Keel structure for installing insulation board and building

By designing an adjustable keel structure, the problem of fixed threaded hole positions in existing keel structures has been solved, enabling flexible hole adjustment and stable installation, thus improving the practicality and stability of the device.

CN223952159UActive Publication Date: 2026-02-27SHANGHAI YINGTOU CONSTR DEV CO LTD
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Patent Information

Application Number
CN202520336653.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-02-27
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

The existing keel structure's internal threaded hole position remains unchanged, which reduces the device's practicality.

Method used

Design a keel structure including a longitudinal mounting unit, a transverse mounting unit, an adjustment unit, a first abutment unit, a second abutment unit, and a movable unit. Through the coordinated use of these units, the position of the threaded hole can be adjusted and stabilized.

Benefits of technology

The device allows for adjustment of the threaded hole position according to the needs of different insulation boards, improving the practicality of the device and ensuring installation stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a keel structure for installing a heat insulation board and a building. The keel structure comprises a plurality of longitudinal installation units, a plurality of transverse installation units, a plurality of adjusting units, a plurality of first abutting units, a plurality of second abutting units and a plurality of movable units. The thermal insulation board mounting device has the advantages that the position of the adjusting unit on the transverse mounting unit can be adjusted through cooperative use of the transverse mounting unit and the adjusting unit, so that the position of an internal thread hole of a mounting bolt is adjusted according to different thermal insulation boards, and an operator can conveniently adjust and use the thermal insulation board mounting device under different conditions; the practicability of the device is improved; and the first abutting unit, the second abutting unit, the movable unit and the fixed unit are matched for use, so that the adjusted adjusting unit can be stabilized, and the installation stability of the keel structure is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to related technical field of building engineering especially, a kind of keel structure and building for installing insulation board. BACKGROUND

[0002] Insulation board is mainly composed of thermal insulation layer, protective layer and decorative layer, the thermal insulation layer material widely used in domestic currently includes: rock wool, EPS, XPS, rigid polyurethane board, modified polystyrene board, graphite polystyrene board etc.;Protective layer is generally calcium silicate cement board, metal plate and thin stone material etc.;Decorative layer has real stone paint, fluorocarbon paint, polyurethane metal paint etc.

[0003] Most of the existing keel structure cannot adjust the position of internal thread hole of mounting bolt according to different insulation boards, which is inconvenient for operators to adjust and use in different situations, thereby reducing the practicality of the device.

[0004] At present, there is no effective solution to the problem of constant internal thread hole position adjustment of keel structure in related technology, which reduces the practicality of the device. INVENTION CONTENTS

[0005] The utility model aims at the insufficient in prior art, provide a kind of keel structure and building for installing insulation board, to solve the problem of constant internal thread hole position adjustment of keel structure in related technology, which reduces the practicality of the device.

[0006] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is:

[0007] Firstly, a kind of keel structure for installing insulation board is provided, comprising:

[0008] A plurality of longitudinal installation units are distributed and arranged at the front end of the main structure and connected with the main structure;

[0009] A plurality of transverse installation units are distributed and arranged at the front end of a plurality of longitudinal installation units, and are respectively arranged perpendicularly to a plurality of longitudinal installation units and connected with a plurality of longitudinal installation units;

[0010] A plurality of adjusting units are respectively connected with a plurality of transverse installation units in sliding mode, for reciprocating motion in horizontal direction;

[0011] a plurality of first abutting units, each of the first abutting units movably arranged at the inner side of the corresponding adjusting unit and abutting against the corresponding transverse mounting unit, for reciprocating along the vertical direction to limit the relative position of the corresponding adjusting unit and the corresponding transverse mounting unit, and reciprocating along the horizontal direction under the action of the adjusting unit;

[0012] a plurality of second abutting units, each of the second abutting units movably arranged at the inner side of the corresponding adjusting unit and located below the corresponding first abutting unit, and abutting against the corresponding transverse mounting unit, for reciprocating along the vertical direction to limit the relative position of the corresponding adjusting unit and the corresponding transverse mounting unit in cooperation with the corresponding first abutting unit, and reciprocating along the horizontal direction under the action of the adjusting unit, wherein the movement direction of the second abutting unit is opposite to that of the first abutting unit;

[0013] a plurality of movable units, each of the movable units movably arranged at the inner side of the corresponding adjusting unit and located between the corresponding first abutting unit and the second abutting unit, and abutting against the corresponding first abutting unit and the second abutting unit, for reciprocating along the horizontal direction to respectively press the corresponding first abutting unit and the second abutting unit, and reciprocating along the horizontal direction under the action of the adjusting unit.

[0014] In some embodiments, the longitudinal mounting unit comprises:

[0015] a longitudinal mounting element arranged at the front end of the main body structure, the front end of the longitudinal mounting element being provided with a plurality of transverse mounting units, and the longitudinal mounting element being connected with the main body structure and the plurality of transverse mounting units, for mounting the transverse mounting units on the main body structure.

[0016] In some embodiments, the transverse mounting unit comprises:

[0017] a transverse mounting element arranged at the front end of the plurality of longitudinal mounting units and arranged perpendicularly to the plurality of longitudinal mounting units, and connected with the plurality of longitudinal mounting units;

[0018] a first sliding element arranged at the front end of the transverse mounting element and slidingly connected with the corresponding adjusting unit, for reciprocating the adjusting unit along the horizontal direction.

[0019] In some embodiments, the adjusting unit comprises:

[0020] An adjusting element, which is in sliding connection with the corresponding lateral mounting unit, is used for reciprocating movement in the horizontal direction;

[0021] A chamber element, which is arranged inside the adjusting element, has an inner cavity in which the first abutting unit, the second abutting unit, and the movable unit are arranged;

[0022] A second sliding element, which is arranged at the top end of the chamber element, is in sliding connection with the first abutting unit;

[0023] A third sliding element, which is arranged at the top end of the chamber element and is symmetrically arranged with the second sliding element, is in sliding connection with the second abutting unit.

[0024] In some embodiments, the first abutting unit comprises:

[0025] A first abutting element, which is movably arranged inside the corresponding adjusting unit and is in abutment with the corresponding lateral mounting unit, is used for reciprocating movement in the vertical direction to limit the relative position of the corresponding adjusting unit and the corresponding lateral mounting unit, and reciprocating movement in the horizontal direction under the action of the adjusting unit.

[0026] In some embodiments, the second abutting unit comprises:

[0027] A second abutting element, which is movably arranged inside the corresponding adjusting unit and is below the corresponding first abutting unit, is in abutment with the corresponding lateral mounting unit, is used for reciprocating movement in the vertical direction to limit the relative position of the corresponding adjusting unit and the corresponding lateral mounting unit in cooperation with the corresponding first abutting element, and reciprocating movement in the horizontal direction under the action of the adjusting unit. The movement direction of the second abutting element is opposite to that of the first abutting element.

[0028] In some embodiments, the movable unit comprises:

[0029] A movable element, which is movably arranged inside the corresponding adjusting unit and is between the corresponding first abutting element and the second abutting element, is in abutment with the corresponding first abutting element and the second abutting element, respectively, is used for reciprocating movement in the horizontal direction to press the corresponding first abutting element and the second abutting element, respectively, and reciprocating movement in the horizontal direction under the action of the adjusting unit.

[0030] In some embodiments, the keel structure further comprises:

[0031] A plurality of fixed units, each of which is detachably connected with a corresponding adjusting unit and abuts against a corresponding movable unit, for driving the movable unit to reciprocate along the horizontal direction to press the first abutting unit and the second abutting unit respectively.

[0032] In some embodiments, the adjusting unit further comprises:

[0033] A connecting element arranged at the front end of the adjusting unit and detachably connected with the corresponding fixed unit.

[0034] In some embodiments, the fixed unit comprises:

[0035] A fixed element detachably connected with the corresponding adjusting unit and abutting against the corresponding movable unit, for driving the movable unit to reciprocate along the horizontal direction to press the first abutting unit and the second abutting unit respectively.

[0036] In a second aspect, a building is provided, comprising:

[0037] The keel structure as claimed in the first aspect is installed at the front end of the main body structure.

[0038] The keel structure for installing the insulation board and the building according to the above technical scheme have the following technical effects compared with the prior art:

[0039] The keel structure for installing the insulation board and the building according to the above technical scheme have the following technical effects compared with the prior art: BRIEF DESCRIPTION OF DRAWINGS

[0040] Figure 1 is a schematic diagram of the three-dimensional structure of the keel structure according to the embodiment of the utility model;

[0041] Figure 2 is an exploded view of the keel structure according to the embodiment of the utility model;

[0042] Figure 3 is a sectional view of part of the keel structure according to the embodiment of the utility model;

[0043] Figure 4is a three-dimensional structure schematic diagram of a longitudinal mounting unit according to an embodiment of the present application;

[0044] Figure 5 is a three-dimensional structure schematic diagram of a transverse mounting unit according to an embodiment of the present application;

[0045] Figure 6 is a three-dimensional structure schematic diagram of an adjusting unit according to an embodiment of the present application;

[0046] Figure 7 is a three-dimensional structure schematic diagram of a first abutting unit according to an embodiment of the present application;

[0047] Figure 8 is a three-dimensional structure schematic diagram of a second abutting unit according to an embodiment of the present application;

[0048] Figure 9 is a three-dimensional structure schematic diagram of a movable unit according to an embodiment of the present application;

[0049] Figure 10 is a three-dimensional structure schematic diagram of a fixed unit according to an embodiment of the present application.

[0050] The reference signs in the drawings are as follows: 10, longitudinal mounting unit; 11, longitudinal mounting element;

[0051] 20, transverse mounting unit; 21, transverse mounting element; 22, first sliding element;

[0052] 30, adjusting unit; 31, adjusting element; 32, chamber element; 33, second sliding element; 34, third sliding element; 35, connecting element;

[0053] 40, first abutting unit; 41, first abutting element;

[0054] 50, second abutting unit; 51, second abutting element;

[0055] 60, movable unit; 61, movable element;

[0056] 70, fixed unit; 71, fixed element. DETAILED DESCRIPTION

[0057] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0058] It should be noted that the embodiments in the utility model and the features in the embodiments can be combined with each other without conflict.

[0059] The utility model will be further described below in combination with the drawings and specific embodiments, but not as the limitation of the utility model.

[0060] Embodiment 1

[0061] This embodiment relates to the keel structure of the utility model.

[0062] As shown in Figure 1 , Figure 2 , Figure 3 A kind of keel structure for installing thermal insulation board, including several longitudinal installation units 10, several transverse installation units 20, several adjusting units 30, several first abutment units 40, several second abutment units 50 and several movable units 60.It is distributed and set to the front end of main body structure, and is connected with main body structure, wherein several longitudinal installation units 10;Several transverse installation units 20 are distributed and set to the front end of several longitudinal installation units 10, and are respectively vertically arranged with several longitudinal installation units 10, and are respectively connected with several longitudinal installation units 10;Several adjusting units 30 are respectively slidably connected with several transverse installation units 20, for reciprocating along horizontal direction;Several first abutment units 40 are respectively movably arranged in the inner side of corresponding adjusting unit 30, and are respectively in abutment with corresponding transverse installation unit 20, for reciprocating along vertical direction to limit the relative position of corresponding adjusting unit 30 and corresponding transverse installation unit 20, reciprocating along horizontal direction under the action of adjusting unit 30;Several second abutment units 50 are respectively movably arranged in the inner side of corresponding adjusting unit 30, and are located below corresponding first abutment unit 40, and are respectively in abutment with corresponding transverse installation unit 20, for reciprocating along vertical direction to limit the relative position of corresponding adjusting unit 30 and corresponding transverse installation unit 20 with corresponding first abutment unit 40, reciprocating along horizontal direction under the action of adjusting unit 30.The movement direction of second abutment unit 50 is opposite to the movement direction of first abutment unit 40;Several movable units 60 are respectively movably arranged in the inner side of corresponding adjusting unit 30, and are located between corresponding first abutment unit 40 and second abutment unit 50, and are respectively in abutment with corresponding first abutment unit 40, second abutment unit 50, for reciprocating along horizontal direction to respectively extrude corresponding first abutment unit 40, second abutment unit 50 and reciprocating along horizontal direction under the action of adjusting unit 30.

[0063] In some embodiments, several longitudinal installation units 10 are arranged at equal intervals along horizontal direction.

[0064] In some embodiments, a plurality of horizontal mounting units 20 are arranged at equal intervals along the vertical direction. That is, a plurality of horizontal mounting units 20 are arranged at equal intervals along the height direction of the longitudinal mounting unit 10.

[0065] In some of the embodiments, several adjustment units 30 are distributed along the length of the transverse mounting unit 20.

[0066] In some embodiments, the number of first abutment units 40 matches the number of adjustment units 30. Generally, the number of first abutment units 40 is equal to the number of adjustment units 30. That is, each adjustment unit 30 corresponds to one first abutment unit 40.

[0067] In some embodiments, the number of second abutment units 50 matches the number of adjustment units 30. Generally, the number of second abutment units 50 is equal to the number of adjustment units 30. That is, each adjustment unit 30 is provided with one second abutment unit 50.

[0068] In some embodiments, the number of movable units 60 matches the number of adjustment units 30. Generally, the number of movable units 60 is equal to the number of adjustment units 30. That is, each adjustment unit 30 corresponds to one movable unit 60.

[0069] like Figure 4 As shown, the longitudinal mounting unit 10 includes a longitudinal mounting element 11. The longitudinal mounting element 11 is disposed at the front end of the main structure, and the front end of the longitudinal mounting element 11 is provided with a plurality of transverse mounting units 20, which are respectively connected to the main structure and the plurality of transverse mounting units 20, for mounting the transverse mounting units 20 onto the main structure.

[0070] The cross-section of the longitudinally mounted element 11 is rectangular.

[0071] In some of these embodiments, the longitudinal mounting element 11 is made of steel.

[0072] In some of these embodiments, the longitudinal mounting element 11 is a transverse mounting plate.

[0073] like Figure 5 As shown, the horizontal mounting unit 20 includes a horizontal mounting element 21 and a first sliding element 22. The horizontal mounting element 21 is disposed at the front end of a plurality of vertical mounting units 10 and is perpendicular to and connected to the plurality of vertical mounting units 10; the first sliding element 22 is disposed at the front end of the horizontal mounting element 21 and is slidably connected to the corresponding adjustment unit 30, for causing the adjustment unit 30 to reciprocate in the horizontal direction.

[0074] Specifically, the transverse mounting element 21 is arranged at the front end of the longitudinal mounting element 11 and is arranged perpendicularly to the longitudinal mounting element 11 and is connected to the longitudinal mounting element 11.

[0075] The transverse mounting element 21 has a rectangular cross section.

[0076] The size of the transverse mounting element 21 matches the size of the longitudinal mounting element 11. Generally, the length of the transverse mounting element 21 is greater than the length of the longitudinal mounting element 11, the width of the transverse mounting element 21 is greater than the width of the longitudinal mounting element 11, and the height of the transverse mounting element 21 is less than the height of the longitudinal mounting element 11.

[0077] In some embodiments, the transverse mounting element 21 is fixedly connected to the longitudinal mounting element 11, including but not limited to bolt connection.

[0078] In some embodiments, the transverse mounting element 21 is made of steel structure.

[0079] In some embodiments, the transverse mounting element 21 is a longitudinal mounting plate.

[0080] The longitudinal cross section of the first sliding element 22 is convex. Specifically, the first sliding element 22 includes a first sliding groove and a second sliding groove. The first sliding groove is arranged at the front end of the transverse mounting element 21 and is slidably connected to the corresponding adjustment unit 30; the second sliding groove is arranged at the rear end of the first sliding groove and is slidably connected to the corresponding adjustment unit 30.

[0081] The size of the first sliding groove matches the size of the transverse mounting element 21. Generally, the length of the first sliding groove is equal to the length of the transverse mounting element 21, the width of the first sliding groove is less than the width of the transverse mounting element 21, and the height of the first sliding groove is less than the height of the transverse mounting element 21.

[0082] The size of the second sliding groove matches the size of the transverse mounting element 21. Generally, the length of the second sliding groove is equal to the length of the transverse mounting element 21, the width of the second sliding groove is less than the width of the transverse mounting element 21, and the height of the second sliding groove is less than the height of the transverse mounting element 21.

[0083] The size of the second sliding groove matches the size of the first sliding groove. Generally, the length of the second sliding groove is equal to the length of the first sliding groove, the width of the second sliding groove is greater than the width of the first sliding groove, and the height of the second sliding groove is greater than the height of the first sliding groove.

[0084] As Figure 6As shown, the adjusting unit 30 comprises an adjusting element 31, a chamber element 32, a second sliding element 33 and a third sliding element 34. Among them, the adjusting element 31 is in sliding connection with the corresponding transverse mounting unit 20, for reciprocating movement in the horizontal direction; the chamber element 32 is arranged inside the adjusting element 31, and the inside of the chamber element 32 is movably provided with a first abutting unit 40, a second abutting unit 50 and a movable unit 60; the second sliding element 33 is arranged at the top end of the chamber element 32 and is in sliding connection with the first abutting unit 40; the third sliding element 34 is arranged at the top end of the chamber element 32 and is symmetrically arranged with the second sliding element 33 and is in sliding connection with the second abutting unit 50.

[0085] Specifically, the adjusting element 31 is in sliding connection with the corresponding first sliding element 22.

[0086] More specifically, the adjusting element 31 is in sliding connection with the corresponding first sliding groove and second sliding groove, respectively.

[0087] The cross section of the adjusting element 31 is convex. Specifically, the adjusting element 31 comprises a first adjusting block and a second adjusting block. Among them, the first adjusting block is in sliding connection with the corresponding first sliding groove; the inside of the second adjusting block is arranged in the chamber element 32, the top end of the second adjusting block is provided with the second sliding element 33, the bottom end of the second adjusting block is provided with the third sliding element 34, and the second adjusting block is in sliding connection with the corresponding second sliding groove.

[0088] The size of the first adjusting block matches the size of the first sliding element 22. Generally, the length of the first adjusting block is less than the length of the first sliding groove, the width of the first adjusting block is equal to the width of the first sliding groove, and the height of the first adjusting block is equal to the height of the first sliding groove.

[0089] The size of the second adjusting block matches the size of the first sliding element 22. Generally, the length of the second adjusting block is less than the length of the second sliding groove, the width of the second adjusting block is equal to the width of the second sliding groove, and the height of the second adjusting block is equal to the height of the second sliding groove.

[0090] The size of the second adjusting block matches the size of the first adjusting block. Generally, the length of the second adjusting block is equal to the length of the first adjusting block, the width of the second adjusting block is greater than the width of the first adjusting block, and the height of the second adjusting block is greater than the height of the first adjusting block.

[0091] In some embodiments, the adjusting element 31 is made of steel structure.

[0092] The cross section of the chamber element 32 is rectangular.

[0093] The size of the chamber element 32 matches the size of the adjustment element 31. Generally, the length of the chamber element 32 is less than the length of the second adjustment block, the width of the chamber element 32 is less than the width of the second adjustment block, and the height of the chamber element 32 is less than the height of the second adjustment block.

[0094] In some embodiments thereof, the chamber element 32 is a chamber.

[0095] The cross-section of the second sliding element 33 is rectangular.

[0096] The size of the second sliding element 33 matches the size of the adjustment element 31. Generally, the length of the second sliding element 33 is less than the length of the second adjustment block, the width of the second sliding element 33 is less than the width of the second adjustment block, and the height of the second sliding element 33 is less than the height of the second adjustment block.

[0097] The size of the second sliding element 33 matches the size of the chamber element 32. Generally, the length of the second sliding element 33 is equal to the length of the chamber element 32, the width of the second sliding element 33 is less than the width of the chamber element 32, and the height of the second sliding element 33 is less than the height of the chamber element 32.

[0098] In some embodiments thereof, the second sliding element 33 is a third sliding groove.

[0099] The cross-section of the third sliding element 34 is rectangular.

[0100] The size of the third sliding element 34 matches the size of the adjustment element 31. Generally, the length of the third sliding element 34 is less than the length of the second adjustment block, the width of the third sliding element 34 is less than the width of the second adjustment block, and the height of the third sliding element 34 is less than the height of the second adjustment block.

[0101] The size of the third sliding element 34 matches the size of the chamber element 32. Generally, the length of the third sliding element 34 is equal to the length of the chamber element 32, the width of the third sliding element 34 is less than the width of the chamber element 32, and the height of the third sliding element 34 is less than the height of the chamber element 32.

[0102] The size of the third sliding element 34 matches the size of the second sliding element 33. Generally, the length of the third sliding element 34 is equal to the length of the second sliding element 33, the width of the third sliding element 34 is equal to the width of the second sliding element 33, and the height of the third sliding element 34 is equal to the height of the second sliding element 33.

[0103] The height of the third sliding element 34, the height of the chamber element 32, and the height of the second sliding element 33 are equal to the height of the second adjustment block.

[0104] In some embodiments, the third sliding element 34 is a third sliding groove.

[0105] As shown in Figure 7 , the first abutting unit 40 comprises a first abutting element 41. The first abutting element 41 is movably arranged at the inner side of the corresponding adjusting unit 30 and abuts against the corresponding transverse mounting unit 20, and is used for reciprocating movement in the vertical direction to limit the relative position of the corresponding adjusting unit 30 and the corresponding transverse mounting unit 20, and reciprocating movement in the horizontal direction under the action of the adjusting unit 30.

[0106] Specifically, the first abutting element 41 is slidably arranged at the corresponding second sliding element 33 and abuts against the top end of the inner side of the corresponding first sliding element 22.

[0107] More specifically, the first abutting element 41 abuts against the top end of the inner side of the corresponding second sliding groove.

[0108] The first abutting element 41 has a structure with a rectangular top end and an inclined bottom end. The height of the first abutting element 41 increases from one end (the end close to the activity unit 60) to the other end (the end away from the activity unit 60).

[0109] The size of the first abutting element 41 matches the size of the second sliding element 33. Generally, the length of the first abutting element 41 is equal to the length of the second sliding element 33, the width of the first abutting element 41 is equal to the width of the second sliding element 33, and the minimum height of the first abutting element 41 is greater than the height of the second sliding element 33.

[0110] In some embodiments, the first abutting element 41 is made of steel structure.

[0111] In some embodiments, the first abutting element 41 is a first abutting block.

[0112] As shown in Figure 8 , the second abutting unit 50 comprises a second abutting element 51. The second abutting element 51 is movably arranged at the inner side of the corresponding adjusting unit 30 and is located below the corresponding first abutting unit 40, and abuts against the corresponding transverse mounting unit 20, and is used for reciprocating movement in the vertical direction to limit the relative position of the corresponding adjusting unit 30 and the corresponding transverse mounting unit 20 in cooperation with the corresponding first abutting unit 40, and reciprocating movement in the horizontal direction under the action of the adjusting unit 30. The movement direction of the second abutting element 51 is opposite to the movement direction of the first abutting unit 40.

[0113] Specifically, the second abutting element 51 is slidably arranged at the corresponding third sliding element 34 and abuts against the bottom end of the inner side of the corresponding first sliding element 22.

[0114] More specifically, the second abutting element 51 abuts against the bottom end of the inner side of the corresponding second sliding groove.

[0115] The second abutting element 51 has a structure with a sloping top and a rectangular bottom. The height of the second abutting element 51 increases from one end (the end closer to the movable unit 60) to the other end (the end farther away from the movable unit 60).

[0116] The dimensions of the second abutment element 51 are matched with the dimensions of the third sliding element 34. Generally, the length of the second abutment element 51 is equal to the length of the third sliding element 34, the width of the second abutment element 51 is equal to the width of the third sliding element 34, and the minimum height of the second abutment element 51 is greater than the height of the third sliding element 34.

[0117] The dimensions of the second abutment element 51 match the dimensions of the first abutment element 41. Generally, the length of the second abutment element 51 is equal to the length of the first abutment element 41, the width of the second abutment element 51 is equal to the width of the first abutment element 41, and the height of the second abutment element 51 is equal to the height of the first abutment element 41.

[0118] In some of these embodiments, the second abutment element 51 is made of steel.

[0119] In some of these embodiments, the second abutting element 51 is a second abutting block.

[0120] like Figure 9 As shown, the movable unit 60 includes a movable element 61. The movable element 61 is movably disposed inside the corresponding adjusting unit 30, and located between the corresponding first abutting unit 40 and the second abutting unit 50, respectively abutting against the corresponding first abutting unit 40 and the second abutting unit 50. It is used to reciprocate horizontally to squeeze the corresponding first abutting unit 40 and the second abutting unit 50, and to reciprocate horizontally under the action of the adjusting unit 30.

[0121] Specifically, the movable element 61 is movably disposed inside the corresponding chamber element 32 and is located between the corresponding first abutting element 41 and the second abutting element 51, and abuts against the corresponding first abutting element 41 and the second abutting element 51 respectively.

[0122] The cross-section of the movable element 61 is an isosceles trapezoid.

[0123] The dimensions of the movable element 61 are matched with the dimensions of the chamber element 32. Generally, the length of the movable element 61 is equal to the length of the chamber element 32, the width of the movable element 61 is less than the width of the chamber element 32, and the height of the movable element 61 is less than the height of the chamber element 32.

[0124] The dimensions of the movable element 61 match those of the first abutting element 41 (second abutting element 51). Generally, the length of the movable element 61 is equal to the length of the first abutting element 41 (second abutting element 51).

[0125] In some of these embodiments, the active element 61 is made of steel.

[0126] In some of these embodiments, the active element 61 is an active block.

[0127] Furthermore, such as Figure 1 , Figure 2 , Figure 3 As shown, the keel structure also includes several fixing units 70. Each fixing unit 70 is detachably connected to a corresponding adjusting unit 30 and abuts against a corresponding movable unit 60, thereby driving the movable unit 60 to reciprocate in the horizontal direction to press against the corresponding first abutting unit 40 and second abutting unit 50 respectively.

[0128] Furthermore, such as Figure 6 As shown, the adjustment unit 30 also includes a connecting element 35. The connecting element 35 is disposed at the front end of the adjustment unit 30 and is detachably connected to the corresponding fixing unit 70.

[0129] Specifically, the connecting element 35 is located at the front end of the adjusting element 31 and is connected to the chamber element 32.

[0130] More specifically, the connecting element 35 is respectively disposed at the front end of the first adjusting block and the front end of the second adjusting block.

[0131] The cross-section of the connecting element 35 is circular.

[0132] The dimensions of the connecting element 35 are matched with the dimensions of the adjusting element 31. Generally, the radial dimension of the connecting element 35 is smaller than the length and height of the first adjusting block, and the axial dimension of the connecting element 35 is larger than the width of the first adjusting block; the radial dimension of the connecting element 35 is smaller than the length and height of the second adjusting block, and the axial dimension of the connecting element 35 is smaller than the width of the second adjusting block.

[0133] In some of these embodiments, the connecting element 35 is a threaded hole.

[0134] like Figure 10 As shown, the fixing unit 70 includes a fixing element 71. The fixing element 71 is detachably connected to the corresponding adjusting unit 30 and abuts against the corresponding movable unit 60, thereby driving the movable unit 60 to reciprocate in the horizontal direction to press the corresponding first abutting unit 40 and second abutting unit 50 respectively.

[0135] In particular, the fixing element 71 is screwed to the corresponding connecting element 35 and is in abutment with the corresponding mobile element 61.

[0136] The cross section of the fixing element 71 is circular,

[0137] The fixing element 71 has dimensions compatible with those of the connecting element 35. Typically, the radial dimension of the fixing element 71 is equal to the radial dimension of the connecting element 35 and the radial dimension of the fixing element 71 is greater than the axial dimension of the connecting element 35.

[0138] In some of the embodiments, the fixing element 71 is made of steel.

[0139] In some of the embodiments, the fixing element 71 is a bolt.

[0140] The use method of the utility model is as follows:

[0141] (I) Preparation operation

[0142] The installation element is placed at the specified position of the main body structure (wall surface), and is connected and fixed through the expansion bolt;

[0143] The transverse installation element 21 is placed at the specified position of the front end of the installation element, and is connected and fixed through the bolt.

[0144] (II) Insulation board installation operation

[0145] The fixing element 71 is preliminarily screwed to the connecting element 35 through the installation hole on the insulation board;

[0146] During the process, the adjusting element 31 can be moved along the length direction of the first sliding element 22 to adjust the position of the connecting element 35, so as to correspond to the installation hole on the insulation board.

[0147] (III) Fixing operation

[0148] The fixing element 71 is twisted to rotate along the circumference direction of the connecting element 35 and move along the axial direction of the connecting element 35 to the direction close to the mobile element 61 until abutting with the mobile element 61;

[0149] With the gradual movement of the connecting element 35, the mobile element 61 is driven to move correspondingly along the width direction of the chamber element 32;

[0150] The first abutting element 41 is driven by the mobile element 61 to move upward along the height direction of the second sliding element 33 until abutting with the top wall of the first sliding element 22;

[0151] The second abutting element 51 is driven by the movable element 61 to move downward along the height direction of the third sliding element 34 until abutting against the low wall of the first sliding element 22, thereby fixing the adjusting element 31.

[0152] The utility model discloses the advantage lies in, utilize the cooperation of transverse installation unit and adjusting unit can adjust the position of adjusting unit on transverse installation unit, make according to the position adjustment of different thermal insulation board to the internal thread hole of mounting bolt, convenient for operator to adjust use when facing to different situation, and further improve the practicality of device, utilize the cooperation of first abutting unit, second abutting unit, movable unit and fixed unit can be firm to the adjusted adjusting unit, to guarantee the installation stability of keel structure.

[0153] Embodiment 2

[0154] The embodiment relates to the building of the utility model.

[0155] A kind of building, including the keel structure as described in embodiment 1.Therein, keel structure is installed at the front end of main body structure.

[0156] The above only is the preferred embodiment of the utility model, and is not therefore limited to the implementation and protection scope of the utility model, for the person skilled in the art, it should be able to realize that the scheme obtained by equivalent replacement and obvious change of the utility model specification and drawing content, all should be included in the protection scope of the utility model.

Claims

1. A batten structure for mounting an insulation board, characterized by, The utility model relates to a kind of adjustable mounting structure, including: Several longitudinal installation units (10), several the longitudinal installation unit (10) is distributed and is provided at the front end of main structure, and is connected with main structure; Several transverse installation units (20), several the transverse installation unit (20) is distributed and is provided at the front end of several the longitudinal installation unit (10), and is vertically arranged with several the longitudinal installation unit (10) respectively, and is connected with several the longitudinal installation unit (10) respectively; Several adjusting units (30), several the adjusting unit (30) is slidably connected with several the transverse installation unit (20) respectively, for reciprocating along horizontal direction; Several first abutment units (40), several the first abutment unit (40) is movably arranged in the inside of corresponding the adjusting unit (30) respectively, and is abutted with corresponding the transverse installation unit (20) respectively, for reciprocating along vertical direction; Several second abutment units (50), several the second abutment unit (50) is movably arranged in the inside of corresponding the adjusting unit (30), and is located below corresponding the first abutment unit (40), and is abutted with corresponding the transverse installation unit (20) respectively, for reciprocating along vertical direction; Several movable units (60), several the movable unit (60) is movably arranged in the inside of corresponding the adjusting unit (30), and is located between corresponding the first abutment unit (40) and the second abutment unit (50), and is abutted with corresponding the first abutment unit (40), the second abutment unit (50) respectively, for reciprocating along horizontal direction to corresponding the first abutment unit (40), the second abutment unit (50) is extruded respectively.

2. The keel structure of claim 1, wherein, The longitudinal installation unit (10) includes: Longitudinal installation element (11), the longitudinal installation element (11) is provided at the front end of main structure, the front end of the longitudinal installation element (11) is provided with several the transverse installation unit (20), and is connected with main structure, several the transverse installation unit (20) respectively, for the transverse installation unit (20) is installed in main structure.

3. The keel structure of claim 1, wherein, The transverse installation unit (20) includes: Transverse installation element (21), the transverse installation element (21) is provided at the front end of several the longitudinal installation unit (10), and is vertically arranged with several the longitudinal installation unit (10), and is connected with several the longitudinal installation unit (10); First sliding element (22), the first sliding element (22) is provided at the front end of the transverse installation element (21), and is slidably connected with corresponding the adjusting unit (30), for reciprocating along horizontal direction the adjusting unit (30).

4. The keel structure of claim 1, wherein, The adjusting unit (30) includes: Adjusting element (31), the adjusting element (31) is slidably connected with corresponding the transverse installation unit (20), for reciprocating along horizontal direction; A chamber element (32) is arranged inside the adjusting element (31), and the inside of the chamber element (32) is movably provided with the first abutting unit (40), the second abutting unit (50), and the moving unit (60); A second sliding element (33) is arranged at the top end of the chamber element (32) and is in sliding connection with the first abutting unit (40); A third sliding element (34) is arranged at the top end of the chamber element (32) and is symmetrically arranged with the second sliding element (33) and in sliding connection with the second abutting unit (50).

5. The keel structure of claim 1, wherein, The first abutting unit (40) comprises: A first abutting element (41) is movably arranged inside the corresponding adjusting unit (30) and is in abutment with the corresponding lateral mounting unit (20) and the corresponding moving unit (60), for reciprocating movement in the vertical direction under the action of the moving unit (60) to limit the relative position of the corresponding adjusting unit (30) and the corresponding lateral mounting unit (20), and reciprocating movement in the horizontal direction under the action of the adjusting unit (30); and / or The second abutting unit (50) comprises: A second abutting element (51) is movably arranged inside the corresponding adjusting unit (30) and is located below the corresponding first abutting unit (40), and is in abutment with the corresponding lateral mounting unit (20) and the corresponding moving unit (60), for reciprocating movement in the vertical direction under the action of the moving unit (60) to limit the relative position of the corresponding adjusting unit (30) and the corresponding lateral mounting unit (20) in cooperation with the corresponding first abutting unit (40), and reciprocating movement in the horizontal direction under the action of the adjusting unit (30), wherein the movement direction of the second abutting element (51) is opposite to that of the first abutting unit (40).

6. The keel structure of claim 1, wherein, The moving unit (60) comprises: A moving element (61) is movably arranged inside the corresponding adjusting unit (30) and is located between the corresponding first abutting unit (40) and the second abutting unit (50), and is in abutment with the corresponding first abutting unit (40) and the second abutting unit (50), for reciprocating movement in the horizontal direction to press the corresponding first abutting unit (40) and the second abutting unit (50) respectively, and reciprocating movement in the horizontal direction under the action of the adjusting unit (30).

7. A keel structure according to any one of claims 1 to 6, characterised in that Further comprising: A plurality of fixed units (70), each of the fixed units (70) is detachably connected with the corresponding adjusting unit (30) and abuts against the corresponding movable unit (60), and is used to drive the movable unit (60) to reciprocate along the horizontal direction to press the corresponding first abutting unit (40) and the second abutting unit (50) respectively.

8. The keel structure of claim 7, wherein, The adjusting unit (30) further comprises: A connecting element (35) is arranged at the front end of the adjusting unit (30) and is detachably connected with the corresponding fixed unit (70).

9. The keel structure of claim 7, wherein, The fixed unit (70) comprises: A fixed element (71) is detachably connected with the corresponding adjusting unit (30) and abuts against the corresponding movable unit (60), and is used to drive the movable unit (60) to reciprocate along the horizontal direction to press the corresponding first abutting unit (40) and the second abutting unit (50) respectively.

10. A building, characterized in that It comprises: The keel structure as claimed in any one of claims 1-9 is installed at the front end of the main body structure.