A combined extruded plate
By designing the docking cavity, storage cavity, and guiding structure, the problems of damage and low efficiency during the assembly of extruded polystyrene boards are solved, achieving a stable and efficient assembly method.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-03-27
AI Technical Summary
Conventional extruded polystyrene boards are prone to damage during assembly due to their hook-like structure and require constant repositioning, resulting in low assembly efficiency.
The structure is designed with a docking cavity, a storage cavity, guide posts, spiral grooves and elastic elements, which enable the insertion post to rotate, rotate and lock, so as to achieve stable docking and disassembly of extruded boards.
It improves the stability and efficiency of extruded polystyrene board assembly, avoids damage to the hook-like structure, and simplifies the assembly process.
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Figure CN119616974B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of extruded plates, and particularly relates to a combined extruded plate. BACKGROUND
[0002] The extruded plate is a hard foam plastic plate manufactured by using polystyrene resin as raw material, adding other raw and auxiliary materials and polycontents, mixing and injecting a catalyst through a special process, and then continuously extruding and pressing to form.
[0003] Then, in order to facilitate combination, the conventional extruded plate is provided with a notch or a hook-shaped structure at both ends. However, the hook-shaped structure is protruding compared with the extruded plate, which causes damage to the position of the hook-shaped structure when the extruded plate is placed, and affects the subsequent combination. In addition, when two extruded plates are combined, the positions need to be constantly adjusted to prevent the two extruded plates from deviating or loosening, which greatly reduces the efficiency of the combination of the extruded plates.
[0004] Therefore, the application provides a combined extruded plate. SUMMARY
[0005] This section aims to summarize some aspects of the embodiments of the application and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract and title of the specification to avoid obscuring the purpose of this section, the abstract and the title. Such simplifications or omissions cannot be used to limit the scope of the application.
[0006] In view of the following technical problems in the prior art: in order to facilitate combination, the conventional extruded plate is provided with a notch or a hook-shaped structure at both ends. However, the hook-shaped structure is protruding compared with the extruded plate, which causes damage to the position of the hook-shaped structure when the extruded plate is placed, and affects the subsequent combination. In addition, when two extruded plates are combined, the positions need to be constantly adjusted to prevent the two extruded plates from deviating or loosening, which greatly reduces the efficiency of the combination of the extruded plates.
[0007] To solve the above technical problems, the application provides the following technical scheme: a combined extruded plate, comprising an extruded plate body, a butt joint cavity and a storage cavity.
[0008] The butt joint cavity is milled at one end of the extruded plate body, the storage cavity is milled at the other end of the extruded plate body, and a reinforcing part is arranged at the edge of the extruded plate body.
[0009] The inner edge of the butt joint cavity is provided with a movable cavity, the movable cavity is hingedly connected with a movable sleeve, the inner edge of the movable sleeve is provided with a guide column, the guide column is conveniently arranged on the spiral groove of the insertion column, so that the insertion column can rotate, the inner edge of the movable cavity is provided with a guide cavity, and a limiting cavity is reserved on one side of the guide cavity.
[0010] The telescopic movement in the receiving cavity has a guide seat, one side of the guide seat is provided with a plug column, the surface of the plug column is milled with a spiral groove, when the plug column is embedded in the movable sleeve, under the action of the guide column and the spiral groove, the movable sleeve can rotate, the side of the guide seat away from the plug column is provided with a linkage plate, the surface of the linkage plate in the lower position is milled with a tooth slot pattern;
[0011] The extruded plate body is provided with an ejection module near the position of the limiting cavity.
[0012] As a preferred technical scheme of the combined extruded plate, the outer periphery of the movable sleeve is slidably sleeved with a guide ring, the guide ring is provided with a guide on the movable sleeve, so that the guide ring cannot rotate but can only perform telescopic movement, the guide ring is movably connected to the guide cavity, one side of the guide ring is provided with a half ring, after the guide ring is rotated to a specified angle, the half ring is connected to the limiting cavity under the action of the elastic element, so that the guide ring cannot be controlled to rotate.
[0013] As a preferred technical scheme of the combined extruded plate, the guide cavity movably has a positioning ring, one side of the positioning ring facing the guide ring is provided with an elastic element, the elastic element is in contact with one side of the positioning ring, the other end of the elastic element is in contact with the side of the guide ring away from the half ring, the elastic element can correspond to the position of the half ring and the limiting cavity, the elastic element is no longer under pressure, at this time, the half ring can be acted on the limiting cavity through the guide ring.
[0014] As a preferred technical scheme of the combined extruded plate, the inner side of the receiving cavity is milled with a long channel one penetrating the extruded plate body, the long channel one is hingedly connected with a linkage roller one, the surface of the linkage roller one at one section of the receiving cavity is milled with a tooth slot pattern, the linkage roller one is in meshing connection with the linkage plate, when the linkage roller one is controlled to rotate, under the action of the meshing, the linkage plate can perform telescopic movement.
[0015] As a preferred technical scheme of the combined extruded plate, the ejection module includes a guide cavity, a long channel two, an ejection seat and a linkage roller two, the guide cavity is milled on the inner side of the limiting cavity, the ejection seat performs telescopic movement in the guide cavity, when the ejection seat is ejected, it can extend into the limiting cavity and eject the components in the limiting cavity.
[0016] As a preferred technical scheme of the combined extruded plate, the long channel two is milled on the inner side of the guide cavity away from the limiting cavity, the long channel two penetrates the extruded plate body, and the linkage roller two is hingedly connected in the long channel two.
[0017] As a preferred technical scheme of the combined extruded plate, the linkage roller two is provided with a linkage disc at one section of the long channel two, the linkage disc moves synchronously with the long channel two.
[0018] As a preferred technical scheme of the combined extruded plate, a connecting rod is hinged between the surface of the linkage disc and one end of the ejection seat, the hinged point of the connecting rod and the linkage disc is not at the center position of the linkage disc, and when the linkage disc rotates, the ejection seat can be driven to perform telescopic movement through the connecting rod.
[0019] The beneficial effects of the present application are:
[0020] 1. The combined extruded plate can make the insertion column perform telescopic movement through the configuration of the linkage roller I, the linkage plate and the guide seat, the telescopic movement of the insertion column can avoid the damage of the extruded plate body during the carrying process, and the telescopic movement of the insertion column can facilitate the butt joint work between the two extruded plate bodies.
[0021] 2. The combined extruded plate can make the movable sleeve rotate when the insertion column is embedded into the butt joint cavity through the spiral groove and the guide column, and after the insertion column is inserted, the semi-ring is inserted into the limiting cavity under the action of the elastic member, at this time, the guide ring cannot be rotated by linkage, at this time, the insertion column cannot continue to be inserted or withdrawn in the butt joint cavity, so as to self-lock the combination of the two extruded plate bodies.
[0022] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art from the description, or can be learned by practice of the present application. The objects and other advantages of the present application can be achieved and obtained by the structure particularly pointed out in the specification and drawings. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor. Among them:
[0024] Figure 1 It is a schematic view of the overall structure of the present application.
[0025] Figure 2 It is a schematic view of the butt joint of the two extruded plate bodies of the present application.
[0026] Figure 3 It is a schematic view of the insertion column and the movable sleeve of the present application.
[0027] Figure 4 It is a schematic view of the present application based on Figure 2 After the middle part is taken out, the schematic view is shown. Figure 3
[0028] Figure 5 It is a schematic view of theFigure 4 Enlarged view of the middle A.
[0029] Figure 6 Extrusion plate body middle part take-out lower linkage schematic view.
[0030] Reference signs:
[0031] 100, extrusion plate body; 101, reinforcing part; 200, butt joint cavity; 201, movable cavity; 202, movable sleeve; 203, guide column; 204, guide cavity; 205, limiting cavity; 206, guide ring; 207, half ring; 208, positioning ring; 209, elastic piece; 300, storage cavity; 301, guide seat; 302, insertion column; 303, linkage plate; 304, long channel one; 305, linkage roller one; 306, spiral groove; 400, ejection module; 401, guide cavity; 402, long channel two; 403, ejection seat; 404, linkage roller two; 405, linkage disc; 406, connecting rod. DETAILED DESCRIPTION
[0032] In order to make the above-mentioned objects, features and advantages of the present application more apparent and comprehensible, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.
[0033] In the following description, a lot of specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be implemented in other ways different from the description, and those skilled in the art can make similar generalizations without departing from the concept of the present application, so the present application is not limited to the specific embodiments disclosed below.
[0034] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor does it mean an embodiment that is separate or selectively excluded from other embodiments.
[0035] Thirdly, the present application is described in detail in conjunction with the schematic view, and in the detailed description of the embodiments of the present application, the cross-sectional view of the device structure is partially enlarged without the general proportion for the convenience of description, and the schematic view is only an example, which should not limit the scope of protection of the present application. In addition, the three-dimensional spatial dimensions of length, width and depth should be included in actual manufacture.
[0036] Embodiment, refer to Figure 1 and 2A combined extruded plate, the extruded plate body 100, the butt joint cavity 200 and the receiving cavity 300; the butt joint cavity 200 is milled in one end of the extruded plate body 100, the receiving cavity 300 is milled in the other end of the extruded plate body 100, the edge position of the extruded plate body 100 is provided with the reinforcing part 101;
[0037] Referring to Figure 2 、 3 , 4, 5 and 6, the inner edge of the butt joint cavity 200 is milled with the movable cavity 201, the movable sleeve 202 is hinged in the movable cavity 201, the guide column 203 is arranged in the inner edge of the movable sleeve 202, wherein the guide column 203 is convenient for acting on the spiral groove 306 of the plug-in column 302, so that the plug-in column 302 can rotate, the inner edge of the movable cavity 201 is milled with the guide cavity 204, one side of the guide cavity 204 is reserved with the limiting cavity 205; the outer periphery of the movable sleeve 202 is slidingly sleeved with the guide ring 206, wherein the guide ring 206 is provided with a guide on the movable sleeve 202, so that the guide ring 206 cannot rotate, but can only stretch and contract, the guide ring 206 is movably butted in the guide cavity 204, one side of the guide ring 206 is arranged with the half ring 207, wherein after the guide ring 206 is rotated to a specified angle, the half ring 207 is butted into the limiting cavity 205 under the action of the elastic member 209, so that the guide ring 206 cannot be controlled to rotate; the positioning ring 208 is movably arranged in the guide cavity 204, one side of the positioning ring 208 facing the guide ring 206 is arranged with the elastic member 209, the elastic member 209 is in contact with one side of the positioning ring 208, the other end of the elastic member 209 is in contact with the side of the guide ring 206 away from the half ring 207, so that the half ring 207 can be positionally corresponding to the limiting cavity 205, the elastic member 209 is no longer under pressure, at this time the half ring 207 can be acted on the limiting cavity 205 through the guide ring 206.
[0038] Referring to Figure 2 、 3 , 4 and 6, the receiving cavity 300 has the guide seat 301 which stretches and contracts, one side of the guide seat 301 is arranged with the plug-in column 302, the surface of the plug-in column 302 is milled with the spiral groove 306, when the plug-in column 302 is embedded in the movable sleeve 202, under the action of the guide column 203 and the spiral groove 306, the movable sleeve 202 can rotate, one side of the guide seat 301 away from the plug-in column 302 is arranged with the linkage plate 303, wherein the surface of the linkage plate 303 in the lower position is milled with the tooth slot type pattern, the inner edge of the receiving cavity 300 is milled with the long channel one 304 which penetrates through the extruded plate body 100, the long channel one 304 is hinged with the linkage roller one 305, the surface of the linkage roller one 305 in a section of the receiving cavity 300 is milled with the tooth slot type pattern, the linkage roller one 305 is in meshing butting with the linkage plate 303, when the linkage roller one 305 is controlled to rotate, under the action of the meshing, the linkage plate 303 can stretch and contract.
[0039] Referring to Figure 5 and 6 , the extruded plate body 100 is provided with an ejection module 400 near the position of the limiting cavity 205, the ejection module 400 includes a guide cavity 401, a long channel two 402, an ejection seat 403 and a linkage roller two 404, the guide cavity 401 is milled at the inner edge of the limiting cavity 205, the ejection seat 403 is telescopic in the guide cavity 401, and can extend into the limiting cavity 205 when the ejection seat 403 is ejected, and can eject the components in the limiting cavity 205; the long channel two 402 is milled at the inner edge of the side of the guide cavity 401 away from the limiting cavity 205, the long channel two 402 penetrates the extruded plate body 100, and the linkage roller two 404 is hinged in the long channel two 402; the linkage disc 405 is provided at a position of the long channel two 402 of the linkage roller two 404, and the linkage disc 405 moves synchronously with the long channel two 402; the surface of the linkage disc 405 is hinged with a connecting rod 406 between one end of the ejection seat 403, and the hinging point of the connecting rod 406 and the linkage disc 405 is not at the center position of the linkage disc 405, and when the linkage disc 405 rotates, the ejection seat 403 can be driven to telescopic movement through the connecting rod 406.
[0040] Through the above content, the linkage roller one 305 is rotated, so that the linkage plate 303 can drive the guide seat 301 to telescopic movement in the storage cavity 300, at this time the plug post 302 is stretched out, in the reverse operation, the plug post 302 can be stored in the storage cavity 300, avoiding damage during transportation, and the plug post 302 is inserted into the position of the butt joint cavity 200 of another extruded plate body 100, in the process of inserting the plug post 302 into the butt joint cavity 200, under the action of the spiral groove 306 and the guide column 203, the movable sleeve 202 can rotate 180°, at this time the half ring 207 corresponds to the position of the limiting cavity 205, under the action of the elastic member 209, the half ring 207 is inserted into the limiting cavity 205, at this time the guide ring 206 cannot be rotated by linkage, at this time the state of the movable sleeve 202 is limited, at this time the plug post 302 cannot move in the movable sleeve 202, so as to lock the two extruded plate bodies 100, when it is needed to disassemble the two extruded plate bodies 100, the linkage roller two 404 is rotated, under the action of the linkage disc 405 and the connecting rod 406, the ejection seat 403 extends into the limiting cavity 205, so as to eject the guide ring 206, at this time the movable sleeve 202 can rotate normally, at this time the plug post 302 can be separated from the movable sleeve 202.
[0041] It is to be understood that the detailed description and specific examples described above are intended for purposes of illustration only and are not intended to limit the scope of the technology claimed. Those skilled in the art will realize that the various modifications to the embodiments described above can be made that will be apparent to those skilled in the art, and it is intended to claim all such modifications as fall within the scope of the claims. Thus, the scope of the technology claimed should be determined by the appended claims and their legal equivalents rather than by the description of the embodiments above.
[0042] It should be noted that the above examples are only used to illustrate the technical solutions of the present application but not limit the present application. Although the present application is described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or equivalently replaced without departing from the spirit and scope of the present application, and all such modifications and equivalents should be included in the scope of the claims of the present application.
Claims
1. A composite extruded polystyrene board, characterized in that: It includes an extruded polystyrene board body (100), a docking cavity (200), and a storage cavity (300); The docking cavity (200) is milled at one end of the extruded board body (100), the receiving cavity (300) is milled at the other end of the extruded board body (100), and the edge of the extruded board body (100) is provided with a reinforcing part (101). The inner edge of the docking cavity (200) is milled with a movable cavity (201), a movable sleeve (202) is hinged in the movable cavity (201), a guide post (203) is installed on the inner edge of the movable sleeve (202), a guide cavity (204) is milled on the inner edge of the movable cavity (201), and a limit cavity (205) is reserved on one side of the guide cavity (204). The storage cavity (300) has a telescopic guide seat (301), and a plug (302) is installed on one side of the guide seat (301). The surface of the plug (302) is milled with a spiral groove (306). A linkage plate (303) is installed on the side of the guide seat (301) away from the plug (302). The surface of the linkage plate (303) located at the lower position is milled with a toothed groove. An ejector module (400) is installed on the extruded board body (100) near the limiting cavity (205); The outer periphery of the movable sleeve (202) is slidably fitted with a guide ring (206), the guide ring (206) is movably connected in the guide cavity (204), and a half ring (207) is installed on one side of the guide ring (206). A positioning ring (208) is movably installed in the guide cavity (204). An elastic element (209) is installed on the side of the positioning ring (208) facing the guide ring (206). The elastic element (209) is in contact with one side of the positioning ring (208), and the other end of the elastic element (209) is in contact with the side of the guide ring (206) away from the semi-ring (207). The inner edge of the receiving cavity (300) is milled with a long channel (304) through which the extruded board body (100) passes. A linkage roller (305) is hinged in the long channel (304). The linkage roller (305) has a toothed groove pattern milled on a section of the surface of the receiving cavity (300). The linkage roller (305) is engaged with the linkage plate (303). The ejection module (400) includes a guide cavity (401), a second long channel (402), an ejection seat (403), and a second linkage roller (404). The guide cavity (401) is milled at the inner edge of the limiting cavity (205), and the ejection seat (403) moves telescopically in the guide cavity (401). The second long channel (402) is milled on the inner edge of the guide cavity (401) away from the limiting cavity (205), the second long channel (402) penetrates the extruded board body (100), and the second linkage roller (404) is hinged in the second long channel (402); The linkage roller 2 (404) is equipped with a linkage disc (405) at a section of the long channel 2 (402), and the linkage disc (405) moves synchronously with the long channel 2 (402); A connecting rod (406) is hinged between the surface of the linkage disk (405) and one end of the ejector seat (403). The hinge point between the connecting rod (406) and the linkage disk (405) is not located at the center of the linkage disk (405).
Citation Information
Patent Citations
Assembled and combined type extruded sheet
CN217420354U
Joiner
US20070169430A1