Municipal high-temperature water heating pipeline mounting bracket
Technical Field
The utility model relates to the field of pipeline support, in particular to a municipal high-temperature water heating pipeline mounting bracket.
Background
The pipeline is a device for conveying gas, liquid or fluid with solid particles, which is formed by connecting pipes, pipe connectors, valves and the like, and is widely used mainly in water supply, water discharge, heat supply, gas supply, long-distance petroleum and natural gas conveying, agricultural irrigation, hydraulic engineering and various industrial devices, and the fluid can flow from a high pressure position to a low pressure position of the pipeline after being pressurized by a blower, a compressor, a pump, a boiler and the like and can also be conveyed by utilizing the pressure or gravity of the fluid.
Municipal high-temperature water is transported through a pipeline, the pipeline part can be higher than the ground position and is required to be supported through a support when being installed, the temperature of the outer side of the high-temperature water transportation pipeline is higher, the temperature can be conducted along the support through the contact position of the support and the pipeline, the position of a connecting bolt is easily heated, the service life of the bolt is influenced, and the support stability is reduced, so that a device is required to solve the problem.
Disclosure of utility model
The utility model aims to provide a municipal high-temperature water heating pipeline mounting bracket to solve the problems in the background technology.
In order to achieve the above purpose, the technical scheme is that the municipal high-temperature water heating pipeline mounting bracket comprises a U-shaped frame, a supporting mechanism which is convenient for supporting the U-shaped frame is arranged at the lower end of the U-shaped frame, a first arc-shaped block is fixedly arranged at the top end of the U-shaped frame, a second arc-shaped block is arranged at the top end of the first arc-shaped block, extension blocks are arranged on the outer sides of the first arc-shaped block and the second arc-shaped block, the extension blocks are fixed through bolts, a clamping mechanism which is convenient for clamping a pipeline is arranged on the inner sides of the first arc-shaped block and the second arc-shaped block, the clamping mechanism comprises a heat insulation plate, a movable rod and a spring, the movable rod is movably inserted and arranged on the first arc-shaped block and the second arc-shaped block, the heat insulation plate is fixed on one side of the movable rod, the spring is fixed between the movable block and the first arc-shaped block and the second arc-shaped block, the shock absorption effect is achieved through friction force matching with the spring, and when the pipeline is clamped between the heat insulation plates, the connection stability and the service life of the first arc-shaped block and the second arc-shaped block are ensured through blocking the heat of the heat outside the heat.
Preferably, the supporting mechanism comprises a hollow rod, a first screw rod, an extension disc, a positioning rod, a positioning ring, a second screw rod, a supporting rod, a sleeve and a bottom plate, wherein the supporting rod is fixed at the center of the top end of the bottom plate, the first screw rod is fixed at the top end of the supporting rod, the hollow rod is movably sleeved outside the first screw rod, the top end of the hollow rod is fixed at the lower end of the U-shaped frame, the sleeve is sleeved outside the first screw rod through threads, the extension disc is fixed outside the hollow rod in a surrounding manner, the positioning rod is fixed at the lower end of the extension disc, the positioning rod is provided with two positioning rods which are symmetrically arranged at the two sides of the lower end of the extension disc, the positioning ring is fixed outside the supporting rod, the second screw rod is arranged on the bottom plate in a threaded manner through threads in a penetrating manner, the four positioning rings are respectively arranged at the four corners of the bottom plate, the position of the second screw rod can be adjusted through rotating the second screw rod during use, the bottom plate is conveniently and stably arranged on the inclined surface, thus the uneven terrain is applicable, and meanwhile the sleeve can be extruded to move upwards along the first screw rod, and reversely rotate to enable the hollow rod to move downwards under the action of the U-shaped frame conveniently.
Preferably, the heat insulation plate is high temperature resistant rubber.
Preferably, a friction force for preventing the movable rod from moving is arranged between the movable rod and the first arc-shaped block and between the movable rod and the second arc-shaped block.
Preferably, the top end of the sleeve is tightly attached to the lower end of the hollow rod.
Preferably, two positioning rings are arranged and symmetrically arranged on two sides of the supporting rod, and the lower end of the positioning rod movably penetrates through the positioning rings.
Compared with the prior art, the utility model has the beneficial effects that:
The utility model plays a role in damping by friction force matched with the spring, clamps the pipeline at the position between the heat insulation plates when in use, at the moment, the heat outside the pipeline is blocked by the heat insulation plates, the stability and the service life of a connecting bolt between the first arc-shaped block and the second arc-shaped block are ensured, the lower end position of the second screw can be adjusted by rotating the second screw when in use, the bottom plate is conveniently and stably arranged on an inclined plane, thus being suitable for uneven terrain, simultaneously, the hollow rod can be extruded to move upwards along the first screw by rotating the sleeve, and the hollow rod can move downwards under the action of gravity by rotating reversely, so that the height of the U-shaped frame can be conveniently adjusted.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a municipal high-temperature water heating pipeline mounting bracket;
FIG. 2 is a cross-sectional view of a municipal high-temperature water heating pipeline mounting bracket of the utility model;
fig. 3 is an enlarged schematic view of a municipal high-temperature water heating pipeline mounting bracket A.
The device comprises a U-shaped frame, a first arc-shaped block (1), a second arc-shaped block (3), a heat insulation plate (4), an extension block (5), a movable rod (6), a spring (7), a hollow rod (8), a hollow rod (9), a bottom plate (10), a second screw rod (11), a support rod (12), a positioning ring (13), a positioning rod (14), an extension disc (15), a sleeve (16) and a first screw rod.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the utility model provides a municipal high-temperature water heating pipeline mounting bracket, which comprises a U-shaped frame 1, wherein a supporting mechanism for conveniently supporting the U-shaped frame 1 is arranged at the lower end of the U-shaped frame 1, a first arc-shaped block 2 is fixedly welded at the top end of the U-shaped frame 1, a second arc-shaped block 3 is arranged at the top end of the first arc-shaped block 2, an extension block 5 is integrally formed at the outer sides of the first arc-shaped block 2 and the second arc-shaped block 3, the extension blocks 5 are fixed through bolts, a clamping mechanism for conveniently clamping a pipeline is arranged at the inner sides of the first arc-shaped block 2 and the second arc-shaped block 3, the clamping mechanism comprises a heat insulation plate 4, a movable rod 6 and a spring 7, the movable rod 6 is movably inserted on the first arc-shaped block 2 and the second arc-shaped block 3, the heat insulation plate 4 is fixed on one side of the movable rod 6 through bolts, the heat insulation plate 4 is high-temperature-resistant rubber, the spring 7 is fixedly welded between the movable rod 6 and the first arc-shaped block 2 and the second arc-shaped block 3, friction force for preventing the movement of the movable rod 6 is arranged between the movable rod 6 and the first arc-shaped block 2 and the second arc-shaped block 3, the friction force is matched with the spring 7 through friction force, and the friction force is used for preventing the pipeline from being used for guaranteeing the service life of the pipeline between the first arc-shaped block and the heat insulation plate and the outer side 4 and the first arc-shaped block.
The supporting mechanism comprises a hollow rod 8, a first screw rod 16, an extension disc 14, a positioning rod 13, a positioning ring 12, a second screw rod 10, supporting rods 11, sleeves 15 and a bottom plate 9, wherein the supporting rods 11 are fixed at the center position of the top end of the bottom plate 9 through bolts, the first screw rod 16 is welded and fixed at the top end of the supporting rods 11, the hollow rod 8 is movably sleeved outside the first screw rod 16, the top end of the hollow rod 8 is welded and fixed at the lower end of the U-shaped frame 1, the sleeves 15 are sleeved outside the first screw rod 16 through threads, the top end of the sleeves 15 is tightly attached to the lower end of the hollow rod 8, the extension disc 14 is fixed outside the hollow rod 8 in a surrounding and welding manner, the positioning rod 13 is welded and fixed at the lower end of the extension disc 14, two positioning rods 13 are symmetrically arranged at the two sides of the lower end of the extension disc 14, the positioning ring 12 is welded and fixed at the outer side of the supporting rods 11, the two positioning rings 12 are symmetrically arranged at the two sides of the supporting rods 11, the lower end of the positioning rod 13 movably penetrates through the positioning ring 12, the second screw rod 10 is threaded and is inserted on the bottom plate 9, the four second screw rods 10 are respectively arranged at the four corners of the bottom plate 9, and can be adjusted by rotating the second screw rod 10, namely the second screw rod 10 is tightly attached to the lower end of the hollow rod 8, namely the hollow rod 8 is conveniently rotated and can move along the hollow rod 8, namely the hollow rod 8 is conveniently and can move upwards, and can conveniently move along the height-shaped frame 8, namely the hollow rod is adjusted to move upwards, the height is conveniently and can move upwards move the height is the height-level-adjusted to the height-level rod 8.
The working principle is that the friction force is matched with the spring 7 to play a role in damping, the pipeline is clamped between the heat insulation plates 4 when the U-shaped support is used, heat outside the pipeline is blocked by the heat insulation plates 4, stability and service life of a connecting bolt between the first arc-shaped block 2 and the second arc-shaped block 3 are guaranteed, the lower end position of the second screw 10 can be adjusted by rotating the second screw 10 when the U-shaped support is used, the bottom plate 9 is conveniently and stably arranged on an inclined surface, uneven terrain is suitable, meanwhile, the hollow rod 8 can be extruded to move upwards along the first screw 16 by rotating the sleeve 15, the hollow rod 8 can move downwards under the action of gravity by reverse rotation, and the height of the U-shaped support 1 can be conveniently adjusted.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.