Hoisting structure for insulation board
By designing multiple support and bearing units in the hoisting structure, the problem of lack of hoisting points during the hoisting of graphene insulation boards was solved, achieving stability and safety in the hoisting process and reducing the risk of damage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-03-24
AI Technical Summary
Existing graphene insulation boards lack lifting points during hoisting, resulting in high hoisting risks and easy damage, as well as the risk of leakage.
Design a hoisting structure including a lower support unit, a lower lateral support unit, a lower longitudinal support unit, an upper support unit, an upper lateral support unit, and an upper longitudinal support unit. Through the coordinated use of these units and the reasonable setting of hoisting points, ensure accurate hoisting position, avoid tilting and swaying, and form a stable overall structure.
It achieves balance and stability during the hoisting process, reduces operational difficulty and safety risks, and improves hoisting efficiency and system reliability.
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Figure CN224030483U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to hoist tool related technical field for thermal insulation board, especially a kind of hoisting structure for thermal insulation board. BACKGROUND
[0002] Silicon graphene thermal insulation board is a new type of thermal insulation material. It usually takes graphene and siliceous material as main raw material, and is processed by special process. This thermal insulation board combines the excellent thermal conductivity and mechanical properties of graphene and the thermal insulation, fireproof and other characteristics of siliceous material, has the advantages of low thermal conductivity, good thermal insulation effect, good fireproof performance, high strength, low water absorption, green environmental protection and the like, can effectively reduce the energy consumption of building, improve the thermal insulation and energy saving effect of building, also has good stability and durability, can be widely applied to building external wall insulation, roof insulation and other fields.
[0003] The existing production silicon graphene thermal insulation board is usually transported to the site by truck in the form of multiple stacked plates, and then hoisted to the material storage site by cable and tower crane. Since the plate does not have a lifting point, the hoisting method is not uniform during actual hoisting, and the hoisting risk is high. The traditional tower crane hoisting material method is to lift by hook. Hooking the hook on the silicon graphene thermal insulation board will cause damage to the thermal insulation board, resulting in a through hole, which is prone to leakage risk in the later period.
[0004] At present, there is no effective solution to the problem of no lifting point in hoisting, high hoisting risk and damage to the thermal insulation board in the related technology. INVENTION CONTENTS
[0005] The utility model aims at the deficiencies in the prior art, and provides a hoisting structure for thermal insulation board to solve the problems of no lifting point in hoisting, high hoisting risk and damage to the thermal insulation board in the related technology.
[0006] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is:
[0007] A hoisting structure for thermal insulation board, comprising:
[0008] A plurality of lower supporting units are arranged at the four corners of the bottom end of the thermal insulation board.
[0009] Two lower horizontal support units are symmetrically arranged at the bottom end of the thermal insulation board and detachably connected to the corresponding lower supporting units.
[0010] Two lower longitudinal support units are symmetrically arranged at the bottom end of the thermal insulation board, and are arranged perpendicularly to the corresponding lower horizontal support units and detachably connected to the corresponding lower supporting units.
[0011] a plurality of first connecting units, each of the plurality of first connecting units is arranged at the top end of a corresponding lower supporting unit and connected with the corresponding lower supporting unit;
[0012] a plurality of upper supporting units, the plurality of upper supporting units are arranged at the four corners of the top end of the insulation board;
[0013] two upper horizontal supporting units, the two upper horizontal supporting units are symmetrically arranged at the top end of the insulation board and detachably connected with the corresponding upper supporting unit;
[0014] two upper vertical supporting units, the two upper vertical supporting units are symmetrically arranged at the top end of the insulation board and perpendicularly arranged with the corresponding upper horizontal supporting unit, and detachably connected with the corresponding upper supporting unit;
[0015] a plurality of second connecting units, each of the plurality of second connecting units is detachably connected with the corresponding upper supporting unit and lower supporting unit.
[0016] In some embodiments, the lower supporting unit comprises:
[0017] a lower supporting element arranged at the bottom end of the insulation board, and the top end of the lower supporting element is provided with the corresponding first connecting unit;
[0018] a first placing element arranged at the lower supporting element for placing the insulation board;
[0019] a lower horizontal first docking element arranged at the bottom end of the first placing element and detachably connected with the corresponding lower horizontal supporting unit;
[0020] a lower vertical first docking element arranged at the bottom end of the first placing element and detachably connected with the corresponding lower vertical supporting unit.
[0021] In some embodiments, the lower horizontal supporting unit comprises:
[0022] a lower horizontal supporting element arranged at the bottom end of the insulation board and perpendicularly arranged with the corresponding lower vertical supporting unit for supporting the insulation board;
[0023] two lower horizontal second docking elements arranged at the two sides of the lower horizontal supporting element and detachably connected with the corresponding lower supporting unit.
[0024] In some embodiments, the lower vertical supporting unit comprises:
[0025] a lower longitudinal supporting element, disposed at the bottom end of the heat preservation plate, and vertically disposed with the corresponding lower transverse supporting unit, for supporting the heat preservation plate;
[0026] two lower longitudinal second connecting elements, respectively disposed at two sides of the lower longitudinal supporting element, and respectively detachably connected with the corresponding lower supporting unit.
[0027] In some embodiments, the first connecting unit comprises:
[0028] a first connecting element, disposed at the top end of the corresponding lower supporting unit, and detachably connected with the corresponding second connecting unit.
[0029] In some embodiments, the upper supporting unit comprises:
[0030] an upper supporting element, disposed at the top end of the heat preservation plate, and detachably connected with the corresponding second connecting unit;
[0031] a second placing element, disposed at the upper supporting element, for placing the heat preservation plate;
[0032] an upper transverse first connecting element, disposed at the top end of the second placing element, and detachably connected with the corresponding upper transverse supporting unit;
[0033] an upper longitudinal first connecting element, disposed at the top end of the second placing element, and detachably connected with the corresponding upper longitudinal supporting unit;
[0034] a lifting ring element, disposed at the top end of the upper supporting element, and connected with the upper supporting element, for connecting the lifting equipment.
[0035] In some embodiments, the upper supporting unit further comprises:
[0036] a through slot element, disposed through the upper supporting element, for the corresponding second connecting unit to pass through.
[0037] In some embodiments, the upper transverse supporting unit comprises:
[0038] an upper transverse supporting element, disposed at the top end of the heat preservation plate, and vertically disposed with the corresponding upper longitudinal supporting unit, for supporting the heat preservation plate;
[0039] Two upper transverse second butt elements, two upper transverse second butt elements are respectively arranged on both sides of the upper transverse support element, and are respectively detachably connected with the corresponding upper support unit.
[0040] In some embodiments, the upper longitudinal support unit comprises:
[0041] An upper longitudinal support element is arranged at the top end of the insulation board, and is arranged vertically with the corresponding upper transverse support unit, for supporting the insulation board.
[0042] Two upper longitudinal second butt elements, two upper longitudinal second butt elements are respectively arranged on both sides of the upper longitudinal support element, and are respectively detachably connected with the corresponding upper support unit.
[0043] In some embodiments, the second connecting unit comprises:
[0044] A second connecting element is detachably connected with the corresponding upper support unit and the lower support unit.
[0045] The utility model discloses the above technical scheme, compared with the prior art, has the following technical effects:
[0046] The utility model discloses a hoisting structure for insulation board, utilizes the cooperation and use between lower support unit, lower transverse support unit, lower longitudinal support unit, upper support unit, upper transverse support unit and upper longitudinal support unit can set up the lifting point reasonably, makes the hoisting position accurate, can make the insulation board keep balance in the hoisting moment, avoids the inclination, the shaking of the unreasonable lifting point, reduces the impact to the insulation board, and the hoisting mode is unified, standardization, and the operator can follow the fixed process and method, reduces the operation difficulty, improves work efficiency, reduces the security risk of the operation difference, utilizes the cooperation and use between first connecting unit and second connecting unit can firmly connect each unit together, forms a stable whole structure, ensures that the unit will not appear loose, separates etc. Between in hoisting process, improves the reliability of whole hoisting system. ACCURACY OF DRAWINGS
[0047] Figure 1 It is the three-dimensional structure schematic diagram of the hoisting structure according to the utility model embodiment;
[0048] Figure 2 It is the explosion drawing of the hoisting structure according to the utility model embodiment;
[0049] Figure 3 It is the structure schematic diagram of the hoisting structure installed with the insulation board according to the utility model embodiment;
[0050] Figure 4 is a perspective structural schematic view of a lower supporting unit according to an embodiment of the present utility model;
[0051] Figure 5 is a perspective structural schematic view of a lower horizontal supporting unit according to an embodiment of the present utility model;
[0052] Figure 6 is a perspective structural schematic view of a lower vertical supporting unit according to an embodiment of the present utility model;
[0053] Figure 7 is a perspective structural schematic view of a first connecting unit according to an embodiment of the present utility model;
[0054] Figure 8 is a perspective structural schematic view of an upper supporting unit according to an embodiment of the present utility model;
[0055] Figure 9 is a perspective structural schematic view of an upper horizontal supporting unit according to an embodiment of the present utility model;
[0056] Figure 10 is a perspective structural schematic view of an upper vertical supporting unit according to an embodiment of the present utility model;
[0057] Figure 11 is a perspective structural schematic view of a second connecting unit according to an embodiment of the present utility model.
[0058] The reference signs in the drawings are as follows: 10, lower supporting unit; 11, lower supporting element; 12, first placing element; 13, lower horizontal first butt joint element; 14, lower vertical first butt joint element;
[0059] 20, lower horizontal supporting unit; 21, lower horizontal supporting element; 22, lower horizontal second butt joint element;
[0060] 30, lower vertical supporting unit; 31, lower vertical supporting element; 32, lower vertical second butt joint element;
[0061] 40, first connecting unit; 41, first connecting element;
[0062] 50, upper supporting unit; 51, upper supporting element; 52, second placing element; 53, upper horizontal first butt joint element; 54, upper vertical first butt joint element; 55, lifting ring element; 56, through slot element;
[0063] 60, upper horizontal supporting unit; 61, upper horizontal supporting element; 62, upper horizontal second butt joint element;
[0064] 70, upper vertical supporting unit; 71, upper vertical supporting element; 72, upper vertical second butt joint element;
[0065] 80, second connecting unit; 81, second connecting element; A, thermal insulation board. DETAILED DESCRIPTION
[0066] The technical solutions in the embodiments of the present application will be apparently and completely described 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. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0067] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.
[0068] The present application will be further described below with reference to the drawings and specific embodiments, but is not limited to the present application.
[0069] An exemplary embodiment of the present application is shown in Figure 1 , Figure 2 , Figure 3 A hoisting structure for a thermal insulation board, as shown in the drawings, comprises a plurality of lower supporting units 10, two lower transverse supporting units 20, two lower longitudinal supporting units 30, a plurality of first connecting units 40, a plurality of upper supporting units 50, two upper transverse supporting units 60, two upper longitudinal supporting units 70 and a plurality of second connecting units 80. The plurality of lower supporting units 10 are arranged at the four corners of the bottom end of the thermal insulation board. The two lower transverse supporting units 20 are symmetrically arranged at the bottom end of the thermal insulation board and are respectively detachably connected with the corresponding lower supporting units 10. The two lower longitudinal supporting units 30 are symmetrically arranged at the bottom end of the thermal insulation board and are respectively arranged perpendicularly to the corresponding lower transverse supporting units 20 and are respectively detachably connected with the corresponding lower supporting units 10. The plurality of first connecting units 40 are respectively arranged at the top end of the corresponding lower supporting units 10 and are respectively connected with the corresponding lower supporting units 10. The plurality of upper supporting units 50 are arranged at the four corners of the top end of the thermal insulation board. The two upper transverse supporting units 60 are symmetrically arranged at the top end of the thermal insulation board and are respectively detachably connected with the corresponding upper supporting units 50. The two upper longitudinal supporting units 70 are symmetrically arranged at the top end of the thermal insulation board and are respectively arranged perpendicularly to the corresponding upper transverse supporting units 60 and are respectively detachably connected with the corresponding upper supporting units 50. The plurality of second connecting units 80 are respectively detachably connected with the corresponding upper supporting units 50 and lower supporting units 10.
[0070] In some of the embodiments, a lower supporting unit 10 is arranged at each of the four corners of the bottom end of the thermal insulation board.
[0071] The number of upper support units 50 matches the number of lower support units 10. Generally, the number of upper support units 50 is equal to the number of lower support units 10.
[0072] In some embodiments, an upper support unit 50 is provided at each of the four corners of the top of the insulation board. That is, each lower support unit 10 corresponds to an upper support unit 50.
[0073] like Figure 4 As shown, the lower support unit 10 includes a lower support element 11, a first placement element 12, a lower transverse first docking element 13, and a lower longitudinal first docking element 14. The lower support element 11 is located at the bottom of the insulation board, and a corresponding first connecting unit 40 is located at the top of the lower support element 11. The first placement element 12 is located on the lower support element 11 and is used to place the insulation board. The lower transverse first docking element 13 is located at the bottom of the first placement element 12 and is detachably connected to the corresponding lower transverse support unit 20. The lower longitudinal first docking element 14 is located at the bottom of the first placement element 12 and is detachably connected to the corresponding lower longitudinal support unit 30.
[0074] The lower support element 11 has a rectangular cross-section.
[0075] In some of these embodiments, the lower support element 11 is made of metal.
[0076] In some of these embodiments, the lower support element 11 is a lower support block.
[0077] The cross-section of the first placement element 12 is rectangular.
[0078] The dimensions of the first placement element 12 are matched with the dimensions of the lower support element 11. Generally, the length of the first placement element 12 is less than the length of the support element, the width of the first placement element 12 is less than the width of the lower support element 11, and the height of the first placement element 12 is less than the height of the lower support element 11.
[0079] In some of these embodiments, the first placement element 12 is a first placement slot.
[0080] The cross-section of the lower transverse first docking element 13 is convex. Specifically, the lower transverse first docking element 13 includes a first lower transverse docking groove and a second lower transverse docking groove. The first lower transverse docking groove is disposed at the bottom end of the first placement element 12 and is detachably connected to the corresponding lower transverse support unit 20; the second lower transverse docking groove is disposed at the bottom end of the first placement element 12, communicates with the first lower transverse docking groove, and is detachably connected to the corresponding lower transverse support unit 20.
[0081] The size of the first lower transverse butt groove matches the size of the first placement element 12. Generally, the length of the first lower transverse butt groove is less than the width of the first placement element 12, the width of the first lower transverse butt groove is less than the length of the first placement element 12, and the height of the first lower transverse butt groove is less than the height of the first placement element 12.
[0082] The size of the second lower transverse butt groove matches the size of the first placement element 12. Generally, the length of the second lower transverse butt groove is less than the width of the first placement element 12, the width of the second lower transverse butt groove is less than the length of the first placement element 12, and the height of the second lower transverse butt groove is less than the height of the first placement element 12.
[0083] The size of the second lower transverse butt groove matches the size of the first lower transverse butt groove. Generally, the length of the second lower transverse butt groove is greater than the length of the first lower transverse butt groove, the width of the second lower transverse butt groove is greater than the width of the first lower transverse butt groove, and the height of the second lower transverse butt groove is equal to the height of the first lower transverse butt groove.
[0084] The cross section of the lower longitudinal first butt element 14 is convex. Specifically, the lower longitudinal first butt element 14 includes a first lower longitudinal butt groove and a second lower longitudinal butt groove. The first lower longitudinal butt groove is arranged at the bottom end of the first placement element 12 and is detachably connected with the corresponding lower longitudinal support unit 30; the second lower longitudinal butt groove is arranged at the bottom end of the first placement element 12 and is in communication with the first lower longitudinal butt groove and is detachably connected with the corresponding lower longitudinal support unit 30.
[0085] The size of the first lower longitudinal butt groove matches the size of the first placement element 12. Generally, the length of the first lower longitudinal butt groove is less than the length of the first placement element 12, the width of the first lower longitudinal butt groove is less than the width of the first placement element 12, and the height of the first lower longitudinal butt groove is less than the height of the first placement element 12.
[0086] The size of the first lower longitudinal butt groove matches the size of the first lower transverse butt groove. Generally, the length of the first lower longitudinal butt groove is equal to the length of the first lower transverse butt groove, the width of the first lower longitudinal butt groove is equal to the width of the first lower transverse butt groove, and the height of the first lower longitudinal butt groove is equal to the height of the first lower transverse butt groove.
[0087] The size of the second lower longitudinal butt groove matches the size of the first placement element 12. Generally, the length of the second lower longitudinal butt groove is less than the length of the first placement element 12, the width of the second lower longitudinal butt groove is less than the width of the first placement element 12, and the height of the second lower longitudinal butt groove is less than the height of the first placement element 12.
[0088] The dimensions of the second lower longitudinal mating groove match those of the first lower longitudinal mating groove. Generally, the length of the second lower longitudinal mating groove is greater than the length of the first lower longitudinal mating groove, the width of the second lower longitudinal mating groove is greater than the width of the first lower longitudinal mating groove, and the height of the second lower longitudinal mating groove is equal to the height of the first lower longitudinal mating groove.
[0089] The dimensions of the second lower longitudinal mating groove match the dimensions of the second lower transverse mating groove. Generally, the length of the second lower longitudinal mating groove is equal to the length of the second lower transverse mating groove, the width of the second lower longitudinal mating groove is equal to the width of the second lower transverse mating groove, and the height of the second lower longitudinal mating groove is equal to the height of the second lower transverse mating groove.
[0090] like Figure 5 As shown, the lower transverse support unit 20 includes a lower transverse support element 21 and two lower transverse second docking elements 22. The lower transverse support element 21 is disposed at the bottom end of the insulation board and is perpendicular to the corresponding lower longitudinal support unit 30, and is used to support the insulation board; the two lower transverse second docking elements 22 are respectively disposed on both sides of the lower transverse support element 21 and are detachably connected to the corresponding lower support unit 10.
[0091] Specifically, the lower lateral support element 21 is disposed on the corresponding lower lateral first docking element 13; the two lower lateral second docking elements 22 are respectively detachably connected to the corresponding lower lateral first docking element 13.
[0092] More specifically, the lower lateral support element 21 is disposed in the corresponding first lower lateral docking groove; the two lower lateral second docking elements 22 are respectively detachably connected to the corresponding second lower lateral docking groove.
[0093] The cross-section of the lower transverse support element 21 is rectangular.
[0094] The dimensions of the lower transverse support element 21 match the dimensions of the lower transverse first mating element 13. Generally, the length of the lower transverse support element 21 is greater than the width of the first lower transverse mating groove, the width of the lower transverse support element 21 is equal to the length of the first lower transverse mating groove, and the height of the lower transverse support element 21 is equal to the height of the first lower transverse mating groove.
[0095] In some of these embodiments, the lower lateral support element 21 is made of stainless steel.
[0096] In some of the embodiments, the lower lateral support element 21 is a lower lateral support plate.
[0097] The cross-section of the lower transverse second docking element 22 is rectangular.
[0098] The size of the lower transverse second butt joint element 22 matches the size of the lower transverse support element 21. Generally, the length of the lower transverse second butt joint element 22 is greater than the width of the lower transverse support element 21, the width of the lower transverse second butt joint element 22 is less than the length of the lower transverse support element 21, and the height of the lower transverse second butt joint element 22 is equal to the height of the lower transverse support element 21.
[0099] The size of the lower transverse second butt joint element 22 matches the size of the lower transverse first butt joint element 13. Generally, the length of the lower transverse second butt joint element 22 is equal to the length of the second lower transverse butt joint groove, the width of the lower transverse second butt joint element 22 is equal to the width of the second lower transverse butt joint groove, and the height of the lower transverse second butt joint element 22 is equal to the height of the second lower transverse butt joint groove.
[0100] In some embodiments, the lower transverse second butt joint element 22 is fixedly connected with the lower transverse support element 21, including but not limited to being integrally formed.
[0101] In some embodiments, the lower transverse second butt joint element 22 is made of stainless steel.
[0102] In some embodiments, the lower transverse second butt joint element 22 is a lower transverse butt joint plate.
[0103] As shown in Figure 6 The lower longitudinal support unit 30 includes a lower longitudinal support element 31 and two lower longitudinal second butt joint elements 32. The lower longitudinal support element 31 is arranged at the bottom end of the insulation board and is arranged perpendicularly to the corresponding lower transverse support unit 20 to support the insulation board. The two lower longitudinal second butt joint elements 32 are arranged on both sides of the lower longitudinal support element 31 and are respectively detachably connected with the corresponding lower support unit 10.
[0104] Specifically, the lower longitudinal support element 31 is arranged at the corresponding lower longitudinal first butt joint element 14, and the two lower longitudinal second butt joint elements 32 are respectively detachably connected with the corresponding lower longitudinal first butt joint element 14.
[0105] More specifically, the lower longitudinal support element 31 is arranged at the corresponding first lower longitudinal butt joint groove, and the two lower longitudinal second butt joint elements 32 are respectively detachably connected with the corresponding second lower longitudinal butt joint groove.
[0106] The cross section of the lower longitudinal support element 31 is rectangular.
[0107] The size of the lower longitudinal support element 31 matches the size of the lower longitudinal first butt joint element 14. Generally, the length of the lower longitudinal support element 31 is greater than the width of the first lower longitudinal butt joint groove, the width of the lower longitudinal support element 31 is equal to the length of the first lower longitudinal butt joint groove, and the height of the lower longitudinal support element 31 is equal to the height of the first lower longitudinal butt joint groove.
[0108] In some of these embodiments, the lower longitudinal support element 31 is made of stainless steel.
[0109] In some of these embodiments, the lower longitudinal support element 31 is a lower longitudinal support plate.
[0110] The cross-section of the lower longitudinal second docking element 32 is rectangular.
[0111] The dimensions of the lower longitudinal second mating element 32 are matched with the dimensions of the lower longitudinal support element 31. Generally, the length of the lower longitudinal second mating element 32 is greater than the width of the lower longitudinal support element 31, the width of the lower longitudinal second mating element 32 is less than the length of the lower longitudinal support element 31, and the height of the lower longitudinal second mating element 32 is equal to the height of the lower longitudinal support element 31.
[0112] The dimensions of the lower longitudinal second mating element 32 match the dimensions of the lower longitudinal first mating element 14. Generally, the length of the lower longitudinal second mating element 32 is equal to the length of the second lower longitudinal mating groove, the width of the lower longitudinal second mating element 32 is equal to the width of the second lower longitudinal mating groove, and the height of the lower longitudinal second mating element 32 is equal to the height of the second lower longitudinal mating groove.
[0113] In some of these embodiments, the lower longitudinal second docking element 32 is fixedly connected to the lower longitudinal support element 31, including but not limited to integral molding.
[0114] In some of these embodiments, the lower longitudinal second docking element 32 is made of stainless steel.
[0115] In some of these embodiments, the lower longitudinal second docking element 32 is a lower longitudinal docking plate.
[0116] like Figure 7 As shown, the first connecting unit 40 includes a first connecting element 41. The first connecting element 41 is disposed at the top of the corresponding lower support unit 10 and is detachably connected to the corresponding second connecting unit 80.
[0117] Specifically, the first connecting element 41 is disposed at the top of the corresponding lower supporting element 11 and is connected to the corresponding lower supporting element 11.
[0118] The first connecting element 41 has a hollow structure.
[0119] The dimensions of the first connecting element 41 are matched with the dimensions of the lower supporting element 11. Generally, the radial dimension of the outer edge of the first connecting element 41 is smaller than the length and width of the lower supporting element 11, and the axial dimension of the first connecting element 41 is larger than the height of the lower supporting element 11.
[0120] In some of these embodiments, the first connecting element 41 is fixedly connected to the lower supporting element 11, including but not limited to integral molding.
[0121] In some of these embodiments, the first connecting element 41 is made of stainless steel.
[0122] In some of these embodiments, the first connecting element 41 is an internally threaded pipe.
[0123] like Figure 8 As shown, the upper support unit 50 includes an upper support element 51, a second placement element 52, an upper transverse first docking element 53, an upper longitudinal first docking element 54, and a lifting ring element 55. The upper support element 51 is disposed at the top of the insulation board and is detachably connected to the corresponding second connecting unit 80; the second placement element 52 is disposed on the upper support element 51 and is used to place the insulation board; the upper transverse first docking element 53 is disposed at the top of the second placement element 52 and is detachably connected to the corresponding upper transverse support unit 60; the upper longitudinal first docking element 54 is disposed at the top of the second placement element 52 and is detachably connected to the corresponding upper longitudinal support unit 70; the lifting ring element 55 is disposed at the top of the upper support element 51 and connected to the upper support element 51 for connecting lifting equipment.
[0124] The cross-section of the upper support element 51 is rectangular.
[0125] The dimensions of the upper support element 51 are matched with the dimensions of the lower support element 11. Generally, the length of the upper support element 51 is equal to the length of the lower support element 11, the width of the upper support element 51 is equal to the width of the lower support element 11, and the height of the upper support element 51 is equal to the height of the lower support element 11.
[0126] In some of these embodiments, the upper support element 51 is made of metal.
[0127] In some of these embodiments, the upper support element 51 is an upper support block.
[0128] The cross-section of the second placement element 52 is rectangular.
[0129] The dimensions of the second placement element 52 are matched with the dimensions of the upper support element 51. Generally, the length of the second placement element 52 is less than the length of the support element, the width of the second placement element 52 is less than the width of the upper support element 51, and the height of the second placement element 52 is less than the height of the upper support element 51.
[0130] The size of the second placing element 52 matches the size of the first placing element 12. Generally, the length of the second placing element 52 is equal to the length of the first placing element 12, the width of the second placing element 52 is equal to the width of the first placing element 12, and the height of the second placing element 52 is equal to the height of the first placing element 12.
[0131] In some embodiments, the second placing element 52 is a second placing groove.
[0132] The cross section of the upper transverse first connecting element 53 is convex. Specifically, the upper transverse first connecting element 53 includes a first upper transverse connecting groove and a second upper transverse connecting groove. The first upper transverse connecting groove is arranged at the top end of the second placing element 52 and detachably connected with the corresponding upper transverse supporting unit 60; the second upper transverse connecting groove is arranged at the top end of the second placing element 52 and in communication with the first upper transverse connecting groove, and detachably connected with the corresponding upper transverse supporting unit 60.
[0133] The size of the first upper transverse connecting groove matches the size of the second placing element 52. Generally, the length of the first upper transverse connecting groove is less than the width of the second placing element 52, the width of the first upper transverse connecting groove is less than the length of the second placing element 52, and the height of the first upper transverse connecting groove is less than the height of the second placing element 52.
[0134] The size of the second upper transverse connecting groove matches the size of the second placing element 52. Generally, the length of the second upper transverse connecting groove is less than the width of the second placing element 52, the width of the second upper transverse connecting groove is less than the length of the second placing element 52, and the height of the second upper transverse connecting groove is less than the height of the second placing element 52.
[0135] The size of the second upper transverse connecting groove matches the size of the first upper transverse connecting groove. Generally, the length of the second upper transverse connecting groove is greater than the length of the first upper transverse connecting groove, the width of the second upper transverse connecting groove is greater than the width of the first upper transverse connecting groove, and the height of the second upper transverse connecting groove is equal to the height of the first upper transverse connecting groove.
[0136] The cross section of the upper longitudinal first connecting element 54 is convex. Specifically, the upper longitudinal first connecting element 54 includes a first upper longitudinal connecting groove and a second upper longitudinal connecting groove. The first upper longitudinal connecting groove is arranged at the top end of the second placing element 52 and detachably connected with the corresponding upper longitudinal supporting unit 70; the second upper longitudinal connecting groove is arranged at the top end of the second placing element 52 and in communication with the first upper longitudinal connecting groove, and detachably connected with the corresponding upper longitudinal supporting unit 70.
[0137] The size of the first upper longitudinal docking slot matches the size of the second placement element 52. Generally, the length of the first upper longitudinal docking slot is less than the length of the second placement element 52, the width of the first upper longitudinal docking slot is less than the width of the second placement element 52, and the height of the first upper longitudinal docking slot is less than the height of the second placement element 52.
[0138] The size of the first upper longitudinal docking slot matches the size of the first upper transverse docking slot. Generally, the length of the first upper longitudinal docking slot is equal to the length of the first upper transverse docking slot, the width of the first upper longitudinal docking slot is equal to the width of the first upper transverse docking slot, and the height of the first upper longitudinal docking slot is equal to the height of the first upper transverse docking slot.
[0139] The size of the second upper longitudinal docking slot matches the size of the second placement element 52. Generally, the length of the second upper longitudinal docking slot is less than the length of the second placement element 52, the width of the second upper longitudinal docking slot is less than the width of the second placement element 52, and the height of the second upper longitudinal docking slot is less than the height of the second placement element 52.
[0140] The size of the second upper longitudinal docking slot matches the size of the first upper longitudinal docking slot. Generally, the length of the second upper longitudinal docking slot is greater than the length of the first upper longitudinal docking slot, the width of the second upper longitudinal docking slot is greater than the width of the first upper longitudinal docking slot, and the height of the second upper longitudinal docking slot is equal to the height of the first upper longitudinal docking slot.
[0141] The size of the second upper longitudinal docking slot matches the size of the second upper transverse docking slot. Generally, the length of the second upper longitudinal docking slot is equal to the length of the second upper transverse docking slot, the width of the second upper longitudinal docking slot is equal to the width of the second upper transverse docking slot, and the height of the second upper longitudinal docking slot is equal to the height of the second upper transverse docking slot.
[0142] The cross section of the lifting ring element 55 is circular.
[0143] The size of the lifting ring element 55 matches the size of the upper support element 51. Generally, the radial dimension of the lifting ring element 55 is less than the length and width of the upper support element 51.
[0144] In some embodiments, the lifting ring element 55 is fixedly connected to the upper support element 51, including but not limited to welding.
[0145] In some embodiments, the lifting ring element 55 is made of stainless steel.
[0146] In some embodiments, the lifting ring element 55 is a lifting ring.
[0147] Furthermore, the upper support unit 50 also includes a through slot element 56. The through slot element 56 is disposed through the upper support element 51 for the corresponding second connecting unit 80 to pass through.
[0148] The cross-section of the through-slot element 56 is circular.
[0149] The dimensions of the through-slot element 56 are matched with the dimensions of the upper support element 51. Generally, the radial dimension of the through-slot element 56 is smaller than the length and width of the upper support element 51, and the axial dimension of the through-slot element 56 is equal to the height of the upper support element 51.
[0150] In some of these embodiments, the slot element 56 is a through slot.
[0151] like Figure 9 As shown, the upper transverse support unit 60 includes an upper transverse support element 61 and two upper transverse second docking elements 62. The upper transverse support element 61 is disposed at the top of the insulation board and is perpendicular to the corresponding upper longitudinal support unit 70, and is used to support the insulation board; the two upper transverse second docking elements 62 are respectively disposed on both sides of the upper transverse support element 61 and are detachably connected to the corresponding upper support unit 50.
[0152] Specifically, the upper transverse support element 61 is disposed on the corresponding upper transverse first docking element 53; the two upper transverse second docking elements 62 are respectively detachably connected to the corresponding upper transverse first docking element 53.
[0153] More specifically, the upper transverse support element 61 is disposed in the corresponding first upper transverse docking groove; the two upper transverse second docking elements 62 are respectively detachably connected to the corresponding second upper transverse docking groove.
[0154] The cross-section of the upper transverse support element 61 is rectangular.
[0155] The dimensions of the upper transverse support element 61 match the dimensions of the upper transverse first mating element 53. Generally, the length of the upper transverse support element 61 is greater than the width of the first upper transverse mating groove, the width of the upper transverse support element 61 is equal to the length of the first upper transverse mating groove, and the height of the upper transverse support element 61 is equal to the height of the first upper transverse mating groove.
[0156] The dimensions of the upper transverse support element 61 match the dimensions of the lower transverse support element 21. Generally, the length of the upper transverse support element 61 is equal to the length of the lower transverse support element 21, the width of the upper transverse support element 61 is equal to the width of the lower transverse support element 21, and the height of the upper transverse support element 61 is equal to the height of the lower transverse support element 21.
[0157] In some of these embodiments, the upper lateral support element 61 is made of stainless steel.
[0158] In some of these embodiments, the upper transverse support element 61 is an upper transverse support plate.
[0159] The cross-section of the upper horizontal second docking element 62 is rectangular.
[0160] The dimensions of the upper transverse second mating element 62 are matched with the dimensions of the upper transverse support element 61. Generally, the length of the upper transverse second mating element 62 is greater than the width of the upper transverse support element 61, the width of the upper transverse second mating element 62 is less than the length of the upper transverse support element 61, and the height of the upper transverse second mating element 62 is equal to the height of the upper transverse support element 61.
[0161] The dimensions of the upper transverse second mating element 62 match the dimensions of the upper transverse first mating element 53. Generally, the length of the upper transverse second mating element 62 is equal to the length of the second upper transverse mating groove, the width of the upper transverse second mating element 62 is equal to the width of the second upper transverse mating groove, and the height of the upper transverse second mating element 62 is equal to the height of the second upper transverse mating groove.
[0162] The dimensions of the upper horizontal second docking element 62 match the dimensions of the lower horizontal second docking element 22. Generally, the length of the upper horizontal second docking element 62 is equal to the length of the lower horizontal second docking element 22, the width of the upper horizontal second docking element 62 is equal to the width of the lower horizontal second docking element 22, and the height of the upper horizontal second docking element 62 is equal to the height of the lower horizontal second docking element 22.
[0163] In some embodiments, the upper transverse second docking element 62 is fixedly connected to the upper transverse support element 61, including but not limited to integral molding.
[0164] In some of these embodiments, the upper transverse second docking element 62 is made of stainless steel.
[0165] In some of these embodiments, the upper transverse second docking element 62 is an upper transverse docking plate.
[0166] like Figure 10 As shown, the upper longitudinal support unit 70 includes an upper longitudinal support element 71 and two upper longitudinal second docking elements 72. The upper longitudinal support element 71 is disposed at the top of the insulation board and is perpendicular to the corresponding upper transverse support unit 60, and is used to support the insulation board; the two upper longitudinal second docking elements 72 are respectively disposed on both sides of the upper longitudinal support element 71 and are detachably connected to the corresponding upper support unit 50.
[0167] Specifically, the upper longitudinal support element 71 is disposed on the corresponding upper longitudinal first docking element 54; the two upper longitudinal second docking elements 72 are respectively detachably connected to the corresponding upper longitudinal first docking element 54.
[0168] More specifically, the upper longitudinal support element 71 is arranged in the corresponding first upper longitudinal docking slot; the two upper longitudinal second docking elements 72 are respectively detachably connected with the corresponding second upper longitudinal docking slots.
[0169] The upper longitudinal support element 71 has a rectangular cross section.
[0170] The upper longitudinal support element 71 has a size matching that of the upper longitudinal first docking element 54. Generally, the length of the upper longitudinal support element 71 is greater than the width of the first upper longitudinal docking slot, the width of the upper longitudinal support element 71 is equal to the length of the first upper longitudinal docking slot, and the height of the upper longitudinal support element 71 is equal to the height of the first upper longitudinal docking slot.
[0171] The upper longitudinal support element 71 has a size matching that of the lower longitudinal support element 31. Generally, the length of the upper longitudinal support element 71 is equal to the length of the lower longitudinal support element 31, the width of the upper longitudinal support element 71 is equal to the width of the lower longitudinal support element 31, and the height of the upper longitudinal support element 71 is equal to the height of the lower longitudinal support element 31.
[0172] In some embodiments, the upper longitudinal support element 71 is made of stainless steel.
[0173] In some embodiments, the upper longitudinal support element 71 is an upper longitudinal support plate.
[0174] The upper longitudinal second docking element 72 has a rectangular cross section.
[0175] The upper longitudinal second docking element 72 has a size matching that of the upper longitudinal support element 71. Generally, the length of the upper longitudinal second docking element 72 is greater than the width of the upper longitudinal support element 71, the width of the upper longitudinal second docking element 72 is less than the length of the upper longitudinal support element 71, and the height of the upper longitudinal second docking element 72 is equal to the height of the upper longitudinal support element 71.
[0176] The upper longitudinal second docking element 72 has a size matching that of the upper longitudinal first docking element 54. Generally, the length of the upper longitudinal second docking element 72 is equal to the length of the second upper longitudinal docking slot, the width of the upper longitudinal second docking element 72 is equal to the width of the second upper longitudinal docking slot, and the height of the upper longitudinal second docking element 72 is equal to the height of the second upper longitudinal docking slot.
[0177] The size of the upper longitudinal second butt joint element 72 matches the size of the lower longitudinal second butt joint element 32. Generally, the length of the upper longitudinal second butt joint element 72 is equal to the length of the lower longitudinal second butt joint element 32, the width of the upper longitudinal second butt joint element 72 is equal to the width of the lower longitudinal second butt joint element 32, and the height of the upper longitudinal second butt joint element 72 is equal to the height of the lower longitudinal second butt joint element 32.
[0178] In some embodiments, the upper longitudinal second butt joint element 72 is fixedly connected with the upper longitudinal support element 71, including but not limited to being integrally formed.
[0179] In some embodiments, the upper longitudinal second butt joint element 72 is made of stainless steel.
[0180] In some embodiments, the upper longitudinal second butt joint element 72 is an upper longitudinal butt joint plate.
[0181] As shown in Figure 11 The second connecting unit 80 includes a second connecting element 81. The second connecting element 81 is detachably connected with the corresponding upper support unit 50 and the lower support unit 10.
[0182] Specifically, the second connecting element 81 is threadedly connected with the corresponding first connecting element 41 through the corresponding through slot element 56.
[0183] In some embodiments, the second connecting element 81 includes a screw rod and a twist cap. The screw rod is threadedly connected with the corresponding first connecting element 41 through the corresponding through slot element 56, and the twist cap is arranged at the top end of the screw rod and abuts against the top end of the corresponding upper support element 51.
[0184] The size of the screw rod matches the size of the through slot element 56. Generally, the radial dimension of the screw rod is equal to the radial dimension of the through slot element 56, and the axial dimension of the screw rod is greater than the axial dimension of the through slot element 56.
[0185] The size of the screw rod matches the size of the first connecting element 41. Generally, the radial dimension of the screw rod is equal to the radial dimension of the inner edge surface of the first connecting element 41, and the axial dimension of the screw rod is greater than the axial dimension of the first connecting element 41.
[0186] The size of the twist cap matches the size of the screw rod. Generally, the radial dimension of the twist cap is greater than the radial dimension of the screw rod, and the axial dimension of the twist cap is less than the axial dimension of the screw rod.
[0187] The size of the twist cap matches the size of the upper support element 51. Generally, the radial dimension of the twist cap is less than the length and width of the upper support element 51.
[0188] In some embodiments, the second connecting element 81 is made of stainless steel.
[0189] The use method of the utility model is as follows:
[0190] (I) Assembly operation
[0191] Four lower supporting elements 11 are placed at designated positions and arranged in a rectangular array.
[0192] Two lower horizontal supporting elements 21 are respectively connected with corresponding lower horizontal first connecting elements 13 through lower horizontal second connecting elements 22.
[0193] Two lower vertical supporting elements 31 are respectively connected with corresponding lower vertical first connecting elements 14 through lower vertical second connecting elements 32 (as shown in FIG. Figure 1 .
[0194] (II) Placement operation
[0195] The heat insulation plates A are placed one by one in the first placing elements 12 arranged in the lower supporting elements 11, so that the four lower supporting elements 11 are respectively arranged at the four corners of the heat insulation plates A (as shown in FIG. Figure 3 .
[0196] (III) Locking operation
[0197] Four upper supporting elements 51 are placed at designated positions (at the four corners of the top of the topmost heat insulation plate A).
[0198] Two upper horizontal supporting elements 61 are respectively connected with corresponding upper horizontal first connecting elements 53 through upper horizontal second connecting elements 62.
[0199] Two upper vertical supporting elements 71 are respectively connected with corresponding upper vertical first connecting elements 54 through upper vertical second connecting elements 72 (as shown in FIG. Figure 1 .
[0200] The second connecting element 81 is connected with the corresponding first connecting element 41 through the corresponding through slot element 56 and the corresponding upper supporting element 51, and is screwed until it is tightened.
[0201] (IV) Hoisting operation
[0202] The tower crane is hooked in the lifting ring element 55 through the lifting hook, so as to hoist the heat insulation plates A to the designated position through the tower crane.
[0203] The utility model discloses the advantage lies in, utilize the cooperation and use of lower support unit, lower horizontal support unit, lower vertical support unit, upper support unit, upper horizontal support unit and upper vertical support unit between can set up the lifting point reasonably, make the hoisting position accurate, can let the insulation board keep balance in hoisting instant, avoid the tilt, the shaking caused by the unreasonable lifting point, reduce the impact to the insulation board, and hoist the unified mode, standardization, and operating personnel can follow the fixed process and method, reduce the operation difficulty, improve work efficiency, reduce the security risk caused by the operation difference, utilize the cooperation and use between first connecting unit and second connecting unit can firmly connect together each unit, form a stable integral structure, ensure that each unit does not appear loose, separation etc.
[0204] The above only is the preferred embodiment of the utility model, and does not limit the implementation and protection scope of the utility model, and for the person skilled in the art, should be able to realize that the scheme obtained by equivalent replacement and obvious change of the utility model specification and drawing content, should be contained in the protection scope of the utility model.
Claims
1. A hoisting structure for an insulation board, characterized by, The utility model relates to a heat preservation board supporting device which comprises: a plurality of lower supporting units (10) arranged at the four corners of the bottom end of the heat preservation board; two lower transverse supporting units (20) symmetrically arranged at the bottom end of the heat preservation board and detachably connected with the corresponding lower supporting units (10); two lower longitudinal supporting units (30) symmetrically arranged at the bottom end of the heat preservation board and perpendicularly arranged with the corresponding lower transverse supporting units (20) and detachably connected with the corresponding lower supporting units (10); a plurality of first connecting units (40) arranged at the top end of the corresponding lower supporting units (10) and connected with the corresponding lower supporting units (10); a plurality of upper supporting units (50) arranged at the four corners of the top end of the heat preservation board; two upper transverse supporting units (60) symmetrically arranged at the top end of the heat preservation board and detachably connected with the corresponding upper supporting units (50); two upper longitudinal supporting units (70) symmetrically arranged at the top end of the heat preservation board and perpendicularly arranged with the corresponding upper transverse supporting units (60) and detachably connected with the corresponding upper supporting units (50); a plurality of second connecting units (80) detachably connected with the corresponding upper supporting units (50) and lower supporting units (10).
2. The hoisting arrangement according to claim 1, characterized in that The lower supporting unit (10) comprises: a lower supporting element (11) arranged at the bottom end of the heat preservation board, the top end of the lower supporting element (11) being provided with the corresponding first connecting unit (40); a first placing element (12) arranged at the lower supporting element (11) and used for placing the heat preservation board; a lower transverse first docking element (13) arranged at the bottom end of the first placing element (12) and detachably connected with the corresponding lower transverse supporting unit (20); a lower longitudinal first docking element (14) arranged at the bottom end of the first placing element (12) and detachably connected with the corresponding lower longitudinal supporting unit (30).
3. The hoisting arrangement of claim 1, wherein The lower transverse supporting unit (20) comprises: a lower transverse supporting element (21) arranged at the bottom end of the heat preservation board and perpendicularly arranged with the corresponding lower longitudinal supporting unit (30) and used for supporting the heat preservation board; two lower transverse second docking elements (22) arranged at the two sides of the lower transverse supporting element (21) and detachably connected with the corresponding lower supporting units (10).
4. The hoisting arrangement of claim 1, wherein The lower longitudinal supporting unit (30) comprises: A lower longitudinal supporting element (31) is arranged at the bottom end of the heat preservation plate and is arranged perpendicularly to the corresponding lower transverse supporting unit (20) to support the heat preservation plate. Two lower longitudinal second butt joint elements (32) are respectively arranged at two sides of the lower longitudinal supporting element (31) and are respectively detachably connected with the corresponding lower supporting unit (10).
5. The hoisting arrangement of claim 1, wherein The first connecting unit (40) comprises: A first connecting element (41) is arranged at the top end of the corresponding lower supporting unit (10) and is detachably connected with the corresponding second connecting unit (80).
6. The hoisting arrangement of claim 1, wherein The upper supporting unit (50) comprises: An upper supporting element (51) is arranged at the top end of the heat preservation plate and is detachably connected with the corresponding second connecting unit (80); A second placing element (52) is arranged at the upper supporting element (51) to place the heat preservation plate; An upper transverse first butt joint element (53) is arranged at the top end of the second placing element (52) and is detachably connected with the corresponding upper transverse supporting unit (60); An upper longitudinal first butt joint element (54) is arranged at the top end of the second placing element (52) and is detachably connected with the corresponding upper longitudinal supporting unit (70); A lifting ring element (55) is arranged at the top end of the upper supporting element (51) and is connected with the upper supporting element (51) to connect the lifting equipment.
7. The hoisting arrangement of claim 6, wherein The upper supporting unit (50) further comprises: A through slot element (56) is arranged through the upper supporting element (51) to pass through the corresponding second connecting unit (80).
8. The hoisting arrangement of claim 1, wherein The upper transverse supporting unit (60) comprises: An upper transverse supporting element (61) is arranged at the top end of the heat preservation plate and is arranged perpendicularly to the corresponding upper longitudinal supporting unit (70) to support the heat preservation plate; Two upper transverse second butt joint elements (62) are respectively arranged at two sides of the upper transverse supporting element (61) and are respectively detachably connected with the corresponding upper supporting unit (50).
9. The hoisting arrangement of claim 1, wherein The upper longitudinal supporting unit (70) comprises: An upper longitudinal supporting element (71) is arranged at the top end of the heat preservation plate and is arranged perpendicularly to the corresponding upper transverse supporting unit (60) to support the heat preservation plate; Two upper longitudinal second butt joint elements (72) are respectively arranged at two sides of the upper longitudinal supporting element (71) and are respectively detachably connected with the corresponding upper supporting unit (50).
10. The hoisting arrangement of claim 1, wherein The second connecting unit (80) comprises: - second connecting elements (81) which are respectively removably connected with the corresponding upper support units (50) and lower support units (10).