Guide frame for shaft cable laying of super high-rise building
Technical Field
The utility model belongs to the technical field of electromechanical construction, and particularly relates to a guide frame for shaft cable laying of a super high-rise building.
Background
Along with the acceleration of the urban process, the number of super high-rise buildings is continuously increased, and the vertical shaft cable laying becomes an important link in super high-rise building construction. The vertical section of the cable of the super high-rise building is arranged in a vertical shaft, a one-time super high laying method is generally adopted, joints are reduced as much as possible, the cost is reduced, the construction period is saved, and meanwhile, the construction problems are caused, namely the vertical section is super high, the one-time laying of the cable is heavier, the cable swing amplitude is larger, and the risk of damage caused by friction with surrounding objects is easily caused. Therefore, a guide frame for shaft cable laying is designed to guide a cable inside a shaft.
Disclosure of utility model
The utility model aims to provide a guide frame for shaft cable laying of a super high-rise building.
The utility model is realized by the following measures, the guide frame for laying the vertical shaft cable of the super high-rise building is characterized by comprising two upright rods which are symmetrically arranged, wherein the upper ends and the lower ends of the two upright rods are respectively provided with a first wire guide wheel through a bracket in a rotating way, the opposite surfaces of the two upright rods are respectively provided with a sliding groove, the middle position of each sliding groove is fixedly provided with a sealing stop block, a buffer rod is arranged in each sliding groove in a sliding way and penetrates through each sealing stop block, a space is reserved between the upper end of each buffer rod and the upper inner wall of each sliding groove, and between the lower end of each buffer rod and the lower inner wall of each sliding groove, limiting plates are fixedly arranged on each buffer rod and positioned on two sides of each sealing stop block, each buffer rod is sleeved with a spring, one end of each spring is fixed on each sealing stop block, and the other end of each buffer rod is respectively provided with a second wire guide wheel in a rotating way;
The two outer side faces of the vertical rods are fixedly provided with supporting rods, the tail ends of the supporting rods are fixedly provided with mounting plates, the mounting plates are fixed on the wall body of the vertical shaft through expansion screws, the vertical rods are fixedly provided with cross bars on the side faces adjacent to the outer side faces, and wire guide wheels III are rotatably arranged between the two cross bars.
The guide frame can effectively guide the laying path of the cable through the combination of the two upright rods and the plurality of wire wheels which are symmetrically arranged, and reduce friction and abrasion of the cable in the laying process. The design of spout and buffer rod makes the leading truck have good buffer function, can absorb vibration and the impact that produces in the cable laying process, and the protection cable is not damaged. The setting of bracing piece and mounting panel makes the leading truck can firmly fix on the shaft wall body, ensures the stability of laying the process.
The supporting rod is a telescopic rod, the telescopic rod can be adjusted according to the size of the vertical shaft, and the application range of the guide frame is enlarged.
The telescopic rod comprises an outer sleeve fixed on the vertical rod and an inner sleeve rod inserted in the outer sleeve, the outer sleeve and the inner sleeve rod are respectively provided with a plurality of round holes for mounting bolts, and the mounting plate is fixed on the inner sleeve rod.
The tail end of the outer sleeve is fixedly connected with the lower part of the vertical rod through a first inclined rod.
Two the horizontal pole is gone up and follows the length direction interval of horizontal pole is provided with a plurality of regulation holes, the wire wheel is three-way bolt fastening is on the regulation hole.
The tail end of the cross rod is fixedly connected with the upper part of the vertical rod through a second inclined rod.
In addition, the end of the outer sleeve is connected with the lower part of the vertical rod through the inclined rod, the end of the cross rod is connected with the upper part of the vertical rod through the inclined rod II, and the strength of the whole guide frame is improved.
The guide frames are arranged along the vertical shaft, the specific spacing distance is about 10m according to the actual situation, the length of the telescopic rod is regulated according to the size of the vertical shaft and is fixed through the expansion bolts, when a cable is laid, the cable passes through the space between the first wire guide wheel and the second wire guide wheel above, bypasses the third wire guide wheel and passes through the space between the first wire guide wheel and the second wire guide wheel below, so that the path of the cable is limited, and the problem of larger swinging amplitude of the cable in the laying process is avoided.
The guide frame for shaft cable laying of the super high-rise building has the advantages of being simple in structure, convenient to install, good in buffering and adjusting functions and suitable for shaft cable laying engineering of various super high-rise buildings.
Drawings
For a clearer description of the technical solutions of the present utility model, the drawings used in the embodiments will be briefly described below, and it is obvious that the drawings listed below are only some embodiments of the present utility model, and that other drawings can be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic overall structure of an embodiment of the present utility model;
FIG. 2 is an enlarged view of a portion of FIG. 1 at A;
FIG. 3 is a schematic view of a portion of the structure of an embodiment of the present utility model.
In the drawing, the component list represented by each reference numeral comprises 1, a vertical rod, 2, a bracket, 3, a first wire guide wheel, 4, a telescopic rod, 5, a cross rod, 6, a second wire guide wheel, 7, a buffer rod, 8, a spring, 9, a first inclined rod, 10, a second inclined rod, 11, a sealing stop block, 101, a chute, 401, an outer sleeve, 402, an inner sleeve rod, 403, a mounting plate, 501, a third wire guide wheel, 502, a round hole, 701 and a limiting plate.
Detailed Description
The present utility model will be described in further detail with reference to the following examples in order to make the objects, technical solutions and advantages of the present utility model more apparent. Of course, the specific embodiments described herein are for purposes of illustration only and are not intended to limit the utility model.
Referring to fig. 1-3, a guiding frame for laying a vertical shaft cable of a super high-rise building is characterized by comprising two upright rods 1 which are symmetrically arranged, wherein a first wire guide wheel 3 is rotatably arranged at the upper end and the lower end of each upright rod 1 through a bracket 2, a sliding groove 101 is formed in the opposite surface of each upright rod 1, a sealing stop block 11 is fixedly arranged in the middle of each sliding groove 101, a buffer rod 7 is slidably arranged in each sliding groove 101 and penetrates through each sealing stop block 11, a space is reserved between the upper end of each buffer rod 7 and the upper inner wall of each sliding groove 101, a limiting plate 701 is fixedly arranged between the lower end of each buffer rod 7 and the lower inner wall of each sliding groove 101, springs 8 are sleeved on the buffer rods 7, one ends of the springs 8 are fixed on the sealing stop blocks 11, the other ends of the springs 8 are fixed on the limiting plates, and a second wire guide wheel 6 is rotatably arranged at the upper end and the lower end of each upright rod 1;
The lateral surface of two pole setting 1 is all fixed and is provided with the bracing piece, and the terminal fixed mounting panel 403 that is provided with of bracing piece, mounting panel 403 pass through the inflation screw to be fixed on the wall body of shaft, fixedly on the pole setting 1 with the lateral surface adjacent side on be provided with horizontal pole 5, rotate between two horizontal poles 5 and be provided with wire wheel three 501.
The guide frame can effectively guide the laying path of the cable through the combination of the two vertical rods 1 and the plurality of wire guide wheels which are symmetrically arranged, and reduce friction and abrasion of the cable in the laying process. The design of the chute 101 and the buffer rod 7 enables the guide frame to have a good buffer function, and can absorb vibration and impact generated in the cable laying process and protect the cable from being damaged. The arrangement of the support rods and the mounting plate 403 enables the guide frame to be firmly fixed on the shaft wall, and ensures the stability of the laying process.
The bracing piece is telescopic link 4, and telescopic link 4 can be adjusted according to the size of shaft, enlarges the application scope of leading truck.
The telescopic rod 4 comprises an outer sleeve 401 fixed on the upright rod 1 and an inner sleeve rod 402 inserted in the outer sleeve 401, a plurality of round holes 502 for mounting bolts are formed in the outer sleeve 401 and the inner sleeve rod 402, and a mounting plate 403 is fixed on the inner sleeve rod 402.
The end of the outer sleeve 401 is fixedly connected with the lower part of the upright 1 through a first inclined rod 9.
A plurality of adjusting holes are formed in the two cross bars 5 at intervals along the length direction of the cross bars 5, and the wire guide wheel III 501 is fixed to the adjusting holes through bolts.
The tail end of the cross rod 5 is fixedly connected with the upper part of the vertical rod 1 through a second inclined rod 10.
In addition, the first inclined rod 9 is connected with the tail end of the outer sleeve 401 and the lower part of the upright 1, and the second inclined rod 10 is connected with the tail end of the cross rod 5 and the upper part of the upright 1, so that the strength of the whole guide frame is improved.
The guide frames are arranged along the vertical shaft, the specific spacing distance is about 10m according to the actual situation, the length of the telescopic rod 4 is regulated according to the size of the vertical shaft and is fixed through the expansion bolts, when a cable is laid, the cable passes through the space between the first wire wheel 3 and the second wire wheel 6 above, bypasses the outer side of the third wire wheel 501 and passes through the space between the first wire wheel 3 and the second wire wheel 6 below, so that the path of the cable is limited, and the problem that the swing amplitude of the cable is large in the laying process is avoided.
The foregoing description of the preferred embodiments of the utility model is not intended to limit the utility model to the precise form disclosed, and any such modifications, equivalents, and alternatives falling within the spirit and scope of the utility model are intended to be included within the scope of the utility model.