Shield receiving device

By using structures such as steel blocks, steel cylinders and brackets in the shield receiving device, the stability problems caused by the height difference between the receiving well bottom plate and the shield equipment are solved, and the safe reception of the shield equipment and the construction risk are reduced.

CN223293724UActive Publication Date: 2025-09-02CSCEC BRIDGES CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423003878.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-09-02
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

The existing shield receiving device is difficult to stabilize when the height difference between the bottom plate of the receiving well and the shield equipment is large, and there are high risks and difficulties.

Method used

Multiple stacked steel blocks are used as the bottom support, combined with the steel cylinder, bracket and oblique brace structure, a stable overall structure is formed by welding and bolting connection, the bracket elevation is adjusted to match the shield outlet height, and load is absorbed through the steel cylinder.

Benefits of technology

The structural stability of shield receiving under high differences is achieved, ensuring safe reception of shield equipment, and reducing construction risks and difficulty.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223293724U_ABST
    Figure CN223293724U_ABST
Patent Text Reader

Abstract

The utility model discloses a shield receiving device, which belongs to the technical field of shield construction, and comprises a bottom support, a plurality of steel blocks, a plurality of connecting rods, a plurality of connecting rods, a plurality of connecting rods, a plurality of connecting rods and a plurality of connecting rods, the bottom support comprises a plurality of stacked steel blocks, and two longitudinally adjacent steel blocks are fixedly connected through bolts; the steel block at the bottom is fixedly connected with the ground; the steel cylinder is located between the shield hole and the bottom support and placed on the ground; the two brackets are symmetrically connected and arranged at the upper ends of the steel cylinder and the bottom support; the supporting steel plate is arranged between the bracket and the bottom support so as to adjust the elevation of the bracket to be consistent with the height of the shield outlet; the inclined strut is obliquely arranged at the end, away from the shield hole, of the bottom support, one end of the inclined strut is fixedly connected with the steel block of the bottom support, and the other end of the inclined strut is connected with an existing structure below in a welded mode. All structural members are rigidly connected through welding or bolts, so that the overall strength and stability are guaranteed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of shield construction, and in particular relates to a shield receiving device. Background Art

[0002] Shield machines are commonly used in urban underground tunnel and pipeline construction. They boast high construction speed, are unaffected by weather, and do not disrupt surface traffic during excavation. Shield tunneling is a construction technology with broad prospects for application. However, after tunneling, shield machines require sufficient space for retraction. Due to their heavy weight, retraction is risky and challenging, making it a critical step in shield construction.

[0003] Common shield receiving devices are suitable for situations where the elevation difference between the receiving shaft floor and the shield machine bottom is small. The receiving bracket is fixed to the receiving shaft ground and then moved onto the receiving bracket after the shield machine completes excavation. However, when the elevation difference between the receiving shaft floor and the shield machine bottom is large, a support structure must be established on the receiving ground, and the receiving bracket is placed on a temporary support structure. The temporary support structure will bear the vertical deadweight of the shield equipment and the horizontal load when the shield machine exits the tunnel.

[0004] Therefore, how to provide a shield receiving device with a stable structure that can solve the height difference between the receiving shaft bottom plate and the shield equipment is one of the technical problems that need to be solved urgently in this field. Utility Model Content

[0005] In order to overcome the deficiencies in the prior art, the utility model aims to provide a shield receiving device with a stable structure that can solve the height difference between the receiving shaft bottom plate and the shield equipment.

[0006] In order to achieve the purpose of this utility model, the technical solution adopted by this utility model is:

[0007] A shield receiving device, comprising:

[0008] Bottom support, the bottom support comprises a plurality of stacked steel blocks, two longitudinally adjacent steel blocks are fixedly connected by bolts; the steel block at the bottom is fixedly connected to the ground;

[0009] a steel cylinder, located between the shield tunnel opening and the bottom support, and placed on the ground;

[0010] Two brackets are symmetrically connected, and the two brackets are arranged at the upper ends of the steel cylinder and the bottom support;

[0011] A support steel plate is provided between the bracket and the bottom support to adjust the elevation of the bracket to be consistent with the height of the shield exit;

[0012] The diagonal brace is obliquely arranged at the end of the bottom support away from the shield tunnel opening, wherein one end of the diagonal brace is fixedly connected to the steel block of the bottom support, and the other end is welded to the existing structure below.

[0013] Furthermore, each of the steel blocks comprises:

[0014] Two layers of horizontal steel plates are arranged one above the other, and the two layers of horizontal steel plates are correspondingly provided with first connecting holes;

[0015] Multiple longitudinal steel plates are arranged crosswise and vertically, and the multiple longitudinal steel plates are located between two layers of steel plates and are welded together; a second connecting hole is provided on the longitudinal steel plate near the edge side.

[0016] Furthermore, it also includes a connecting rod, which is arranged on one side of the bottom support close to the diagonal brace, and both ends of the connecting rod are fixedly connected to the second connecting holes on the longitudinal steel plate close to one side of the diagonal brace.

[0017] Furthermore, the main body of the connecting rod is a hollow square steel pipe, and spade-shaped joints are welded to both ends of the hollow square steel pipe. The spade-shaped joints are provided with bolt holes connected to the steel block.

[0018] Furthermore, the bracket includes:

[0019] A bracket body, wherein the bracket body is an I-beam, and the wing plates of the bracket body are reinforced by ribs;

[0020] The top of the bracket body is provided with a curved receiving surface according to the diameter of the shield machine;

[0021] a longitudinal structural steel, a first end of which is vertically connected to one side of the bracket body;

[0022] a transverse structural steel, wherein the second end of the transverse structural steel is fixedly connected to the first end of the longitudinal structural steel, and the transverse structural steel is arranged parallel to the bracket body; a connecting plate with bolt holes is provided at the transverse end of the transverse structural steel for connecting to the transverse structural steel of the bracket on the other side;

[0023] An oblique structural steel, wherein the connection between the transverse structural steel and the longitudinal structural steel is fixedly connected to the first end of the oblique structural steel, and the second end of the oblique structural steel is fixedly connected to an end of the bracket body away from the longitudinal structural steel.

[0024] Furthermore, the extension direction of the bracket body is consistent with the running direction of the shield, and the elevation is consistent with the height of the shield outlet; the length of the bracket on the steel block as a support is not less than the overall length of the shield.

[0025] Furthermore, the diagonal brace includes a first steel section and a second steel section set at an angle, the first end of the first steel section is welded to the first end of the second steel section, the side surface of the first steel section away from the second steel section and the first end of the second steel section are welded to the steel block of the bottom support away from the shield opening, and the second end of the first steel section and the second end of the second steel section are welded to the existing structure.

[0026] Furthermore, the second end portion of the first steel section and the second end portion of the second steel section are both welded and fixed to the embedded steel plate below the ground; the steel block at the bottom is fixedly connected to the ground through embedded reinforcement.

[0027] Beneficial effects:

[0028] 1. Each structural member in this utility model is rigidly connected by welding or bolts to ensure the overall strength and stability;

[0029] 2. After the shield equipment exits the tunnel, the steel cylinder promptly absorbs the lateral and longitudinal loads of the shield equipment to ensure structural stability. The far-end diagonal bracing ensures the lateral stability of the overall structure.

[0030] 3. The length of the receiving bracket on the steel block composite structure shall not be less than the overall length of the shield equipment. After the receiving is completed, the shield equipment is parked on the top of the steel block support and the steel cylinder is dismantled and recycled. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0032] Figure 2 This is a schematic diagram of the structural steel block of the utility model;

[0033] Figure 3 This is a schematic diagram of a steel cylinder of the present utility model;

[0034] Figure 4 This is a schematic diagram of the bracket of the present utility model;

[0035] Figure 5 This is a schematic diagram of the diagonal bracing device of the present utility model;

[0036] Figure 6 This is a schematic diagram of the connecting rod of the present invention;

[0037] Figure 7 This is a schematic diagram of the steel block transverse connecting rod of the present utility model;

[0038] Figure 8 This is a schematic diagram of the longitudinal connecting rod of the steel block of the present invention;

[0039] In the figure: 1. Steel block; 2. Steel cylinder; 3. Support steel plate; 4. Bracket; 5. Diagonal brace; 6. Connecting rod. DETAILED DESCRIPTION

[0040] The present invention provides a shield receiving device. The technical solution of the present invention is described in detail below with reference to the accompanying drawings to make it easier to understand and grasp.

[0041] Example 1

[0042] refer to Figure 1 - Figure 8 , a shield receiving device, comprising:

[0043] Bottom support, the bottom support includes a plurality of stacked steel blocks 1, two longitudinally adjacent steel blocks 1 are fixedly connected by bolts; the steel block 1 at the bottom is fixedly connected to the ground;

[0044] Steel cylinder 2, located between the shield tunnel opening and the bottom support, and placed on the ground;

[0045] Two brackets 4 are symmetrically connected and arranged at the upper ends of the steel cylinder 2 and the bottom support;

[0046] The support steel plate 3 is arranged between the bracket 4 and the bottom support to adjust the height of the bracket 4 to be consistent with the height of the shield exit;

[0047] The diagonal brace 5 is obliquely arranged at the end of the bottom support away from the shield tunnel opening, wherein one end of the diagonal brace 5 is fixedly connected to the steel block 1 of the bottom support, and the other end is welded to the existing structure below.

[0048] In this embodiment, each steel block 1 comprises:

[0049] Two layers of horizontal steel plates are arranged one above the other, and the two layers of horizontal steel plates are correspondingly provided with first connecting holes;

[0050] Multiple longitudinal steel plates are arranged crosswise and vertically, and are located between two layers of steel plates and are welded together; a second connecting hole is provided on the longitudinal steel plate near the edge.

[0051] Specifically, two upper and lower adjacent steel blocks 1 are fixedly connected by bolts passing through the first connection holes.

[0052] The shield receiving device provided in this embodiment also includes a connecting rod 6, which is arranged on one side of the bottom support close to the diagonal brace 5, and the two ends of the connecting rod 6 are respectively fixedly connected to the second connecting holes on the longitudinal steel plate on one side of the diagonal brace 5.

[0053] In this embodiment, the main body of the connecting rod 6 is a hollow square steel tube, and spade-shaped joints are welded to both ends of the hollow square steel tube. The spade-shaped joints are provided with bolt holes connected to the steel block 1.

[0054] In this embodiment, the bracket 4 includes:

[0055] The bracket body is an I-beam, and the wing plates of the bracket body are reinforced by ribs;

[0056] The top of the bracket body is provided with a curved receiving surface according to the diameter of the shield machine;

[0057] a longitudinal structural steel, a first end of which is vertically connected to one side of the bracket body;

[0058] a transverse structural steel, the second end of which is fixedly connected to the first end of the longitudinal structural steel, and the transverse structural steel is arranged parallel to the bracket body; a connecting plate with bolt holes is provided at the transverse end of the transverse structural steel for connecting to the transverse structural steel of the bracket 4 on the other side;

[0059] An oblique structural steel, wherein the connection between the transverse structural steel and the longitudinal structural steel is fixedly connected to the first end of the oblique structural steel, and the second end of the oblique structural steel is fixedly connected to an end of the bracket body away from the longitudinal structural steel.

[0060] Specifically, the extension direction of the bracket body is consistent with the running direction of the shield, and the elevation is consistent with the height of the shield exit; the length of the bracket 4 as a support on the steel block 1 is not less than the overall length of the shield.

[0061] In this embodiment, the diagonal brace 5 includes a first steel section and a second steel section set at an angle, the first end of the first steel section is welded to the first end of the second steel section, the side surface of the first steel section away from the second steel section and the first end of the second steel section are welded to the steel block on the bottom support side away from the shield opening, and the second end of the first steel section and the second end of the second steel section are both welded to the existing structure.

[0062] Specifically, the second end portion of the first section steel and the second end portion of the second section steel are both welded and fixed to the pre-buried steel plate below the ground; the steel block 1 at the bottom is fixedly connected to the ground through embedded reinforcement.

[0063] In this embodiment, each connecting bolt is a steel bolt.

[0064] Example 2

[0065] This embodiment is a method for using the shield receiving device provided in Example 1, and the method includes:

[0066] S10. Install and fix the lowest steel block 1 and steel cylinder 2 on the ground, gradually completing the construction of the upper steel block 1 combination until it is slightly lower than the design elevation, and make up the shortfall with the support steel plate 3; the longitudinal steel blocks of the bottom support are connected by bolts, and the transverse steel blocks are connected by connecting rods 6;

[0067] S20. After the support steel plate 3 is installed, a fixed bracket 4 is installed on the top. The extension direction of the bracket 4 is consistent with the direction of shield operation, and the elevation is consistent with the height of the shield exit. The length of the bracket 4 as a support on the steel block 1 is not less than the overall length of the shield. A diagonal brace 5 is fixed at the far end.

[0068] S30, after the shield equipment comes out of the tunnel, it runs to the top of the bracket 4 on the top of the steel cylinder 2, and relies on the steel cylinder 2 to bear the horizontal impact load and vertical gravity load;

[0069] S40, after the shield equipment enters the bracket 4, it is gradually advanced from the bracket 4 on the top of the steel cylinder 2 to the upper part of the bracket 4 on the top of the bottom support; when it is completely stopped at the upper part of the bracket 4 on the top of the steel block 1 on the bottom support, the steel cylinder 2 can be dismantled and recycled;

[0070] S50. After the shield equipment has completely stopped, subsequent operations such as lifting, pushing or lowering layer by layer can be carried out.

[0071] The above fully describes the technical solution of the present invention. It should be noted that the specific implementation methods of the present invention are not limited to the above description. All technical solutions formed by ordinary technicians in this field using equivalent or equivalent transformations in structure, method or function based on the spirit of the present invention fall within the scope of protection of the present invention.

Claims

1. A shield receiving device, characterized in that: include: A bottom support, the bottom support comprising a plurality of stacked steel blocks (1), wherein two longitudinally adjacent steel blocks (1) are fixedly connected by bolts; the steel block (1) at the bottom is fixedly connected to the ground; A steel cylinder (2) is located between the shield tunnel opening and the bottom support and is placed on the ground; Two brackets (4) are symmetrically connected, and the two brackets (4) are arranged at the upper ends of the steel cylinder (2) and the bottom support; A support steel plate (3), the support steel plate (3) being arranged between the bracket (4) and the bottom support to adjust the elevation of the bracket (4) to be consistent with the height of the shield exit; A diagonal brace (5) is obliquely arranged at an end of the bottom support away from the shield tunnel opening, wherein one end of the diagonal brace (5) is fixedly connected to the steel block (1) of the bottom support, and the other end is welded to the existing structure below.

2. The shield receiving device according to claim 1, characterized in that: Each of the steel blocks (1) comprises: Two layers of horizontal steel plates are arranged one above the other, and the two layers of horizontal steel plates are correspondingly provided with first connecting holes; Multiple longitudinal steel plates are arranged crosswise and vertically, and the multiple longitudinal steel plates are located between two layers of steel plates and are welded together; a second connecting hole is provided on the longitudinal steel plate near the edge side.

3. The shield receiving device according to claim 2, characterized in that: It also includes a connecting rod (6), which is arranged on one side of the bottom support close to the diagonal brace (5), and the two ends of the connecting rod (6) are fixedly connected to the second connecting holes on the longitudinal steel plate on one side of the diagonal brace (5).

4. The shield receiving device according to claim 3, characterized in that: The main body of the connecting rod (6) is a hollow square steel pipe, and spade-shaped joints are welded to both ends of the hollow square steel pipe. Bolt holes for connecting with the steel block (1) are provided on the spade-shaped joints.

5. The shield receiving device according to claim 1, characterized in that: The bracket (4) comprises: A bracket body, wherein the bracket body is an I-beam, and the wing plates of the bracket body are reinforced by ribs; The top of the bracket body is provided with a curved receiving surface according to the diameter of the shield machine; a longitudinal structural steel, a first end of which is vertically connected to one side of the bracket body; a transverse structural steel, wherein the second end of the transverse structural steel is fixedly connected to the first end of the longitudinal structural steel, and the transverse structural steel is arranged parallel to the bracket body; a connecting plate with bolt holes is provided at the transverse end of the transverse structural steel for connecting to the transverse structural steel of the bracket (4) on the other side; An oblique structural steel, wherein the connection between the transverse structural steel and the longitudinal structural steel is fixedly connected to the first end of the oblique structural steel, and the second end of the oblique structural steel is fixedly connected to an end of the bracket body away from the longitudinal structural steel.

6. The shield receiving device according to claim 5, characterized in that: The extension direction of the bracket body is consistent with the running direction of the shield, and the elevation is consistent with the height of the shield exit; The length of the bracket (4) on the steel block (1) as a support is not less than the overall length of the shield.

7. The shield receiving device according to claim 1, characterized in that: The diagonal brace (5) comprises a first steel section and a second steel section arranged at an angle, wherein the first end of the first steel section is welded to the first end of the second steel section, the side surface of the first steel section away from the second steel section and the first end of the second steel section are welded to the steel block of the bottom support away from the shield opening, and the second end of the first steel section and the second end of the second steel section are welded to the existing structure.

8. The shield receiving device according to claim 7, characterized in that: The second end portion of the first steel section and the second end portion of the second steel section are both welded and fixed to the pre-buried steel plate below the ground; the steel block (1) at the bottom is fixedly connected to the ground via embedded reinforcement.