Foaming heat insulation strip shaping device
By designing the support base, adjustment base, and baffle in combination with hinges and fixing components, the problems of inaccurate positioning and complicated operation during the shaping process of foamed thermal insulation strips were solved, achieving efficient and stable production of foamed thermal insulation strips and improving the dimensional consistency and appearance quality of the products.
Patent Information
- Application Number
- CN202423063670.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-11
AI Technical Summary
Existing foamed thermal insulation strip production equipment suffers from problems such as low positioning accuracy, complex operation, high labor intensity, and high production costs during the shaping process. In particular, the lack of precise fixing and adjustment devices makes the foamed thermal insulation strips prone to shifting during the shaping process, affecting the dimensional consistency and appearance quality of the product.
A foamed heat insulation strip shaping device was designed, including a support component and a shaping component. The cooperation design of the support seat and the adjustment seat ensures that the base is placed stably. The baffle makes the shaping mold position accurate. The adjustment seat can slide and adjust to adapt to different sizes. The cooperation between the first mold and the baffle ensures accurate positioning. The quick replacement and stable connection of the mold are realized through the hinge and the fixing component.
It improves the shaping accuracy and dimensional consistency of foamed thermal insulation strips, reduces operational difficulty and labor intensity, increases production efficiency, reduces production costs, and ensures the appearance quality and stability of the product.
Smart Images

Figure CN223532860U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of thermal insulation strip production technology, and in particular to a foamed thermal insulation strip shaping device. Background Technology
[0002] PVC profiles and windows, as an important component of modern architecture, are composite materials that combine the advantages of both plastics and steel. They are widely used due to their aesthetic appeal, durability, and energy efficiency. Especially against the backdrop of energy conservation and emission reduction, thermal insulation performance has become a crucial indicator for evaluating building materials. Foamed thermal insulation strips, as a new type of thermal insulation material, are gradually being promoted and applied in the construction industry due to their excellent thermal insulation performance and lightweight characteristics.
[0003] Currently, the production process of foamed thermal insulation strips mainly relies on natural foaming, that is, after the foaming material is injected into the foaming mold, it is allowed to cure naturally by gravity and time. In addition, some common methods include using manual or simple mechanical devices to assist in shaping. For example, manually pressing the mold, using rubber bands or spring clips to fix the mold, and applying pressure using simple lever mechanisms. While these methods can basically meet the production needs of foamed thermal insulation strips, they have many inconveniences and limitations in actual operation.
[0004] Regarding the aforementioned technologies and methods, there are obvious shortcomings in practical applications. Firstly, the positioning accuracy is not high. Due to the lack of precise fixing and adjustment devices, the foamed thermal insulation strip is prone to displacement during the shaping process, affecting the dimensional consistency and appearance quality of the final product. Secondly, the operation is complex, requiring multiple manual adjustments and fixations, which increases labor intensity and production costs. Therefore, there is an urgent need for a device that can improve the shaping accuracy of the foamed thermal insulation strip. Utility Model Content
[0005] To overcome the above problems, this application provides a foam insulation strip shaping device.
[0006] The foamed thermal insulation strip shaping device provided in this application adopts the following technical solution:
[0007] A foamed thermal insulation strip shaping device includes a support assembly and a shaping assembly, wherein the support assembly includes a worktable and a support base fixed to the top of the worktable;
[0008] The shaping component includes a base, an adjusting component, and a foaming shaping mold. The base is located on the top of the workbench and close to the support seat. Two baffles are integrally provided on the side of the base away from the workbench. The baffles are arranged perpendicularly to the workbench and parallel to each other. The adjusting component includes an adjusting seat connected to the top of the workbench. A gap is left between the adjusting seat and the support seat for placing the base. The adjusting seat is used to support and fix the base. The foaming shaping mold includes a first mold and a second mold. The first mold is connected to the support seat, and the second mold is connected to the adjusting seat. Each of the first mold and the second mold corresponds to one of the baffles. The first mold, the second mold, and the two baffles form a shaping cavity for shaping the foamed heat insulation strip.
[0009] By adopting the above technical solution, when the foam insulation strip shaping device is required, a suitable base and foam shaping mold are selected according to the size of the foam insulation strip to be shaped. The base is then placed in a suitable position on the workbench as required, and fixed on the workbench by the adjusting seat. The first mold and the support seat are connected, and the second mold and the adjusting seat are connected. Foaming adhesive is injected into the base. After the adhesive injection is completed, the first mold, the second mold, and the two baffles form a shaping cavity until the foam insulation strip is shaped. The foam insulation strip can then be removed. Compared with related technologies, the cooperative design of the support seat and the adjusting seat ensures the stable placement of the base. At the same time, the setting of the two baffles makes the position of the foam shaping mold more accurate, effectively preventing the foam insulation strip from shifting during the shaping process, improving the dimensional consistency and appearance quality of the product. The cooperative design of the first and second molds with the baffles ensures the accurate positioning of the foam insulation strip during the shaping process, improves the shaping accuracy of the foam insulation strip, and improves the dimensional consistency and appearance quality of the final product.
[0010] In one specific implementation, the adjustment seat is slidably connected to the worktable, and the adjustment seat is capable of moving toward or away from the support seat.
[0011] By adopting the above technical solution, the adjusting seat can slide on the workbench according to actual needs, thereby flexibly adjusting the distance between it and the support seat. This allows the device to adapt to bases of different sizes, improving the device's versatility and flexibility. At the same time, the sliding connection design of the adjusting seat simplifies the installation and replacement process of the base, reduces the difficulty of operation, reduces the time and labor intensity of manual adjustment, and improves production efficiency.
[0012] In one specific implementation, the adjusting component further includes adjusting screws, and the worktable has multiple fixing holes that are spaced apart along the support seat toward the side away from the support seat. The adjusting screws are sequentially inserted into the adjusting seat and the fixing holes, and the adjusting screws fix the adjusting seat and the worktable.
[0013] By adopting the above technical solution, the adjusting screw in the adjusting component can fix the adjusting seat on the worktable, ensuring the stability of the adjusting seat, thereby improving the accuracy and quality of the foamed thermal insulation strip shaping. At the same time, the multiple fixing holes opened on the worktable allow the position of the adjusting seat to be flexibly adjusted according to the base of different sizes, improving the applicability and flexibility of the device, reducing the difficulty of changing the base, reducing labor intensity and production costs. Through the combination of adjusting screw and fixing holes, the position of the adjusting seat can be easily adjusted to meet the production needs of foamed thermal insulation strips of different widths, enhancing the applicability of the device.
[0014] In one specific implementation, the adjusting component further includes a threaded rod. A groove is provided on the top of the worktable. The groove is arranged along the support seat towards the side away from the support seat. The threaded rod is located in the groove, and the setting direction of the threaded rod is consistent with the setting direction of the groove. Both ends of the threaded rod are rotatably connected to the worktable, and the adjusting seat is threadedly connected to the threaded rod.
[0015] By adopting the above technical solution, the adjusting seat can achieve precise positioning and fixing of the base through the reciprocating movement of the threaded rod in the slide groove, which improves the adjustment accuracy and stability of the foam insulation strip shaping device. At the same time, this design makes the base replacement more convenient, reduces the complexity of manual operation, reduces labor intensity, and improves production efficiency.
[0016] In one specific implementation scheme, the inner wall of the first mold is provided with a first clearance groove for the baffle to be received nearby, and the inner wall of the second mold is provided with a second clearance groove for the baffle to be received nearby. The baffle near the first mold fits into the first clearance groove, and the baffle near the second mold fits into the second clearance groove.
[0017] By adopting the above technical solution, the baffle near the first mold fits with the first clearance groove, and the baffle near the second mold fits with the second clearance groove. This not only ensures the precise positioning of the foamed heat insulation strip during the shaping process and prevents the foamed material from shifting during the shaping process, thus improving the consistency and appearance quality of the product, but also reduces the friction between the foamed material and the baffle, reduces the difficulty of operation, and improves production efficiency.
[0018] In one specific implementation, the first mold and the second mold are provided with an exhaust gap on one side close to each other.
[0019] By adopting the above technical solution, the first mold and the second mold are close to each other on one side, leaving an exhaust gap, which can effectively remove the gas inside the foam, ensuring the density and flatness of the foam insulation strip, thereby improving the quality and stability of the foam insulation strip.
[0020] In one specific implementation scheme, a first connecting plate is fixed to the side of the first mold near the side of the second mold, and a second connecting plate is fixed to the side of the second mold near the side of the first mold;
[0021] The foamed thermal insulation strip shaping device also includes a fixing component, which further includes multiple fixing members. The multiple fixing members are distributed at intervals along a distribution direction perpendicular to the first connecting plate and the second connecting plate, and the fixing members are used to fix the first connecting plate and the second connecting plate.
[0022] By adopting the above technical solution, the foamed thermal insulation strip shaping device can effectively improve the shaping accuracy and stability of the foamed thermal insulation strip. Specifically, the arrangement of the first connecting plate and the second connecting plate allows the first mold and the second mold to be more firmly connected together, preventing displacement due to external forces during the foaming process and ensuring the dimensional consistency of the foamed thermal insulation strip. At the same time, the multiple fasteners in the fixing assembly are distributed at intervals along a direction perpendicular to the first connecting plate and the second connecting plate, which can uniformly apply fixing force, further improving the stability and reliability of the device, reducing operational complexity, reducing labor intensity, and improving production efficiency.
[0023] In one specific implementation, the support base is fixed with a hinged base away from the workbench;
[0024] The shaping assembly further includes two hinge members, which correspond to the first mold and the second mold respectively. Each hinge member includes a hinge rod and two fixing sleeves. The hinge rod corresponding to the first mold passes through the hinge seat and the first mold in sequence. The first mold is rotatably connected to the hinge rod. Each of the two fixing sleeves is sleeved on one end of the hinge rod, and the fixing sleeves are interference-fitted with the hinge rod. The connection method between the second mold and the hinge member is the same as the connection method between the first mold and the hinge member.
[0025] By adopting the above technical solution, the rapid replacement and stable connection of the first and second molds in the foam insulation strip shaping device are achieved. Specifically, the design of the hinge, especially the combination of the hinge rod and the fixing sleeve, makes the replacement of the first and second molds simple and quick. When it is necessary to replace the first or second mold, simply remove the fixing sleeve and pull out the hinge rod for easy replacement, without complicated tools or steps, greatly improving production efficiency. It also allows the first and second molds to rotate freely within a certain range, so as to facilitate adjustment according to different sizes of foam insulation strips, improving the applicability and flexibility of the device. At the same time, the interference fit between the fixing sleeve and the hinge rod further enhances the stability of the connection, ensuring that the entire device remains reliable during long-term use.
[0026] In summary, this application includes at least one of the following beneficial technical effects:
[0027] 1. The designed foam insulation strip shaping device features a support base and an adjustment base that work together to ensure stable placement of the base. Simultaneously, the two baffles ensure more precise positioning of the foam shaping mold, effectively preventing the foam insulation strip from shifting during the shaping process. This improves the dimensional consistency and appearance quality of the product. The coordinated design of the first and second molds with the baffles ensures accurate positioning of the foam insulation strip during the shaping process, improving the shaping accuracy of the foam insulation strip and ultimately enhancing the dimensional consistency and appearance quality of the final product.
[0028] 2. The designed foam insulation strip shaping device features an adjustable seat that can slide on the worktable as needed, flexibly adjusting the distance between the seat and the support. This allows the device to adapt to bases of different sizes, improving its versatility and flexibility. Furthermore, the sliding connection design of the adjustable seat simplifies the installation and replacement process of the base, reduces operational difficulty, decreases the time and labor intensity of manual adjustments, and enhances production efficiency.
[0029] 3. The designed foam insulation strip shaping device features a first connecting plate and a second connecting plate, which allows the first mold and the second mold to be more firmly connected, preventing displacement due to external forces during the foaming process and ensuring the dimensional consistency of the foam insulation strip. At the same time, multiple fasteners in the fixing assembly are spaced apart along a direction perpendicular to the first and second connecting plates, which can uniformly apply fixing force, further improving the stability and reliability of the device, reducing operational complexity, lowering labor intensity, and increasing production efficiency. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the overall structure of Example 1.
[0031] Figure 2 This is a cross-sectional view of Example 1.
[0032] Figure 3 This is a schematic diagram of the overall structure of Example 2.
[0033] Explanation of reference numerals in the attached drawings: 1. Support assembly; 11. Worktable; 111. Fixing hole; 112. Slide groove; 12. Support base; 121. Hinge base; 1211. Hinge hole; 2. Shaping assembly; 21. Base; 211. Support rod; 212. Baffle; 22. Adjusting component; 221. Adjusting base; 2211. Adjusting hole; 222. Adjusting screw; 223. Threaded rod; 224. Handle; 23 1. Foaming and shaping mold; 231. First mold; 2311. First clearance groove; 2312. First connecting plate; 232. Second mold; 2321. Second clearance groove; 2322. Second connecting plate; 24. Hinge; 241. Hinge rod; 242. Fixing sleeve; 3. Fixing assembly; 31. Fixing component; 311. C-clamp; 3111. C-shaped clamp body; 3112. Screw; 3113. Handle. Detailed Implementation
[0034] The following is in conjunction with the appendix Figure 1-3 This application will be described in further detail.
[0035] This application discloses a foam insulation strip shaping device.
[0036] Example 1
[0037] Reference Figure 1 A foamed thermal insulation strip shaping device includes a support component 1, a shaping component 2, and a fixing component 3. The shaping component 2 is disposed on the support component 1, and the fixing component 3 is disposed on the shaping component 2.
[0038] Reference Figure 1 The support component 1 includes a workbench 11 and a support base 12. In this embodiment, the workbench 11 is a rectangular platform and is stably placed in a designated area. The support base 12 is located on top of the workbench 11 and is welded to the workbench 11. The support base 12 and the workbench 11 form an L-shaped placement area.
[0039] Reference Figure 1 The shaping component 2 includes a base 21, an adjusting component 22, a foaming shaping mold 23, and two hinge components 24. The support base 12 has a hinge seat 121 on the side away from the worktable 11. The hinge seat 121 is welded to the support base 12. The base 21 is located on the worktable 11 and is close to the support base 12. The bottom of the base 21 has a support rod 211, which is welded to the base 21 and can support the base 21. The bottom of the base 21 is flush with the top of the support base 12. One side of the base 21 is in contact with the hinge seat 121. The side of the base 21 away from the worktable 11 has two baffles 212 integrated. Both baffles 212 are vertically arranged and perpendicular to the worktable 11. The two baffles 212 are parallel to each other and have a accommodating gap between them.
[0040] Reference Figure 1 The adjusting component 22 is located on the side of the base 21 away from the support 12. The adjusting component 22 includes an adjusting seat 221 and an adjusting screw 222. The adjusting seat 221 is located on the worktable 11. A gap is left between the adjusting seat 221 and the support 12 for the base 21 to accommodate it. The adjusting seat 221 can support and fix the base 21, which facilitates the stability of the device and improves the quality of the foam molding. The adjusting seat 221 is slidably disposed on the worktable 11 and can move towards or away from the support 12 to adjust the gap between the adjusting seat 221 and the base 21. In order to replace the base 21 to accommodate different widths of the foam insulation strip, multiple fixing holes 111 are provided on the worktable 11. Fixing holes 111 are spaced apart along the support base 12 towards the side away from the support base 12. Adjusting screws 222 are sequentially inserted into the adjusting base 221 and the fixing holes 111. The adjusting screws 222 are sequentially threaded into the adjusting base 221 and the worktable 11. The adjusting screws 222 can fix the adjusting base 221 and the worktable 11. When the base 21 needs to be replaced, the operator screws 222 to move the adjusting base 221 away from the support base 12. Then, the base 21 is replaced. After the base 21 is replaced, the adjusting base 221 is moved to a suitable position. The operator inserts the adjusting screws 222 sequentially into the adjusting base 221 and the fixing holes 111 to fix the adjusting base 221 and the worktable 11.
[0041] Reference Figure 1 and Figure 2The foaming and shaping mold 23 includes a first mold 231 and a second mold 232. A hinge hole 1211 is provided on the hinge seat 121. One side of the first mold 231 is close to the hinge hole 1211, and the first mold 231 is close to one of the baffles 212. The first mold 231 is rotatably connected to the hinge seat 121. The second mold 232 is close to the other baffle 212 and is rotatably connected to the adjusting seat 221. The first mold 231, the second mold 232, and the two baffles 212 form a shaping cavity for shaping the foamed heat insulation strip. A first clearance groove 2311 is provided on the inner wall of the first mold 231 to accommodate the baffle 212 it is close to. A second clearance groove 2321 is provided on the inner wall of the second mold 232 to accommodate the baffle 212 it is close to. 212 fits into the first clearance groove 2311, and the baffle 212 near the second mold 232 fits into the second clearance groove 2321, which facilitates the accurate shaping of the foam into a foam insulation strip. The first mold 231 and the second mold 232 have an exhaust gap on one side close to each other, which can be used for the gas inside the foam to be discharged, so that it fits tightly. The base 21 and the foam shaping mold 23 can be made of stainless steel or aluminum alloy. These two materials have good corrosion resistance and high temperature resistance, and are suitable for long-term use. The surfaces of the base 21 and the foam shaping mold 23 can be polished to reduce friction and facilitate opening and closing operations. The two sides of the base 21 and the support 12 adjacent to each other are sealed with special sealing material to prevent the foam from flowing out from the two sides of the base 21.
[0042] Reference Figure 1 and Figure 2Two hinge components 24 correspond to the first mold 231 and the second mold 232 respectively. Each hinge component 24 includes a hinge rod 241 and two fixing sleeves 242. The hinge rod 241 corresponding to the first mold 231 passes through the hinge hole 1211 and the first mold 231 sequentially, with an interference fit between the hinge rod 241 and the hinge hole 1211. The first mold 231 is rotatably connected to the hinge rod 241. Each of the two fixing sleeves 242 is located at one end of the hinge rod 241, and the fixing sleeves 242 are fitted onto the hinge rod 241, with an interference fit between the fixing sleeves 242 and the hinge rod 241. An adjustment hole 2211 is provided on the adjusting seat 221. The hinge rod 241 corresponding to the second mold 232 passes through the adjustment hole 2211 and the second mold 232 sequentially, with an interference fit between the hinge rod 241 and the first mold 232. The adjusting hole 2211 is interference-fitted. The second mold 232 is rotatably connected to the hinge rod 241. Two fixing sleeves 242 are located at one end of the hinge rod 241. The fixing sleeves 242 are fitted onto the hinge rod 241, and the fixing sleeves 242 and the hinge rod 241 are interference-fitted. When the first mold 231 needs to be replaced, the personnel only need to remove the fixing sleeves 242 at one end of the hinge rod 241, and then pull out the hinge rod 241 to separate the hinge rod 241 from the first mold 231. Then the first mold 231 can be replaced by passing the hinge rod 241 through the hinge hole 1211 and the first mold 231 in sequence, and then connecting the fixing sleeves 242 to the hinge rod 241. The method of replacing the second mold 232 is the same as the method of replacing the first mold 231.
[0043] Reference Figure 1 and Figure 2The fixing component 3 includes multiple fixing members 31. A first connecting plate 2312 is provided on the side of the first mold 231 near the second mold 232, with one end of the first connecting plate 2312 welded to the first mold 231. A second connecting plate 2322 is provided on the side of the second mold 232 near the first mold 231, with one end of the second connecting plate 2322 welded to the second mold 232. In this embodiment, the longitudinal sections of both the first connecting plate 2312 and the second connecting plate 2322 are inverted L-shaped, and the openings of the first connecting plate 2312 and the second connecting plate 2322 are oriented away from each other. The distribution direction of the multiple fixing members 31 is perpendicular to the distribution direction of the first connecting plate 2312 and the second connecting plate 2322, and the multiple fixing members 31 are spaced apart. In this embodiment, the fixing member 31 includes a C-shaped clamp 311, which includes a C-shaped clamp body 3111, a screw 3112, and a crank handle 3113. The C-shaped clamp 3111 is mounted on the first connecting plate 2312 and the second connecting plate 2322, with one end of the C-shaped clamp 3111 located at the opening of the first connecting plate 2312 and the other end located at the opening of the second connecting plate 2322. A screw 3112 passes through one end of the C-shaped clamp 3111 and extends into either the opening of the first connecting plate 2312 or the opening of the second connecting plate 2322, and the screw 3112 is threadedly connected to the C-shaped clamp 3111. A crank handle 3113 is welded to... The screw 3112 is located at one end of the outer side of the C-shaped clamp 3111. When the operator places the C-shaped clamp 3111 on the first connecting plate 2312 and the second connecting plate 2322, the operator can turn the crank handle 3113 to drive the screw 3112 to press against the first connecting plate 2312 or the second connecting plate 2322, so that the C-shaped clamp 311 can fix the first connecting plate 2312 and the second connecting plate 2322, thereby fixing the first mold 231 and the second mold 232.
[0044] The implementation principle of Example 1 is as follows: When the foam insulation strip shaping device is required, firstly, select a suitable base 21 and foam shaping mold 23 according to the required size of the foam insulation strip. Then, place the base 21 in a suitable position on the workbench 11 as required. Subsequently, the operator fixes the base 21 on the workbench 11 using the adjusting component 22. Then, connect the first mold 231 and the second mold 232 in a suitable position as required. Inject foam adhesive into the base 21. After the adhesive injection is completed, the operator rotates the first mold 231 and the second mold 232 to close them. The first mold 231 and the second mold 232 are fixed by the fixing component 3 until the foam insulation strip is shaped. Separate the fixing component 3 from the first mold 231 and the second mold 232, and take out the foam insulation strip. By following the above operation, the required number of foam insulation strips can be produced.
[0045] When the base 21 needs to be replaced, the operator screws the adjusting screw 222 to separate it from the worktable 11, moves the adjusting seat 221 away from the support seat 12, and then replaces the base 21. After the replacement is completed, the adjusting seat 221 is moved to the appropriate position and the adjusting seat 221 and the worktable 11 are fixed by the adjusting screw 222.
[0046] Example 2
[0047] Reference Figure 3 The difference between this embodiment and embodiment 1 is that the adjusting component 22 further includes a threaded rod 223 and a handle 224. A slide groove 112 is provided on the workbench 11. The slide groove 112 is set along the support seat 12 towards the side away from the support seat 12. The threaded rod 223 is located in the slide groove 112, and the setting direction of the threaded rod 223 is consistent with the setting direction of the slide groove 112. Both ends of the threaded rod 223 are rotatably connected to the workbench 11. The adjusting seat 221 is threadedly connected to the threaded rod 223. The adjusting seat 221 can reciprocate along the length direction of the threaded rod 223. The handle 224 is located at the end of the threaded rod 223 away from the support seat 12. The handle 224 passes through the workbench 11 and is coaxially welded to the threaded rod 223. The handle 224 is rotatably connected to the workbench 11. Personnel can turn the handle 224 to drive the threaded rod 223 to rotate, which can drive the adjusting seat 221 to move, thereby realizing the replacement of the base 21.
[0048] The implementation principle of Example 2 is as follows: When the base 21 needs to be replaced, the operator turns the handle 224, which drives the threaded rod 223 to rotate. At this time, the adjusting seat 221 moves away from the support seat 12 along the length of the threaded rod 223. Then, the base 21 is replaced. After the replacement is completed, the operator turns the handle 224 in the opposite direction, and the adjusting seat 221 moves closer to the support seat 12. The adjusting seat 221 supports and fixes the base 21.
[0049] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A foamed heat insulation strip shaping device, characterized in that: It includes a support assembly (1) and a shaping assembly (2), wherein the support assembly (1) includes a worktable (11) and a support base (12) fixed to the top of the worktable (11); The shaping component (2) includes a base (21), an adjusting component (22), and a foaming shaping mold (23). The base (21) is located on the top of the workbench (11) and close to the support base (12). Two baffles (212) are integrally provided on the side of the base (21) away from the workbench (11). The baffles (212) are arranged perpendicularly to the workbench (11) and the two baffles (212) are arranged parallel to each other. The adjusting component (22) includes an adjusting seat (221). The adjusting seat (221) is connected to the top of the workbench (11). The adjusting seat (221) is connected to the support base (12). 2) A gap is left between the base (21) for placement. The adjusting seat (221) is used to support and fix the base (21). The foaming molding mold (23) includes a first mold (231) and a second mold (232). The first mold (231) is connected to the support seat (12), and the second mold (232) is connected to the adjusting seat (221). The first mold (231) and the second mold (232) each correspond to one of the baffles (212). The first mold (231), the second mold (232) and the two baffles (212) form a molding cavity for shaping the foamed heat insulation strip.
2. The foamed heat insulation strip shaping device according to claim 1, characterized in that: The adjusting seat (221) is slidably connected to the worktable (11), and the adjusting seat (221) can move toward or away from the support seat (12).
3. The foamed heat insulation strip shaping device according to claim 2, characterized in that: The adjusting component (22) also includes adjusting screws (222). The worktable (11) has multiple fixing holes (111). The multiple fixing holes (111) are distributed at intervals along the support base (12) towards the side away from the support base (12). The adjusting screws (222) are sequentially inserted into the adjusting base (221) and the fixing holes (111). The adjusting screws (222) fix the adjusting base (221) and the worktable (11).
4. The foamed heat insulation strip shaping device according to claim 2, characterized in that: The adjusting component (22) also includes a threaded rod (223). The top of the worktable (11) is provided with a slide groove (112). The slide groove (112) is arranged along the support seat (12) towards the side away from the support seat (12). The threaded rod (223) is located in the slide groove (112), and the setting direction of the threaded rod (223) is consistent with the setting direction of the slide groove (112). Both ends of the threaded rod (223) are rotatably connected to the worktable (11). The adjusting seat (221) is threadedly connected to the threaded rod (223).
5. The foamed heat insulation strip shaping device according to claim 1, characterized in that: The inner wall of the first mold (231) is provided with a first clearance groove (2311) for the baffle (212) to be received, and the inner wall of the second mold (232) is provided with a second clearance groove (2321) for the baffle (212) to be received. The baffle (212) near the first mold (231) fits into the first clearance groove (2311), and the baffle (212) near the second mold (232) fits into the second clearance groove (2321).
6. A foamed thermal insulation strip shaping device according to any one of claims 1-5, characterized in that: The first mold (231) and the second mold (232) are close to each other with an exhaust gap.
7. The foamed heat insulation strip shaping device according to claim 6, characterized in that: A first connecting plate (2312) is fixed to the side of the first mold (231) near the second mold (232), and a second connecting plate (2322) is fixed to the side of the second mold (232) near the first mold (231). The foamed thermal insulation strip shaping device also includes a fixing component (3), which further includes a plurality of fixing members (31). The plurality of fixing members (31) are distributed at intervals along a distribution direction perpendicular to the first connecting plate (2312) and the second connecting plate (2322). The fixing members (31) are used to fix the first connecting plate (2312) and the second connecting plate (2322).
8. The foamed heat insulation strip shaping device according to claim 1, characterized in that: A hinge seat (121) is fixed on the support base (12) away from the workbench (11); The shaping component (2) further includes two hinge members (24), which correspond to the first mold (231) and the second mold (232) respectively. Each hinge member (24) includes a hinge rod (241) and two fixing sleeves (242). The hinge rod (241) corresponding to the first mold (231) passes through the hinge seat (121) and the first mold (231) in sequence. The first mold (231) is rotatably connected to the hinge rod (241). Each of the two fixing sleeves (242) is sleeved on one end of the hinge rod (241). The fixing sleeves (242) are interference-fitted with the hinge rod (241). The connection method between the second mold (232) and the hinge member (24) is the same as the connection method between the first mold (231) and the hinge member (24).