Neon lamp multifunctional application mold pressing plug mold
By designing a multi-functional molding die for neon light plugs, the problem of resource waste during the molding process of neon light plugs is solved, achieving efficient multi-functional processing that is suitable for processing neon lights of various shapes.
Patent Information
- Application Number
- CN202423102513.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-16
AI Technical Summary
In existing technologies, multiple sets of molds are required when molding neon light plugs, leading to resource waste and low production efficiency.
A multifunctional molding plug mold is designed, comprising a lower mold and an upper mold. Through the insertion interface and molding unit, it can process neon lights from multiple positions. Only one set of molds is needed to complete the processing of neon lights of various shapes.
This invention achieves the practicality of a multi-functional mold, avoids resource waste, improves processing efficiency, is suitable for processing neon lights of various shapes, and reduces production costs.
Smart Images

Figure CN223545613U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of molded plug mold technology, specifically a multi-functional molded plug mold for neon lights. Background Technology
[0002] A molded plug mold is a tool used in a molding process to process raw materials into plug products with specific shapes and sizes. Plugs are mainly used to seal pipes or holes to prevent fluid or gas leakage.
[0003] In the production of neon lights, to protect the ends of the neon light strips from short circuits caused by contact with conductive objects, and to prevent moisture and dust from entering the strips, thus extending the lifespan of the neon lights, it is necessary to produce neon lights using end-cap molds. The neon end-caps act as protective components at the ends of the light strips, effectively preventing the end-cap sockets from contacting other conductive objects, thereby avoiding short circuits, improving the reliability and stability of the neon lights, and reducing maintenance costs and replacement frequency. However, in existing technologies, different end-cap molds are needed for pressing the end-caps onto the neon lights, depending on the end of the neon light being produced. This results in the need to create multiple sets of end-cap molds for producing end-caps in different positions on the neon lights, leading to resource waste. Therefore, we propose a multi-functional neon light end-cap mold. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a multi-functional neon light application molding die, which solves the problem that when molding neon light plugs, different plug molds are needed depending on the production end of the neon light plug, resulting in multiple sets of plug molds to be made for producing plugs in multiple positions of the neon light, thus wasting resources.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a multi-functional neon light application molding plug mold, comprising:
[0006] Lower mold;
[0007] An insertion interface is provided between the upper mold and the lower mold;
[0008] The first neon light forming unit is inserted into the corresponding interface and is used for processing various side-out and tail-out neon lights.
[0009] The two first neon light forming units are located on either side of the lower mold and the upper mold;
[0010] The second neon light forming unit includes a second neon light body, a straight head and a second end cap, wherein the straight head and the second end cap are respectively disposed at both ends of the second neon light body;
[0011] One of the straight-out heads on the second neon light body is located in the lower mold and the upper mold, and the straight-out head extends outward from the lower mold and the upper mold. The other second neon light body has a second end cap located in the lower mold and the upper mold, which is used for processing the straight-out and end-out neon lights.
[0012] Preferably, the first neon light forming unit includes a first neon light body, a side protrusion, and a first end cap. The first neon light body is located between the lower mold and the upper mold. The side protrusion is located on one side of the first neon light body. The two side protrusions extend from both sides of the lower mold and the upper mold and are located at the ends of the first neon light body. The first end cap is located at the tail end of the other side of the first neon light body. A first light-emitting surface is welded onto the first neon light body, and a second light-emitting surface is welded onto the second neon light body.
[0013] Preferably, the lower mold and the upper mold are provided with a first placement groove for placing a first neon light forming unit, and the lower mold and the upper mold are provided with a second placement groove and a third placement groove for placing a second neon light forming unit.
[0014] Preferably, the lower mold and the upper mold are provided with a first positioning groove and a first mounting groove. The first positioning groove fits into the side protrusion, and a first positioning seat is installed in the first mounting groove. The first positioning seat contacts the outer wall of the side protrusion.
[0015] Preferably, the lower mold and the upper mold are provided with a second positioning groove and a third mounting groove. The second positioning groove fits into the straight head, and a second positioning seat is installed in the third mounting groove. The second positioning seat contacts the outer wall of the straight head.
[0016] Preferably, the lower mold and the upper mold are provided with a second mounting groove, and a feeding head is installed in the second mounting groove. The feeding head is provided with a feeding port and a discharging port.
[0017] Preferably, the lower mold and the upper mold are provided with a first connecting pipe, the first connecting pipe is connected to the discharge port on the feed head, and the other end of the first connecting pipe is connected to the third placement groove and the second positioning groove.
[0018] Preferably, the lower mold and the upper mold are provided with a second connecting pipe, the second connecting pipe is connected to the discharge port on the feed head, and the other end of the second connecting pipe is connected to the first positioning groove.
[0019] This utility model discloses a multi-functional molding die for neon lights, which has the following beneficial effects:
[0020] This neon light multifunctional application molding plug mold seals the side outlet and the first end of the first neon light body through the lower mold and the upper mold, which facilitates the processing of the side outlet and end outlet of the first neon light body;
[0021] By placing the first neon light body on both sides of the lower mold and the upper mold, and processing the side protrusions on different sides of the first neon light body, it is applicable to the processing of various side-extrusion and tail-extrusion first neon light bodies;
[0022] The lower and upper molds are used to seal the straight head and the second tail of the second neon light body, which facilitates the processing of the straight and tail-out second neon light body.
[0023] By inserting the straight-out head into the lower mold and the upper mold, the straight-out head of the second neon light body is processed; by inserting the second plug into the lower mold and the upper mold, the second plug of the second neon light body is processed.
[0024] The first and second neon light bodies are processed using a lower mold and an upper mold, which facilitates the processing of different first and second neon light bodies. This avoids the need to open multiple sets of end-cap molds to process the first and second neon light bodies. It is highly practical, as only one set of molds is needed to complete the process, avoiding the waste of resources caused by producing multiple sets of molds. Furthermore, multiple first and second neon light forming units can be processed simultaneously, improving processing efficiency. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0027] Figure 2 This is a schematic diagram of the lower mold connection of this utility model;
[0028] Figure 3 This is a schematic diagram of the structure of the first neon light forming unit and the second neon light forming unit of this utility model;
[0029] Figure 4 This utility model Figure 3 Enlarged view of the middle section structure;
[0030] Figure 5 This is a schematic diagram of the lower mold structure of this utility model;
[0031] Figure 6 This is a schematic diagram of the upper mold structure of this utility model.
[0032] In the diagram: 1. Lower mold; 2. Upper mold; 3. First neon light forming unit; 301. First neon light body; 302. Side protrusion; 303. First end cap; 304. First luminous surface; 4. Second neon light forming unit; 401. Second neon light body; 402. Straight protrusion; 403. Second end cap; 404. Second luminous surface; 5. First positioning seat; 501. First placement groove; 502. First positioning groove; 503. First mounting groove; 6. Feed head; 601. Second mounting groove; 7. Second positioning seat; 701. Second placement groove; 702. Third placement groove; 703. Second positioning groove; 704. Third mounting groove; 8. First connecting pipe; 801. Second connecting pipe. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions in the embodiments of this utility model are described clearly and completely. 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.
[0034] This application provides a multi-functional neon light application molding die, which solves the problem that when molding neon light plugs, different plug molds are needed for different plug production ends, resulting in multiple sets of plug molds to be made for each product, leading to resource waste. The new die allows the side protrusion 302 and the first plug tail 303 on the first neon light body 301 to be sealed by the lower mold 1 and the upper mold 2, making it easier to process the side protrusion and tail protrusion of the first neon light body 301.
[0035] By placing the first neon light body 301 on both sides of the lower mold 1 and the upper mold 2, the side exit heads 302 on different sides of the first neon light body 301 are processed, and the first neon light body 301 with various side exit and tail exits can be processed.
[0036] The lower mold 1 and the upper mold 2 are used to seal the straight head 402 and the second end cap 403 on the second neon light body 401, which facilitates the processing of the straight head and end cap of the second neon light body 401.
[0037] By inserting the straight head 402 into the lower mold 1 and the upper mold 2, by processing the straight head 402 end of the second neon light body 401, and by inserting the second end cap 403 into the lower mold 1 and the upper mold 2, by processing the second end cap 403 at the tail of the second neon light body 401.
[0038] The first neon light body 301 and the second neon light body 401 are processed using the lower mold 1 and the upper mold 2. This method is convenient for processing different first neon light bodies 301 and second neon light bodies 401, avoiding the need to open multiple sets of end cap molds to process the first neon light bodies 301 and second neon light bodies 401. It is highly practical, as only one set of molds is needed to complete the process, avoiding the waste of resources caused by producing multiple sets of molds. Furthermore, multiple first neon light forming units 3 and second neon light forming units 4 can be processed simultaneously, improving processing efficiency.
[0039] To better understand the above technical solutions, the following will provide a detailed explanation of the technical solutions in conjunction with the accompanying drawings and specific implementation methods.
[0040] This utility model discloses a multi-functional neon light application molding plug mold.
[0041] According to the appendix Figure 1-6 As shown, it includes:
[0042] Lower mold 1;
[0043] An insertion interface is provided between the upper mold 2, the lower mold 1, and the upper mold 2;
[0044] The first neon light forming unit 3 is inserted into the corresponding interface and is used for processing various side-out and tail-out neon lights.
[0045] The two first neon light forming units 3 are located on both sides of the lower mold 1 and the upper mold 2;
[0046] The second neon light forming unit 4 includes a second neon light body 401, a straight head 402, and a second end cap 403. The straight head 402 and the second end cap 403 are respectively disposed at both ends of the second neon light body 401.
[0047] The lower mold 1 and the upper mold 2 are used to seal the straight head 402 and the second end cap 403 on the second neon light body 401, which facilitates the processing of the straight head and end cap of the second neon light body 401.
[0048] One of the second neon light bodies 401 has a straight head 402 located in the lower mold 1 and the upper mold 2, and the straight head 402 extends outward from the lower mold 1 and the upper mold 2. The other second neon light body 401 has a second end cap 403 located in the lower mold 1 and the upper mold 2, which is used for processing the straight and end neon lights.
[0049] By processing the straight-out end 402 of the second neon light body 401, and by inserting the second end cap 403 into the lower mold 1 and the upper mold 2, the second end cap 403 of the second neon light body 401 is processed.
[0050] The first neon light forming unit 3 includes a first neon light body 301, a side protrusion 302, and a first end cap 303. The first neon light body 301 is located between the lower mold 1 and the upper mold 2. The side protrusion 302 is located on one side of the first neon light body 301. The two side protrusions 302 extend from the lower mold 1 and the upper mold 2 respectively and are located at the ends of the first neon light body 301. The first end cap 303 is located at the tail of the other side of the first neon light body 301.
[0051] The side protrusion 302 and the first tail plug 303 on the first neon light body 301 are sealed by the lower mold 1 and the upper mold 2, which facilitates the processing of the side-exit and tail-exit first neon light body 301. The side protrusion 302 on different sides is set on the first neon light body 301 for processing, and it is applicable to the processing of various side-exit and tail-exit first neon light bodies 301.
[0052] Furthermore, the first neon light body 301 and the second neon light body 401 are processed using the lower mold 1 and the upper mold 2. This facilitates the processing of different first neon light bodies 301 and second neon light bodies 401, avoiding the need to open multiple sets of end cap molds to process the first neon light body 301 and the second neon light body 401. It is highly practical, as only one set of molds is needed to complete the process, avoiding the waste of resources caused by producing multiple sets of molds. Moreover, multiple first neon light forming units 3 and second neon light forming units 4 can be processed simultaneously, improving processing efficiency.
[0053] A first luminous surface 304 is fused onto the first neon light body 301, and a second luminous surface 404 is fused onto the second neon light body 401. The light is emitted through the first luminous surface 304 and the second luminous surface 404, thereby releasing light of various colors for commercial advertising, promotion, and road traffic indication, etc.
[0054] The lower mold 1 and the upper mold 2 are provided with a first placement groove 501 for placing the first neon light forming unit 3. The lower mold 1 and the upper mold 2 are provided with a second placement groove 701 and a third placement groove 702 for placing the second neon light forming unit 4. The first placement groove 501 facilitates the confinement of the first neon light body 301 in the lower mold 1 and the upper mold 2. The second placement groove 701 and the third placement groove 702 facilitate the confinement of the second neon light body 401 in the lower mold 1 and the upper mold 2.
[0055] The lower mold 1 and the upper mold 2 are provided with a first positioning groove 502 and a first mounting groove 503. The first positioning groove 502 fits into the side protrusion 302. The first mounting groove 503 is equipped with a first positioning seat 5. The first positioning seat 5 contacts the outer wall of the side protrusion 302. By placing the first neon light body 301 in the first placement groove 501, the side protrusion 302 is initially defined by the first positioning groove 502. Then, the side protrusion 302 is further fixed by the first positioning seat 5, ensuring the stability of the first neon light body 301 in the lower mold 1 and the upper mold 2, which facilitates processing.
[0056] The lower mold 1 and the upper mold 2 are provided with a second positioning groove 703 and a third mounting groove 704. The second positioning groove 703 fits into the straight head 402, and the third mounting groove 704 is equipped with a second positioning seat 7. The second positioning seat 7 contacts the outer wall of the straight head 402. By placing the second neon light body 401 in the second placement groove 701, the straight head 402 is initially defined by the second positioning groove 703, and then the straight head 402 is further fixed by the second positioning seat 7, so as to ensure the stability of the second neon light body 401 in the lower mold 1 and the upper mold 2, which facilitates processing.
[0057] The lower mold 1 and the upper mold 2 are provided with a second mounting groove 601. A feeding head 6 is installed in the second mounting groove 601. The feeding head 6 is provided with a feeding port and a discharging port. The plug material is transported to the first neon light body 301 and the second neon light body 401 through the feeding head 6 for processing.
[0058] The lower mold 1 and the upper mold 2 are provided with a first connecting pipe 8. The first connecting pipe 8 is connected to the discharge port on the feed head 6. The other end of the first connecting pipe 8 is connected to the third placement groove 702 and the second positioning groove 703. The material is fed through the feed port of the feed head 6. At this time, the raw material enters the first connecting pipe 8 through the discharge port, and is then transported through the first connecting pipe 8 to the corresponding straight outlet 402 and the second end cap 403 to perform molding of the second neon lamp body 401.
[0059] The lower mold 1 and the upper mold 2 are provided with a second connecting pipe 801. The second connecting pipe 801 is connected to the discharge port on the feed head 6. The other end of the second connecting pipe 801 is connected to the first positioning groove 502. The material is fed through the feed port of the feed head 6. At this time, the raw material enters the second connecting pipe 801 through the discharge port and is then transported to the corresponding first positioning groove 502 through the second connecting pipe 801 to perform compression molding on the first placement groove 501.
[0060] Working principle: When processing the first neon light forming unit 3 and the second neon light forming unit 4, the first neon light body 301 is placed in the first placement groove 501, the side protrusion 302 is initially limited by the first positioning groove 502, and the side protrusion 302 is further fixed by the first positioning seat 5, so as to ensure the stability of the first neon light body 301 in the lower mold 1 and the upper mold 2, which facilitates processing;
[0061] By placing the second neon light body 401 in the second placement groove 701, the straight head 402 is initially limited by the second positioning groove 703, and the straight head 402 is further fixed by the second positioning seat 7, so as to ensure the stability of the second neon light body 401 in the lower mold 1 and the upper mold 2, which facilitates processing.
[0062] At this time, by connecting the upper mold 2 with the lower mold 1, and fixing the lower mold 1 and the upper mold 2 with the pins and plugs on the lower mold 1 and the upper mold 2, the stability of the first neon light forming unit 3 and the second neon light forming unit 4 is ensured under the action of the lower mold 1 and the upper mold 2, which facilitates the subsequent injection molding of the ends of the first neon light forming unit 3 and the second neon light forming unit 4.
[0063] At this time, the material is fed through the feed port of the feed head 6, and the raw material enters the first connecting pipe 8 through the discharge port. Then, it is transported through the first connecting pipe 8 to the corresponding straight outlet 402 and the second plug 403 to press the second neon lamp body 401 into a mold.
[0064] The material is fed through the feed inlet of the feed head 6. At this time, the raw material enters the second connecting pipe 801 through the discharge port, and is then transported to the corresponding first positioning groove 502 through the second connecting pipe 801 to form the first placement groove 501 by compression molding.
[0065] When only a single first neon lamp forming unit 3 or second neon lamp forming unit 4 needs to be processed, the first neon lamp forming unit 3 or second neon lamp forming unit 4 is installed in the corresponding groove on the lower mold 1. By installing a blocking block in the groove, the shape of the blocking block and the first neon lamp forming unit 3 and the second neon lamp forming unit 4 are used to seal the first connecting pipe 8 and the second connecting pipe 801, so as to prevent the raw material from entering other unprocessed grooves during glue injection.
[0066] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A multi-functional neon light application molding plug mold, characterized in that, include: Lower mold (1); An insertion interface is provided between the upper mold (2), the lower mold (1), and the upper mold (2); The first neon light forming unit (3) is inserted into the corresponding insertion interface and is used for processing various side-out and tail-out neon lights; The two first neon light forming units (3) are located on both sides of the lower mold (1) and the upper mold (2); The second neon light forming unit (4) includes a second neon light body (401), a straight head (402), and a second end cap (403), wherein the straight head (402) and the second end cap (403) are respectively disposed at both ends of the second neon light body (401); One of the second neon light bodies (401) has a straight head (402) located in the lower mold (1) and the upper mold (2), the straight head (402) extending outward from the lower mold (1) and the upper mold (2), and the other of the second neon light bodies (401) has a second end cap (403) located in the lower mold (1) and the upper mold (2), for processing the straight and end neon lights.
2. The neon light multi-functional application molding plug mold according to claim 1, characterized in that, The first neon lamp forming unit (3) includes a first neon lamp body (301), a side protrusion (302), and a first end cap (303). The first neon lamp body (301) is located between the lower mold (1) and the upper mold (2). The side protrusion (302) is located on one side of the first neon lamp body (301). The two side protrusions (302) extend from both sides of the lower mold (1) and the upper mold (2) respectively and are located at the ends of the first neon lamp body (301). The first end cap (303) is located at the tail end of the other side of the first neon lamp body (301). A first light-emitting surface (304) is welded onto the first neon lamp body (301), and a second light-emitting surface (404) is welded onto the second neon lamp body (401).
3. The neon light multi-functional application molding plug mold according to claim 1, characterized in that, The lower mold (1) and the upper mold (2) are provided with a first placement groove (501) for placing a first neon light forming unit (3). The lower mold (1) and the upper mold (2) are provided with a second placement groove (701) and a third placement groove (702) for placing a second neon light forming unit (4).
4. The neon light multi-functional application molding plug mold according to claim 3, characterized in that, The lower mold (1) and the upper mold (2) are provided with a first positioning groove (502) and a first mounting groove (503). The first positioning groove (502) fits into the side protrusion (302). The first mounting groove (503) is equipped with a first positioning seat (5). The first positioning seat (5) contacts the outer wall of the side protrusion (302).
5. A multi-functional neon light application molding plug mold according to claim 4, characterized in that, The lower mold (1) and the upper mold (2) are provided with a second positioning groove (703) and a third mounting groove (704). The second positioning groove (703) fits into the straight head (402). The third mounting groove (704) is equipped with a second positioning seat (7). The second positioning seat (7) contacts the outer wall of the straight head (402).
6. A multi-functional neon light application molding plug mold according to claim 5, characterized in that, The lower mold (1) and the upper mold (2) are provided with a second mounting groove (601), and a feed head (6) is installed in the second mounting groove (601). The feed head (6) is provided with a feed port and a discharge port.
7. A multi-functional neon light application molding plug mold according to claim 6, characterized in that, The lower mold (1) and the upper mold (2) are provided with a first connecting pipe (8), which is connected to the discharge port on the feed head (6). The other end of the first connecting pipe (8) is connected to the third placement groove (702) and the second positioning groove (703).
8. A multi-functional neon light application molding plug mold according to claim 7, characterized in that, The lower mold (1) and the upper mold (2) are provided with a second connecting pipe (801), which is connected to the discharge port on the feed head (6), and the other end of the second connecting pipe (801) is connected to the first positioning groove (502).