A guide rail support installation device and its guide rail

Through the design of the guide rail support installation device, the problems of complex installation and inconvenient adjustment of the guide rail are solved, and the rapid and precise installation and splicing of the guide rails are achieved, thereby improving construction efficiency.

CN111809456BActive Publication Date: 2025-07-04QUANHANG TECH CO LTD
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Patent Information

Application Number
CN202010848993.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-08-21
Publication Date
2025-07-04
Estimated Expiration
2040-08-21

AI Technical Summary

Technical Problem

In the prior art, the installation of guide rails in tunnels and other places is complicated and inconvenient to adjust, especially when rapid and precise splicing is required in highway tunnels, which affects traffic order.

Method used

The guide rail supports the installation device, including a fixing part, an installation part, a telescopic link, a first rotatable assembly and a second rotatable assembly, through the cooperation of these components, the rapid and precise installation and angle adjustment of the guide rail are achieved.

Benefits of technology

The construction and installation of guide rails is simplified, the installation efficiency is improved, and the precise and rapid splicing of guide rails and other rail sections is achieved, reducing construction time.

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Abstract

An embodiment of the present invention discloses a guide rail support installation device and its guide rail. The guide rail support installation device includes: a fixing part; an installation part for installing the guide rail and located on one side of the fixing part; an adjusting part located between the fixing part and the installation part, including: a telescopic connecting rod connected between the fixing part and the installation part; a first rotatable component connected between the telescopic connecting rod and the installation part; an angular connecting rod connected between the fixing part and the installation part; a second rotatable component connected between the angular connecting rod and the installation part; the installation part can rotate relative to the fixing part through the first rotatable component; the installation part can rotate relative to the fixing part through the second rotatable component. The embodiment of the present invention simplifies the construction and installation of the track section and can conveniently adjust the installation angle of the track section.
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Description

Technical Field

[0001] The present invention relates to the technical field of guide rail walking, and particularly to a guide rail support installation device and a guide rail. Background Art

[0002] Currently, when installing a guide rail (certainly not limited to tunnels) on a tunnel, a hard connection method is generally used to directly screw the guide rail onto an installation position provided on the tunnel wall. Therefore, when installing the guide rail, auxiliary parts such as gaskets are required to adjust the installation angle and position of the guide rail. As a result, the installation construction of the guide rail is complicated, and the adjustment of the guide rail is inconvenient. Summary of the Invention

[0003] Therefore, embodiments of the present invention provide a guide rail support installation device and a guide rail, which simplify the construction and installation of the track section and can conveniently adjust the installation angle of the track section.

[0004] On the one hand, a guide rail support installation device provided by an embodiment of the present invention includes: a fixing part; an installation part for installing a guide rail and located on one side of the fixing part; an adjusting part located between the fixing part and the installation part, including: a telescopic connecting rod connected between the fixing part and the installation part; a first rotatable component connected between the telescopic connecting rod and the installation part; a second rotatable component connected between the telescopic connecting rod and the installation part; the installation part can rotate relative to the fixing part through the first rotatable component; the installation part can rotate relative to the fixing part through the second rotatable component.

[0005] In an embodiment of the present invention, the first rotatable component includes: a rotatable member provided at an end of the telescopic connecting rod; a rotation fitting member provided on the installation part and having a receiving cavity; the rotatable member is rotatably provided in the receiving cavity.

[0006] In an embodiment of the present invention, the rotation fitting member includes: a first fitting block connected to the installation part and having a first groove; a second fitting block having a second groove matching the first groove and connected to the first fitting block; wherein, the second fitting block is connected to the first fitting block such that the first groove and the second groove cooperate to form the receiving cavity.

[0007] In an embodiment of the present invention, the second rotatable component includes: a rotating shaft connected to the installation part; a first shaft sleeve sleeved outside the rotating shaft and axially connected to the angular connecting rod; a second shaft sleeve sleeved outside the telescopic connecting rod; an angular connecting rod axially connected to the first shaft sleeve and the second shaft sleeve at both ends.

[0008] In one embodiment of the present invention, the guide rail support mounting device further includes: a reinforcing member connecting the fixed portion and the telescopic link.

[0009] In one embodiment of the present invention, the guide rail support mounting device further includes: a first mounting member connected to a side of the mounting portion away from the fixed portion; an elastic member clamped between the first mounting member and the mounting portion.

[0010] On the other hand, a guide rail provided by the present invention includes: at least one guide rail support mounting device as described in any one of the above embodiments; at least one track section connecting the mounting portions of each of the guide rail support mounting devices.

[0011] In one embodiment of the present invention, each of the track sections respectively includes: a mounting plate provided with a mounting position for connecting the mounting portion; wherein, the first mounting member provided on the mounting portion is fitted and mounted to the mounting position.

[0012] In one embodiment of the present invention, the guide rail further includes: the mounting portion is further provided with a plurality of waist-shaped holes; the first mounting member and the elastic member are connected to the mounting portion through the plurality of waist-shaped holes.

[0013] In summary, each of the above embodiments of the present application may have one or more of the following advantages or beneficial effects: i) The guide rail support mounting device can adjust the mounting angle of the track section to be installed; ii) Precise and rapid splicing is achieved between the guide rail and other track sections through the guide rail support mounting device, simplifying the installation construction, saving the installation time, and improving the installation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings to be used in the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present invention, and for those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts;

[0015] Figure 1 It is a schematic structural diagram of a guide rail 200 provided by an embodiment of the present invention.

[0016] Figure 2 For Figure 1 It is an installation schematic diagram of the shown guide rail 200 in the tunnel 300.

[0017] Figure 3 For Figure 1 It is a left view of the track section 210 in

[0018] Figure 4 For Figure 1Left view of the middle guide rail 200.

[0019] Figure 5 It is Figure 1 Schematic structural view of the middle guide rail support mounting device 100.

[0020] Figure 6 It is Figure 5 Exploded schematic view of the shown guide rail support mounting device 100.

[0021] Figure 7 It is Figure 5 Exploded schematic view of the first rotatable assembly 50 in the middle.

[0022] Figure 8 It is Figure 5 Schematic structural view of the second rotatable assembly 60 in the middle.

[0023] Figure 9 It is Figure 5 Connection schematic view between the first mounting member 80 and the mounting portion 20 in the middle.

[0024] Description of main component symbols:

[0025] 100 is the guide rail support mounting device; 10 is the fixing portion; 20 is the mounting portion; 21 is the waist-shaped hole; 30 is the telescopic connecting rod; 31 is the fixing member; 32 is the movable member; 50 is the first rotatable assembly; 51 is the rotatable member; 52 is the first mating block; 53 is the second mating block; 60 is the second rotatable assembly; 61 is the rotating shaft; 62 is the first shaft sleeve; 63 is the second shaft sleeve; 64 is the angular connecting rod; 70 is the strengthening member; 80 is the first mounting member; 90 is the elastic member; 200 is the guide rail; 210 is the track section; 211 is the mounting plate; 212 is the mounting position; 213 is the groove plate; 214 is the baffle; 215 is the straight plate; 300 is the tunnel. Detailed implementation manners

[0026] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0027] In some public places such as tunnels on highways, high-rise buildings and other places, in the above-mentioned public places, it is necessary to set up some inspection devices to realize the monitoring function of the above-mentioned public places, so it is necessary to lay rails used in cooperation with the inspection devices. In the above-mentioned public places, constructors often need to ensure both accurate splicing of the rails and rapid splicing of the rails. Especially in some public transportation places, accurately and rapidly splice the rails to reduce the impact on traffic order.

[0028] Figure 1 A rail 200 proposed in an embodiment of the present invention can be arranged above the inner wall of a tunnel on a highway, for example, in the above-mentioned public places (see Figure 2 ). The rail 200 includes, for example, at least one track section 210 and a plurality of rail support and installation devices 100. The plurality of rail support and installation devices 100 can quickly and accurately install the track section 210 at a target position, such as the inner wall of a tunnel, so as to form the rail 200.

[0029] See Figure 1 , specifically, the rail 200 includes, for example: at least one rail support and installation device 100 and at least one track section 210. One rail support and installation device 100 is provided on each track section 210.

[0030] See Figure 3 , the track section 210 includes, for example, at least one mounting plate 211 and a mounting position 212 provided on the mounting plate. The mounting position 212 is used to connect the rail support and installation device 100. Specifically, the mounting plate 211 is provided with at least two channel plates 213, a plurality of baffles 214, and a straight plate 215 clamped between the at least two channel plates 213. Among them, one baffle 214 is provided at each end of the notch of each channel plate 213. Further, a gap is left between the two baffles 214 respectively provided at both ends of the notch; the mounting position 212 is a space formed by the channel plate 213 and the two baffles 214 provided at both ends of its notch.

[0031] Preferably, the channel plate 213 can be a "C"-shaped plate; the baffle 214 can be an "inverted hook"-shaped plate, and the inverted hook faces the inside of the "C"-shaped plate. The mounting position 212 is a space formed by the "C"-shaped plate and the two "inverted hook"-shaped plates respectively provided at both ends of the "C"-shaped plate.

[0032] An embodiment of the present invention also proposes a rail support and installation device 100 as shown in the above Figures 1 - 3 . See Figure 4, the guide rail support mounting device 100 is provided with, for example, a first mounting member 80 that is fitted and connected to the mounting position 212. For example, the shape of the portion of the first mounting member 80 that cooperates with the mounting position 212 can be the same as the shape of the mounting position 212, facilitating the stable connection of the guide rail support mounting device 100 to the track section 210. Specifically, when the guide rail support mounting device 100 is fitted and connected to the track section 210, through the mutual cooperation and connection between the first mounting member 80 and the two "barbed" plates, the track section 210 can be prevented from slipping off the guide rail support mounting device 100.

[0033] See 5- Figure 6 , the guide rail support mounting device 100 further includes, for example: a fixing portion 10, a mounting portion 20 disposed opposite to the fixing portion 10, and an adjusting portion located between the fixing portion 10 and the mounting portion 20.

[0034] Among them, the adjusting portion includes, for example, a telescopic link 30, a first rotatable assembly 50, and a second rotatable assembly 60. The first rotatable assembly 50 is respectively connected to the telescopic link 30 and the mounting portion 20; the second rotatable assembly 60 is respectively connected to the telescopic link 30 and the mounting portion 20, and is located below the first rotatable assembly 50 in the vertical direction.

[0035] See Figure 7 , the first rotatable assembly 50 includes, for example, a rotatable member 51 and a rotation fitting member. Among them, the rotatable member 51 is provided at one end of the telescopic link 30 away from the fixing portion 10, and the rotatable member 51 can rotate within the receiving cavity of the rotation fitting member.

[0036] Specifically, the rotation fitting member includes, for example, a first fitting block 52 connected to the mounting portion 20, and the first fitting block 52 is provided with a first groove; correspondingly, the rotation fitting member further includes a second fitting block 53 that is fitted and connected to the first fitting block 52, and the second fitting block 53 is provided with a second groove. The receiving cavity formed by the cooperation of the first groove and the second groove enables the rotatable member 51 to rotate therein. In addition, the first fitting block 52 and the second fitting block 53 can be connected by fasteners.

[0037] The telescopic link 30 includes, for example, a movable member 32 and a fixed member 31, and the movable member 32 can move within the receiving cavity of the fixed member 31. One end of the fixed member 31 away from the mounting portion 20 is connected to the fixing portion 10, and the end of the movable member 32 disposed opposite thereto and close to the mounting portion 20 is connected to the mounting portion 20 through the rotatable member 51. Specifically, the movable member 32 extends or contracts toward the side close to the fixing portion 10, thereby making the mounting portion 20 move away from or close to the fixing portion 10.

[0038] Preferably, the rotatable member 51 can be a ball block, and the accommodating cavity cooperating therewith can also be a spherical inner cavity capable of wrapping the ball block, enabling the ball block to rotate in any direction within the spherical inner cavity.

[0039] Preferably, a reinforcing member 70 can be added between the fixing portion 10 and the mounting portion 20 for connecting the outer surface of the fixing portion 10 and the fixing member 31. For example, the reinforcing member 70 can be a rib plate, which can enhance the stability of the telescopic link 30 during the movement process.

[0040] See Figure 8 , the second rotatable assembly 60 includes, for example, a rotating shaft 61 provided on the mounting portion 20, a first shaft sleeve 62 sleeved outside the rotating shaft 61, a second shaft sleeve 63 sleeved on the outer surface of the fixing member 31, and an angular link 64 whose two ends are respectively axially connected to the first shaft sleeve 62 and the second shaft sleeve 63. Among them, one end of the rotating shaft 61 is fixedly provided on the mounting portion 20, and the rotating shaft 61 can drive the mounting portion 20 to perform circumferential rotation along the inner wall of the cooperating first shaft sleeve 62; the angular link 64 can use the portion axially connected to the first shaft sleeve 62 as a fulcrum to make the angular link 64 rotate.

[0041] See Figure 9 , the guide rail support mounting device 100 includes, for example, a first mounting member 80 and a waist-shaped hole 21 for cooperatively connecting the first mounting member 80. And the first mounting member 80 is connected to the side of the mounting portion 20 away from the fixing portion 10 through a fastener. Preferably, a plurality of waist-shaped holes 21 are provided on the mounting portion 20 for cooperatively connecting the first mounting member 80. By adjusting the position of the fastener connecting the first mounting member 80 in the waist-shaped hole 21, the first mounting member 80 can be adjusted to rise or fall relative to the mounting portion 20.

[0042] Continue to refer to Figure 9 , preferably, the guide rail support mounting device 100 also includes an elastic member 90 clamped between the mounting portion 20 and the first mounting member 80. Among them, the mounting portion 20, the elastic member 90 and the first mounting member 80 are sequentially connected through a fastener.

[0043] For example, an elastic member 90 is clamped between the mounting portion 20 and the first mounting member 80, which can prevent the first mounting member 80 from directly being mounted on the surface of the mounting portion 20 and causing damage to it; furthermore, the inspection device is on the guide rail 200.

[0044] When walking, the elastic member 90 can play a buffering and shock-absorbing effect, reducing the impact on the guide rail support mounting device 100.

[0045] To facilitate a clearer understanding of this embodiment, the specific implementation process of the guide rail support mounting device 100 of this embodiment is described in detail:

[0046] For example, inside the tunnel of a highway, one side of the fixing part 10 of the guide rail support installation device 100 is installed on the inner wall of the tunnel 300, and then the track section 210 is installed on the first mounting member 80 connected thereto along its length direction at the mounting position 212; adjust the fastener for connecting the first mounting member 80 and the mounting part 20 to make the fastener move within the waist-shaped hole 21 of the mounting part 20, and adjust the height of the track section 210 in the vertical direction until it is at the same height as other track sections. The first rotatable assembly 50 and the second rotatable assembly 60 can achieve the angular rotation of the track section 210 in three directions, and these three angular rotations are respectively the angular rotation a in the plane YOZ, the angular rotation b in the plane ZOX, and the angular rotation c in the plane XOY. Specifically:

[0047] On the one hand, the plane YOZ can be a vertical plane and perpendicular to the inner wall of the tunnel 300 where the fixing part 10 is installed. If the angular rotation a of the track section 210 in the plane YOZ is to be achieved, the part where the angular link 64 is connected to the second bushing 63 is fixed relative to the second bushing 63, and the movable part 32 of the telescopic link 30 is adjusted to extend or contract, thereby driving the part of the angular link 64 connected to the first bushing 62 to rotate axially relative to the first bushing 62, so as to control the rotation of the track section 210 connected to the first mounting member 80 in the plane YOZ.

[0048] On the other hand, the plane ZOX can be a vertical plane and parallel to the inner wall of the tunnel 300 where the fixing part 10 is installed. If the angular rotation b of the track section 210 in the plane ZOX is to be achieved, the movable part 32 of the telescopic link 30 is kept stationary, and at the same time, the second bushing 63 is rotated circumferentially along the outer surface of the fixing member 31, thereby driving the mounting part 20 to rotate in the plane ZOX, and thus driving the track section 210 of the mounting part 20 to rotate in the plane ZOX.

[0049] On yet another hand, the plane XOY can be a horizontal plane and perpendicular to the inner wall of the tunnel 300 where the fixing part 10 is installed. If the angular rotation c of the track section 210 in the plane XOY is to be achieved, only by rotating the mounting part 20 connected with the track section 210 circumferentially along the rotating shaft 61, the rotation of the track section 210 in the plane XOY can be achieved.

[0050] Finally, through the above adjustment of the track section 210, it is realized that this track section can be successfully spliced with other track sections.

Claims

1. A guide rail support and installation device, characterized in that, Comprising: A fixed part; A mounting part for mounting a guide rail and located on one side of the fixed part; An adjusting part located between the fixed part and the mounting part, including: a telescopic connecting rod connected between the fixed part and the mounting part; A first rotatable assembly connected between the telescopic connecting rod and the mounting part, the first rotatable assembly including: A rotatable member provided at the end of the telescopic connecting rod; A rotation fitting member provided on the mounting part and having a receiving cavity; The rotatable member is rotatably provided in the receiving cavity; A second rotatable assembly connected between the telescopic connecting rod and the mounting part, the second rotatable assembly including: A rotating shaft connecting the mounting part; A first bushing sleeved outside the rotating shaft; A second bushing sleeved outside the telescopic connecting rod; An angular connecting rod with both ends axially connected to the first bushing and the second bushing respectively; The mounting part can rotate relative to the fixed part through the first rotatable assembly; the mounting part can rotate relative to the fixed part through the second rotatable assembly.

2. The guide rail support mounting device according to claim 1, characterized in that The rotation fitting member includes: A first fitting block connected to the mounting part and having a first groove; A second fitting block having a second groove matching the first groove and connected to the first fitting block; Wherein, the second fitting block is connected to the first fitting block so that the first groove and the second groove cooperate to form the receiving cavity.

3. The guide rail support mounting device according to claim 1, characterized in that It further includes: A reinforcing member connecting the fixed part and the telescopic connecting rod.

4. The guide rail support mounting device according to claim 1, characterized in that It further includes: A first mounting member connected to the side of the mounting part away from the fixed part; An elastic member clamped between the first mounting member and the mounting part.

5. A guide rail, characterized in that Comprising: At least one guide rail support mounting device as described in claim 4; At least one track section connecting the mounting parts of each of the guide rail support mounting devices.

6. The guide rail according to claim 5, characterized in that Each of the track sections respectively includes: A mounting plate provided with a mounting position for connecting the mounting part; Wherein, the first mounting member provided on the mounting part is fitted and mounted to the mounting position.

7. The guide rail according to claim 5, characterized in that The mounting part is further provided with a plurality of waist-shaped holes; The first mounting member and the elastic member are connected to the mounting part through the plurality of waist-shaped holes.

Citation Information

Patent Citations

  • Fixing device used for display device

    CN111486307A

  • Guide rail support mounting device and guide rail thereof

    CN212477285U