CN214743756U - Pre-buried formula glass steel insulating support - Google Patents
Pre-buried formula glass steel insulating support Download PDFInfo
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- CN214743756U CN214743756U CN202023199856.6U CN202023199856U CN214743756U CN 214743756 U CN214743756 U CN 214743756U CN 202023199856 U CN202023199856 U CN 202023199856U CN 214743756 U CN214743756 U CN 214743756U
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- reinforced plastic
- fiber reinforced
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- glass steel
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Abstract
The utility model discloses what pre-buried formula glass steel insulation support related to is cable support technical field, especially relates to a pre-buried formula glass steel insulation support. Comprises a lower glass fiber reinforced plastic transverse plate, a left vertical plate, an upper transverse plate, an inclined supporting plate, a right vertical plate, a cylindrical plate, a middle vertical plate and an arc-shaped supporting plate. The utility model discloses pre-buried formula glass steel insulating support insulating properties is good, reasonable in design, simple structure, and the molding is unique, light in weight, and the rigidity is big, indeformable, and stability is good.
Description
Technical Field
The utility model discloses what pre-buried formula glass steel insulation support related to is cable support technical field, especially relates to a pre-buried formula glass steel insulation support.
Background
The mechanism box, the control collection box, the spacing terminal box of the primary equipment of the power system, the protection screen, the measurement and control screen, the fault recording screen, the power supply screen and the like of the secondary equipment are connected through cables, optical cables or network cables, different cable channels are designed according to different buildings and spaces to realize the connection, the cable channels comprise cable trenches, cable shafts, cable interlayers and the like, and various supports for laying the cables are designed in the spaces. On one hand, the supports have good insulating property so as to ensure the safety of a power system and a building, on the other hand, the support mounting process is the most time-consuming and labor-consuming work, marking and positioning are firstly carried out before each support is mounted, then a drilling machine is used for drilling holes, expansion bolts are implanted after the holes are formed, cable support bolt holes are penetrated on the expansion bolts for limiting, and finally nuts are screwed to fix the cable supports. Above-mentioned whole process is manual operation, and not only drilling operation noise is big, the construction is troublesome, and cable support all only installs on cable pit concrete surface through expansion bolts moreover, appears the problem that the support drops easily.
The glass fiber reinforced plastic is a common composite material, can be integrally formed by various processes such as pultrusion, hand lay-up, mould pressing and the like, has the advantages of good insulating property, light weight, high specific strength, high specific modulus, strong designability and the like, and is widely applied to the fields of chemical corrosion prevention, building decoration, transportation, packaging and the like.
Therefore, the invention discloses a pre-embedded glass fiber reinforced plastic insulating bracket which takes glass fiber reinforced plastic as a raw material to replace the traditional field drilling mounting bracket, so that the safety of a power system and a building can be ensured, the stability of the bracket after mounting is ensured, the field construction strength can be reduced, the construction time can be saved, and the mounting efficiency can be improved.
Disclosure of Invention
The embedded glass fiber reinforced plastic insulating bracket is realized by adopting the following scheme:
the pre-buried glass fiber reinforced plastic insulating bracket is composed of a glass fiber reinforced plastic lower transverse plate, a glass fiber reinforced plastic left vertical plate, a glass fiber reinforced plastic upper transverse plate, a glass fiber reinforced plastic inclined supporting plate, a glass fiber reinforced plastic right vertical plate, a glass fiber reinforced plastic cylindrical plate, a glass fiber reinforced plastic middle vertical plate and a glass fiber reinforced plastic arc supporting plate; the left end of the glass fiber reinforced plastic lower transverse plate is vertically connected with the lower end of the glass fiber reinforced plastic left vertical plate to form an integral structure, and the right end of the glass fiber reinforced plastic lower transverse plate is externally tangent with the glass fiber reinforced plastic cylindrical plate to form an integral structure; glass steel left side riser upper end and glass steel upper riser left end link to each other perpendicularly and form overall structure, glass steel upper riser right-hand member links to each other perpendicularly in with glass steel riser upper end, and link to each other with glass steel inclined supporting plate lower extreme and glass steel arc fagging lower extreme and form overall structure, glass steel inclined supporting plate upper end and glass steel right riser upper end link to each other and form overall structure, glass steel right riser lower extreme and the circumscribed continuous overall structure that forms of glass steel cylinder board, glass steel riser lower extreme and glass steel are the perpendicular continuous overall structure that forms of side on the diaphragm down, glass steel arc fagging upper end and glass steel right riser left side link to each other and form overall structure.
The extension line of the glass fiber reinforced plastic lower transverse plate is perpendicular to the extension line of the glass fiber reinforced plastic right vertical plate.
The utility model discloses pre-buried formula glass steel insulating support insulating properties is good, reasonable in design, simple structure, and the molding is unique, light in weight, and the rigidity is big, indeformable, and stability is good.
During production, the pultrusion process commonly used for the glass fiber reinforced plastics can realize the continuous production of the utility model, and the hand pasting forming process can also realize the whole forming of the utility model.
Drawings
The present invention will be further explained with reference to the accompanying drawings:
FIG. 1 is a schematic structural diagram of an embedded glass fiber reinforced plastic insulating bracket.
Fig. 2 is a schematic view of the cross-sectional structure a-a in fig. 1.
1-glass fiber reinforced plastic lower transverse plate, 2-glass fiber reinforced plastic left vertical plate, 3-glass fiber reinforced plastic upper transverse plate, 4-glass fiber reinforced plastic inclined supporting plate, 5-glass fiber reinforced plastic right vertical plate, 6-glass fiber reinforced plastic cylindrical plate, 7-glass fiber reinforced plastic middle vertical plate and 8-glass fiber reinforced plastic arc supporting plate.
Detailed Description
As shown in fig. 1 and 2, the pre-buried fiberglass-reinforced plastic insulating support is composed of a fiberglass-reinforced plastic lower transverse plate 1, a fiberglass-reinforced plastic left vertical plate 2, a fiberglass-reinforced plastic upper transverse plate 3, a fiberglass-reinforced plastic inclined supporting plate 4, a fiberglass-reinforced plastic right vertical plate 5, a fiberglass-reinforced plastic cylindrical plate 6, a fiberglass-reinforced plastic middle vertical plate 7 and a fiberglass-reinforced plastic arc supporting plate 8; the left end of the glass fiber reinforced plastic lower transverse plate 1 is vertically connected with the lower end of the glass fiber reinforced plastic left vertical plate 2 to form an integral structure, and the right end of the glass fiber reinforced plastic lower transverse plate is externally tangent with the glass fiber reinforced plastic cylindrical plate 6 to form an integral structure; 2 upper ends of glass steel left riser 2 and the 3 left ends of glass steel upper transverse plate link to each other perpendicularly and form overall structure, 3 right-hand members of glass steel upper transverse plate and the glass steel in 7 upper ends of riser link to each other perpendicularly, and link to each other with 4 lower extremes of glass steel fagging and the 8 lower extremes of glass steel arc fagging and form overall structure, 4 upper ends of glass steel fagging and the 5 upper ends of glass steel right riser link to each other and form overall structure, 5 lower extremes of glass steel right riser and 6 circumscribed links to each other and form overall structure, 1 side of diaphragm links to each other perpendicularly under 7 lower extremes of glass steel and the glass steel in the glass steel, 8 upper ends of glass steel arc fagging and the 5 left sides of glass steel right riser link to each other and form overall structure.
The extension line of the glass fiber reinforced plastic lower transverse plate 1 is perpendicular to the extension line of the glass fiber reinforced plastic right vertical plate 5.
During production, the pultrusion process commonly used for the glass fiber reinforced plastics can realize the continuous production of the utility model, and the hand pasting forming process can also realize the whole forming of the utility model.
Claims (2)
1. The pre-buried glass fiber reinforced plastic insulating support is characterized by comprising a glass fiber reinforced plastic lower transverse plate, a glass fiber reinforced plastic left vertical plate, a glass fiber reinforced plastic upper transverse plate, a glass fiber reinforced plastic inclined supporting plate, a glass fiber reinforced plastic right vertical plate, a glass fiber reinforced plastic cylindrical plate, a glass fiber reinforced plastic middle vertical plate and a glass fiber reinforced plastic arc supporting plate; the left end of the glass fiber reinforced plastic lower transverse plate is vertically connected with the lower end of the glass fiber reinforced plastic left vertical plate to form an integral structure, and the right end of the glass fiber reinforced plastic lower transverse plate is externally tangent with the glass fiber reinforced plastic cylindrical plate to form an integral structure; glass steel left side riser upper end and glass steel upper riser left end link to each other perpendicularly and form overall structure, glass steel upper riser right-hand member links to each other perpendicularly in with glass steel riser upper end, and link to each other with glass steel inclined supporting plate lower extreme and glass steel arc fagging lower extreme and form overall structure, glass steel inclined supporting plate upper end and glass steel right riser upper end link to each other and form overall structure, glass steel right riser lower extreme and the circumscribed continuous overall structure that forms of glass steel cylinder board, glass steel riser lower extreme and glass steel are the perpendicular continuous overall structure that forms of side on the diaphragm down, glass steel arc fagging upper end and glass steel right riser left side link to each other and form overall structure.
2. The pre-buried fiberglass insulation support of claim 1, wherein the extension line of the fiberglass bottom cross plate and the extension line of the fiberglass right vertical plate are perpendicular to each other.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202023199856.6U CN214743756U (en) | 2020-12-18 | 2020-12-18 | Pre-buried formula glass steel insulating support |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023199856.6U CN214743756U (en) | 2020-12-18 | 2020-12-18 | Pre-buried formula glass steel insulating support |
Publications (1)
Publication Number | Publication Date |
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CN214743756U true CN214743756U (en) | 2021-11-16 |
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Family Applications (1)
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CN202023199856.6U Active CN214743756U (en) | 2020-12-18 | 2020-12-18 | Pre-buried formula glass steel insulating support |
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CN (1) | CN214743756U (en) |
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2020
- 2020-12-18 CN CN202023199856.6U patent/CN214743756U/en active Active
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