安装支架 12上设置有 立板 121, 所述第二安装座 34固定在所述立板 121上。
进一步的, 为了更有效的提高铰接连接强度和安全系数, 所述第一连接板 23与 所述第一关节轴承 21的内圈 211连接, 所述第一关节轴承 21的外圈 212与所述第 二连接板 24连接, 所述第二连接板 24还与所述第二关节轴承 22的内圈 221连接, 所述第二关节轴承 22的外圈 222固定在所述承载框架 1上。 具体的, 第一连接板 2 3和第二连接板 24均连接在第一关节轴承 21上, 使得车厢 100产生的牵引力和制 动力等交变载荷通过第一关节轴承 21从第一连接板 23直接传递到第二连接板 24 上, 无需借助承载框架 1, 而第一连接板 23和第二连接板 24通过第一关节轴承 21 铰接在一起后, 第二连接板 24通过第二关节轴承 22铰接在承载框架 1上, 故承载 框架 1仅仅承受垂向力, 载荷单一且无交变特征; 优选的, 第一连接板 23和第二 连接板 24之间还设置有第五关节轴承 25, 所述第一连接板 23与所述第五关节轴 承 25的外圈 252连接, 所述第二连接板 24上设置有第一螺栓 253, 所述第五关节 轴承 25的内圈 251套在所述第一螺栓 253上, 所述第五关节轴承 25夹在所述第二 连接板 24和所述第一螺栓 253的头部之间, 具体的, 第一关节轴承 21为主要承载 轴承, 传递大部分的牵引力和制动力, 第五关节轴承 25为辅助承载轴承以起到 对第二关节轴承 22产生中心定位的作用, 从而使得整体结构更紧凑且压紧力及 径向承载能力更强, 在节省第一连接板 23和第二连接板 24铰接连接空间的同吋 又可提高第一连接板 23和第二连接板 24之间径向铰接连接的铰接连接强度和安 全系数。 另外, 为了提高关节轴承的结构强度和可靠性, 第一连接板 23上固定 有连接筒 231, 所述连接筒 231形成有阶梯孔 (未图示) , 所述连接筒 231还设置 有翻边结构 (未图示) , 所述连接筒 231插在所述第一关节轴承 21的内圈 211中 , 所述第五关节轴承 25的外圈 252卡在所述阶梯孔中; 所述第二连接板 24上幵设 在有安装槽 (未图示) , 所述第一关节轴承 21的外圈 212位于所述安装槽中, 所 述第二连接板 24固定在所述第二关节轴承 22的内圈 221上; 所述第一关节轴承 21 夹在所述翻边结构和所述第二连接板 24之间; 同样的, 第二关节轴承 22还包括 螺纹连接在一起的紧固螺母 224和第二螺栓 223, 所述第二关节轴承 22的外圈 222 和内圈 221夹在所述第二螺栓 223的头部和所述紧固螺母 224之间, 而为了对内圈 221提供更好的支撑和限位, 第二螺栓 223的头部形成第一弧面结构 (未图示) , 所述第二关节轴承 22的内圈 221形成与所述第一弧面结构配合的第二弧面结构 (未图示) 。 具体的, 设置在承载框架 1下部的第一关节轴承 21、 第二关节轴承 22和第五关节轴承 25的内圈和外圈均被外部结构有效的加紧在一起, 从而使得 第一关节轴承 21、 第二关节轴承 22和第五关节轴承 25能够承受较大的载荷, 以 满足车厢 100之间的连接强度要求。
[0023] 本发明提供的车厢铰接装置及有轨电车, 通过在承载框架的底部设置下部铰接 组件, 下部铰接组件的两个连接板通过同轴设置的两个关节轴承连接在承载框 架上, 车厢的铰接位置在同一轴线上, 有效的避免了承载框架因受力而产生较 大扭矩, 有效的提高了承载框架的抗疲劳性能, 第一连杆配合橡胶轴承和第三 关节轴承, 可以满足两个车厢之间的转动动作的要求, 而橡胶轴承还起到较好 的缓冲作用, 橡胶轴承可起到缓冲车厢纵向及横向冲击的作用, 且橡胶轴承与 承载框架的安装螺栓处均使用弹性圆柱销进行定位, 可避免螺栓受剪切力, 连 接方式更为可靠; 第二连杆配合第四关节轴承能够缓和车辆横向位移吋的冲击 并保持相连接两车厢之间的相对位置的保持稳定, 提高了有轨电车的可靠性。
[0024] 最后应说明的是: 以上实施例仅用以说明本发明的技术方案, 而非对其限制; 尽管参照前述实施例对本发明进行了详细的说明, 本领域的普通技术人员应当 理解: 其依然可以对前述各实施例所记载的技术方案进行修改, 或者对其中部 分技术特征进行等同替换; 而这些修改或者替换, 并不使相应技术方案的本质 脱离本发明各实施例技术方案的精神和范围。

Claims

权利要求书
[权利要求 1] 一种车厢铰接装置, 其特征在于, 包括承载框架、 下部铰接组件和上 部铰接组件, 所述下部铰接组件包括第一关节轴承、 第二关节轴承、 第一连接板和第二连接板, 所述第一关节轴承和所述第二关节轴承上 下同轴设置在所述承载框架的底部, 所述第一连接板通过所述第一关 节轴承铰接在所述第二连接板上, 所述第二连接板通过所述第二关节 轴承铰接在所述承载框架上; 所述承载框架的上部设置有上安装轴, 所述上安装轴上设置有橡胶轴承, 所述上部铰接组件包括两根第一连 杆、 一根第二连杆、 两个第一安装座和两个所述第二安装座, 所述第 一安装座上设置有第三关节轴承, 所述第二安装座上设置有第四关节 轴承, 所述第一连杆的一端部通过所述橡胶轴承铰接在所述承载框架 上, 所述第一连杆的另一端部通过所述第三关节轴承与所述第一安装 座铰接, 所述第二连杆的两端通过所述第四关节轴承铰接在两个所述 第二安装座之间, 其中一所述第二安装座固定在所述承载框架的上部 , 所述第一连杆和所述第二连杆均为长度可调的调节连杆。
[权利要求 2] 根据权利要求 1所述的车厢铰接装置, 其特征在于, 所述第一关节轴 承、 所述第二关节轴承和所述橡胶轴承的轴线重合。
[权利要求 3] 根据权利要求 1所述的车厢铰接装置, 其特征在于, 所述第四关节轴 承的轴线与所述橡胶轴承的轴线平行。
[权利要求 4] 根据权利要求 1所述的车厢铰接装置, 其特征在于, 所述第三关节轴 承的轴线与所述橡胶轴承的轴线空间交错设置。
[权利要求 5] 根据权利要求 1所述的车厢铰接装置, 其特征在于, 所述调节连杆包 括套筒和两根调节螺杆, 所述套筒的一端口形成有左螺旋螺纹, 所述 套筒的另一端口形成有右螺旋螺纹, 所述调节螺杆螺纹连接在所述套 筒中。
[权利要求 6] 根据权利要求 1所述的车厢铰接装置, 其特征在于, 所述第一连接板 与所述第一关节轴承的内圈连接, 所述第一关节轴承的外圈与所述第 二连接板连接, 所述第二连接板还与所述第二关节轴承的内圈连接, 所述第二关节轴承的外圈固定在所述承载框架上。
根据权利要求 6所述的车厢铰接装置, 其特征在于, 所述第一连接板 和第二连接板之间还设置有第五关节轴承, 所述第一连接板与所述第 五关节轴承的外圈连接, 所述第二连接板上设置有第一螺栓, 所述第 五关节轴承的内圈套在所述第一螺栓上, 所述第五关节轴承夹在所述 第二连接板和所述第一螺栓的头部之间。
根据权利要求 7所述的车厢铰接装置, 其特征在于, 所述第一连接板 上固定有连接筒, 所述连接筒形成有阶梯孔, 所述连接筒还设置有翻 边结构, 所述连接筒插在所述第一关节轴承的内圈中, 所述第五关节 轴承的外圈卡在所述阶梯孔中; 所述第二连接板上幵设在有安装槽, 所述第一关节轴承的外圈位于所述安装槽中, 所述第二连接板固定在 所述第二关节轴承的内圈上; 所述第一关节轴承夹在所述翻边结构和 所述第二连接板之间。
根据权利要求 6所述的车厢铰接装置, 其特征在于, 所述第二关节轴 承还包括螺纹连接在一起的紧固螺母和第二螺栓, 所述第二关节轴承 的外圈和内圈夹在所述第二螺栓的头部和所述紧固螺母之间。
一种有轨电车, 包括至少两个车厢, 其特征在于, 还包括如权利要求 1-9任一所述的车厢铰接装置, 相邻两个所述车厢通过所述车厢铰接 装置连接, 其中, 所述车厢铰接装置中的第一连接板和第二连接板分 别连接对应的所述车厢的底部, 所述车厢铰接装置中的第一安装座连 接在其中一所述车厢上, 所述车厢铰接装置中的第二安装座连接在另 一所述车厢上。
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