Pipeline support
By designing a pipeline bracket including a sliding support platform, height-adjustable support column and limit bracket, the problem of insufficient stability of pipeline erecting in chemical cooling towers is solved, and the height-adjustable and stable erection effect is achieved.
Patent Information
- Application Number
- CN202422104834.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-08-29
AI Technical Summary
The fixtures of existing chemical cooling tower pipelines are insufficient in stability during the installation process and are prone to displacement. The adjustment rod and spring sleeve are prone to aging or failure, affecting the installation results.
A pipe bracket is designed, including a base, a base, a support column and a bracket. The bearing is slidingly connected to the base, which can adjust the installation position of the pipe; the support column is inserted into the groove body of the bearing of different depths to form support columns of different heights; the bracket is limited to the positioning strip and the support column to prevent rotation.
The stable erection of chemical cooling tower pipelines is achieved, and the height adjustment of the bearing and support columns can be adapted to the pipeline needs of different heights; the limit design of the bracket prevents rotation, improving the stability of the erection.
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Figure CN222992358U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pipeline installation, and more specifically, to a pipeline support. Background Art
[0002] A fin heat exchanger and a circulating water pipeline connected thereto are usually installed in a ventilated cooling tower. Usually, the pipeline needs to be fixedly connected by a fixed support. The patent with the publication number of CN215763689U discloses a fixing member for a chemical cooling tower pipeline, which is provided with an adjustable rod to adjust the height of the support pipe, and different lengths of fixing members can be formed by connecting different support seats as required. Moving rollers are arranged on each support base for easy movement.
[0003] However, for the fixing member of the chemical cooling tower pipeline in the above-mentioned prior art, although the walking wheels are provided to increase the mobility, the support stability is weakened to a certain extent. It is possible that the pipeline fixing member is displaced during the process of supporting and erecting the pipeline of the chemical cooling tower, affecting the pipeline erection; for each erection structure, the adjustment of the upper height and the lower height both need to rely on the adjusting rod and the spring sleeve. Due to the heavy weight of the pipeline itself and the fact that the components for erecting the pipeline include springs, the springs are prone to aging or failure, thus affecting the erection result of the chemical cooling tower pipeline. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is to provide a pipeline support, which can at least achieve the purpose of stably erecting the pipeline.
[0005] To solve the above technical problems, the technical scheme adopted by the utility model is as follows:
[0006] A pipeline support, comprising:
[0007] ——A base;
[0008] ——A bearing platform; the bearing platform is slidably connected to the base. The bearing platform includes a sliding part embedded in the base and an erection part sleeved with the sliding part. The sliding part and different numbers of the erection parts form bearing platforms with different heights;
[0009] ——A support column, which is inserted into the bearing platform;
[0010] ——A bracket, which is installed at the top of the support column.
[0011] Further, the base is fixedly connected to the ground.
[0012] Furthermore, a limiting groove is arranged on the upper surface of the base. First through holes are formed on both sides of the limiting groove for fixing the sliding part of the bearing platform. The longitudinal section of the sliding part is T-shaped and is adapted to the limiting groove. A second through hole adapted to the first through hole is formed in the sliding part, and the second through hole is horizontally arranged. A through rod is inserted into the first through hole and the second through hole for fixing the sliding part to the base.
[0013] Furthermore, a third through hole is vertically arranged in the sliding part for connecting with the erection part.
[0014] Furthermore, a first boss is arranged on the upper end surface of the sliding part. A groove is formed on the lower end surface of the erection part, and a second boss is arranged on the upper end surface of the erection part. The second boss is adapted to the groove for realizing the stacking of the erection parts. The groove is adapted to the first boss.
[0015] Furthermore, a through groove penetrating up and down is formed in the center of the erection part, and vertical grooves with different depths are arranged on the side wall of the through groove. A first limiting strip and a second limiting strip are arranged on the outer wall of the support column. The first limiting strip and the second limiting strip are selectively embedded into the grooves.
[0016] Furthermore, the bracket includes a column body embedded in the support column, a frame plate arranged on the upper end surface of the support column, and a frame body connected above the frame plate. A clamping part adapted to the first limiting strip or the second limiting strip is arranged on the outer wall of the frame plate.
[0017] For the pipe support provided by the present utility model, the bearing platform moves on the base to a suitable position for the erection of the chemical cooling tower pipeline, and then the bearing platform is fixed to the base to realize the stable erection of the pipeline. Different numbers of erection parts can be arranged on the bearing platform, so as to form different heights. The support column is inserted into the grooves with different depths in the bearing platform to form support columns with different exposed heights. The combination of the two height adjustment methods achieves the purpose of adjustable height for the pipeline erection.
[0018] In addition, the first limiting strip and the second limiting strip are arranged on the outer wall of the support column, which can limit the bracket and prevent the bracket from rotating during the erection of the pipeline in the cooling tower. The arrangement of multiple groups of second limiting strips can adjust the direction of the bracket. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The accompanying drawings here are used to provide further illustration of the present utility model, and constitute a part of this application. The schematic embodiments of the present utility model and their descriptions are used to explain the present utility model and do not constitute an improper limitation to the present utility model.
[0020] Figure 1 It is the overall structural schematic diagram of the pipe support in the first embodiment.
[0021] Figure 2 It is a schematic exploded view of the pipe support in the first embodiment.
[0022] Figure 3 It is a schematic exploded view of the bearing platform in the first embodiment.
[0023] Figure 4 It is a cross-sectional view of the erection part in the first embodiment.
[0024] Figure 5 It is a schematic exploded view of the bearing platform in the second embodiment.
[0025] Figure 6 It is a cross-sectional view of the erection part in the second embodiment.
[0026] Figure 7 It is a schematic diagram of the base in the third embodiment.
[0027] In the figure: 1. Base; 11. Limit groove; 12. First through hole; 13. Rotating roller; 2. Bearing platform; 21. Sliding part; 211. First boss; 22. Erection part; 221. Through groove; 222. Groove; 223. Second boss; 224. Groove body; 3. Support column; 31. First limiting strip; 32. Second limiting strip; 4. Bracket; 41. Column body; 42. Frame plate; 43. Frame body; 44. Fastening piece; 5. Third through hole; 6. Inserting rod; 7. Connecting rod. Detailed implementation manners
[0028] In order to enable those skilled in the art to better understand the present utility model, the present utility model will be further clearly and completely described below with reference to the accompanying drawings and in combination with embodiments. Embodiment 1
[0029] As Figures 1-4 shown, this embodiment provides a pipe support, which is applied to the pipe support erection of a chemical cooling tower. The pipe support in this embodiment includes a base 1, a bearing platform 2, a support column 3 and a bracket 4.
[0030] Among them, the bearing platform 2 is slidably connected to the base 1, and the installation position of the bearing platform 2 on the base 1 is adjustable, so that the erection position of the pipe support can be adjusted within a certain range. The bearing platform 2 includes a sliding part 21 embedded in the base 1 and an erection part 22 sleeved on the sliding part 21. Different numbers of erection parts 22 and the sliding part 21 form bearing platforms 2 with different heights; the support column 3 is inserted into the bearing platform 2.
[0031] Specifically, the base 1 serves as the foundation of the entire bracket. The base 1 is fixedly connected to the ground to ensure the stability of the entire bracket. Holes are provided at the edge of the base 1, through which it can be fixedly connected to the ground by bolts. A limiting groove 11 is arranged on the upper surface of the base 1. Horizontal through first through holes 12 are provided on both sides of the limiting groove 11. The two rows of first through holes 12 are symmetric with each other and are used to fix the sliding part 21 of the bearing platform 2. The opening of the limiting groove 11 faces upward.
[0032] The bearing platform 2 is the part that is slidably connected to the base 1 and includes a sliding part 21 and an erection part 22. As Figures 3-4 shown, the longitudinal section of the sliding part 21 is T-shaped and is adapted to the limiting groove 11. A second through hole is provided in the sliding part 21. The second through hole is horizontally arranged and is adapted to the first through hole 12. A through rod 6 passes through the first through hole 12 and the second through hole with the same axis at one time, and can fix the sliding part 21 on the base 1.
[0033] Among them, the outer contours of the sliding part 21 and the erection part 22 are respectively rectangular. A third through hole 5 is vertically arranged in the sliding part 21, and a third through hole 5 is also provided on the erection part 22. In this embodiment, the third through hole 5 is arranged in the middle position of the four side edges. By inserting a connecting rod 7 into the third through holes 5 of the erection part 22 and the sliding part 21, the connection between the sliding part 21 and the erection part 22 can be strengthened. In order to make the connection between the sliding part 21 and the erection part 22 more firm, the third through hole 5 is a threaded hole, and the connecting rod 7 is a threaded rod adapted to the threaded hole.
[0034] A first boss 211 is arranged on the upper end surface of the sliding part 21. A through slot 221 that penetrates up and down is provided in the center of the erection part 22. A groove 222 is provided on the lower end surface of the erection part 22. A second boss 223 is arranged on the upper end surface of the erection part 22. The second boss 223 is adapted to the groove 222, so that multiple erection parts 22 can be stably stacked; the groove 222 is also adapted to the first boss 211, so that the erection part 22 can be stacked on the sliding part 21.
[0035] In this embodiment, there are two erection parts 22. On the side walls of the through grooves 221 of the erection parts 22, two groups of grooves 224 are arranged. Each group of grooves 224 includes two vertical grooves arranged oppositely, and the depths of the grooves formed by the combination of the grooves 224 of the upper and lower erection parts 22 are different. Specifically, for the erection part 22 at the bottom, the depths of the grooves 224 arranged on the side walls of its through groove 221 are the same, and the depth is lower than the height of the through groove 221 of the erection part; for the erection part 22 at the upper part, the depths of the two groups of grooves of its through groove 221 are different, one group is lower than the height of the through groove 221 of the erection part, and the other group is equal to the height of the through groove of the erection part. With such a design, when the two erection parts are stacked, two groups of through grooves 221 with different depths are formed. When the support columns 3 are inserted into the through grooves 221 with different depths, the exposed heights of the support columns 3 are different, thus forming pipe supports with different heights.
[0036] In this embodiment, a first limiting strip 31 and a second limiting strip 32 are arranged on the outer wall of the support column 3. The length of the first limiting strip 31 is equal to the height of the support column 3. The first limiting strip 31 is composed of two convex strips arranged at both ends of the diameter of the support column 3. The first limiting strip 31 is used to be embedded in the groove 224 and also used to limit the bracket 4; the second limiting strip 32 is two convex blocks arranged at both ends in the diameter direction and is used to limit the bracket 4; there are multiple groups of the second limiting strips 32. In this embodiment, preferably one group of the second limiting strips 32 is arranged. The support column 3 can be embedded in grooves with different depths as needed, so as to form different protruding heights of the support column 3 to meet the requirements of pipe erection at different heights.
[0037] In this embodiment, the bracket 4 includes a column body 41 embedded in the support column 3, a mounting plate 42 mounted on the upper end surface of the support column 3, and a frame body 43 connected above the mounting plate 42. A clamping member 44 adapted to the first limiting strip 31 or the second limiting strip 32 is arranged on the outer wall of the mounting plate 42. The clamping members 44 are arranged in pairs on the outer wall of the mounting plate 42 and are adapted to the first limiting strip 31 or the second limiting strip 32 on the outer wall of the support column 3 to ensure the stability of the bracket 4 during use. During use, the column body 41 is inserted into the support column 3, the mounting plate 42 is mounted on the upper end surface of the support column 3, and at the same time, the clamping member 44 is clamped on the first limiting strip 31 or the second limiting strip 32. The top end of the frame body 43 is an arc-shaped plate, which is used to erect the pipes of the chemical cooling tower, and the frame body is fixedly connected or detachably connected to the upper end surface of the mounting plate 42.
[0038] The pipe support provided in this embodiment can conveniently adjust the installation position of the chemical cooling tower pipes by fixing the base 1 to the ground and the sliding connection of the bearing platform 2 on the base 1, so as to achieve the stable installation of the pipes in the chemical cooling tower. The design of the bearing platform 2 and the support column 3 enables height adjustment through different combinations, thus meeting the installation requirements of pipes at different heights. In addition, the first limiting strip 31 or the second limiting strip 32 on the outer wall of the support column 3 can effectively limit the bracket, preventing unfavorable rotation during the installation process. The design of the second limiting strip 32 enables the direction of the bracket to be adjusted according to actual needs, and the pipes arranged horizontally and vertically can be stably supported. The design of this new type of pipe support in this embodiment provides a more flexible and reliable solution for the pipe installation of chemical cooling towers. Embodiment 2
[0039] The difference between this embodiment and Embodiment 1 is that the bearing platform 2 is provided with 3 installation parts 22. As Figures 5-6 shown, the side walls of the through slots 221 of the installation parts 22 are provided with 3 groups of slots 224, and each group of slots 224 includes 2 vertical grooves arranged oppositely, and the depths of the slots formed by the combination of the slots 224 of the 3 installation parts 22 are different.
[0040] Specifically, for the installation part 22 at the bottom, the depths of the slots 224 arranged on the side walls of its through slot 221 are the same, and its depth is lower than the height of the through slot 221 of the installation part; for the installation part 22 in the middle, two groups of slots in its through slot 221 have the same depth and are respectively equal to the height of the through slot of the installation part, and the other group is lower than the height of the through slot 221 of the installation part; for the installation part 22 at the top, two groups of slots in its through slot 221 have the same depth and are respectively equal to the height of the through slot of the installation part, and the other group is lower than the height of the through slot 221 of the installation part. Among them, when the middle and upper installation parts are stacked, the shallower slots of the upper installation part communicate with the deeper slots of the middle installation part. With such a design, when the three installation parts 22 are stacked, three groups of through slots 221 with different depths are formed. When the support column 3 is inserted into the through slots 221 with different depths, the exposed heights of the support column 3 are different, thus forming pipe supports with different heights.
[0041] In this embodiment, a group of first limiting strips 31 are arranged on the outer wall of the support column 3, and their lengths are equal to the height of the support column; five groups of second limiting strips are also arranged on the outer wall of the support column 3. The design of multiple groups of second limiting strips 32 enables the direction of the bracket to be adjusted according to actual needs, and pipes in any direction, whether horizontal, vertical or inclined, can be stably supported. The design of this new type of pipe support undoubtedly provides a more flexible and reliable solution for the pipe installation of chemical cooling towers. Embodiment 3
[0042] In order to facilitate the sliding of the bearing platform 2 on the base 1 in this embodiment, a number of rotating rollers 13 are also arranged in the limiting groove 11 of the base 1. As Figure 7 shown, both ends of each rotating roller 13 are rotatably connected to both sides of the limiting groove 11. When the sliding part 21 of the bearing platform needs to move on the base 1, gently push the sliding part 21, and under the rotation of the rotating rollers 13, the sliding part 21 can be easily moved. When the sliding part 21 moves to the position required for the pipeline erection of the chemical industrial cooling tower, insert the through rod 6 through the first through hole 12 and the second through hole to realize the fixed connection between the bearing platform 2 and the base 1.
[0043] The scope of protection required by this utility model is not limited to the above specific embodiments. For those skilled in the art, this utility model can have various deformations and modifications. Any modification, improvement and equivalent replacement made within the concept and principle of this utility model should be included in the protection scope of this utility model.
Claims
1. A pipe support, characterized in that: include: - base (1); - a supporting platform (2); the supporting platform (2) is slidably connected to the base (1), the supporting platform (2) comprising a sliding portion (21) embedded in the base (1) and a mounting portion (22) sleeved with the sliding portion (21), the sliding portion (21) and different numbers of the mounting portions (22) forming supporting platforms (2) of different heights; - a support column (3), the support column (3) being inserted into the support platform (2); - Bracket (4), the bracket (4) is installed on the top of the supporting column (3).
2. The pipe support according to claim 1, characterized in that: The base (1) is fixedly connected to the ground.
3. The pipe support according to claim 1 or 2, characterized in that: A limiting groove (11) is arranged on the upper surface of the base (1), and first through holes (12) are provided on both sides of the limiting groove (11) for fixing the sliding part (21) of the support platform (2); the longitudinal section of the sliding part (21) is T-shaped and is adapted to the limiting groove (11); the sliding part (21) is provided with a second through hole adapted to the first through hole (12), and the second through hole is arranged horizontally; a through rod (6) is inserted into the first through hole (12) and the second through hole, and is used to fix the sliding part (21) to the base (1).
4. The pipe support according to claim 3, characterized in that: The sliding portion (21) is vertically provided with third through holes (5) for connection with the mounting portion (22).
5. The pipeline support according to claim 1 or 4, characterized in that: The upper end surface of the sliding portion (21) is provided with a first boss (211); The lower end surface of the mounting portion (22) is provided with a groove (222), and the upper end surface of the mounting portion (22) is provided with a second boss (223); the second boss (223) is adapted to the groove (222) to achieve stacking of the mounting portion (22); The groove (222) is adapted to fit the first boss (211).
6. The pipe support according to claim 5, characterized in that: A through slot (221) extending vertically through the mounting portion (22) is provided at the center thereof, and a vertical slot body (224) of different depths is arranged on the side wall of the through slot (221); a first limiting strip (31) and a second limiting strip (32) are arranged on the outer wall of the support column (3); the first limiting strip (31) and the second limiting strip (32) are selectively embedded in the slot body (224).
7. The pipe support according to claim 6, characterized in that: The bracket (4) comprises a column (41) embedded in the support column (3), a frame plate (42) mounted on the upper end surface of the support column (3), and a frame body (43) connected to the upper side of the frame plate (42); the outer wall of the frame plate (42) is provided with a clamping piece (44) adapted to the first limiting strip (31) or the second limiting strip (32).
Citation Information
Patent Citations
Fixing part of chemical cooling tower pipeline
CN215763689U