CN213136732U - Pipeline placing support for civil engineering - Google Patents
Pipeline placing support for civil engineering Download PDFInfo
- Publication number
- CN213136732U CN213136732U CN202022112162.8U CN202022112162U CN213136732U CN 213136732 U CN213136732 U CN 213136732U CN 202022112162 U CN202022112162 U CN 202022112162U CN 213136732 U CN213136732 U CN 213136732U
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- supporting
- pipeline
- shaft sleeve
- rectangular strip
- civil engineering
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Abstract
The utility model belongs to the field of devices for civil engineering, and relates to a pipeline placing support for civil engineering, which comprises a supporting base, wherein a supporting upright post is arranged above the supporting base, two sides of the supporting upright post are respectively provided with a supporting mechanism, and the supporting mechanisms are fixedly connected with the supporting upright posts through screws; the supporting mechanism comprises a supporting block, one end face of the supporting block is provided with a U-shaped groove, the U-shaped groove is clamped at the periphery of the supporting upright post, and two sides of the other end face of the supporting block are respectively provided with a supporting frame unit; the bottom surface of the supporting base is provided with universal wheels. The utility model discloses can normally place the pipeline during the use, can dismantle to less part under the non-use state, occupation space is little, portable.
Description
Technical Field
The utility model relates to a support is put to pipeline for civil engineering belongs to the device field for civil engineering.
Background
The pipeline placing support is a device commonly used in the civil engineering industry, the pipeline placing support for the existing civil engineering is used for placing the pipeline when being used, and is shifted as required, but the pipeline placing support is large in occupied space when not being used, cannot be folded, disassembled and stored, and cannot be conveniently carried.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is: overcome prior art's not enough, provide a support is put to pipeline for civil engineering, this support is put to pipeline for civil engineering can normally place the pipeline when using, can dismantle for less part under the user state, occupation space is little, portable.
The pipeline placing bracket for civil engineering comprises a supporting base, a supporting upright post is arranged above the supporting base, two supporting mechanisms are respectively arranged at two sides of the supporting upright post, and the supporting mechanisms are fixedly connected with the supporting upright posts through screws; the supporting mechanism comprises a supporting block, one end face of the supporting block is provided with a U-shaped groove, the U-shaped groove is clamped at the periphery of the supporting upright post, and two sides of the other end face of the supporting block are respectively provided with a supporting frame unit; the bottom surface of the supporting base is provided with universal wheels.
During the use, two supporting mechanisms are installed respectively in the support post both sides, can place the pipeline on the support frame unit, and in finishing using or removing the transportation, can dismantle two supporting shoes from the support post to make the occupation space of outfit device diminish, can also place some smallclothes article on the support base, provide convenience for carrying by the transportation.
Preferably, the supporting frame unit comprises two supporting groups, the two supporting groups are respectively arranged at two sides of one supporting block, each supporting group comprises a supporting connecting rod fixedly connected with the corresponding supporting block, the supporting connecting rod is connected with the corresponding pipeline supporting rod through a damping rotating shaft, a limiting block is arranged at one side of the damping rotating shaft, one end of the limiting block is fixedly connected with the corresponding supporting block, and the other end of the limiting block is arranged above the non-cantilever end of the corresponding pipeline supporting rod; the end part of the cantilever end of the pipeline supporting rod is provided with a baffle. The central line of the supporting connecting rod is parallel to the central line of the pipeline, the two ends of the pipeline are respectively placed above the pipeline supporting rods of the supporting block two-side supporting group, and the baffle can prevent the pipeline from dropping. In a working state, the pipeline supporting rod is in a horizontal state, and a limiting block on one side of the damping rotating shaft has a limiting effect on a non-cantilever end of the pipeline supporting rod so as to keep the pipeline supporting rod horizontal; when carrying or being transported under the state, upwards rotate 90 with the pipeline bracing piece, the pipeline bracing piece is the vertical state with ground, and bracing frame unit occupation space further dwindles this moment.
Preferably, a first shaft sleeve and a second shaft sleeve are fixedly arranged on two sides of the end part of the cantilever end of the pipeline supporting rod respectively, a third shaft sleeve is arranged at one end of a baffle plate connected with the pipeline supporting rod, the third shaft sleeve is clamped between the first shaft sleeve and the second shaft sleeve, the first shaft sleeve, the second shaft sleeve and the third shaft sleeve are coaxial, a third rectangular strip groove is formed in the inner wall of the third shaft sleeve close to the second shaft sleeve, the concave-convex direction of the third rectangular strip groove is consistent with the arrangement direction of the baffle plate, the first rectangular strip groove and the second rectangular strip groove are formed in the top end of the inner wall of the second shaft sleeve and one side close to the pipeline supporting rod respectively, a main shaft penetrates through the middles of the first shaft sleeve, the second shaft sleeve and the third; the main shaft close to one end of the positioning nut is provided with a rectangular strip protrusion, and the width and the height of the rectangular strip protrusion are matched with the first rectangular strip groove, the second rectangular strip groove and the third rectangular strip groove. When the pipeline is placed, the baffle is in a vertical state with the bottom surface vertical, and the rectangular strip bulge of the main shaft is simultaneously inserted into the rectangular strip groove I at the top end of the shaft sleeve II and the rectangular strip groove III of the shaft sleeve III to limit the rotation of the shaft sleeve III, so that the baffle is ensured to be in a vertical state; after the use, the screwing nut is screwed down, then a part of the main shaft is drawn out, the rectangular strip protrusion is separated from the rectangular strip groove I and the rectangular strip groove III, but a part of the shaft sleeve III is still sleeved on the periphery of the main shaft, then the baffle plate is rotated to be in a horizontal state, the rectangular strip groove III is aligned to the rectangular strip groove II, the main shaft is rotated by 90 degrees, the rectangular strip protrusion is simultaneously inserted into the rectangular strip groove II and the rectangular strip groove III, and then the screwing nut is installed and screwed. When not in use, the baffle can be folded, thereby further reducing the occupied space of the whole device.
Preferably, the support frame unit comprises more than 2 layers of pipeline support rods, the length of the support connecting rod connected with the pipeline support rod of the next layer is greater than the sum of the width of the pipeline support rod of the previous layer and the length of the support connecting rod, and a limit block is arranged at the corresponding position above each layer of pipeline support rod. Each layer of pipeline supporting rod can be used for placing a pipeline, the length of a supporting connecting rod connected with the pipeline supporting rod of the next layer is larger than the sum of the width of the pipeline supporting rod of the previous layer and the length of the supporting connecting rod, each layer of pipeline supporting rod can be folded to the maximum degree by rotating upwards by 90 degrees, each layer is not interfered with each other, and the space is saved to the maximum degree; and the three layers of staggered arrangement are more beneficial to field operation.
Preferably, the upper surface of the pipeline supporting rod is provided with a through hole, so that sandy soil or rainwater and the like can be conveniently drained away.
Preferably, the upper surface of the pipeline supporting rod below the limiting block is provided with a clamping groove, the shape of the clamping groove is matched with that of the limiting block, and the upper end of the limiting block is higher than the upper surface of the pipeline supporting rod. The lower part of the limiting block is clamped in the clamping groove, the upper end of the limiting block is higher than the upper surface of the pipeline supporting rod, the pipeline supporting rod can rotate by 90 degrees at most, and the limiting block can better limit the pipeline supporting rod.
Preferably, the supporting tripod is arranged below the pipeline supporting rod, the extending direction of the supporting tripod is parallel to the supporting connecting rod, and the supporting strength of the pipeline supporting rod is increased.
Compared with the prior art, the utility model beneficial effect who has is:
the utility model has the advantages of reasonable design, can normally place the pipeline during use, can dismantle to less part under the non-use state to baffle and pipeline bracing piece all can fold, and occupation space is little, portable and transported.
Drawings
FIG. 1 is a front view of a pipeline laying support for civil engineering;
FIG. 2 is a plan view of a pipeline laying support for civil engineering;
c in FIG. 3, FIG. 2 is a partial enlarged view;
FIG. 4 is a left side view of the pipeline laying support for civil engineering;
FIG. 5, A-A of FIG. 3 are partial cross-sectional views (with the spindle removed);
FIG. 6 is a schematic view of the spindle structure;
fig. 7 and B-B of fig. 3 are partially sectional views.
In the figure: 1. a support base; 2. supporting the upright post; 3. a supporting tripod; 4. a baffle plate; 5. a pipe support bar; 6. a damping rotating shaft; 7. a limiting block; 8. a support block; 9. a universal wheel; 10. a support group; 11. a through hole; 12. a screw; 13. a support link; 14. a first shaft sleeve; 15. a third shaft sleeve; 16. a third rectangular strip groove; 17. a first rectangular strip groove; 18. a second rectangular strip groove; 19. a second shaft sleeve; 20. positioning a nut; 21. the rectangular strips are convex; 22. a main shaft; 23. screwing down the nut; 24. a clamping groove.
Detailed Description
The invention will be further described with reference to the accompanying drawings:
as shown in fig. 1-7, the pipe placing bracket for civil engineering of the present invention comprises a supporting base 1, a supporting column 2 is arranged above the supporting base 1, two sides of the supporting column 2 are respectively provided with a supporting mechanism, and the supporting mechanisms are fixedly connected with the supporting column 2 through screws 12; the supporting mechanism comprises a supporting block 8, one end face of the supporting block 8 is provided with a U-shaped groove, the U-shaped groove is clamped at the periphery of the supporting upright post 2, and two sides of the other end face of the supporting block 8 are respectively provided with a supporting frame unit; the bottom surface of the supporting base 1 is provided with universal wheels 9.
In this embodiment:
the supporting frame unit comprises two supporting groups 10, the two supporting groups 10 are respectively arranged on two sides of one supporting block 8, each supporting group 10 comprises a supporting connecting rod 13 fixedly connected with the corresponding supporting block 8, each supporting connecting rod 13 is connected with the corresponding pipeline supporting rod 5 through a damping rotating shaft 6, a limiting block 7 is arranged on one side of each damping rotating shaft 6, one end of each limiting block 7 is fixedly connected with the corresponding supporting block 8, and the other end of each limiting block 7 is arranged above the non-cantilever end of the corresponding pipeline supporting rod 5; the end of the cantilever end of the pipeline supporting rod 5 is provided with a baffle 4. The central line of the supporting connecting rod 13 is parallel to the central line of the pipeline, the two ends of the pipeline are respectively placed above the pipeline supporting rods 5 of the supporting groups 10 on the two sides of the supporting block 8, and the baffle 4 can prevent the pipeline from dropping. In a working state, the pipeline supporting rod 5 is in a horizontal state, and the limiting block 7 on one side of the damping rotating shaft 6 has a limiting effect on the non-cantilever end of the pipeline supporting rod 5, so that the pipeline supporting rod 5 is kept horizontal; when carrying or being transported, upwards rotate 90 with pipeline bracing piece 5, pipeline bracing piece 5 is the vertical state with ground, and bracing frame unit occupation space further dwindles this moment.
A first shaft sleeve 14 and a second shaft sleeve 19 are fixedly arranged on two sides of the end part of the cantilever end of the pipeline support rod 5 respectively, a third shaft sleeve 15 is arranged at one end of a baffle plate 4 connected with the pipeline support rod 5, the third shaft sleeve 15 is clamped between the first shaft sleeve 14 and the second shaft sleeve 19, the first shaft sleeve 14, the second shaft sleeve 19 and the third shaft sleeve 15 are coaxial, a third rectangular groove 16 is arranged on the inner wall of the third shaft sleeve 15 close to the second shaft sleeve 19, the concave-convex direction of the third rectangular groove 16 is consistent with the arrangement direction of the baffle plate 4, a first rectangular groove 17 and a second rectangular groove 18 are respectively arranged at the top end of the inner wall of the second shaft sleeve 19 and one side close to the pipeline support rod 5, a main shaft 22 penetrates through the middles of the first shaft sleeve 14, the second shaft sleeve 19 and the third shaft sleeve 15, a positioning; a rectangular strip protrusion 21 is arranged on the main shaft 22 close to one end of the positioning nut 20, and the width and the height of the rectangular strip protrusion 21 are matched with the rectangular strip groove I17, the rectangular strip groove II 18 and the rectangular strip groove III 16. When the pipeline is placed, the baffle 4 is in a vertical state with the vertical bottom surface, the rectangular strip protrusion 21 of the main shaft 22 is simultaneously inserted into the rectangular strip groove I17 at the top end of the second shaft sleeve 19 and the rectangular strip groove III 16 of the third shaft sleeve 15, so that the rotation of the third shaft sleeve 15 is limited, and the baffle 4 is ensured to be in a vertical state; after the use, the tightening nut 23 is screwed off, then a part of the main shaft 22 is drawn out, the rectangular strip protrusion 21 is separated from the rectangular strip groove I17 and the rectangular strip groove III 16, but a part of the shaft sleeve III 15 is still sleeved on the periphery of the main shaft 22, then the baffle plate 4 is rotated to be in a horizontal state, at the moment, the rectangular strip groove III 16 is aligned with the rectangular strip groove II 18, the main shaft 22 is rotated by 90 degrees, the rectangular strip protrusion 21 is simultaneously inserted into the rectangular strip groove II 18 and the rectangular strip groove III 16, and then the tightening nut 23 is installed and screwed. When not in use, the baffle 4 can be folded, thereby further reducing the occupied space of the whole device.
The support frame unit comprises more than 2 layers of pipeline support rods 5, the length of a support connecting rod 13 connected with the pipeline support rods 5 of the next layer is larger than the sum of the width of the pipeline support rods 5 of the previous layer and the length of the support connecting rod 13, and a limiting block 7 is arranged at the corresponding position above each layer of pipeline support rods 5. Each layer of pipeline supporting rod 5 can be used for placing a pipeline, the length of the supporting connecting rod 13 connected with the next layer of pipeline supporting rod 5 is greater than the sum of the width of the previous layer of pipeline supporting rod 5 and the length of the supporting connecting rod 13, so that each layer of pipeline supporting rod 5 can be folded to the maximum degree by rotating upwards by 90 degrees, each layer is not interfered with each other, and the space is saved to the maximum degree; and the three layers of staggered arrangement are more beneficial to field operation.
The upper surface of the pipeline supporting rod 5 is provided with a through hole 11, which is convenient for sand, soil, rainwater and the like to drain away.
The upper surface of the pipeline supporting rod 5 below the limiting block 7 is provided with a clamping groove 24, the shape of the clamping groove 24 is matched with that of the limiting block 7, and the upper end of the limiting block 7 is higher than the upper surface of the pipeline supporting rod 5. The lower part of the limiting block 7 is clamped in the clamping groove 24, and the upper end of the limiting block 7 is higher than the upper surface of the pipeline supporting rod 5, so that the pipeline supporting rod 5 can only rotate 90 degrees at most, and the limiting block 7 can better limit.
The supporting tripod 3 is arranged below the pipeline supporting rod 5, the extending direction of the supporting tripod 3 is parallel to the supporting connecting rod 13, and the supporting strength of the pipeline supporting rod 5 is increased.
When in use, the two supporting mechanisms are respectively arranged at two sides of the supporting upright post 2, a pipeline is placed on the pipeline supporting rod 5, and the supporting connecting rod 13 and the supporting tripod 3 support the pipeline supporting rod 5; after use or in the moving and transporting process, the two supporting blocks 8 are detached from the supporting upright post 2, and the pipeline supporting rod 5 and the baffle 4 are respectively folded, so that the occupied space of the sleeving device is reduced, and the sleeving device is convenient to carry and transport; some small articles can be placed on the supporting base 1, so that convenience is provided for carrying and transporting.
Claims (7)
1. The utility model provides a support is put to pipeline for civil engineering which characterized in that: the device comprises a supporting base (1), wherein a supporting upright post (2) is arranged above the supporting base (1), two supporting mechanisms are respectively arranged on two sides of the supporting upright post (2), and the supporting mechanisms are fixedly connected with the supporting upright post (2) through screws (12); the supporting mechanism comprises a supporting block (8), one end face of the supporting block (8) is provided with a U-shaped groove, the U-shaped groove is clamped on the periphery of the supporting upright post (2), and two sides of the other end face of the supporting block (8) are respectively provided with a supporting frame unit; the bottom surface of the supporting base (1) is provided with universal wheels (9).
2. The pipe placing bracket for civil engineering as claimed in claim 1, wherein: the supporting frame unit comprises two supporting groups (10), the two supporting groups (10) are respectively arranged on two sides of one supporting block (8), each supporting group (10) comprises a supporting connecting rod (13) fixedly connected with the corresponding supporting block (8), each supporting connecting rod (13) is connected with the corresponding pipeline supporting rod (5) through a damping rotating shaft (6), a limiting block (7) is arranged on one side of each damping rotating shaft (6), one end of each limiting block (7) is fixedly connected with the corresponding supporting block (8), and the other end of each limiting block (7) is arranged above the non-cantilever end of the corresponding pipeline supporting rod (5); the end part of the cantilever end of the pipeline supporting rod (5) is provided with a baffle (4).
3. The pipe placing bracket for civil engineering as claimed in claim 2, wherein: a first shaft sleeve (14) and a second shaft sleeve (19) are fixedly arranged on two sides of the end part of the cantilever end of the pipeline supporting rod (5) respectively, a third shaft sleeve (15) is arranged at one end of a baffle plate (4) connected with the pipeline supporting rod (5), the third shaft sleeve (15) is clamped between the first shaft sleeve (14) and the second shaft sleeve (19), the first shaft sleeve (14), the second shaft sleeve (19) and the third shaft sleeve (15) are coaxial, a third rectangular strip groove (16) is arranged on the inner wall of the third shaft sleeve (15) close to the second shaft sleeve (19), the concave-convex direction of the third rectangular strip groove (16) is consistent with the arrangement direction of the baffle plate (4), a first rectangular strip groove (17) and a second rectangular strip groove (18) are arranged at the top end of the inner wall of the second shaft sleeve (19) and one side close to the pipeline supporting rod (5) respectively, a main shaft (22) penetrates through the middles of the first shaft sleeve (14), a tightening nut (23) which is in threaded fit with the main shaft (22) is arranged on the periphery of the other end of the main shaft (22); a rectangular strip protrusion (21) is arranged on the main shaft (22) close to one end of the positioning nut (20), and the width and the height of the rectangular strip protrusion (21) are matched with the rectangular strip groove I (17), the rectangular strip groove II (18) and the rectangular strip groove III (16).
4. The pipe placing bracket for civil engineering as claimed in claim 2 or 3, wherein: the support frame unit comprises more than 2 layers of pipeline support rods (5), the length of a support connecting rod (13) connected with the pipeline support rods (5) of the next layer is larger than the sum of the width of the pipeline support rods (5) of the previous layer and the length of the support connecting rod (13), and a limit block (7) is arranged at the corresponding position above each layer of pipeline support rods (5).
5. The pipe placing bracket for civil engineering as claimed in claim 4, wherein: the upper surface of the pipeline supporting rod (5) is provided with a through hole (11).
6. The pipe placing bracket for civil engineering as claimed in claim 4, wherein: the upper surface of the pipeline supporting rod (5) below the limiting block (7) is provided with a clamping groove (24), the shape of the clamping groove (24) is matched with that of the limiting block (7), and the upper end of the limiting block (7) is higher than the upper surface of the pipeline supporting rod (5).
7. The pipe placing bracket for civil engineering as claimed in claim 4, wherein: a supporting tripod (3) is arranged below the pipeline supporting rod (5), and the extending direction of the supporting tripod (3) is parallel to the supporting connecting rod (13).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022112162.8U CN213136732U (en) | 2020-09-23 | 2020-09-23 | Pipeline placing support for civil engineering |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022112162.8U CN213136732U (en) | 2020-09-23 | 2020-09-23 | Pipeline placing support for civil engineering |
Publications (1)
Publication Number | Publication Date |
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CN213136732U true CN213136732U (en) | 2021-05-07 |
Family
ID=75717817
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202022112162.8U Active CN213136732U (en) | 2020-09-23 | 2020-09-23 | Pipeline placing support for civil engineering |
Country Status (1)
Country | Link |
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CN (1) | CN213136732U (en) |
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2020
- 2020-09-23 CN CN202022112162.8U patent/CN213136732U/en active Active
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