CN209881303U - Mobile cable and wire tube support structure - Google Patents
Mobile cable and wire tube support structure Download PDFInfo
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- CN209881303U CN209881303U CN201920989321.7U CN201920989321U CN209881303U CN 209881303 U CN209881303 U CN 209881303U CN 201920989321 U CN201920989321 U CN 201920989321U CN 209881303 U CN209881303 U CN 209881303U
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Abstract
Description
技术领域technical field
本实用新型涉及建筑施工工程领域,特指一种移动式线缆、线管支架结构。The utility model relates to the field of building construction engineering, in particular to a mobile cable and wire pipe support structure.
背景技术Background technique
在建筑施工现场,线缆、线管的敷设往往都是人工拖动进行的,即人工将线缆、线管拖拽到敷设区域,再将线缆、线管放到线槽内,拖拽的过程中,线缆、线管与地面摩擦容易损坏线缆、线管,另外由于线缆、线管的重量较大,需要耗费许多的人力。At the construction site, the laying of cables and wire pipes is often carried out by manual dragging, that is, the cables and wire pipes are manually dragged to the laying area, and then the cables and wire pipes are placed in the wire trough and dragged. During the process, the friction between the cable and the wire tube and the ground is easy to damage the cable and the wire tube. In addition, due to the heavy weight of the cable and the wire tube, it takes a lot of manpower.
对于固定式的线缆、线管,比如固定式电缆,其只能敷设到电柜电箱之间,然而施工现场中,大多数的用电、用水等设备都会随着施工的需要而进行移动,固定式的线缆、线管的弊端就显现出来了,不能随时进行移动以满足施工需要。For fixed cables and conduits, such as fixed cables, they can only be laid between electric cabinets and electric boxes. However, in the construction site, most of the equipment such as electricity and water will be moved according to the needs of the construction. , the disadvantages of fixed cables and wire tubes are revealed, and they cannot be moved at any time to meet construction needs.
实用新型内容Utility model content
本实用新型的目的在于克服现有技术的缺陷,提供一种移动式线缆、线管支架结构,解决现有的人工拖拽线缆、线管过程中因摩擦而容易损坏线缆、线管和需要耗费许多人力的问题,还用于解决固定式线缆、线管不能移动而无法满足施工需要的问题。The purpose of the utility model is to overcome the defects of the prior art, provide a mobile cable and wire tube support structure, and solve the problem that the cables and wire tubes are easily damaged due to friction in the process of manually dragging cables and wire tubes. It is also used to solve the problem that fixed cables and wire tubes cannot be moved and cannot meet the construction needs.
实现上述目的的技术方案是:The technical scheme for realizing the above-mentioned purpose is:
本实用新型提供了一种移动式线缆、线管支架结构,包括:The utility model provides a mobile cable and wire tube support structure, comprising:
拖架本体,内部形成有供线缆、线管穿过的贯穿孔;以及The main body of the bracket is formed with through holes for cables and wire tubes to pass through; and
设于所述拖架本体两侧的支腿,通过所述支腿支撑所述拖架本体,且所述支腿的底部装设有可自由转动的轮子,通过所述轮子的转动带动所述拖架本体进行移动。The outriggers arranged on both sides of the trailer body support the trailer body through the legs, and the bottom of the legs is equipped with freely rotatable wheels, and the rotation of the wheels drives the The carriage body moves.
本实用新型的支架结构,套设在需敷设的线缆、线管上,通过支腿及轮子支撑在承载面上并可沿承载面进行移动,一方面避免了线缆、线管因摩擦而容易损坏的问题,另一方面轮子的移动可大大地节省了敷设所需的人力。在施工现场,可根据施工需要而将线缆、线管移动至所需位置,解决了固定式线缆、线管不能随时移动以满足施工需要的问题。The bracket structure of the utility model is sleeved on the cables and wire pipes to be laid, supported on the bearing surface by legs and wheels and can move along the bearing surface. The problem of easy damage, on the other hand, the movement of the wheels can greatly save the manpower required for laying. On the construction site, the cables and wire tubes can be moved to the required positions according to the construction needs, which solves the problem that the fixed cables and wire tubes cannot be moved at any time to meet the construction needs.
本实用新型移动式线缆、线管支架结构的进一步改进在于,所述支腿的端部以可转动的方式安装于所述拖架本体的侧部,通过转动调节可使得两侧的支腿的底部向相互远离的方向移动,从而实现所述支腿的支撑角度可调。The further improvement of the structure of the mobile cable and wire tube bracket of the present invention lies in that the ends of the legs are rotatably mounted on the sides of the trailer body, and the legs on both sides can be adjusted by rotation The bottoms of the legs move away from each other, so that the support angle of the legs can be adjusted.
本实用新型移动式线缆、线管支架结构的进一步改进在于,所述拖架本体的侧部固设有安装框,所述安装框内装设有与所述拖架本体的侧部相平行设置的连接轴;The further improvement of the structure of the mobile cable and wire pipe support of the utility model lies in that the side of the bracket body is fixed with an installation frame, and the installation frame is equipped with a frame parallel to the side of the bracket body. the connecting shaft;
所述支腿的端部开设一连接孔,通过所述连接孔套设于所述连接轴上,且所述支腿的端部可绕所述连接轴进行转动调节。A connecting hole is provided at the end of the supporting leg, and is sheathed on the connecting shaft through the connecting hole, and the end of the supporting leg can be rotated and adjusted around the connecting shaft.
本实用新型移动式线缆、线管支架结构的进一步改进在于,所述支腿的相对两侧与所述安装框上对应的侧框之间支撑连接有支撑弹簧,通过两侧的支撑弹簧支撑所述支腿的端部并使所述支腿呈倾斜状设置。The further improvement of the structure of the mobile cable and wire pipe support of the utility model lies in that support springs are connected between the opposite sides of the legs and the corresponding side frames on the installation frame, and are supported by the support springs on both sides. The ends of the legs are arranged so that the legs are inclined.
本实用新型移动式线缆、线管支架结构的进一步改进在于,所述支撑弹簧有多个,且沿所述支腿的侧部间隔布设。The further improvement of the structure of the mobile cable and wire pipe support of the utility model lies in that there are multiple support springs arranged at intervals along the sides of the legs.
本实用新型移动式线缆、线管支架结构的进一步改进在于,所述支腿的长度可调节。The further improvement of the structure of the mobile cable and wire tube bracket of the utility model lies in that the length of the legs can be adjusted.
本实用新型移动式线缆、线管支架结构的进一步改进在于,所述支腿包括连接于所述拖架本体侧部的第一套管和部分插入所述第一套管内的第二套管,通过调节所述第二套管插入所述第一套管内部分的长度以实现调节所述支腿的长度,且在调节好后固定连接所述第二套管和所述第一套管。The further improvement of the mobile cable and wire tube support structure of the utility model is that the legs include a first sleeve connected to the side of the trailer body and a second sleeve partially inserted into the first sleeve Adjusting the length of the leg is achieved by adjusting the length of the second sleeve inserted into the first sleeve, and after the adjustment, the second sleeve and the first sleeve are fixedly connected.
本实用新型移动式线缆、线管支架结构的进一步改进在于,所述支腿包括连接于所述拖架本体侧部的内螺纹套筒和螺合于所述内螺纹套筒的螺杆,通过旋拧所述螺杆以使所述螺杆旋入所述内螺纹套筒内或从所述内螺纹套筒内旋出以实现调节所述支腿的长度。The further improvement of the structure of the mobile cable and wire tube support of the utility model is that the legs include an internally threaded sleeve connected to the side of the trailer body and a screw screw screwed to the internally threaded sleeve. The screw rod is screwed so that the screw rod is screwed into the inner threaded sleeve or screwed out from the inner threaded sleeve to adjust the length of the legs.
本实用新型移动式线缆、线管支架结构的进一步改进在于,所述轮子处安装有制动机构以固定所述轮子。The further improvement of the mobile cable and wire pipe support structure of the utility model lies in that a brake mechanism is installed at the wheel to fix the wheel.
附图说明Description of drawings
图1为本实用新型移动式线缆、线管支架结构支撑线缆、线管的结构示意图。Fig. 1 is a schematic diagram of the structure of the mobile cable and wire tube bracket structure supporting the cables and wire tubes of the present invention.
图2为本实用新型移动式线缆、线管支架结构的正视图。Fig. 2 is a front view of the structure of the mobile cable and wire tube bracket of the utility model.
图3为本实用新型移动式线缆、线管支架结构的侧视图。Fig. 3 is a side view of the structure of the mobile cable and wire tube bracket of the present invention.
图4为本实用新型移动式线缆、线管支架结构中支腿及安装框的剖视图。Fig. 4 is a cross-sectional view of the supporting legs and the mounting frame in the mobile cable and wire tube support structure of the present invention.
图5为本实用新型移动式线缆、线管支架结构中轮子及制动机构的结构示意图。Fig. 5 is a structural schematic diagram of the wheels and the braking mechanism in the mobile cable and wire tube support structure of the present invention.
具体实施方式Detailed ways
下面结合附图和具体实施例对本实用新型作进一步说明。Below in conjunction with accompanying drawing and specific embodiment the utility model is further described.
参阅图1,本实用新型提供了一种移动式线缆、线管支架结构,用于提高线缆、线管的敷设效率,减少需要的人力,保护线缆、线管在拖动过程中的完整性,施工当中可随意移动,从而满足施工需求。本实用新型通过支腿将拖架本体以及线缆、线管支撑起来以脱离承载面,且支腿与拖架本体连接的端部为可转动地连接,从而使得支腿的支撑角度可调节,进而在支撑线缆、线管时,调节较大的支撑角度可使得两个支腿能够稳定地支撑拖架本体及线缆、线管。进一步地,支腿可转动的两侧与安装框之间支撑连接有支撑弹簧,通过支撑弹簧的弹性支撑,可使得支腿在移动过程中,能够缓解一定的震动,进一步提高支架结构整体的稳定性。支撑弹簧还使得支腿的支撑角度自动调节,在线缆、线管穿过贯穿孔后,线缆、线管的重力作用于拖架本体,进而使得拖架本体向下压,支腿倾斜的支撑着拖架本体,从而该压力作用于支腿的可转动的端部,配合两侧支撑弹簧的变形调节,可使得支腿自动地支撑于一较适合的且稳定的支撑角度。在拖拽过程中,可通过轮子的滚动来方便敷设,即使是较重的线缆、线管,也无需耗费许多人力。在拖拽到位后,利用制动机构锁住轮子,避免轮子随意移动,需要移动时,只需要收起制动机构利用轮子进行移动即可。下面结合附图对本实用新型移动式线缆、线管支架结构进行说明。Referring to Figure 1, the utility model provides a mobile cable and wire tube support structure, which is used to improve the laying efficiency of cables and wire tubes, reduce the required manpower, and protect the cables and wire tubes during the dragging process. Integrity, it can be moved freely during construction to meet construction needs. The utility model supports the trailer body, cables and wire pipes through the legs to separate from the bearing surface, and the ends of the legs connected to the frame body are rotatably connected, so that the supporting angle of the legs can be adjusted. Furthermore, when supporting cables and wire pipes, adjusting a larger support angle can enable the two legs to stably support the main body of the trailer and the cables and wire pipes. Furthermore, a support spring is connected between the rotatable sides of the support leg and the installation frame. Through the elastic support of the support spring, a certain vibration can be alleviated during the movement of the support leg, and the overall stability of the support structure can be further improved. sex. The support spring also makes the support angle of the legs automatically adjusted. After the cables and wire tubes pass through the through holes, the gravity of the cables and wire tubes acts on the trailer body, which makes the trailer body press down and the legs tilt. The bracket body is supported, so that the pressure acts on the rotatable ends of the legs, and with the deformation adjustment of the support springs on both sides, the legs can be automatically supported at a more suitable and stable support angle. During the dragging process, the wheels can be rolled to facilitate laying, and even heavy cables and wire tubes do not need to consume a lot of manpower. After being dragged in place, use the braking mechanism to lock the wheels to prevent the wheels from moving randomly. When you need to move, you only need to put away the braking mechanism and use the wheels to move. Below in conjunction with accompanying drawing, the utility model mobile cable, line pipe support structure is described.
参阅图1,显示了本实用新型移动式线缆、线管支架结构支撑线缆、线管的结构示意图。参阅图2,显示了本实用新型移动式线缆、线管支架结构的正视图。下面结合图1和图2,对本实用新型移动式线缆、线管支架结构进行说明。Referring to FIG. 1 , it shows a structural schematic view of the mobile cable and wire tube bracket structure supporting the cables and wire tubes of the present invention. Referring to Fig. 2, it shows a front view of the structure of the mobile cable and wire tube bracket of the utility model. Below in conjunction with Fig. 1 and Fig. 2, the structure of the mobile cable and wire pipe bracket of the present invention will be described.
如图1和图2所示,本实用新型的移动式线缆、线管支架结构20包括拖架本体21和支腿22,拖架本体21内部形成有供线缆、线管11穿过的贯穿孔211;支腿22设于拖架本体21的两侧,通过支腿22支撑拖架本体21,且支腿22的底部装设有可自由转动的轮子23,通过轮子23的转动带动拖架本体21进行移动。As shown in Figures 1 and 2, the mobile cable and wire pipe support structure 20 of the present invention includes a bracket body 21 and legs 22, and the inside of the bracket body 21 is formed with holes for cables and wire pipes 11 to pass through. Through holes 211; supporting legs 22 are located on both sides of the trailer body 21, the trailer body 21 is supported by the supporting legs 22, and the bottom of the supporting legs 22 is equipped with freely rotatable wheels 23, and the rotation of the wheels 23 drives the trailer body 21. The frame body 21 moves.
在敷设线缆、线管11时,将线缆、线管11从支架结构20的贯穿孔 211穿过,或者将支架结构20通过贯穿孔211套设在线缆、线管11上。可在线缆、线管11上根据需要设置多个支架结构20。支架结构20通过支腿22及轮子23将线缆、线管11支撑起来以脱离承载面10,该承载面10 可以为地面,还可以为楼板面或其他作业面。拖拽线缆、线管11至所需位置,在拖拽的过程中,轮子23可沿着承载面10进行滚动,便利了线缆、线管11的敷设,节省了人力成本,且支腿22将线缆、线管11支撑远离承载面,避免了因摩擦而损坏线缆、线管11的问题。When laying cables and wire conduits 11, cables and wire conduits 11 are passed through the through holes 211 of the support structure 20, or the support structure 20 is sleeved on the cables and wire conduits 11 through the through holes 211. A plurality of support structures 20 can be arranged on the cables and wire conduits 11 as required. The support structure 20 supports the cables and wire pipes 11 through legs 22 and wheels 23 so as to be separated from the bearing surface 10. The bearing surface 10 may be the ground, or a floor surface or other working surfaces. Drag the cable and wire tube 11 to the desired position. During the dragging process, the wheels 23 can roll along the bearing surface 10, which facilitates the laying of the cable and wire tube 11 and saves labor costs. 22 Support the cables and wire tubes 11 away from the bearing surface, avoiding the problem of damage to the cables and wire tubes 11 due to friction.
在一种具体实施方式中,结合图3和图4所示,支腿22的端部221 以可转动的方式安装于拖架本体21的侧部,通过转动调节可使得两侧的支腿22的底部向相互远离的方向移动,从而实现支腿22的支撑角度可调。支腿22的一端与拖架本体21的侧部连接,另一端通过轮子23支撑于承载面10上,支腿22整体呈倾斜状态,以稳定的支撑住拖架本体21,将支腿22的端部与拖架本体21的侧部以可转动地方式连接,可使得支腿22 可绕着可转动地端部进行转动调节,从而实现了支腿22的支撑角度的调节,支撑角度越大,支腿22的支撑高度越低,支撑稳定性越高,使得支架结构20在移动的过程中越不易倾覆。In a specific embodiment, as shown in FIG. 3 and FIG. 4 , the end 221 of the leg 22 is rotatably mounted on the side of the bracket body 21 , and the legs 22 on both sides can be adjusted by rotation. The bottoms of the legs move away from each other, so that the support angle of the legs 22 can be adjusted. One end of the support leg 22 is connected to the side of the trailer body 21, and the other end is supported on the bearing surface 10 by the wheels 23. The whole leg 22 is in an inclined state to support the trailer body 21 stably, and the support leg 22 The end is rotatably connected to the side of the trailer body 21, so that the leg 22 can be rotated and adjusted around the rotatable end, thereby realizing the adjustment of the supporting angle of the supporting leg 22. The larger the supporting angle , the lower the supporting height of the legs 22 is, the higher the supporting stability is, so that the support structure 20 is less likely to overturn during the moving process.
在使用时,将拖架本体21套设在线缆、线管11上后,调节其两侧的支腿22的支撑角度,使得两侧的支腿22的底部向着相远离的方向移动,两侧的支腿22底部之间的距离变大,两侧的支腿22整体呈八字形支撑拖架本体21,具有较高的稳定性,在拖动线缆、线管11时,也不会轻易的发生倾覆。When in use, after the bracket body 21 is sleeved on the cables and wire pipes 11, the supporting angles of the legs 22 on both sides are adjusted so that the bottoms of the legs 22 on both sides move in a direction away from each other, and the two sides The distance between the bottoms of the supporting legs 22 on the side becomes larger, and the supporting legs 22 on both sides are in the shape of a figure-eight to support the trailer body 21, which has high stability and will not Easily overturned.
在一种具体实施方式中,拖架本体21的侧部固设有安装框24,安装框24内装设有与拖架本体21的侧部相平行设置的连接轴242。支腿22 的端部开设一连接孔,通过连接孔套设于连接轴242上,且支腿22的端部可绕连接轴242进行转动调节。In a specific embodiment, a mounting frame 24 is fixed on the side of the bracket body 21 , and a connecting shaft 242 parallel to the side of the bracket body 21 is installed in the mounting frame 24 . An end of the leg 22 is provided with a connecting hole, and is sheathed on the connecting shaft 242 through the connecting hole, and the end of the leg 22 can be rotated and adjusted around the connecting shaft 242 .
利用安装框24和连接轴242为支腿22的端部提供安装基础,安装框 24的侧框241与支腿22之间的间隙即为支腿22提供了转动调节的空间。安装框24为底部具有开口的方形框,包括顶框以及与顶框垂直连接的四个侧框,四个侧框中垂直拖架本体21侧部的两个侧框之间支撑固定连接轴242,另外两个侧框中的一个侧框与拖架本体21的侧部固定连接。从而支腿22的端部221可绕着连接轴242进行转动调节,且在拖架本体21上穿设有线缆、线管11时,线缆、线管11的向下压拖架本体21,也会使得支腿22的底部绕着端部221向外转动,即调大支腿22的支撑角度。支腿 22呈大角度的支撑能够提高拖架本体21及线缆、线管11的稳定性,且配合线缆、线管11的重力的下压作用,进一步提高支架结构20的稳定性,使得支架结构20在线缆、线管11拖拽的过程中能够避免倾覆,稳定地移动以支撑并运送线缆、线管11到所需位置。Utilize installation frame 24 and connecting shaft 242 to provide installation base for the end of support leg 22, the gap between the side frame 241 of installation frame 24 and support leg 22 promptly provides the space for rotation adjustment of support leg 22. The installation frame 24 is a square frame with an opening at the bottom, including a top frame and four side frames vertically connected with the top frame, and the two side frames on the side of the vertical carriage body 21 among the four side frames support and fix the connecting shaft 242 , one of the other two side frames is fixedly connected to the side of the carriage body 21 . Thus, the end 221 of the leg 22 can be rotated and adjusted around the connecting shaft 242, and when the cables and wire tubes 11 are passed through the bracket body 21, the cables and wire tubes 11 press down on the bracket body 21. , will also make the bottom of the leg 22 rotate outward around the end 221 , that is, increase the support angle of the leg 22 . The support of the legs 22 at a large angle can improve the stability of the carriage body 21 and the cables and wire pipes 11, and cooperate with the downward pressure of the gravity of the cables and wire pipes 11 to further improve the stability of the bracket structure 20, so that The support structure 20 can avoid overturning during the dragging process of the cables and wire tubes 11 , and move stably to support and transport the cables and wire tubes 11 to desired positions.
进一步地,结合图4所示,支腿22的相对两侧与安装框24上对应的侧框241之间支撑连接有支撑弹簧25,通过两侧的支撑弹簧25支撑支腿 22的端部221并使支腿22呈倾斜状设置。在支腿22的两侧设置支撑弹簧 25,利用支撑弹簧25限制支腿22的支撑角度的调节范围,且支撑弹簧25 的设置,为支腿22提供了自动调节支撑角度的功能,在线缆、线管11穿过拖架本体21时,线缆、线管11的重力压在拖架本体21上并传递给支撑拖架本体21的支腿22,支腿22的端部221两侧的支撑弹簧25发生形变,也即位于支腿22和拖架本体21之间的支撑弹簧25被压缩,另一侧的支撑弹簧25被拉伸,支撑弹簧25所发生的形变与线缆、线管11的重力相适应,实现了自适应调节,从而实现了支腿22处于合适的支撑角度,避免支架结构20发生倾覆。在拖拽线缆、线管11时,轮子23滚动所带来的震动以及承载面不平所带来的震动,均可通过支撑弹簧25的形变来缓和,避免了震动影响支架结构20的整体稳定性。Further, as shown in FIG. 4 , support springs 25 are supported and connected between the opposite sides of the legs 22 and the corresponding side frames 241 on the installation frame 24 , and the ends 221 of the legs 22 are supported by the support springs 25 on both sides. And make the supporting legs 22 be arranged in an inclined shape. Support springs 25 are set on both sides of the support leg 22, and the adjustment range of the support angle of the support leg 22 is limited by the support spring 25, and the setting of the support spring 25 provides the function of automatically adjusting the support angle for the support leg 22. 1. When the wire tube 11 passes through the bracket body 21, the gravity of the cable and the wire tube 11 is pressed on the bracket body 21 and transmitted to the legs 22 supporting the bracket body 21, and the ends 221 on both sides of the legs 22 The support spring 25 is deformed, that is, the support spring 25 between the leg 22 and the carriage body 21 is compressed, and the support spring 25 on the other side is stretched. 11 adapts to the gravity, realizing self-adaptive adjustment, thereby realizing that the outrigger 22 is at a suitable support angle, and avoiding the overturning of the support structure 20 . When dragging the cables and wire tubes 11, the vibration caused by the rolling of the wheels 23 and the unevenness of the load-bearing surface can be alleviated by the deformation of the support spring 25, avoiding the impact of the vibration on the overall stability of the support structure 20 sex.
较佳地,支撑弹簧25多个,且沿支腿22的侧部间隔布设。在两侧的支撑弹簧25处于自然状态时,支腿22的端部221位于安装框24的中部。Preferably, there are multiple support springs 25 arranged at intervals along the sides of the legs 22 . When the support springs 25 on both sides are in a natural state, the end 221 of the leg 22 is located in the middle of the mounting frame 24 .
在一种具体实施方式中,支腿22的长度可调节。利用支腿22的长度调节可调节线缆、线管11的支撑高度,在拖拽线缆、线管11到位后,调节支腿22的长度以满足线缆、线管11的支撑使用高度要求。In one embodiment, the length of the legs 22 is adjustable. Use the length adjustment of the legs 22 to adjust the supporting height of the cables and wire tubes 11. After dragging the cables and wire tubes 11 into place, adjust the length of the legs 22 to meet the requirements for the supporting height of the cables and wire tubes 11 .
一较佳实施方式中,如图3和图4所示,支腿22包括连接于拖架本体21侧部的第一套管225和部分插入第一套管225内的第二套管226,通过调节第二套管226插入第一套管225内部分的长度以实现调节支腿22 的长度,且在调节好后固定连接第二套管226和第一套管225。较佳地,在第一套管225的端部设置有一连接孔,在第二套管226上间隔设置有多个连接孔,在调节好第二套管226的位置后,于第一套管225和第二套管 226相对应的连接孔内穿入连接螺栓,通过连接螺栓紧固连接第一套管225 和第二套管226。In a preferred embodiment, as shown in FIG. 3 and FIG. 4 , the leg 22 includes a first sleeve 225 connected to the side of the carriage body 21 and a second sleeve 226 partially inserted into the first sleeve 225, The length of the leg 22 is adjusted by adjusting the length of the second sleeve 226 inserted into the first sleeve 225 , and the second sleeve 226 and the first sleeve 225 are fixedly connected after the adjustment. Preferably, a connection hole is provided at the end of the first sleeve 225, and a plurality of connection holes are arranged at intervals on the second sleeve 226. After the position of the second sleeve 226 is adjusted, the first sleeve 225 and the corresponding connecting holes of the second bushing 226 are passed through connecting bolts, and the first bushing 225 and the second bushing 226 are tightly connected by the connecting bolts.
另一较佳实施方式中,支腿22包括连接于拖架本体21侧部的内螺纹套筒和螺合于内螺纹套筒的螺杆,通过旋拧螺杆以使螺杆旋入内螺纹套筒内或从内螺纹套筒内旋出以实现调节支腿的长度。In another preferred embodiment, the leg 22 includes an internally threaded sleeve connected to the side of the carriage body 21 and a screw threaded on the internally threaded sleeve, and the screw is screwed into the internally threaded sleeve by screwing the screw or Unscrews from internally threaded sleeve to adjust leg length.
在一种具体实施方式中,如图5所示,轮子23处安装有制动机构231 以固定轮子23。制动机构231为一U型框,可转动地安装于轮子23的U 型座222上,在轮子23需要移动时,将制动机构231上翻至U型座22 的上部,在移动到位后,将制动机构231下翻以阻挡轮子23的移动,利用制动机构231卡住轮子23,避免了轮子23的移动,从而固定住支架结构20。In a specific embodiment, as shown in FIG. 5 , a brake mechanism 231 is installed at the wheel 23 to fix the wheel 23 . The brake mechanism 231 is a U-shaped frame, which is rotatably installed on the U-shaped seat 222 of the wheel 23. When the wheel 23 needs to be moved, the brake mechanism 231 is turned up to the top of the U-shaped seat 22. , turn down the brake mechanism 231 to block the movement of the wheels 23, and use the brake mechanism 231 to block the wheels 23, avoiding the movement of the wheels 23, thereby fixing the support structure 20.
在一种具体实施方式中,如图2和图3所示,拖架本体21包括对接连接的第一卡箍件212和第二卡箍件213,第一卡箍件212的内侧形成有弧形凹槽,第二卡箍件213的内侧也形成有弧形凹槽,第一卡箍件212的弧形凹槽与第二卡箍件213的弧形凹槽对接形成贯穿孔211。利用第一卡箍件212和第二卡箍件213的对接连接而将拖架本体21卡套于线缆、线管11上,方便了支架结构20的安装。较佳地,第一卡箍件212的第一端和第二卡箍件213的第一端通过合页214可转动地连接,第一卡箍件212 的第二端和第二卡箍件213的第二端通过卡扣216和卡钩215可拆卸地连接,通过卡扣216和卡钩215的可拆卸地连接方便了支架结构20的安装与拆卸。将卡钩215安装在第二卡箍件213的第二端,将卡扣216安装在第一卡箍件212的第二端,在第一卡箍件212的第二端和第二卡箍件213 的第二端相对接时,卡扣216可扣合在卡钩215上,从而将第一卡箍件212 和第二卡箍件213的第二端连接。在需要拆除支架结构20时,只需要解除卡扣216和卡钩215的连接,即可将拖架本体21从线缆、线管11上取下。In a specific embodiment, as shown in FIG. 2 and FIG. 3 , the carriage body 21 includes a first hoop piece 212 and a second hoop piece 213 that are butt-connected, and an arc is formed on the inner side of the first hoop piece 212 The inner side of the second clamp member 213 is also formed with an arc-shaped groove, and the arc-shaped groove of the first clamp member 212 is connected with the arc-shaped groove of the second clamp member 213 to form a through hole 211 . The bracket body 21 is clamped on the cable and the wire tube 11 by the butt connection of the first clamp piece 212 and the second clamp piece 213 , which facilitates the installation of the bracket structure 20 . Preferably, the first end of the first clamp member 212 and the first end of the second clamp member 213 are rotatably connected through a hinge 214, and the second end of the first clamp member 212 and the second clamp member The second end of 213 is detachably connected through buckle 216 and hook 215 , and the detachable connection of buckle 216 and hook 215 facilitates the installation and disassembly of support structure 20 . The hook 215 is installed on the second end of the second hoop part 213, the buckle 216 is installed on the second end of the first hoop part 212, and the second end of the first hoop part 212 and the second hoop When the second end of the piece 213 is in contact with each other, the buckle 216 can be fastened on the hook 215 , so as to connect the second ends of the first hoop piece 212 and the second hoop piece 213 . When the bracket structure 20 needs to be dismantled, the bracket body 21 can be removed from the cables and wire tubes 11 only by releasing the connection between the buckle 216 and the hook 215 .
在一种具体实施方式中,如图2所示,在拖架本体21的贯穿孔211 的内壁面贴设橡胶垫26,在拖架本体21卡套在线缆、线管11上时,橡胶垫26与线缆、线管11的外表面相接触,对线缆、线管11起到保护作用。较佳地,橡胶垫26为呈半圆弧形的垫片,两个橡胶垫26分别贴设固定在第一卡箍件212、第二卡箍件213的弧形凹槽内,在第一卡箍件和第二卡箍件相对接后,两个橡胶垫26对接成圆形状。In a specific embodiment, as shown in FIG. 2 , a rubber pad 26 is pasted on the inner wall surface of the through hole 211 of the bracket body 21. The pad 26 is in contact with the outer surface of the cables and wire tubes 11 to protect the cables and wire tubes 11 . Preferably, the rubber pads 26 are gaskets in the shape of a semicircle, and the two rubber pads 26 are attached and fixed in the arc-shaped grooves of the first clamp piece 212 and the second clamp piece 213 respectively. After the hoop is connected to the second hoop, the two rubber pads 26 are connected to form a circle.
在一种具体实施方式中,支腿22的底部固设有U型座222,U型座 222的开口朝下,轮子23通过一转轴安装于U型座222上,且轮子23部分置于U型座222内,部分从U型座222的开口处伸出,转轴与U型座 222固定连接,轮子23可转动地套设在转轴上。In a specific embodiment, the bottom of the leg 22 is fixed with a U-shaped seat 222, the opening of the U-shaped seat 222 faces downward, the wheel 23 is installed on the U-shaped seat 222 through a rotating shaft, and the wheel 23 is partially placed on the U-shaped seat. In the shaped seat 222 , part protrudes from the opening of the U-shaped seat 222 , the rotating shaft is fixedly connected with the U-shaped seat 222 , and the wheels 23 are rotatably sleeved on the rotating shaft.
本实用新型的支架结构为高强度结构,利用设置的橡胶垫与线缆、线管相接触,可对线缆、线管起到保护作用。且支架结构的支腿的端部与安装框之间设置有支撑弹簧,一方面自动适应线缆、线管的重力而将支腿调节至适合的支撑角度,提高了结构的稳定性。另一方面可缓冲移动过程中支架结构所受到的震动,进一步提高了结构的稳定性。利用支撑弹簧以及支腿的可转动调节,避免了支架结构移动过程中的倾覆情形的发生。本实用新型的支架结构方便了线缆、线管的拖拽,整个过程可避免线缆、线管与承载面相接触,避免了摩擦容易损坏的问题。轮子的移动还可以大大节省覆设所需的人力。轮子带有制动机构,既可以实现移动又可以实现固定,方便了线缆、线管的固定及移动的需要。The bracket structure of the utility model is a high-strength structure, and the rubber pads provided are in contact with the cables and wire pipes, which can protect the cables and wire pipes. Moreover, support springs are provided between the ends of the legs of the bracket structure and the installation frame. On the one hand, the gravity of cables and wire tubes is automatically adjusted to adjust the legs to a suitable support angle, which improves the stability of the structure. On the other hand, it can buffer the vibration of the support structure during the moving process, further improving the stability of the structure. By utilizing the support spring and the rotatable adjustment of the legs, the overturning situation during the movement of the support structure is avoided. The bracket structure of the utility model facilitates the dragging of cables and wire tubes, and the whole process can avoid the contact of cables and wire tubes with the bearing surface, avoiding the problem of easy damage due to friction. The movement of the wheels can also greatly save the manpower required for covering. The wheels have a braking mechanism, which can realize both movement and fixation, which facilitates the fixing and moving of cables and wire tubes.
以上结合附图实施例对本实用新型进行了详细说明,本领域中普通技术人员可根据上述说明对本实用新型做出种种变化例。因而,实施例中的某些细节不应构成对本实用新型的限定,本实用新型将以所附权利要求书界定的范围作为本实用新型的保护范围。The utility model has been described in detail above with reference to the embodiments of the accompanying drawings, and those skilled in the art can make various changes to the utility model according to the above description. Therefore, some details in the embodiments should not constitute a limitation to the utility model, and the utility model shall take the scope defined by the appended claims as the protection scope of the utility model.
Claims (9)
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| CN201920989321.7U CN209881303U (en) | 2019-06-27 | 2019-06-27 | Mobile cable and wire tube support structure |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN110224355A (en) * | 2019-06-27 | 2019-09-10 | 中建八局轨道交通建设有限公司 | Mobile cable, spool supporting structure and its application method |
| CN113241675A (en) * | 2021-06-10 | 2021-08-10 | 柳玉军 | High-altitude cable |
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2019
- 2019-06-27 CN CN201920989321.7U patent/CN209881303U/en not_active Expired - Fee Related
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN110224355A (en) * | 2019-06-27 | 2019-09-10 | 中建八局轨道交通建设有限公司 | Mobile cable, spool supporting structure and its application method |
| CN110224355B (en) * | 2019-06-27 | 2024-07-12 | 中建八局轨道交通建设有限公司 | Movable cable, wire tube support structure and use method thereof |
| CN113241675A (en) * | 2021-06-10 | 2021-08-10 | 柳玉军 | High-altitude cable |
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