Oxygen cabin interior trim panel positioning assembly and oxygen cabin

By designing the oxygen chamber interior trim positioning components, using the T-shaped structure of the trim strips and pressure strip positioning, the gaps in the micro-hyperbar interior trim plates are solved, the aesthetics and maintenance convenience are improved, and a more comfortable oxygen therapy environment is provided.

CN222899559UActive Publication Date: 2025-05-27PENGLAI BEST ALUMINUM CO LTD
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Patent Information

Application Number
CN202421758791.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-05-27
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

There are gaps in the interior panels of existing micro-high pressure oxygen chambers, which affect the beauty and are prone to dirt and dirt, making it difficult to maintain.

Method used

An oxygen chamber interior trim positioning assembly is designed, including trim pressing strips and strip positioning. Through the trim pressing strips and strip positioning of the T-shaped structure, the lateral pressing portion and longitudinal connecting plate are used to combine the structure of the outer serrated teeth and the inner serrated teeth to achieve the close positioning of the interior trim and the shading of the gaps.

Benefits of technology

It effectively hides the gap between the interior panels, improves the aesthetics in the oxygen compartment, simplifies the maintenance process, and provides a more comfortable oxygen therapy environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an oxygen cabin interior trim panel positioning assembly and an oxygen cabin, and belongs to the technical field of oxygen cabins. The oxygen cabin interior trim panel positioning assembly comprises a trim panel pressing strip and a pressing strip positioning piece, the section of the trim panel pressing strip is of a T-shaped structure, the trim panel pressing strip comprises a transverse edge pressing part and a longitudinal plate connecting part, and the longitudinal plate connecting part is provided with outer sawteeth; the whole section of the pressing strip positioning piece is of a T-shaped structure, the pressing strip positioning piece comprises a positioning installation part and a positioning clamping groove part, the positioning clamping groove part is of a U-shaped structure, and inner sawteeth meshed with the outer sawteeth are arranged on the positioning clamping groove part. The oxygen cabin comprises a cabin body and a plurality of interior trim panels, and further comprises an oxygen cabin interior trim panel positioning assembly. According to the utility model, the butt-joint gaps of the inner decorative plates on the side wall and the top wall of the cabin body can be shielded and hidden through the positioning components, so that the complete outer surfaces of the inner decorative plates and the decorative plate pressing strips can be seen in the cabin body of the oxygen cabin, the appearance in the cabin body of the oxygen cabin is more attractive, and a user for oxygen therapy in the oxygen cabin can enjoy a more comfortable and more attractive oxygen therapy environment.
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Description

Technical Field

[0001] The utility model relates to an oxygen chamber interior trim panel positioning assembly and an oxygen chamber, belonging to the technical field of oxygen chambers. Background Art

[0002] The micro-hyperbaric oxygen chamber is a sealed chamber that provides high-concentration pure oxygen for users to breathe, and realizes the treatment effect by controlling the air pressure in the chamber. Usually, the air pressure in the chamber is adjusted to the micro-hyperbaric state, generally about 1.3 atmospheres. This micro-hyperbaric environment helps to reduce the formation of bubbles in tissues and promote blood circulation. When undergoing treatment in the micro-hyperbaric oxygen chamber, the user needs to enter the chamber and stay in it for a period of time. During the treatment process, the user breathes high-concentration pure oxygen in the micro-hyperbaric environment, which can help improve blood circulation, reduce inflammatory reactions, promote wound healing, etc. At present, micro-hyperbaric oxygen chambers have been widely used in the medical field, especially in oxygen therapy.

[0003] With the development of technology, micro-hyperbaric oxygen chambers have gradually become health care equipment in families. Family members can enter the chamber body of the oxygen chamber for health care treatment. Existing micro-hyperbaric oxygen chambers can also select appropriate chamber body sizes according to family needs, such as single-person, double-person or multi-person ones. Of course, as a micro-hyperbaric oxygen chamber for home use, not only the oxygen inhalation technology and the size of the chamber body are concerned, but also the comfort during oxygen therapy in the chamber body is concerned, and the appearance and texture of the interior finish of the chamber body of the micro-hyperbaric oxygen chamber are concerned. Therefore, interior trim panels are generally installed on the inner wall of the chamber body of the micro-hyperbaric oxygen chamber to improve the aesthetics and oxygen therapy comfort in the chamber body of the micro-hyperbaric oxygen chamber. However, for a micro-hyperbaric oxygen chamber, there is more than one interior trim panel installed on the side wall or the top wall of the chamber body, and there are often gaps between adjacent interior trim panels, resulting in affecting the overall aesthetic effect in the oxygen chamber, and dirt and grime are also likely to accumulate in the gaps, which is not convenient for the maintenance of the oxygen chamber. Summary of the Invention

[0004] The utility model aims at the deficiencies existing in the prior art, and provides an oxygen chamber interior trim panel positioning assembly and an oxygen chamber.

[0005] The technical solution for the utility model to solve the above technical problems is as follows: An oxygen chamber interior trim panel positioning assembly includes a trim strip and a strip positioning member. The cross-section of the trim strip is in a T-shaped structure. The trim strip includes a horizontal pressing edge portion pressing on adjacent interior trim panels and a longitudinal connecting plate portion for connecting with the strip positioning member. Outer sawteeth are provided on both side surfaces of the longitudinal connecting plate portion.

[0006] The cross-section of the strip positioning member is integrally in a T-shaped structure. The strip positioning member includes a positioning and mounting portion connected to the inner wall of the cabin body of the oxygen chamber and a positioning card slot portion for connecting to the longitudinal connecting plate portion. The positioning card slot portion is in a U-shaped structure, and inner serrations that engage with the outer serrations are provided on both side walls of the positioning card slot portion.

[0007] The beneficial effects of the present utility model are as follows: An interior trim panel is installed on the inner wall of the cabin body of the oxygen chamber. The trim strip can be pressed on the butt joint position of adjacent interior trim panels to cover and hide the gap between the adjacent interior trim panels. What is seen inside the oxygen chamber is the complete outer surface of the interior trim panel and the trim strip. There will be no problem that the exposed butt joint gap between adjacent interior trim panels affects the appearance and is prone to dirt accumulation, making the appearance of the interior trim panel of the cabin body more beautiful, so as to provide a more comfortable oxygen therapy environment for users undergoing oxygen therapy inside the oxygen chamber.

[0008] On the basis of the above technical solution, the present utility model can be further improved as follows.

[0009] Further, both ends of the positioning and mounting portion are bent towards the inner wall of the cabin body to form connecting legs for connecting to the inner wall of the cabin body.

[0010] The beneficial effect of adopting the above further solution is that the strip positioning member can be connected to the inner wall of the cabin body through two connecting legs, and the connection is convenient.

[0011] Further, a connecting plane acting on the inner wall of the cabin body is provided on the connecting leg, and the connecting plane is bonded to the inner wall of the cabin body.

[0012] The beneficial effect of adopting the above further solution is that glue can be applied on the connecting plane, the bonding area is large and more stable, and the installation and positioning of the strip positioning member on the inner wall of the cabin body are realized through the bonding of the connecting plane to the inner wall of the cabin body.

[0013] Further, a positioning protrusion acting on the inner wall of the cabin body is further provided on the side surface of the positioning and mounting portion away from the positioning card slot portion.

[0014] The beneficial effect of adopting the above further solution is that the cabin body includes multiple cabin plates, and there will be gaps between adjacent cabin plates. The positioning protrusion can position the gaps between adjacent cabin plates, and the positioning of the strip positioning member on the cabin body is accurate and stable.

[0015] Further, both ends of the transverse edge pressing portion are bent towards the interior trim panel to form pressing legs, and the pressing legs and the transverse edge pressing portion are smoothly transitioned through an arc.

[0016] The beneficial effect of adopting the above further solution is that one pressing leg presses on one interior trim panel, and the other pressing leg presses on the adjacent interior trim panel. The arc corner design makes the appearance of the trim strip more beautiful.

[0017] Further, the acting surface of the leg press on the interior trim panel is a press-fitting flat structure.

[0018] The beneficial effect of adopting the above further scheme is that the leg press and the flat structure of the interior trim panel have stable press-fitting positioning and beautiful press-fitting appearance.

[0019] Further, the end of the free end of the positioning card slot part adopts an arc structure, and / or the end of the free end of the longitudinal connecting plate part adopts an arc structure.

[0020] The beneficial effect of adopting the above further scheme is that the end of the arc structure can play a guiding role, reduce the docking difficulty between the trim strip and the strip positioning part, and reduce the wear between the docking ends.

[0021] Further, the trim strip is made of aluminum or aluminum alloy.

[0022] The beneficial effect of adopting the above further scheme is that on the one hand, it meets the purpose of the trim strip acting on the edge of the adjacent interior trim panel, and on the other hand, the aluminum trim strip has a beautiful appearance, increasing the beauty of the seam of the interior trim panel in the oxygen chamber.

[0023] Further, the strip positioning part is made of PVC material.

[0024] The beneficial effect of adopting the above further scheme is that it has strong plasticity, is easy to process, and has low cost.

[0025] The present utility model also relates to an oxygen chamber, which includes a chamber body and a plurality of interior trim panels arranged in the chamber body, and further includes the oxygen chamber interior trim panel positioning assembly as described above. The oxygen chamber interior trim panel positioning assembly is arranged at the docking part of the adjacent interior trim panels. The positioning and installation part is connected to the inner wall of the chamber body. The transverse edge pressing part acts on the adjacent interior trim panels. The longitudinal connecting plate part extends into the docking gap of the adjacent interior trim panels and is engaged and connected with the positioning card slot part extending into the docking gap.

[0026] The beneficial effect of the present utility model is that: on the inner walls such as the side wall and the top wall of the chamber body of the oxygen chamber, a plurality of interior trim panels are installed. The docking gaps between the interior trim panels can be covered and hidden through the above positioning assembly, so that what is seen inside the chamber body of the oxygen chamber is the complete outer surface of the interior trim panel and the trim strip. There will be no problem that the exposed docking gaps between adjacent interior trim panels affect the beauty and are prone to dirt accumulation, making the appearance inside the chamber body of the oxygen chamber more beautiful, so that the users undergoing oxygen therapy in the oxygen chamber can enjoy a more comfortable and beautiful oxygen therapy environment.

[0027] Further, the interior trim panel is magnetically adsorbed on the chamber body.

[0028] The beneficial effect of adopting the above further solution is that the installation of the interior panel in the cabin can be achieved by magnetic adsorption. For example, iron sheets can be set on the cabin, and magnets can be set on the interior panel. Magnetic adsorption does not require drilling holes in the cabin and the interior panel, ensuring the support strength of the oxygen chamber, and the installation, adjustment, and subsequent maintenance of the interior panel are also very convenient.

[0029] Further, the positioning and installation part is adhesively bonded to the inner wall of the cabin.

[0030] The beneficial effect of adopting the above further solution is that the strip positioning part can be installed on the cabin by adhesive bonding to realize the connection and positioning between the strip positioning part and the cabin. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 is a schematic structural diagram of the positioning component of the present invention;

[0032] Figure 2 is a schematic structural diagram of the positioning component of the present invention from a first split angle;

[0033] Figure 3 is a schematic structural diagram of the positioning component of the present invention from a second split angle;

[0034] Figure 4 is a schematic structural diagram of the oxygen chamber of the present invention;

[0035] Figure 5 is Figure 4 a schematic cross-sectional structural diagram along the A-A direction in ;

[0036] Figure 6 is Figure 5 a partial enlarged view at B in ;

[0037] Figure 7 is Figure 5 a partial enlarged view at C in ;

[0038] In the figure, 1, trim strip; 101, horizontal edge pressing part; 102, longitudinal connecting plate part; 103, outer serrations; 2, strip positioning part; 201, positioning and installation part; 202, positioning slot part; 203, inner serrations; 204, positioning protrusion; 3, cabin; 4, interior panel. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0039] The principles and features of the present invention will be described below in conjunction with examples. The examples given are only used to explain the present invention and are not intended to limit the scope of the present invention.

[0040] Such as Figures 1 - 3As shown in the figure, an oxygen cabin interior panel positioning component includes a trim strip 1 and a strip positioning member 2. The cross-section of the trim strip 1 is in a T-shaped structure. The trim strip 1 includes a horizontal pressing edge part 101 pressing on the adjacent interior panel 4 and a vertical connecting plate part 102 for connecting with the strip positioning member 2. Outer sawteeth 103 are provided on both side surfaces of the vertical connecting plate part 102.

[0041] The cross-section of the strip positioning member 2 is in an overall T-shaped structure. The strip positioning member 2 includes a positioning and mounting part 201 connected to the inner wall of the cabin body 3 of the oxygen cabin and a positioning card slot part 202 for connecting with the vertical connecting plate part 102. The positioning card slot part 202 is in a U-shaped structure. Inner sawteeth 203 engaged with the outer sawteeth 103 are provided on both side walls of the positioning card slot part 202.

[0042] Both ends of the positioning and mounting part 201 are bent towards the inner wall of the cabin body 3 to form connecting legs for connecting with the inner wall of the cabin body 3. The strip positioning member 2 can be connected to the inner wall of the cabin body 3 through the two connecting legs, which is convenient for connection.

[0043] A connecting plane acting on the inner wall of the cabin body 3 is provided on the connecting leg. The connecting plane is bonded to the inner wall of the cabin body 3. The glue can be applied on the connecting plane, with a large bonding area and higher stability. The installation and positioning of the strip positioning member 2 on the inner wall of the cabin body 3 are realized through the bonding between the connecting plane and the inner wall of the cabin body 3.

[0044] A positioning protrusion 204 acting on the inner wall of the cabin body 3 is further provided on the side surface of the positioning and mounting part 201 away from the positioning card slot part 202. The cabin body 3 includes a plurality of cabin plates, and there will be gaps between adjacent cabin plates. The positioning protrusion 204 can position the gaps between adjacent cabin plates, and the positioning of the strip positioning member 2 on the cabin body 3 is accurate and stable.

[0045] Both ends of the horizontal pressing edge part 101 are bent towards the interior panel 4 to form pressing legs. The pressing legs and the horizontal pressing edge part 101 are smoothly transitioned through an arc. One pressing leg presses on one interior panel 4, and the other pressing leg presses on the adjacent interior panel 4. The arc corner design makes the appearance of the trim strip 1 more beautiful.

[0046] The acting surface of the pressing leg on the interior panel 4 is a press-fitting plane structure. The pressing leg and the interior panel 4 are in a plane structure, and the press-fitting positioning is stable and the press-fitting appearance is beautiful.

[0047] The free end of the positioning card slot part 202 adopts an arc structure, and / or the free end of the vertical connecting plate part 102 adopts an arc structure. The arc-structured end can play a guiding role, reduce the docking difficulty between the trim strip 1 and the strip positioning member 2, and reduce the wear between the docking ends.

[0048] The trim strip 1 is made of aluminum or aluminum alloy. On the one hand, it meets the purpose of the trim strip 1 acting on the edge of the adjacent interior panel 4. On the other hand, the aluminum trim strip 1 has a beautiful appearance, increasing the aesthetics of the seam of the interior panel 4 in the oxygen chamber. The interior panel 4 can be made of wood.

[0049] The strip positioning member 2 is made of PVC material. It has strong plasticity, is easy to process, and has a low cost.

[0050] As Figures 4 - 7 As shown in the figure, the present invention also relates to an oxygen chamber, which includes a chamber body 3 and a plurality of interior panels 4 arranged in the chamber body 3, and also includes the above-mentioned oxygen chamber interior panel positioning assembly. The oxygen chamber interior panel positioning assembly is arranged at the docking position of the adjacent interior panels 4. The positioning and mounting part 201 is connected to the inner wall of the chamber body 3. The horizontal edge pressing part 101 acts on the adjacent interior panels 4, and the longitudinal connecting plate part 102 extends into the docking gap of the adjacent interior panels 4 and is engaged and connected with the positioning slot part 202 extending into the docking gap.

[0051] The interior panel 4 is magnetically adsorbed on the chamber body 3. The installation of the interior panel 4 in the chamber body 3 can be achieved by magnetic adsorption. For example, iron sheets can be provided on the chamber body 3 and magnets can be provided on the interior panel 4. Magnetic adsorption does not require drilling holes in the chamber body 3 and the interior panel 4, ensuring the support strength of the oxygen chamber, and the installation, adjustment, and subsequent maintenance of the interior panel 4 are also very convenient.

[0052] The positioning and mounting part 201 is bonded to the inner wall of the chamber body 3. The strip positioning member 2 can be installed on the chamber body 3 by means of glue bonding to achieve the connection and positioning between the strip positioning member 2 and the chamber body 3.

[0053] When the present invention is in use, the interior panel 4 is magnetically adsorbed on the inner wall of the chamber body 3 of the oxygen chamber through the action of the magnet and the iron sheet. There is a positioning assembly between the adjacent interior panels 4. The strip positioning member 2 of the positioning assembly is bonded to the inner wall of the corresponding chamber body 3 of the oxygen chamber by glue. The trim strip 1 of the positioning assembly has a horizontal edge pressing part 101. One leg of the horizontal edge pressing part 101 presses on one interior panel 4, and the other leg presses on another adjacent interior panel 4. The longitudinal connecting plate part 102 of the trim strip 1 is inserted into the docking gap between the adjacent interior panels 4 and is inserted and engaged with the positioning slot part 202 of the corresponding strip positioning member 2; the positioning assembly is installed between all adjacent interior panels 4. This positioning assembly can block and hide the docking gap of the interior panels 4 in the oxygen chamber, so that what is seen inside the chamber body 3 of the oxygen chamber is the complete outer surface of the interior panel 4 and the trim strip 1. There will be no problem that the docking gap of the interior panel 4 is exposed, which affects the aesthetics inside the chamber body 3 and is prone to dirt accumulation. This makes the appearance inside the chamber body 3 of the oxygen chamber more beautiful, and the users undergoing oxygen therapy in the oxygen chamber can enjoy a more comfortable and beautiful oxygen therapy environment.

[0054] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. An oxygen chamber interior panel positioning assembly, characterized in that: It comprises a decorative panel molding (1) and a molding positioning piece (2), wherein the cross section of the decorative panel molding (1) is a T-shaped structure, the decorative panel molding (1) comprises a transverse pressing edge portion (101) pressed on an adjacent interior panel (4) and a longitudinal connecting plate portion (102) used to connect to the molding positioning piece (2), and both side surfaces of the longitudinal connecting plate portion (102) are provided with external serrations (103); The cross section of the pressure strip positioning member (2) is an overall T-shaped structure. The pressure strip positioning member (2) comprises a positioning mounting portion (201) connected to the inner wall of the cabin body (3) of the oxygen cabin and a positioning slot portion (202) used to connect to the longitudinal connecting plate portion (102). The positioning slot portion (202) is a U-shaped structure. The two slot walls of the positioning slot portion (202) are provided with inner serrations (203) that mesh with the outer serrations (103).

2. The oxygen chamber interior panel positioning assembly according to claim 1, characterized in that: Both ends of the positioning and mounting portion (201) are respectively bent toward the inner wall of the cabin body (3) to form connecting legs connected to the inner wall of the cabin body (3).

3. The oxygen chamber interior panel positioning assembly according to claim 2, characterized in that: The connecting leg is provided with a connecting plane acting on the inner wall of the cabin body (3), and the connecting plane is bonded to the inner wall of the cabin body (3).

4. The oxygen chamber interior panel positioning assembly according to claim 1, characterized in that: A positioning protrusion (204) is also provided on the side of the positioning installation portion (201) away from the positioning slot portion (202) and acts on the inner wall of the cabin body (3).

5. The oxygen chamber interior panel positioning assembly according to any one of claims 1 to 4, characterized in that: The two ends of the transverse pressing edge portion (101) are respectively bent toward the interior trim panel (4) to form pressing legs; a smooth transition between the pressing leg and the transverse pressing edge portion (101) is provided through an arc, and / or the action surface of the pressing leg on the interior trim panel (4) is a press-fit plane structure.

6. The oxygen chamber interior panel positioning assembly according to claim 1, characterized in that: The end cap of the free end of the positioning slot portion (202) adopts an arc structure, and / or the end cap of the free end of the longitudinal connecting plate portion (102) adopts an arc structure.

7. The oxygen chamber interior panel positioning assembly according to claim 1, characterized in that: The decorative panel molding (1) is made of aluminum or aluminum alloy; and / or the molding positioning piece (2) is made of PVC material.

8. An oxygen chamber, comprising a chamber body (3) and a plurality of interior panels (4) arranged in the chamber body (3), characterized in that: It also includes an oxygen chamber interior panel positioning assembly as described in any one of claims 1 to 7, wherein the oxygen chamber interior panel positioning assembly is arranged at the joint of adjacent interior panels (4), the positioning mounting portion (201) is connected to the inner wall of the cabin body (3), the transverse pressing edge portion (101) acts on the adjacent interior panel (4), and the longitudinal connecting plate portion (102) extends into the joint gap between the adjacent interior panels (4) and is engaged and connected with the positioning slot portion (202) extending into the joint gap.

9. The oxygen chamber according to claim 8, characterized in that: The interior trim panel (4) is magnetically adsorbed on the cabin body (3).

10. The oxygen chamber according to claim 8, characterized in that: The positioning and mounting portion (201) is bonded to the inner wall of the cabin (3).