Cutting device and demolition method for underground structure

The cutting device uses a guide pipe pile and a guide block to pull the cutting rope, which solves the problems of difficulty in demolishing underground structures and damage to equipment in the existing technology, and realizes efficient and safe demolition of underground structures.

CN119507418BActive Publication Date: 2025-09-23CCCC FOURTH HARBOR ENG CO LTD
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Patent Information

Application Number
CN202411637596.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-09-23
Estimated Expiration
2044-11-15

AI Technical Summary

Technical Problem

In the prior art, when dismantling an underground structure, the lifting equipment needs to overcome the sum of the deadweight of the underground structure and the lateral friction of the soil, which easily leads to problems such as insufficient lifting capacity or equipment damage.

Method used

Guide pipe piles and movable guide blocks are used to pull the cutting rope. The underground structure is cut into sections along the axis of the guide pipe pile through the guide grooves on the side walls of the guide pipe piles and the internal pulley group. The negative pressure suction device is used to clean up debris and reduce the difficulty of single lifting.

Benefits of technology

It effectively reduces the difficulty of pulling out underground structures, reduces the risk of damage to lifting equipment, and improves demolition efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of construction equipment, and provides a cutting device and demolition method for underground structures, wherein the cutting device for underground structures includes at least two guide pipe piles, wherein the opposing side walls of two adjacent guide pipe piles are each provided with a guide slot; a guide block is provided within the guide pipe pile, wherein the position of the guide block along the guide pipe pile is adjustable, and a guide pulley is provided on the guide block; a pulley assembly, wherein the pulley assembly includes at least one fixed pulley and at least one movable pulley, wherein the position of the movable pulley relative to the fixed pulley is adjustable; and a rope saw main unit, wherein the rope saw main unit is connected to a cutting rope, wherein the cutting rope passes through the guide pulley, the fixed pulley, and the movable pulley, and the cutting rope is passed through the guide slot between two adjacent guide pipe piles. The present invention can overcome the technical problem of the prior art of using a lifting device to pull out the entire structure when demolishing the underground structure, which requires overcoming the sum of the deadweight of the underground structure and the lateral friction of the soil, and is prone to insufficient lifting capacity or even damage to the lifting equipment.
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Description

Technical Field

[0001] The present invention relates to the technical field of construction equipment, and in particular to a cutting device and a demolition method for underground structures. Background Art

[0002] In order to achieve the purposes of support, soil retaining, waterproofing, etc., existing building structures often include certain underground structures, such as steel pipe piles, concrete piles, steel sheet piles, etc., but sometimes these underground structures need to be demolished for the needs of subsequent construction or new projects; since these underground structures are often driven into the ground vertically and have a considerable depth, it is difficult to use common demolition equipment, such as crushers and excavators, for demolition. The existing demolition method often uses lifting equipment to pull the underground structure out of the soil as a whole; but since the underground structure will rub against the surrounding soil, this demolition method requires the lifting capacity of the lifting equipment to be at least greater than the sum of the deadweight of the underground structure and the lateral friction resistance of the soil, otherwise it is easy for the underground structure to be unable to be pulled out or even the lifting equipment to be damaged; and after the construction of some underground structures is completed, they will be connected into a whole through post-cast concrete wall panels, which further increases the difficulty of pulling out the underground structure as a whole, so it is necessary to develop a new underground structure demolition solution. Summary of the Invention

[0003] The purpose of the present invention is to overcome the technical problem that the existing technology uses a lifting equipment to pull out the entire structure when dismantling the underground structure. It is necessary to overcome the sum of the dead weight of the underground structure and the side friction of the soil, and it is easy to cause insufficient lifting capacity or even damage to the lifting equipment. A cutting device and demolition method for underground structures are provided.

[0004] In a first aspect, the present invention provides a cutting device for an underground structure, comprising:

[0005] At least two guide pipe piles, each of the two adjacent guide pipe piles having a guide groove on its opposite side walls, the guide groove being arranged along the axis of the guide pipe pile; a guide block being arranged inside the guide pipe pile, the position of the guide block along the guide pipe pile being adjustable, and a guide pulley being arranged on the guide block;

[0006] A pulley assembly, the pulley assembly comprising at least one fixed pulley and at least one movable pulley, wherein the position of the movable pulley relative to the fixed pulley is adjustable;

[0007] The rope saw main body is connected with a cutting rope, which passes through a guide pulley, a fixed pulley and a movable pulley, and is passed through a guide groove and arranged between two adjacent guide pipe piles. The cutting rope is used to cut objects between the two adjacent guide pipe piles.

[0008] The cutting device for underground structures of the present invention is provided with a guide groove on the side wall of the guide pipe pile, and a movable guide block connected to the guide pulley is provided inside the guide pipe pile, so that the cutting rope of the rope saw main unit can extend into one of the guide pipe piles, bypass the guide pulley inside it, and then pass through its guide groove, pass through the guide groove of the other guide pipe pile, bypass the guide pulley inside it, and finally return to the rope saw main unit, so that the cutting rope can be set between two adjacent guide pipe piles; and when the guide block moves along the axis of the guide pipe pile, the guide pulley will move along it and pull the cutting rope to move along the axis of the guide pipe pile, and then the rope saw main unit is turned on to drive the cutting rope to move along its axial direction, so that the object between the two adjacent guide pipe piles can be cut; and when the guide block pulls the cutting rope to move, the tensioning state of the cutting rope will change, so the distance between the movable pulley and the fixed pulley can be adjusted accordingly, thereby preventing the cutting rope from being too tight and breaking, or being too loose and unable to complete the cutting.

[0009] As can be seen from the above, this solution can pull the cutting rope along the axis of the guide pipe pile through the guide pipe pile and the movable guide block inside it, and provide the cutting rope with the intrusion force required for cutting, so that the cutting rope can cut the object between two adjacent guide pipe piles; therefore, as long as the guide pipe pile is inserted near the underground structure to be demolished so that the underground structure is located between two adjacent guide pipe piles, the underground structure can be cut into several segments along the axis direction of the guide pipe pile, and each segment can be pulled out separately subsequently, which can reduce the lifting capacity required for each lifting operation, thereby greatly reducing the difficulty of pulling out the underground structure and reducing the risk of damage to the lifting equipment.

[0010] Preferably, the guide block is also connected to a negative pressure suction device, which is used to suck the mud and sand in the guide pipe pile; the negative pressure suction device is connected to a mud and sand conveying pipe, and the mud and sand conveying pipe extends from one end of the negative pressure suction device to the outside of the guide pipe pile, and the mud and sand conveying pipe is used to transport the mud and sand out of the guide pipe pile.

[0011] Since the cutting rope will disturb the surrounding soil during cutting, debris such as sand, gravel, and cutting fragments will enter the guide pipe pile from the guide groove. If the amount of debris is too large, it will easily cause the guide pipe pile to be blocked. Therefore, this solution connects a negative pressure suction device and a mud and sand conveying pipe to the guide block to extract the debris in the guide pipe pile to the outside of the guide pipe pile, thereby preventing the guide pipe pile from being blocked and ensuring that the guide block can run smoothly in the guide pipe pile.

[0012] Preferably, the mud and sand conveying pipe comprises a steel wire hose.

[0013] This solution can ensure that the mud and sand conveying pipe has a good life and wear resistance, and prevent the mud and sand conveying pipe from being damaged, resulting in failure of the negative pressure suction device, and leakage of contents into the guide pipe pile.

[0014] Preferably, a winch is further included, wherein the cable of the winch is connected to the guide block, and the rotation of the winch can drive the guide block to move along the axial direction of the guide pipe pile.

[0015] This solution recommends using a winch to pull the guide block along the guide pipe pile, which has the advantages of simple structure and reliable operation.

[0016] Preferably, a counterweight block is connected to the guide block.

[0017] This solution recommends connecting a counterweight block to the guide block so that the guide block can provide the cutting rope with a greater cutting penetration force, thereby enabling the cutting rope to cut underground structures more efficiently and quickly.

[0018] Preferably, the counterweight block is detachably connected to the guide block.

[0019] This solution can facilitate operators to replace the counterweight according to actual cutting conditions.

[0020] Preferably, it also includes a gear seat and a rack, the gear seat is rotatably connected to a gear and a movable pulley, the gear is engaged with the rack, and the rotation of the gear can drive the gear seat to move along the length direction of the rack, thereby driving the movable pulley close to or away from the fixed pulley.

[0021] This solution recommends a specific movable pulley position adjustment method, which can accurately adjust the relative position of the movable pulley and the fixed pulley, thereby better controlling the tension of the cutting rope and the cutting effect.

[0022] Preferably, the gear is connected to a drive motor.

[0023] This solution provides one of the specific gear driving methods.

[0024] Preferably, a guide bar is provided on one of the guide pipe pile and the guide block, and a guide groove is provided on the other of the guide pipe pile and the guide block. The length directions of the guide bar and the guide groove are both arranged along the axial direction of the guide pipe pile, and the guide bar is slidably connected to the guide groove.

[0025] This solution can guide the movement of the guide block in the guide pipe pile through the sliding connection of the guide bar and the guide groove, and can suppress the shaking of the guide block in the guide pipe pile, thereby preventing the guide block from hitting the inner wall of the guide pipe pile, causing a negative impact on the cutting effect of the cutting rope, or even causing structural damage.

[0026] In a second aspect, the present invention provides a method for dismantling an underground structure, which is applied to a cutting device for an underground structure of the present invention, comprising the following steps:

[0027] S1. Insert guide pipe piles on at least two sides of the underground structure to be demolished, install the wire saw main unit and pulley assembly, and thread the cutting rope;

[0028] S2. Start the wire saw main unit and adjust the position of the guide block so that it moves along the axis of the guide pipe pile, thereby driving the cutting rope to move underground and cut the underground structure along the way until the underground structure is cut into at least two segments; synchronously adjust the position of the movable pulley relative to the fixed pulley to maintain the tension of the cutting rope within the specified working range;

[0029] S3. Use lifting equipment to pull out the sections of the underground structure from the ground one by one.

[0030] When demolishing an underground structure, the method for demolishing an underground structure of the present invention first cuts the underground structure into at least two segments by using the cutting device for underground structures of the present invention, and then pulls out each segment separately. This can reduce the lifting capacity required for a single lifting operation, thereby greatly reducing the difficulty of pulling out the underground structure and reducing the risk of damage to the lifting equipment.

[0031] Compared with the prior art, the present invention has the following beneficial effects:

[0032] 1. The present invention provides a cutting device for underground structures. A cutting rope is pulled along the axis of the guide pipe pile by a guide pipe pile and a movable guide block therein, and the cutting rope is provided with the intrusion force required for cutting, so that the cutting rope can cut objects between two adjacent guide pipe piles. Therefore, as long as the guide pipe pile is inserted near the underground structure to be demolished so that the underground structure is located between two adjacent guide pipe piles, the underground structure can be cut into several segments along the axis of the guide pipe pile. Each segment can be pulled out separately later, which can reduce the lifting capacity required for each lifting operation, thereby greatly reducing the difficulty of pulling out the underground structure and reducing the risk of damage to the lifting equipment.

[0033] 2. The present invention provides a method for dismantling an underground structure by using the cutting device for underground structures of the present invention to cut the underground structure into at least two segments, and then pulling out each segment separately, which can reduce the lifting capacity required for a single lifting operation, thereby greatly reducing the difficulty of pulling out the underground structure and reducing the risk of damage to the lifting equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 This is a schematic diagram of the main structure of a cutting device for underground structures of the present invention. Figure 1 ;

[0035] Figure 2 This is a schematic diagram of the top view of a cutting device for underground structures of the present invention. Figure 1 ;

[0036] Figure 3 This is a schematic diagram of the cross-sectional structure of a guide pipe pile of a cutting device for underground structures according to the present invention;

[0037] Figure 4 This is a schematic structural diagram of a negative pressure suction device for a cutting device for underground structures of the present invention;

[0038] Figure 5 This is a schematic diagram of the main structure of a cutting device for underground structures of the present invention. Figure 2 ;

[0039] Figure 6 This is a schematic diagram of the top view of a cutting device for underground structures of the present invention. Figure 2 ;

[0040] Icons: 1-guide pipe pile; 11-guide slot; 2-guide block; 21-guide pulley; 22-counterweight block; 23-lifting ear; 31-fixed pulley; 32-movable pulley; 4-rope saw main unit; 41-cutting rope; 5-negative pressure suction device; 51-suction nozzle; 52-air conveying pipe; 53-mud and sand conveying pipe; 6-winch; 71-gear seat; 72-rack; 73-gear; 81-guide bar; 9-mounting base; 10-underground structure. DETAILED DESCRIPTION

[0041] The present invention will be further described in detail below in conjunction with test examples and specific embodiments. However, this should not be understood as limiting the scope of the present invention to the following embodiments, and all technologies implemented based on the present invention fall within the scope of the present invention.

[0042] Unless otherwise specified, in the description of the specific embodiments of the present invention, the terms indicating orientation or positional relationships such as "upper," "lower," "left," "right," "center," "inside," and "outside" are based on the orientation or positional relationships shown in the accompanying drawings, or are the orientation or positional relationships in which the inventive product / device / apparatus is typically placed when in use. These terms indicating orientation or positional relationships are merely for the purpose of facilitating the description of the present invention or simplifying the description of the specific embodiments to facilitate a quick understanding of the solutions by technicians. They do not indicate or imply that a particular device / component / element must have a specific orientation or be constructed and operated in a specific positional relationship, and therefore should not be construed as limiting the present invention.

[0043] In addition, if the terms "horizontal", "vertical", "overhanging", "parallel" and the like appear, it does not mean that the corresponding devices / components / elements are required to be absolutely horizontal or vertical or overhanging or parallel, but may be slightly tilted or have deviations. For example, "horizontal" only means that its direction is more horizontal than "vertical", and does not mean that the structure must be completely horizontal, but may be slightly tilted. Alternatively, it can be simply understood that the corresponding devices / components / elements are set in directions such as "horizontal", "vertical", "overhanging", "parallel", etc., and can have an error / deviation of ±10% relative to the corresponding direction setting, more preferably an error / deviation within ±8%, more preferably an error / deviation within ±6%, more preferably an error / deviation within ±5%, and more preferably an error / deviation within ±4%. As long as the corresponding device / component / element is within the error / deviation range, it can still achieve its role in the solution of the present invention.

[0044] Furthermore, the use of terms such as "first," "second," and "third" in terminology is solely for the purpose of distinguishing between identical or similar components and should not be construed as emphasizing or implying the relative importance of a particular component. Furthermore, in the description of the embodiments of the present invention, "several," "a plurality," and "a number" represent at least two. The number may also be any number, such as two, three, four, five, six, seven, eight, nine, or even more than nine.

[0045] Furthermore, in the description of the technical solution of the present invention, unless otherwise expressly specified, defined, or limited, the terms "disposed," "installed," "connected," "connected," "provided with," "laid," and "arranged" should be understood broadly. For example, they may refer to fixed connections, detachable connections, or integral connections. They may be welded, riveted, bolted, threaded, or other commonly used connection methods in the art. Such connections may be mechanical, electrical, or communicative; they may be direct, indirect via an intermediate medium, or internally connected between two components.

[0046] Example 1

[0047] like Figures 1 to 6As shown, a cutting device for underground structures includes a mounting base 9, a guide pipe pile 1, a pulley block and a rope saw main unit 4; the number of the guide pipe piles 1 is at least two, and a guide groove 11 is provided on the opposite side walls of two adjacent guide pipe piles 1. The length of the guide groove 11 is set along the axial direction of the guide pipe pile 1, and the width of the guide groove 11 is wider than the diameter of the cutting rope 41; a guide block 2 is provided in the guide pipe pile 1, and the position of the guide block 2 along the guide pipe pile 1 is adjustable, and a guide pulley 21 is provided on the guide block 2; the mounting base 9 is provided above the guide pipe pile 1, and a guide pulley 21 is provided on the guide block 2. The through holes corresponding to the pipe piles 1 are used to facilitate operations on the guide pipe piles 1, such as placing the guide block 2, the cutting rope 41, and the pull rope; the pulley block is connected to the mounting base 9, and includes at least one fixed pulley 31 and at least one movable pulley 32, and the position of the movable pulley 32 relative to the fixed pulley 31 is adjustable; the rope saw main unit 4 is connected to the mounting base 9 and is connected to the cutting rope 41, which passes around the guide pulley 21, the fixed pulley 31 and the movable pulley 32, and the cutting rope 41 passes through the guide groove 11 and is arranged between two adjacent guide pipe piles 1. The cutting rope 41 is used to cut objects between two adjacent guide pipe piles 1.

[0048] In the above embodiment, the case of including two guide pipe piles 1 is taken as an example. Figure 1 and Figure 2 As shown, Figure 1 and Figure 2 The upper side is the left side, Figure 1 and Figure 2 The lower side is the right side, and the cutting rope 41 starts from the motor outlet turntable on the left side of the rope saw main body 4, passes through a group of fixed pulleys 31 and then enters the left guide pipe pile 1 from the top opening of the left guide pipe pile 1, then passes around the guide pulley 21 in the left guide pipe pile 1, and then passes through the guide groove 11 of the left guide pipe pile 1, and passes through the corresponding guide pulley 21, and then passes through the guide pipe pile 1 from the top opening of the right guide pipe pile 1, passes around a group of fixed pulleys 31, a group of movable pulleys 32, and a group of fixed pulleys 31 in turn, and returns to the motor inlet turntable on the right side of the rope saw main body 4, forming a cutting rope 41 rotation cycle; it should be noted that the winding order of the cutting rope 41 mentioned here is only for the convenience of understanding the path of the cutting rope 41, and does not mean that the cutting rope 41 must pass through each structure in the same order, and the arrangement position and number of the fixed pulleys 31 and movable pulleys 32 can be changed according to actual site requirements.

[0049] In the above embodiment, for the case of three or more guide pipe piles 1, it is necessary to set two or more guide grooves 11 on some of the pipe piles. Taking the case of three guide pipe piles 1 arranged side by side as an example, the guide pipe piles 1 on the left and right sides need to be provided with a guide groove 11 on the right and left sides respectively, and the middle guide pipe pile 1 needs to be provided with guide grooves 11 on both the left and right sides. In this way, the cutting rope 41 can be installed between the left guide pipe pile 1 and the middle guide pipe pile 1, and then pass through the middle guide pipe pile 1 to be installed between the right guide pipe pile 1 and the middle guide pipe pile 1.

[0050] It should be noted that Figure 1 The structures of the guide blocks 2 on both sides are different only to respectively show the structure of the guide block 2 itself and the structure of the guide block 2 connected to the negative pressure suction device 5. In actual working conditions, both guide blocks 2 on both sides can be connected to the negative pressure suction device 5, or both guide blocks 2 on both sides can be not connected to the negative pressure suction device 5.

[0051] In an optional embodiment, the implementation method of the adjustable position of the guide block 2 in the guide pipe pile 1 includes but is not limited to: setting a slide rail and slider mechanism between the guide block 2 and the guide pipe pile 1, and the length direction of the slide rail is along the axial direction of the guide pipe pile 1; setting a gear rack mechanism between the guide block 2 and the guide pipe pile 1; directly making the outer wall of the guide block 2 and the inner wall of the guide pipe pile 1 fit in the gap; and setting a running device on the guide block 2, such as running wheels, tracks, and running feet.

[0052] In an optional embodiment, the guide block 2 is further connected to a negative pressure suction device 5, for example Figure 1 and Figure 4 As shown, the negative pressure suction device 5 includes a suction nozzle 51, a compressed air delivery pipe 52 and a mud and sand delivery pipe 53. The bottom opening of the suction nozzle 51 is used to suck mud and sand, and the top of the suction nozzle 51 is connected to one end of the mud and sand delivery pipe 53. The other end of the mud and sand delivery pipe 53 extends to the outside of the guide pipe pile 1 for spraying mud and sand; one end of the air delivery pipe 52 extends into the mud and sand delivery pipe 53, and the outlet faces upward. The other end of the air delivery pipe 52 is connected to the air compressor, and compressed air is delivered to the inside of the air delivery pipe 52, which can drive the air in the mud and sand delivery pipe 53 to move upward, thereby forming a negative pressure in the mud and sand delivery pipe 53, so that mud, sand and other debris can be sucked in by the suction nozzle 51 and delivered to the outside of the guide pipe pile 1 through the mud and sand delivery pipe 53.

[0053] In the above embodiment, the suction nozzle 51 is located at the bottom of the guide block 2 , so that mud and sand below the guide block 2 can be cleaned before the guide block 2 moves downward, preventing the guide block 2 from being stuck in the guide pipe pile 1 due to mud and sand.

[0054] In an optional embodiment, the mud and sand conveying pipe 53 and the air conveying pipe 52 may both include steel hoses.

[0055] In an optional embodiment, a winch 6 is further included, and a cable of the winch 6 is connected to the lifting lug 23 on the guide block 2. The rotation of the winch 6 can drive the guide block 2 to move along the axial direction of the guide pipe pile 1.

[0056] In an optional embodiment, a counterweight 22 is detachably connected to the guide block 2. At least two counterweights 22 are connected to the bottom of the guide block 2 via threaded rods and nuts. The number of counterweights 22 can be increased or decreased according to actual use requirements, thereby changing the total weight of the counterweights 22 to adapt to different cutting requirements.

[0057] In an optional embodiment, a rack 72 and a gear seat 71 are also provided on the mounting base 9, and the rack 72 is fixed to the mounting base 9; a walking wheel is provided at the bottom of the gear seat 71, so that it can move on the mounting base 9 along the direction of the rack 72; a gear 73 and a movable pulley 32 are rotatably connected to the gear seat 71, wherein the gear 73 is engaged with the rack 72, and the gear 73 is also connected to a drive motor, such as a stepper motor and a servo motor; the drive motor can drive the gear 73 to rotate, thereby driving the gear seat 71 to move along the length direction of the rack 72, and then driving the movable pulley 32 to approach or move away from the fixed pulley 31.

[0058] In an optional embodiment, a guide bar 81 is provided on one of the guide pipe pile 1 and the guide block 2, and a guide groove is provided on the other of the guide pipe pile 1 and the guide block 2. The length direction of the guide bar 81 and the guide groove are both provided along the axis direction of the guide pipe pile 1, and the guide bar 81 is slidably connected to the guide groove. Figure 3 As shown, round steel is provided inside the guide pipe pile 1 as a guide bar 81, and a guide groove of corresponding shape is provided on the guide block 2, so that the movement of the guide block 2 can be guided by the mutual limitation of the guide groove and the guide bar 81; and two or more guide bars 81 can be provided, and are distributed in a centrally symmetrical or axially symmetrical manner relative to the axis of the guide pipe pile 1, thereby providing a more uniform guiding effect.

[0059] In an optional embodiment, the cutting rope 41 includes at least one of a diamond wire saw, a special-shaped stone cutting wire saw, and a combination cutting wire saw.

[0060] In an optional embodiment, the guide through groove 11 can be provided along the entire length of the guide pipe pile 1 , thereby maximizing the cutting range of the cutting rope 41 while keeping the length of the guide pipe pile 1 unchanged.

[0061] In an optional embodiment, if the distances between multiple groups of guide pipe piles 1 are relatively close, the multiple groups of guide pipe piles 1 can share a common mounting base 9; for example Figure 5 and Figure 6As shown, there are two groups of guide pipe piles 1, each group of guide pipe piles 1 includes two guide pipe piles 1, and a mounting base 9 can be set directly above these four guide pipe piles 1, and the corresponding rope saw main unit 4 and pulley group are respectively set on the mounting base 9 for the two groups of guide pipe piles 1.

[0062] Example 2

[0063] A method for dismantling an underground structure, applied to the cutting device for an underground structure in Example 1, comprises the following steps:

[0064] S1. Insert guide pipe piles 1 on at least two sides of the underground structure 10 to be demolished. For example, for steel sheet piles, at least one guide pipe pile 1 can be inserted on both sides of the steel sheet pile. The angle between the axis of the guide pipe pile 1 and the horizontal plane is determined according to the cutting requirements. For example, when the underground structure 10 needs to be cut vertically, the axis of the guide pipe pile 1 can be made perpendicular to the horizontal plane; the number of guide pipe piles 1 is determined according to the number of cutting sections. For example, if a steel sheet pile needs to be cut into three segments, two groups of guide pipe piles 1 can be set along the length direction of the steel sheet pile, and each group of guide pipe piles 1 includes two guide pipe piles 1, so that two incisions can be made on the steel sheet pile to divide the steel sheet pile into three segments.

[0065] After inserting the guide pipe pile 1, the negative pressure suction device 5 can be used to clean the inside of the guide pipe pile 1 to prevent debris inside the guide pipe pile 1 from interfering with the movement of the guide block 2; if the guide block 2 is connected to the negative pressure suction device 5, the hole cleaning operation can also be performed simultaneously when moving the guide block 2 in step S2.

[0066] Subsequently, a mounting base 9 , a rope saw main unit 4 , a pulley assembly and other structures are arranged above the guide pipe pile 1 , and a cutting rope 41 is passed through.

[0067] S2. Start the rope saw main unit 4 and adjust the position of the guide block 2 so that the guide block 2 moves along the axis of the guide pipe pile 1. For example, the guide block 2 is pulled along the guide pipe pile 1 by the winch 6, thereby driving the cutting rope 41 to move underground and cut the underground structure 10 along the way until the underground structure 10 is cut into at least two segments. In the process of moving the guide block 2, the position of the movable pulley 32 relative to the fixed pulley 31 is synchronously adjusted. For example, the drive motor is started so that the movable pulley 32 is close to the fixed pulley 31, and part of the length of the cutting rope 41 is released, thereby keeping the tension of the cutting rope 41 within the specified working range.

[0068] When adjusting the position of the guide block 2, the guide block 2 can be located at the top of the guide pipe pile 1 before the cutting operation begins, and the cutting rope 41 can be located above the underground structure 10, and then the guide block 2 can be moved downward from the top of the guide pipe pile 1 to the bottom to facilitate the winding of the cutting rope 41; or the guide block 2 can be located at the bottom of the guide pipe pile 1 before the cutting operation begins, and the cutting rope 41 can be located below the underground structure 10, and then the guide block 2 can be moved upward from the bottom of the guide pipe pile 1 to the top, so that the underground structure 10 can be directly used to keep the cutting rope 41 taut, without the need to use a counterweight to provide the intrusive force required for cutting.

[0069] S3. Use lifting equipment, such as a crawler crane and a vibrating hammer, to pull out the segments of the underground structure 10 from the ground.

[0070] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A cutting device for underground structures, characterized in that: include: At least two guide pipe piles (1), each of the two adjacent guide pipe piles (1) being provided with a guide groove (11) on its opposite side walls, the length of the guide groove (11) being arranged along the axis direction of the guide pipe pile (1); a guide block (2) being arranged in the guide pipe pile (1), the position of the guide block (2) being adjustable along the guide pipe pile (1), and a guide pulley (21) being arranged on the guide block (2); A pulley assembly, the pulley assembly comprising at least one fixed pulley (31) and at least one movable pulley (32), wherein the position of the movable pulley (32) relative to the fixed pulley (31) is adjustable; A rope saw main unit (4), the rope saw main unit (4) being connected to a cutting rope (41), the cutting rope (41) passing around the guide pulley (21), the fixed pulley (31) and the movable pulley (32), and the cutting rope (41) passing through the guide slot (11) and being arranged between two adjacent guide pipe piles (1), the cutting rope (41) being used for cutting an object between the two adjacent guide pipe piles (1); The guide block (2) is further connected to a negative pressure suction device (5), and the negative pressure suction device (5) is used to suck mud and sand in the guide pipe pile (1); the negative pressure suction device (5) is connected to a mud and sand conveying pipe (53), and one end of the mud and sand conveying pipe (53) away from the negative pressure suction device (5) extends to the outside of the guide pipe pile (1), and the mud and sand conveying pipe (53) is used to transport mud and sand out of the guide pipe pile (1).

2. A cutting device for underground structures according to claim 1, characterized in that: The mud and sand conveying pipe (53) comprises a steel wire hose.

3. A cutting device for underground structures according to any one of claims 1 to 2, characterized in that: It also includes a winch (6), the cable of the winch (6) is connected to the guide block (2), and the rotation of the winch (6) can drive the guide block (2) to move along the axial direction of the guide pipe pile (1).

4. A cutting device for underground structures according to any one of claims 1 to 2, characterized in that: A counterweight block (22) is connected to the guide block (2).

5. A cutting device for underground structures according to claim 4, characterized in that: The counterweight block (22) is detachably connected to the guide block (2).

6. A cutting device for underground structures according to any one of claims 1 to 2, characterized in that: The invention also includes a gear seat (71) and a rack (72), wherein a gear (73) and the movable pulley (32) are rotatably connected to the gear seat (71), and the gear (73) is meshed with the rack (72). The rotation of the gear (73) can drive the gear seat (71) to move along the length direction of the rack (72), thereby driving the movable pulley (32) to approach or move away from the fixed pulley (31).

7. A cutting device for underground structures according to claim 6, characterized in that: The gear (73) is connected to a drive motor.

8. A cutting device for underground structures according to any one of claims 1 to 2, characterized in that: A guide bar (81) is provided on one of the guide pipe pile (1) and the guide block (2), and a guide groove is provided on the other of the guide pipe pile (1) and the guide block (2). The length directions of the guide bar (81) and the guide groove are both arranged along the axial direction of the guide pipe pile (1), and the guide bar (81) is slidably connected to the guide groove.

9. A method for dismantling an underground structure, characterized in that: A cutting device for underground structures as claimed in any one of claims 1 to 8, comprising the following steps: S1, inserting guide pipe piles (1) on at least two sides of the underground structure (10) to be demolished, installing the wire saw main unit (4) and the pulley block, and threading the cutting rope (41); S2, starting the rope saw main unit (4), adjusting the position of the guide block (2), so that the guide block (2) moves along the axis of the guide pipe pile (1), thereby driving the cutting rope (41) to move underground and cut the underground structure (10) along the way, until the underground structure (10) is cut into at least two segments; synchronously adjusting the position of the movable pulley (32) relative to the fixed pulley (31), so as to keep the tension of the cutting rope (41) within the specified working range; S3. Use lifting equipment to pull out the segments of the underground structure (10) from the ground respectively.

Citation Information

Patent Citations

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