A quick loading pusher device for top tensioned pipe

By designing a rapid filling and pushing device for jacking pipes, and utilizing components such as a support platform, transport rails, jacking pipe modules, and drive components, the problems of swaying and displacement during jacking pipe construction were solved, achieving efficient filling and positioning and improving construction efficiency.

CN116181962BActive Publication Date: 2026-01-02CHINA CONSTR FOURTH ENG DIV CORP LTD
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Patent Information

Application Number
CN202211619713.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-16
Publication Date
2026-01-02
Estimated Expiration
2042-12-16

AI Technical Summary

Technical Problem

During construction, the jacking pipe is prone to shaking and displacement, which can lead to inaccurate filling positions, affecting the jacking effect and efficiency, and requires manual adjustment.

Method used

A rapid filling and pushing device for jacking pipes was designed, including a support platform, a transport track, a jacking pipe module, a lifting drive component, a front jacking module, and a rear pushing module. Through the coordinated action of these components, the smooth filling and positioning of the jacking pipes can be achieved.

Benefits of technology

It improves the loading and pushing effect and efficiency of the jacking pipe, reduces manual operation steps, and ensures that the jacking pipe can be smoothly raised, lowered and positioned within the designated area, avoiding shaking and deviation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of top pull pipe quick filling jacking devices, including support table, the support table is placed in the inside of working well and is used to connect equipment other parts, the support table top is fixedly connected with the transport track for guiding pipe movement, the support table top is fixedly connected with the top pipe module located in the rear of the transport track, the top pipe module realizes top pipe operation, the present application is loaded by setting top pull pipe support module to be hoisted by crane and sent top pull pipe, front top material module and rear push material module can be pushed and placed on top pull pipe support module, top pull pipe support module is connected between the two lifting driving elements on the top of support table, so that the top pull pipe that drops can be filled to the jacking area of adaptive top pipe module, guiding and aligning positioning in the process of top pull pipe filling operation are realized, the auxiliary operation steps that operator needs manually can be reduced, and the filling jacking effect and efficiency of top pull pipe are improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of top-pulling pipe construction, and particularly relates to a top-pulling pipe rapid filling and pushing device. BACKGROUND

[0002] The top-pulling pipe is mainly used in drainage pipe network engineering. The top-pulling pipe construction process is to determine the pipe elevation and trajectory by using a pilot directional drill bit, to make the pipe connected by using the combined action of the pulling force of a pipe pulling device and the pushing force of a pipe pushing device. The top-pulling pipe is constructed by using multi-section combined construction. The top-pulling pipe is transported to the top of a pipe supporting and transporting track in a working well by a crane outside the working well, and the front of the pipe pushing device. A plurality of jacks are simultaneously started to apply pushing force to the top-pulling pipe from the rear of the top-pulling pipe. The pipe pulling device in another working well at the front applies pulling force to the top-pulling pipe to construct the top-pulling pipe. The multi-section top-pulling pipe is transported to the pipe supporting and transporting track in the working well by being hoisted and lowered by the crane to perform the sequential filling work of the top-pulling pipe. The filling work of the top-pulling pipe to the pipe supporting and transporting track is performed only by the crane work. During the hoisting and lowering of the top-pulling pipe, the top-pulling pipe will shake and deviate. The top-pulling pipe cannot be kept in a stable hoisting and lowering state to sequentially fill the multi-section top-pulling pipe on the pipe supporting and transporting track. The top-pulling pipe lowered and filled on the pipe supporting and transporting track will deviate from the filling position, and manual assistance is required, which affects the pushing effect and efficiency of the pipe pushing device on the top-pulling pipe and affects the top-pulling construction of the top-pulling pipe. SUMMARY

[0003] The present application aims to provide a top-pulling pipe rapid filling and pushing device to solve the problems in the background.

[0004] To achieve the above-mentioned purpose, the present application provides the following technical scheme:

[0005] A top-pulling pipe rapid filling and pushing device comprises a supporting table, the supporting table is arranged in a working well and used for connecting other parts of the device, the top of the supporting table is fixedly connected with a transporting track used for guiding the movement of the pipe, the top of the supporting table is fixedly connected with a pipe pushing module located at the rear of the transporting track, and the pipe pushing module is used for pipe pushing operation; a top-pulling pipe supporting module used for supporting the pipe is arranged between the transporting track and the pipe pushing module; the top of the supporting table is fixedly connected with two lifting driving members symmetrically arranged on both sides of the top-pulling pipe supporting module; the two lifting driving members are connected with the top-pulling pipe supporting module to realize the lifting operation of the top-pulling pipe supporting module above the supporting table; the top-pulling pipe supporting module and the pipe in the top-pulling pipe supporting module are lifted on the supporting table to realize the filling of the pipe; the head end of the top-pulling pipe supporting module is fixedly connected with a front material pushing module; the tail end of the top-pulling pipe supporting module is fixedly connected with a rear material pushing module; and the front material pushing module and the rear material pushing module are used for guiding, adjusting and positioning the pipe.

[0006] Further, the jacking pipe module comprises a mounting frame, a jack and an adjusting cross plate, the mounting frame is fixedly connected at the top of the table, ten symmetrically distributed adjusting cross plates are slidably connected in the mounting frame, the jack is fixedly screwed at the top of the adjusting cross plate, the jack is used for jacking pipe operation behind the pipe, an outer guide frame is fixedly connected at the side of the adjusting cross plate, a fixing screw is threadedly connected in the outer guide frame, and the fixing screw is fixedly screwed in the mounting frame.

[0007] Further, the jacking pipe module comprises a mounting frame, a jack and an adjusting cross plate, the mounting frame is fixedly connected at the top of the table, ten symmetrically distributed adjusting cross plates are slidably connected in the mounting frame, the jack is fixedly screwed at the top of the adjusting cross plate, the jack is used for jacking pipe operation behind the pipe, an outer guide frame is fixedly connected at the side of the adjusting cross plate, a fixing screw is threadedly connected in the outer guide frame, and the fixing screw is fixedly screwed in the mounting frame.

[0008] Further, the front jacking material module comprises a semicircular material supporting plate, three jacking material driving members, two connecting sockets, a jacking material plate and two combination blocks, the semicircular material supporting plate is located outside the head end of the front semicircular supporting plate, three ring-shaped jacking material driving members are fixedly connected at the outer wall of the front semicircular supporting plate, and the output ends of the jacking material driving members are fixedly connected to the side edges of the semicircular material supporting plate.

[0009] Further, the jacking material plate is located above the semicircular material supporting plate, two symmetrically distributed combination blocks are fixedly connected to the side edges of the jacking material plate and used for connecting the semicircular material supporting plate, two connecting sockets corresponding to the two combination blocks are fixedly connected to the side edges of the semicircular material supporting plate, and the combination blocks are clampedly connected to the connecting sockets.

[0010] Further, the rear pushing material module comprises a pushing material plate, three pushing material driving members and a combination plate, the pushing material plate is located outside the tail end of the rear semicircular supporting plate, three ring-shaped pushing material driving members are fixedly connected at the outer wall of the rear semicircular supporting plate, the output ends of the pushing material driving members are fixedly connected to the side edges of the pushing material plate, and the combination plate is fixedly connected to the outer wall of the pushing material plate.

[0011] Further, the pushing material plate and the combination plate are internally provided with through holes corresponding to the jack.

[0012] Further, the top of the support table is fixedly connected with two symmetrically distributed connecting and positioning modules, the connecting and positioning modules are located between the lifting driving members and the transportation track, the connecting and positioning module comprises a fixed vertical beam and a positioning seat, the fixed vertical beam is fixedly connected to the top of the support table, the positioning seat is fixedly connected to the top end of the fixed vertical beam and is used for connecting the corresponding combined block, and the combined block is clamped and connected with the positioning seat.

[0013] Further, the top of the support table is provided with a recessed groove corresponding to the top-pulling pipe supporting module.

[0014] Compared with the prior art, the beneficial effects of the present application are:

[0015] The top-pulling pipe supporting module is provided to carry the top-pulling pipe of the crane, the front pushing module connected to the head end of the top-pulling pipe supporting module can apply a pushing force to the top-pulling pipe from the front end of the top-pulling pipe, the rear pushing module connected to the tail end of the top-pulling pipe supporting module can apply a pushing force to the top-pulling pipe from the rear end of the top-pulling pipe, and the top-pulling pipe can be pushed and placed on the top-pulling pipe supporting module, the top-pulling pipe supporting module is connected between the two lifting driving members on the top of the support table, the positioning of the top-pulling pipe supporting module above the support table is realized, the top-pulling pipe supporting module can always be in the specified area in front of the top-pulling module, and stable lifting operation can be carried out in the specified area, so that the descending top-pulling pipe can be smoothly filled into the pushing area of the top-pulling module, the guiding, placing and aligning positioning during the filling operation of the top-pulling pipe are realized, the manual auxiliary operation steps of the operator are reduced, and the filling and pushing effect and efficiency of the top-pulling pipe are improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments, the following will briefly introduce the drawings in the embodiments.

[0017] Figure 1 It is a structural schematic view of a top-pulling pipe quick filling and pushing device.

[0018] Figure 2 It is a structural schematic view of a top-pulling pipe quick filling and pushing device. Figure 1 It is a structural schematic view of a top-pulling pipe quick filling and pushing device from another angle.

[0019] Figure 3 It is a structural schematic view of a support table in a top-pulling pipe quick filling and pushing device.

[0020] Figure 4 It is a structural schematic view of a top-pulling pipe supporting module, a front pushing module and a rear pushing module in a top-pulling pipe quick filling and pushing device.

[0021] Figure 5 It is a structural schematic view of a top-pulling pipe quick filling and pushing device from another angle. Figure 4 It is a structural schematic view of a top-pulling pipe quick filling and pushing device from another angle.

[0022] Figure 6 It is a structure schematic view of a top-pulling pipe fast filling jacking device for pipe modules;

[0023] In the figure: 1, a supporting table; 11, a transportation track; 12, a lifting driving part; 121, a connecting head; 13, a recess for giving way; 2, a pipe module; 21, a mounting rack; 22, a jack; 23, an adjusting cross plate; 231, an outer guiding frame; 232, a fixing screw; 3, a top-pulling pipe supporting module; 31, a front semicircular supporting plate; 32, a rear semicircular supporting plate; 33, a connecting column; 4, a front material jacking module; 41, a semicircular material supporting plate; 42, a material jacking driving part; 43, a connecting socket; 44, a material jacking plate; 45, a combined block; 5, a rear material pushing module; 51, a material pushing plate; 52, a material pushing driving part; 53, a combined plate; 54, a through hole; 6, a connecting positioning module; 61, a fixed vertical beam; 62, a positioning seat. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. The specific mechanical structure of the present application is described below with reference to the drawings. Figures 1 to 6 The structure contents mentioned in the following embodiments will be clearly presented in the detailed description of the structure, with reference to the drawings of the specification.

[0025] Please refer to Figures 1 to 6 In the embodiments of the present application, a top-pulling pipe fast filling jacking device includes a supporting table 1, which is placed inside a working well and is used for connecting other parts of the equipment. The top of the supporting table 1 is fixedly connected with a transportation track 11 for guiding the movement of a pipe. The top of the supporting table 1 is fixedly connected with a pipe module 2 located behind the transportation track 11. The pipe module 2 realizes pipe jacking work. A top-pulling pipe supporting module 3 for supporting the pipe is arranged between the transportation track 11 and the pipe module 2. The top of the supporting table 1 is fixedly connected with two lifting driving parts 12 symmetrically distributed on both sides of the top-pulling pipe supporting module 3. The two lifting driving parts 12 are connected with the top-pulling pipe supporting module 3 to realize the lifting work of the top-pulling pipe supporting module 3 above the supporting table 1. The lifting of the top-pulling pipe supporting module 3 and the pipe in the top-pulling pipe supporting module 3 above the supporting table 1 realizes the filling of the pipe. The head end of the top-pulling pipe supporting module 3 is fixedly connected with a front material jacking module 4. The tail end of the top-pulling pipe supporting module 3 is fixedly connected with a rear material pushing module 5. The front material jacking module 4 and the rear material pushing module 5 realize the guiding, adjustment, and alignment positioning of the pipe. EMBODIMENT

[0026] The base of the device as a whole is used, and the base is used to install other parts of the device. The base is placed inside the well for use. The top of the base is fixedly connected with a transport track 11, which is used for hoisting, filling and supporting the top-pulling pipe. The top of the base is fixedly connected with a top-pulling pipe module 2, which is located behind the transport track 11. The top-pulling pipe module 2 is used for pushing the hoisted and filled top-pulling pipe. The top-pulling pipe module 2 is composed of a mounting frame 21, ten jacks 22 and ten adjusting plates 23. The ten jacks 22 are fixedly connected to the top of the ten adjusting plates 23 by screwing. The ten adjusting plates 23 are respectively installed in the corresponding installation slots in the mounting frame 21. The ten adjusting plates 23 are symmetrically distributed. The side of the adjusting plate 23 is fixedly connected with an outer guide frame 231. The inner side wall of the outer guide frame 231 is in contact with the corresponding side of the mounting frame 21. The inner side wall of the outer guide frame 231 is fixedly connected with a fixed screw 232. The fixed screw 232 is fixedly connected in the corresponding fixed hole in the mounting frame 21. The stable connection between the adjusting plate 23 and the mounting frame 21 is achieved. The adjusting plate 23 can be stably fixed in the specified position in the mounting frame 21. The stability of the jack 22 during use can be improved. The mounting frame 21 is fixedly connected to the top of the base. The stable connection between the top-pulling pipe module 2 and the base is achieved. The top-pulling pipe is filled between the jack 22 and the transport track 11. The jack 22 applies a pushing force to the top-pulling pipe from the rear of the top-pulling pipe, so that the top-pulling pipe moves forward along the transport track 11. The pushing work of the top-pulling pipe is achieved. The adjusting plate 23 can move back and forth in the mounting frame 21. The position of the adjusting plate 23 is fixed after adjustment by the fixed screw 232. The position adjustment of the jack 22 above the base is achieved. The operation is simple and convenient for the operator to adjust the position of the jack 22 above the base. The position of the ten jacks 22 can be adjusted. The operator can adjust the position of a single or multiple jacks 22 according to the size of the top-pulling pipe to perform the pushing work of the top-pulling pipe. The device has strong use effect and high flexibility.

[0027] The transportation track 11 and the top pipe module 2 are provided with a top pull pipe supporting module 3 for carrying the top pull pipe hoisted by the crane, the top pull pipe supporting module 3 is composed of a front semicircular supporting plate 31, a rear semicircular supporting plate 32 and a plurality of connecting columns 33, the front semicircular supporting plate 31 is close to the transportation track 11, the rear semicircular supporting plate 32 is located behind the front semicircular supporting plate 31 and close to the jack 22, the plurality of connecting columns 33 are fixed in a ring shape between the front semicircular supporting plate 31 and the rear semicircular supporting plate 32, realizing the firm connection and combination of the front semicircular supporting plate 31, the rear semicircular supporting plate 32 and the plurality of connecting columns 33, the top of the supporting platform 1 is fixedly connected with two lifting driving members 12 which are symmetrically distributed on both sides of the top pull pipe supporting module 3, the two lifting driving members 12 are used to connect the top pull pipe supporting module 3, the lifting chain of the lifting driving member 12 is fixedly connected with a connecting head 121 which can connect the top pull pipe supporting module 3, the other end of the connecting head 121 is fixedly connected with the corresponding end of the front semicircular supporting plate 31 and the rear semicircular supporting plate 32, realizing the connection and combination of the top pull pipe supporting module 3 and the two lifting driving members 12, the simultaneous operation of the two lifting driving members 12 can realize the lifting operation of the top pull pipe supporting module 3 above the supporting platform 1, the top pull pipe supporting module 3 rises to the top end area of the two lifting driving members 12 to carry the top pull pipe hoisted by the crane, the top pull pipe descends to the inside of the front semicircular supporting plate 31 and the rear semicircular supporting plate 32, the outer wall of the top pull pipe contacts the inner side wall of the front semicircular supporting plate 31 and the rear semicircular supporting plate 32 and the outer wall of the connecting column 33, completing the carrying work of the top pull pipe, the operation of the two lifting driving members 12 makes the top pull pipe supporting module 3 and the top pull pipe descend above the supporting platform 1, realizing the descending filling work of the top pull pipe, the operation is simple and convenient for the operator to carry out the transfer and descending filling operation of the top pull pipe, the top of the supporting platform 1 is provided with a giving way groove 13 corresponding to the top pull pipe supporting module 3, the giving way groove 13 can give way to the descending top pull pipe supporting module 3, enabling the top pull pipe supporting module 3 to descend to a specified position, so as to ensure that the top pull pipe can move smoothly to the transportation track 11.

[0028] The head end of the top-pulling pipe supporting module 3 is fixedly connected with a front material pushing module 4, the front material pushing module 4 is composed of a semicircular material supporting plate 41, three material pushing driving members 42, two connecting sockets 43, a material pushing plate 44 and two combination blocks 45, the semicircular material supporting plate 41 is located outside the head end of the front semicircular supporting plate 31, the outer side wall of the front semicircular supporting plate 31 is fixedly connected with the three material pushing driving members 42 which are annularly and equidistantly distributed, the output end of the material pushing driving member 42 is fixedly connected with the side edge of the semicircular material supporting plate 41, the material pushing plate 44 is located above the semicircular material supporting plate 41, the side edge of the material pushing plate 44 is fixedly connected with the two symmetrically distributed combination blocks 45, the two combination blocks 45 are used to connect the semicircular material supporting plate 41, the side edge of the semicircular material supporting plate 41 is fixedly connected with the two connecting sockets 43 which correspond to the two combination blocks 45 respectively, the combination block 45 is clamped and connected with the connecting socket 43, the stability of the combination connection of the components of the front material pushing module 4 is high, the tail end of the top-pulling pipe supporting module 3 is fixedly connected with a rear material pushing module 5, the rear material pushing module 5 is composed of a material pushing plate 51, three material pushing driving members 52 and a combination plate 53, the material pushing plate 51 is located outside the tail end of the rear semicircular supporting plate 32, the outer side wall of the rear semicircular supporting plate 32 is fixedly connected with the three material pushing driving members 52 which are annularly and equidistantly distributed, the output end of the material pushing driving member 52 is fixedly connected with the side edge of the material pushing plate 51, the combination plate 53 is fixedly connected with the outer side wall of the material pushing plate 51, the output end of the material pushing driving member 52 and the inner side wall of the combination plate 53 are fixedly connected together, the stability of the combination connection of the components of the rear material pushing module 5 is high.

[0029] The top-pulling pipe is transferred to the top-pulling pipe supporting module 3, the front top material module 4 connected to the head end of the top-pulling pipe supporting module 3 works, the three top material driving members 42 work to make the semicircular material supporting plate 41 and the top material plate 44 close to the front end of the top-pulling pipe, the semicircular material supporting plate 41 and the top material plate 44 can exert a top force on the top-pulling pipe from the front end of the top-pulling pipe, so that the top-pulling pipe slowly moves into the top-pulling pipe supporting module 3, and the end of the top-pulling pipe extending to the outside of the head end of the top-pulling pipe supporting module 3 slowly moves into the top-pulling pipe supporting module 3, thereby achieving the top adjustment operation of the transferred top-pulling pipe, the rear pushing material module 5 connected to the tail end of the top-pulling pipe supporting module 3 works, the three pushing material driving members 52 work to make the pushing material plate 51 close to the tail end of the top-pulling pipe, and the pushing material plate 51 can exert a pushing force on the top-pulling pipe from the tail end of the top-pulling pipe, so that the end of the top-pulling pipe extending to the outside of the tail end of the top-pulling pipe supporting module 3 slowly moves into the top-pulling pipe supporting module 3, thereby achieving the pushing adjustment operation of the transferred top-pulling pipe, the front top material module 4 and the rear pushing material module 5 can work together or separately, and the front top material module 4 and the rear pushing material module 5 can cooperate to perform the top-pushing adjustment operation of the transferred top-pulling pipe, can push and arrange the top-pulling pipe in the front semicircular supporting plate 31 and the rear semicircular supporting plate 32, and can position the top-pulling pipe in the top-pulling pipe supporting module 3, thereby achieving the positioning operation of the transferred top-pulling pipe, and the operation is convenient, the top-pushing adjustment and positioning operation of the transferred top-pulling pipe can be flexibly and effectively performed, the transferred top-pulling pipe and the top-pulling pipe supporting module 3 are positioned in a specified area above the supporting table 1, and the subsequent lowering and filling operation of the top-pulling pipe can be ensured to be normally performed, the two lifting driving members 12 work to lower the top-pulling pipe supporting module 3 and the top-pulling pipe to a specified top-pushing area in front of the jack 22, and the jack 22 works to exert a top force on the top-pulling pipe from the rear of the top-pulling pipe, so that the top-pulling pipe moves out of the top-pulling pipe supporting module 3 and continues to move forward along the transportation track 11, thereby achieving the top-pushing operation of the top-pulling pipe, and the operation is simple, the front top material module 4 and the rear pushing material module 5 can be used to guide and position the top-pulling pipe during the transfer and lowering and filling operation of the top-pulling pipe, the top-pulling pipe supporting module 3 is connected and positioned between the two lifting driving members 12, the top-pulling pipe supporting module 3 can always be in a specified area in front of the pipe module 2, the top-pulling pipe supporting module 3 can stably perform the lifting operation in the specified area, the lowered top-pulling pipe can be stably filled into a top-pushing area suitable for the top force exerted by the jack 22, the jack 22 can push the top-pulling pipe by a specified distance, the filling and pushing effect of the top-pulling pipe can be improved, the shaking and position deviation of the top-pulling pipe during the transfer and lowering and filling operation can be reduced, the manual auxiliary operation steps of the operator can be reduced, and the filling and pushing efficiency of the top-pulling pipe is improved.

[0030] The pushing plate 51 and the combined plate 53 are internally provided with through holes 54 corresponding to the jacks 22, the output ends of the jacks 22 can pass through the through holes 54 to perform the pushing operation of the jacking pipe, and the jacks 22 can smoothly perform the pushing operation of the jacking pipe. The pushing plate 51 and the combined plate 53 are connected with the pushing driving part 52 in a screwing manner, so that the adaptive replacement work of the pushing plate 51 can be conveniently performed by the operator, so as to adapt to the jacks 22 at the adjusted position.

[0031] The top of the support platform 1 is fixedly connected with two symmetrically distributed connecting positioning modules 6, the connecting positioning modules 6 are located between the lifting driving part 12 and the transportation track 11, the connecting positioning module 6 is composed of a fixed vertical beam 61 and a positioning seat 62, the fixed vertical beam 61 is fixedly connected to the top of the support platform 1, and the positioning seat 62 is fixedly connected to the top end of the fixed vertical beam 61, so that the stable connection combination of the connecting positioning module 6 and the support platform 1 is realized. The connecting positioning module 6 is used to connect the corresponding combined block 45. The top material plate 44 and the semicircular material supporting plate 41 are of a combined structure, the top material plate 44 can be separated from the semicircular material supporting plate 41. During the descending process of the front top material module 4, when the top material plate 44 moves between the two connecting positioning modules 6, the two combined blocks 45 will be respectively clamped into the interiors of the two positioning seats 62, at this time, the connecting socket 43 and the corresponding combined block 45 are separated, the top material plate 44 is left between the two positioning seats 62, and the semicircular material supporting plate 41 continues to descend, so that the separation of the top material plate 44 and the semicircular material supporting plate 41 is realized, the positioning and reservation of the top material plate 44 between the two positioning seats 62 are realized, the top material plate 44 and the semicircular material supporting plate 41 are separated and left between the two positioning seats 62, the jacking pipe can smoothly pass through the semicircular material supporting plate 41 and move to the transportation track 11, and the normal jacking pipe pushing operation can be ensured. When the jacking pipe moves to the transportation track 11, the jacking pipe supporting module 3 rises, during the ascending process of the semicircular material supporting plate 41, the connecting socket 43 will be combined with the corresponding combined block 45 again, the combined connection of the top material plate 44 and the semicircular material supporting plate 41 is realized, the top material plate 44 and the semicircular material supporting plate 41 are reconnected, so that the front top material module 4 can continue to perform the subsequent jacking work of the jacking pipe, the device can be used for a long time, and the use effect of the device is strong.

[0032] The working principle of the present application is that the whole support platform 1 is placed inside the working well for use, the crane hoists the top-pulling pipe into the inside of the top-pulling pipe supporting module 3, the top-pulling pipe is transferred into the inside of the front semicircular supporting plate 31 and the rear semicircular supporting plate 32, the three top material driving members 42 work to make the semicircular material supporting plate 41 and the top material plate 44 exert a top force on the front end of the top-pulling pipe, the three pushing material driving members 52 work to make the pushing material plate 51 exert a pushing force on the tail end of the top-pulling pipe, the top-pulling pipe is pushed and placed in the inside of the front semicircular supporting plate 31 and the rear semicircular supporting plate 32, the two lifting driving members 12 work to make the top-pulling pipe supporting module 3 and the top-pulling pipe descend, the top material plate 44 moves to the inside of the two connecting positioning modules 6 and stays between the two positioning seats 62, the semicircular material supporting plate 41, the front semicircular supporting plate 31, the rear semicircular supporting plate 32 and the rear pushing material module 5 continue to descend to the top-pushing area on the support platform 1, then the lifting driving members 12 stop working, the top-pulling pipe is positioned in the top-pushing area, the jack 22 exerts a top force on the rear of the top-pulling pipe, the top-pulling pipe passes through the semicircular material supporting plate 41 and continues to move forward along the transportation track 11, the top-pulling pipe moves to the transportation track 11, the top-pulling pipe supporting module 3 ascends, in the process of ascending of the semicircular material supporting plate 41, the connecting socket 43 and the corresponding combined block 45 are recombined together, the top material plate 44 and the semicircular material supporting plate 41 are reconnected, the top-pulling pipe supporting module 3 ascends to the top-pulling pipe transferring area to continue the subsequent transferring work of the top-pulling pipe.

[0033] The basic principle and main features of the present application and the advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above-mentioned embodiments, the above-mentioned embodiments and the description in the specification are only to illustrate the principle of the present application, various changes and improvements can be made to the present application without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A rapid filling and pushing device for a jacking pipe, comprising a support platform (1), characterized in that, The support platform (1) is placed inside the working well and used to connect other parts of the equipment. A transport rail (11) for guiding the movement of the pipeline is fixedly connected to the top of the support platform (1). A pipe jacking module (2) located behind the transport rail (11) is fixedly connected to the top of the support platform (1). The pipe jacking module (2) realizes the pipe jacking operation. A jacking pipe support module (3) for supporting the tunnel is provided between the transport track (11) and the jacking pipe module (2). Two lifting drive components (12) are fixedly connected to the top of the support platform (1) and are symmetrically distributed on both sides of the jacking pipe support module (3). The two lifting drive components (12) are connected to the jacking pipe support module (3) to realize the lifting operation of the jacking pipe support module (3) above the support platform (1). The jacking pipe support module (3) and the pipe inside the jacking pipe support module (3) are lifted and lowered on the support platform (1) to realize the filling of the pipe. The top-pull pipe support module (3) includes a front semi-circular support plate (31), a rear semi-circular support plate (32) and a connecting column (33). The front top-pull pipe support module (3) is fixedly connected to the head end of the top-pull pipe support module (3), and the rear push-material module (5) is fixedly connected to the tail end of the top-pull pipe support module (3). The front top-pull module (4) and the rear push-material module (5) realize the guidance, alignment and positioning of the pipe. The front top material module (4) includes a semi-circular support plate (41), three top material driving components (42), two connecting sockets (43), a top material plate (44), and two combination blocks (45). The semi-circular support plate (41) is located outside the head end of the front semi-circular support plate (31). Three top material driving components (42) are fixedly connected to the outer wall of the front semi-circular support plate (31) in a ring and are evenly distributed. The output end of the top material driving component (42) is fixedly connected to the side of the semi-circular support plate (41). The top plate (44) is located above the semi-circular support plate (41). The top plate (44) has two symmetrically distributed combination blocks (45) fixedly connected to its side for connecting the semi-circular support plate (41). The semi-circular support plate (41) has two fixedly connected connection sockets (43) corresponding to the two combination blocks (45) respectively. The combination blocks (45) are engaged with the connection sockets (43). The rear pusher module (5) includes a pusher plate (51), three pusher drive components (52) and a combination plate (53). The pusher plate (51) is located outside the tail end of the rear semicircular support plate (32). The outer wall of the rear semicircular support plate (32) is fixedly connected to three pusher drive components (52) distributed in a ring at equal intervals. The output end of the pusher drive component (52) is fixedly connected to the side of the pusher plate (51). The combination plate (53) is fixedly connected to the outer wall of the pusher plate (51). The output end of the pusher drive component (52) is fixedly connected to the inner wall of the combination plate (53). The top of the support platform (1) is fixedly connected to two symmetrically distributed connection positioning modules (6). The connection positioning modules (6) are located between the lifting drive (12) and the transport track (11). The connection positioning modules (6) include a fixed vertical beam (61) and a positioning seat (62). The fixed vertical beam (61) is fixedly connected to the top of the support platform (1). The positioning seat (62) is fixedly connected to the top of the fixed vertical beam (61) and is used to connect the corresponding assembly block (45). The assembly block (45) is engaged with the positioning seat (62).

2. The rapid filling and pushing device for jacking pipes according to claim 1, characterized in that, The pipe jacking module (2) includes a mounting frame (21), a jack (22), and an adjusting plate (23). The mounting frame (21) is fixedly connected to the top of the support platform (1). Ten symmetrically distributed adjusting plates (23) are slidably connected inside the mounting frame (21). The jack (22) is screwed to the top of the adjusting plate (23). The jack (22) performs pipe jacking operation behind the pipe. An outer guide frame (231) is fixedly connected to the side of the adjusting plate (23). A fixing screw (232) is threaded inside the outer guide frame (231). The fixing screw (232) is screwed to the inside of the mounting frame (21).

3. The rapid filling and pushing device for jacking pipes according to claim 2, characterized in that, The front semicircular support plate (31) is close to the transport track (11), and the rear semicircular support plate (32) is located behind the front semicircular support plate (31) and close to the jack (22). Several connecting columns (33) are fixed in a ring between the front semicircular support plate (31) and the rear semicircular support plate (32). The lifting drive component (12) is fixedly connected to a connector (121) for connecting the top pull tube support module (3). The other end of the connector (121) is fixedly connected to the corresponding ends of the front semicircular support plate (31) and the rear semicircular support plate (32).

4. The rapid filling and pushing device for a jacking pipe according to claim 3, characterized in that, Both the pusher plate (51) and the combination plate (53) have through holes (54) corresponding to the jack (22) inside.

5. The rapid filling and pushing device for jacking pipes according to claim 1, characterized in that, The top of the support platform (1) is provided with a relief groove (13) corresponding to the top pull tube support module (3).

Citation Information

Patent Citations

  • Pipe jacking system with positioning function and construction method thereof

    CN114294474A

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