Aluminum alloy wide-width ribbed wallboard
Through the structural design of aluminum alloy wide-weather rib wall panels, the problems of unstable connection and excessive weight of wide-weather aluminum alloy wall panels are solved through components such as alloy slots, insert blocks and reinforcement ribs, stable connection and strength enhancement are achieved, and production costs are reduced.
Patent Information
- Application Number
- CN202421360208.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-14
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-06-14
AI Technical Summary
In the prior art, the manufacturing of wide-width aluminum alloy ribbed wall panels is difficult to effectively reduce structural weight while ensuring strength, and welding deformation is not easy to control, the overall stiffness loss is serious, and the cost is high, which cannot meet the needs of ships, rail transit and aerospace.
The aluminum alloy wide-width rib wall panel structure is adopted. By setting components such as alloy slots, inserts, reinforcement ribs and spring rods on the aluminum alloy plate, the clamping connection of the aluminum alloy plate is realized, and the strength is strengthened through the reinforcement ribs and bone position blocks to reduce self-weight.
The stable connection of aluminum alloy wall panels is achieved, preventing breakage and loosening, strengthening strength and reducing self-weight, and reducing production costs.
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Figure CN223086027U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical fields of wall panel structure design and additive manufacturing, and particularly relates to an aluminum alloy wide-width ribbed wall panel. Background Art
[0002] In the fields of ships, rail transit, and aerospace, aluminum alloy wide-width ribbed integral wall panels, as important load-bearing structures, are widely used and in urgent demand. Generally, the specifications are a width of 1.6 m - 2.5 m and a length of 8 m - 30 m, which can effectively reduce the structural weight while meeting the strength requirements of the product. Since the width of the wide-width wall panel is much larger than that of the commonly used extrusion dies, in the prior art, in the fields of ships, rail transit, aerospace, etc., it mainly relies on welding narrow-width ribbed wall panels. The wall panels prepared in this way all have disadvantages such as high installation and preparation costs, difficult control of welding deformation, and loss of overall stiffness to varying degrees. In the aerospace field, integral ribbed wall panels are mainly prepared by machining thick plates to meet the requirements of design strength and weight reduction. The integral wall panels produced by this method not only have high costs, long cycles, low material utilization rates, but also serious deformation of the materials and low finished product rates, and cannot meet the requirements of the ship field for production cycles and finished products. For example, according to the traditional extrusion process, the maximum diameter of the existing extrusion equipment in China and even the world cannot meet the requirements of the width of the wide-width ribbed aluminum alloy integral wall panel profiles, and the sheet rolling process cannot achieve the high-rib structure of the integral wall panel.
[0003] The application number is 202210334011.8, which discloses an integral wall panel with bionic reinforcing ribs. The integral wall panel includes a skin, a fixed connection body, and a number of bionic reinforcing ribs. Each bionic reinforcing rib has the bionic characteristics of plant leaf veins. Each bionic reinforcing rib includes a bionic plant leaf vein. The bionic plant leaf vein includes a root part and a tip part. In each bionic reinforcing rib, the root part of the bionic plant leaf vein is connected to the fixed connection body, and the tip part of the bionic plant leaf vein does not exceed the edge of the skin. The skin is arranged on the same side of the fixed connection body and the bionic reinforcing ribs. The integral wall panel is an integrated structure. The present invention is mainly applied to the optimization design of the rib structure of the wall panel, effectively improving the load-bearing capacity of the entire wall panel and effectively reducing the weight.
[0004] The above document discloses the following defects in the installation of an integral wall panel with bionic reinforcing ribs; the weight of this wall panel is large, greatly reducing the effective height of the internal plate ribs, and the connection part between two adjacent wall panels is prone to breakage, affecting the stability of the wall panel.
[0005] It can be seen that the existing integral wall panel with bionic reinforcing ribs does not have a device for reducing wall panel cracking, and it is necessary to improve the existing device to provide an aluminum alloy wide-width ribbed wall panel. Summary of the Utility Model
[0006] To solve the above technical problems, the present utility model is achieved through the following technical solutions:
[0007] The present utility model relates to an aluminum alloy wide ribbed wall panel, which includes a B aluminum alloy plate and an alloy slot. The upper surface of the left end of the C aluminum alloy plate is installed with a C aluminum alloy plate. The C aluminum alloy plates are two and are respectively installed on the left and right sides of the upper surface of the B aluminum alloy plate. The upper surface of the C aluminum alloy plate is installed with an A aluminum alloy plate. The upper surface of the front end of the B aluminum alloy plate is installed with a D aluminum alloy plate. The D aluminum alloy plates are two and are respectively installed on the front and rear ends of the upper surface of the B aluminum alloy plate. The left end surface of the C aluminum alloy plate is installed with an alloy slot. The alloy slot body is installed with upper alloy sockets. There are four upper alloy sockets. The alloy slot body is installed with lower alloy sockets. There are four lower alloy sockets. The middle part of the inner wall of the alloy slot is installed with plug block chutes. The plug block chutes are four and are respectively installed in the middle part of the inner wall of the alloy slot. The left end surface of the alloy slot is closely attached to the plug block. The middle part of the upper surface of the plug block is installed with an upper plug rod. The lower surface of the plug block is installed with a lower plug rod.
[0008] Furthermore, cushion blocks are installed at the four corner positions of the upper surface of the B aluminum alloy plate. The middle position of the upper surface of the cushion block is installed with a threaded rod groove. The outer wall surface of the threaded rod groove is installed with rod groove fixing blocks. There are four rod groove fixing blocks on the outer wall surface of the threaded rod groove. The rod groove fixing blocks are installed with the cushion block. The threaded rod groove penetrates through the A aluminum alloy plate. The upper surface of the A aluminum alloy plate is movably installed with a threaded rotating rod. The threaded rotating rod is movably connected with the threaded rod groove. The rod diameter of the threaded rotating rod is smaller than that of the threaded rod groove. The upper surface of the threaded rotating rod is installed with a knob.
[0009] Furthermore, vertical triangular stiffeners are installed on the upper surface of the left end of the B aluminum alloy plate. The vertical triangular stiffeners are two and are installed at the left and right ends of the B aluminum alloy plate. Horizontal triangular stiffeners are installed at the front and rear ends of the upper surface of the B aluminum alloy plate. There are two horizontal triangular stiffeners. A horizontal stiffener is installed in the middle of the B aluminum alloy plate. A vertical stiffener is installed in the middle part of the B aluminum alloy plate. The vertical stiffener and the horizontal stiffener enclose a rib block.
[0010] Furthermore, an upper plug rod is installed on the upper surface of the plug block. A spring rod is installed at the front end of the upper plug rod. A spring is movably installed on the outer wall surface of the spring rod. A fixed block is movably installed on the front end surface of the spring.
[0011] Furthermore, the fixed block and the upper alloy socket on the front end surface of the alloy slot are of the same size. The rod diameter of the spring rod is smaller than the width of the upper alloy socket on the upper surface of the alloy slot.
[0012] Further, the bottom of the horizontal triangular stiffener is installed on the B aluminum alloy plate, and the rear end surface of the horizontal triangular stiffener is installed on the D aluminum alloy plate. The bottom end surface of the vertical triangular stiffener is installed on the B aluminum alloy plate, and the left and right ends of the vertical triangular stiffener are installed on the C aluminum alloy plate.
[0013] The utility model has the following beneficial effects:
[0014] (1) By installing a fixing block on the spring rod in the utility model, the connecting plates can be clamped to connect two aluminum alloy wall panels, and the clamping groove and the spring can effectively prevent the connecting block from breaking or loosening.
[0015] (2) By arranging stiffeners and rib blocks in the utility model, the strength of the aluminum alloy wall panel can be effectively enhanced and the self-weight of the aluminum alloy body can be reduced.
[0016] Of course, it is not necessary for any product implementing the utility model to achieve all the above-mentioned advantages simultaneously. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for describing the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0018] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0019] Figure 2 is a schematic diagram of the connection part of the front view of the main body of the overall structure of the present utility model;
[0020] Figure 3 is a schematic cross-sectional view of the top view of the main body of the overall structure of the present utility model;
[0021] Figure 4 is a schematic diagram of the spring clamping A at the connection part of the main body structure of the present utility model;
[0022] In the drawings, the list of components represented by each reference numeral is as follows:
[0023] In the figure: 1. A aluminum alloy plate; 101. B aluminum alloy plate; 102. C aluminum alloy plate; 103. D aluminum alloy plate; 2. Alloy slot; 201. Upper alloy socket; 202. Lower alloy socket; 203. Upper insertion rod; 204. Insertion block; 205. Lower insertion rod; 206. Spring rod; 207. Spring; 208. Fixed block; 209. Insertion block chute; 3. Threaded rotating rod; 301. Knob; 302. Threaded rod groove; 303. Rod groove fixed block; 304. Pad; 4. Horizontal triangular reinforcing rib; 401. Vertical triangular reinforcing rib; 402. Vertical reinforcing rib; 403. Horizontal reinforcing rib; 404. Rib position block. Specific embodiments
[0024] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0025] Please refer to Figures 1 - 4 As shown in the figure, the present invention is a wide-width ribbed aluminum alloy wall panel, which includes a B aluminum alloy plate 101 and an alloy slot 2. The left upper surface of the C aluminum alloy plate 102 is installed with the C aluminum alloy plate 102. The C aluminum alloy plates 102 are two and are respectively installed on the left and right sides of the upper surface of the B aluminum alloy plate 101. The upper surface of the C aluminum alloy plate 102 is installed with an A aluminum alloy plate 1. The front upper surface of the B aluminum alloy plate 101 is installed with a D aluminum alloy plate 103. The D aluminum alloy plates 103 are two and are respectively installed on the front and rear ends of the upper surface of the B aluminum alloy plate 101. The left end surface of the C aluminum alloy plate 102 is installed with an alloy slot 2. The upper alloy sockets 201 are installed on the body of the alloy slot 2. There are four upper alloy sockets 201. The lower alloy sockets 202 are installed on the body of the alloy slot 2. There are four lower alloy sockets 202. The middle part of the inner wall of the alloy slot 2 is installed with an insertion block chute 209. The four insertion block chutes 209 are respectively installed in the middle part of the inner wall of the alloy slot 2. The left end surface of the alloy slot 2 is in close contact with the insertion block 204. The middle part of the upper surface of the insertion block 204 is installed with an upper insertion rod 203. The lower surface of the insertion block 204 is installed with a lower insertion rod 205.
[0026] At the four corner positions on the upper surface of the B aluminum alloy plate 101, cushion blocks 304 are installed. At the middle position on the upper surface of the cushion blocks 304, a threaded rod groove 302 is installed. On the outer wall surface of the threaded rod groove 302, rod groove fixing blocks 303 are installed. There are four rod groove fixing blocks 303 on the outer wall surface of the threaded rod groove 302. The rod groove fixing blocks 303 are installed with the cushion blocks 304. The threaded rod groove 302 penetrates through the A aluminum alloy plate 1. On the upper surface of the A aluminum alloy plate 1, a threaded rod 3 is movably installed. The threaded rod 3 is movably connected with the threaded rod groove 302. The rod diameter of the threaded rod 3 is smaller than that of the threaded rod groove 302. On the upper surface of the threaded rod 3, a knob 301 is installed.
[0027] On the upper surface at the left end of the B aluminum alloy plate 101, vertical triangular stiffeners 401 are installed. There are two vertical triangular stiffeners 401 installed at the left and right ends of the B aluminum alloy plate 101. On the front and rear ends of the upper surface of the B aluminum alloy plate 101, horizontal triangular stiffeners 4 are installed. There are two horizontal triangular stiffeners 4. In the middle of the B aluminum alloy plate 101, a horizontal stiffener 403 is installed. In the middle part of the B aluminum alloy plate 101, a vertical stiffener 402 is installed. A bone block 404 is formed by the vertical stiffener 402 and the horizontal stiffener 403.
[0028] On the upper surface of the insert block 204, an upper insertion rod 203 is installed. At the front end of the upper insertion rod 203, a spring rod 206 is installed. On the outer wall surface of the spring rod 206, a spring 207 is movably installed. On the front surface of the spring 207, a fixing block 208 is movably installed.
[0029] The fixing block 208 and the upper alloy insertion hole 201 on the front surface of the front end of the alloy insertion slot 2 are of the same size. The rod diameter of the spring rod 206 is smaller than the width of the upper alloy insertion hole 201 on the upper surface of the alloy insertion slot 2.
[0030] The bottom of the horizontal triangular stiffener 4 is installed with the B aluminum alloy plate 101. The rear surface of the horizontal triangular stiffener 4 is installed with the D aluminum alloy plate 103. The bottom surface of the vertical triangular stiffener 401 is installed with the B aluminum alloy plate 101. The left and right ends of the vertical triangular stiffener 401 are installed with the C aluminum alloy plate 102.
[0031] During use, first, the A aluminum alloy plate 1 is installed on the upper surfaces of the C aluminum alloy plate 102 and the D aluminum alloy plate 103. Then, the threaded rods 3 are installed in the threaded rod grooves 302 in the four corner directions of the A aluminum alloy plate 1. Then, the knob 301 is turned to make the threaded rods 3 tightly connected with the threaded rod grooves 302 completely. Then, the insert block 204 and the lower insertion rod 205 on the upper insertion rod 203 installed at the right end of the C aluminum alloy plate 102 are inserted into the insert block chute 209 inside the alloy insertion slot 2. At the same time, the fixing blocks 208 on the insert block 204 and the upper insertion rod 203 are engaged and fixed with the upper alloy insertion hole 201 and the lower alloy insertion hole 202 on the alloy insertion slot 2.
[0032] The preferred embodiments of the present utility model disclosed above are only used to help illustrate the present utility model. The preferred embodiments do not describe all the details in detail, nor do they limit the present utility model to the specific embodiments described. Obviously, many modifications and variations can be made according to the content of this specification. These embodiments are selected and specifically described in this specification in order to better explain the principle and practical application of the present utility model, so that those skilled in the art can well understand and utilize the present utility model. The present utility model is only limited by the claims and their full scope and equivalents.
Claims
1. A wide-width ribbed panel made of aluminum alloy, comprising a B aluminum alloy plate (101) and an alloy slot (2), characterized in that: The left end surface of the B aluminum alloy plate (101) is mounted with a C aluminum alloy plate (102). The C aluminum alloy plate (102) is composed of two parts which are respectively mounted on the left and right sides of the upper surface of the B aluminum alloy plate (101). The upper end surface of the C aluminum alloy plate (102) is mounted with an A aluminum alloy plate (1). The front upper surface of the B aluminum alloy plate (101) is mounted with a D aluminum alloy plate (103). The D aluminum alloy plate (103) is composed of two parts which are respectively mounted on the front and rear ends of the upper surface of the B aluminum alloy plate (101). The left end surface of the C aluminum alloy plate (102) is mounted with an alloy slot (2). The alloy slot (2) body is mounted with upper alloy sockets (201). There are four upper alloy sockets (201). The alloy slot (2) body is mounted with lower alloy sockets (202). There are four lower alloy sockets (202). The middle part of the inner wall of the alloy slot (2) is mounted with insert block chutes (209). The insert block chutes (209) are four in number and are respectively mounted on the middle part of the inner wall of the alloy slot (2). The left end surface of the alloy slot (2) is in close fit with an insert block (204). The middle part of the upper surface of the insert block (204) is mounted with an upper insertion rod (203). The lower surface of the insert block (204) is mounted with a lower insertion rod (205).
2. The aluminum alloy wide ribbed panel according to claim 1, wherein: At the four corner positions of the upper surface of the B aluminum alloy plate (101), there are mounting pads (304). At the middle position of the upper surface of the mounting pads (304), there is a threaded rod groove (302). The outer wall surface of the threaded rod groove (302) is mounted with rod groove fixing blocks (303). There are four rod groove fixing blocks (303) on the outer wall surface of the threaded rod groove (302). The rod groove fixing blocks (303) are mounted with the mounting pads (304). The threaded rod groove (302) penetrates through the A aluminum alloy plate (1). The upper surface of the A aluminum alloy plate (1) is movably mounted with a threaded rotation rod (3). The threaded rotation rod (3) is movably connected with the threaded rod groove (302). The rod diameter of the threaded rotation rod (3) is smaller than that of the threaded rod groove (302). The upper surface of the threaded rotation rod (3) is mounted with a knob (301).
3. The aluminum alloy wide ribbed panel according to claim 2, characterized in that: On the left upper surface of the B aluminum alloy plate (101), there are vertical triangular stiffeners (401). The vertical triangular stiffeners (401) are two in number and are mounted on the left and right ends of the B aluminum alloy plate (101). On the front and rear ends of the upper surface of the B aluminum alloy plate (101), there are horizontal triangular stiffeners (4). There are two horizontal triangular stiffeners (4). In the middle part of the B aluminum alloy plate (101), there is a horizontal stiffener (403). In the middle part of the B aluminum alloy plate (101), there is a vertical stiffener (402). A bone position block (404) is formed by the vertical stiffener (402) and the horizontal stiffener (403).
4. The aluminum alloy wide ribbed panel according to claim 1, characterized in that: The upper surface of the insert block (204) is mounted with an upper insertion rod (203). The front end of the upper insertion rod (203) is mounted with a spring rod (206). The outer wall surface of the spring rod (206) is movably mounted with a spring (207). The front surface of the spring (207) is movably mounted with a fixing block (208).
5. The aluminum alloy wide ribbed panel according to claim 4, characterized in that: The upper alloy jack (201) on the front surface of the fixed block (208) and the alloy slot (2) has the same size, and the rod diameter of the spring rod (206) is smaller than the width of the upper alloy jack (201) on the upper surface of the alloy slot (2).
6. The aluminum alloy wide ribbed panel according to claim 3, wherein: The bottom of the transverse triangular stiffener (4) is installed on the B aluminum alloy plate (101), the rear end surface of the transverse triangular stiffener (4) is installed on the D aluminum alloy plate (103), the bottom end surface of the vertical triangular stiffener (401) is installed on the B aluminum alloy plate (101), and the left and right ends of the vertical triangular stiffener (401) are installed on the C aluminum alloy plate (102).
Citation Information
Patent Citations
Integral wallboard with bionic reinforcing ribs
CN114655420A