CN217924620U - Assembled built on stilts floor structure - Google Patents

Assembled built on stilts floor structure Download PDF

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Publication number
CN217924620U
CN217924620U CN202220871676.8U CN202220871676U CN217924620U CN 217924620 U CN217924620 U CN 217924620U CN 202220871676 U CN202220871676 U CN 202220871676U CN 217924620 U CN217924620 U CN 217924620U
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China
Prior art keywords
support
rod
shaped
floor structure
section
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CN202220871676.8U
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Chinese (zh)
Inventor
罗远鹏
苏强
王宁
逯彦明
王彩峰
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China Construction Seventh Engineering Division Corp Ltd
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China Construction Seventh Engineering Division Corp Ltd
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Priority to CN202220871676.8U priority Critical patent/CN217924620U/en
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Abstract

The utility model relates to an assembled raised floor structure has solved the complicated, the loaded down with trivial details technical problem of installation of assembled raised floor structure among the prior art. The utility model discloses a support, connect, connecting rod and installation panel, the support top is seted up the spliced eye that the opening is up, the joint includes grafting section and linkage segment, grafting section coaxial insert in the spliced eye at support top, the linkage segment is including setting up at least three connecting blocks that are the circumference distribution at grafting section top along the center of grafting section, all set up the special-shaped connecting hole that extends along its length direction on every connecting block, the connecting rod includes a section of straight-bar section and two sections special-shaped rod sections that are located straight-bar section both ends, special-shaped rod section is pegged graft with the special-shaped connecting hole on the corresponding connecting block and is cooperated, the last lateral wall of straight-bar section is used for supporting the installation panel that waits to assemble; each angle of the mounting panel is provided with an avoiding groove for avoiding the corresponding connecting block. The utility model discloses the installation effectiveness is high, has reduced the material loss, green.

Description

Assembled built on stilts floor structure
Technical Field
The utility model relates to an assembly type structure decoration technical field especially relates to an assembled raised floor structure.
Background
In places with antistatic requirements such as electronic computer rooms, data processing centers and communication hubs, antistatic floors are often laid and are in an overhead floor structure. The built on stilts floor structure among the prior art is often complicated, like chinese utility model patent (publication No. CN 202131757U) discloses an antistatic floor support, including last holding surface, the up end equipartition of going up the holding surface has 4 locating pins, the locating pin is equipped with the round hole along the axial, be equipped with the internal thread that is used for spiro union countersunk screw on the round hole. This floor supporting structure is comparatively stable, but it has used a plurality of locating pins and a plurality of countersunk screw, need twist a plurality of countersunk screw in the round hole on the locating pin when the installation panel, and the installation is comparatively loaded down with trivial details, and the efficiency of construction is low, and need use a large amount of countersunk screw in its installation, and the consumptive material is more.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims to provide an assembled raised floor structure has solved the complicated, loaded down with trivial details technical problem of installation of assembled raised floor structure among the prior art.
In order to achieve the above purpose, the utility model adopts the technical scheme that:
an assembly type raised floor structure comprises a plurality of supports, joints, connecting rods and mounting panels, wherein the tops of the supports are provided with inserting holes with upward openings; the connectors are arranged in one-to-one correspondence with the support and comprise inserting sections and connecting sections, the inserting sections are coaxially inserted into inserting holes in the top of the support, the connecting sections comprise at least three connecting blocks which are arranged on the top of the inserting sections and circumferentially distributed along the centers of the inserting sections, and each connecting block is provided with a special-shaped connecting hole extending along the length direction of the connecting block; the connecting rods are provided with a plurality of connecting rods, each connecting rod comprises a straight rod section and two special-shaped rod sections positioned at two ends of the straight rod section, the special-shaped rod sections are in plug fit with the special-shaped connecting holes in the corresponding connecting blocks, and the upper side walls of the straight rod sections are used for supporting the mounting panel to be assembled; and each corner of the mounting panel is provided with an avoiding groove for avoiding the corresponding connecting block.
The beneficial effects of the above technical scheme are: the support, the joint, the connecting rod and the mounting panel are mechanically connected to form an overhead floor structure, so that the structure is simple and the mounting and dismounting are convenient; the connecting block is provided with a special-shaped connecting hole, the two ends of the connecting rod are provided with special-shaped rod sections, and the special-shaped rod sections are inserted into the special-shaped connecting hole so that the connecting rod and the connecting block can be clamped together; the installation panel can be placed on the side wall of the straight rod section of the connecting rod, an avoidance groove for avoiding the corresponding connecting block is formed in each corner of the installation panel, the avoidance groove is clamped on the connecting block, the connecting block is matched with the avoidance groove, the placement position of the installation panel can be limited, and meanwhile the connecting block also plays a role in supporting the installation panel; and this assembled raised floor structure can be according to the shape and the size on scene ground prefabricate in the mill in advance, can produce the joint of different patterns, the connecting rod of different length and the installation panel of different shape sizes in advance according to the shape and the size on special-shaped ground when meetting special-shaped ground, can be applicable to the floor installation on special-shaped ground department.
Furthermore, the connecting block is a U-shaped block, the U-shaped block is provided with a U-shaped groove, the U-shaped groove forms the special-shaped connecting hole, two opposite parallel groove walls of the U-shaped groove are provided with limiting tooth grooves which are arranged at intervals along the length direction of the groove walls, and the special-shaped rod section is provided with limiting teeth matched with the limiting tooth grooves.
The beneficial effects of the above technical scheme are: the special-shaped connecting hole is of a U-shaped groove structure, the two relatively parallel groove walls of the U-shaped groove are provided with limiting tooth grooves which are arranged at intervals along the length direction of the groove walls, the special-shaped rod section is provided with limiting teeth matched with the limiting tooth grooves, the side wall of the special-shaped rod section which can be perpendicular to the connecting block is inserted into the special-shaped connecting hole in the connecting block, the connecting rod and the connecting block cannot slide along the length direction of the connecting rod after the special-shaped rod section is inserted into the special-shaped connecting hole, and the connecting rod and the connecting block are more stably connected.
Furthermore, the upper surface of straight-bar section is equipped with the spacing boss that extends along the length direction of straight-bar section, and in the width direction of straight-bar section, leave the interval of settlement between two corresponding sides of the both sides face of spacing boss and straight-bar section, spacing boss clamp is established between two corresponding connecting blocks to spacing boss supports with the corresponding lateral wall of installation panel and leans on.
The beneficial effects of the above technical scheme are: be provided with spacing boss on the last lateral wall of straight-bar section, on the width direction of straight-bar section, leave the interval of settlement between two sides of the both sides face of spacing boss and the correspondence of straight-bar section, be used for laying the installation panel on the upper surface of straight-bar section, the last lateral wall of spacing boss width direction supports with the corresponding lateral wall of installation panel and leans on, spacing boss clamp is established between two installation panels, because the installation panel can not follow the horizontal direction and slide under the limiting displacement in connecting block and dodge the groove, the horizontal direction's removal can not take place yet to the connecting rod, can prevent that the connecting rod from landing from the connecting block, simultaneously after the installation of installation panel is accomplished, the installation gap of installation panel is inseparable, and the appearance is pleasing to the eye.
Furthermore, the plug hole is cylindrical, and the plug section of the joint is cylindrical and is matched with the plug hole.
The beneficial effects of the above technical scheme are: the joint can rotate in the inserting hole, so that the angle and the position of installation can be adjusted conveniently.
Further, the height of the support can be adjusted.
The beneficial effects of the above technical scheme are: the height of the support can be adjusted, and the requirement of the overhead height of different places can be met.
Further, the support includes base, bracing piece and goes up the supporter, has seted up opening bracing piece movable groove up on the base, is provided with the internal thread in the bracing piece movable groove, be provided with on the bracing piece with the bracing piece movable groove on internal thread assorted external screw thread, threaded connection between the lower part of bracing piece and the base, the upper portion of bracing piece is connected with the bottom rotation of last supporter, the spliced eye is located the top of supporter.
The beneficial effects of the above technical scheme are: threaded connection between bracing piece and the base, the bracing piece top is rotated with the bottom of last supporter and is connected, rotates the height of bracing piece alright adjustment support, and can not drive the last supporter rotation of top when rotating the bracing piece.
Furthermore, threaded connection has fastening nut on the bracing piece, and fastening nut is located the base top for lock the bracing piece.
The beneficial effects of the above technical scheme are: the fastening nut can lock the support rod on the base, so that the support of the support is more stable.
Furthermore, a screwing block is fixedly connected to the supporting rod and located above the fastening nut.
The beneficial effects of the above technical scheme are: the screwing block is installed to facilitate screwing of the support rod.
Drawings
FIG. 1 is an assembly schematic of a fabricated raised floor structure of the present invention;
FIG. 2 is a schematic view of a joint in a fabricated raised floor structure according to the present invention;
FIG. 3 is a schematic view of a connecting rod in a fabricated raised floor structure according to the present invention;
FIG. 4 is a schematic view of a mounting panel of a fabricated raised floor structure according to the present invention;
FIG. 5 is an elevation view of a fabricated raised floor structure of the present invention;
FIG. 6 is a schematic view of another version of a joint in a fabricated raised floor structure according to the present invention;
fig. 7 is a schematic view of another embodiment of a joint in a fabricated raised floor structure according to the present invention.
In the figure: 1. a support; 2. a joint; 3. a connecting rod; 4. installing a panel; 5. a panel placement groove; 6. a profiled pole section; 7. a straight pole section; 8. a plug section; 9. connecting blocks; 10. a special-shaped connecting hole; 11. a base; 12. a support bar; 13. fastening a nut; 14. screwing the block; 15. an upper support; 16. a support rod movable groove; 17. a limiting boss; 18. an avoidance groove; 19. limiting teeth; 20. a limiting tooth socket; 201. a joint; 301. and (4) a joint.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments:
as shown in fig. 1 and 5, a fabricated raised floor structure includes a pedestal 1, a joint 2, a connecting rod 3, and a mounting panel 4. The support 1 comprises a base 11, a support rod 12 and an upper support body 15, the base 11 comprises a bottom support block and a support column, the support column is cylindrical, the support column is positioned above the bottom support block, a support rod movable groove 16 with an upward opening is formed in the upper portion of the support column, an internal thread is arranged in the support rod movable groove 16, an external thread matched with the internal thread in the support rod movable groove 16 is arranged on the support rod 12, the lower portion of the support rod 12 is in threaded connection with the base 11, a fastening nut 13 is further in threaded connection with a portion of the support rod 12, which is positioned outside the support rod movable groove 16, the fastening nut 13 is used for locking the support rod 12 on the base 11 after the height of the support 1 is adjusted, a screwing block 14 is welded above the fastening nut 13 of the support rod 12, the screwing block 14 is used for conveniently screwing the support rod 12, go up the bottom of supporter 15 and buried rolling bearing underground, the top of bracing piece 12 is embedded in rolling bearing, go up supporter 15 top and seted up opening cylindrical spliced eye up, install joint 2 in the spliced eye, as shown in fig. 2, connect 2 including insert splicing section 8 in the spliced eye and be used for the linkage segment be connected with connecting rod 3, splicing section 8 is the cylindrical structure with spliced eye adaptation, the linkage segment is four connecting blocks 9 that are the circumference and distribute along splicing section 8's center at splicing section 8 top including setting up, connecting block 9 is the U-shaped piece, the U-shaped piece has the U-shaped groove, the U-shaped groove forms special-shaped connecting hole 10, be equipped with a plurality of spacing tooth's socket 20 along the equidistant arrangement of length direction of cell wall on two relatively parallel cell walls in U-shaped groove.
Connecting block 9 is connected with connecting rod 3 through special-shaped connecting hole 10, as shown in fig. 3, connecting rod 3 includes straight-bar section 7 and the special-shaped bar section 6 that is located straight-bar section 7 both ends, be equipped with on the special-shaped bar section 6 with a plurality of spacing tooth's socket 20 complex on the connecting block 9, the upper surface of straight-bar section 7 is provided with the spacing boss 17 that extends along the length direction of straight-bar section 7, the width of spacing boss 17 is less than the width of lateral wall on straight-bar section 7, spacing boss 17 is located the intermediate position department of lateral wall width direction on straight-bar section 7, form right angle shape notch between lateral wall and the last lateral wall of straight-bar section 7 about spacing boss 17, a plurality of joints 2 are end to end with many connecting rods 3, a plurality of right angle shape notches on the straight-bar section enclose into circumference confined panel standing groove 5 with connecting block 9, as shown in fig. 4, each angle department of installation panel 4 offers the groove 18 of dodging that is used for dodging corresponding connecting block 9, the installation panel is placed in panel standing still 5, it establishes on corresponding connecting block 9 to keep away the lateral wall 18 card, the lateral wall of installation panel 4 and the lateral wall and the width of installation panel 17, the bottom surface of leaning on the installation panel 17 is supported against the width of the installation panel.
When the fabricated raised floor structure is used, firstly, the assembled raised floor structure is divided into lines according to a standardized design on site and is integrally designed according to the size and the angle, the mounting panel 4 is prepared according to the designed structure, the support 1 is placed at the intersection of the divided lines, the height of the support 1 can be adjusted by screwing the screwing block 14, after the height of the support 1 is adjusted, the fastening nut 13 is screwed, the support rod 12 can be locked on the base 11, the connector 2 is placed in the inserting hole in the upper support body 15, the placing angle of the connecting block 9 on each connector 2 can be adjusted by the rotary connector 2, the special-shaped rod sections 6 at the two ends of the connecting rod 3 are inserted into the special-shaped connecting holes 10 on the connecting block 9, the connecting rod 3 and the connector 2 are fixedly inserted, the connecting rods 3 are connected end to end through the connectors 2 to form the panel placing groove 5, the mounting panel 4 is placed in the panel placing groove 5, the mounting of the mounting panel 4 is completed by repeating the steps, and the rapid mounting of the assembled raised floor structure is realized.
The utility model discloses simple structure, simple to operate to can be applicable to the floor installation on dysmorphism ground, improve floor installation effectiveness greatly, just the utility model discloses the consumptive material is less, and it is convenient to dismantle, can have enough to meet the need the use after the dismantlement, resources are saved, green.
In this embodiment, be provided with spacing boss on the straight-bar section, in other embodiments, also can not set up spacing boss, with the slightly bigger some of installation panel size setting, will dodge some of the slightly darker of groove depth setting on the installation panel, also can realize closely laminating between the installation panel, make the installation gap on floor inseparable, the appearance is pleasing to the eye.
In the embodiment, the height of the support can be adjusted, and the support can be made into a structure with a fixed height under the condition that the installation height of other raised floors is determined.
In this embodiment, the joint is provided with four circumferentially and uniformly distributed connection blocks 9, in other embodiments, the joint may also adopt a structure as shown in fig. 6, the joint 201 is different from the joint of the above embodiment 1 only in the size of the included angle between the connection blocks 9, the joint 201 also includes four connection blocks 9, an included angle is formed between every two connection blocks 9, the size of the angle of every two adjacent included angles is not equal, and the size of the angle of every two opposite included angles is equal. Of course, the joint may also adopt a structure as shown in fig. 7, the joint 301 is different from the joint of embodiment 1 in the number of the joint blocks 9 and the size of the included angle between the joint blocks 9, the joint 301 includes six circumferentially and uniformly distributed joint blocks 9, the size of the included angle between the joint blocks 9 is smaller than that between the joint blocks 9 on the joint 2, and of course, in the specific construction, the joint with the appropriate number of the joint blocks is selected according to the ground shape.
In the above embodiment, only one type of joint is used, and in other embodiments, if a special-shaped ground is encountered, a combination of a plurality of joints with different structures can be used, for example, a combination of any two types of joints such as joint 2 shown in fig. 2, joint 201 shown in fig. 6, joint 301 shown in fig. 7, or a combination of three types of joints can be used, in which case, the shape and size of the installation panel need to be adapted to the special-shaped ground, and the structure of the joint needs to be adapted.
The above-mentioned embodiments of the present invention do not limit the scope of the present invention. Any modification, equivalent replacement, and improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (8)

1. A fabricated raised floor structure, comprising:
the support is provided with a plurality of supports, and the top of each support is provided with an inserting hole with an upward opening;
the connectors are arranged in one-to-one correspondence with the support and comprise inserting sections and connecting sections, the inserting sections are coaxially inserted into the inserting holes in the top of the support, the connecting sections comprise at least three connecting blocks which are arranged on the top of the inserting sections and circumferentially distributed along the centers of the inserting sections, and each connecting block is provided with a special-shaped connecting hole extending along the length direction of the connecting block;
the connecting rods are provided with a plurality of connecting rods, each connecting rod comprises a straight rod section and two special-shaped rod sections positioned at two ends of the straight rod section, the special-shaped rod sections are in inserting fit with the special-shaped connecting holes in the corresponding connecting blocks, and the upper side walls of the straight rod sections are used for supporting the mounting panel to be assembled;
the installation panel, each angle department of installation panel offers and is used for dodging the groove of dodging that corresponds the connecting block.
2. The fabricated raised floor structure according to claim 1, wherein the connecting block is a U-shaped block having a U-shaped groove, the U-shaped groove forms the profile connecting hole, two opposite parallel groove walls of the U-shaped groove are provided with spacing tooth grooves spaced apart along a length direction of the groove walls, and the profile rod segment has spacing teeth engaged with the spacing tooth grooves.
3. An assembled raised floor structure as claimed in claim 1, wherein the upper surface of the straight rod section is provided with a limit boss extending along the length direction of the straight rod section, a predetermined distance is left between two side surfaces of the limit boss and two corresponding side surfaces of the straight rod section in the width direction of the straight rod section, the limit boss is clamped between two corresponding connecting blocks, and the limit boss abuts against the corresponding side wall of the mounting panel.
4. A fabricated raised floor structure as claimed in any one of claims 1 to 3, wherein the plug hole is cylindrical and the plug section of the connector is cylindrical to fit the plug hole.
5. A fabricated raised floor structure according to any of claims 1-3, characterised in that the height of the pedestals is adjustable.
6. The fabricated raised floor structure of claim 5, wherein the support comprises a base, a support rod and an upper support, the base is provided with a support rod movable groove with an upward opening, the support rod movable groove is provided with an internal thread, the support rod is provided with an external thread matching with the internal thread on the support rod movable groove, the lower part of the support rod is in threaded connection with the base, the upper part of the support rod is rotatably connected with the bottom of the upper support, and the insertion hole is located at the top of the upper support.
7. A fabricated raised floor structure as claimed in claim 6, wherein the support bars are screwed with fastening nuts, which are located above the base for locking the support bars.
8. A fabricated raised floor structure as claimed in claim 6 or 7, wherein a screwing block is fixedly connected to the supporting rod, and the screwing block is located above the fastening nut.
CN202220871676.8U 2022-04-15 2022-04-15 Assembled built on stilts floor structure Active CN217924620U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220871676.8U CN217924620U (en) 2022-04-15 2022-04-15 Assembled built on stilts floor structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220871676.8U CN217924620U (en) 2022-04-15 2022-04-15 Assembled built on stilts floor structure

Publications (1)

Publication Number Publication Date
CN217924620U true CN217924620U (en) 2022-11-29

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115807519A (en) * 2022-12-15 2023-03-17 中建八局第三建设有限公司 Detachable assembly type ground installation adjusting system and assembly method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115807519A (en) * 2022-12-15 2023-03-17 中建八局第三建设有限公司 Detachable assembly type ground installation adjusting system and assembly method thereof
CN115807519B (en) * 2022-12-15 2023-10-17 中建八局第三建设有限公司 Detachable assembled ground installation adjusting system and assembling method thereof

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