CN217557601U - Guide support - Google Patents
Guide support Download PDFInfo
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- CN217557601U CN217557601U CN202221322786.5U CN202221322786U CN217557601U CN 217557601 U CN217557601 U CN 217557601U CN 202221322786 U CN202221322786 U CN 202221322786U CN 217557601 U CN217557601 U CN 217557601U
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- plate
- limiting
- guide
- assembly
- guide support
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Abstract
The utility model discloses a guide support, which comprises a base plate, a limiting component and a guide component; the limiting assembly is arranged above the substrate; the two groups of limiting assemblies are symmetrically arranged on the substrate; each group of limiting assemblies comprises a vertical plate and a transverse plate, and the vertical plate is vertically arranged on the base plate; the transverse plate is connected with the vertical plate, and an L-shaped structure is formed between the transverse plate and the vertical plate; transverse plates of the two groups of limiting assemblies are arranged at intervals to form limiting spaces; the guide assembly comprises a limiting plate; the limiting plate is accommodated in the limiting space and can move relative to the substrate; the length of the limiting plate is smaller than that of the limiting space and is larger than the distance between the transverse plates of the two groups of limiting assemblies; the thickness of the limiting plate is smaller than the minimum height of the limiting space. The utility model discloses a direction support simple structure, it is with low costs.
Description
Technical Field
The utility model relates to a direction support especially relates to a take direction support of simple and easy spacing subassembly.
Background
The guide support is widely applied to places needing directional displacement, including metallurgy, thermal power plants, environmental protection and the like. Most of the existing guide supports are fixed complete equipment, and most of the supports have complex structures and higher operation and maintenance costs. In addition, the friction coefficient is large, the wear and corrosion resistance is poor, the service life is relatively short, and the manufacturing cost is high.
CN205531289U discloses a guide support, including guide back plate, guide left beam, guide right beam, prevent inclining reinforcing plate, hanging hole reinforcing plate and guide wheel carrier fixed plate. The left part and the right part of the guide seat back plate are respectively and vertically and fixedly connected with one end of the guide seat left beam and one end of the guide seat right beam, and the other ends of the guide seat left beam and the guide seat right beam are vertically and fixedly connected with the guide wheel fixing plate. The guide support can be adjusted, but the directional displacement is not achieved well.
CN205591530U discloses a guide support, which is an integrated up-and-down sliding member formed by a guide wheel and a guide rail, and an anti-falling block and a toggle block are mounted on a mounting hole of the guide support through a rotating pin shaft. The guide support is more suitable for preventing falling.
CN213038832U discloses a guide support, including the support body that is equipped with the unloading device, the unloading device includes pipe box and the unloading pole of being connected perpendicularly with the pipe box, coaxially be provided with two sets of tubulose spare on the support body and wear to be equipped with the pivot in two sets of tubulose spare, the pipe box is located between two sets of tubulose spare and wears to locate in the pivot. The guide support is complex in structure and suitable for being attached to a wall.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing a direction support. The guide support is simple in structure and low in cost. In addition, the guide support has small friction coefficient and good wear resistance.
The utility model discloses a following technical scheme realizes above-mentioned purpose.
The utility model provides a guide support, which comprises a base plate, a limiting component and a guide component;
the limiting assembly is arranged above the substrate;
the two groups of limiting assemblies are symmetrically arranged on the substrate;
each group of limiting assemblies comprises a vertical plate and a transverse plate, and the vertical plate is vertically arranged on the base plate; the transverse plate is connected with the vertical plate, and an L-shaped structure is formed between the transverse plate and the vertical plate;
transverse plates of the two groups of limiting assemblies are arranged at intervals to form limiting spaces;
the guide assembly comprises a limiting plate; the limiting plate is accommodated in the limiting space and can move relative to the substrate;
the length of the limiting plate is smaller than that of the limiting space and is larger than the distance between the transverse plates of the two groups of limiting assemblies; the thickness of the limiting plate is smaller than the minimum height of the limiting space.
According to the guiding support of the utility model, preferably, each group of limiting components comprises a reinforcing rib plate; the reinforcing rib plate is arranged on one side of the vertical plate and is far away from the limiting space; the reinforcing rib plate is connected with the base plate.
According to the guide support of the utility model, preferably, the limiting component comprises more than two reinforcing rib plates; the reinforcing ribs are uniformly distributed.
According to the guiding support of the utility model, preferably, the two groups of limiting components are respectively a first limiting component and a second limiting component; the reinforcing rib plate of the first limiting assembly and the reinforcing rib plate of the second limiting assembly are symmetrically arranged.
According to direction support, preferably, the terminal surface of limiting plate with distance between the riser is 1 ~ 5mm.
According to the utility model discloses a direction support, preferably, the riser with contained angle between the diaphragm is 60 ~ 120.
According to the utility model discloses a direction support, preferably, L type structure is formed by the angle steel.
The guide support of the present invention preferably further comprises a lubricating layer; the lubricating layer is arranged between the limiting plate and the substrate.
According to the guiding support of the present invention, preferably, the limiting plate includes an upper limiting plate and a lower limiting plate that are overlapped; the lubricating layer is arranged between the lower limiting plate and the substrate.
According to the guiding support of the present invention, preferably, the guiding component further comprises a stand column disposed on the limiting plate; the stand is located between the diaphragm of two sets of spacing subassemblies, the stand is in the projection center on the base plate overlaps with the projection center of limiting plate on the base plate.
The utility model discloses a direction support simple structure, it is with low costs, installation maintenance convenience. In addition, the guide support has the advantages of small friction coefficient, good wear resistance and long service life.
Drawings
Fig. 1 shows a schematic front view of a guide support according to the present invention.
Fig. 2 is a schematic top view of fig. 1.
The reference numerals are illustrated below:
the method comprises the following steps of 1-a base plate, 2-a limiting component, 21-a vertical plate, 22-a transverse plate, 23-a reinforcing rib plate, 3-a guiding component, 31-a limiting plate, 311-an upper limiting plate, 312-a lower limiting plate, 32-an upright post and 4-a lubricating layer.
Detailed Description
The invention will be further described with reference to the drawings and the following examples, but the scope of the invention is not limited thereto.
The utility model discloses a direction support includes base plate, spacing subassembly, direction subassembly and lubricant film. As described in detail below.
< substrate >
The utility model discloses in, the base plate is located the below of direction support, as the base of direction support. The size of the substrate can be set according to actual needs.
< Limit Assembly >
The utility model discloses a spacing subassembly sets up in the top of base plate. The limiting assemblies can be arranged in two groups, and the limiting assemblies are symmetrically arranged on the substrate. According to the utility model discloses an embodiment, two sets of spacing subassembly symmetries set up in two tip of base plate. This is favorable to spacing the both ends of leading subassembly.
Each group of limiting assemblies comprises a vertical plate, a transverse plate and a reinforcing rib plate. As described in detail below.
Vertical plate and transverse plate
Each group of limiting assemblies comprises a vertical plate and a transverse plate. The vertical plate is vertically arranged on the base plate. The transverse plate is connected with the vertical plate, and an L-shaped structure is formed between the transverse plate and the vertical plate. The transverse plates of the two groups of limiting assemblies are arranged at intervals to form limiting spaces.
The utility model discloses in, form L type structure between diaphragm and the riser, the two contained angle can be 60 ~ 120, preferably 70 ~ 110, more preferably 80 ~ 100, further preferably 85 ~ 95.
According to a specific embodiment of the utility model, the contained angle between riser and the diaphragm is 90. Namely, the transverse plate is arranged parallel to the base plate, and the vertical plate is arranged perpendicular to the base plate. The spacing space thus formed is easier to handle.
In certain specific embodiments, the L-shaped structure is formed from angle steel. Therefore, the production and installation are convenient, and the cost is reduced.
The utility model discloses in, the height of riser equals spacing space's minimum height basically.
Reinforcing plate
In a preferred embodiment, the stop assembly further comprises a stiffener plate. The reinforcing rib plate is arranged on one side of the vertical plate. The reinforcing rib plate is far away from the limiting space, namely the reinforcing rib plate is positioned outside the limiting space. The reinforcing rib plate is connected with the base plate. Therefore, the vertical plate and the transverse plate for limiting can be reinforced.
Each group of limiting assemblies comprises more than two reinforcing rib plates; these stiffeners are evenly distributed along the risers. According to a specific embodiment of the utility model, each group of limiting components comprises four reinforcing rib plates; the four reinforcing rib plates are uniformly distributed along the vertical plate.
According to one embodiment of the utility model, the two groups of limiting components are respectively a first limiting component and a second limiting component; the reinforcing rib plate of the first limiting assembly and the reinforcing rib plate of the second limiting assembly are symmetrically arranged. Therefore, the stability of the limiting component can be guaranteed on one hand, and the cost can be reduced on the other hand.
In the present invention, the specific structure of the reinforcing rib plate is not particularly limited, and those known in the art may be employed.
< guide Assembly >
The utility model discloses a direction subassembly includes limiting plate and stand.
Limiting plate
The limiting plate is accommodated in the limiting space and can move relative to the substrate. The length of the limiting plate is smaller than the length of the limiting space (namely the distance between the two vertical plates) and larger than the distance between the transverse plates of the two limiting assemblies; the thickness of the limiting plate is smaller than the minimum height of the limiting space. This allows the guide assembly to be restrained.
According to the utility model discloses an embodiment, the distance between the terminal surface of limiting plate and the riser is 1 ~ 5mm. Therefore, the limiting plate can be limited and can move along the length direction of the limiting space. Meanwhile, the limiting plate moves in a limiting mode along the length direction of the transverse plate. Thereby realize the spacing to the direction subassembly through spacing subassembly.
In certain embodiments, the limiting plate comprises an upper limiting plate and a lower limiting plate, the lower limiting plate being disposed below the upper limiting plate. The upper limiting plate is fixedly connected with the lower limiting plate. Therefore, the installation is convenient, and the thickness of the limiting plate is convenient to adjust.
Stand column
The utility model discloses a stand sets up in the top of limiting plate. The stand is located between the diaphragm of two sets of spacing subassemblies. This may facilitate the directional displacement of the column and the instruments or equipment mounted thereon.
In a preferred embodiment, the upright is arranged in the middle of the limit plate. Preferably, the projection center of the upright column on the base plate is overlapped with the projection center of the limiting plate on the base plate.
< lubricating layer >
The utility model discloses a lubricating layer sets up between limiting plate and base plate. The sliding of the limiting plate on the substrate is facilitated, the friction coefficient is reduced, the moving efficiency is improved, and the service life of the guide support is prolonged.
In certain specific embodiments, the lubricating layer is disposed between the lower retainer plate and the substrate.
According to an embodiment of the invention, the lubricating layer is formed by a teflon plate. According to another embodiment of the invention, the lubricating layer is formed by a sheet of SF composite material.
Both of these two panels of the present invention are known.
Example 1
Fig. 1 shows a schematic front view of a guide support according to the present invention. Fig. 2 is a schematic top view of fig. 1.
As shown in fig. 1-2, the guide support of the present embodiment includes a base plate 1, a spacing member 2, a guide member 3, and a lubricating layer 4.
The substrate 1 is located lowermost.
The limiting component 2 is arranged above the substrate 1. The two groups of limiting components 2 are symmetrically arranged at two ends of the substrate 1. The limiting assembly 2 comprises a first limiting assembly and a second limiting assembly; each of which includes a stiffener plate 23, a riser 21 and a cross plate 22.
The vertical plate 21 is connected with the transverse plate 22 to form an L-shaped structure, and the included angle between the vertical plate 21 and the transverse plate 22 is 90 degrees. The L-shaped structure may be formed from angle steel. The riser 21 is vertically provided on the base plate 1. The transverse plate 22 is parallel to the base plate 1. The transverse plate 22 of the first limiting assembly and the transverse plate 22 of the second limiting assembly are spaced at a certain distance to form a limiting space.
The reinforcing rib plate 23 is arranged on one side of the vertical plate 21 and is far away from the limit space. The reinforcing rib plate 23 is vertically connected to the base plate 1. The limiting component 2 comprises more than two reinforcing rib plates 23. These stiffeners 23 are evenly distributed. The reinforcing rib plate 23 of the first limiting assembly and the reinforcing rib plate 23 of the second limiting assembly are symmetrically arranged.
The guide assembly 3 includes a stopper plate 31 and a post 32. The stopper plate 31 is accommodated in the stopper space and is provided to be movable relative to the substrate 1. The length of limiting plate 31 is less than the length of spacing space (being the distance between two sets of risers 21), and is greater than the distance between the diaphragm 22 of two sets of spacing subassembly 2. This can restrict the guide assembly 3 to move within the restriction space. The distance between the end face of the limit plate 31 and the vertical plate 21 is 1-5 mm. The thickness of the limit plate 31 is smaller than the minimum height of the limit space. The upright column 32 is fixed on the limiting plate 31 and is positioned in the middle of the limiting plate 31. The center of projection of the column 32 on the base plate 1 overlaps the center of projection of the stopper plate 31 on the base plate 1.
The lubricating layer 4 is provided between the stopper plate 31 and the substrate 1. The lubricating layer 4 may be formed of a polytetrafluoroethylene sheet.
Example 2
The same as in example 1 except for the following settings:
the stopper plate 31 includes an upper stopper plate 311 and a lower stopper plate 312 which are arranged to overlap. The lubricant layer 4 is disposed between the lower retainer plate 312 and the substrate 1.
The present invention is not limited to the above embodiments, and any variations, modifications, and substitutions that may occur to those skilled in the art may be made without departing from the spirit of the present invention.
Claims (10)
1. A guide support is characterized by comprising a base plate, a limiting assembly and a guide assembly;
the limiting assembly is arranged above the substrate;
the two groups of limiting assemblies are symmetrically arranged on the substrate;
each group of limiting assemblies comprises a vertical plate and a transverse plate, and the vertical plate is vertically arranged on the base plate; the transverse plate is connected with the vertical plate, and an L-shaped structure is formed between the transverse plate and the vertical plate;
transverse plates of the two groups of limiting assemblies are arranged at intervals to form limiting spaces;
the guide assembly comprises a limiting plate; the limiting plate is accommodated in the limiting space and can move relative to the substrate;
the length of the limiting plate is smaller than that of the limiting space and larger than the distance between the transverse plates of the two limiting assemblies; the thickness of the limiting plate is smaller than the minimum height of the limiting space.
2. The guide support according to claim 1, wherein each group of the limiting assemblies comprises a reinforcing rib plate; the reinforcing rib plate is arranged on one side of the vertical plate and is far away from the limiting space; the reinforcing rib plate is connected with the base plate.
3. The guide support according to claim 2, wherein the limiting assembly comprises more than two reinforcing rib plates; the reinforcing ribs are uniformly distributed.
4. The guide support according to claim 3, wherein the two sets of limiting assemblies are a first limiting assembly and a second limiting assembly respectively; the reinforcing rib plate of the first limiting assembly and the reinforcing rib plate of the second limiting assembly are symmetrically arranged.
5. The guide support according to claim 1, wherein the distance between the end surface of the limiting plate and the vertical plate is 1-5 mm.
6. The guide support of claim 1, wherein the angle between the vertical plate and the transverse plate is 60 ° to 120 °.
7. A guide bracket according to claim 6 wherein the L-shaped formation is formed by angle steel.
8. The guide support of claim 1, further comprising a lubricating layer; the lubricating layer is arranged between the limiting plate and the substrate.
9. The guide support according to claim 8, wherein the limiting plate comprises an upper limiting plate and a lower limiting plate which are arranged in an overlapped mode; the lubricating layer is arranged between the lower limiting plate and the substrate.
10. The guide support according to any one of claims 1 to 9, wherein the guide assembly further comprises a column, and the column is disposed on the limit plate; the stand is located between the diaphragm of two sets of spacing subassemblies, the stand is in the projection center on the base plate overlaps with the projection center of limiting plate on the base plate.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221322786.5U CN217557601U (en) | 2022-05-30 | 2022-05-30 | Guide support |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221322786.5U CN217557601U (en) | 2022-05-30 | 2022-05-30 | Guide support |
Publications (1)
Publication Number | Publication Date |
---|---|
CN217557601U true CN217557601U (en) | 2022-10-11 |
Family
ID=83499638
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202221322786.5U Active CN217557601U (en) | 2022-05-30 | 2022-05-30 | Guide support |
Country Status (1)
Country | Link |
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CN (1) | CN217557601U (en) |
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2022
- 2022-05-30 CN CN202221322786.5U patent/CN217557601U/en active Active
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