CN209975561U - Assembled underground pipe gallery connected node - Google Patents

Assembled underground pipe gallery connected node Download PDF

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Publication number
CN209975561U
CN209975561U CN201920200985.0U CN201920200985U CN209975561U CN 209975561 U CN209975561 U CN 209975561U CN 201920200985 U CN201920200985 U CN 201920200985U CN 209975561 U CN209975561 U CN 209975561U
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CN
China
Prior art keywords
plate
hexagonal
main line
plates
ladder
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Expired - Fee Related
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CN201920200985.0U
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Chinese (zh)
Inventor
张延年
徐向新
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Shenyang Jianzhu University
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Shenyang Jianzhu University
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Priority to CN201920200985.0U priority Critical patent/CN209975561U/en
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Publication of CN209975561U publication Critical patent/CN209975561U/en
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Abstract

The utility model relates to an assembled underground pipe gallery connected node belongs to the building technology field, by two hexagonal plates, two trilateral risers, two U-shaped plates, two both sides risers, two thread apron are constituteed. All the parts are connected through bolts and tongues and grooves. This node is effectual carries out the branch with the piping lane, can be better link up with the piping lane main part, the utility model discloses bear the weight of the dynamic height, construction speed is fast, and the scene need not wet-type construction, can effectively solve a great deal of problems such as the unable assurance of site pouring quality, greatly reduced construction cost.

Description

Assembled underground pipe gallery connected node
Technical Field
The utility model belongs to the technical field of the building, in particular to assembled underground pipe gallery connected node.
Background
Because the traditional directly buried pipeline occupies more underground space of a road, and the laying of the pipeline cannot be synchronized with the construction of the road, the road is frequently dug, the normal passing of the road is seriously influenced, and the problems of serious noise, dust emission and other environmental pollution are also brought, so that the traffic and living agencies of people are greatly inconvenient. Because the traditional directly buried pipeline occupies more underground space of a road, and the laying of the pipeline cannot be synchronized with the construction of the road, the road is frequently dug, the normal passing of the road is seriously influenced, and the problems of serious noise, dust emission and other environmental pollution are also brought, so that the traffic and living agencies of people are greatly inconvenient.
The underground pipe gallery is also called a common ditch, is a municipal utility facility which is built in the underground of a city and is used for laying municipal utility pipelines and implements unified planning, design, construction and maintenance. The tunnel is a public tunnel which is used for intensively laying municipal pipelines such as electric power, communication, broadcast television, water supply, drainage, heating power, gas and the like in the city. The utility model discloses a pipe gallery, including the underground pipe gallery, the pipeline is salvageed to the pipeline, the important infrastructure and the.
The cast-in-place construction has the defects that the construction quality is difficult to guarantee and the like, in order to solve the construction defects of the cast-in-place pipe gallery, the prefabricated assembly type construction is gradually developed, a main line and a branch line of the pipe gallery often appear in actual engineering, the existing assembly type construction method of the main line and branch line cross node is relatively few, and the connection is relatively not particularly reliable.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides an assembled underground pipe gallery connected node mainly is for developing an assembled, and the wholeness can be good, passes power clearly and definitely reliably, and simple structure, the convenient assembled underground pipe gallery connected node of construction can effectively solve cast in situ concrete quality and be difficult to guarantee and the difficult scheduling a great deal of problem of transportation of unit mount formula.
The utility model discloses the technical scheme who adopts as follows:
an assembled underground pipe gallery connecting node comprises a hexagonal plate, three-side vertical plates, a U-shaped plate, two-side vertical plates and main line cover plates which are prefabricated in a factory and assembled on site, wherein one ends of the two parallel main line cover plates with bolt holes are connected with a main line of a pipe gallery, and the other ends of the two parallel main line cover plates are connected with the bolt holes at the bottom of the hexagonal plate; the two side vertical plate steps above and below one of the two side vertical plates are connected with the main line cover plate step on the main line cover plate through the step tongue-and-groove, the two side vertical plate steps above and below the other vertical plate of the two side vertical plates are respectively connected with the downward inclined hexagonal steps of the two hexagonal plates through the step tongue-and-groove mode,
the hexagonal ladder on the transverse edge of the upper part of the hexagonal plate is connected with the three-edge vertical plate ladder in the middle of the three-edge vertical plate in a tongue-and-groove way,
three-edge vertical plate steps on two side edges of the three-edge vertical plate are connected with the U-shaped plate steps of the U-shaped plate in a step tongue-and-groove mode;
the bolt hole on one side of the U-shaped plate is connected with a branch line of the pipe gallery, and the bolt hole on the other side of the U-shaped plate is connected with the bolt hole on the oblique upper edge of the hexagonal plate in a bolt mode;
two inner angles of the upper side and two inner angles of the lower side of the hexagonal plate are both 135 degrees, and the left inner angle and the right inner angle are both 90 degrees;
the hexagonal plate is characterized in that hexagonal steps are respectively arranged on the edge of the upper side and the two edges of the hexagonal plate which are obliquely downward, the thickness of each hexagonal step is half of that of the hexagonal plate, three operation holes are respectively arranged on the edges of the obliquely upward side and the obliquely downward side of the hexagonal plate, each operation hole is a cuboid notch formed in the edge of the corresponding edge, a bolt hole is arranged in each operation hole, and the bolt hole penetrates through the edge plate body where the bolt hole is located outwards;
the three-side vertical plate is a plate integrally prefabricated by three vertical plates, the included angle of every two adjacent sides is 135 degrees, three-side vertical plate steps are respectively arranged at the top and the bottom of the three-side vertical plate, the notch of each step is opened at the inner side, the thickness of each three-side vertical plate step is half of that of the three-side vertical plate, the outermost sides of two wings of each three-side vertical plate are respectively provided with an operation hole which is matched with a bolt hole, and the bolt holes penetrate through the plate body on the sides outwards in the operation holes;
the left side and the right side of the inside of the U-shaped plate are respectively provided with an operation hole, and bolt holes are arranged in a matched mode and penetrate through the plate body on the side where the bolt holes are located outwards in the operation holes; the front side of the U-shaped plate is provided with a U-shaped plate ladder, the notch of the ladder is arranged at the inner side of the U-shaped plate, and the thickness of the U-shaped plate ladder is half of that of the U-shaped plate;
the two side vertical plates are integrally prefabricated by two plates which form an angle of 135 degrees with each other, the top ends and the bottom ends of the two side vertical plates are respectively provided with two side vertical plate steps, notches of the steps are opened on the outer sides, the thickness of the steps is half of that of the two side vertical plates, the inner sides of the left end and the right end of the two side vertical plates are respectively provided with three operation holes and matched bolt holes, and the bolt holes penetrate through the plate body on the side outwards in the operation holes;
the main line cover plate is a straight plate, main line cover plate ladders are arranged at the left end and the right end of the main line cover plate, notches of the ladders are arranged on the upper side, the thickness of the ladders is half of that of the main line cover plate, three operation holes are respectively arranged at the front end and the rear end of the main line cover plate, and the operation holes are provided with bolt holes which penetrate through the plate body on the side where the operation holes are located outwards inside the operation holes.
Further, six sides of the hexagonal plate are equal in length.
Furthermore, the specifications of the hexagonal ladder, the three-side vertical plate ladder, the U-shaped plate ladder, the two-side vertical plate ladder and the main line cover plate ladder are consistent.
The beneficial effects of the utility model
The utility model discloses an effect and advantage are that bear the weight of the dynamic height, construction convenience, construction speed is fast, and economic effect is good, and the transportation is convenient, can be better link up with the piping lane main part, greatly reduced construction cost.
Drawings
FIG. 1 is a perspective view of the joint connected with a pipe gallery main body;
FIG. 2 is a front view of a hexagonal plate;
fig. 3 is a schematic view of a three-sided riser structure;
FIG. 4 is a schematic view of a U-shaped plate structure;
FIG. 5 is a schematic view of a two-sided riser configuration;
FIG. 6 is a schematic view of a motherboard cover;
FIG. 7 is a schematic view of a hexagonal plate bolted to other components;
FIG. 8 is a top view of a hexagonal plate.
In the figure, 1 is a hexagonal plate, 2 is a three-sided vertical plate, 3 is a U-shaped plate, 4 is a two-sided vertical plate, 5 is a main line cover plate, 6 is an operation hole, 7 is a bolt hole, 1-1 is a hexagonal step, 2-1 is a three-sided vertical plate step, 3-1 is a U-shaped plate step, 4-1 is a two-sided vertical plate step, and 5-1 is a main line cover plate step.
Detailed Description
The invention will be further described with reference to the accompanying drawings and examples
Example (b): an assembled underground pipe gallery connecting node comprises a hexagonal plate 1, three-side vertical plates 2, a U-shaped plate 3, two-side vertical plates 4 and main line cover plates 5 which are prefabricated in a factory and assembled on site, wherein one ends of the two parallel main line cover plates 5 with bolt holes 7 are connected with a pipe gallery main line 8, and the other ends of the two parallel main line cover plates are connected with the bolt holes 7 at the bottom of the hexagonal plate 1; the vertical plate steps 4-1 at the upper and lower sides of one vertical plate of the vertical plates 4 at the two sides are connected with the main line cover plate steps 5-1 on the main line cover plate 5 through step tongue-and-groove joints, the vertical plate steps 4-1 at the upper and lower sides of the other vertical plate of the vertical plates 4 at the two sides are respectively connected with the hexagonal steps 1-1 of the hexagonal plates 1 which are inclined downwards through step tongue-and-groove joints,
a hexagonal step 1-1 on the transverse edge of the upper part of the hexagonal plate 1 is connected with a three-edge vertical plate step 2-1 in the middle of the three-edge vertical plate 2 in a tongue-and-groove mode,
three-edge vertical plate steps 2-1 on two side edges of the three-edge vertical plate 2 are connected with U-shaped plate steps 3-1 of the U-shaped plate 3 in a step rabbet mode;
the bolt hole 7 on one side of the U-shaped plate 3 is connected with the pipe gallery branch line 9, and the bolt hole 7 on the other side of the U-shaped plate 3 is connected with the bolt hole 7 on the upper oblique side of the hexagonal plate 1 in a bolt mode;
two inner angles of the upper side and two inner angles of the lower side of the hexagonal plate 1 are both 135 degrees, and the left inner angle and the right inner angle are both 90 degrees; six sides of the hexagonal plate 1 are equal in length.
The hexagonal plate comprises a hexagonal plate body, hexagonal steps 1-1 are arranged on the edge of the upper side and the two edges of the hexagonal plate body 1 in the inclined downward direction respectively, the thickness of each hexagonal step 1-1 is half of that of the hexagonal plate body 1, three operation holes 6 are arranged on the edges of the hexagonal plate body 1 in the inclined upward direction and the bottom side respectively, each operation hole 6 is a cuboid notch formed in the edge of the operation hole 6, a bolt hole 7 is arranged in each operation hole 6, and the bolt hole 7 penetrates through the edge plate body in the inclined upward direction;
the three-side vertical plate 2 is a plate integrally prefabricated by three vertical plates, the included angle of every two adjacent sides is 135 degrees, three-side vertical plate steps 2-1 are respectively arranged at the top and the bottom of the three-side vertical plate 2, the notch of each step is arranged at the inner side, the thickness of each three-side vertical plate step 2-1 is half of that of the three-side vertical plate 2, operation holes 6 are respectively arranged at the outermost sides of two wings of the three-side vertical plate 2 and are matched with bolt holes 7, and the bolt holes 7 penetrate through the plate body on the side where the bolt holes 7 are located outwards in the operation holes;
the left side and the right side of the inside of the U-shaped plate 3 are respectively provided with an operation hole 6, and bolt holes 7 are arranged in a matched mode, and the bolt holes 7 penetrate through the plate body on the side of the inside of the operation hole 6 to the outside; a U-shaped plate ladder 3-1 is arranged on the front side of the U-shaped plate 3, a notch of the ladder is arranged on the inner side of the U-shaped plate 3, and the thickness of the U-shaped plate ladder 3-1 is half of that of the U-shaped plate 3;
the two-side vertical plates 4 are integrally prefabricated by two plates which form an angle of 135 degrees with each other, two-side vertical plate steps 4-1 are respectively arranged at the top end and the bottom end, notches of the steps are arranged on the outer sides, the thickness of the steps is half of that of the two-side vertical plates 4, three operation holes 6 and matched bolt holes 7 are respectively arranged on the inner sides of the left end and the right end of the two-side vertical plates 4, and the bolt holes 7 penetrate through the plate body on the side to the outer side in the operation holes 6;
the mainline cover plate 5 is a straight plate, mainline cover plate steps 5-1 are arranged at the left end and the right end, gaps of the steps are arranged at the upper side, the thickness of the steps is half of that of the mainline cover plate 5, three operation holes 6 are respectively arranged at the front end and the rear end of the mainline cover plate 5 and are provided with bolt holes 7, and the bolt holes 7 penetrate through the plate body on the side of the operation holes 6 to the outside.
The specifications of the hexagonal ladder 1-1, the three-side vertical plate ladder 2-1, the U-shaped plate ladder 3-1, the two-side vertical plate ladder 4-1 and the main line cover plate ladder 5-1 are consistent.

Claims (3)

1. The utility model provides an assembled underground pipe gallery connected node, its characterized in that: the pipe gallery main line cover plate comprises a hexagonal plate (1), three-side vertical plates (2), a U-shaped plate (3), two-side vertical plates (4) and main line cover plates (5), wherein the six-side vertical plates are prefabricated in a factory and assembled on site, one ends of the two parallel main line cover plates (5) with bolt holes (7) are connected with a pipe gallery main line (8), and the other ends of the two parallel main line cover plates are connected with the bolt holes (7) at the bottom of the hexagonal plate (1); the vertical plate steps (4-1) at the upper and lower sides of one vertical plate of the two vertical plates (4) at the two sides are connected with the main line cover plate step (5-1) on the main line cover plate (5) through step rabbet, the vertical plate steps (4-1) at the upper and lower sides of the other vertical plate of the two vertical plates (4) at the two sides are respectively connected with the hexagonal steps (1-1) of the two hexagonal plates (1) which are inclined downwards through the step rabbet,
a hexagonal ladder (1-1) on the transverse edge of the upper part of the hexagonal plate (1) is connected with a three-edge vertical plate ladder (2-1) in the middle of the three-edge vertical plate (2) in a tongue-and-groove mode,
three-side vertical plate steps (2-1) on two side edges of the three-side vertical plate (2) are connected with the U-shaped plate steps (3-1) of the U-shaped plate (3) in a step tongue-and-groove mode;
the bolt hole (7) on one side of the U-shaped plate (3) is connected with the pipe gallery branch line (9), and the bolt hole (7) on the other side of the U-shaped plate (3) is connected with the bolt hole (7) on the oblique upper side of the hexagonal plate (1) in a bolt mode;
two inner angles of the upper side and two inner angles of the lower side of the hexagonal plate (1) are both 135 degrees, and the left inner angle and the right inner angle are both 90 degrees;
the hexagonal plate is characterized in that hexagonal steps (1-1) are respectively arranged on the edge of the upper side and the two edges of the hexagonal plate (1) in the downward direction, the thickness of each hexagonal step (1-1) is half of that of the hexagonal plate (1), three operation holes (6) are respectively arranged on the edges of the inclined upper side and the bottom side of the hexagonal plate (1), each operation hole (6) is a cuboid notch formed in the edge of the edge where the operation hole is located, a bolt hole (7) is arranged in each operation hole (6), and each bolt hole (7) penetrates through the edge plate body where the operation hole is located outwards;
the three-side vertical plate (2) is a plate integrally prefabricated by three vertical plates, the included angle of every two adjacent sides is 135 degrees, three-side vertical plate steps (2-1) are respectively arranged at the top and the bottom of the three-side vertical plate (2), the notch of each step is arranged at the inner side, the thickness of each three-side vertical plate step (2-1) is half of that of the three-side vertical plate (2), operation holes (6) are respectively arranged at the outermost sides of two wings of the three-side vertical plate (2), and bolt holes (7) are matched with the outermost sides of the two wings of the three-side vertical plate (2), and the bolt holes (7) penetrate through the plate body;
the left side and the right side of the inside of the U-shaped plate (3) are respectively provided with an operation hole (6), a bolt hole (7) is arranged in a matched mode, and the bolt hole (7) penetrates through the plate body on the side where the bolt hole (7) is located outwards in the operation hole (6); a U-shaped plate ladder (3-1) is arranged on the front side of the U-shaped plate (3), the notch of the ladder is arranged on the inner side of the U-shaped plate (3), and the thickness of the U-shaped plate ladder (3-1) is half of that of the U-shaped plate (3);
the two side vertical plates (4) are integrally prefabricated by two plates which form an angle of 135 degrees, two side vertical plate steps (4-1) are respectively arranged at the top end and the bottom end, notches of the steps are arranged on the outer sides, the thickness of the steps is half of that of the two side vertical plates (4), three operation holes (6) and matched bolt holes (7) are respectively arranged on the inner sides of the left end and the right end of the two side vertical plates (4), and the bolt holes (7) penetrate through the plate body on the side to the outer side in the operation holes (6);
the main line cover plate (5) is a straight plate, main line cover plate ladders (5-1) are arranged at the left end and the right end of the main line cover plate (5), notches of the ladders are arranged on the upper side, the thickness of the ladders is half of that of the main line cover plate (5), three operation holes (6) are respectively arranged at the front end and the rear end of the main line cover plate (5), and the operation holes are matched with bolt holes (7), and the bolt holes (7) penetrate through the plate body on the side of the main line cover plate to the.
2. Assembled underground pipe gallery connected node of claim 1, characterized in that: six sides of the hexagonal plate (1) are equal in length.
3. Assembled underground pipe gallery connected node of claim 1, characterized in that: the specifications of the hexagonal ladder (1-1), the three-side vertical plate ladder (2-1), the U-shaped plate ladder (3-1), the two-side vertical plate ladder (4-1) and the main line cover plate ladder (5-1) are consistent.
CN201920200985.0U 2019-02-15 2019-02-15 Assembled underground pipe gallery connected node Expired - Fee Related CN209975561U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920200985.0U CN209975561U (en) 2019-02-15 2019-02-15 Assembled underground pipe gallery connected node

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920200985.0U CN209975561U (en) 2019-02-15 2019-02-15 Assembled underground pipe gallery connected node

Publications (1)

Publication Number Publication Date
CN209975561U true CN209975561U (en) 2020-01-21

Family

ID=69252984

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920200985.0U Expired - Fee Related CN209975561U (en) 2019-02-15 2019-02-15 Assembled underground pipe gallery connected node

Country Status (1)

Country Link
CN (1) CN209975561U (en)

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20200121

Termination date: 20220215