Fabricated pipeline support hanger for comprehensive pipe rack wiring
By designing a prefabricated pipeline support hanger including a transverse support mechanism, a vertical support mechanism and a fixed mechanism, the problem of the prefabricated pipeline support hanger in the prior art may lead to cracks and dust pollution in the interior of the pipe corridor during installation, and the load-bearing capacity and expansion of the support hanger are improved, with strong adaptability and easy adjustment.
Patent Information
- Application Number
- CN202510703412.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-29
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2045-05-29
AI Technical Summary
During the installation process of existing prefabricated pipeline support hangers, the existing cracks and dust pollution in the pipeline corridor, and the load-bearing capacity is limited, the expansion space and adaptability are insufficient, making it difficult to effectively coordinate the installation conflict between pipelines and support hangers.
A prefabricated pipeline support hanger including a transverse support mechanism, a vertical support mechanism and a fixing mechanism is designed. The transverse support assembly is combined with the isolation assembly, and all transverse support assembly are connected through the vertical support assembly, improving load-bearing capacity and reducing the stress on the side walls of the pipe corridor. The fixing mechanism adjustably connects the isolation assembly to coordinate the installation of the pipeline and the support bracket.
It improves the load-bearing capacity and expansion of the support hanger, avoids damage to the side walls of the pipe corridor, ensures anti-seepage performance, and simplifies the installation and adjustment of the pipeline, which is highly adaptable and easy to adjust.
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Figure CN120212333A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of integrated utility tunnel wiring, and particularly to an assembled pipeline support and hanger for integrated utility tunnel wiring. Background Art
[0002] An underground integrated utility tunnel refers to a structure and its ancillary facilities located below the urban ground surface and used to accommodate two or more types of public facility pipelines or professional pipelines. Incorporating public facility pipelines into the utility tunnel not only avoids the trouble of repeated road excavation due to pipeline laying or maintenance, but also avoids the corrosion of pipelines by soil since the pipelines do not contact the soil and groundwater, thus extending the service life of the pipelines.
[0003] There are various pipelines arranged inside the underground integrated utility tunnel according to planning requirements. Public facility pipelines include electricity, communication (including monitoring lines), radio and television, water supply, drainage, heating, gas, fire pipelines, traffic signals, emergency optical cables, etc. Ancillary facilities include drainage, ventilation, lighting, electrical, communication, fire protection, and safety monitoring systems for maintaining the normal operation of the utility tunnel. Existing assembled pipeline support and hangers generally drill holes inside the utility tunnel and then fix the support and hangers by means of expansion bolts, etc. Cracks may occur inside the utility tunnel during drilling, and there is also the problem of dust pollution. In addition, existing support and hangers are either connected to the inner sidewall of the utility tunnel at one end and suspended at the other end, or suspended on the top of the utility tunnel. The load-bearing capacity of the support and hanger is limited, and the expandable space is limited. It is relatively troublesome to add or subtract pipelines later. In addition, due to the installation accuracy problem of the support and hanger, there may be an installation conflict between the support and hanger and rigid pipelines (such as metal water supply and drainage pipes, etc.). The solutions are either to modify the support and hanger, such as adding pads, reaming holes, etc. to adjust the support height of the support and hanger, or to re-drill holes and reinstall the support and hanger, and the operation is relatively troublesome. Summary of the Invention
[0004] Aiming at the problems existing in the prior art, the purpose of the present invention is to provide an assembled pipeline support and hanger for integrated utility tunnel wiring, which has good expandability and adaptability.
[0005] To achieve the above purpose, the present invention provides the following technical solution: An assembled pipeline support and hanger for integrated utility tunnel wiring, which includes: A lateral support mechanism, including at least one lateral support component and at least one isolation component, and each of the lateral support components corresponds to at least one isolation component. One end of the lateral support component is detachably connected to the inner sidewall of the utility tunnel; the isolation components are arranged at intervals on the lateral support component and are detachably connected; A vertical support mechanism, including at least one vertical support component, the lower end of the vertical support component abuts against the ground of the utility tunnel; the vertical support component is detachably connected to all the lateral support components; At least one fixing mechanism for fixing pipelines, each of the fixing mechanisms corresponding to an isolation component, the fixing mechanism being detachably connected to the isolation component, and the fixing mechanism being adjustable relative to the isolation component.
[0006] After the above settings, by connecting all the transverse support components through the vertical support components, the load-bearing capacity of the transverse support components can be greatly improved. At the same time, the stress on the connection nodes between the transverse support components and the inner side wall of the pipe gallery can also be reduced, avoiding damage to the side wall of the pipe gallery and ensuring the anti-seepage performance of the pipe gallery. In actual use, by flexibly adding isolation components, fixing mechanisms and transverse support components, the expandability of the support hanger can be well improved. In addition, by making the fixing mechanism adjustably connected to the isolation component, the installation conflict between the pipeline and the support hanger can be better coordinated, with strong adaptability and convenient adjustment.
[0007] Preferably, the transverse support component includes two cross beams, the two cross beams being arranged at intervals in the vertical direction, and the isolation component connecting the two cross beams at the same time; a number of first positioning holes for connecting the isolation component and the vertical support component are arranged at intervals along the length direction of the cross beam. The isolation component includes two isolation rods, the two isolation rods being arranged at intervals in the horizontal direction, and the isolation rods being bolted to the cross beam. Both ends of the transverse support component are connected to a vertical support component; the vertical support component includes a vertical beam and a support plate, the support plate being fixedly connected to the bottom of the vertical beam; a number of second positioning holes are arranged at intervals along the vertical direction of the vertical beam, and the second positioning holes are long holes; the vertical beam and the cross beam are locked by bolts connecting the second positioning holes and the first positioning holes. After such a setting, by setting the first positioning holes on the cross beam, it is convenient for the isolation rods to be connected. Connecting a vertical support component to both ends of the transverse support component can well ensure the load-bearing capacity of the transverse support component, and the stress on the connection nodes between the transverse support component and the inner side wall of the pipe gallery can also be smaller. The setting of the support plate can increase the contact area, ensure the stable support of the vertical beam, and is also beneficial to the protection of the pipe gallery floor. Setting the second positioning holes as long holes can well coordinate the problems caused by insufficient flatness of the pipe gallery floor and insufficient installation height of the transverse support component, which is beneficial to assembly. In addition, the structures of the transverse support component, isolation component and vertical support component of the present invention are simple and easy to process.
[0008] Preferably, the transverse support mechanism further includes at least one embedded component, the embedded component being embedded in the side wall of the pipe gallery, each of the embedded components corresponding to at least one transverse support component, and the transverse support component being connected to the embedded component. The transverse support mechanism is connected to the embedded component to realize its connection with the side wall of the pipe gallery, which can avoid the problems of punching holes affecting the strength and waterproofness of the pipe gallery when installing the support hanger, and can also eliminate problems such as dust pollution.
[0009] Preferably, the embedded component includes an embedded plate, a plurality of connecting ribs, at least one internal thread cylinder, and at least one connecting piece. The connecting ribs and the internal thread cylinders are both fixed on the first side of the embedded plate. The inlet end of the internal thread cylinder extends to the second side of the embedded plate, and the first side and the second side are in opposite directions. An end plate is provided on the transverse support assembly, and the end plate abuts against the second side of the embedded plate. The connecting piece passes through the end plate and is threadedly connected to the internal thread cylinder to lock the end plate and the embedded plate. The setting of the internal thread cylinder eliminates the need to open holes in the formwork for fabricating the pipe gallery during the fabrication of the pipe gallery. It only requires plugging the mouth of the internal thread cylinder (without connecting the connecting piece), which is conducive to the fabrication of the pipe gallery.
[0010] Preferably, a bending portion is provided at one end of the connecting rib away from the embedded plate or an anti-pulling member is fixed thereto. A protective sleeve is also sleeved outside the connecting piece. After such a setting, the installation strength of the embedded plate is high, which is conducive to the stability of the support hanger. The setting of the protective sleeve can prevent the connecting piece from being contaminated or even damaged during construction.
[0011] Preferably, the connecting piece is a screw with a head. Alternatively, the connecting piece is a screw rod, a nut is threadedly connected to the screw rod, and a hexagonal column facilitating rotation is provided at the end of the screw rod.
[0012] Preferably, the fixing mechanism includes a base, a plurality of connecting bolts, and at least one hoop member for fixing the pipeline. The hoop members are arranged on the base at intervals and are arranged in a straight line. The base is connected to the isolation assembly through the connecting bolts, and an adjusting long hole for cooperating with the connecting bolts is provided on the isolation assembly or the base. By providing the adjusting long hole, the height of the base can be conveniently adjusted to adapt to the pipeline trend. By providing the hoop members, it can ensure that thicker pipelines are reliably fixed.
[0013] Preferably, two inclined braces are provided oppositely at the bottom of the base, and the inclined braces cooperate to form a socket, and the socket is inserted and matched with the transverse support assembly. By providing the inclined braces, the stability of the fixing mechanism is strengthened.
[0014] Preferably, at least one leveling screw is also screwed on the base. The leveling screw is vertically arranged, and the threaded end of the leveling screw can extend out of the bottom surface of the base and abut against the transverse support assembly. The setting of the leveling screw can disperse the pressure borne by the fixing mechanism to the transverse support assembly. In addition, it can also avoid the problem of the reduction or even loss of the pipeline support force caused by the loosening of the connecting bolts between the base and the isolation assembly.
[0015] Preferably, an expansion rack is detachably connected to part or all of the isolation assemblies. By providing the expansion rack, it can be used to place some thinner pipelines or pipelines with lower positioning requirements (such as plastic pipes with certain flexibility, etc.).
[0016] Compared with the prior art, the beneficial effects of the present invention are: 1. Connecting all the transverse support components through the vertical support components can significantly improve the load-bearing capacity of the transverse support components. At the same time, it can also reduce the stress on the connection nodes between the transverse support components and the inner sidewall of the pipe gallery, avoid damaging the sidewall of the pipe gallery, and ensure the anti-seepage performance of the pipe gallery. During actual use, by flexibly adding isolation components, fixing mechanisms, and transverse support components, the expandability of the support hanger can be well improved. In addition, by enabling the fixing mechanism to be adjustably connected to the isolation component, the installation conflict between the pipeline and the support hanger can be better coordinated, with strong adaptability and convenient adjustment.
[0017] 2. The transverse support mechanism is connected to the embedded component to achieve its connection with the sidewall of the pipe gallery, which can avoid the problems of punching holes during the installation of the support hanger affecting the strength and waterproofing of the pipe gallery, and can also eliminate problems such as dust pollution.
[0018] 3. The isolation frame and the cross beam divide into multiple spaces. The corresponding number of fixing mechanisms can be installed according to the plan. The installation position of the fixing mechanism is free and has strong applicability. At the same time, when re-planning the pipeline according to the development in the future, an expansion frame can be installed. Thinner pipelines can be arranged in layers between the expansion frame and the isolation frame or between the upper end of the isolation frame and the cross beam, with high expandability. Description of the Drawings
[0019] Figure 1 It is a schematic diagram of the present invention.
[0020] Figure 2 It is a partial exploded structural schematic diagram of the embedded component, cross beam, and vertical beam.
[0021] Figure 3 It is a schematic diagram of the embedded component (the connecting piece and the protective sleeve are hidden).
[0022] Figure 4 It is a connection schematic diagram of the fixing mechanism and the isolation component.
[0023] Figure 5 It is a connection schematic diagram of the fixing mechanism and the cross beam.
[0024] Description of the Main Component Symbols: Transverse support component 10, cross beam 11, first positioning hole 12, end plate 13; Embedded component 20, embedded plate 21, connecting rib 22, internal thread cylinder 23, anti-pulling part 25, screw rod 26, nut 27, hexagonal column 28, protective sleeve 29; Vertical support component 30, vertical beam 31, support plate 32, second positioning hole 33; Isolation component 40, isolation rod 41, third positioning hole 42, adjustment long hole 43; Fixing mechanism 50, base 51, diagonal brace 52, connecting bolt 53, leveling screw 54, hoop part 55; Expansion frame 60. Specific implementation mode
[0025] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0026] Please refer to Figures 1-5 , this embodiment provides an assembled pipeline support and hanger for integrated pipe gallery wiring, which includes a transverse support mechanism, a vertical support mechanism, a fixing mechanism 50, and an expansion frame 60.
[0027] The transverse support mechanism includes at least one embedded component 20, at least one transverse support component 10, and at least one isolation component 40. The transverse support components 10 are arranged at intervals in the vertical direction. Each transverse support component 10 corresponds to at least one embedded component 20 and at least one isolation component 40. The isolation components 40 are arranged at intervals on the transverse support components 10. In this case, each transverse support component 10 corresponds to two groups of embedded components 20, that is, each cross beam 11 corresponds to a group of embedded components 20, and three isolation components 40 can be installed on each transverse support component 10.
[0028] The transverse support component 10 includes two cross beams 11, which are arranged at intervals in the vertical direction. A number of first positioning holes 12 for connecting the isolation component 40 and the vertical support component 30 are arranged at intervals along the length direction of the cross beam 11. The first positioning holes 12 are round holes or long holes. When the first positioning holes 12 are long holes, the length direction thereof is parallel to the length direction of the cross beam 11, so as to coordinate the installation errors in the left-right direction (the width direction of the pipe gallery). An end plate 13 is provided at one end of the cross beam 11, and the end plate 13 is connected to the embedded component 20.
[0029] The embedded component 20 is embedded in the side wall of the pipe gallery. The embedded component 20 includes an embedded plate 21, a plurality of connecting ribs 22, two internal thread cylinders 23 and two connecting pieces, and the internal thread cylinders 23 correspond to the connecting pieces one by one. The connecting ribs 22 and the internal thread cylinders 23 are both fixed (such as welded) on the first side of the embedded plate 21, and the inlet ends of the internal thread cylinders 23 extend to the second side of the embedded plate 21. The first side and the second side are in opposite directions to ensure that the connecting pieces can be connected to them. A bending part is arranged at the end of the connecting rib 22 far from the embedded plate 21 or an anti-pulling part 25 is fixed. The anti-pulling part 25 can be a short steel bar, which is directly welded on the connecting rib 22. The end plate 13 abuts against the second side of the embedded plate 21. After the connecting piece passes through the end plate 13, it is threadedly connected with the internal thread cylinder 23 to lock the end plate 13 and the embedded plate 21. The connecting piece can be a screw with a head, so its connection with the internal thread cylinder 23 is simple and convenient. As an alternative, the connecting piece is a screw rod 26. A nut 27 is threadedly connected to the screw rod 26, and a hexagonal column 28 for easy rotation is arranged at the end of the screw rod 26. When connecting the internal thread cylinder 23, one end of the screw rod 26 can be first screwed into the internal thread cylinder 23, and then the nut 27 is screwed on. One advantage of such an arrangement is that the depth of the internal thread cylinder 23 can be effectively utilized, and then the nut 27 is screwed on, that is, the end plate 13 can be reliably locked on the embedded plate 21. In addition, a protective sleeve 29 can be sleeved on the connecting piece to protect it.
[0030] The vertical support mechanism is used to support the horizontal support mechanism. The vertical support mechanism includes at least one vertical support component 30. Preferably, two groups of vertical support components 30 are provided, corresponding to the two ends of the horizontal support component 10 respectively, and the vertical support component 30 connects all the horizontal support components 10. Specifically, the vertical support component 30 includes a vertical beam 31 and a support plate 32. The support plate 32 is fixedly connected to the bottom of the vertical beam 31. The support plate 32 is placed on the ground of the pipe gallery. Of course, it is better to fix the support plate 32 to the ground of the pipe gallery. A plurality of second positioning holes 33 are arranged at intervals along the vertical direction on the vertical beam 31. The second positioning holes 33 are long holes. The vertical beam 31 and the cross beam 11 are locked by bolts connecting the second positioning holes 33 and the first positioning holes 12, that is, the bolts pass through the second positioning holes 33 and the first positioning holes 12 in sequence and then are tightened. A gasket can be added between the cross beam 11 and the vertical beam 31 to adjust the installation error. The setting of the second positioning holes 33 is also for better coordinating the installation error and avoiding post-processing of each component.
[0031] After the embedded component 20, the horizontal support component 10 and the vertical support component 30 are assembled, a support frame with strong bearing capacity and reliable installation can be obtained. Different numbers of horizontal support components 10 can be assembled according to actual wiring needs.
[0032] The isolation component 40 includes two isolation rods 41 which are vertically arranged and spaced horizontally. A number of third positioning holes 42 are arranged at intervals along the length direction of the isolation rods 41. The isolation rods 41 are connected to the cross beam 11 by bolts passing through the third positioning holes 42 and the first positioning holes 12 and being locked. The isolation rods 41 are simultaneously connected to two cross beams 11 in the corresponding transverse support component 10. In addition, the upper end of the isolation rod 41 extends beyond the upper cross beam 11 in the corresponding transverse support component 10. In this way, an isolation station can be formed between the two isolation rods 41 and this cross beam 11, which can be used to place smaller pipelines.
[0033] The fixing mechanism 50 is used to fix relatively thick pipelines, etc. At least one fixing mechanism 50 is provided, and each fixing mechanism 50 corresponds to an isolation component 40. The fixing mechanism 50 is adjustably connected to the isolation component 40 and can be locked with it. Specifically, the fixing mechanism 50 includes a base 51, two diagonal braces 52, a number of connecting bolts 53, at least one leveling screw 54, and at least one hoop 55 for fixing pipelines. The base 51 is connected to the two isolation rods 41 simultaneously by the connecting bolts 53. An adjusting long hole 43 matching the connecting bolts 53 is provided on the isolation component 40 or the base 51. Preferably, some of the third positioning holes 42 on the isolation rods 41 are set as the adjusting long holes 43, and the length direction of the adjusting long holes 43 is the vertical direction. After such setting, the height of the base 51 can be flexibly adjusted and locked. The diagonal braces 52 are arranged at the bottom of the base 51. The two diagonal braces 52 are arranged oppositely and cooperate to form a socket with a width adapted to the width of the cross beam 11. This socket is inserted into the cross beam 11 near it and below it, and such setting is to improve the stability.
[0034] The leveling screws 54 are arranged vertically. The leveling screws 54 are threadedly connected to the base 51, and the threaded ends of the leveling screws 54 can extend out of the bottom surface of the base 51 and abut against the cross beam 11 below it. The setting of the leveling screws 54 can adjust the flatness of the base 51, and can also make the pressure borne by the fixing mechanism 50 be dispersed to the transverse support component 10. In addition, it can also avoid the problem that the connecting bolts 53 between the base 51 and the isolation rods 41 become loose, resulting in a reduction or even loss of the supporting force for the pipeline.
[0035] The hoops 55 are arranged at intervals above the base 51 and are arranged in a straight line. The hoops 55 are preferably circular pipe clamps. By setting the hoops 55, it can ensure that relatively thick pipelines are fixed reliably.
[0036] An extension frame 60 is connected to some or all of the isolation components 40 by bolts. The number of extension frames 60 provided on each isolation component 40 can be different. By setting the extension frame 60, it can be used to place some thinner pipelines or pipelines with lower positioning requirements (such as plastic pipes with certain flexibility, etc.).
[0037] The working principle of the present invention is as follows: Before pouring the precast pipe gallery or prefabricated pipe gallery in the early stage, the embedded plate 21 is fixed inside the steel bar frame of the pipe gallery through the connecting bar 22, and the bending part or the anti-pulling part 25 increases the contact area at the rear end of the connecting bar 22, making it difficult for the embedded plate 21 to fall off. When the embedded component 20 is embedded, the connecting piece can be not connected first, and the internal thread cylinder 23 can be temporarily blocked, which can avoid drilling holes in the formwork for pouring the pipe gallery. As another embodiment, the connecting piece can pass through the formwork and be connected to the internal thread cylinder 23 before pouring the pipe gallery, which can avoid the embedded plate 21 being buried inside the concrete. By sleeving the connecting piece with the protective sleeve 29, the connecting piece can be prevented from being contaminated.
[0038] The vertical beam 31 is fixed or erected on the ground of the pipe gallery, and then the vertical beam 31 is fixed to the horizontal beam through bolts. The setting of the second positioning hole 33 can offset the installation error in the up and down direction. In addition, an appropriate amount of gaskets can be added between the cross beam 11 and the vertical beam 31 to offset the installation error in the front and back direction (along the depth direction of the pipe gallery), facilitating the fixed installation of the vertical beam 31 and the cross beam 11. Subsequently, according to the planning arrangement, the corresponding number of isolation rods 41 is prepared. The isolation rods 41 are installed between two vertically adjacent cross beams 11. The upper end of the isolation rod 41 is higher than the upper cross beam 11 connected thereto to separate the upper end of the cross beam 11, and pipelines can be placed in isolation. A fixing mechanism 50 is placed between two horizontally adjacent isolation rods 41. After being adjusted in height and leveled, thicker pipes such as water pipes or steam pipes can be fixed in the hoop member 55. Thinner pipes such as cables are placed in the space separated by the upper end of the isolation rod 41 and the cross beam 11 or on the extension frame 60. When new pipelines are added due to subsequent planning, extension frames and / or fixing mechanisms 50 can be added to achieve fixation or isolation.
[0039] The above are only the embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent structure or equivalent process transformation made by using the description and drawings of the present invention, or directly or indirectly applied to other related technical fields, shall be equally included in the patent protection scope of the present invention.
Claims
1. An assembled pipeline support hanger for integrated pipe gallery wiring, characterized in that, Comprising: A lateral support mechanism, including at least one lateral support component and at least one isolation component, and each said lateral support component corresponds to at least one isolation component. One end of the lateral support component is detachably connected to the inner side wall of the pipe gallery; the isolation components are arranged at intervals on the lateral support component and are detachably connected; A vertical support mechanism, including at least one vertical support component, the lower end of the vertical support component abuts against the ground of the pipe gallery; the vertical support component is detachably connected to all the lateral support components; At least one fixing mechanism for fixing pipelines, each said fixing mechanism corresponds to one isolation component, the fixing mechanism is detachably connected to the isolation component, and the fixing mechanism is adjustable relative to the isolation component.
2. The assembled pipeline support hanger for integrated pipe gallery wiring according to claim 1, characterized in that: The lateral support component includes two cross beams, and the two cross beams are arranged at intervals vertically; a number of first positioning holes for connecting the isolation component and the vertical support component are arranged at intervals along the length direction on the cross beam; The isolation component includes two isolation rods, and the two isolation rods are arranged at intervals horizontally, and the isolation rod is bolted to the cross beam; Both ends of the lateral support component are connected to a vertical support component; the vertical support component includes a vertical beam and a support plate, and the support plate is fixedly connected to the bottom of the vertical beam; a number of second positioning holes are arranged at intervals vertically on the vertical beam, and the second positioning holes are long holes; the vertical beam and the cross beam are locked by bolts connecting the second positioning holes and the first positioning holes.
3. The assembled pipeline support hanger for integrated pipe gallery wiring according to claim 1, wherein: The lateral support mechanism further includes at least one embedded component, and the embedded component is embedded in the side wall of the pipe gallery, and each said embedded component corresponds to at least one lateral support component, and the lateral support component is connected to the embedded component.
4. The prefabricated pipeline support hanger for integrated pipe gallery wiring according to claim 3, characterized in that: The embedded component includes an embedded plate, a number of connecting ribs, at least one internal thread cylinder and at least one connecting piece. The connecting ribs and the internal thread cylinder are both fixed on the first side of the embedded plate, and the inlet end of the internal thread cylinder extends to the second side of the embedded plate, and the first side and the second side are in opposite directions; a end plate is provided on the lateral support component, the end plate abuts against the second side of the embedded plate, and the connecting piece passes through the end plate and is threadedly connected to the internal thread cylinder to lock the end plate and the embedded plate.
5. The prefabricated pipeline support hanger for integrated pipe gallery wiring according to claim 4, characterized in that: One end of the connecting rib away from the embedded plate is provided with a bending part or fixed with an anti-pulling piece; a protective sleeve is also sleeved outside the connecting piece.
6. The prefabricated pipeline support hanger for integrated pipe gallery wiring according to claim 4, characterized in that: The connecting piece is a screw with a head, or the connecting piece is a screw rod, a nut is threadedly connected to the screw rod, and a hexagonal column for easy rotation is provided at the end of the screw rod.
7. The prefabricated pipeline support hanger for integrated pipe gallery wiring according to claim 1, characterized in that: The fixing mechanism includes a base, a number of connecting bolts and at least one hoop for fixing pipelines. The hoops are arranged at intervals on the base and are arranged in a straight line; the base is connected to the isolation component through the connecting bolts, and an adjusting long hole for cooperating with the connecting bolts is provided on the isolation component or the base.
8. The prefabricated pipeline support hanger for integrated pipe gallery wiring according to claim 7, characterized in that: Two inclined supports are provided oppositely at the bottom of the base, and the inclined supports cooperate to form a socket, and the socket is in plug-in cooperation with the lateral support component.
9. The prefabricated pipeline support hanger for integrated pipe gallery wiring according to claim 7, characterized in that: At least one leveling screw is also screwed on the base, the leveling screw is arranged vertically, and the threaded end of the leveling screw can extend out of the bottom surface of the base and abut against the lateral support component.
10. The prefabricated pipeline support hanger for integrated pipe gallery wiring according to claim 1, characterized in that: An expansion frame is detachably connected to some or all of the isolation components.
Citation Information
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