A device for dismantling and modifying the auxiliary structure of a large railway station building on the roof of a subway station
By designing a disassembly and modification device that includes linear movement, angle adjustment, cutting, cleaning and drying mechanisms, the wear problem caused by sliding friction between the saw rope and the drive wheel is solved, efficient cutting and cleaning effects are achieved, and the life of the equipment is extended.
Patent Information
- Application Number
- CN202411107572.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2044-08-13
AI Technical Summary
In the prior art, when cutting reinforced concrete side walls, sliding friction between the saw rope and the drive wheel causes severe wear of the drive wheel and low cleaning efficiency, affecting the stability and service life of the equipment.
A device for dismantling and modifying the auxiliary structures of large railway station buildings on the roof of subway stations has been designed. The device includes a linear movement mechanism, an angle adjustment mechanism, a cutting mechanism, a cleaning mechanism, and a drying mechanism. Through the cooperation of the angle adjustment and cleaning mechanisms, the flexibility and cleanliness of the saw wire cutting path are ensured, and sliding friction is reduced.
It improves cutting efficiency and equipment stability, extends equipment service life, reduces wear between the saw rope and the drive wheel, and ensures efficient and clean cutting process.
Smart Images

Figure CN119102394B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of construction engineering, and more particularly to a device for dismantling and modifying an auxiliary structure used for a large railway station building on a subway station cover. Background Art
[0002] With the rapid development of my country's high-speed railways, the construction of large railway stations has shown a sharp growth trend. An increasing number of large-scale railway integrated transportation hubs integrate subways, buses, and taxis, with simultaneous design, construction, and commissioning, achieving smooth integration and greatly facilitating passenger travel.
[0003] Because the reserved entrances and exits and wind shelters of the existing operating subway overlap with the foundation of the newly built station building, their auxiliary entrances and exits and wind shelters need to be demolished. When demolishing the subway side walls, manual handheld electric picks and cutting machines are usually used to break them. Commonly used cutting machines are mostly wire saws. However, when cutting reinforced concrete side walls, wire saws need to spray water at the cutting site to cool the diamond saw wire and reduce dust. However, this will also cause the saw wire section removed from the concrete to be attached with a mixture of concrete slag and water. When passing the drive wheel, because the mixture is between the saw wire and the drive wheel, the soft mixture will cause slippage between the two, and sliding friction will be generated between the saw wire and the drive wheel. After long-term use, it is very easy to cause the drive wheel to be severely worn. Summary of the Invention
[0004] The purpose of the present invention is to provide a device for dismantling and modifying the auxiliary structure of a large railway station building on the roof of a subway station in order to solve the above problems.
[0005] The present invention provides a device for dismantling and modifying ancillary structures for large railway station buildings on the roof of a subway station, comprising a linear motion mechanism, a mobile platform connected to the linear motion mechanism, an angle adjustment mechanism connected to the mobile platform, a cutting mechanism connected to the angle adjustment mechanism, a cleaning mechanism connected to the cutting mechanism, and a drying mechanism connected to the cleaning mechanism.
[0006] The linear motion mechanism includes a sliding track and a linear motion component provided on the sliding track. The mobile platform is slidably connected to the sliding track. The linear motion component is used to drive the mobile platform to move along the sliding track.
[0007] The angle adjustment mechanism includes an adjustable support assembly detachably connected to the mobile platform and an angle adjustment assembly connected between the adjustable support assembly and the mobile platform. The cutting mechanism is detachably connected to the adjustable support assembly. The angle adjustment assembly is used to adjust the angle between the cutting mechanism and the horizontal plane.
[0008] The cutting mechanism includes a circular rotating assembly and a diamond saw wire mounted on the circular rotating assembly. The circular rotating assembly is used to drive the end-to-end connected diamond saw wires to circulate. The end-to-end connected diamond saw wires pass through a cleaning mechanism and a drying mechanism in sequence during the circular rotation.
[0009] The cleaning mechanism includes a limiting component, an annular liquid guiding component and an annular reflux component arranged on the limiting component, a wrapped flushing component movably connected to the limiting component, and a counterweight block connected to the wrapped flushing component. The liquid inlet and liquid outlet ends of the wrapped flushing component are respectively connected to the annular liquid guiding component and the annular reflux component. When the angle adjustment component adjusts the angle between the cutting mechanism and the horizontal plane, the gravity of the counterweight block drives the wrapped flushing component to rotate around the central axis of the limiting component and makes its liquid inlet and liquid outlet ends always perpendicular to the horizontal plane.
[0010] As a further optimization solution of the present invention, the sliding track includes a support frame and a plurality of limiting guide rods fixedly connected to the support frame, the plurality of limiting guide rods are all slidably connected to the mobile platform, and the mobile platform is connected to a first connecting bracket;
[0011] The linear motion assembly includes a first motor fixedly connected to the support frame and a screw rod movably connected to the support frame. One end of the screw rod is connected to the output shaft end of the first motor, and the screw rod is threadedly connected to the moving platform.
[0012] As a further optimized solution of the present invention, the adjustable support assembly includes a second connecting bracket detachably connected to the first connecting bracket and a third connecting bracket hinged to the second connecting bracket, and the cutting mechanism is detachably connected to the third connecting bracket;
[0013] The angle adjustment assembly includes an electric telescopic rod connected between the third connecting bracket and the mobile platform, and two ends of the electric telescopic rod are hinged to the third connecting bracket and the mobile platform respectively.
[0014] As a further optimization scheme of the present invention, the circulating rotation component includes a mounting frame detachably connected to a third connecting bracket, a second motor fixedly connected to the mounting frame, a driving wheel movably connected to the mounting frame, and a plurality of fixed tensioning wheels and an adjustable tensioning wheel installed on the mounting frame, and the output shaft end of the second motor is connected to the axle of the driving wheel.
[0015] As a further optimization solution of the present invention, the limit assembly includes a square limit rod fixedly connected to the mounting frame, a first connecting plate fixedly connected to one end of the square limit rod, a first limit ring body fixedly connected to the first connecting plate, and a plurality of clamping ring bodies connected to the inner circular surface of the first limit ring body;
[0016] The annular liquid guide assembly includes an annular liquid guide groove provided on the inner circumference of the first limiting ring body, and a liquid guide tube connected to the outer circumference of the first limiting ring body, one end of the liquid guide tube passes through the first limiting ring body and is connected to the annular liquid guide groove;
[0017] The annular reflux assembly includes an annular reflux groove provided on the inner circumference of the first limiting ring body, and a reflux pipe connected to the outer circumference of the first limiting ring body. One end of the reflux pipe passes through the first limiting ring body and is connected to the annular reflux groove.
[0018] As a further optimization scheme of the present invention, the wrapped flushing assembly includes a movable tube body, a cleaning chamber and an air-drying chamber arranged in the movable tube body, a liquid guide cavity and a reflux hole arranged on the outer circular surface of the movable tube body, a liquid collecting groove and a plurality of liquid spray holes arranged on the inner wall of the cleaning chamber, and a plurality of annular brush bodies connected to the inner wall of the cleaning chamber. A diversion channel is provided inside the movable tube body, and the plurality of liquid spray holes are connected to the liquid guide cavity through the diversion channel. The liquid guide cavity is connected to the annular liquid guide groove, and the cleaning chamber is connected to the annular reflux groove through the reflux hole. The movable tube body is provided with an annular clamping groove that cooperates with the clamping ring body.
[0019] As a further optimization scheme of the present invention, the drying mechanism includes a reciprocating telescopic pump air assembly connected to one end of the wrapped flushing assembly, an injection assembly and an expansion type wiping assembly arranged inside the wrapped flushing assembly, and the injection assembly and the expansion type wiping assembly are both connected to the reciprocating telescopic pump air assembly.
[0020] As a further optimization scheme of the present invention, the reciprocating pump air assembly includes a second connecting plate slidably connected to the square limit rod, a second limit ring connected to the second connecting plate, a movable ring movably connected to the second limit ring, a first telescopic bellows and a second telescopic bellows connected between the movable ring and the movable tube body, a third motor fixedly connected to the mounting frame, and a reciprocating screw connected to the output shaft end of the third motor. A slider matching the reciprocating screw is provided on the second connecting plate, and a sealed pump air chamber is formed between the movable ring, the first telescopic bellows, the movable tube body and the second telescopic bellows.
[0021] As a further optimization solution of the present invention, the jet assembly includes a ventilation cavity arranged inside the movable tube body and a plurality of jet holes arranged on the inner wall of the air drying chamber, and the plurality of jet holes are connected to the sealed pump air chamber through the ventilation cavity.
[0022] As a further optimization scheme of the present invention, the expandable wiping assembly includes an annular sac connected to the inner wall of the air-drying chamber, the outer surface of the annular sac is provided with a flexible water-absorbing layer, and the internal space of the annular sac is connected to the sealed pump air chamber through a ventilation cavity.
[0023] The beneficial effects of the present invention are: the present invention can adjust the angle according to different cutting parameters, and can conveniently change the cutting path of the wire saw, thereby cutting notches of different shapes on the reinforced concrete side wall, and effectively improving the cutting efficiency. At the same time, it is equipped with a cleaning mechanism and a drying mechanism, which can effectively remove the slag-water mixture attached to the saw wire, and can greatly reduce the grinding loss caused by sliding friction between the saw wire and the wheel body, thereby improving the stability and service life of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0025] Figure 2 This invention Figure 1 Magnified view at point A in the middle;
[0026] Figure 3 This invention Figure 1 Magnified view at point B in the middle;
[0027] Figure 4 It is a view showing the coordination of the cleaning mechanism and the drying mechanism of the present invention.
[0028] In the figure: 101, support frame; 102, limiting guide rod; 103, mobile platform; 104, first motor; 105, lead screw; 106, first connecting bracket; 201, second connecting bracket; 202, third connecting bracket; 203, electric telescopic rod; 301, mounting frame; 302, second motor; 303, driving wheel; 304, fixed tensioning wheel; 305, adjustable tensioning wheel; 306, diamond saw wire; 4, cleaning mechanism; 401, square limiting rod; 402, first connecting plate; 403, first limiting ring; 4030, clamping ring; 4031, annular liquid guide groove; 4032, annular reflux groove; 4033, liquid guide tube; 4034, reflux tube; 404, movable tube body; 4040, cleaning chamber; 4041, air-drying chamber; 4042, liquid guide cavity; 4043, liquid spray hole; 4044, liquid collecting groove; 4045, reflux hole; 405, annular brush body; 406, counterweight; 5, drying mechanism; 501, second connecting plate; 502, second limiting ring body; 503, movable ring body; 504, first telescopic bellows; 505, second telescopic bellows; 506, ventilation cavity; 507, jet hole; 508, reciprocating screw; 509, annular capsule. DETAILED DESCRIPTION
[0029] The subject matter described herein will now be discussed with reference to example embodiments. It should be understood that these embodiments are discussed solely to enable those skilled in the art to better understand and implement the subject matter described herein. Additionally, features described with respect to some examples may also be combined in other examples.
[0030] like Figures 1-4 As shown, a device for dismantling and modifying an auxiliary structure for a large railway station building on a subway station roof comprises a linear motion mechanism, a mobile platform 103 connected to the linear motion mechanism, an angle adjustment mechanism connected to the mobile platform 103, a cutting mechanism connected to the angle adjustment mechanism, a cleaning mechanism 4 connected to the cutting mechanism, and a drying mechanism 5 connected to the cleaning mechanism 4;
[0031] The linear motion mechanism includes a sliding track and a linear motion component provided on the sliding track. The mobile platform 103 is slidably connected to the sliding track. The linear motion component is used to drive the mobile platform 103 to move along the sliding track.
[0032] The angle adjustment mechanism includes an adjustable support assembly detachably connected to the mobile platform 103 and an angle adjustment assembly connected between the adjustable support assembly and the mobile platform 103. The cutting mechanism is detachably connected to the adjustable support assembly. The angle adjustment assembly is used to adjust the angle between the cutting mechanism and the horizontal plane.
[0033] The cutting mechanism includes a circular rotating assembly and a diamond saw wire 306 mounted on the circular rotating assembly. The circular rotating assembly is used to drive the end-to-end connected diamond saw wire 306 to circulate. The end-to-end connected diamond saw wire 306 passes through the cleaning mechanism 4 and the drying mechanism 5 in sequence during the circular rotation.
[0034] The cleaning mechanism 4 includes a limiting component, an annular liquid guiding component and an annular reflux component provided on the limiting component, a wrapped flushing component movably connected to the limiting component, and a counterweight block 406 connected to the wrapped flushing component. The liquid inlet end and the liquid outlet end of the wrapped flushing component are respectively connected to the annular liquid guiding component and the annular reflux component. When the angle adjustment component adjusts the angle between the cutting mechanism and the horizontal plane, the gravity of the counterweight block 406 drives the wrapped flushing component to rotate around the central axis of the limiting component and makes its liquid inlet end and liquid outlet end always perpendicular to the horizontal plane.
[0035] It should be noted that when cutting and demolishing the concrete reinforced side wall to be demolished, the area to be cut is determined according to the design parameters, and then a manual hand-held electric pick is used to open holes for passing the saw rope at the edge of the area to be cut. The position and number of holes are set based on the area to be cut. For example, for a quadrilateral area, only holes need to be set at the four corner points. This cutting path is the shortest cutting path. Then the two ends of the saw rope are passed through two adjacent holes respectively, and then connected to form a complete circle on the circular rotating component. The saw rope is then driven to move along the circle by the circular rotating component, so as not to The reinforced concrete side wall is continuously ground and cut. At the same time, the linear moving component drives the moving platform 103 to drive the circular rotating component to move slowly in the direction away from the wall, so as to continuously adapt the saw rope to the wall cutting process, that is, the rope position changes after the saw rope cuts into the wall, which can make the saw rope always in a taut state. If there is a cutting path with an inclination when cutting into a polygon, the angle between the adjustable support component and the horizontal plane can be adjusted by the angle adjustment component, so that the entire circular rotating component and the saw rope can cut the wall at the set inclination angle, that is, adapt to different The cutting path, and when the angle tilt adjustment occurs, the wrapped flushing component can always keep its water spraying point above the saw rope and the sewage discharge point below the rope saw under the influence of the counterweight block 406 to prevent the sewage from continuously affecting the saw rope. When the saw rope cuts the reinforced concrete side wall, water is required to cool the cutting point and reduce dust. When the saw rope moves out of the wall, the mixture of slag dust and water adheres to the saw rope. When passing through the wrapped flushing component, clean water is continuously added to the wrapped flushing component through the annular liquid guide component, which can effectively flush the surface of the saw rope, thereby removing the attached mixture. The washed mixture is washed away, and the washed mixture is centrally recovered through the annular reflux component, thereby reducing the impact on the equipment and the environment around the equipment. When the rinsed saw rope passes through the drying mechanism 5, it can be surface dried. The drying method adopts a combination of air drying and wiping. The water stains attached to the saw rope can be dried without increasing the temperature of the saw rope, thereby effectively preventing the mixture or water from existing between the saw rope and the rotating component, preventing the wear caused by sliding friction between the saw rope and the circulating rotating component, and effectively improving the stability and service life of the equipment.
[0036] Among them, Figure 1 As shown, the sliding track includes a support frame 101 and a plurality of position-limiting guide rods 102 fixedly connected to the support frame 101. The plurality of position-limiting guide rods 102 are all slidably connected to a mobile platform 103. The mobile platform 103 is connected to a first connecting bracket 106.
[0037] The linear motion component includes a first motor 104 fixedly connected to the support frame 101 and a screw rod 105 movably connected to the support frame 101. One end of the screw rod 105 is connected to the output shaft end of the first motor 104, and the screw rod 105 is threadedly connected to the mobile platform 103.
[0038] It should be noted that, as described above, during the cutting process, the linear motion assembly drives the mobile platform 103 away from the wall. Specifically, the first motor 104 is used to drive the screw rod 105 to rotate. When the screw rod 105 rotates, it can drive the mobile platform 103 threadedly connected thereto to slide along the limiting guide rod 102. The length direction of the limiting guide rod 102 points to the wall to be cut. In this way, the position change of the mobile platform 103 and the wall is adjusted to adapt to the cutting position change of the saw rope.
[0039] In addition to the first motor 104 and the lead screw 105 , the linear motion component may also use a pneumatic cylinder or a hydraulic cylinder.
[0040] Among them, Figure 1 As shown, the adjustable support assembly includes a second connecting bracket 201 detachably connected to the first connecting bracket 106 and a third connecting bracket 202 hinged on the second connecting bracket 201, and the cutting mechanism is detachably connected to the third connecting bracket 202;
[0041] The angle adjustment assembly includes an electric telescopic rod 203 connected between the third connecting bracket 202 and the mobile platform 103 , and two ends of the electric telescopic rod 203 are hinged to the third connecting bracket 202 and the mobile platform 103 respectively.
[0042] It should be noted that, as mentioned above, when the tilt setting angle of the adjustable support assembly is adjusted through the angle adjustment assembly, the third connecting bracket 202 is driven to rotate around the hinge with the second connecting bracket 201 by controlling the telescopic length of the electric telescopic rod 203, and the rotation angle is related to the telescopic length of the electric telescopic rod 203.
[0043] Among them, Figure 1 As shown, the circulating rotation component includes a mounting frame 301 detachably connected to the third connecting bracket 202, a second motor 302 fixedly connected to the mounting frame 301, a driving wheel 303 movably connected to the mounting frame 301 and a plurality of fixed tensioning wheels 304 and an adjustable tensioning wheel 305 installed on the mounting frame 301, and the output shaft end of the second motor 302 is connected to the axle of the driving wheel 303.
[0044] It should be noted that when the saw rope is driven to cut the wall, the driving wheel 303 is driven to rotate by the second motor 302. Under the drive of the driving wheel 303, the saw rope forming a closed loop can be driven to move back and forth in a circle. The tension of the saw rope can be adjusted by several fixed tensioning wheels 304 and an adjustable tensioning wheel 305.
[0045] Among them, Figure 4 As shown, the limiting assembly includes a square limiting rod 401 fixedly connected to the mounting frame 301, a first connecting plate 402 fixedly connected to one end of the square limiting rod 401, a first limiting ring body 403 fixedly connected to the first connecting plate 402, and a plurality of snap ring bodies 4030 connected to the inner circumference of the first limiting ring body 403;
[0046] The annular liquid guide assembly includes an annular liquid guide groove 4031 provided on the inner circumference of the first limiting ring body 403, and a liquid guide tube 4033 connected to the outer circumference of the first limiting ring body 403. One end of the liquid guide tube 4033 passes through the first limiting ring body 403 and is connected to the annular liquid guide groove 4031.
[0047] The annular reflux assembly includes an annular reflux groove 4032 provided on the inner surface of the first limiting ring body 403 and a reflux pipe 4034 connected to the outer surface of the first limiting ring body 403 . One end of the reflux pipe 4034 passes through the first limiting ring body 403 and is connected to the annular reflux groove 4032 .
[0048] The wrapped flushing assembly includes a movable tube body 404, a cleaning chamber 4040 and an air-drying chamber 4041 arranged in the movable tube body 404, a liquid guide cavity 4042 and a reflux hole 4045 arranged on the outer circular surface of the movable tube body 404, a liquid collecting groove 4044 and a plurality of liquid spray holes 4043 arranged on the inner wall of the cleaning chamber 4040, and a plurality of annular brush bodies 405 connected to the inner wall of the cleaning chamber 4040. A diversion channel is provided inside the movable tube body 404, and the plurality of liquid spray holes 4043 are all connected to the liquid guide cavity 4042 through the diversion channel. The liquid guide cavity 4042 is connected to the annular liquid guide groove 4031, and the cleaning chamber 4040 is connected to the annular reflux groove 4032 through the reflux hole 4045. The movable tube body 404 is provided with an annular clamping groove that cooperates with the clamping ring body 4030.
[0049] It should be noted that, as mentioned above, when the saw rope passes through the wrapped flushing assembly, the clean water introduced from the liquid guide tube 4033 flows through the annular liquid guide groove 4031 and the liquid guide cavity 4042 in sequence, and then is sprayed out from the liquid spray hole 4043. Several liquid spray holes 4043 are distributed in an arc shape on the inner wall of the cleaning chamber 4040. Due to the gravity of the counterweight block 406, the counterweight block 406 is always in the position closest to the ground. The liquid spray holes 4043 are distributed above and on the side of the saw rope, which can flush the saw rope and brush the saw rope with the annular brush body 405, which can effectively improve the cleaning efficiency and cleanliness of the saw rope, and flushing it down The sewage is collected at the bottom of the cleaning chamber 4040 and flows from the liquid collecting tank 4044 to the reflux hole 4045. The sewage flows from the reflux hole 4045 into the annular reflux groove 4032 and is extracted by the reflux pipe 4034, so that the sewage can be recycled in a centralized manner. In order to adapt to the change of the cutting path, that is, when the cutting mechanism is deflected at an angle, the gravity of the counterweight block 406 can make the entire movable tube body 404 rotate adaptively, so that the counterweight block 406 is always in the lowest position, that is, the liquid guiding cavity 4042 and the reflux hole 4045 are always in a state perpendicular to the horizontal plane, so that the saw rope cleaning process is not affected.
[0050] Among them, Figure 3 and Figure 4 As shown, the drying mechanism 5 includes a reciprocating telescopic pump air assembly connected to one end of the wrapped flushing assembly, an air jet assembly and an expandable wiping assembly arranged inside the wrapped flushing assembly, and the air jet assembly and the expandable wiping assembly are both connected to the reciprocating telescopic pump air assembly.
[0051] The reciprocating pump air assembly includes a second connecting plate 501 slidingly connected to the square limiting rod 401, a second limiting ring body 502 connected to the second connecting plate 501, a movable ring body 503 movably connected to the second limiting ring body 502, a first telescopic bellows 504 and a second telescopic bellows 505 connected between the movable ring body 503 and the movable tube body 404, a third motor fixedly connected to the mounting frame 301, and a reciprocating screw 508 connected to the output shaft end of the third motor. A slider cooperating with the reciprocating screw 508 is provided on the second connecting plate 501, and a sealed pump air chamber is formed between the movable ring body 503, the first telescopic bellows 504, the movable tube body 404 and the second telescopic bellows 505.
[0052] The jet assembly includes a ventilation cavity 506 disposed inside the movable tube body 404 and a plurality of jet holes 507 disposed on the inner wall of the air-drying chamber 4041 . The plurality of jet holes 507 are all connected to the sealed pump air chamber through the ventilation cavity 506 .
[0053] It should be noted that, as mentioned above, the saw rope cleaned in the cleaning chamber 4040 is moved to the air-drying chamber 4041, and the reciprocating screw 508 is driven to rotate by the third motor. The reciprocating screw 508 can drive the second connecting plate 501 to continuously move back and forth towards and away from the movable tube body 404. In this process, whether it is approaching or moving away, the volume of the sealed pump air chamber formed between the movable ring body 503, the first telescopic bellows 504, the movable tube body 404 and the second telescopic bellows 505 can change, and the second connecting plate 501 can move back and forth. When the connecting plate 501 is close to the movable tube body 404, the volume inside the sealed pump air chamber decreases, generating positive pressure, squeezing out the gas inside the sealed pump air chamber, and the gas flows through the ventilation cavity and is ejected from the jet hole 507. When the gas flows, the saw rope with clean water attached to it can be dried. When the second connecting plate 501 is away from the movable tube body 404, the volume inside the sealed pump air chamber increases, generating positive pressure, thereby drawing external gas into the sealed pump air chamber, and also generating airflow flowing through the saw rope, thereby preventing water stains from affecting the space between the saw rope and the driving wheel 303.
[0054] Among them, Figure 4 As shown, the expandable wiping assembly includes an annular capsule 509 connected to the inner wall of the air-drying chamber 4041 , the outer surface of the annular capsule 509 is provided with a flexible water-absorbing layer, and the internal space of the annular capsule 509 is connected to the sealed pump air chamber through the ventilation cavity 506 .
[0055] It should be noted that in order to further improve the degree of drying of water stains on the surface of the saw rope, the annular capsule 509 can be intermittently expanded during the change of the sealing pump air chamber as mentioned above. Specifically, the volume of the sealing pump air chamber is reduced, and the gas is discharged into the ventilation cavity 506. The ventilation cavity 506 connected to the annular capsule 509 is a separate channel, allowing a part of it to enter the annular capsule 509, causing the annular capsule 509 to bulge. During the bulging period, two-thirds of the middle position of the connecting section between adjacent diamond cutting parts on the saw rope contacts the flexible water-absorbing layer on the annular capsule 509, and then the volume of the sealing pump air chamber increases, and the gas inside the annular capsule 509 begins to be extracted, so that the diamond cutting part only contacts the flexible water-absorbing layer when passing through the annular capsule 509, and does not contact the annular capsule 509, which can effectively reduce the loss of the annular capsule 509 caused by the contact between the diamond cutting part and the annular capsule 509.
[0056] The above describes this embodiment, but this embodiment is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Ordinary technicians in this field can also make many forms based on the inspiration of this embodiment, all of which are protected by this embodiment.
Claims
1. A device for dismantling and modifying the auxiliary structure of a large railway station building on a subway station, characterized in that: It comprises a linear moving mechanism, a moving platform (103) connected to the linear moving mechanism, an angle adjustment mechanism connected to the moving platform (103), a cutting mechanism connected to the angle adjustment mechanism, a cleaning mechanism (4) connected to the cutting mechanism, and a drying mechanism (5) connected to the cleaning mechanism (4); The linear motion mechanism comprises a sliding track and a linear motion component arranged on the sliding track, the moving platform (103) is slidably connected to the sliding track, and the linear motion component is used to drive the moving platform (103) to move along the sliding track; The angle adjustment mechanism comprises an adjustable support assembly detachably connected to the mobile platform (103) and an angle adjustment assembly connected between the adjustable support assembly and the mobile platform (103); the cutting mechanism is detachably connected to the adjustable support assembly; and the angle adjustment assembly is used to adjust the angle between the cutting mechanism and the horizontal plane; The cutting mechanism comprises a cyclic rotation component and a diamond saw wire (306) arranged on the cyclic rotation component, wherein the cyclic rotation component is used to drive the end-to-end connected diamond saw wire (306) to cyclically rotate, and the end-to-end connected diamond saw wire (306) passes through the cleaning mechanism (4) and the drying mechanism (5) in sequence during the cyclic rotation; The cleaning mechanism (4) comprises a limiting component, an annular liquid guide component and an annular reflux component provided on the limiting component, a wrapped flushing component movably connected to the limiting component, and a counterweight (406) connected to the wrapped flushing component, wherein the liquid inlet and liquid outlet of the wrapped flushing component are respectively connected to the annular liquid guide component and the annular reflux component, and when the angle adjustment component adjusts the angle between the cutting mechanism and the horizontal plane, the gravity of the counterweight (406) drives the wrapped flushing component to rotate around the central axis of the limiting component so that the liquid inlet and liquid outlet are always perpendicular to the horizontal plane; The limiting assembly comprises a square limiting rod (401) fixedly connected to the mounting frame (301), a first connecting plate (402) fixedly connected to one end of the square limiting rod (401), a first limiting ring body (403) fixedly connected to the first connecting plate (402), and a plurality of snap ring bodies (4030) connected to the inner circular surface of the first limiting ring body (403); The annular liquid guide assembly comprises an annular liquid guide groove (4031) provided on the inner circumference of the first limiting ring body (403), and a liquid guide tube (4033) connected to the outer circumference of the first limiting ring body (403), wherein one end of the liquid guide tube (4033) passes through the first limiting ring body (403) and is in communication with the annular liquid guide groove (4031); The annular reflux assembly comprises an annular reflux groove (4032) provided on the inner circumference of the first limiting ring body (403), and a reflux pipe (4034) connected to the outer circumference of the first limiting ring body (403), wherein one end of the reflux pipe (4034) passes through the first limiting ring body (403) and is in communication with the annular reflux groove (4032); The wrapped flushing assembly comprises a movable tube body (404), a cleaning chamber (4040) and an air-drying chamber (4041) provided in the movable tube body (404), a liquid guide cavity (4042) and a reflux hole (4045) provided on the outer circumferential surface of the movable tube body (404), a plurality of liquid spray holes (4043) provided on the inner wall of the cleaning chamber (4040), and a plurality of annular brush bodies (405) connected to the inner wall of the cleaning chamber (4040), the liquid guide cavity (4042) being in communication with an annular liquid guide groove (4031), the cleaning chamber (4040) being in communication with an annular reflux groove (4032) via the reflux hole (4045), and an annular clamping groove cooperating with the clamping ring body (4030) being provided on the movable tube body (404); The drying mechanism (5) comprises a reciprocating telescopic pump air assembly connected to one end of the wrapped flushing assembly, an air jet assembly and an expandable wiping assembly arranged inside the wrapped flushing assembly, and the air jet assembly and the expandable wiping assembly are both connected to the reciprocating telescopic pump air assembly; The jet assembly includes a ventilation cavity (506) provided inside the movable tube body (404) and a plurality of jet holes (507) provided on the inner wall of the air drying chamber (4041), and the plurality of jet holes (507) are all connected to the reciprocating telescopic pump air assembly through the ventilation cavity (506); The expandable wiping assembly includes an annular capsule (509) connected to the inner wall of the air-drying chamber (4041), the outer surface of the annular capsule (509) is provided with a flexible water-absorbing layer, and the internal space of the annular capsule (509) is connected to the reciprocating telescopic pump air assembly through the ventilation cavity (506).
2. The device for dismantling and modifying the auxiliary structure of a large railway station building on the roof of a subway station according to claim 1, characterized in that: The sliding track comprises a support frame (101) and a plurality of position-limiting guide rods (102) fixedly connected to the support frame (101), wherein the plurality of position-limiting guide rods (102) are all slidably connected to the mobile platform (103), and a first connecting bracket (106) is connected to the mobile platform (103); The linear motion assembly comprises a first motor (104) fixedly connected to the support frame (101), a screw rod (105) movably connected to the support frame (101), one end of the screw rod (105) being connected to the output shaft end of the first motor (104), and the screw rod (105) being threadedly connected to the mobile platform (103).
3. The device for dismantling and modifying the auxiliary structure of a large railway station building on the roof of a subway station according to claim 2, characterized in that: The adjustable support assembly comprises a second connecting bracket (201) detachably connected to the first connecting bracket (106) and a third connecting bracket (202) hinged to the second connecting bracket (201), and the cutting mechanism is detachably connected to the third connecting bracket (202); The angle adjustment assembly comprises an electric telescopic rod (203) connected between the third connecting bracket (202) and the mobile platform (103), and two ends of the electric telescopic rod (203) are respectively hinged to the third connecting bracket (202) and the mobile platform (103).
4. The device for dismantling and modifying the auxiliary structure of a large railway station building on the roof of a subway station according to claim 3, characterized in that: The circulating rotation assembly comprises a mounting frame (301) detachably connected to a third connecting bracket (202), a second motor (302) fixedly connected to the mounting frame (301), a driving wheel (303) movably connected to the mounting frame (301), a plurality of fixed tensioning wheels (304), and an adjustable tensioning wheel (305) mounted on the mounting frame (301), wherein the output shaft end of the second motor (302) is connected to the wheel axle of the driving wheel (303).
5. The device for dismantling and modifying the auxiliary structure of a large railway station building on the roof of a subway station according to claim 4, characterized in that: A liquid collecting tank (4044) is provided on the inner wall of the cleaning chamber (4040), and a diversion channel is provided inside the movable tube body (404), and a plurality of liquid spray holes (4043) are connected to the liquid guide cavity (4042) through the diversion channel.
6. The device for dismantling and modifying the auxiliary structure of a large railway station building on the roof of a subway station according to claim 5, characterized in that: The reciprocating telescopic pump air assembly comprises a second connecting plate (501) slidably connected to a square limiting rod (401), a second limiting ring body (502) connected to the second connecting plate (501), a movable ring body (503) movably connected to the second limiting ring body (502), a first telescopic bellows (504) and a second telescopic bellows (505) connected between the movable ring body (503) and the movable tube body (404), a third motor fixedly connected to the mounting frame (301), and a reciprocating screw (508) connected to the output shaft end of the third motor. A slider matching the reciprocating screw (508) is provided on the second connecting plate (501), and a sealed pump air chamber is formed between the movable ring body (503), the first telescopic bellows (504), the movable tube body (404), and the second telescopic bellows (505).
Citation Information
Patent Citations
Diamond wire saw cleaning device
CN213855952U
Diamond bead wire sawing machine with high cutting efficiency
CN216803989U