Square grid type purification aluminum material structure
By using a double-layered cavity structure filled with nitrogen or argon gas in the form of a square plate, combined with a copper-plated heat-locking layer and a smooth coating, the problems of easy denting and poor heat insulation of vacuum insulation panels are solved, achieving good support and heat insulation effects.
Patent Information
- Application Number
- CN202423121230.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Existing vacuum insulation panels are prone to denting or poor insulation performance after vacuuming.
It adopts a double-layer cavity structure, with square plates filled with nitrogen or argon gas, combined with a copper-plated heat-locking layer and a smooth plating layer. It is connected by male protrusions and female grooves, and fixed with corner frames and wall-embedded plugs to form an interlocking sealing structure.
It improves the supporting strength and thermal insulation performance of the board, prevents dents, and enhances the sealing performance of the joints and the overall thermal insulation effect.
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Figure CN223634244U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to building board technical field, especially relate to a square format purification aluminum structure. BACKGROUND
[0002] Now, clean room, dust-free room, laboratory and other clean environment often need purification aluminum, purification aluminum is light in weight and high in strength, and is often also applicable to clean environment of pharmaceutical factory or food factory.
[0003] The prior art discloses a kind of vacuum heat insulation plate, and the publication number is: CN114962863A, it is placed between vacuum heat insulation plate and heat reflecting film using lattice frame, and the cavity is sealed by upper and lower metal disc, and the cavity is vacuumed inside, the plate of this kind of vacuuming form can improve heat insulation performance, but the plate is supported by lattice frame after being vacuumed inside, and there are the following two points of deficiency:1, when the spacing of lattice in lattice frame is larger, the plate on the upper and lower sides of lattice is prone to large amplitude concave after being vacuumed, and the surface of plate is easily sucked to be concave;2, when the spacing of lattice in lattice frame is smaller and denser, heat transfer will be formed between the plate on both sides of lattice frame through lattice frame, so that the temperature insulation performance of plate is reduced, and the temperature insulation performance of plate is poor. UTILITY MODEL CONTENTS
[0004] The utility model provides a square format purification aluminum structure to solve the technical problem that the plate is prone to concave and the heat insulation of the plate is poor.
[0005] The utility model solves the above technical problem by the following technical scheme: a square format purification aluminum structure, which has the following structural characteristics:
[0006] The square block plate has a first air gap, a spacer plate and a second air gap arranged in sequence inside, the inner walls of the first air gap and the second air gap are provided with a copper-plated heat locking layer, and the outer surface of the square block plate is provided with a smooth plating layer.
[0007] The male convex strip is arranged on one side of the square block plate.
[0008] The female recess is arranged on the other side of the square block plate, and the female recess and the male convex strip are respectively provided with a convex clamping column and a concave clamping pit, and the female recess is provided with a sealing gasket.
[0009] The corner frame is connected to the square block plate, and the corner frame is provided with a cross-shaped intermediate frame.
[0010] The wall-buried plug-in bolt is arranged at the rear of the corner frame or the square block plate.
[0011] Preferably, the first and second cavities in the panel are separated by a partition, which, after being welded to the panel, forms two independent sealed cavities.
[0012] Preferably, the first and second cavities are both unobstructed and filled with nitrogen.
[0013] Preferably, the panel is square, the first and second cavities are staggered, the female groove is a straight-angle slot, the male protrusion is outwardly protruding, and the panel has two male protrusions and two female grooves on each side.
[0014] Preferably, there are multiple panels, two adjacent panels are connected in a head-to-tail sequence, the gap between the male protrusion and the female groove is provided with a sealing gasket, the sealing gasket is connected to the female groove, and the sealing gasket seals the two adjacent panels.
[0015] Preferably, the male protrusion and the female groove are connected by the protruding clamping column and the recessed clamping pit.
[0016] Preferably, the gap between the panels is provided with a clamping groove, the clamping groove is provided with a decorative strip, and the decorative strip is inserted into the clamping groove for clamping connection.
[0017] Preferably, the cross-shaped frame is welded to the cross-shaped frame, the cross-shaped frame is filled with nitrogen, the cross-shaped frame has a straight-angle distribution of male protrusions at both ends, and the cross-shaped frame is connected to the panel by the male protrusion and the female groove.
[0018] Preferably, there are multiple wall-buried insertion plugs, which are evenly distributed on the back of the corner frame or the panel.
[0019] Preferably, the wall-buried insertion plug includes a dovetail groove cap, a dovetail wedge, a threaded rod, and an expansion plug, the dovetail groove cap is placed on the corner frame or the panel, the expansion plug is placed in the wall, the threaded rod is screwed into the expansion plug, and the dovetail wedge is connected to the dovetail groove cap in a dovetail manner.
[0020] The utility model discloses beneficial effect is: the utility model discloses the square board forms two parallel distribution's first empty cavity and second empty cavity through the partition, fills the nitrogen of positive pressure in the inside, and the structure of double -deck cavity not only heat preservation performance is very good, and the nitrogen in the inside can form the support to square board, and square board surface will not form the recessed shape, in addition, two square boards of adjacent can be connected through the form of inter -insertion of male convex strip and female recess, and the first empty cavity and second empty cavity are the structure form of interlaced and can effectively enhance the sealing performance of joint, and the interlaced of first empty cavity and second empty cavity can effectively improve the heat preservation performance of the whole after the connection of many square boards, and the heat insulation performance is very good. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the main view structural schematic diagram of the utility model;
[0022] Figure 2 It is the main view structural schematic diagram of the utility model; Figure 1 It is the enlarged main view structural schematic diagram of the corner frame of
[0023] Figure 3 It is the main view structural schematic diagram of the utility model; Figure 1 It is the enlarged main view structural schematic diagram of the square board of
[0024] Figure 4 It is the main view structural schematic diagram of the utility model; Figure 3 It is the top view appearance schematic diagram of the utility model;
[0025] Figure 5 It is the schematic diagram of the embodiment of the square board of the utility model;
[0026] Figure 6 It is the schematic diagram of the embodiment of the square board and corner frame of the utility model;
[0027] Figure 7 It is the schematic diagram of the A place of the utility model; Figure 6 It is the schematic diagram of the B place of the utility model;
[0028] Figure 8 It is the schematic diagram of the B place of the utility model; Figure 6 It is the schematic diagram of the B place of the utility model;
[0029] In the drawing: 1 square board, 11 first empty cavity, 12 partition, 13 second empty cavity, 14 copper plating heat lock layer, 15 smooth plating, 16 clamping groove, 17 decorative strip, 2 male convex strip, 3 female recess, 31 convex clamping column, 32 concave clamping pit, 33 sealing gasket, 4 corner frame, 41 cross intermediate frame, 5 wall burying plug-in bolt, 51 dovetail groove cap, 52 dovetail wedge, 53 threaded rod, 54 expansion plug. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be clearly and completely described 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. The components of the embodiments of the present application described and shown in the drawings can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative efforts fall within the scope of the present application.
[0031] Referring to Figures 1 to 8 As shown in the drawings, a square format purified aluminum material structure comprises a square plate 1, a male protrusion 2, a female groove 3, an angle frame 4, and a wall-buried plug-in bolt 5.
[0032] Embodiment 1
[0033] As an example, as shown in Figure 3 , Figure 4 The square plate 1 is made of aluminum material, and a first air cavity 11, a partition plate 12, and a second air cavity 13 are sequentially arranged inside the square plate 1. The partition plate 12 can be made of ceramic material with low thermal conductivity, and the partition plate 12 can be welded to the square plate 1. The first air cavity 11 and the second air cavity 13 are formed by the partition plate 12 inside the square plate 1. The first air cavity 11 and the second air cavity 13 separated by the partition plate 12 inside the square plate 1 become independent sealed cavities. The first air cavity 11 and the second air cavity 13 are both transparent cavities without any spacer. The first air cavity 11 is parallel to the second air cavity 13, and the first air cavity 11, the second air cavity 13, and the angle frame 4 are all filled with nitrogen. When filling nitrogen into the first air cavity 11 and the second air cavity 13 of the square plate 1, the two cavities can be filled with nitrogen or argon simultaneously by a hole filling method. The pressure of the filled nitrogen is 0.5 to 2 atmospheres, which can ensure that the square plate 1 has good heat insulation effect and can support the structure of the square plate 1, so that the square plate 1 is not prone to concave phenomenon, and the structural safety of the square plate 1 is improved.
[0034] In the production of the block plate 1, the inner walls of the first and second empty cavities 11 and 13 can be evenly plated with a copper-plated heat-locking layer 14, which is a smooth copper-plated surface. The inner surface of the block plate 1 can also be a polished surface after anode treatment. The copper-plated heat-locking layer 14 can prevent energy radiation loss and improve the heat preservation or temperature insulation performance of the first and second empty cavities 11 and 13.
[0035] The outer surface of the block plate 1 is provided with a smooth plating layer 15, which is a clean surface during use. The smooth plating layer 15 can be a mirror coating or made of high-reflective material. The smooth plating layer 15 can also be a silver-plated layer. The silver-plated smooth plating layer 15 is the use surface of the block plate 1 in contact with the indoor environment. Silver ions have antibacterial properties, which can ensure food safety in food workshops, reduce bacterial growth in laboratories or pharmaceutical workshops, and play an antibacterial role. Especially in a warm and humid environment, the release of silver ions can improve the sterilization effect, so that the block plate 1 made of aluminum material has a purifying and sterilizing effect. The block plate 1 fills the two first and second empty cavities 11 and 13 with positive pressure nitrogen or argon, and combines the spacer plate 12 made of ceramic material with good temperature insulation, the smooth copper-plated heat-locking layer 14 on the inner surface of the block plate 1, and the smooth plating layer 15 on the outer surface to prevent heat radiation loss, which can effectively improve the temperature insulation performance of the block plate 1. The temperature insulation performance of the block plate 1 is excellent and can be applied to various wall surfaces with high cleanliness requirements.
[0036] Example 2
[0037] Refer to the attached Figure 3 , Figure 4As shown in the above embodiment, the male convex strip 2 and the female groove 3 are symmetrically distributed on the block plate 1, the first and second spaced cavities 11 and 13 are staggered on the block plate 1, and the male convex strip 2 and the female groove 3 are formed on both sides of the block plate 1 by staggering. The female groove 3 is a straight angle groove recessed inward on the block plate 1, and the male convex strip 2 is outwardly convex on the block plate 1. The block plate 1 is square in shape, and two male convex strips 2 and two female grooves 3 are arranged on each side of the block plate 1. The two male convex strips 2 are connected, and the two female grooves 3 are connected. The shapes of the male convex strip 2 and the female groove 3 can be complementary shapes of the same size. After the male convex strip 2 is inserted into the female groove 3, a complete plane can be formed. When two block plates 1 are connected, the male convex strip 2 and the female groove 3 can be connected to form a flat plane. The male convex strip 2 and the female groove 3 can be provided with a convex clamping column 31 and a recessed clamping pit 32, respectively. The convex clamping column 31 is a convex gourd-shaped column. The male convex strip 2 is a recessed gourd-shaped column. The convex clamping column 31 and the recessed clamping pit 32 have the same size or are clearance fit. After the convex clamping column 31 is inserted into the recessed clamping pit 32, clamping connection can be formed. The female groove 3 and the male convex strip 2 can be connected by the cooperation of the convex clamping column 31 and the recessed clamping pit 32.
[0038] Referring to Figure 6 and Figure 8 As shown, the female groove 3 can be provided with a sealing gasket 33. The sealing gasket 33 can be selected according to the use scene of the block plate 1, and can be a rubber gasket or other sealing material gasket. The sealing gasket 33 can be connected to the female groove 3 in a pin type clamping connection, and can seal the female groove 3 and the male convex strip 2 to ensure that the two connected block plates 1 can form a seal. The gap between two adjacent block plates 1 is provided with a clamping groove 16, and the clamping groove 16 can be provided with a decorative strip 17. The decorative strip 17 can be a metal strip with a silver-plated outer surface. The decorative strip 17 can be inserted into the clamping groove 16 for clamping expansion connection. The decorative strip 17 can be placed between the two adjacent block plates 1 to transition and fill the gap, preventing the gap between the block plates 1 from affecting the flatness.
[0039] Referring to Figure 5 As shown, Figure 5The schematic view of the end-to-end connection of a plurality of the block plates 1 for flat paving, the number of the block plates 1 can be multiple, the two adjacent block plates 1 are connected by the male protruding strip 2 and the female groove 3 in the end-to-end connection mode, which facilitates the formation of a larger and more flat plate material with good temperature insulation.
[0040] Embodiment 3
[0041] Based on the above embodiments, in combination with Figure 1 、 Figure 2 、 Figure 6 and Figure 7 , one side of the block plate 1 can be provided with an angle frame 4, which can be a frame column placed at the corner of the wall, and the respective block plates 1 on the adjacent two walls can be connected at the corner through the angle frame 4. The angle frame 4 is provided with the male protruding strip 2 distributed in a right angle at both ends, and the angle frame 4 can be placed at the corner between the two walls. The block plates 1 on each wall can be connected by the male protruding strip 2 and the female groove 3 in the form of plug-in connection of the angle frame 4 and the block plate 1. The rear part of the angle frame 4 or the block plate 1 can be provided with a wall-buried plug-in bolt 5, the number of the wall-buried plug-in bolt 5 can be multiple, and the wall-buried plug-in bolt 5 can be evenly distributed on the rear part of the angle frame 4 or the block plate 1. The wall-buried plug-in bolt 5 can support and connect the angle frame 4 and the block plate 1 with the wall surface.
[0042] Referring to Figures 1 to 8 , the wall-buried plug-in bolt 5 can include a dovetail groove cap 51, a dovetail wedge 52, a threaded rod 53 and an expansion plug 54. The dovetail groove cap 51 can be fixedly connected on the angle frame 4 or the block plate 1. The expansion plug 54 can be placed in the wall, one end of the threaded rod 53 can be screwed into the expansion plug 54, the expansion plug 54 can be connected in the form of expansion bolt and wall connection, the other end of the threaded rod 53 can be fixedly connected with the dovetail wedge 52, and the dovetail wedge 52 and the dovetail groove cap 51 can be locked and connected after being inserted in the dovetail type. When the expansion plug 54 and the threaded rod 53 are placed on the wall for expansion connection, the dovetail wedge 52 on the upper part of the threaded rod 53 is exposed outside, a plurality of the dovetail wedge 52 is placed at the set position according to the measurement of the measuring tool, and then the block plate 1 or the angle frame 4 is hung on the dovetail wedge 52, realizing the connection between the block plate 1 or the angle frame 4 and the wall.
[0043] The cross interframe 41 can be welded by using the same material and production process with the spacing plate 12, four independent sealed cavity shapes are formed after the cross interframe 41 in the corner frame 4 is welded and connected, the corner frame 4 can be filled with nitrogen or argon, the effective sealing can be formed after the square block plate 1 is connected with the corner frame 4, and the overall heat insulation performance can be effectively ensured.
[0044] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be based on the protection scope of the claims.
Claims
1. A square-shaped, clean aluminum material structure, characterized by, include: A square plate, wherein a first cavity, a partition plate and a second cavity are sequentially arranged inside the square plate, and a copper-plated heat-locking layer is provided on the inner wall of both the first cavity and the second cavity, and a smooth plating layer is provided on the outer surface of the square plate. A male protruding strip is placed on one side of the square plate; The female groove is located on the other side of the block plate. Both the female groove and the male protrusion are provided with protruding posts and recesses. A sealing gasket is provided inside the female groove. A corner frame is connected to the square panel, and a cross-shaped frame is provided inside the corner frame; Wall-mounted plugs are respectively placed at the rear of the corner frame or the square plate.
2. A square format purifying aluminum material structure according to claim 1, characterized in that: The first and second cavities within the block plate are separated by the partition plate. After the partition plate is welded to the block plate, the first and second cavities become two independently sealed cavities.
3. A square format purifying aluminum material structure according to claim 2, characterized in that: Both the first and second cavities are open, unobstructed cavities, and the first and second cavities, as well as the corner frame, are filled with nitrogen gas.
4. The square-shaped purifying aluminum material structure according to claim 1, wherein: The square plate is square in shape. The first and second cavities inside the square plate are distributed in an alternating pattern. The female groove is a right-angled groove that is concave inward on the square plate. The male protrusion is an outward protrusion on the square plate. Two male protrusions and two female grooves are respectively provided on the four sides of the square plate.
5. The square-shaped purifying aluminum material structure according to claim 1, characterized in that: The number of the square plates is multiple. Two adjacent square plates are connected by inserting the male protrusion and the female groove into each other in a sequential manner. A sealing gasket is provided at the gap between the male protrusion and the female groove between the square plates. The sealing gasket is connected to the female groove and seals the two adjacent square plates.
6. A square format purifying aluminum material structure according to claim 5, characterized in that: The male protrusion and the female groove are connected by an insertion-type clamping connection through the protruding locking post and the recessed locking pit.
7. A square format purifying aluminum material structure according to claim 5, characterized in that: The gaps between the square panels are provided with slots, and decorative strips are provided in the slots. The decorative strips are inserted into the slots for a snap-on, tightening connection.
8. A square format purifying aluminum material structure according to claim 1, characterized in that: The cross-shaped frame inside the corner frame is welded to it. The corner frame is filled with nitrogen gas. Both ends of the corner frame are provided with male protrusions distributed at right angles. The corner frame and the square plate are tightly connected by inserting the male protrusions and the female groove.
9. The square-shaped purifying aluminum material structure according to claim 1, wherein: The number of wall-mounted plugs is multiple, and the wall-mounted plugs are evenly distributed on the rear of the corner frame or the square plate.
10. A square format purifying aluminum material structure according to claim 9, characterized in that: The wall-embedded plug includes a dovetail cap, a dovetail wedge, a threaded rod, and an expansion plug. The dovetail cap is placed on the corner frame or the square plate, the expansion plug is placed inside the wall, and the threaded rod is screwed into the expansion plug and connected to the dovetail cap through the dovetail wedge in a dovetail-like insertion fit.
Citation Information
Patent Citations
Vacuum insulation board
CN114962863A