CN218719318U - Foundation ditch drain pipe support frame - Google Patents

Foundation ditch drain pipe support frame Download PDF

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Publication number
CN218719318U
CN218719318U CN202222950706.7U CN202222950706U CN218719318U CN 218719318 U CN218719318 U CN 218719318U CN 202222950706 U CN202222950706 U CN 202222950706U CN 218719318 U CN218719318 U CN 218719318U
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drain pipe
support frame
bracing piece
seat
footstock
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CN202222950706.7U
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Chinese (zh)
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薛海敏
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Individual
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Individual
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Abstract

The utility model relates to a foundation ditch drain pipe support frame, including the base and set up in bracing piece on the base, the top of bracing piece is provided with supports the footstock, support the footstock butt in the side of drain pipe, the bracing piece has many, many the bracing piece respectively with support the footstock and rotate the connection, the bracing piece is including connecting loop bar and telescopic link, the telescopic link slides and wears to locate in the connecting loop bar, the fixed orifices has been seted up on the top of connecting the loop bar, a plurality of regulation hole has been seted up to the surperficial equidistance of telescopic link, wear to be equipped with in the fixed orifices and be used for fixing the telescopic link with the fixed pin of connecting the loop bar, the fixed pin peg graft in the fixed orifices and in the regulation hole. The bracing piece of adjustable length in detachable base and the support frame in this application can be according to the slope of topography, and the length order through the adjustment bracing piece supports the area of contact of footstock and drain pipe the biggest, increases the stable support of support frame to the drain pipe.

Description

Foundation ditch drain pipe support frame
Technical Field
The utility model belongs to the technical field of the technique of building engineering equipment and specifically relates to a foundation ditch drain pipe support frame is related to.
Background
The foundation pit drainage is used for pumping accumulated water and seepage water in a cofferdam, a foundation pit or a precipitation well to carry out dry land construction, is very important work in building construction, is particularly important in waterproof concrete construction of foundation slab engineering, relates to the use function problem of basements in the whole building, adopts a water pump to pump the water to the bottom of the pit for drying, is connected with a drainage pipe at the output end of the water pump, and discharges the accumulated water into drainage systems such as a drainage port through the drainage pipe. In order to increase the drainage efficiency of the drain pipe, it is necessary to support the drain pipe and adjust the inclination angle of the drain pipe.
In the related art, a support structure for a drainage pipe is generally placed between the drainage pipe and the ground through a masonry support material and a fixed support frame to support the drainage pipe. Such support structures, however, are relatively ineffective, and are only disposable,
SUMMERY OF THE UTILITY MODEL
Support effect is relatively poor in order to improve the bearing structure who adopts brick to build by laying bricks or stones supporting material and fixed support frame among the current foundation ditch drain pipe, and can only the phenomenon of disposable, the utility model provides a foundation ditch drain pipe support frame.
The utility model provides a pair of foundation ditch drain pipe support frame adopts following technical scheme:
the utility model provides a foundation ditch drain pipe support frame, include the base and set up in bracing piece on the base, the top of bracing piece is provided with supports the footstock, support the footstock butt in the side of drain pipe, the bracing piece has many, many the bracing piece respectively with support the footstock and rotate and connect, the bracing piece is including connecting loop bar and telescopic link, the telescopic link slides and wears to locate in the connecting loop bar, the fixed orifices has been seted up on the top of connecting the loop bar, a plurality of regulation hole has been seted up to the surface equidistance of telescopic link, wear to be equipped with in the fixed orifices and be used for fixing the telescopic link with the fixed pin of connecting the loop bar, the fixed pin peg graft in the fixed orifices and in the regulation hole.
Through adopting above-mentioned technical scheme, when supporting the drain pipe, the position of adjustment support frame makes base butt in subaerial, and many spinal branchs vaulting pole cooperations are adjusted the position that supports the footstock respectively. And according to the difference of the landform level and smooth ground, the length that the telescopic link stretches out in every bracing piece is adjusted to make the lateral surface area of contact of supporting footstock and drain pipe the biggest, utilize the fixed pin with telescopic link and adapter sleeve pole fixed connection together. Utilize the bracing piece that can adjust length in detachable support frame and the support frame to can make the support frame different according to the slope of actual topography, the length order through the adjustment bracing piece supports the area of contact of footstock and drain pipe the biggest, increases the support effect of support frame to the drain pipe.
Preferably, the base is provided with a pin hole, a fixed pin rod is arranged in the pin hole, and the fixed pin rod is inserted into the ground.
Through adopting above-mentioned technical scheme, when base fixed mounting when subaerial, penetrate the ground with fixed pin pole through the pinhole to it is fixed with ground with the base. When the movable support frame is detached and transferred, the fixed pin rod is pulled out, so that the support frame can be moved, the convenience is improved, and the support frame can be repeatedly used.
Preferably, the bottom of supporting the footstock is provided with the connecting hole, the top of telescopic link is provided with the axis of rotation, the axis of rotation rotates to wear to locate in the connecting hole.
Through adopting above-mentioned technical scheme, when the length of every bracing piece is different because of the length that the topography slope stretches out, every bracing piece is also different with the contained angle that supports between the footstock, consequently makes the bracing piece and supports and rotate between the footstock and be connected to make when adjusting bracing piece length support the footstock and keep and closely butt with the drain pipe.
Preferably, the axis of rotation passes the one end of connecting hole has been seted up spacing hole, spacing downthehole spacing round pin axle of wearing to be equipped with, the outside of connecting hole is provided with many gag lever posts, many be provided with the confession between the gag lever post the clearance that spacing round pin axle passed, spacing round pin axle and both sides the gag lever post butt.
Through adopting above-mentioned technical scheme, after adjusting the bracing piece and supporting the contained angle between the footstock, wear to locate spacing downthehole with spacing round pin axle to make spacing round pin axle's tip wear to locate between two gag lever posts that correspond, utilize the rotation of gag lever post restriction spacing round pin axle and axis of rotation, thereby fixed the bracing piece with the contained angle that supports between the footstock, improve the stability of bracing piece to supporting the footstock supporting effect.
Preferably, the supporting top seat is rotatably provided with a rotating seat, the top end of the rotating seat is provided with a butting seat, and the butting seat is butted against the side face of the drain pipe.
Through adopting above-mentioned technical scheme, because the topographic factors near the foundation ditch probably are more complicated, when fixing the back to the bracing piece, there is the skew in the angle between the side of supporting footstock and drain pipe. Rotate on supporting the footstock and install and rotate the seat, the angle of seat is rotated in the adjustment for butt joint seat and drain pipe fully contact improve the stability of supporting.
Preferably, the butt seat is gone up to slide and is installed the cohesion piece that is used for cohesion drain pipe side, offer the confession on the butt seat the groove that slides that the cohesion piece slided, the bottom of cohesion piece is provided with the sliding block, the sliding block slide set up in the inslot that slides.
Through adopting above-mentioned technical scheme, the distance between the skin is closed in the adjustment to the drain pipe of different diameters of adaptation makes the support frame can be more firm support in the below of drain pipe.
Preferably, a limiting groove is formed in the groove wall of the sliding groove, a protruding block used for limiting the sliding block to overturn is arranged on the side wall of the sliding block, and the protruding block is arranged in the limiting groove in a sliding mode.
Through adopting above-mentioned technical scheme, the piece that embraces receives the drain pipe and rocks when assaulting, protruding piece can restrict the piece that embraces and the upset of sliding block to avoid the unable normal removal of piece that embraces to use.
Preferably, the butt seat is provided with a bidirectional screw rod in a rotating manner, and two ends of the bidirectional screw rod are respectively penetrated through the two sliding blocks.
Through adopting above-mentioned technical scheme, the rotation of two-way lead screw can drive two cohesion pieces simultaneously and be close to each other or keep away from, the diameter of adaptation drain pipe.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the detachable support frame and the support rods capable of adjusting the length in the support frame are utilized, so that the support frame can have different gradients according to actual landforms, the contact area between the support top seat and the drain pipe is maximized by adjusting the lengths of the support rods, and the support effect of the support frame on the drain pipe is improved;
2. the abutting seat is provided with the holding pieces which can be close to or far away from each other, so that the distance between the holding pieces can be adjusted according to different diameters of the drain pipe, and the support for the drain pipe is improved.
Drawings
FIG. 1 is a schematic view of the overall structure in the present embodiment;
FIG. 2 is a display view for showing a support rod structure;
FIG. 3 is an enlarged view of portion A of FIG. 1;
FIG. 4 is a schematic view of the assembly relationship between the supporting top seat and the rotating seat and the abutting seat in the present embodiment;
FIG. 5 is a schematic view for showing the assembling relationship between the abutting seat and the sliding block.
Description of reference numerals: 10. a base; 11. a pin hole; 12. fixing the pin rod; 20. a support bar; 21. connecting the loop bar; 22. a telescopic rod; 23. a fixing hole; 24. an adjustment hole; 25. a fixing pin; 26. fixing a nut; 27. a rotating shaft; 28. a limiting hole; 29. a limiting pin shaft; 30. supporting the top seat; 31. connecting lugs; 32. connecting holes; 33. a limiting rod; 34. rotating the cavity; 40. a rotating seat; 41. a butting seat; 42. a sliding groove; 43. a limiting groove; 44. a sliding block; 45. a raised block; 46. a bidirectional screw rod; 47. rotating a hand wheel; 48. a holding sheet.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
The utility model provides a foundation ditch drain pipe support frame, refers to figure 1, includes base 10, and a plurality of pinholes 11 have been seted up on base 10's surface, wears to be equipped with fixed pin pole 12 in the pinhole 11, and fixed pin pole 12 passes the one end of pinhole 11 and pegs graft in the ground. In this embodiment, there are four bases 10.
Referring to fig. 1 and 2, a support rod 20 is rotatably mounted on each base 10, and specifically, the support rod 20 includes a connecting loop bar 21 and a telescopic bar 22, and one end of the connecting loop bar 21 is rotatably connected to the top surface of the base 10. The inside of connecting loop bar 21 is the cavity setting, and connects the loop bar 21 and keeps away from the one end of base 10 and seted up the opening, and the opening communicates with the inside of connecting loop bar 21. The telescopic link 22 is slidably mounted inside the connecting loop bar 21, and one end of the telescopic link 22 penetrates through the top end opening of the connecting loop bar 21.
Referring to fig. 2, a fixing assembly for fixing the relative position between the connecting loop bar 21 and the telescopic bar 22 is installed on the connecting loop bar 21 and the telescopic bar 22, the fixing assembly includes a fixing hole 23 opened on the connecting loop bar 21 and an adjusting hole 24 opened on the telescopic bar 22, there is one fixing hole 23, and the fixing hole 23 is located at the top end of the connecting loop bar 21. The adjusting holes 24 are multiple, and the adjusting holes 24 are distributed at equal intervals along the length direction of the telescopic rod 22. The fixing hole 23 is provided with a fixing pin 25, and when the adjusting hole 24 is opposite to the fixing hole 23, the fixing pin 25 is inserted in the fixing hole 23 and the adjusting hole 24 in sequence. The end of the fixing pin 25 is threaded, and the fixing pin 25 is threaded with a fixing nut 26 after passing through the fixing hole 23.
Referring to fig. 1 and 3, one end of the telescopic rod 22 far away from the connecting sleeve rod 21 is rotatably connected with a supporting top seat 30, four groups of connecting lugs 31 are fixedly installed on the side surfaces of the supporting top seat 30 respectively, the four groups of connecting lugs 31 are distributed in a circular equidistant manner around the central axis of the supporting top seat 30 respectively, and the four groups of connecting lugs 31 correspond to the four supporting rods 20 one by one respectively. Connecting holes 32 are formed in the connecting lugs 31, a rotating shaft 27 is fixedly mounted at the end part of the telescopic rod 22, the rotating shaft 27 is rotatably arranged in the connecting holes 32 in a penetrating mode, and two ends of the rotating shaft 27 protrude out of the surfaces of the connecting lugs 31 respectively. Both ends of the rotating shaft 27 protruding out of the surface of the connecting lug 31 are provided with limiting holes 28, limiting pin shafts 29 penetrate through the limiting holes 28, and the length of the limiting pin shafts 29 is larger than the diameter of the connecting holes 32. A plurality of limiting rods 33 are fixedly mounted on the surface of the connecting lug 31, the limiting rods 33 are distributed in a circular shape at equal intervals around the periphery of the connecting hole 32, and the gap between every two adjacent limiting rods 33 is larger than the width of the limiting pin 29. When the limit pin 29 is inserted into the limit hole 28, the limit pin 29 abuts against the limit rods 33 on both sides, and the limit rods 33 limit the rotation of the rotating shaft 27.
Referring to fig. 4 and 5, a rotation cavity 34 is formed inside the supporting top seat 30, and a top end of the rotation cavity 34 is communicated with a top surface of the supporting top seat 30. A rotary seat 40 is rotatably mounted in the rotary cavity 34, and the rotary seat 40 is disposed in a cylindrical shape. The top of rotating seat 40 protrudes from the top surface of supporting footstock 30, and the top of rotating seat 40 is provided with butt seat 41, and sliding groove 42 has been seted up to the upper surface of butt seat 41, and sliding groove 42 is seted up along the length direction of butt seat 41, and spacing groove 43 has been seted up to the cell wall of sliding groove 42, and spacing groove 43 is seted up along the length direction of sliding groove 42 equally. The sliding block 44 is slidably mounted in the sliding groove 42, the convex block 45 is fixedly mounted on the side surface of the sliding block 44, the height of the convex block 45 is matched with that of the limiting groove 43, and the convex block 45 is positioned in the limiting groove 43 and slidably moves. Two sliding blocks 44 are slidably mounted in the sliding groove 42, and the two sliding blocks 44 are symmetrically arranged relative to the center of the sliding groove 42. The two-way screw rod 46 for controlling the two sliding blocks 44 to approach or leave is rotatably mounted in the abutting seat 41, the two-way screw rod 46 penetrates through the sliding groove 42, and the length of the two-way screw rod 46 presses the length direction of the sliding groove 42 to extend. One end of the bidirectional screw rod 46 penetrates through the side surface of the abutting seat 41, and the end part of the bidirectional screw rod 46 is provided with a rotating hand wheel 47. Two ends of the bidirectional screw rod 46 are respectively carved with reverse threads, and two ends of the bidirectional screw rod 46 are respectively in threaded connection with the two sliding blocks 44.
Referring to fig. 5, the top surface of the sliding block 44 is fixedly provided with a clasping sheet 48 for clasping the side surface of the drain pipe, the clasping sheet 48 is arranged in a circular arc shape, and the clasping sheets 48 on the two sliding blocks 44 are oppositely arranged.
The application has the implementation principle that: when the foundation pit is drained, a proper position is selected, and each base 10 is fixedly placed on the bottom surface in sequence. The length of each support rod 20 is adjusted so that the top surface of the abutment seat 41 can be parallel to the side surface of the drain pipe, and the contact area between the abutment seat 41 and the drain pipe is maximized. And the length of the supporting rod 20 can be adjusted to enable the abutting seat 41 and the ground to be inclined at a certain included angle, so that a certain gradient of guide is formed for the drainage pipe. After the angle between the supporting rod 20 and the supporting top seat 30 is determined, the limiting pin 29 is inserted into the limiting hole 28, the end of the limiting pin 29 is inserted into the gap between the two limiting rods 33, the limiting rods 33 are used for limiting the rotation of the rotating shaft 27, and the relative rotation between the supporting rod 20 and the supporting top seat 30 is further limited.
The angle of the rotating seat 40 and the supporting top seat 30 is adjusted to enable the two holding pieces 48 on the abutting seat 41 to be respectively located on two sides of the drain pipe, then the rotating hand wheel 47 is rotated to drive the two-way screw rod 46 to rotate, and further the two holding pieces 48 are driven to be close to or far away from each other at the same time, so that the drain pipes with different diameters can be adapted to achieve a stable supporting effect on the drain pipes.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a foundation ditch drain pipe support frame, includes base (10) and set up in bracing piece (20) on base (10), its characterized in that: the top of bracing piece (20) is provided with supports footstock (30), support footstock (30) butt in the side of drain pipe, bracing piece (20) have many, many bracing piece (20) respectively with support footstock (30) rotate and connect, bracing piece (20) are including connecting loop bar (21) and telescopic link (22), telescopic link (22) slide and wear to locate connect in loop bar (21), fixed orifices (23) have been seted up on the top of connecting loop bar (21), a plurality of regulation hole (24) have been seted up to the surface equidistance of telescopic link (22), wear to be equipped with in fixed orifices (23) and be used for fixing telescopic link (22) with the fixed pin (25) of connecting loop bar (21), fixed pin (25) peg graft in fixed orifices (23) and in regulation hole (24).
2. The foundation pit drain pipe support frame of claim 1, wherein: the base (10) is provided with a pin hole (11), a fixed pin rod (12) is arranged in the pin hole (11), and the fixed pin rod (12) is inserted into the ground.
3. The foundation pit drain pipe support frame of claim 1, wherein: the bottom of supporting footstock (30) is provided with connecting hole (32), the top of telescopic link (22) is provided with axis of rotation (27), axis of rotation (27) rotate wear to locate in connecting hole (32).
4. The foundation pit drain pipe support frame of claim 3, wherein: rotation axis (27) pass spacing hole (28) have been seted up to the one end of connecting hole (32), wear to be equipped with spacing round pin axle (29) in spacing hole (28), the outside of connecting hole (32) is provided with many gag lever posts (33), many be provided with the confession between gag lever post (33) the clearance that spacing round pin axle (29) passed, spacing round pin axle (29) and both sides gag lever post (33) butt.
5. The foundation pit drain pipe support frame of claim 1, wherein: the supporting top seat (30) is rotatably provided with a rotating seat (40), the top end of the rotating seat (40) is provided with a butting seat (41), and the butting seat (41) is butted on the side face of the drain pipe.
6. The foundation pit drain pipe support frame of claim 5, wherein: sliding installation is gone up in butt joint seat (41) and is used for embracing cohesion piece (48) of drain pipe side, the confession has been seted up on butt joint seat (41) embrace sliding groove (42) that piece (48) slided, the bottom of embracing and closing piece (48) is provided with sliding block (44), sliding block (44) slide set up in sliding groove (42).
7. The foundation pit drain pipe support frame of claim 6, wherein: the groove wall of the sliding groove (42) is provided with a limiting groove (43), the side wall of the sliding block (44) is provided with a protruding block (45) used for limiting the sliding block (44) to turn over, and the protruding block (45) is arranged in the limiting groove (43) in a sliding mode.
8. The foundation pit drain pipe support frame of claim 6, wherein: the butt joint seat (41) is provided with a bidirectional screw rod (46) in a rotating mode, and two ends of the bidirectional screw rod (46) penetrate through the two sliding blocks (44) respectively.
CN202222950706.7U 2022-11-05 2022-11-05 Foundation ditch drain pipe support frame Active CN218719318U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222950706.7U CN218719318U (en) 2022-11-05 2022-11-05 Foundation ditch drain pipe support frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222950706.7U CN218719318U (en) 2022-11-05 2022-11-05 Foundation ditch drain pipe support frame

Publications (1)

Publication Number Publication Date
CN218719318U true CN218719318U (en) 2023-03-24

Family

ID=85607975

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222950706.7U Active CN218719318U (en) 2022-11-05 2022-11-05 Foundation ditch drain pipe support frame

Country Status (1)

Country Link
CN (1) CN218719318U (en)

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