Connecting assembly for wave combination modeling and wave combination modeling
By designing connecting components for wave-shaped shapes, and utilizing adjusting rods and rotating adjustment parts, flexible connection and fine-tuning of concave and convex shape units with building surfaces can be achieved. This solves the problems of material waste and high installation difficulty in traditional wave shapes, and enables rapid installation and adaptability to various building surfaces.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GOLD MANTIS CONSTR DECORATION
- Filing Date
- 2025-05-26
- Publication Date
- 2026-05-19
AI Technical Summary
In traditional wave designs, each component cannot be perfectly matched with the mounting surface, resulting in material waste, high installation difficulty, and no possibility of fine-tuning.
The system employs a connecting assembly comprising a concave shaping unit, a first connecting unit, and a second connecting unit. Through adjusting rods and rotating adjustment components, it achieves flexible connection and fine-tuning between the concave and convex shaping units and the building surface, adapting to fluctuations in the flatness of the building surface.
It enables rapid installation of concave and convex shaped units onto building surfaces, reducing installation difficulty, adapting to various building surfaces, reducing material waste, and is not limited by site conditions.
Smart Images

Figure CN224259695U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of general building technology, specifically relating to curtain walls, and more particularly to a connecting component for wave-shaped combination designs and wave-shaped combination designs. Background Technology
[0002] Traditional curved decorative designs are made using gypsum board combined with plywood and are entirely handmade. Due to the limitations of the installation base, the installation of materials is quite arbitrary. Materials that are easy to install are installed first, while those that are inconvenient to install are postponed. High levels of construction experience are required to install each material in a specific order, otherwise it will result in a lot of material waste. At the same time, traditional wave-shaped designs do not have good adaptability to the base layer and cannot be fine-tuned, so they can only be used on walls or ceilings.
[0003] Therefore, there is an urgent need to develop a new connecting component and wave combination design to solve the technical problem of material waste caused by the inability of each component in traditional wave design to fully adapt to the mounting base.
[0004] It should be noted that the information disclosed in this background section is only for understanding the background technology of this application concept, and therefore, the above description is not considered to constitute prior art information. Utility Model Content
[0005] This disclosure provides at least one connecting component for wave combination shaping and a wave combination shape.
[0006] In a first aspect, embodiments of this disclosure provide a connecting component for wave-shaped composite designs, comprising: a concave design unit, a first connecting unit, a convex design unit, and a second connecting unit; wherein the first connecting unit connects the concave design unit to a building surface, and the second connecting unit connects the convex design unit to the building surface; each first adjusting rod in the first connecting unit is adapted to move relative to each other to adjust the distance between the concave design unit and the building surface, and each second adjusting rod in the second connecting unit is adapted to move relative to each other to adjust the distance between the convex design unit and the building surface, and the first connecting unit and the second connecting unit are adapted to adjust the positions of the concave design unit and the convex design unit respectively, so that the concave design unit and the convex design unit abut against each other to form a corresponding wave shape.
[0007] In one optional embodiment, the concave shaping unit includes: a first bent plate, at least one first connecting piece, and a first pipe; the first connecting piece is connected to the first convex surface of the first bent plate, the first connecting piece is connected to the first pipe, and the first pipe is connected to the first connecting unit; the two first sides of the first bent plate abut against the corresponding convex shaping units, so that the first concave surface of the first bent plate forms a corresponding wave shape.
[0008] In one optional embodiment, the first connecting unit includes: at least two first adjusting rods, at least three first rotating adjusting members, and a first fixing plate; each of the first adjusting rods is sequentially movably connected to another first adjusting rod through a corresponding first rotating adjusting member, wherein one first adjusting rod is connected to a first pipe through a corresponding first rotating adjusting member, and the other first adjusting rod is connected to a first fixing plate through a corresponding first rotating adjusting member, and the first fixing plate is connected to the building surface; the first adjusting rod and the corresponding first rotating adjusting member are threaded together to adjust the distance between the first pipe and the first fixing plate, that is, to adjust the distance between the first bent plate and the building surface.
[0009] In one optional embodiment, the wave-shaped connecting component further includes: a first surface layer and a plurality of fasteners; the first surface layer is bonded to a first curved plate, and each of the fasteners passes through the first surface layer and the first curved plate, and each of the fasteners is connected to a corresponding base layer.
[0010] In one optional embodiment, the convex shaping unit includes: a second bent plate, at least one second connecting piece, and a second pipe; the second connecting piece is connected to the second concave surface of the second bent plate, the second connecting piece is connected to the second pipe, and the second pipe is connected to the second connecting unit; the two second sides of the second bent plate respectively abut against the corresponding concave shaping unit, so that the second convex surface of the first bent plate forms a corresponding wave shape.
[0011] In one optional embodiment, the second connecting unit includes: at least two second adjusting rods, at least three second rotating adjusting members, and a second fixing plate; each second adjusting rod is sequentially movably connected to another second adjusting rod through a corresponding second rotating adjusting member, wherein one second adjusting rod is connected to a second pipe through a corresponding second rotating adjusting member, and the other second adjusting rod is connected to a second fixing plate through a corresponding second rotating adjusting member, and the second fixing plate is connected to the building surface; the second adjusting rod and the corresponding second rotating adjusting member are threaded together to adjust the distance between the second pipe and the second fixing plate, that is, to adjust the distance between the second bent plate and the building surface.
[0012] In one alternative embodiment, the wave-shaped connecting component further includes: a second surface layer and a plurality of fasteners; the second surface layer is fitted with a second curved plate, and each of the fasteners passes through the second surface layer and the second curved plate, and each of the fasteners is connected to a corresponding base layer.
[0013] In one alternative embodiment, the first curved plate in the concave shaping unit is connected to the second curved plate in the convex shaping unit through a corresponding welding layer.
[0014] Secondly, embodiments of this disclosure also provide a wave combination design, which includes: a plurality of connecting components for wave combination design; wherein each of the connecting components for wave combination design is connected in sequence to form a corresponding wave design.
[0015] In one alternative implementation, a connecting component for wave-shaped design as described above is suitable.
[0016] The beneficial effects of this utility model are that it flexibly connects the concave shaping unit and the convex shaping unit to the building surface through the first connecting unit and the second connecting unit, respectively, to achieve depth fine adjustment, adapt to the fluctuation of the flatness of the building surface, and also adapt to a variety of building surfaces. It can reduce the installation difficulty of the concave shaping unit and the convex shaping unit to the building surface, and enable the concave shaping unit and the convex shaping unit to be quickly installed on the building surface.
[0017] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objectives and other advantages of this invention are realized and obtained through the structures particularly pointed out in the description and the accompanying drawings.
[0018] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, preferred embodiments are described in detail below with reference to the accompanying drawings. Attached Figure Description
[0019] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0020] Figure 1 This is a structural diagram of a connecting component for wave-shaped design provided in an embodiment of the present disclosure;
[0021] Figure 2 This is a structural diagram of a first bent plate and a second bent plate provided in an embodiment of the present disclosure;
[0022] Figure 3 This is a structural diagram of a first surface layer and a second surface layer provided in an embodiment of this disclosure.
[0023] In the picture:
[0024] 1. Concave shaping unit; 11. First curved plate; 111. First convex surface; 112. First concave surface; 12. First connecting piece; 13. First pipe fitting;
[0025] 2. First connecting unit; 21. First adjusting rod; 22. First rotating adjusting component; 23. First fixing plate;
[0026] 3. Convex shaping unit; 31. Second curved plate; 311. Second concave surface; 312. Second convex surface; 32. Second connecting piece; 33. Second pipe fitting;
[0027] 4. Second connecting unit; 41. Second adjusting rod; 42. Second rotating adjusting component; 43. Second fixing plate;
[0028] 5. First surface layer;
[0029] 6. Second surface layer;
[0030] 7. Fasteners. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0032] In this document, when it is mentioned that a first component is located on a second component, this can mean that the first component can be directly formed on the second component, or that a third component can be inserted between the first and second components. Furthermore, in the accompanying drawings, the thickness of the components may be exaggerated or reduced for the purpose of effectively describing the technical content.
[0033] The terminology used herein is for the purpose of describing specific exemplary configurations only and is not intended to be restrictive. As used herein, the singular articles “a,” “one,” and “the” may also be intended to include plural forms unless otherwise clearly stated above.
[0034] As used herein, the phrases “in one embodiment,” “according to one embodiment,” “in some embodiments,” etc., generally refer to the fact that a particular feature, structure, or characteristic following the phrase can be included in at least one embodiment of this disclosure. Therefore, a particular feature, structure, or characteristic can be included in more than one embodiment of this disclosure, such that these phrases do not necessarily refer to the same embodiment. As used herein, the terms “example,” “exemplary,” etc., are used to “serve as an example, instance, or illustration.” Any implementation, aspect, or design described herein as “example” or “exemplary” is not necessarily to be construed as preferred or superior to other implementations, aspects, or designs. Rather, the use of the terms “example,” “exemplary,” etc., is intended to present concepts in a specific manner.
[0035] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0036] The following detailed description, with reference to the accompanying drawings, describes some embodiments of the present invention. Unless otherwise specified, the following embodiments and features can be combined with each other.
[0037] like Figures 1 to 3 As shown, at least one embodiment provides a connecting component for wave-shaped design, comprising: a concave design unit 1, a first connecting unit 2, a convex design unit 3, and a second connecting unit 4; wherein the first connecting unit 2 connects the concave design unit 1 to the building surface, and the second connecting unit 4 connects the convex design unit 3 to the building surface; each first adjusting rod 21 in the first connecting unit 2 is adapted to move relative to each other to adjust the distance between the concave design unit 1 and the building surface, and each second adjusting rod 41 in the second connecting unit 4 is adapted to move relative to each other to adjust the distance between the convex design unit 3 and the building surface, and the first connecting unit 2 and the second connecting unit 4 are adapted to adjust the positions of the concave design unit 1 and the convex design unit 3 respectively, so that the concave design unit 1 and the convex design unit 3 abut against each other to form a corresponding wave shape.
[0038] Specifically, the building surface can be either the wall surface or the ceiling surface.
[0039] In at least one embodiment, the concave shaping unit 1 and the convex shaping unit 3 are flexibly connected to the building surface by the first connecting unit 2 and the second connecting unit 4, respectively, so as to achieve fine adjustment of depth, adapt to the fluctuation of the flatness of the building surface, and also adapt to a variety of building surfaces. This reduces the installation difficulty of the concave shaping unit 1 and the convex shaping unit 3 to the building surface, and enables the concave shaping unit 1 and the convex shaping unit 3 to be quickly installed on the building surface.
[0040] In at least one embodiment, please refer to Figure 1 , Figure 2 The concave shaping unit 1 includes: a first bent plate 11, at least one first connecting piece 12, and a first pipe 13; the first connecting piece 12 is connected to the first outer convex surface 111 of the first bent plate 11, the first connecting piece 12 is connected to the first pipe 13, and the first pipe 13 is connected to the first connecting unit 2; the two first sides of the first bent plate 11 respectively abut against the corresponding convex shaping unit 3, so that the first inner concave surface 112 of the first bent plate 11 forms a corresponding wave shape.
[0041] Specifically, the first curved plate 11 can be formed by bending galvanized iron sheet, which is convenient for on-site processing.
[0042] Specifically, two first connecting pieces 12 are provided. The first connecting pieces 12 can be galvanized iron sheets, and the first connecting pieces 12 are welded to the first bending plate 11 and the first pipe fitting 13.
[0043] Specifically, the first fitting 13 can be a galvanized iron pipe.
[0044] In at least one embodiment, please refer to Figure 1 The first connecting unit 2 includes at least two first adjusting rods 21, at least three first rotating adjusting members 22, and a first fixing plate 23. Each first adjusting rod 21 is sequentially movably connected to another first adjusting rod 21 through a corresponding first rotating adjusting member 22. One first adjusting rod 21 is connected to the first pipe fitting 13 through a corresponding first rotating adjusting member 22, and the other first adjusting rod 21 is connected to the first fixing plate 23 through a corresponding first rotating adjusting member 22. The first fixing plate 23 is connected to the building surface. The first adjusting rod 21 and the corresponding first rotating adjusting member 22 are threaded together to adjust the distance between the first pipe fitting 13 and the first fixing plate 23, that is, to adjust the distance between the first bent plate 11 and the building surface.
[0045] Specifically, the first adjusting rod 21 can be a screw, which is threadedly engaged with the first rotating adjusting member 22 to realize the depth adjustment between the first fixed plate 23 and the first tube 13.
[0046] Specifically, the first rotating adjustment component 22 can be an internal thread nut to achieve threaded engagement with the first adjusting rod 21, thereby realizing the depth adjustment between the first fixing plate 23 and the first tube 13.
[0047] Specifically, the first fixing piece 23 can fit against the building surface, thereby improving the overall connection strength.
[0048] In at least one embodiment, please refer to Figure 1 , Figure 3 The wave-shaped combination connection component further includes: a first surface layer 5 and a plurality of fasteners 7; the first surface layer 5 is attached to the first curved plate 11, and each of the fasteners 7 passes through the first surface layer 5 and the first curved plate 11, and each of the fasteners 7 is connected to the corresponding base layer.
[0049] Specifically, fastener 7 can be a screw.
[0050] Specifically, the first surface layer 5 can be made of heavy materials such as stone, and can be used on walls or ceilings.
[0051] In at least one embodiment, please refer to Figure 1 , Figure 2The convex shaping unit 3 includes: a second bent plate 31, at least one second connecting piece 32, and a second pipe 33; the second connecting piece 32 is connected to the second concave surface 311 of the second bent plate 31, the second connecting piece 32 is connected to the second pipe 33, and the second pipe 33 is connected to the second connecting unit 4; the two second sides of the second bent plate 31 respectively abut against the corresponding concave shaping unit 1, so that the second convex surface 312 of the first bent plate 11 forms a corresponding wave shape.
[0052] Specifically, the second curved plate 31 can be formed by bending galvanized iron sheet, which is convenient for on-site processing.
[0053] Specifically, two second connecting pieces 32 are provided. The second connecting pieces 32 can be galvanized iron sheets, and the second connecting pieces 32 are welded to the second bending plate 31 and the second pipe fitting 33.
[0054] Specifically, the second fitting 33 can be a galvanized iron pipe.
[0055] In at least one embodiment, please refer to Figure 1 The second connecting unit 4 includes: at least two second adjusting rods 41, at least three second rotating adjusting members 42, and a second fixing plate 43; each second adjusting rod 41 is sequentially movably connected to another second adjusting rod 41 through a corresponding second rotating adjusting member 42, wherein one second adjusting rod 41 is connected to the second pipe fitting 33 through a corresponding second rotating adjusting member 42, and the other second adjusting rod 41 is connected to the second fixing plate 43 through a corresponding second rotating adjusting member 42, and the second fixing plate 43 is connected to the building surface; the second adjusting rod 41 and the corresponding second rotating adjusting member 42 are threadedly engaged to adjust the distance between the second pipe fitting 33 and the second fixing plate 43, that is, to adjust the distance between the second bending plate 31 and the building surface.
[0056] Specifically, the second adjusting rod 41 can be a screw, which is threadedly engaged with the second rotating adjusting member 42 to realize the depth adjustment between the second fixed plate 43 and the second tube 33.
[0057] Specifically, the second rotating adjustment member 42 can be an internal thread nut to achieve threaded engagement with the second adjusting rod 41, thereby realizing the depth adjustment between the second fixing plate 43 and the second tube 33.
[0058] Specifically, the second fixing piece 43 can fit against the building surface, thereby improving the overall connection strength.
[0059] In at least one embodiment, please refer to Figure 1 , Figure 3The wave-shaped combination connecting component further includes: a second surface layer 6 and a plurality of fasteners 7; the second surface layer 6 is attached to the second curved plate 31, and each of the fasteners 7 passes through the second surface layer 6 and the second curved plate 31, and each of the fasteners 7 is connected to the corresponding base layer.
[0060] Specifically, the second surface layer 6 can be made of heavy materials such as stone, and can be used on walls or ceilings.
[0061] In at least one embodiment, the first curved plate 11 in the concave shaping unit 1 is connected to the second curved plate 31 in the convex shaping unit 3 through a corresponding welding layer.
[0062] Specifically, the first curved plate 11 is connected to the second curved plate 31 through a corresponding welding layer, which can ensure the continuity of the wave shape and improve the aesthetics.
[0063] Based on the same technical concept, at least one embodiment also provides a wave combination shape, which includes: a plurality of connecting components for wave combination shapes; wherein each of the wave combination shape connecting components is connected in sequence to form a corresponding wave shape.
[0064] In summary, this utility model flexibly connects the concave and convex shaping units to the building surface through the first and second connecting units, respectively, enabling fine-tuning of the depth. This allows it to adapt to fluctuations in the flatness of the building surface and accommodates various building surfaces. It reduces the installation difficulty of the concave and convex shaping units, allowing for rapid installation of both. The combined components are not fabricated on-site, thus avoiding limitations imposed by site conditions. When disassembled into components, errors in positioning or layout, or design changes, only component adjustments are needed, without complete dismantling. The adjustable structure allows for fine-tuning of the depth. The components are made of steel, providing fire and corrosion resistance. The steel structure base and surface material can utilize heavy materials such as stone, suitable for both walls and ceilings.
[0065] In the description of the embodiments of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0066] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientation or positional relationships, are based on the orientation or positional relationships shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, terms such as "first," "second," and other numerical terms used herein do not imply order or sequence unless expressly indicated herein. Therefore, without departing from the teachings of the exemplary embodiments, the first element, component, region, layer, or segment discussed above may be referred to as the second element, component, region, layer, or segment.
[0067] Spatially relative terms, such as “inside,” “outside,” “below,” “below,” “down,” “above,” “up,” etc., may be used herein to describe the relationship between one element or feature illustrated in the figures and another element or feature. In addition to the orientations depicted in the figures, spatially relative terms may be intended to cover different orientations of the device in use or operation. For example, if the device in the figure is flipped, an element described as “below” or “below” other elements or features would be oriented as “above” other elements or features. Thus, the example term “below” can cover both above and below orientations. The device may be oriented in other ways (rotated 90 degrees or in other orientations), and the spatially relative descriptors used herein are interpreted accordingly.
[0068] In the above discussion, unless otherwise stated, when used to describe numerical values, the terms “about,” “approximately,” “basically,” etc., indicate a change of + / - 10% in that value.
[0069] Based on the above-described preferred embodiments of this utility model, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.
Claims
1. A connecting component for wave-shaped composite designs, characterized in that, include: Concave shaping unit (1), first connecting unit (2), convex shaping unit (3), and second connecting unit (4); in The first connecting unit (2) connects the concave shaping unit (1) to the building surface, and the second connecting unit (4) connects the convex shaping unit (3) to the building surface; Each first adjusting rod (21) in the first connecting unit (2) is adapted to move relative to adjust the distance between the concave shaping unit (1) and the building surface. Each second adjusting rod (41) in the second connecting unit (4) is adapted to move relative to adjust the distance between the convex shaping unit (3) and the building surface. The first connecting unit (2) and the second connecting unit (4) are adapted to adjust the positions of the concave shaping unit (1) and the convex shaping unit (3) respectively, so that the concave shaping unit (1) and the convex shaping unit (3) abut against each other to form a corresponding wave shape.
2. The connecting component for wave-shaped design as described in claim 1, characterized in that, The concave shaping unit (1) includes: a first bending plate (11), at least one first connecting piece (12) and a first pipe fitting (13); The first connecting piece (12) is connected to the first convex surface (111) of the first bent plate (11), the first connecting piece (12) is connected to the first pipe fitting (13), and the first pipe fitting (13) is connected to the first connecting unit (2); The two first sides of the first bent plate (11) abut against the corresponding convex shape unit (3) so that the first concave surface (112) of the first bent plate (11) forms a corresponding wave shape.
3. The connecting component for wave-shaped design as described in claim 2, characterized in that, The first connecting unit (2) includes: at least two first adjusting rods (21), at least three first rotating adjusting members (22) and a first fixing plate (23); Each of the first adjusting rods (21) is movably connected to another first adjusting rod (21) through a corresponding first rotating adjusting member (22). One of the first adjusting rods (21) is connected to the first pipe fitting (13) through the corresponding first rotating adjusting member (22), and the other first adjusting rod (21) is connected to the first fixing plate (23) through the corresponding first rotating adjusting member (22). The first fixing plate (23) is connected to the building surface. The first adjusting rod (21) is threadedly engaged with the corresponding first rotating adjusting member (22) to adjust the distance between the first pipe (13) and the first fixed piece (23), that is, to adjust the distance between the first bent plate (11) and the building surface.
4. The connecting component for wave-shaped design as described in claim 2, characterized in that, Also includes: First surface layer (5) and several fasteners (7); The first surface layer (5) is attached to the first curved plate (11), and each of the fasteners (7) passes through the first surface layer (5) and the first curved plate (11), and each of the fasteners (7) is connected to the corresponding base layer.
5. The connecting component for wave combination shaping as described in claim 1, characterized in that, The convex shape unit (3) includes: a second bending plate (31), at least one second connecting piece (32), and a second pipe fitting (33); The second connecting piece (32) is connected to the second concave surface (311) of the second bent plate (31), the second connecting piece (32) is connected to the second pipe fitting (33), and the second pipe fitting (33) is connected to the second connecting unit (4); The two second sides of the second curved plate (31) abut against the corresponding concave shaping unit (1) so that the second outer convex surface (312) of the second curved plate (31) forms a corresponding wave shape.
6. The connecting component for wave-shaped design as described in claim 5, characterized in that, The second connecting unit (4) includes: at least two second adjusting rods (41), at least three second rotating adjusting parts (42), and a second fixing piece (43); Each of the second adjusting rods (41) is movably connected to another second adjusting rod (41) through a corresponding second rotating adjusting member (42). One of the second adjusting rods (41) is connected to the second pipe fitting (33) through the corresponding second rotating adjusting member (42), and the other second adjusting rod (41) is connected to the second fixing plate (43) through the corresponding second rotating adjusting member (42). The second fixing plate (43) is connected to the building surface. The second adjusting rod (41) is threadedly engaged with the corresponding second rotating adjusting member (42) to adjust the distance between the second pipe fitting (33) and the second fixed piece (43), that is, to adjust the distance between the second bent plate (31) and the building surface.
7. The connecting component for wave-shaped design as described in claim 5, characterized in that, Also includes: The second surface layer (6) and several fasteners (7); The second surface layer (6) is attached to the second curved plate (31), and each of the fasteners (7) passes through the second surface layer (6) and the second curved plate (31), and each of the fasteners (7) is connected to the corresponding base layer.
8. The connecting component for wave-shaped design as described in claim 1, characterized in that, The first curved plate (11) in the concave shaping unit (1) is connected to the second curved plate (31) in the convex shaping unit (3) through a corresponding welding layer.
9. A wave-shaped design, characterized in that, include: Connecting components are used to create a combination of wave shapes; in Each of the wave combinations is connected in sequence using connecting components to form the corresponding wave shape.
10. The wave combination design as described in claim 9, characterized in that, Suitable for use with the connecting components for wave combination shaping as described in any one of claims 1-8.