Aluminum frame reinforcing structure of vacuum chamber

By wrapping the tic-tac-shaped aluminum profile reinforcement frame on the outer wall of the vacuum capsule and configuring aluminum rod support, combined with structures such as abutment and protective plates, the service life and stability of the vacuum capsule in a high-pressure differential environment is solved, and the strength and sealing are improved.

CN223179252UActive Publication Date: 2025-08-01AOLV ALUMINUM IND TECH(KUNSHAN) CO LTD
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Patent Information

Application Number
CN202421848912.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-08-01
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

During the long-term use of the vacuum chamber of existing vacuum dryers, frequent pressure differential changes lead to the impact of service life and stability. Especially in the drying of aluminum alloy cylinder parts of automobile engines, a reinforcement structure is needed to improve its use strength and stability.

Method used

The aluminum profile reinforcement frame is wrapped in the outer wall of the vacuum capsule, and a tic-tac-shaped setting is adopted. Aluminum rods are arranged between the two ends of the transverse frame and the inner wall of the capsule to increase the contact area. Combined with the structures such as a base, side bracket and protective plate, a stable support system is formed, reducing the quality of the reinforcement frame and even dispersing the mechanical load.

Benefits of technology

It improves the use strength and stability of the vacuum capsule, reduces the pressure on the capsule, enhances the sealing and service life, and adapts to a long-term high-pressure differential environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of vacuum drying, in particular to an aluminum frame reinforcing structure of a vacuum cabin, which is characterized in that the front side of a cabin body is open, an aluminum profile reinforcing frame is wrapped on the outer wall of the cabin body, the aluminum profile reinforcing frame is #-shaped, an aluminum profile sealing frame is arranged on the front side of the cabin body, and aluminum rods are arranged between two ends of a transverse blocking frame and the inner wall of the cabin body. The outer wall of the cabin body is wrapped with the aluminum profile reinforcing frame, and the aluminum profile reinforcing frame is arranged in the shape of the Chinese character'jing ', so that the mass of the aluminum profile reinforcing frame can be reduced and the pressure of the aluminum profile reinforcing frame on the cabin body can be reduced on the premise of ensuring the auxiliary support of the cabin body, and the aluminum profile sealing frame can be matched with an external sealing end cover, so that the service life of the cabin body is prolonged. The aluminum rods are arranged between the two ends of the transverse blocking frame and the inner wall of the cabin body, the transverse blocking frame can be supported by the aluminum rods, and the contact area between the aluminum rods and the inner wall of the cabin body is larger, so that the force applied to the inner wall of the cabin body by the transverse blocking frame is better and uniformly dispersed, and the use strength and stability of the cabin body are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of vacuum drying, in particular to an aluminum frame strengthening structure for a vacuum chamber. Background Art

[0002] After machining the cast parts of the aluminum alloy cylinder block of an automobile engine, cleaning treatment is required. After treatment, surface drying treatment must be carried out. Otherwise, the cleaning liquid contained in the threaded holes will affect the subsequent engine assembly. At present, most vacuum dryers can achieve the function of drying automobile engine parts. However, in the actual use process of the vacuum dryer, compared with the traditional dryer, the drying chamber needs to bear greater pressure. Especially when drying treatment is carried out repeatedly for a long time, frequent pressure difference changes will occur in the drying chamber, which has a greater impact on the service life and use stability of the drying chamber. Therefore, an aluminum frame strengthening structure for a vacuum chamber is urgently needed. Summary of the Utility Model

[0003] In view of the above-mentioned deficiencies of the prior art, the purpose of the present utility model is to provide an aluminum frame strengthening structure for a vacuum chamber to solve the problem of the use strength of the vacuum chamber in the prior art.

[0004] To achieve the above purpose and other related purposes, the present utility model provides the following technical solutions:

[0005] An aluminum frame strengthening structure for a vacuum chamber, comprising:

[0006] A chamber body, the front side of the chamber body is open, an aluminum profile strengthening frame is wrapped on the outer wall of the chamber body, the aluminum profile strengthening frame is arranged in a cross shape, and an aluminum material sealing frame is arranged on the front side of the chamber body;

[0007] A cross bracing frame, the cross bracing frame is arranged inside the chamber body, and aluminum rods are arranged between both ends of the cross bracing frame and the inner wall of the chamber body, and the cross bracing frame and the aluminum rods are detachably connected.

[0008] By implementing the above technical solution, an aluminum profile strengthening frame is wrapped on the outer wall of the chamber body, and the aluminum profile strengthening frame is arranged in a cross shape. On the premise of ensuring the auxiliary support for the chamber body, the quality of the aluminum profile strengthening frame can be reduced, and the pressure of the aluminum profile strengthening frame on the chamber body can be reduced. The aluminum material sealing frame can provide cooperation for the external sealing end cover. And aluminum rods are arranged between both ends of the cross bracing frame and the inner wall of the chamber body, which can support the cross bracing frame by using the aluminum rods. Moreover, the contact area between the aluminum rods and the inner wall of the chamber body is larger, so as to better evenly disperse the force exerted by the cross bracing frame on the inner wall of the chamber body, and improve the use strength and stability of the chamber body.

[0009] In an embodiment of the present utility model, a base for supporting the chamber body is arranged at the bottom of the chamber body, side brackets are arranged on the base, and the side brackets extend upward to cross over the top of the chamber body.

[0010] Implementing the above technical solution, the base can provide stable support for the cabin body. While the side brackets extend beyond the top of the cabin body, they can protect the cabin body and at the same time use the connecting parts to assist in supporting the side wall of the cabin body.

[0011] In an embodiment of the present utility model, a protective plate is covered on the outer layer of the aluminum profile reinforcement frame. There are strengthening connecting plates between both sides of the protective plate and the side brackets. The strengthening connecting plates are two groups of L-shaped aluminum plates connected alternately.

[0012] Implementing the above technical solution, the setting of the protective plate can protect the aluminum profile reinforcement frame. The strengthening connecting plates arranged between both sides of the protective plate and the side brackets can improve the support stability of the protective plate, thereby improving the use stability of the cabin body. The strengthening connecting plates are two groups of L-shaped aluminum plates connected alternately, which can improve the stability of connecting the aluminum plates to the protective plate.

[0013] In an embodiment of the present utility model, the short sides of the two groups of aluminum plates are respectively connected to the side brackets and the protective plate. The long sides of the two groups of aluminum plates are alternately matched and connected by bolts.

[0014] Implementing the above technical solution, alternately matching the long sides of the two groups of aluminum plates and connecting them by bolts can improve the connection stability and disassembly convenience of the two groups of aluminum plates.

[0015] In an embodiment of the present utility model, a guide platform is arranged at the front side of the bottom of the cabin body. The guide platform extends horizontally out of the base, and the guide platform is detachably connected to the base.

[0016] Implementing the above technical solution, the setting of the guide platform can facilitate the protection of the base during the loading and unloading process and avoid damage to the base during the loading and unloading process.

[0017] In an embodiment of the present utility model, a vacuum hole is opened at the rear side of the cabin body.

[0018] Implementing the above technical solution, it is convenient to connect an external vacuum source to evacuate the cabin body.

[0019] In an embodiment of the present utility model, a sealing groove is arranged at the front side of the aluminum sealing frame. The sealing groove is arranged along the contour line of the front side of the cabin body, and moreover, the corners of the sealing groove are smooth rounded corners.

[0020] Implementing the above technical solution, by setting the sealing groove, it is convenient for the installation of the sealing strip on the external door panel during subsequent sealing, ensuring the sealing reliability under the vacuum state. And making the corners of the sealing groove be smooth rounded corners can facilitate the installation of the sealing strip and the tightness of the fit between the sealing strip and the sealing groove.

[0021] In an embodiment of the present utility model, the aluminum rods are arranged along the height direction of the cabin body, and two groups of aluminum rods are arranged on the inner wall of each side of the cabin body.

[0022] To implement the above technical solution, arranging the aluminum rods along the height direction of the cabin body can facilitate the placement of multiple groups of cross braces, and can increase the contact area between the aluminum rods and the cabin body. The aluminum rods can also more stably support the cross braces in the vertical state.

[0023] As described above, the aluminum frame strengthening structure of a vacuum cabin of the present utility model has the following beneficial effects: by wrapping an aluminum profile strengthening frame on the outer wall of the cabin body and arranging the aluminum profile strengthening frame in a cross shape, on the premise of ensuring the auxiliary support for the cabin body, the quality of the aluminum profile strengthening frame can be reduced, the pressure of the aluminum profile strengthening frame on the cabin body can be alleviated, the aluminum sealing frame can provide cooperation for the external sealing end cover, and aluminum rods are arranged between the two ends of the cross braces and the inner wall of the cabin body, which can support the cross braces by using the aluminum rods. Moreover, the contact area between the aluminum rods and the inner wall of the cabin body is larger, so as to better evenly disperse the force exerted by the cross braces on the inner wall of the cabin body, and improve the use strength and stability of the cabin body. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It shows a schematic structural diagram of the aluminum frame strengthening structure of the vacuum cabin disclosed in the embodiment of the present utility model.

[0025] Figure 2 It shows a schematic structural diagram of the aluminum plate of the aluminum frame strengthening structure of the vacuum cabin disclosed in the embodiment of the present utility model.

[0026] Figure 3 It shows a schematic structural diagram of the sealing groove of the aluminum frame strengthening structure of the vacuum cabin disclosed in the embodiment of the present utility model.

[0027] DESCRIPTION OF REFERENCE NUMERALS

[0028] 1. Cabin body; 2. Aluminum profile strengthening frame; 3. Aluminum sealing frame; 4. Cross brace; 5. Aluminum rod; 6. Base; 7. Side bracket; 8. Protection plate; 9. Aluminum plate; 10. Guide table; 11. Vacuum hole; 12. Sealing groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] The following specific embodiments illustrate the implementation manners of the present utility model. Those skilled in the art can easily understand other advantages and effects of the present utility model from the content disclosed in this specification. It should be noted that, without conflict, the following embodiments and the features in the embodiments can be combined with each other.

[0030] Please refer to Figures 1 to 3, the present utility model provides an aluminum frame reinforcement structure for a vacuum chamber, including a chamber body 1 with an open front side. An aluminum profile reinforcement frame 2 is wrapped around the outer wall of the chamber body 1. The aluminum profile reinforcement frame 2 is arranged in a grid pattern. An aluminum sealing frame 3 is arranged at the front side of the chamber body 1. A cross-bar frame 4 is arranged inside the chamber body 1, and aluminum rods 5 are configured between both ends of the cross-bar frame 4 and the inner wall of the chamber body 1. The cross-bar frame 4 and the aluminum rods 5 are detachably connected.

[0031] By wrapping the aluminum profile reinforcement frame 2 around the outer wall of the chamber body 1 and arranging the aluminum profile reinforcement frame 2 in a grid pattern, while ensuring the auxiliary support for the chamber body 1, the quality of the aluminum profile reinforcement frame 2 can be reduced, and the pressure of the aluminum profile reinforcement frame 2 on the chamber body 1 can be alleviated. The aluminum sealing frame 3 can provide cooperation for the external sealing end cover. And by configuring aluminum rods 5 between both ends of the cross-bar frame 4 and the inner wall of the chamber body 1, the cross-bar frame 4 can be supported by the aluminum rods 5. Moreover, the contact area between the aluminum rods 5 and the inner wall of the chamber body 1 is larger, so as to better evenly disperse the force exerted by the cross-bar frame 4 on the inner wall of the chamber body 1, and improve the use strength and stability of the chamber body 1.

[0032] A base 6 for supporting the chamber body 1 is configured at the bottom of the chamber body 1. A side support 7 is arranged on the base 6, and the side support 7 extends upward to cross over the top of the chamber body 1. The base 6 can provide stable support for the chamber body 1, and when the side support 7 extends to cross over the top of the chamber body 1, it can play a protective role for the chamber body 1 and can also use connecting pieces to assist in supporting the side wall of the chamber body 1.

[0033] A protective plate 8 is covered on the outer layer of the aluminum profile reinforcement frame 2. Reinforcing connecting plates are arranged between both sides of the protective plate 8 and the side support 7. The reinforcing connecting plates are two groups of L-shaped aluminum plates 9 connected alternately. The setting of the protective plate 8 can play a protective role for the aluminum profile reinforcement frame 2. The reinforcing connecting plates arranged between both sides of the protective plate 8 and the side support 7 can improve the support stability of the protective plate 8, and further improve the use stability of the chamber body 1. The reinforcing connecting plates being two groups of L-shaped aluminum plates 9 connected alternately can improve the connection stability of connecting the aluminum plates 9 to the protective plate 8.

[0034] The short sides of the two groups of aluminum plates 9 are respectively connected to the side support 7 and the protective plate 8. The long sides of the two groups of aluminum plates 9 are alternately matched and connected by bolts. By alternately matching the long sides of the two groups of aluminum plates 9 and connecting them by bolts, the connection stability and disassembly convenience of the two groups of aluminum plates 9 can be improved.

[0035] A guide platform 10 is arranged at the front side of the bottom of the chamber body 1. The guide platform 10 extends horizontally out of the base 6. The guide platform 10 and the base 6 are detachably connected. The setting of the guide platform 10 can facilitate the protection of the base 6 during the loading and unloading process and avoid damage to the base 6 during the loading and unloading process.

[0036] A vacuum hole 11 is opened at the rear side of the chamber body 1, which is convenient for connecting an external vacuum source to evacuate the chamber body 1.

[0037] A sealing groove 12 is provided on the front side of the aluminum sealing frame 3. The sealing groove 12 is arranged along the contour line of the front side of the cabin body 1, and the corners of the sealing groove 12 are smooth and rounded. By setting the sealing groove 12, it is convenient to install the sealing strip on the external door panel during subsequent sealing, thereby ensuring the sealing reliability under the vacuum state. The smooth and rounded corners of the sealing groove 12 can facilitate the installation of the sealing strip and the tightness of the fit between the sealing strip and the sealing groove 12.

[0038] The aluminum rods 5 are arranged along the height direction of the cabin body 1, and two groups of aluminum rods 5 are arranged on the inner wall of each side of the cabin body 1. Arranging the aluminum rods 5 along the height direction of the cabin body 1 can facilitate the placement of multiple groups of cross frames 4, and can increase the contact area between the aluminum rods 5 and the cabin body 1. The aluminum rods 5 can also support the cross frames 4 more stably in the vertical state.

[0039] The utility model wraps an aluminum profile reinforcement frame on the outer wall of the cabin and arranges the aluminum profile reinforcement frame in a crisscross shape. Under the premise of ensuring auxiliary support for the cabin, it can also reduce the weight of the aluminum profile reinforcement frame and reduce the pressure of the aluminum profile reinforcement frame on the cabin. The aluminum sealing frame can provide cooperation for the external sealing end cover, and aluminum rods are arranged between the two ends of the cross frame and the inner wall of the cabin. The cross frame can be supported by the aluminum rods, and the contact area between the aluminum rods and the inner wall of the cabin is larger, thereby better and more evenly dispersing the force applied to the inner wall of the cabin by the cross frame, thereby improving the use strength and stability of the cabin.

[0040] The above embodiments are merely illustrative of the principles and effects of the present invention and are not intended to limit the present invention. Any equivalent modifications or variations made by persons skilled in the art without departing from the spirit and technical concepts disclosed herein shall be encompassed by the claims of the present invention.

Claims

1. An aluminum frame reinforcement structure for a vacuum chamber, characterized in that, include: The cabin body is open at the front, and the outer wall of the cabin body is wrapped with an aluminum reinforcement frame, the aluminum reinforcement frame is arranged in a well shape, and an aluminum sealing frame is provided on the front side of the cabin body; A cross frame is arranged inside the cabin, and aluminum rods are arranged between the two ends of the cross frame and the inner wall of the cabin, and the cross frame and the aluminum rods are detachably connected.

2. The aluminum frame strengthening structure of the vacuum chamber according to claim 1, characterized in that: The bottom of the cabin is provided with a base for supporting the cabin, and the base is provided with side supports, which extend upward to cross the top of the cabin.

3. The aluminum frame strengthening structure of the vacuum chamber according to claim 1, characterized in that: The outer layer of the aluminum profile reinforcement frame is covered with a protective plate. Reinforcement connecting plates are provided between the two sides of the protective plate and the side brackets. The reinforcement connecting plates are two groups of L-shaped aluminum plates alternately connected.

4. The aluminum frame reinforcement structure of the vacuum chamber according to claim 3, characterized in that: The short sides of the two groups of aluminum plates are respectively connected to the side brackets and the protective plate, and the long sides of the two groups of aluminum plates are alternately matched and connected by bolts.

5. The aluminum frame strengthening structure of the vacuum chamber according to claim 1, characterized in that: A guide platform is provided on the front side of the bottom of the cabin body. The guide platform extends out of the base platform in a horizontal direction, and the guide platform and the base platform are detachably connected.

6. The aluminum frame strengthening structure of the vacuum chamber according to claim 1, characterized in that: A vacuum air hole is provided on the rear side of the cabin.

7. The aluminum frame strengthening structure of the vacuum chamber according to claim 1, characterized in that: A sealing groove is provided on the front side of the aluminum sealing frame. The sealing groove is arranged along the contour line of the front side of the cabin body, and the corners of the sealing groove are smooth and rounded.

8. The aluminum frame reinforcement structure of the vacuum chamber according to claim 1, characterized in that: The aluminum rods are arranged along the height direction of the cabin body, and two groups of aluminum rods are arranged on the inner wall of each side of the cabin body.