Integrated gutter inlet forcible entry device

By integrating longitudinal and horizontal cutting components, water mist spraying and dust removal equipment into the rainwater outlet demolition device, the problems of low efficiency of joint construction with multiple equipment, high noise pollution and difficult dust control in the existing technology are solved, and efficient and environmentally friendly rainwater outlet cutting and demolition are achieved.

CN223423087UActive Publication Date: 2025-10-10BEIJING DRAINAGE CONSTR CO LTD
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Patent Information

Application Number
CN202422932029.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-10
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The existing rainwater inlet trimming and demolition construction method requires the use of multiple equipment, which affects the low efficiency of road traffic, causes high noise pollution, makes dust difficult to control, and makes it difficult to achieve unified and standardized operations, resulting in high construction complexity and serious environmental pollution.

Method used

An integrated rainwater inlet demolition device is designed, which integrates longitudinal and horizontal cutting components, water mist spraying and dust removal equipment. The construction area is enclosed by a cabinet to achieve integrated operation, reduce the number of equipment and construction area, reduce noise and dust, and ensure cutting depth and straightness.

Benefits of technology

It improves the efficiency of rainwater inlet trim removal, reduces the impact of construction on road traffic, reduces noise and dust pollution, ensures construction quality and efficiency, and realizes standardized and unified operations.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides an integrated gutter inlet forcible entry device. The integrated gutter inlet forcible entry device comprises a hollow cuboid-shaped cabinet body with an opening in the lower portion; the operation panel is fixed on the upper surface of the cabinet body and is used for performing operation control on the device; the first longitudinal cutting assembly and the second longitudinal cutting assembly are fixed to the inner sides of the two narrow edges of the cabinet body respectively; the third longitudinal cutting assembly is fixed on the inner side of one long edge of the cabinet body; the first longitudinal cutting assembly, the second longitudinal cutting assembly and the third longitudinal cutting assembly can conduct longitudinal cutting. The horizontal cutting assembly is fixed to the inner side of the side, opposite to the third longitudinal cutting assembly, of the cabinet body and can conduct horizontal cutting; and the electric cabinet box is used for accommodating a control module of the cutting assembly. The method has the advantages that multi-device combined construction is not needed, the occupied area of construction is small, and road passing is not affected; by means of the device, the gutter inlet can be broken and dismantled at a time, operation efficiency is high, and the risk of traffic jam is reduced.
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Description

Technical Field

[0001] The present application belongs to the field of drainage engineering construction technology and environmental protection, and specifically relates to an integrated rainwater outlet demolition device. Background Art

[0002] During the construction process of the urban rainwater collection system to carry out the horizontal and vertical combination transformation of the rainwater grates and daily maintenance, it is necessary to remove the edge structure of the existing rainwater outlet after cutting the road. Figure 1 As shown, to trim and remove the rainwater outlet, first, vertical cutting is required on the periphery of the three sides of the rainwater outlet, and then the cutting equipment is extended into the rainwater outlet to perform horizontal cutting on the three sides of the rainwater outlet, and finally the cut edge strips are removed.

[0003] Currently, the construction method for trimming and dismantling rainwater inlets is mostly a combination of marble machines, jackhammers, trimmers, breakers, milling machines, etc., which requires the coordinated operation of more than two types of equipment. The existing construction method has the following disadvantages:

[0004] 1. It requires the joint construction of multiple equipment, and the barrier operation area is large, which seriously affects the road traffic;

[0005] 2. Due to the limited space for stormwater inlet reconstruction, manual demolition can only be carried out by top-down demolition on the road surface, which has low efficiency and long demolition time, greatly reducing the efficiency of urban road traffic and causing traffic congestion;

[0006] 3. There are environmental problems such as high noise pollution and difficulty in controlling dust;

[0007] 4. Due to the influence of manual operation and equipment vibration, it is difficult to unify the demolition depth of the rainwater outlet and maintain the straightness of the cutting edge, which increases the complexity of subsequent construction operations;

[0008] 5. The top-down operation method will destroy the integrity of the target structure and make it difficult to achieve smooth resection and separation at the specified depth;

[0009] 6. The traditional water sprinkling method in the construction area has poor dust suppression effect, consumes large amounts of water and is difficult to collect, which can easily cause water accumulation in surrounding roads.

[0010] Therefore, in order to effectively improve construction efficiency, shorten operation time, control environmental noise, suppress construction dust, realize standardized and unified construction operations, and ensure the construction quality of urban rainwater grating renovation and maintenance projects, it is urgent to develop a multifunctional integrated and coordinated rainwater outlet cutting and removal device to achieve environmentally friendly and efficient operation and construction. Utility Model Content

[0011] The purpose of this application is to overcome the defects of the existing technology such as low operating efficiency, high noise pollution and difficult dust control.

[0012] In order to achieve the above object, the application provides an integrated storm inlet breaking device, which comprises:

[0013] a hollow cuboid-shaped cabinet 1, which is open at the lower part;

[0014] an operation panel 4, which is fixed on the upper surface of the cabinet 1 and is used for operating control of the device;

[0015] a first longitudinal cutting assembly 7 and a second longitudinal cutting assembly 8, which are respectively fixed on the inner sides of two narrow edges of the cabinet 1;

[0016] a third longitudinal cutting assembly 9, which is fixed on the inner side of one long edge of the cabinet 1;

[0017] the first longitudinal cutting assembly 7, the second longitudinal cutting assembly 8 and the third longitudinal cutting assembly 9 can perform longitudinal cutting;

[0018] a horizontal cutting assembly 10, which is fixed on the inner side of the edge of the cabinet 1 opposite to the third longitudinal cutting assembly 9 and can perform horizontal cutting; and

[0019] an electric cabinet box 2, which is embedded in the cabinet 1 and is located below the operation panel 4 and is used for accommodating control modules of the first longitudinal cutting assembly 7, the second longitudinal cutting assembly 8 and the third longitudinal cutting assembly.

[0020] the first longitudinal cutting assembly 7, the second longitudinal cutting assembly 8 and the third longitudinal cutting assembly 9 are the same in structure and each comprises a longitudinal driving device, a cutting machine frame, a cutting machine and a horizontal moving device; wherein,

[0021] the longitudinal driving device is used for fixedly connecting the longitudinal cutting assembly with the cabinet 1 and can drive the cutting machine frame to move up and down;

[0022] the longitudinal driving device comprises:

[0023] a base 711, which is used for fixing the longitudinal cutting assembly to the cabinet 1;

[0024] four vertical cylindrical first guide columns 704, two of which are fixed on both ends of the base 711 as a group; the first guide columns 704 have external threads; and

[0025] two first electric push rods 714, which are respectively fixed above the first guide columns 704 on both ends of the base 711 and can drive the first guide columns 704 to rotate;

[0026] the cutting machine frame is a mouth-shaped frame and is used for supporting the cutting machine;

[0027] the cutting machine frame comprises:

[0028] A pair of oppositely positioned long strip-shaped fixed rods 702 and a pair of oppositely positioned cylindrical sliding rods 712;

[0029] Four nut-shaped first guide sleeves 703 having internal threads; two first guide sleeves 703 are fixedly mounted on the outer side of each fixing rod 702; each first guide sleeve 703 is threadedly connected to one first guide post 704; and

[0030] Two nut-shaped screw support seats 708 are fixed on the same side of the two fixing rods 702;

[0031] The cutting machine is used to perform longitudinal cutting operations;

[0032] The cutting machine comprises:

[0033] First motor 701;

[0034] The circular saw blade 705 is installed vertically; the first motor 701 is capable of driving the saw blade 705 to rotate;

[0035] Two second guide sleeves 715 are respectively located on both sides of the saw blade 705; each second guide sleeve 715 is sleeved on one of the slide bars 712; and

[0036] A third guide sleeve 710 in a nut shape having an internal thread;

[0037] The horizontal moving device is used to drive the cutting machine to move horizontally;

[0038] The horizontal moving device comprises:

[0039] A second motor 706, a coupling 707 and a cylindrical screw 709 with external threads;

[0040] The second motor 706 is fixed to one end of the fixed rod 702; the rotating shaft of the second motor 706 is fixedly connected to the coupling 707; the coupling 707 is fixedly connected to the screw rod 709; the screw rod 709 passes through the two screw rod support seats 708 in sequence to maintain a horizontal state;

[0041] The third guide sleeve 710 is threadedly connected to the screw rod 709 .

[0042] The structure of the horizontal cutting assembly 10 is substantially the same as that of the first longitudinal cutting assembly 7, except that:

[0043] A long folding chain saw 1001 replaces the saw blade 705;

[0044] The chain saw 1001 is installed horizontally.

[0045] As an improvement of the above device, it also includes:

[0046] A water tank 6 is fixed inside the cabinet 1;

[0047] Water mist spraying device, used for spraying water mist, comprising:

[0048] a spray pipe, one end of which extends into the water tank 6 and the other end of which has four spray ports, which are respectively located above the first longitudinal cutting assembly 7, the second longitudinal cutting assembly 8, the third longitudinal cutting assembly 9 and the horizontal cutting assembly 10; and

[0049] The spray water pump is fixed on the spray pipe and is linked with the first longitudinal cutting assembly 7, the second longitudinal cutting assembly 8, the third longitudinal cutting assembly 9 and the horizontal cutting assembly 10 to pump water from the water tank 6 for spraying.

[0050] As an improvement of the above device, it also includes:

[0051] Dust removal equipment, used to collect dust generated during the operation of the device, including:

[0052] A dust extraction duct, one end of which is divided into four dust extraction ports, which are respectively located above the first longitudinal cutting component 7, the second longitudinal cutting component 8, the third longitudinal cutting component 9 and the horizontal cutting component 10; the other end extends out of the cabinet 1; and

[0053] The dust extraction motor is fixed on the dust extraction pipe and is linked with the first longitudinal cutting component 7, the second longitudinal cutting component 8, the third longitudinal cutting component 9 and the horizontal cutting component 10 to extract dust out of the cabinet 1.

[0054] As an improvement of the above device, it also includes:

[0055] A display 3 is fixed on the upper surface of the cabinet 1;

[0056] Several lighting lamps, fixed inside the cabinet 1; and

[0057] A plurality of cameras 11 are fixed inside the cabinet 1 and electrically connected to the display 3 .

[0058] As an improvement of the above device, it also includes:

[0059] Four universal wheel assemblies 12 are fixed at the four corners below the cabinet 1;

[0060] The universal wheel assembly 12 includes:

[0061] A fourth guide sleeve 1203 fixed to a lower corner of the cabinet 1; the fourth guide sleeve 1203 is in the shape of a nut and has an internal thread;

[0062] The second electric push rod 1201 and

[0063] A cylindrical second guide post 1202 having an external thread;

[0064] The second electric push rod 1201 is hinged to one end of the second guide column 1202 and can drive the second guide column 1202 to rotate;

[0065] A universal wheel 1204 is fixedly connected to an end of the second guide column 1202 away from the second electric push rod 1201;

[0066] The fourth guide sleeve 1203 is threadedly connected to the second guide column 1202 .

[0067] Compared with the prior art, the advantages of this application are:

[0068] 1. No need for multiple equipment to work together, small construction area is occupied, and road traffic is not affected;

[0069] 2. The device can be used to demolish the rainwater outlet in one go, with high efficiency and short demolition time, which greatly reduces the risk of traffic congestion caused by urban road traffic efficiency;

[0070] 3. Construction noise pollution is small and dust is effectively controlled;

[0071] 4. Use unified tools to ensure uniform demolition depth of rainwater outlets and straight cutting edges, thus reducing the complexity of subsequent operations. BRIEF DESCRIPTION OF THE DRAWINGS

[0072] Figure 1 The figure shows the schematic diagram of the removal of the cutting edge of the rainwater inlet;

[0073] Figure 2 Shown is an external stereoscopic view of the integrated rainwater inlet breaking device;

[0074] Figure 3 Shown is a top view with the cabinet shell removed;

[0075] Figure 4 Shown is a perspective view of the longitudinal cutting assembly;

[0076] Figure 5 Shown is a perspective view of the horizontal cutting assembly;

[0077] Figure 6 Shown is a three-dimensional view of the universal wheel assembly. DETAILED DESCRIPTION

[0078] The technical solution of this application is described in detail below with reference to the accompanying drawings.

[0079] like Figure 2 As shown, the integrated rainwater outlet breaking device provided by this application includes:

[0080] The cabinet body 1 may be in the shape of a hollow rectangular parallelepiped with an opening at the bottom for accommodating other equipment of the device, and its closed shell can also prevent dust during construction. The rainwater outlet is generally rectangular, so the cross-section of the cabinet body 1 may also be rectangular. An operation panel 4 may be fixed on one side above the cabinet body 1. The operation panel 4 may have control elements or indicator lights for controlling the start, stop and operation of other equipment of the device. An electric cabinet box 2 may be embedded in the cabinet body 1 below the operation panel 4. The side of the cabinet body 1 has an opening, exposing the cabinet door of the electric cabinet box 2, which is convenient for maintenance of the electric cabinet box 2. One side of the cabinet body 1 may also have an outlet for a dust extraction duct 5 extending out of the cabinet body. A display 3 may be fixedly installed above the cabinet body 1, and the display 3 may be connected to the camera 11 inside the cabinet body 1 (see Figure 3 ) is connected to display the construction status inside the cabinet 1 in real time.

[0081] like Figure 3 As shown, the cabinet 1 shell can have a frame 101 composed of multiple ribs inside. The frame 101 serves as the skeleton of the cabinet 1 and supports the shell of the cabinet 1. A liftable universal wheel assembly 12 is fixedly connected to the four corners below the frame 101. When the universal wheel assembly 12 is raised, the lower part of the cabinet 1 can be raised, making it easier to move the device. When the device is moved above the rainwater outlet to be removed, the universal wheel assembly 12 can be lowered so that the cabinet 1 can contact the road surface, ensuring the sealing of the construction environment during construction and preventing dust from spreading. A water tank 6 is fixed on the side of the electrical cabinet 2 to provide a water source for the water mist spraying equipment. The water mist spraying equipment has multiple spray heads fixed on the frame 101. When working, water is taken from the water tank 6 and sprayed onto the working surface to suppress dust diffusion. One or more cameras 11 and lighting are fixed below the top ribs of the frame 101 to monitor the operation of the device in real time. The first longitudinal cutting assembly 7 and the second longitudinal cutting assembly 8 are fixedly installed on the two short sides of the cabinet 1. The third longitudinal cutting assembly 9 is fixedly installed on one long side of the cabinet 1, and the horizontal cutting assembly 10 is fixedly installed on the other side.

[0082] During construction, cabinet 1 completely covers the cutting equipment, preventing dust from escaping and reducing noise. Compared to conventional open-air construction methods with simple enclosures, this significantly reduces the impact of dust and noise on the surrounding environment. By integrating all equipment into cabinet 1, this device significantly reduces construction site occupation and significantly reduces the area of ​​enclosure, preventing construction from impacting road traffic.

[0083] like Figure 4 As shown, the structures of the first longitudinal cutting assembly 7, the second longitudinal cutting assembly 8 and the third longitudinal cutting assembly 9 are basically the same, and may include: a longitudinal driving device, a cutting machine frame, a cutting machine and a horizontal driving device.

[0084] The longitudinal drive device may include a base 711 for securing the longitudinal cutting assembly to the frame 101. The longitudinal drive device may also include four vertically mounted cylindrical first guide posts 704, with two of each post secured to each end of the base 711. The first guide posts 704 may have external threads. A first electric push rod 714 may be positioned above each of the first guide posts 704 at each end of the base 711. These first electric push rods 714 can drive the first guide posts 704 to rotate.

[0085] The cutting machine frame can be a square-shaped frame, which can be composed of a pair of oppositely positioned long strip-shaped fixed rods 702 and a pair of oppositely positioned cylindrical sliding rods 712. Two first guide sleeves 703 are fixedly mounted on the outer side of each fixed rod 702. The inner side of the first guide sleeve 703 can have an internal thread. Each first guide sleeve 703 can be sleeved on a first guide post 704 and threadedly connected to the first guide post 704. When the first electric push rod 714 drives the first guide post 704 to rotate, the cutting machine frame can be moved up and down. A nut-shaped screw support seat 708 can be provided on the same side of the two fixed rods 702.

[0086] The cutting machine may include a first motor 701 and a circular saw blade 705. The saw blade 705 is installed vertically, and the first motor 701 can drive the saw blade 705 to rotate, which is used to cut the rainwater outlet in the vertical direction. The cutting machine may also include two second guide sleeves 715, which are respectively located on both sides of the saw blade 705. Each second guide sleeve 715 is mounted on a slide rod 712, so that the cutting machine can move horizontally along the slide rod 712. The cutting machine may also include a nut-shaped third guide sleeve 710. The third guide sleeve 710 may have an internal thread. The cutting machine may also include a micro switch 714, which is used to fine-tune the position of the saw blade 705 when the cutting machine is in place.

[0087] The horizontal moving device may include a second motor 706, a coupling 707 and a screw rod 709. The second motor 706 may be fixed to one end of a fixed rod 702. The rotating shaft of the second motor 706 may be fixedly connected to the coupling 707. The coupling 707 may be connected to a cylindrical screw rod 709 having an external thread. The screw rod 709 passes through two screw rod supports 708 in sequence to maintain a horizontal state. The third guide sleeve 710 may be sleeved on the screw rod 709 and threadedly connected to the screw rod 709. When the second motor 706 is started, the rotating shaft may drive the coupling 707 to rotate, the coupling 707 may drive the screw rod 709 to rotate, and the rotation of the screw rod 709 may drive the third guide sleeve 710 to move back and forth in the horizontal direction along the screw rod 709. The third guide sleeve 710 may drive the cutting machine to move back and forth in the horizontal direction.

[0088] The third longitudinal cutting component 9 is used to cut the long side of the rainwater outlet. The horizontal moving distance thereof is longer than the horizontal moving distance of the first longitudinal cutting component 7 and the second longitudinal cutting component 8. Therefore, the length of the screw rod 709 of the third longitudinal cutting component 9 is longer than the length of the screw rod 709 of the first longitudinal cutting component 7 and the second longitudinal cutting component 8.

[0089] During operation, the first electric push rod 714 drives the cutting machine frame and the cutting machine to move downward, and the first motor 701 drives the saw blade 705 to rotate and start longitudinal cutting of the rainwater outlet. After reaching the set cutting depth, the first electric push rod 714 stops working; the second motor 706 drives the cutting machine to move horizontally to complete the longitudinal cutting of one side of the rainwater outlet.

[0090] After the longitudinal cutting of the rainwater outlet is completed, the first electric push rod 714 is started again to drive the cutting machine frame and the cutting machine to move upward, so that the saw blade 705 is separated from the rainwater outlet.

[0091] like Figure 5 As shown, the structure of the horizontal cutting assembly 10 is essentially the same as that of the longitudinal cutting assembly, except that the circular saw blade 705 is replaced by a long folding chain saw 1001. Chain saw 1001 is mounted horizontally and driven by a motor to rotate, cutting the gully horizontally. When folded, the length of folding chain saw 1001 is less than the narrow width of the gully. When in operation, the length of the folding chain saw 1001 is equal to the sum of the narrow width of the gully and the thickness of the material to be cut.

[0092] During operation, the first electric push rod 714 drives the cutting machine frame and the cutting machine to move downward, so that the chain saw 1001 reaches the set depth inside the rainwater outlet along the inner side of a narrow side of the rainwater outlet, and the first electric push rod 714 stops working; the first motor 701 drives the chain saw 1001 to rotate and starts to cut the rainwater outlet horizontally; the second motor 706 starts, driving the cutting machine to move horizontally, and the chain saw 1001 first horizontally cuts the narrow side of the adjacent rainwater outlet, and then moves horizontally to horizontally cut the long side of the rainwater outlet, and finally horizontally cuts the narrow side of the other rainwater outlet.

[0093] After the horizontal cutting of the rainwater outlet is completed, the first electric push rod 714 is started again to drive the cutter frame and the cutter to move upward, so that the chain saw 1001 is separated from the rainwater outlet.

[0094] like Figure 6As shown, the universal wheel assembly 12 may include a fourth guide sleeve 1203 fixed to a lower corner of the frame 101. The fourth guide sleeve 1203 may be in the shape of a nut and have an internal thread. The universal wheel assembly 12 may also include a second electric push rod 1201 and a second guide column 1202. The second guide column 1202 may be cylindrical and have an external thread. One end of the second guide column 1202 may be hinged to the second electric push rod 1201. The other end of the second guide column 1202 is fixedly connected to the universal wheel 1204. The fourth guide sleeve 1203 may be sleeved on the second guide column 1202 and threadedly connected to the second guide column 1202. The second electric push rod 1201 can drive the second guide column 1202 to rotate, driving the universal wheel 1204 to move up and down.

[0095] During operation, the universal wheel assembly 12 can be lowered so that the bottom of the cabinet 1 is higher than the road surface, and the operator can push the device to move; when it reaches the appropriate position above the rainwater outlet, the universal wheel assembly 12 is raised so that the bottom of the cabinet 1 contacts the road surface, ensuring the closure of the construction area.

[0096] The integrated gully demolition device provided herein may also include dust removal equipment. The dust extraction duct includes four dust extraction ports, located near the three longitudinal cutting assemblies and the horizontal cutting assembly. After converging, the dust is connected to the dust extraction duct 5 via a dust extraction motor. A dust collection bag can be connected to the dust extraction duct 5 outside the cabinet 1. The dust extraction motor is activated to extract dust from the cabinet 1. The dust extraction motor is linked to the longitudinal cutting assembly and the horizontal cutting assembly and automatically activates when cutting begins.

[0097] The water mist spraying equipment in the integrated rainwater outlet demolition device has 4 spray outlets, which are respectively located above the 3 longitudinal cutting components and the horizontal cutting component. The spray water pump draws water from the water tank 6 and is linked with the longitudinal cutting component and the horizontal cutting component. It starts automatically when cutting starts and sprays from the 4 spray outlets through the spray pipe.

[0098] The steps of dismantling the rainwater outlet by the integrated rainwater outlet dismantling device include:

[0099] Step 1: Ensure that the device is in a movable state, push the device over the rainwater outlet to be removed, and raise the universal wheel assembly 12.

[0100] The movable state of this device is specifically as follows: the universal wheel assembly 12 is in a lowered state, and the bottom of the cabinet 1 is off the road surface; the cutters in the three longitudinal cutting assemblies and the horizontal cutting assembly are in a raised state, and the saw blade 705 and the chain saw 1001 are not in contact with the road surface.

[0101] Step 2: Operate the three longitudinal cutting components and the horizontal cutting components to cut the rainwater outlet longitudinally and horizontally. The order of cutting can be combined in any way, for example, cutting longitudinally first and then horizontally, or vice versa. There is no restriction on the order in which the three longitudinal cutting components are used during longitudinal cutting, and they can be combined in any way. During the cutting operation, the dust removal equipment automatically starts to extract the dust generated by the cutting; the water mist spraying equipment also starts at the same time, spraying water mist at the cutting location to reduce dust. The camera 11 transmits the real-time cutting status to the display 3 outside the cabinet 1, so that the operator can observe the cutting situation in real time.

[0102] The longitudinal cutting process includes:

[0103] Start the first electric push rod 714 to drive the cutting machine frame and the cutting machine to move downward, and the first motor 701 drives the saw blade 705 to rotate and start longitudinal cutting of the rainwater outlet. After reaching the set cutting depth, stop the first electric push rod 714; the second motor 706 drives the cutting machine to move horizontally to complete the longitudinal cutting of one side of the rainwater outlet.

[0104] After the longitudinal cutting is completed, the first electric push rod 714 is started again to drive the cutter frame and the cutter to move upward, so that the saw blade 705 is separated from the rainwater outlet.

[0105] The horizontal cutting process includes:

[0106] Start the first electric push rod 714 to drive the cutting machine frame and the cutting machine to move downward, so that the chain saw 1001 reaches the set depth inside the rainwater outlet along the inner side of a narrow side of the rainwater outlet, and stop the first electric push rod 714; start the first motor 701, drive the chain saw 1001 to rotate, and start cutting the rainwater outlet from the horizontal direction; start the second motor 706, and drive the cutting machine to move horizontally. The chain saw 1001 first cuts the adjacent narrow side of the rainwater outlet horizontally, and then moves horizontally to cut the long side of the rainwater outlet horizontally, and finally cuts the narrow side of the other rainwater outlet horizontally.

[0107] After the horizontal cutting is completed, the first electric push rod 714 is started again to drive the cutter frame and the cutter to move upward, so that the chain saw 1001 is separated from the rainwater outlet.

[0108] Step 3: After the cutting is completed, lower the universal wheel assembly 12 to lift the bottom of the cabinet 1 off the road and push the device away from the rainwater outlet. At this point, the three edges of the rainwater outlet have been cut and separated. Simply remove the cut edges to complete the rainwater outlet trimming and removal work.

[0109] Finally, it should be noted that the above embodiments are intended only to illustrate the technical solutions of this application and are not intended to limit the scope of the present invention. Although this application has been described in detail with reference to the embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions to the technical solutions of this application do not depart from the spirit and scope of the technical solutions of this application and should be encompassed by the claims of this application.

Claims

1. An integrated rainwater inlet demolition device, characterized in that: include: A hollow rectangular parallelepiped cabinet (1) with an opening at the bottom; An operating panel (4) is fixed to the upper surface of the cabinet (1) and is used to control the operation of the device; A first longitudinal cutting assembly (7) and a second longitudinal cutting assembly (8) are respectively fixed on the inner sides of two narrow sides of the cabinet (1); A third longitudinal cutting assembly (9) is fixed on the inner side of a long side of the cabinet (1); The first longitudinal cutting assembly (7), the second longitudinal cutting assembly (8) and the third longitudinal cutting assembly (9) are capable of performing longitudinal cutting; A horizontal cutting assembly (10) is fixed to the inner side of the cabinet (1) opposite to the third longitudinal cutting assembly (9) and is capable of performing horizontal cutting; and An electrical cabinet box (2) is embedded in the cabinet body (1) and is located below the operation panel (4), and is used to accommodate the control modules of the first longitudinal cutting assembly (7), the second longitudinal cutting assembly (8), and the third longitudinal cutting assembly; The first longitudinal cutting assembly (7), the second longitudinal cutting assembly (8) and the third longitudinal cutting assembly (9) have the same structure, and all include a longitudinal driving device, a cutting machine frame, a cutting machine and a horizontal moving device; wherein, The longitudinal driving device is used to fix the longitudinal cutting assembly to the cabinet (1) and can drive the cutting machine frame to move up and down; The longitudinal drive device comprises: A base (711) for fixing the longitudinal cutting assembly to the cabinet (1); Four vertically mounted cylindrical first guide pillars (704), two of which are fixed to both ends of the base (711); the first guide pillars (704) have external threads; and Two first electric push rods (714) are respectively fixed above the first guide pillars (704) at both ends of the base (711) and are capable of driving the first guide pillars (704) to rotate; The cutting machine frame is a square-shaped frame used to support the cutting machine; The cutting machine frame comprises: A pair of oppositely positioned long strip-shaped fixed rods (702) and a pair of oppositely positioned cylindrical sliding rods (712); Four nut-shaped first guide sleeves (703) having internal threads; two first guide sleeves (703) are fixedly mounted on the outer side of each fixing rod (702); each first guide sleeve (703) is threadedly connected to one first guide post (704); and Two nut-shaped screw support seats (708) are fixed on the same side of the two fixing rods (702); The cutting machine is used to perform longitudinal cutting operations; The cutting machine comprises: a first motor (701); A circular saw blade (705) is installed vertically; the first motor (701) is capable of driving the saw blade (705) to rotate; Two second guide sleeves (715), respectively located on both sides of the saw blade (705); each second guide sleeve (715) is sleeved on one of the slide bars (712); and a third guide sleeve (710) in the shape of a nut and having an internal thread; The horizontal moving device is used to drive the cutting machine to move horizontally; The horizontal moving device comprises: A second motor (706), a coupling (707) and a cylindrical screw rod (709) with external threads; The second motor (706) is fixed to one end of the fixed rod (702); the rotating shaft of the second motor (706) is fixedly connected to the coupling (707); the coupling (707) is fixedly connected to the screw rod (709); the screw rod (709) passes through the two screw rod support seats (708) in sequence and maintains a horizontal state; The third guide sleeve (710) is threadedly connected to the screw rod (709); The structure of the horizontal cutting assembly (10) is substantially the same as that of the first longitudinal cutting assembly (7), except that: A long folding chain saw (1001) replaces the saw blade (705); The chain saw (1001) is installed horizontally.

2. The integrated rainwater inlet breaking device according to claim 1, characterized in that: Also includes: A water tank (6) is fixed inside the cabinet (1); Water mist spraying device, used for spraying water mist, comprising: a spray pipe, one end of which extends into the water tank (6) and the other end of which has four spray ports, which are respectively located above the first longitudinal cutting assembly (7), the second longitudinal cutting assembly (8), the third longitudinal cutting assembly (9) and the horizontal cutting assembly (10); and The spray water pump is fixed on the spray pipe and is linked with the first longitudinal cutting assembly (7), the second longitudinal cutting assembly (8), the third longitudinal cutting assembly (9) and the horizontal cutting assembly (10) to pump water from the water tank (6) for spraying.

3. The integrated rainwater inlet breaking and demolition device according to claim 1, characterized in that: Also includes: Dust removal equipment, used to collect dust generated during the operation of the device, including: A dust extraction pipe, one end of which is divided into four dust extraction ports, which are respectively located above the first longitudinal cutting assembly (7), the second longitudinal cutting assembly (8), the third longitudinal cutting assembly (9) and the horizontal cutting assembly (10); and the other end extends out of the cabinet (1); and The dust extraction motor is fixed on the dust extraction pipe and is linked with the first longitudinal cutting assembly (7), the second longitudinal cutting assembly (8), the third longitudinal cutting assembly (9) and the horizontal cutting assembly (10) to extract dust out of the cabinet (1).

4. The integrated rainwater inlet breaking and demolition device according to claim 1, characterized in that: Also includes: A display (3) is fixed on the upper surface of the cabinet (1); A plurality of lighting lamps are fixed inside the cabinet (1); and A plurality of cameras (11) are fixed inside the cabinet (1) and electrically connected to the display (3).

5. The integrated rainwater inlet breaking and demolition device according to claim 1, characterized in that: Also includes: Four universal wheel assemblies (12) fixed at the four corners below the cabinet (1); The universal wheel assembly (12) comprises: A fourth guide sleeve (1203) fixed to a lower corner of the cabinet (1); the fourth guide sleeve (1203) is in the shape of a nut and has an internal thread; The second electric push rod (1201) and A cylindrical second guide post (1202) having an external thread; A second electric push rod (1201) is hinged to one end of the second guide column (1202) and is capable of driving the second guide column (1202) to rotate; a universal wheel (1204) fixedly connected to an end of the second guide column (1202) away from the second electric push rod (1201); The fourth guide sleeve (1203) is threadedly connected to the second guide column (1202).