CN209991001U - Suspension pipe clamp mechanism of anti-seismic support hanger - Google Patents
Suspension pipe clamp mechanism of anti-seismic support hanger Download PDFInfo
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- CN209991001U CN209991001U CN201920452604.8U CN201920452604U CN209991001U CN 209991001 U CN209991001 U CN 209991001U CN 201920452604 U CN201920452604 U CN 201920452604U CN 209991001 U CN209991001 U CN 209991001U
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Abstract
The utility model discloses a pipe clamp mechanism suspends in midair of antidetonation gallows belongs to building antidetonation support field, hang the piece and set up the trapezoidal piece that hangs above the piece at shape of a hoof including shape of a hoof, trapezoidal piece that hangs erects the outside that piece was hung to shape of a hoof, the middle part setting of trapezoidal piece lower extreme both sides of hanging all is provided with horizontal through-hole, shape of a hoof hangs the middle part of piece upper end both sides and all is provided with horizontal through-hole, connects at this horizontal through-hole department between them through the connection spiral shell select that link up, it will install the pipe fitting restriction inside it with shape of a hoof to connect spiral shell select, the intermediate position at trapezoidal piece top of hanging is provided with the mounting hole. The suspension pipe clamp mechanism adopts a structure combining the horseshoe-shaped suspension piece and the trapezoidal suspension piece, and has the characteristics of simple manufacture, stable structure and good anti-seismic effect.
Description
Technical Field
The utility model belongs to building antidetonation support field, in particular to pipe clamp mechanism suspends in midair of antidetonation gallows.
Background
The research of the electromechanical earthquake-resistant support system of the building starts from the United states in the early 1970 s, and the electromechanical equipment of the modern high-rise building interior clothes according to western earthquake-prone zones is as follows: the electromechanical earthquake-resistant support system of the building is developed according to the earthquake-resistant requirements of a water supply and drainage system, a building electrical system, a gas pipeline system, a consumption pipeline system, a ventilation and air-conditioning system project, an elevator installation system, a building intelligent system and the like.
In modern building construction, the building earthquake-resistant technology is added, so that the earthquake-resistant performance of the building body is improved, and the building still can be kept stable and stable under the existing earthquake force. As is well known, when an earthquake occurs, the proportion of secondary casualties caused by secondary injuries (such as fire, falling objects, leakage and the like) caused by falling of electromechanical equipment such as electric wires, pipelines, fire-fighting systems and the like accounts for more than half of casualties, and as the earthquake force causes failure or falling of the fire-fighting systems, the water supply systems and the alarm systems, larger casualties are caused.
Therefore, on the basis that a building body has high-performance earthquake resistance, the earthquake resistance of electromechanical equipment must be implemented in a matched mode, the use of an earthquake-resistant support is a reliable guarantee for the earthquake resistance of the electromechanical equipment, the existing common method is to connect profile steel directly through bolts or connect profile steel to a wall through angle-shaped supports, and through the connection mode, when the vibration occurs between the support and the wall, the bolts or the support are subjected to impact force generated by the vibration and cannot be effectively buffered, so that the stress of the connection part is overlarge, and under the condition, the support is easy to loosen, deform, corrode and age, further fracture is caused, and the reliability and the service life of the support are seriously influenced.
Disclosure of Invention
An object of the utility model is to provide a pipe clamp mechanism suspends in midair of antidetonation gallows to solve the technical problem that pipe clamp mechanism structural strength is poor, the shock resistance is weak and difficult installation of suspending in midair of prior art antidetonation gallows.
In order to achieve the above purpose, the technical solution of the present invention is as follows:
the utility model provides a pipe clamp mechanism suspends in midair of antidetonation gallows, hangs the piece and sets up the trapezoidal piece that hangs in shape of a hoof top including shape of a hoof, trapezoidal piece that hangs erects the outside that the piece was hung to shape of a hoof, the middle part setting of trapezoidal piece lower extreme both sides all is provided with horizontal through-hole, the middle part that piece upper end both sides were hung to shape of a hoof all is provided with horizontal through-hole, connects through-bolt through-hole department through the connection bolt that link up between these two, it hangs the piece with shape of a hoof and restricts inside the installation pipe fitting to connect the bolt, the intermediate position at trapezoidal piece top of hanging is provided with the mounting hole.
Furthermore, the trapezoid hanging piece and the horseshoe-shaped hanging piece are both provided with an electro-galvanizing layer or a hot dipping layer. The corrosion resistance is improved.
Further, the thickness of the electro-galvanizing layer is more than or equal to 8 um; the thickness of the hot dip galvanizing layer is more than or equal to 55 mu m.
Furthermore, an elastic rubber ring is arranged on the inner side of the horseshoe-shaped hanging piece.
Furthermore, the surface of the elastic rubber ring is provided with a stripe or rhombus pattern structure. Improving friction force, increasing elasticity and buffering action.
Furthermore, the groove depth of the stripe or rhombus pattern structure is more than or equal to 0.5 mm. The longitudinal or transverse friction is improved.
Furthermore, the elastic rubber ring is provided with an outward flange, and the elastic rubber ring is tightly attached to the horseshoe-shaped hanging piece through the flange. The installation and the replacement operation are convenient.
After the scheme is adopted, the utility model discloses contrast prior art has following beneficial benefit:
this pipe clamp mechanism suspends in midair adopts the structure that a piece and trapezoidal piece combination of hanging to hang of shape of a hoof, has simple manufacture, and the characteristics that the structure is firm hang a setting in the outside that a piece was hung to shape of a hoof with trapezoidal, can prevent to rock the terminal closed angle of trapezoidal piece of hanging and damage the body, when connecting horizontal through-hole through connecting the spiral shell select, has the convenient efficient characteristics of construction.
Drawings
Fig. 1 is a schematic view of the overall structure of the preferred embodiment.
Fig. 2 is a schematic view of the installation structure of the preferred embodiment.
Fig. 3 is a schematic view of the integral hoisting structure of the preferred embodiment.
Detailed Description
The present invention will be described in further detail with reference to the following drawings and examples:
referring to fig. 1 and 2, a suspension pipe clamp mechanism of an anti-seismic support hanger, including horseshoe hanger 31 and trapezoidal hanger 32 of setting above horseshoe hanger 31, trapezoidal hanger 32 erects in the outside of horseshoe hanger 32, the middle part of trapezoidal hanger 32 lower extreme both sides sets up and all is provided with horizontal through-hole, the middle part of horseshoe hanger 31 upper end both sides all is provided with horizontal through-hole, connect through-hole connection bolt 33 that link up in these horizontal through-hole departments between them, it will install pipe fitting 4 restriction inside with horseshoe hanger 31 to connect bolt 33, the intermediate position at trapezoidal hanger 32 top is provided with mounting hole 34, can connect vertical pull rod 1 through bolt through mounting hole 34, be used for the operation of hanging to the building.
The horseshoe-shaped hanging piece 31 and the trapezoid hanging piece 32 are both formed by twisting strip-shaped flat steel, the wall thickness of the strip-shaped flat steel is more than or equal to 3mm, and the surfaces of the horseshoe-shaped hanging piece 31 and the trapezoid hanging piece 32 are subjected to electro-galvanizing treatment or hot-dip galvanizing treatment, so that the surfaces of the horseshoe-shaped hanging piece and the trapezoid hanging piece are smoother and more wear-resistant, the requirements of lower replacement frequency and better surface treatment on the products are met, and the corrosion resistance is also improved; the thickness of the electro-galvanizing layer is more than or equal to 8um, and the thickness of the hot dip galvanizing layer is more than or equal to 55 mu m.
The elastic rubber ring 35 is arranged on the inner side of the horseshoe-shaped hanging piece 31, the elastic rubber ring 35 is provided with an outward flange, the elastic rubber ring 35 can be tightly attached to the horseshoe-shaped hanging piece 31 through the flange, installation and replacement operation are convenient, a strip-shaped or diamond-shaped pattern structure with the groove depth larger than or equal to 0.5mm is arranged on the surface of the elastic rubber ring, transverse or longitudinal friction force can be improved, elasticity and buffering effects are increased, and a protection effect is achieved on the pipe fitting 4.
When the installation is used, according to the diameter of pipe fitting, 31 and trapezoidal piece 32 of hanging are hung to the shape of a hoof that preparation or selection correspond, through trapezoidal mounting hole 34 that hangs piece 32, can carry out the gallows of vertical direction, through one side or both sides of connecting the bolt 33, can connect the gallows of lateral direction, place pipe fitting 4 in the inside that the shape of a hoof hung 31, fix through connecting bolt 33, it is high-efficient convenient when the installation is used.
Referring to fig. 3, when the actual installation, the perpendicular pull rod mechanism 1 of antidetonation gallows, its upper end is connected through expansion bolt shell and building, and its lower extreme passes through mounting hole 34 and connects the utility model discloses a pipe clamp mechanism 3 will need the body 4 of installation in midair of antidetonation gallows connects, in one side of suspending pipe clamp mechanism 3 in midair, connects side pull rod mechanism 2 through connecting the spiral shell selection 33, and the upper end of side pull rod mechanism 2 is connected through expansion bolt shell and building to through perpendicular pull rod mechanism 1, suspend pipe clamp mechanism 3 in midair, side pull rod mechanism 2 has constructed a triangle-shaped structure firm relatively with the building, has improved this antidetonation gallows's shock resistance greatly.
The utility model relates to a pipe clamp mechanism suspends in midair of antidetonation gallows has caused the natural disasters of very serious wound for society and people to typhoon, tsunami, earthquake etc. that frequently take place all over the world in recent years, a simple structure is provided, simple to operate factor of safety is high, with low costs, bearing capacity is strong, be applicable to the cable testing bridge of various specifications, warm anti-seismic support pivot of hoist and mount such as pipeline, fire control pipeline, electric power spool, the antidetonation grade has been improved greatly, the security of hoist and mount has been strengthened, and the reliability.
Claims (7)
1. The utility model provides a pipe clamp mechanism suspends in midair of antidetonation gallows which characterized in that: hang piece and set up the trapezoidal piece that hangs above hanging piece in shape of a hoof including shape of a hoof, trapezoidal hanging piece erects the outside that piece was hung to shape of a hoof, the middle part setting that trapezoidal hanging piece lower extreme both sides all is provided with horizontal through-hole, the middle part that piece upper end both sides were hung to shape of a hoof all is provided with horizontal through-hole, connects through-bolt in this horizontal through-hole department between them through the connection bolt that link up, it hangs the piece with shape of a hoof and restricts inside it with the installation pipe fitting to connect the bolt, the intermediate position at trapezoidal hanging piece top is provided with the mounting hole.
2. A suspension pipe clamp mechanism of an earthquake-proof support and hanger as claimed in claim 1, wherein: the trapezoid hanging piece and the horseshoe-shaped hanging piece are both provided with an electro-galvanizing layer or a hot-dip galvanizing layer, so that the corrosion resistance is improved.
3. A suspension pipe clamp mechanism of an earthquake-proof support and hanger as claimed in claim 2, wherein: the thickness of the electrogalvanizing layer is more than or equal to 8 um; the thickness of the hot dip galvanizing layer is more than or equal to 55 mu m.
4. A suspension pipe clamp mechanism of an earthquake-proof support and hanger as claimed in claim 1, wherein: and an elastic rubber ring is arranged on the inner side of the horseshoe-shaped hanging piece.
5. A suspension pipe clamp mechanism of an earthquake-proof support and hanger as claimed in claim 4, wherein: the surface of the elastic rubber ring is provided with a stripe or rhombus pattern structure.
6. A suspension pipe clamp mechanism of an earthquake-proof support and hanger as claimed in claim 5, wherein: the groove depth of the stripe or rhombus pattern structure is more than or equal to 0.5 mm.
7. A suspension pipe clamp mechanism of an earthquake-proof support and hanger as claimed in claim 4 or 6, wherein: the elastic rubber ring is provided with an outward flange, and the elastic rubber ring is tightly attached to the horseshoe-shaped hanging piece through the flange.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920452604.8U CN209991001U (en) | 2019-04-04 | 2019-04-04 | Suspension pipe clamp mechanism of anti-seismic support hanger |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920452604.8U CN209991001U (en) | 2019-04-04 | 2019-04-04 | Suspension pipe clamp mechanism of anti-seismic support hanger |
Publications (1)
Publication Number | Publication Date |
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CN209991001U true CN209991001U (en) | 2020-01-24 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920452604.8U Expired - Fee Related CN209991001U (en) | 2019-04-04 | 2019-04-04 | Suspension pipe clamp mechanism of anti-seismic support hanger |
Country Status (1)
Country | Link |
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CN (1) | CN209991001U (en) |
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2019
- 2019-04-04 CN CN201920452604.8U patent/CN209991001U/en not_active Expired - Fee Related
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200124 |
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CF01 | Termination of patent right due to non-payment of annual fee |