Space cabin main body welding device

By designing a modular space bin main welding device, including welding units and auxiliary units, the flexible adjustment and expansion of the device is achieved, solving the problem that existing welding devices cannot maintain the stability of components, reducing the risk of transportation damage and improving welding efficiency.

CN222944779UActive Publication Date: 2025-06-06SHANGHAI LIZEO METAL PRODUCE CO LTD
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Patent Information

Application Number
CN202421763827.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-06-06
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

The existing welding devices cannot be adjusted and spliced ​​through angles, which keeps the various components stable, resulting in an increased risk of damage to the welding devices during transportation.

Method used

A space bin main body welding device is designed, including welding units and auxiliary units. Through modular design and angle adjustment mechanism, the device can be flexibly adjusted and expanded to ensure that the components remain stable during processing.

Benefits of technology

Through modular design and angle adjustment mechanism, the flexibility and stability of the welding device are improved, the risk of damage to the device during transportation is reduced, and the welding efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a space cabin main body welding device, and belongs to the technical field of welding equipment. Comprising a welding unit and an auxiliary unit, when a worker needs to weld some annular components, a first disc body and a splicing convex disc can be detached, at the moment, a second disc body is exposed in the external environment, and the annular components can be placed into an inner cavity of the second disc body so that the annular components can be welded; angle adjustment can be carried out between the two sets of bearing pieces through the series connection belt connected between the two sets of bearing pieces, the two sets of bearing pieces are spliced through cooperation of the inner grooves and the protruding blocks, and therefore the whole device can deform, all components of the whole device can be kept stable in the non-working state, and all the components of the whole device can be kept stable in the non-working state. Through angle adjustment and splicing, all the components can be kept stable, and the damage risk of the welding device in the transportation process is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of welding equipment, in particular to a space capsule main body welding device. Background Art

[0002] The space capsule is actually an accommodation experience that combines modern technology with innovative design. This type of accommodation not only provides the comfort and convenience of traditional homestays, but also incorporates elements of space exploration, giving guests a novel life experience. It allows guests to enjoy the convenience brought by technology while also experiencing the feeling of being one with nature.

[0003] During the construction of a space capsule, it is necessary to weld the supporting components or stable components. The welding device is one of the indispensable equipment. Most welding devices on the market cannot adjust the angle and splice to keep the components stable, thereby reducing the risk of damage to the welding device during transportation. Therefore, a space capsule main body welding device is proposed. Utility Model Content

[0004] The utility model aims to solve the shortcomings in the prior art and proposes a space capsule main body welding device.

[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0006] A space capsule body welding device comprises a welding unit and an auxiliary unit, wherein the auxiliary unit is clamped between two groups of the welding units, wherein the welding unit comprises a mounting bracket and a welding containing cylinder mounted on one end of the mounting bracket, wherein the other end of the welding containing cylinder is connected to a carrier, and wherein the auxiliary unit is clamped between the two groups of the mounting brackets, wherein the welding unit comprises a mounting bracket and a welding containing cylinder mounted on one end of the mounting bracket. Such modular design enables the device to be adjusted and expanded as required, thereby improving flexibility, wherein components to be welded can be inserted into the interval between the welding containing cylinder and the carrier plate, and the welding output end externally connected to the inner cavity of the welding containing cylinder can be aligned between the two groups of components to be welded, and the component to be welded can be positioned through the cavity in the middle of the first disk body, thereby preventing the component to be welded from shifting during processing.

[0007] Preferably, the mounting bracket includes a frame body and a reinforcement block installed on one side of the frame body, an assembly block is arranged on the other side of the reinforcement block, a mounting piece is installed on the edge of the assembly block, and the mounting piece is connected to the reinforcement block through a hose.

[0008] Preferably, the auxiliary unit includes a sliding block and a sliding groove opened in the middle position of the side end face of the sliding block, a series block is arranged between the two groups of the sliding blocks, an extension strip is vertically arranged on the lower end face of the series block, and a carrying plate is arranged at the other end of the extension strip. During the processing of the welded component, the sliding block can slide parallel to the side end face of the frame through the set sliding groove, thereby driving the overall device of the auxiliary unit to translate. At this time, the position of the set carrying plate can be moved, so that the staff can quickly replace the welded component placed in the inner cavity of the first plate, thereby improving work efficiency.

[0009] Preferably, the welding unit also includes an inner groove arranged on the bottom side end surface of the carrier, and a protruding block is arranged on the bottom side end surface of another group of the carriers. The two groups of the carriers are connected in series through a series belt, and the two groups of the carriers can be angle-adjusted through the series belt connecting the two groups, so that the two groups of the carriers can be spliced ​​through the cooperation of the inner groove and the protruding block, so that the overall device can be deformed, and the various components of the overall device can remain stable when not in operation. In the non-operating state, the various components can remain stable through angle adjustment and splicing, thereby reducing the risk of damage to the welding device during transportation.

[0010] Preferably, the supporting plate comprises a first plate body and a splicing convex plate arranged on the lower end surface of the first plate body, the first plate body and the inner recessed groove arranged at the bottom thereof are formed as a whole, the inner cavity of the inner recessed groove is annularly provided with a second plate body, the splicing convex plate is inserted into the inner cavity of the second plate body from top to bottom, so that the first plate body and the inner recessed groove are combined into a whole, a series block is arranged between the two groups of sliding blocks, allowing precise positioning of the welding point and improving the welding quality. The supporting plate comprises a first plate body and a splicing convex plate arranged on the lower end surface of the first plate body, the first plate body and the inner recessed groove arranged at the bottom thereof are formed as a whole, simplifying the installation and maintenance of the welding assembly, the inner cavity of the inner recessed groove is annularly provided with a second plate body, the splicing convex plate is inserted into the inner cavity of the second plate body from top to bottom, this design provides an annular welding channel, when the staff needs to weld some annular components, the first plate body and the splicing convex plate can be removed, at this time the second plate body is exposed to the external environment, and the annular component can be placed into the inner cavity of the second plate body for welding.

[0011] Compared with the prior art, the beneficial effects of the utility model are:

[0012] 1. The components to be welded can be inserted into the interval between the welding holding tube and the carrier plate, and the welding output end externally connected to the inner cavity of the welding holding tube can be aligned between the two groups of welded components, and the welded components can be positioned through the cavity in the middle of the first plate body to avoid the displacement of the welded components during the processing.

[0013] 2. During the processing of the welded component, the sliding block can slide parallel to the side end surface of the frame through the set sliding groove, thereby driving the overall device of the auxiliary unit to translate. At this time, the position of the set carrier plate can be moved, so that the staff can quickly replace the welded component placed in the inner cavity of the first plate, thereby improving work efficiency.

[0014] 3. When the staff needs to weld some annular components, the first disc body and the splicing convex disc can be removed. At this time, the second disc body is exposed to the external environment, and the annular components can be placed into the inner cavity of the second disc body for welding.

[0015] 4. The angles of the two groups of bearing parts can be adjusted through the series belts connecting them, so that the two groups of bearing parts can be spliced ​​through the cooperation of the inner grooves and the protruding blocks, so that the overall device can be deformed, and the various components of the overall device can remain stable when not in operation. In the non-operating state, the various components can remain stable through angle adjustment and splicing, reducing the risk of damage to the welding device during transportation. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a three-dimensional structural schematic diagram of a space capsule main body welding device proposed by the utility model;

[0017] Figure 2 This is a schematic diagram of the welding unit structure of a space capsule body welding device proposed by the utility model;

[0018] Figure 3 This is a schematic diagram of the auxiliary unit structure of a space capsule main body welding device proposed by the utility model;

[0019] Figure 4 This is a schematic diagram of the structure of a carrier plate of a space capsule body welding device proposed by the utility model.

[0020] In the figure: 1. welding unit; 11. mounting bracket; 111. frame; 112. reinforcement block; 113. assembly block; 114. mounting piece; 115. hose; 12. welding holding tube; 13. bearing piece; 14. inner groove; 15. protruding block; 16. series belt; 2. auxiliary unit; 21. sliding block; 22. sliding groove; 23. series block; 24. extension strip; 25. bearing plate; 251. first plate body; 252. splicing convex plate; 253. inner recessed groove; 254. second plate body. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.

[0022] Reference Figure 1-Figure 4 A space capsule body welding device comprises a welding unit 1 and an auxiliary unit 2. The auxiliary unit 2 is clamped between two groups of welding units 1. The welding unit 1 comprises a mounting bracket 11 and a welding holding tube 12 mounted on one end of the mounting bracket 11. The other end of the welding holding tube 12 is connected to a bearing member 13. The auxiliary unit 2 is clamped between two groups of mounting brackets 11. The welding unit 1 comprises a mounting bracket 11 and a welding holding tube 12 mounted on one end of the mounting bracket 11. This modular design allows the device to be adjusted and expanded as needed, thereby improving flexibility. The components to be welded can be inserted into the interval between the welding holding tube 12 and the bearing plate 25. The welding output end externally connected to the inner cavity of the welding holding tube 12 is aligned between the two groups of welded components, and the welded components can be positioned through the cavity in the middle of the first plate body 251 to avoid the displacement of the welded components during the processing.

[0023] The mounting bracket 11 includes a frame body 111 and a reinforcement block 112 mounted on one side of the frame body 111 . An assembly block 113 is disposed on the other side of the reinforcement block 112 . A mounting member 114 is mounted on the edge of the assembly block 113 . The mounting member 114 is connected to the reinforcement block 112 via a hose 115 .

[0024] The auxiliary unit 2 includes a sliding block 21 and a sliding groove 22 opened in the middle position of the side end surface of the sliding block 21. A series block 23 is arranged between the two groups of sliding blocks 21. An extension bar 24 is vertically arranged on the lower end surface of the series block 23. A carrying plate 25 is arranged at the other end of the extension bar 24. During the processing of the welded component, the sliding block 21 can slide parallel to the side end surface of the frame 111 through the set sliding groove 22, thereby driving the auxiliary unit 2 as a whole device to translate. At this time, the position of the set carrying plate 25 can be moved, so that the staff can quickly replace the welded component placed in the inner cavity of the first plate 251, thereby improving work efficiency.

[0025] The welding unit 1 also includes an inner groove 14 arranged on the bottom side end surface of the support member 13, and a protruding block 15 is arranged on the bottom side end surface of another group of support members 13. The two groups of support members 13 are connected in series through a series belt 16. The two groups of support members 13 can be angle-adjusted through the series belt 16 connecting the two groups, so that the two groups of support members 13 can be spliced ​​through the cooperation of the inner groove 14 and the protruding block 15, so that the overall device can be deformed, and the various components of the overall device can remain stable when not in operation. In the non-operating state, the various components can remain stable through angle adjustment and splicing, thereby reducing the risk of damage to the welding device during transportation.

[0026] The carrier plate 25 includes a first plate body 251 and a splicing convex plate 252 arranged on the lower end surface of the first plate body 251. The first plate body 251 and the inner concave groove 253 arranged at the bottom thereof are formed into a whole. The inner cavity of the inner concave groove 253 is annularly provided with a second plate body 254. The splicing convex plate 252 is inserted into the inner cavity of the second plate body 254 from top to bottom, so that the first plate body 251 and the inner concave groove 253 are combined into a whole. A series block 23 is arranged between the two sets of sliding blocks 21, allowing accurate positioning of the welding point and improving the welding quality. The carrier plate 25 includes a first plate body 251 and a splicing convex plate 252 arranged on the lower end surface of the first plate body 251. The convex plate 252, the first plate body 251 and the inner concave groove 253 set at the bottom thereof are integrated into a whole, which simplifies the installation and maintenance of the welding assembly. The inner cavity of the inner concave groove 253 is annularly provided with the second plate body 254, and the splicing convex plate 252 is inserted into the inner cavity of the second plate body 254 from top to bottom. This design provides an annular welding channel. When the staff needs to weld some annular components, the first plate body 251 and the splicing convex plate 252 can be removed. At this time, the second plate body 254 is exposed to the external environment, and the annular component can be placed into the inner cavity of the second plate body 254 to be welded.

[0027] In summary: the welding unit 1 includes a mounting bracket 11 and a welding holding cylinder 12 mounted on one end of the mounting bracket 11. This modular design allows the device to be adjusted and expanded as needed, which improves flexibility. The components to be welded can be inserted into the interval between the welding holding cylinder 12 and the carrier plate 25, and the welding output end externally connected to the inner cavity of the welding holding cylinder 12 is aligned between the two groups of welded components, and the welded components can be positioned through the cavity in the middle of the first plate body 251, so as to avoid the occurrence of displacement of the welded components during the processing;

[0028] During the processing of the welded component, the sliding block 21 can slide parallel to the side end surface of the frame 111 through the provided sliding groove 22, thereby driving the entire device of the auxiliary unit 2 to translate. At this time, the position of the provided carrying plate 25 can be moved, so that the staff can quickly replace the welded component placed in the inner cavity of the first plate 251, thereby improving work efficiency;

[0029] A series block 23 is arranged between the two sets of sliding blocks 21, which allows accurate positioning of welding points and improves welding quality. The carrier plate 25 includes a first plate body 251 and a splicing convex plate 252 arranged on the lower end surface of the first plate body 251. The first plate body 251 and the inner concave groove 253 arranged at the bottom thereof are integrated into a whole, which simplifies the installation and maintenance of the welding assembly. The inner cavity of the inner concave groove 253 is annularly provided with a second plate body 254, and the splicing convex plate 252 is inserted into the inner cavity of the second plate body 254 from top to bottom. This design provides an annular welding channel. When the staff needs to weld some annular components, the first plate body 251 and the splicing convex plate 252 can be removed. At this time, the second plate body 254 is exposed to the external environment, and the annular component can be placed into the inner cavity of the second plate body 254 to be welded.

[0030] The two groups of support members 13 can be angle-adjusted by a series belt 16 connecting the two groups, so that the two groups of support members 13 can be spliced ​​together by the cooperation of the inner groove 14 and the protruding block 15, so that the overall device can be deformed, and the various components of the overall device can remain stable when not in operation. In the non-operating state, the various components can remain stable through angle adjustment and splicing, thereby reducing the risk of damage to the welding device during transportation.

[0031] The above is the entire working principle of the utility model.

[0032] In the present invention, the installation method, connection method or setting method of all the above components are common mechanical methods, and the specific structures, models and coefficient indicators of all its components are its own technology. As long as it can achieve its beneficial effects, it can be implemented, so it will not be elaborated.

[0033] The above embodiments are preferred implementation modes of the present invention, but the implementation modes of the present invention are not limited by the above embodiments. Any other changes, modifications, substitutions, combinations, and simplifications that do not deviate from the spirit and principle of the present invention should be equivalent replacement methods and are included in the protection scope of the present invention.

[0034] In the present utility model, unless otherwise stated, the directional words contained in the terms such as "up, down, left, right, front, back, inside, outside, vertical, horizontal" only represent the orientation of the term in normal use, or are common names understood by those skilled in the art, and should not be regarded as limitations on the term. At the same time, number series nouns such as "first", "second" and "third" do not represent specific quantities and orders, but are merely used to distinguish names. Moreover, the terms "include", "comprise" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device that includes a series of elements includes not only those elements, but also includes other elements that are not explicitly listed, or also includes elements inherent to such process, method, article or device.

Claims

1. A space capsule body welding device, comprising a welding unit (1) and an auxiliary unit (2), wherein the auxiliary unit (2) is clamped between two groups of the welding units (1), characterized in that: The welding unit (1) comprises a mounting bracket (11) and a welding containing tube (12) mounted on one end of the mounting bracket (11); the other end of the welding containing tube (12) is connected to a bearing member (13); and the auxiliary unit (2) is clamped between two sets of the mounting brackets (11).

2. A space capsule body welding device according to claim 1, characterized in that: The mounting bracket (11) comprises a frame body (111) and a reinforcing block (112) mounted on one side of the frame body (111); an assembly block (113) is arranged on the other side of the reinforcing block (112); a mounting piece (114) is mounted on the edge of the assembly block (113); and the mounting piece (114) is connected to the reinforcing block (112) via a hose (115).

3. A space capsule body welding device according to claim 1, characterized in that: The auxiliary unit (2) comprises a sliding block (21) and a sliding groove (22) provided in the middle of a side end surface of the sliding block (21); a series block (23) is provided between two groups of the sliding blocks (21); an extension bar (24) is vertically provided on the lower end surface of the series block (23); and a carrying plate (25) is provided at the other end of the extension bar (24).

4. A space capsule body welding device according to claim 1, characterized in that: The welding unit (1) further comprises an inner groove (14) arranged on the bottom side end surface of the carrier (13); a protruding block (15) is arranged on the bottom side end surface of another group of the carriers (13); and the two groups of the carriers (13) are connected in series via a series connection belt (16).

5. A space capsule body welding device according to claim 3, characterized in that: The carrier plate (25) comprises a first plate body (251) and a splicing convex plate (252) arranged on the lower end surface of the first plate body (251); the first plate body (251) and an inner recessed groove (253) arranged at the bottom thereof form a whole; the inner cavity of the inner recessed groove (253) is provided with a second plate body (254) in an annular shape.

6. A space capsule body welding device according to claim 5, characterized in that: The splicing convex disc (252) is inserted into the inner cavity of the second disc body (254) from top to bottom, so that the first disc body (251) and the inner concave groove (253) are combined into a whole.