Flexible and rigid hoisting combined assembly type pipe heald support hanger

By designing a flexible and rigid hoisting combination assembled pipe support and hanger, the position of the arc-shaped hoop is adjusted by using worm and gear transmission, the problem of size mismatch in existing support and hangers when fixing pipes of different specifications is solved, and flexible fixing and stable support for pipes of different specifications is achieved.

CN120100960APending Publication Date: 2025-06-06JIANGSU RUIZHONGDE METAL PROD CO LTD
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Patent Information

Application Number
CN202510349644.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The existing support hangers have problems with size mismatch when fixing pipes of different specifications, and the adjustment method is inconvenient, which is limited by the hole position, which is not conducive to adjustment.

Method used

A flexible and rigid hoisting combination assembly of assembled pipe support hangers is designed, using interlaced column components and cross-load components. Combined with the pipeline fixing components, the distance between the lower arc hoop and the position of the upper arc hoop is adjusted through the worm and gear transmission, so as to achieve flexible fixation of pipes of different specifications.

Benefits of technology

It realizes flexible fixation of pipes of different specifications, simple adjustment steps, prevents turbulent distribution of pipes, and has self-locking worm transmission to prevent changes in size after adjustment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of pipe heald supporting hangers, and discloses a flexible and rigid hoisting combined assembly type pipe heald supporting hanger which comprises a stand column assembly and a cross arm assembly which are connected in a staggered mode, and further comprises a pipeline fixing assembly, and the cross arm assembly is fixedly connected to the bottom of the stand column assembly and the position close to the middle of the stand column assembly. A pipeline fixing assembly is fixedly connected to the bottom of the interior of the cross arm assembly, an inclined strut assembly is fixedly connected to the position, close to the middle, of the outer side of the stand column assembly, and the pipeline fixing assembly comprises a water pipe, an upper arc-shaped hoop, a lower arc-shaped hoop, a fixing bolt, a sliding block, a first rack, a worm, an adjusting knob and a limiting block. The adjusting knob is rotated to drive the worm to rotate, and the worm drives the first rack to move, so that the distance between the lower arc-shaped hoops is adjusted, meanwhile, the position of the upper arc-shaped hoop is synchronously adjusted, a water pipe is fixed, the size of a pipeline support is adjusted, and pipelines of different specifications are conveniently fixed.
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Description

Technical Field

[0001] The invention relates to the technical field of pipe integrated support and hanger, and more specifically to an assembled pipe integrated support and hanger of a flexible and rigid hoisting combination. Background Art

[0002] A support bracket is a device or mechanism used to support and fix system components such as pipelines and equipment. It ensures that the equipment or pipelines remain stable during operation through load-bearing, supporting and fixing functions, and prevents damage or displacement caused by vibration, temperature changes and other factors. Support brackets are widely used in mechanical and electrical engineering facilities such as building water supply and drainage, fire protection, heating, ventilation, air conditioning, gas, heat, electricity, and communications. They are usually installed in large buildings such as large factories, subway halls, etc. Support brackets can be classified according to the production method into finished supports and hangers, on-site produced supports and hangers, and assembled supports and hangers. Assembled supports and hangers are those that are assembled on-site with prefabricated parts. Support brackets play an extremely important role in the safe operation of building facilities.

[0003] The supports and hangers in the prior art have the following disadvantages: 1. The supports for the various pipe components of the supports and hangers are relatively simple, and are usually fixed by clamps of fixed sizes. When faced with pipes of different specifications, only existing support components of fixed sizes can be used to fix them. When faced with support components of unavailable specifications, different supports and hangers are required to fix them even if the size difference is very small, which is rather troublesome; 2. The pipes on the supports and hangers need to be arranged in a straight line in the horizontal direction. Therefore, the positions of various fasteners need to be adjusted during fixation to ensure that the front and rear pipes are arranged in a straight line. However, the existing adjustment method is inconvenient and is limited by the position of the holes, which is not conducive to adjustment. Summary of the invention

[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides an assembled pipe support hanger with a flexible and rigid lifting combination to solve the problems existing in the above-mentioned background technology.

[0005] The present invention provides the following technical solutions: an assembled pipe support hanger with a flexible and rigid lifting combination, comprising a staggered column assembly and a cross arm assembly, and also comprising a pipe fixing assembly, wherein the bottom and near the middle of the column assembly are fixedly connected with a cross arm assembly, the inner bottom of the cross arm assembly is fixedly connected with a pipe fixing assembly, the outer side of the column assembly is fixedly connected with a diagonal brace assembly near the middle, and the outer sides of the cross arm assembly are fixedly connected with angle connectors; The pipeline fixing assembly comprises a water pipe, an upper arc hoop, a lower arc hoop, a fixing bolt, a slider, a first rack, a worm, an adjusting knob and a limit block, the upper arc hoop is movably sleeved on both sides of the top of the water pipe, the lower arc hoop is movably sleeved on both sides of the bottom of the water pipe, the upper arc hoop and the lower arc hoop are fixed to each other by fixing bolts, the bottom of the lower arc hoop is fixedly connected with a slider, the middle part of the bottom of the slider is fixedly connected with a first rack, the bottom of the first rack is movably connected with a worm, the outer side of the worm is provided with symmetrical threads near the middle, one side of the worm is connected with an adjusting knob through a bevel gear transmission, and the outer sides of the two sides of the worm are movably sleeved with limit blocks; The lower arc hoop includes a hoop body and a telescopic pad, the hoop body is an arc structure, and a mounting groove is opened in the middle of the arc structure, and the telescopic pad is fixedly connected in the mounting groove, the slider includes a slider body, a slide plate, a second rack, a moving gear and a moving handle, the front and back sides of the slider body are movably connected with the slide plate near the bottom, the back side of the slide plate is fixedly connected with the second rack, the side of the second rack is movably connected with the moving gear, and the inner middle part of the moving gear is fixedly sleeved with the moving handle; The column assembly includes a side column, an intermediate column, a first punching hole, a channel steel base column and a channel steel base bottom plate. The outer surface of the column assembly is penetrated by a first punching hole, and an intermediate column is provided in the middle of the adjacent position of the side column; The crossarm assembly includes a bottom crossarm, an upper crossarm and a second punching hole. A groove is provided in the middle of the top of the bottom crossarm, and a slide groove is provided on the front and back sides of the groove. The slide groove is adapted to the slide plate. An angle connector is fixedly connected between the bottom crossarm and the side column, and an angle connector is fixedly connected between the bottom crossarm and the middle column. A second punching hole is penetrated on the outer surface of the crossarm assembly. The angle connector is fixedly connected to the first punching hole and the second punching hole respectively by bolts. The upper crossarm is fixedly connected to the column assembly. The upper crossarm includes a first crossarm for installing an air duct and a second crossarm for installing a bridge. The bottom crossarm is used to install a water pipe.

[0006] Furthermore, a channel steel gusset plate is fixedly connected to the middle portion of the outer side of the second cross arm, a screw rod is fixedly connected to the middle portion of the bottom of the channel steel gusset plate, and the bridge frame is located above the second cross arm.

[0007] Furthermore, a third punching hole is provided on the top of one side of the corner connector, and a fourth punching hole is provided on the other side of the top of the corner connector. The third punching hole is connected to the first punching hole of the side column, and the fourth punching hole is connected to the second punching hole of the bottom cross arm, so that the side column and the bottom cross arm are fixedly connected.

[0008] Furthermore, fifth punching holes are provided on the top of both sides of the corner connector, and sixth punching holes are provided on both sides of the top of the corner connector. The fifth punching holes are fixedly connected to the middle column by bolts, and the sixth punching holes are fixedly connected to the bottom cross arm by bolts, so that the middle column is fixedly connected to the bottom cross arm.

[0009] Furthermore, a seventh punching hole is provided on the top of the other side of the corner connector, and an eighth punching hole is provided on one side of the top of the corner connector. The seventh punching hole is fixedly connected to the first punching hole of the side column by bolts, and the eighth punching hole is fixedly connected to the second punching hole of the second crossarm by bolts, so that the column assembly is fixedly connected to the upper crossarm.

[0010] Furthermore, the diagonal brace assembly includes a first diagonal brace, a second diagonal brace, a ninth punching hole, a first hinge and a second hinge. A ninth punching hole is penetrated through the outer surface of the diagonal brace assembly. A first hinge and a second hinge are respectively provided at both ends of the diagonal brace assembly. The first hinge is respectively connected to the first punching hole of the column assembly and the ninth punching hole of the diagonal brace assembly by bolts to fix the diagonal brace assembly to the column assembly. The second hinge is respectively connected to the ninth punching hole of the diagonal brace assembly and the external structure by bolts to fix the diagonal brace assembly to the external structure. The second diagonal brace is perpendicular to the crossarm assembly.

[0011] Furthermore, a channel steel base is provided at the top of the column assembly, and the channel steel base includes a channel steel base column and a channel steel base bottom plate. The channel steel base column is inserted into the column assembly, and the channel steel base bottom plate is fixedly connected to the top of the channel steel base column and is an integrally formed structure. The channel steel base bottom plate is fixedly connected to the external structure through anchor bolts.

[0012] Technical effects and advantages of the present invention: 1. The present invention is provided with a pipe fixing assembly. By turning the adjusting knob, the worm is driven to rotate after being driven by the bevel gear. The rotation of the worm drives the first rack to move, thereby driving the slider to move in the groove, and then adjusting the distance of the lower arc hoop. At the same time, the position of the upper arc hoop is adjusted synchronously to fix the water pipe, which is conducive to adjusting the size of the pipe support and facilitating the fixing of pipes of different specifications.

[0013] 2. The present invention is provided with lower arc hoops, and the worm drives the symmetrically distributed lower arc hoops to move, so that the lower arc hoops move towards or oppositely at the same time, which is convenient for adjusting the size, and the adjustment steps are simple, which prevents the distribution of the pipeline from being disordered due to single operation. At the same time, the worm drive has self-locking property, which is conducive to preventing the size from changing after adjustment. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0015] Figure 2 It is a schematic structural diagram of the pipeline fixing assembly of the present invention.

[0016] Figure 3 It is a schematic diagram of the cross-sectional structure of the slider of the present invention.

[0017] Figure 4 For the present invention Figure 1 Schematic diagram of the structure at the center column assembly.

[0018] Figure 5 For the present invention Figure 1 Structural schematic diagram of the middle cross arm assembly.

[0019] Figure 6 For the present invention Figure 1 Structural diagram of the middle diagonal brace assembly.

[0020] Figure 7 For the present invention Figure 1 Schematic diagram of the structure of the third punching hole of the middle corner connector.

[0021] Figure 8 For the present invention Figure 1 Schematic diagram of the structure of the fifth punching hole of the middle corner connector.

[0022] Fig. 9 For the present invention Figure 1 Structural diagram of the upper-middle crossarm.

[0023] The accompanying drawings are marked as follows: 1. column assembly; 101. side column; 102. middle column; 103. first punching hole; 104. channel steel base column; 105. channel steel base bottom plate; 2. cross arm assembly; 201. bottom cross arm; 202. upper cross arm; 2021. first cross arm; 2022. second cross arm; 2023. channel steel buckle plate; 2024. screw rod; 203. second punching hole; 3. pipeline fixing assembly; 301. water pipe; 302. upper arc hoop; 303. lower arc hoop; 3031. hoop body; 3032. telescopic pad; 304. fixing bolt; 305. slider; 30 51. Slider body; 3052. Slide plate; 3053. Second rack; 3054. Moving gear; 3055. Moving handle; 306. First rack; 307. Worm; 308. Adjustment knob; 309. Limit block; 4. Diagonal brace assembly; 401. First diagonal brace; 402. Second diagonal brace; 403. Ninth punching hole; 404. First hinge; 405. Second hinge; 5. Angle connector; 501. Third punching hole; 502. Fourth punching hole; 503. Fifth punching hole; 504. Sixth punching hole; 505. Seventh punching hole; 506. Eighth punching hole; 6. Air duct; 7. Bridge. DETAILED DESCRIPTION

[0024] The technical solution of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the present invention. In addition, the forms of the various structures recorded in the following embodiments are only examples. The assembled pipe support hanger with a flexible and rigid lifting combination involved in the present invention is not limited to the various structures recorded in the following embodiments. All other embodiments obtained by ordinary technicians in this field without making creative work belong to the scope of protection of the present invention.

[0025] Reference Figure 1-Figure 9 The present invention provides a flexible and rigid lifting combined assembled pipe support hanger, comprising a staggered column assembly 1 and a cross arm assembly 2, and a pipe fixing assembly 3, wherein the bottom and near the middle of the column assembly 1 are fixedly connected with the cross arm assembly 2, the inner bottom of the cross arm assembly 2 is fixedly connected with the pipe fixing assembly 3, the outer side of the column assembly 1 is fixedly connected with a diagonal brace assembly 4 near the middle, and the outer sides of the cross arm assembly 2 are fixedly connected with angle connectors 5; Reference Figure 1 , Figure 2 The pipeline fixing assembly 3 includes a water pipe 301, an upper arc hoop 302, a lower arc hoop 303, a fixing bolt 304, a slider 305, a first rack 306, a worm 307, an adjusting knob 308 and a limit block 309. The upper arc hoop 302 is movably sleeved on both sides of the top of the water pipe 301, and the lower arc hoop 303 is movably sleeved on both sides of the bottom of the water pipe 301. The upper arc hoop 302 and the lower arc hoop 303 are fixed to each other by fixing bolts 304. The bottom of the lower arc hoop 303 is fixedly connected with a slider 305, and the middle of the bottom of the slider 305 is fixedly connected with a first rack 306. The bottom of the first rack 306 is movably connected with a worm 307. The outer side of the worm 307 is provided with symmetrical threads near the middle position. One side of the worm 307 is connected to an adjusting knob 308 through a bevel gear transmission. The outer sides of the worm 307 are movably sleeved with limit blocks 309. By turning the adjusting knob 308, the worm 307 is driven to rotate after being driven by the bevel gear. The rotation of the worm 307 drives the first rack 306 to move, thereby driving the slider 305 to move in the groove, and then adjusting the distance between the lower arc hoops 303. At the same time, the position of the upper arc hoop 302 is adjusted synchronously to fix the water pipe 301, which is conducive to adjusting the size of the pipeline support and facilitating the fixing of pipelines of different specifications; the symmetrically distributed lower arc hoops 303 are driven by the worm 307 to move, so that the lower arc hoops 303 move toward or oppositely at the same time, which is convenient for adjusting the size, and the adjustment steps are simple, preventing the distribution of the pipeline from being disordered due to a single operation. At the same time, the worm transmission has a self-locking property, which is conducive to preventing the size from changing after adjustment.

[0026] Reference Figure 1-Figure 3The lower arc hoop 303 includes a hoop body 3031 and a telescopic pad 3032. The hoop body 3031 is an arc structure, and a mounting groove is opened in the middle of the arc structure. The telescopic pad 3032 is fixedly connected in the mounting groove. The slider 305 includes a slider body 3051, a slide plate 3052, a second rack 3053, a moving gear 3054 and a moving handle 3055. The front and back sides of the slider body 3051 are movably connected with the slide plate 3052 near the bottom. The back side of the slide plate 3052 is fixedly connected with the second rack 3053. The side of the second rack 3053 is movably connected with the moving gear 3054. The inner middle part of the moving gear 3054 is fixedly sleeved with the moving handle 3055. When the size of the pipe support is adjusted by the telescopic pad 3032, the arc hoop 302 and the lower arc hoop 303 need to be hard to support the pipe body, resulting in gaps between pipes of different sizes and the arc surface of the arc hoop. The pressure at the contact point increases, causing wear on the arc hoop and the pipe. Therefore, the telescopic pad 3032 is adapted to fit the pipe through the telescopic property of the telescopic pad 3032, thereby increasing the contact surface and reducing wear. By rotating the moving handle 3055, the moving gear 3054 is driven to rotate, thereby driving the second rack 3053 meshing with the moving gear 3054 to move. The second rack 3053 drives the slide plate 3052 to move, which facilitates the installation of the slider 305 through the movement of the slide plate 3052.

[0027] Reference Figure 1-Figure 8 The column assembly 1 includes a side column 101, an intermediate column 102, a first punching hole 103, a channel steel base column 104 and a channel steel base bottom plate 105. The first punching hole 103 is penetrated through the outer surface of the column assembly 1, and the intermediate column 102 is provided in the middle of the adjacent position of the side column 101; The cross arm assembly 2 includes a bottom cross arm 201, an upper cross arm 202 and a second punching hole 203. A groove is provided in the middle of the top of the bottom cross arm 201, and a slide groove is provided on the front and back sides of the groove. The slide groove and the slide plate 3052 are adapted to each other. The bottom cross arm 201 and the side column 101 are fixedly connected with the angle connector 5, and the bottom cross arm 201 and the middle column 102 are fixedly connected with the angle connector 5. The outer surface of the cross arm assembly 2 is penetrated with a second punching hole 203. The angle connector 5 is fixedly connected to the first punching hole 103 and the second punching hole 203 by bolts. The upper cross arm 202 is fixedly connected to the column assembly 1. The upper cross arm 202 includes a first cross arm 2021 for installing the air duct 6 and a second cross arm 2022 for installing the bridge frame 7. The bottom cross arm 201 is used to install the water pipe 301. The present invention staggers the column assembly 1 and the cross arm assembly 2, and respectively opens a plurality of first punching holes 103 and second punching holes 203 on the column assembly 1 and the cross arm assembly 2, so that the column assembly 1 and the cross arm assembly 2 can be connected at the first punching holes 103 or the second punching holes 203 through corresponding connecting members, thereby improving the installation convenience between the supports and hangers, and can be freely adjusted according to needs or site conditions; The column assembly 1 is divided into two side columns 101 and a middle column 102, the crossarm assembly 2 is divided into a bottom crossarm 201 and an upper crossarm 202, and the upper crossarm 202 is divided into a first crossarm 2021 for installing the air duct 6 and a second crossarm 2022 for installing the bridge 7, and is fixed by the most suitable connecting parts that meet the strength requirements, thereby improving the integration of the support and suspension brackets, saving installation space and not affecting the integrity of the structure.

[0028] Reference Figure 1 , Fig. 9 A channel steel buckle plate 2023 is fixedly connected to the middle part of the outer side of the second cross arm 2022 , a screw rod 2024 is fixedly connected to the middle part of the bottom of the channel steel buckle plate 2023 , and the bridge frame 7 is located above the second cross arm 2022 .

[0029] Reference Figure 1 , Figure 7 A third punching hole 501 is provided at the top of one side of the corner connector 5, and a fourth punching hole 502 is provided at the other side of the top of the corner connector 5. The third punching hole 501 is connected to the first punching hole 103 of the side column 101, and the fourth punching hole 502 is connected to the second punching hole 203 of the bottom cross arm 201, so that the side column 101 and the bottom cross arm 201 are fixedly connected; By vertically placing the side column 101 and the bottom cross arm 201, and then attaching the corner connector 5 to one side of the side column 101 and the bottom cross arm 201, and fixing the third punching hole 501 with the first punching hole 103 of the side column 101 by bolts, and fixing the fourth punching hole 502 with the second punching hole 203 of the bottom cross arm 201 by bolts, the side column 101 and the bottom cross arm 201 are fixedly connected, and the corner connector 5 ensures structural strength while improving installation convenience.

[0030] Reference Figure 1 , Figure 8 A fifth punching hole 503 is provided on the top of both sides of the corner connector 5, and a sixth punching hole 504 is provided on both sides of the top of the corner connector 5. The fifth punching hole 503 is fixedly connected to the middle column 102 by bolts, and the sixth punching hole 504 is fixedly connected to the bottom cross arm 201 by bolts, so that the middle column 102 is fixedly connected to the bottom cross arm 201.

[0031] Reference Figure 1 , Fig. 9A seventh punching hole 505 is provided at the top of the other side of the corner connector 5, and an eighth punching hole 506 is provided on one side of the top of the corner connector 5. The seventh punching hole 505 is fixedly connected to the first punching hole 103 of the side column 101 by bolts, and the eighth punching hole 506 is fixedly connected to the second punching hole 203 of the second cross arm 2022 by bolts, so that the column assembly 1 is fixedly connected to the upper cross arm 202.

[0032] Reference Figure 1 , Figure 6 The diagonal brace assembly 4 includes a first diagonal brace 401, a second diagonal brace 402, a ninth punching hole 403, a first hinge 404 and a second hinge 405. The ninth punching hole 403 is penetrated on the outer surface of the diagonal brace assembly 4. The first hinge 404 and the second hinge 405 are respectively provided at both ends of the diagonal brace assembly 4. The first hinge 404 is respectively connected to the first punching hole 103 of the column assembly 1 and the ninth punching hole 403 of the diagonal brace assembly 4 by bolts, so that the diagonal brace assembly 4 is fixedly connected to the column assembly 1. The second hinge 405 is respectively connected to the ninth punching hole 403 of the diagonal brace assembly 4 and the external structure by bolts, so that the diagonal brace assembly 4 is fixedly connected to the external structure. The second diagonal brace 402 is perpendicular to the cross arm assembly 2. The diagonal brace assembly 4 can be connected to the column assembly 1 through the first hinge 404 according to needs and site conditions to adjust the slope and height of the diagonal brace assembly 4, and connected to the external structure through the second hinge 405 to connect the column assembly 1, the diagonal brace assembly 4 and the external structure. This design structure meets the structural strength requirements, has strong integrity, and is easy to install, and the installation position of the diagonal brace assembly 4 can be easily adjusted.

[0033] Reference Figure 1 , Figure 4 A channel steel base is provided at the top of the column assembly 1, and the channel steel base includes a channel steel base column 104 and a channel steel base bottom plate 105. The channel steel base column 104 is inserted into the column assembly 1, and the channel steel base bottom plate 105 is fixedly connected to the top of the channel steel base column 104, and is an integrated molding structure. The channel steel base bottom plate 105 is fixedly connected to the external structure through anchor bolts.

[0034] Working principle of the present invention: The present invention drives the worm 307 to rotate by rotating the adjusting knob 308 through the bevel gear transmission, and the rotation of the worm 307 drives the first rack 306 to move, thereby driving the slider 305 to move in the groove, and then adjusting the distance between the lower arc hoops 303, and synchronously adjusting the position of the upper arc hoop 302, to fix the water pipe 301, which is conducive to adjusting the size of the pipeline support and facilitating the fixing of pipelines of different specifications. The symmetrically distributed lower arc hoops 303 are driven to move by the worm 307, so that the lower arc hoops 303 move towards or oppositely at the same time, which is convenient for adjusting the size. The size of the pipe is small, and the adjustment steps are simple, which prevents the distribution of the pipe from being disordered due to single operation. At the same time, the worm drive has self-locking property, which is conducive to preventing the size change after adjustment. When the size of the pipe support is adjusted by the upper arc hoop 302 and the lower arc hoop 303 through the telescopic pad 3032, since the arc hoop needs to be hard to support the pipe body, there will be a gap between the pipes of different sizes and the arc surface of the arc hoop, and the pressure at the contact point will increase, causing wear to the arc hoop and the pipe. Therefore, the telescopic pad 3032 is made to fit with the pipe through the telescopic property of the telescopic pad 3032, thereby increasing the contact surface and reducing wear; By staggering the column assembly 1 and the cross arm assembly 2, and respectively opening a plurality of first punching holes 103 and second punching holes 203 on the column assembly 1 and the cross arm assembly 2, the column assembly 1 and the cross arm assembly 2 can be connected at the first punching holes 103 or the second punching holes 203 through corresponding connecting pieces, thereby improving the installation convenience between the supports and hangers, and can be freely adjusted according to needs or site conditions, the column assembly 1 is divided into two side columns 101 and the middle column 102, the cross arm assembly 2 is divided into a bottom cross arm 201 and an upper cross arm 202, and the upper cross arm 202 is divided into a first cross arm 2021 for installing the air duct 6 and a second cross arm 2022 for installing the bridge frame 7, and they are fixed by the most suitable connecting piece that meets the strength requirements, thereby improving the integration of the supports and hangers, saving installation space and not affecting the integrity of the structure; by staggering the column assembly 1 and the cross arm assembly 2, the column assembly 1 is divided into two side columns 101 and the middle column 102, and the cross arm assembly 2 is divided into a bottom cross arm 201 and an upper cross arm 202, and the upper cross arm 202 is divided into a first cross arm 2021 for installing the air duct 6 and a second cross arm 2022 for installing the bridge frame 7, and they are fixed by the most suitable connecting piece that meets the strength requirements, thereby improving the integration of the supports and hangers, saving installation space and not affecting the integrity of the structure; The support 201 is placed vertically, and then the corner connector 5 is attached to one side of the side column 101 and the bottom cross arm 201, and the third punching hole 501 is fixedly connected to the first punching hole 103 of the side column 101 by bolts, and the fourth punching hole 502 is fixedly connected to the second punching hole 203 of the bottom cross arm 201 by bolts, so that the side column 101 and the bottom cross arm 201 are fixedly connected. The corner connector 5 ensures the structural strength while improving the installation convenience; the diagonal brace assembly 4 can be connected to the column assembly 1 through the first hinge 404 according to needs and site conditions, so as to adjust the slope and height of the diagonal brace assembly 4, and is connected to the external structure through the second hinge 405, so as to connect the column assembly 1, the diagonal brace assembly 4 and the external structure. The design structure meets the structural strength requirements, has strong integrity, and is easy to install, and the installation position of the diagonal brace assembly 4 can be conveniently adjusted.

[0035] Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A flexible and rigid lifting combined assembled pipe support hanger, comprising a staggered column assembly (1) and a cross arm assembly (2), characterized in that: It also comprises a pipe fixing assembly (3), wherein the bottom and near the middle of the column assembly (1) are fixedly connected to a cross arm assembly (2), the inner bottom of the cross arm assembly (2) is fixedly connected to the pipe fixing assembly (3), the outer side of the column assembly (1) is fixedly connected to a diagonal brace assembly (4) near the middle, and the outer sides of the cross arm assembly (2) are fixedly connected to corner connectors (5); The pipeline fixing assembly (3) comprises a water pipe (301), an upper arc-shaped hoop (302), a lower arc-shaped hoop (303), a fixing bolt (304), a slider (305), a first rack (306), a worm (307), an adjusting knob (308) and a stop block (309); the upper arc-shaped hoop (302) is movably sleeved on both sides of the top of the water pipe (301); the lower arc-shaped hoop (303) is movably sleeved on both sides of the bottom of the water pipe (301); the upper arc-shaped hoop (302) and the lower arc-shaped hoop (303) are connected to each other by a The lower arc hoop (303) is fixed with a fixing bolt (304), the bottom of the lower arc hoop (303) is fixedly connected with a slider (305), the middle of the bottom of the slider (305) is fixedly connected with a first rack (306), the bottom of the first rack (306) is movably connected with a worm (307), the outer side of the worm (307) is provided with symmetrical threads near the middle, one side of the worm (307) is connected with an adjusting knob (308) through a bevel gear transmission, and the outer sides of both sides of the worm (307) are movably sleeved with limit blocks (309); The lower arc hoop (303) comprises a hoop body (3031) and a telescopic pad (3032); the hoop body (3031) is an arc-shaped structure, and a mounting groove is provided in the middle of the arc-shaped structure, and the telescopic pad (3032) is fixedly connected in the mounting groove; the slider (305) comprises a slider body (3051), a slide plate (3052), a second rack (3053), a moving gear (3054) and a moving handle (3055); the front and back sides of the slider body (3051) are movably connected to the slide plate (3052) near the bottom; one side of the back side of the slide plate (3052) is fixedly connected to the second rack (3053); the side of the second rack (3053) is movably connected to the moving gear (3054); and the moving handle (3055) is fixedly sleeved in the middle of the inner part of the moving gear (3054); The column assembly (1) comprises a side column (101), an intermediate column (102), a first punched hole (103), a channel steel base column (104) and a channel steel base bottom plate (105); the first punched hole (103) is provided through the outer surface of the column assembly (1); and an intermediate column (102) is provided in the middle of adjacent positions of the side columns (101); The cross arm assembly (2) comprises a bottom cross arm (201), an upper cross arm (202) and a second punched hole (203); a groove is provided in the middle of the top of the bottom cross arm (201), and a slide groove is provided inside the front and back sides of the groove, the slide groove and the slide plate are adapted to each other, an angle connector (5) is fixedly connected between the bottom cross arm (201) and the side column (101), an angle connector (5) is fixedly connected between the bottom cross arm (201) and the middle column (102), and the cross arm A second punched hole (203) is formed through the outer surface of the component (2); the corner connector (5) is fixedly connected to the first punched hole (103) and the second punched hole (203) by bolts respectively; the upper cross arm (202) is fixedly connected to the column component (1); the upper cross arm (202) comprises a first cross arm (2021) for installing an air duct (6) and a second cross arm (2022) for installing a bridge frame (7); and the bottom cross arm (201) is used to install a water pipe (301).

2. The assembled pipe support hanger with a flexible and rigid lifting combination according to claim 1 is characterized in that: A channel steel buckle plate (2023) is fixedly connected to the middle portion of the outer side of the second cross arm (2022), a screw rod (2024) is fixedly connected to the middle portion of the bottom of the channel steel buckle plate (2023), and the bridge frame (7) is located above the second cross arm (2022).

3. The assembled pipe support hanger with a flexible and rigid lifting combination according to claim 1 is characterized in that: A third punched hole (501) is provided at the top of one side of the corner connector (5), and a fourth punched hole (502) is provided at the other side of the top of the corner connector (5), the third punched hole (501) is connected to the first punched hole (103) of the side column (101), and the fourth punched hole (502) is connected to the second punched hole (203) of the bottom cross arm (201), so that the side column (101) and the bottom cross arm (201) are fixedly connected.

4. The assembled pipe support hanger with a flexible and rigid lifting combination according to claim 1 is characterized in that: The tops of both sides of the corner connector (5) are provided with fifth punched holes (503), and the tops of both sides of the corner connector (5) are provided with sixth punched holes (504). The fifth punched holes (503) are fixedly connected to the middle column (102) by bolts, and the sixth punched holes (504) are fixedly connected to the bottom cross arm (201) by bolts, so that the middle column (102) is fixedly connected to the bottom cross arm (201).

5. The assembled pipe support hanger with flexible and rigid lifting combination according to claim 1 is characterized in that: A seventh punching hole (505) is provided at the top of the other side of the corner connector (5), and an eighth punching hole (506) is provided at one side of the top of the corner connector (5); the seventh punching hole (505) is fixedly connected to the first punching hole (103) of the side column (101) by means of bolts, and the eighth punching hole (506) is fixedly connected to the second punching hole (203) of the second cross arm (2022) by means of bolts, so that the column assembly (1) is fixedly connected to the upper cross arm (202).

6. The assembled pipe support hanger with a flexible and rigid lifting combination according to claim 1 is characterized in that: The diagonal brace assembly (4) comprises a first diagonal brace (401), a second diagonal brace (402), a ninth punching hole (403), a first hinge (404) and a second hinge (405); the ninth punching hole (403) is provided through the outer surface of the diagonal brace assembly (4); the first hinge (404) and the second hinge (405) are provided at both ends of the diagonal brace assembly (4); the first hinge (404) is connected to the first punching hole (103) of the column assembly (1) and the ninth punching hole (403) of the diagonal brace assembly (4) by bolts, so that the diagonal brace assembly (4) is fixedly connected to the column assembly (1); the second hinge (405) is connected to the ninth punching hole (403) of the diagonal brace assembly (4) and the external structure by bolts, so that the diagonal brace assembly (4) is fixedly connected to the external structure; the second diagonal brace (402) is perpendicular to the cross arm assembly (2).

7. The assembled pipe support hanger with a flexible and rigid lifting combination according to claim 1 is characterized in that: A channel steel base is provided on the top of the column assembly (1), and the channel steel base comprises a channel steel base column (104) and a channel steel base bottom plate (105); the channel steel base column (104) is inserted into the column assembly (1); the channel steel base bottom plate (105) is fixedly connected to the top of the channel steel base column (104) and is an integrally formed structure; the channel steel base bottom plate (105) is fixedly connected to an external structure via anchor bolts.