CN210430795U - High-stability industrial piping elbow - Google Patents

High-stability industrial piping elbow Download PDF

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Publication number
CN210430795U
CN210430795U CN201921461995.6U CN201921461995U CN210430795U CN 210430795 U CN210430795 U CN 210430795U CN 201921461995 U CN201921461995 U CN 201921461995U CN 210430795 U CN210430795 U CN 210430795U
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China
Prior art keywords
semicircular
pipe
shaped
hose
elbow
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CN201921461995.6U
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Chinese (zh)
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丁玉山
钱刚
殷世清
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Anhui Tiankang Special Steel Pipe Co Ltd
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Anhui Tiankang Special Steel Pipe Co Ltd
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Abstract

The utility model relates to a hardware fitting technical field just discloses an industry piping elbow that stability is high, including the elbow body, the elbow body is including first outer arc semicircle pipe, first inner arc semicircle pipe, second outer arc semicircle pipe and second inner arc semicircle pipe, the welding has outer arc semicircle hose between first outer arc semicircle socle end and the second outer arc semicircle pipe top, the welding has inner arc semicircle hose between first inner arc semicircle socle end and the second inner arc semicircle pipe top. This industry piping elbow adopts the elbow to divide into and becomes a 90 degrees elbow overall structure by the segmentation combination of six partial structures of first outer arc semicircle pipe, first inner arc semicircle pipe, the outer arc semicircle pipe of second, the inner arc semicircle pipe of second, outer arc semicircle hose and inner arc semicircle hose, and through the performance of buckling of inner arc semicircle hose and outer arc semicircle hose, the whole regulation of buckling that can carry out of realization piping elbow.

Description

High-stability industrial piping elbow
Technical Field
The utility model relates to a hardware fitting technical field specifically is a high industry piping elbow of stability.
Background
The pipe is used for laying auxiliary circuits and protecting electric wires during building construction or home appliance decoration. The piping can be divided into a light piping and a dark piping. The exposed pipe is laid on the surface of a building with the pipe exposed. The exposed pipes are required to be arranged regularly and have uniform fixed point intervals, and the pipelines are generally laid horizontally or vertically along the building.
In the industrial piping process, the electric wires need to be connected by using a piping elbow, but the conventional piping elbows are mostly fixed at 90-degree and 120-degree bending angles, the angles of the piping elbows are fixed, and the electric wires cannot be properly corrected and adjusted according to the bending angle of the on-site line laying, so that the construction difficulty is brought to the electric wire laying; and current piping elbow stability is relatively poor, connects between two sets of spool, receives to buckle and easily appears the elbow and buckle the deformation and the condition of rupture, if long-term the use, and the electric wire can not obtain good protection, shortens the life of electric wire.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
The utility model provides a not enough to prior art, the utility model provides an industry piping elbow that stability is high possesses and can suitably adjust the angle of buckling, improves piping elbow stability, has solved piping elbow angle and can not all revise the regulation to and the piping elbow receives the extrusion of spool tip and appears buckling deformation and cracked problem.
(II) technical scheme
For realizing the above-mentioned shock attenuation purpose of preventing falling, the utility model provides a following technical scheme: an industrial piping elbow with high stability comprises an elbow pipe body, wherein the elbow pipe body comprises a first outer arc-shaped semi-circular pipe, a first inner arc-shaped semi-circular pipe, a second outer arc-shaped semi-circular pipe and a second inner arc-shaped semi-circular pipe, an outer arc semicircular hose is welded between the bottom end of the first outer arc semicircular pipe and the top end of the second outer arc semicircular pipe, an inner arc-shaped semicircular hose is welded between the bottom end of the first inner arc-shaped semicircular pipe and the top of the second inner arc-shaped semicircular pipe, the top of the first outer arc-shaped semicircular pipe and the top of the first inner arc-shaped semicircular pipe are respectively connected with a first semicircular flange plate and a second semicircular flange plate which are integrally formed, the second outer arc-shaped semi-circular pipe bottom end and the second inner arc-shaped semi-circular pipe bottom end are respectively connected with a third semi-circular flange plate and a fourth semi-circular flange plate which are integrally formed, and a fixed supporting structure is welded on the outer arc-shaped surface of the second outer arc-shaped semi-circular pipe.
Preferably, fixed bearing structure is including mounting panel and connecting plate four groups, four groups connecting plate one end all is connected in integrated into one piece's mounting panel upper surface, four groups the connecting plate other end all welds in the outside arc surface of second outer arc semicircle pipe.
Preferably, the four groups of connecting plates are centrally and symmetrically distributed in the middle above the mounting plate, and four groups of mounting holes are formed in the mounting plate between the adjacent connecting plates.
Preferably, the inner surface of the outer arc-shaped semicircular hose is fixedly connected with a first rubber semicircular hose, and the inner surface of the inner arc-shaped semicircular hose is fixedly connected with a second rubber semicircular hose.
Preferably, slope chamfers are arranged at the upper end and the lower end of the first rubber semicircular hose and the upper end and the lower end of the second rubber semicircular hose, and the inclination angle of the slope chamfers is 30 degrees.
Preferably, three groups of through holes are distributed on the first semicircular flange plate, the second semicircular flange plate, the third semicircular flange plate and the fourth semicircular flange plate at equal intervals.
Preferably, the outer surfaces of the first outer arc-shaped semicircular pipe, the first inner arc-shaped semicircular pipe, the second outer arc-shaped semicircular pipe and the second inner arc-shaped semicircular pipe, and the outer surfaces of the first semicircular flange plate, the second semicircular flange plate, the third semicircular flange plate and the fourth semicircular flange plate are all covered with a zinc coating.
(III) advantageous effects
Compared with the prior art, the utility model provides a high industry piping elbow of stability possesses following beneficial effect:
1. this industry piping elbow adopts the elbow to divide into by first outer arc semicircle pipe, first inner arc semicircle pipe, the outer arc semicircle pipe of second, the inner arc semicircle pipe of second, outer arc semicircle hose and the segmentation combination of six partial structures of inner arc semicircle hose become the elbow overall structure of a 90 degrees, through the performance of buckling of inner arc semicircle hose and outer arc semicircle hose, realize that the piping elbow is whole to be buckled and adjust, be applicable to the nimble regulation of multiple angle, lay the installation between the spool of being convenient for and the spool.
2. The first semicircular flange plate and the second semicircular flange plate form a group of complete flange plates which can be butted and installed with one group of industrial line pipes with flanges, the third semicircular flange plate and the fourth semicircular flange plate form another group of complete flange plates which are butted and installed with the other group of industrial line pipes with flanges, so that the elbow is firmly connected with the line pipes, and the stability of the elbow is improved; meanwhile, the mounting plate in the fixed support structure can fix the elbow on a wall or the ground through the bolt, so that the elbow can have a good supporting and fixing effect, the pressure applied to the elbow by the end part of the line pipe is reduced, the stability of the piping elbow is improved, and the service life of the piping elbow is prolonged.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the structure of the present invention;
fig. 3 is a schematic view of a first semicircular rubber hose of the present invention.
In the figure: 1. an elbow pipe body; 2. a first outer arcuate semi-circular tube; 3. a first inner arc-shaped semicircular pipe; 4. a second outer arc-shaped semicircular pipe; 5. a second inner arc-shaped semicircular pipe; 6. a first semicircular flange plate; 7. a second semi-circular flange; 8. a third semi-circular flange; 9. a fourth semi-circular flange; 10. an outer arc semicircular hose; 11. an inner arc semicircular hose; 12. fixing the support structure; 121. mounting a plate; 122. a connecting plate; 123. mounting holes; 13. a first rubber semicircular hose; 14. a second rubber semicircular hose; and (5) chamfering the slope edge.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, an industrial piping elbow with high stability comprises an elbow pipe body 1, the elbow pipe body 1 comprises a first outer arc-shaped semi-circular pipe 2 and a first inner arc-shaped semi-circular pipe 3, the device comprises a second outer arc-shaped semi-circular pipe 4 and a second inner arc-shaped semi-circular pipe 5, wherein an outer arc-shaped semi-circular hose 10 is welded between the bottom end of a first outer arc-shaped semi-circular pipe 2 and the top end of the second outer arc-shaped semi-circular pipe 4, an inner arc-shaped semi-circular hose 11 is welded between the bottom end of a first inner arc-shaped semi-circular pipe 3 and the top end of a second inner arc-shaped semi-circular pipe 5, the top end of the first outer arc-shaped semi-circular pipe 2 and the top end of the first inner arc-shaped semi-circular pipe 3 are respectively connected with a first semi-circular flange plate 6 and a second semi-circular flange plate 7 which are integrally formed, the bottom end of the second outer arc-shaped semi-circular pipe 4 and the bottom end of the second inner arc-shaped semi-circular pipe 5 are respectively; the first outer arc-shaped semicircular pipe 2, the first inner arc-shaped semicircular pipe 3, the second outer arc-shaped semicircular pipe 4, the second inner arc-shaped semicircular pipe 5, the outer arc-shaped semicircular hose 10 and the inner arc-shaped semicircular hose 11 are combined into a 90-degree elbow overall structure in a segmented mode, the outer arc-shaped semicircular hose 10 and the inner arc-shaped semicircular hose 11 have good bending performance so as to improve the bending performance of the piping elbow, the piping elbow can be adjusted to a larger or smaller bending angle from the original 90-degree bending angle, the practicability of the piping elbow can be increased through the flexibly-adjustable piping elbow, and the construction difficulty of constructors in piping is reduced; a group of complete flange plates consisting of the first semicircular flange plate 6 and the second semicircular flange plate 7 can be in butt joint installation with one group of industrial line pipes with flanges, the other group of complete flange plates consisting of the third semicircular flange plate 8 and the fourth semicircular flange plate 9 can be in butt joint installation with the other group of industrial line pipes with flanges, so that the elbow is firmly connected with the line pipes, and the stability of the elbow is improved.
Further, the fixed support structure 12 includes four sets of mounting plates 121 and connecting plates 122, one end of each of the four sets of connecting plates 122 is connected to the upper surface of the integrally formed mounting plate 121, and the other end of each of the four sets of connecting plates 122 is welded to the outer arc surface of the second outer arc-shaped half-round pipe 4; the mounting plate 121 in the fixed support structure 12 can fix the elbow on the wall or the ground through bolts, so that the elbow can have good supporting and fixing effects, and the pressure applied to the elbow by the end part of the line pipe is reduced.
Furthermore, four groups of connecting plates 122 are centrally and symmetrically distributed in the middle above the mounting plate 121, and four groups of mounting holes 123 are formed in the mounting plate 121 between adjacent connecting plates 122; the mounting holes 123 are used for bolt fixing and mounting, and the mounting plate 121 and the elbow are fixedly mounted on the ground, the roof or the wall.
Further, the inner surface of the outer arc-shaped semicircular hose 10 is fixedly connected with a first rubber semicircular hose 13, and the inner surface of the inner arc-shaped semicircular hose 11 is fixedly connected with a second rubber semicircular hose 14; when threading, first rubber semicircular hose 13 and second rubber semicircular hose 14 can protect outer arc semicircular hose 10 and interior arc semicircular hose 11 inner wall.
Further, the upper end and the lower end of the first rubber semicircular hose 13 and the upper end and the lower end of the second rubber semicircular hose 14 are both provided with slope chamfers 15, and the inclination angle of the slope chamfers 15 is 30 degrees; the slope edge chamfer 15 of the first rubber semicircular hose 13 and the second rubber semicircular hose 14 is convenient for the electric wire to smoothly pass through the inside of the elbow, and has the function of threading and leading.
Furthermore, three groups of through holes are distributed on the first semicircular flange plate 6, the second semicircular flange plate 7, the third semicircular flange plate 8 and the fourth semicircular flange plate 9 at equal intervals; the through hole is used for butt joint installation of the flange plate and fixing the pipe elbow and the line pipe.
Furthermore, the outer surfaces of the first outer arc-shaped semicircular pipe 2, the first inner arc-shaped semicircular pipe 3, the second outer arc-shaped semicircular pipe 4 and the second inner arc-shaped semicircular pipe 5, and the outer surfaces of the first semicircular flange plate 6, the second semicircular flange plate 7, the third semicircular flange plate 8 and the fourth semicircular flange plate 9 are all covered with zinc plating layers, wherein the outer arc-shaped semicircular hose 10 and the inner arc-shaped semicircular hose 11 are both galvanized hoses; the zinc coating has good corrosion resistance, and even if the elbow is used in a humid environment, the zinc coating also has good corrosion resistance, thereby well protecting the internal electric wire.
The working principle is that six structures, namely a first outer arc-shaped semicircular pipe 2, a first inner arc-shaped semicircular pipe 3, a second outer arc-shaped semicircular pipe 4, a second inner arc-shaped semicircular pipe 5, an outer arc-shaped semicircular hose 10 and an inner arc-shaped semicircular hose 11, are combined in a segmented mode to form a 90-degree elbow overall structure, the outer arc-shaped semicircular hose 10 and the inner arc-shaped semicircular hose 11 have good bending performance to improve the bending performance of the piping elbow, so that the piping elbow can be adjusted to a larger or smaller bending angle from the original 90-degree bending angle, the practicability of the elbow can be improved through the flexibly-adjustable piping elbow, and the construction difficulty of constructors in piping is reduced; the first semicircular flange 6 and the second semicircular flange 7 form a group of complete flanges which can be butted and installed with one group of industrial line pipes with flanges, the third semicircular flange 8 and the fourth semicircular flange 9 form another group of complete flanges which can be butted and installed with the other group of industrial line pipes with flanges, so that the elbow is firmly connected with the line pipes, and the stability of the elbow is improved; the mounting plate 121 in the fixed support structure 12 can fix the elbow on the wall or the ground through bolts, so that the elbow can have good supporting and fixing effects, and the pressure applied to the elbow by the end part of the line pipe is reduced.
In summary, the industrial piping elbow adopts the elbow that six structures, namely a first outer arc semi-circular pipe 2, a first inner arc semi-circular pipe 3, a second outer arc semi-circular pipe 4, a second inner arc semi-circular pipe 5, an outer arc semi-circular hose 10 and an inner arc semi-circular hose 11, are combined in sections to form a 90-degree elbow overall structure, and the bending performance of the inner arc semi-circular hose and the outer arc semi-circular hose is utilized to realize the bending adjustment of the whole piping elbow, so that the industrial piping elbow is suitable for the flexible adjustment of various angles, and is convenient for laying and installing between a line pipe and a line pipe;
the first semicircular flange 6 and the second semicircular flange 7 form a group of complete flanges which can be butted and installed with one group of industrial line pipes with flanges, the third semicircular flange 8 and the fourth semicircular flange 9 form another group of complete flanges which can be butted and installed with the other group of industrial line pipes with flanges, so that the elbow is firmly connected with the line pipes, and the stability of the elbow is improved; meanwhile, the mounting plate 121 in the fixing and supporting structure 12 can fix the elbow on the wall or the ground through bolts, so that the elbow can have a good supporting and fixing effect, the pressure applied to the elbow by the end part of the line pipe is reduced, the stability of the piping elbow is improved, and the service life of the piping elbow is prolonged.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a high industry piping elbow of stability, includes elbow body (1), its characterized in that: the elbow pipe body (1) comprises a first outer arc-shaped semicircular pipe (2), a first inner arc-shaped semicircular pipe (3), a second outer arc-shaped semicircular pipe (4) and a second inner arc-shaped semicircular pipe (5), an outer arc-shaped semicircular hose (10) is welded between the bottom end of the first outer arc-shaped semicircular pipe (2) and the top end of the second outer arc-shaped semicircular pipe (4), an inner arc-shaped semicircular hose (11) is welded between the bottom end of the first inner arc-shaped semicircular pipe (3) and the top end of the second inner arc-shaped semicircular pipe (5), the top end of the first outer arc-shaped semicircular pipe (2) and the top end of the first inner arc-shaped semicircular pipe (3) are respectively connected with a first semicircular flange plate (6) and a second semicircular flange plate (7) which are integrally formed, and the bottom end of the second outer arc-shaped semicircular pipe (4) and the bottom end of the second inner arc-shaped semicircular pipe (5) are respectively connected with a third semicircular flange plate (8) and a fourth semicircular flange plate, and a fixed supporting structure (12) is welded on the outer arc surface of the second outer arc-shaped semi-circular pipe (4).
2. The industrial piping elbow with high stability according to claim 1, wherein: fixed bearing structure (12) are including mounting panel (121) and connecting plate (122) four groups, four groups connecting plate (122) one end all is connected in integrated into one piece's mounting panel (121) upper surface, four groups connecting plate (122) other end all welds in second outer arc semicircle pipe (4) outside arc surface.
3. The industrial piping elbow with high stability according to claim 2, wherein: the four groups of connecting plates (122) are arranged above the mounting plate (121) in a central symmetry manner, and four groups of mounting holes (123) are formed in the mounting plate (121) between the adjacent connecting plates (122).
4. The industrial piping elbow with high stability according to claim 1, wherein: outer arc semicircle hose (10) internal surface fixed connection has first rubber semicircle hose (13), interior arc semicircle hose (11) internal surface fixed connection has second rubber semicircle hose (14).
5. The industrial piping elbow with high stability according to claim 4, wherein: the upper end and the lower extreme of first rubber semicircle hose (13) to and the upper end and the lower extreme of second rubber semicircle hose (14) all opened sloping chamfer (15), and the inclination of sloping chamfer (15) is 30 degrees.
6. The industrial piping elbow with high stability according to claim 1, wherein: three groups of through holes are distributed on the first semicircular flange plate (6), the second semicircular flange plate (7), the third semicircular flange plate (8) and the fourth semicircular flange plate (9) at equal intervals.
7. The industrial piping elbow with high stability according to claim 1, wherein: the outer surfaces of the first outer arc-shaped semicircular pipe (2), the first inner arc-shaped semicircular pipe (3), the second outer arc-shaped semicircular pipe (4) and the second inner arc-shaped semicircular pipe (5) and the outer surfaces of the first semicircular flange plate (6), the second semicircular flange plate (7), the third semicircular flange plate (8) and the fourth semicircular flange plate (9) are all covered with a zinc coating.
CN201921461995.6U 2019-09-04 2019-09-04 High-stability industrial piping elbow Active CN210430795U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921461995.6U CN210430795U (en) 2019-09-04 2019-09-04 High-stability industrial piping elbow

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921461995.6U CN210430795U (en) 2019-09-04 2019-09-04 High-stability industrial piping elbow

Publications (1)

Publication Number Publication Date
CN210430795U true CN210430795U (en) 2020-04-28

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Application Number Title Priority Date Filing Date
CN201921461995.6U Active CN210430795U (en) 2019-09-04 2019-09-04 High-stability industrial piping elbow

Country Status (1)

Country Link
CN (1) CN210430795U (en)

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