CN212053609U - Raised floor structure and adjusting support thereof - Google Patents

Raised floor structure and adjusting support thereof Download PDF

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Publication number
CN212053609U
CN212053609U CN202020140564.6U CN202020140564U CN212053609U CN 212053609 U CN212053609 U CN 212053609U CN 202020140564 U CN202020140564 U CN 202020140564U CN 212053609 U CN212053609 U CN 212053609U
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adjusting
adjusting bolt
base
supporting plate
adjusting nut
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CN202020140564.6U
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Chinese (zh)
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陈永毅
王强
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China Construction Technology Beijing Co ltd
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China Construction Technology Beijing Co ltd
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Abstract

The raised floor structure and the adjusting support thereof comprise rectangular plates, a cross-shaped joint is formed between every two adjacent plates, and the adjusting support is arranged below the center of the joint; the adjusting support comprises a disc-shaped base fixedly arranged on the floor surface, a vertical adjusting bolt is arranged on the top surface of the base, a riveting part is arranged at the bottom of the adjusting bolt and fixed in a round hole on the top surface of the base, so that the adjusting bolt can rotate around the central axis of the adjusting bolt and cannot be separated from the base; the top of the adjusting bolt is provided with a rotating groove; the adjusting bolt is sleeved with an adjusting nut with an inverted T-shaped section, a cross-shaped supporting plate is sleeved on the periphery of the adjusting nut, the supporting plate is supported and limited by the adjusting nut, and four end parts of the supporting plate and end corners of the plate are positioned through a concave-convex structure; the outer sides of the four end corners of the plate are provided with unfilled corners corresponding to the periphery of the adjusting nut.

Description

Raised floor structure and adjusting support thereof
Technical Field
The utility model belongs to the technical field of building engineering, especially an overhead floor structure and adjust support thereof.
Background
The ground engineering of the building indoor floor occupies important proportion and share in the building indoor decoration engineering, and during ground construction, wet operation not only consumes time in corresponding procedures but also has the age required by maintenance to reach certain strength and the natural aging period of corresponding specified water content, and obviously, the wet operation is the procedure which consumes the longest time. Therefore, recently, dry construction is increasingly emphasized in the industry. The raised floor is an important component, and the positioning of the raised floor in the prior art is often in need of a special construction structure in a raised floor adjusting mode, so that the thickness direction of the plate is changed to a certain extent, and the cost is consumed; or only a higher overhead height can be realized, and the adjustment is inconvenient. Furthermore, when the floor boards need to be cut at the corner of the room, an additional supporting structure is required.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an overhead floor structure and adjust support thereof, its simple structure, it is convenient to adjust, and construction process is simple, in addition, also can realize easily adjusting after cutting.
In order to achieve the purpose, the utility model adopts the following technical proposal:
the raised floor structure comprises a plurality of rectangular plates, a cross-shaped joint is formed between every two adjacent plates, and an adjusting support is arranged below the center of the joint;
the adjusting support comprises a disc-shaped base fixedly arranged on the floor surface, a vertical adjusting bolt is arranged on the top surface of the base, a riveting part is arranged at the bottom of the adjusting bolt and fixed in a round hole on the top surface of the base, so that the adjusting bolt can rotate around the central axis of the adjusting bolt and cannot be separated from the base; the top of the adjusting bolt is provided with a rotating groove; the adjusting bolt is sleeved with an adjusting nut with an inverted T-shaped section, a cross-shaped supporting plate is sleeved on the periphery of the adjusting nut, the supporting plate is supported and limited by the adjusting nut, and four end parts of the supporting plate and end corners of the plate are positioned through a concave-convex structure; the outer sides of the four end corners of the plate are provided with unfilled corners corresponding to the periphery of the adjusting nut.
In one embodiment, the relief structure is: the top surfaces of the four end parts of the supporting plate are raised upwards to form a convex part; the bottom surfaces of the inner sides of the four end corners of the plate are provided with blind holes corresponding to the convex parts, and the convex parts are inserted into the corresponding blind holes.
In one embodiment, the relief structure is: screw holes are formed in the four end portions of the supporting plate, through holes with bolts are formed in the inner sides of the four end corners of the plate, and the bolts are screwed into the screw holes.
In one embodiment, the protrusion is hemispherical or cylindrical.
In one embodiment, the rotating groove is in a straight shape, or in a cross shape or in a hexagonal shape.
In one embodiment, the plate block is internally provided with a vertical through hole, an inner adjusting support is arranged at the through hole and comprises a disc-shaped inner base fixedly arranged on the floor surface, a vertical inner adjusting bolt is arranged on the top surface of the inner base, a riveting part is arranged at the bottom of the inner adjusting bolt and is fixed in the circular hole on the top surface of the inner base, and the inner adjusting bolt can rotate around the central axis of the inner adjusting bolt and cannot be separated from the inner base; the top of the inner adjusting bolt is provided with a rotating groove; the inner adjusting bolt sleeve is provided with an inner adjusting nut with an inverted T-shaped section; the inner adjusting nut is positioned in the through hole, and the bottom surface of the plate is positioned on the edge of the outward bulge of the inner adjusting nut.
An adjusting support of an overhead floor structure comprises a disc-shaped base fixedly arranged on the floor surface, wherein a vertical adjusting bolt is arranged on the top surface of the base, a riveting part is arranged at the bottom of the adjusting bolt and is fixed in a round hole in the top surface of the base, so that the adjusting bolt can rotate around the central axis of the adjusting bolt and cannot be separated from the base; the top of the adjusting bolt is provided with a rotating groove; the adjusting bolt sleeve is provided with an adjusting nut with an inverted T-shaped section.
In one embodiment, the periphery of the adjusting nut is sleeved with a cross-shaped supporting plate, the supporting plate is supported and limited by the adjusting nut, and the top surfaces of the four end parts of the supporting plate are bulged upwards to form a protruding part.
In one embodiment, the periphery of the adjusting nut is sleeved with a cross-shaped supporting plate, the supporting plate is supported and limited by the adjusting nut, and the four end parts of the supporting plate are provided with screw holes for fixing with bolts at the end corners of the plate.
In one embodiment, the rotating groove is in a straight shape, or in a cross shape or in a hexagonal shape.
In one embodiment, the protrusion is hemispherical or cylindrical.
The utility model has the advantages that: the utility model discloses built on stilts floor and regulation support not only can realize making somebody a mere figurehead height very little, uses the part of adjusting the support moreover, can realize cutting the support and the regulation of back floor piece. When necessary, the number of the supporting points can be increased by using part of parts of the adjusting support, so that the adjusting support is suitable for various different construction conditions.
Drawings
Fig. 1 is a schematic structural view of an embodiment 1 of the raised floor structure of the present invention.
Fig. 2 is a schematic structural view of an adjusting support according to embodiment 1 of the raised floor structure of the present invention.
Fig. 3 is a schematic structural view of embodiment 2 of the raised floor structure of the present invention.
Fig. 4 is an enlarged schematic view at a in fig. 3.
Fig. 5 is a schematic structural view of embodiment 3 of the raised floor structure of the present invention.
Detailed Description
The invention is further illustrated by the following figures and examples.
As shown in fig. 1-2, it is the utility model provides an embodiment 1 of an overhead floor structure, including the plate 1 of a plurality of rectangles, form crisscross seam between four adjacent plates 1, this seam center below is equipped with adjusts support 2.
As shown in fig. 2, the utility model provides a pair of adjust support 2 is including the fixed base 21 who locates the disc on building ground, and this base 21 top surface is equipped with vertical adjusting bolt 22, and this adjusting bolt 22's bottom is equipped with riveting portion, and this riveting portion is fixed in the round hole of this base 21 top surface, makes this adjusting bolt 22 can rotate around self axis and do not break away from with this base 21. The top of the adjusting bolt 22 is provided with a turning groove 221, which is a universal bolt groove, such as a straight line shape, a cross shape or an inner hexagonal shape, and is convenient for turning adjustment by a rotary tool. The adjusting bolt 22 is sleeved with an adjusting nut 23 with an inverted T-shaped section, the periphery of the adjusting nut 23 is sleeved with a cross-shaped supporting plate 24, the supporting plate 24 is supported and limited by the adjusting nut 23, and the top surfaces of the four end parts of the supporting plate 24 are raised upwards to form a protruding part 241. The protrusion 241 may be a hemispherical shape or a cylindrical shape.
Blind holes 11 corresponding to the protruding portions 241 are formed in the bottom surfaces of the inner sides of the four end corners of the plate 1, unfilled corners 12 corresponding to the outer periphery of the adjusting nut 23 are formed in the outer sides of the four end corners of the plate 1, and the protruding portions 241 are inserted into the corresponding blind holes 11.
As shown in fig. 3 and 4, when the floor 11 needs to be cut with a notch, or when the floor 11 needs to bear a larger pressure, a vertical through hole is formed in the floor 11, and an inverted T-shaped nut and an adjusting bolt group are used as an adjusting support; the through hole is provided with an inner adjusting support 3, the inner adjusting support 3 comprises a disc-shaped inner base fixedly arranged on the floor surface, a vertical inner adjusting bolt is arranged on the top surface of the inner base, a riveting part is arranged at the bottom of the inner adjusting bolt, and the riveting part is fixed in the circular hole on the top surface of the inner base, so that the inner adjusting bolt can rotate around the central axis of the inner adjusting bolt and cannot be separated from the inner base. The top of the inner adjusting bolt is provided with a rotating groove. The inner adjusting bolt sleeve is provided with an inner adjusting nut with an inverted T-shaped section. The inner adjusting nut is positioned in the through hole, and the bottom surface of the floor is positioned on the edge of the outward bulge of the inner adjusting nut.
That is, the inner adjusting mount 3 of embodiment 2 is different from the adjusting mount 2 of embodiment 1 in that the inner adjusting mount 3 has fewer blades and only a part of the adjusting mount 2 is used.
As shown in fig. 5, embodiment 3 of the present invention is different from embodiment 1 in that in this embodiment, screw holes 242 are provided at four ends of the supporting plate 24, through holes 14 with bolts 13 are provided inside four corners of the plate 1, and the bolts 13 are screwed into the screw holes 242 to prevent the plate 1 from moving up and down.
The utility model discloses still provide the regulation support 2 of embodiment 1, 3 to and the interior regulation support 3 of embodiment 2.
The above embodiments are merely illustrative of the principles and effects of the present invention, and are not to be construed as limiting the invention. The present invention can be modified in many ways without departing from the spirit and scope of the present invention, and those skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which may be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.

Claims (10)

1. The overhead floor structure is characterized by comprising a plurality of rectangular plates, wherein cross-shaped seams are formed between four adjacent plates, and an adjusting support is arranged below the center of each seam;
the adjusting support comprises a disc-shaped base fixedly arranged on the floor surface, a vertical adjusting bolt is arranged on the top surface of the base, a riveting part is arranged at the bottom of the adjusting bolt and fixed in a round hole on the top surface of the base, so that the adjusting bolt can rotate around the central axis of the adjusting bolt and cannot be separated from the base; the top of the adjusting bolt is provided with a rotating groove; the adjusting bolt is sleeved with an adjusting nut with an inverted T-shaped section, a cross-shaped supporting plate is sleeved on the periphery of the adjusting nut, the supporting plate is supported and limited by the adjusting nut, and four end parts of the supporting plate and end corners of the plate are positioned through a concave-convex structure; the outer sides of the four end corners of the plate are provided with unfilled corners corresponding to the periphery of the adjusting nut.
2. The raised floor structure of claim 1, wherein: the concave-convex structure is as follows: the top surfaces of the four end parts of the supporting plate are raised upwards to form a convex part; the bottom surfaces of the inner sides of the four end corners of the plate are provided with blind holes corresponding to the convex parts, and the convex parts are inserted into the corresponding blind holes.
3. The raised floor structure of claim 1, wherein: the concave-convex structure is as follows: screw holes are formed in the four end portions of the supporting plate, through holes with bolts are formed in the inner sides of the four end corners of the plate, and the bolts are screwed into the screw holes.
4. The raised floor structure of claim 2, wherein: the bulge is hemispherical or cylindrical.
5. A raised floor structure as claimed in claim 1, 2 or 3, wherein: the rotary groove is in a straight shape, a cross shape or an inner hexagonal shape.
6. The raised floor structure of claim 1, wherein: the interior of the plate block is provided with a vertical through hole, an inner adjusting support is arranged at the through hole and comprises a disc-shaped inner base fixedly arranged on the floor surface, a vertical inner adjusting bolt is arranged on the top surface of the inner base, a riveting part is arranged at the bottom of the inner adjusting bolt and is fixed in the circular hole on the top surface of the inner base, and the inner adjusting bolt can rotate around the central axis of the inner adjusting bolt and cannot be separated from the inner base; the top of the inner adjusting bolt is provided with a rotating groove; the inner adjusting bolt sleeve is provided with an inner adjusting nut with an inverted T-shaped section; the inner adjusting nut is positioned in the through hole, and the bottom surface of the plate is positioned on the edge of the outward bulge of the inner adjusting nut.
7. An adjusting support of an overhead floor structure is characterized by comprising a disc-shaped base fixedly arranged on the floor surface, wherein the top surface of the base is provided with a vertical adjusting bolt, the bottom of the adjusting bolt is provided with a riveting part, and the riveting part is fixed in a round hole on the top surface of the base, so that the adjusting bolt can rotate around the central axis of the adjusting bolt and cannot be separated from the base; the top of the adjusting bolt is provided with a rotating groove; the adjusting bolt sleeve is provided with an adjusting nut with an inverted T-shaped section.
8. The adjusting bracket for raised floor structure according to claim 7, wherein the adjusting nut is sleeved with a cross-shaped supporting plate, the supporting plate is supported and limited by the adjusting nut, and the top surfaces of the four ends of the supporting plate are raised upwards to form a protrusion.
9. An adjusting support for raised floor structure as claimed in claim 7, wherein the adjusting nut is provided with a cross-shaped supporting plate around its periphery, the supporting plate is supported and limited by the adjusting nut, and the supporting plate is provided with screw holes at its four ends for fixing with bolts at the plate corner.
10. The adjustable support for raised floor structures of claim 8, wherein the raised portion is hemispherical or cylindrical; the rotary groove is in a straight shape, a cross shape or an inner hexagonal shape.
CN202020140564.6U 2020-01-21 2020-01-21 Raised floor structure and adjusting support thereof Active CN212053609U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020140564.6U CN212053609U (en) 2020-01-21 2020-01-21 Raised floor structure and adjusting support thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020140564.6U CN212053609U (en) 2020-01-21 2020-01-21 Raised floor structure and adjusting support thereof

Publications (1)

Publication Number Publication Date
CN212053609U true CN212053609U (en) 2020-12-01

Family

ID=73537581

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020140564.6U Active CN212053609U (en) 2020-01-21 2020-01-21 Raised floor structure and adjusting support thereof

Country Status (1)

Country Link
CN (1) CN212053609U (en)

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