Graphite mold capable of being rapidly demolded

By introducing a screw system driven by a control motor into the graphite mold, the problem of the product not being easy to remove after molding was solved, achieving a fast and damage-free demolding effect.

CN223918265UActive Publication Date: 2026-02-17QINGDAO SHENGKAI WEIJIAN GRAPHITE PROD CO LTD
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Patent Information

Application Number
CN202520313100.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-02-17
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

Existing quick-release graphite molds often result in products that are difficult to remove after molding, easily becoming stuck in the mold and causing product damage.

Method used

A graphite mold comprising a main body, a demolding component, a control component, auxiliary components, and a control motor was designed. By controlling the motor to drive the screw to rotate, the auxiliary components and connecting rods move, thereby ejecting the product and achieving rapid demolding.

Benefits of technology

It enables rapid and damage-free demolding of products, avoiding product damage when using tools.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a rapid demolding graphite mold, which relates to the technical field of mold demolding and comprises a main body, a demolding part, a control part, an auxiliary part and a control motor, the whole main body is of a rectangular structure; the demolding piece is arranged in the main body; the two groups of control parts are arranged at the inner bottoms of the control part main bodies, and the control parts are of wedge-shaped structures; the auxiliary part is arranged at the middle position of the two groups of control parts; and the control motor is arranged in the middle position of the two groups of auxiliary parts. The graphite mold solves the problems that when an existing graphite mold capable of achieving rapid demolding is used, after a product is formed, the product is not prone to being disengaged and clamped in the mold in the demolding process, the product is prone to being damaged when demolding is conducted through a tool, and then using is not convenient.
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Description

Technical Field

[0001] This utility model belongs to the field of mold demolding technology, and more specifically, it relates to a graphite mold for rapid demolding. Background Technology

[0002] Graphite molds are equipment used in graphite processing, also known as Juxing graphite molds. After the product is formed, it is necessary to demold the product, which requires a graphite mold for quick demolding.

[0003] Based on existing technology, it has been found that existing quick-release graphite molds are not easy to remove after the product is formed. They are prone to getting stuck in the mold. Demolding with tools can easily damage the product, making it inconvenient to use. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides a graphite mold for rapid demolding, thereby resolving the issues raised in the background art.

[0005] This utility model discloses a graphite mold for rapid demolding, which is achieved by the following specific technical means:

[0006] A graphite mold for rapid demolding includes a main body, a demolding component, a control component, an auxiliary component, and a control motor; the main body is generally rectangular; the demolding component is located inside the main body; two sets of control components are located at the bottom inside the main body, and the control components are wedge-shaped; the auxiliary component is located in the middle of the two sets of control components; the control motor is located in the middle of the two sets of auxiliary components.

[0007] Furthermore, the main body includes: a demolding groove, an auxiliary groove, a wedge-shaped groove, and a sliding groove; the demolding groove is located at the top center of the main body and has a rectangular structure; two sets of auxiliary grooves are located in the middle of the demolding groove and have a conical structure with a cylindrical bottom; the wedge-shaped groove is located at the bottom of the auxiliary groove and is connected to the auxiliary groove; the sliding groove is located at the bottom center of the wedge-shaped groove and has a T-shaped structure.

[0008] Furthermore, the main body also includes: a rectangular groove, a rotating groove, and a motor mounting groove; the rectangular groove is located in the middle of the inner side of the two sets of wedge-shaped grooves; the rotating groove is located in the middle of the top of the inner side of the rectangular groove, and the rotating groove is a cylindrical structure with a raised center; the motor mounting groove is located in the middle of the bottom of the inner side of the rectangular groove.

[0009] Furthermore, the demolding component is inserted into the auxiliary groove, the top of the demolding component is a conical structure, and the bottom of the demolding component is an arc-shaped structure, and the bottom end of the demolding component is in contact with the top of the control component.

[0010] Furthermore, the control component includes: a sliding component, an adjusting component, and a connecting rod; the sliding component is located at the bottom center of the control component, and the sliding component has a T-shaped structure and is inserted into the sliding groove; the adjusting component is located inside the control component, and the adjusting component has a U-shaped structure, and a rotating shaft is provided inside the adjusting component; two sets of the connecting rods are located inside the adjusting component, and the adjusting component has a cylindrical structure, with hemispherical structures at both ends, and circular holes are opened at both ends of the adjusting component, with the rotating shaft of the adjusting component inserted into the circular hole at the top.

[0011] Furthermore, the auxiliary component has U-shaped structures at both ends, and rotating shafts are provided on both sides of the auxiliary component. The rotating shafts are inserted into the round holes on the other side of the connecting rod, and a threaded hole is provided in the middle of the auxiliary component.

[0012] Furthermore, the control motor includes a screw; the control motor is disposed inside the motor mounting slot; the motor shaft of the control motor is connected to the screw, and the other end of the screw is inserted into the rotating slot, and the screw is inserted into the threaded hole of the auxiliary component.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] In this device, the product to be molded is placed in the demolding groove. After molding, the control motor is started, which drives the screw to rotate. The screw rotates inside the rotating groove, which in turn moves the auxiliary component. The auxiliary component slides inside the rectangular groove, which in turn moves the connecting rod. The connecting rod then moves the adjusting component, which in turn moves the control component to slide in the wedge-shaped groove. This, in turn, moves the sliding component to slide in the sliding groove. The control component then pushes the demolding component at its top, thus ejecting the product from the demolding groove and demolding the product. Attached Figure Description

[0015] 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 the structures shown in these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram of the main structure of this utility model.

[0017] Figure 2 This is a schematic diagram of the cross-sectional structure of this utility model.

[0018] Figure 3 This is a schematic diagram of the main structure of this utility model.

[0019] Figure 4 This is a schematic diagram of the demolding component, control component, auxiliary component, and control motor of this utility model.

[0020] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0021] 1. Main body;

[0022] 101. Demolding groove; 102. Auxiliary groove; 103. Wedge groove; 104. Sliding groove; 105. Rectangular groove;

[0023] 106. Rotary slot; 107. Motor mounting slot;

[0024] 2. Demolding parts;

[0025] 3. Control components;

[0026] 301. Sliding component; 302. Adjusting component; 303. Connecting rod;

[0027] 4. Auxiliary components;

[0028] 5. Control the motor;

[0029] 501. Screw. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0031] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0032] Furthermore, in this utility model, descriptions involving "first," "second," etc., are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.

[0033] Example:

[0034] As attached Figure 1 To be continued Figure 4 As shown:

[0035] This utility model provides a graphite mold for rapid demolding, including a main body 1, a demolding component 2, a control component 3, an auxiliary component 4, and a control motor 5; the main body 1 is generally rectangular; the demolding component 2 is located inside the main body 1; two sets of control components 3 are located at the bottom inside the main body 1, and the control components 3 are wedge-shaped; the auxiliary component 4 is located in the middle of the two sets of control components 3; the control motor 5 is located in the middle of the two sets of auxiliary components 4.

[0036] The main body 1 includes: a demolding groove 101, an auxiliary groove 102, a wedge groove 103, and a sliding groove 104; the demolding groove 101 is located at the top center of the main body 1 and has a rectangular structure; two sets of auxiliary grooves 102 are located in the middle of the demolding groove 101 and have a conical structure with a cylindrical bottom; the wedge groove 103 is located at the bottom of the auxiliary groove 102 and is connected to the auxiliary groove 102; the sliding groove 104 is located at the bottom center of the wedge groove 103 and has a T-shaped structure.

[0037] The main body 1 also includes: a rectangular groove 105, a rotating groove 106, and a motor mounting groove 107; the rectangular groove 105 is located in the middle of the inner side of the two sets of wedge grooves 103; the rotating groove 106 is located in the middle of the top of the inner side of the rectangular groove 105, and the rotating groove 106 is a cylindrical structure with a raised center; the motor mounting groove 107 is located in the middle of the bottom of the inner side of the rectangular groove 105.

[0038] Using the above scheme, the demolding groove 101 is used to place the product that needs to be plasticized, the auxiliary groove 102 is used to limit the demolding part 2, the wedge groove 103 is used to assist the control part 3 in moving, the sliding groove 104 is used to assist the sliding part 301 in sliding, the rotating groove 106 is used to assist the screw 501 in rotating, and the motor mounting groove 107 is used to limit the control motor 5 to avoid the control motor 5 from shifting its position due to vibration during operation.

[0039] The demolding component 2 is inserted into the auxiliary groove 102. The top of the demolding component 2 is a conical structure, and the bottom of the demolding component 2 is an arc-shaped structure. The bottom end of the demolding component 2 is in contact with the top of the control component 3.

[0040] Using the above scheme, the demolding component 2 is used to eject the product from the demolding groove 101.

[0041] The control component 3 includes: a sliding component 301, an adjusting component 302, and a connecting rod 303; the sliding component 301 is located at the bottom center of the control component 3, and the sliding component 301 has a T-shaped structure and is inserted into the sliding groove 104; the adjusting component 302 is located inside the control component 3, and the adjusting component 302 has a U-shaped structure and a rotating shaft inside the adjusting component 302; two sets of connecting rods 303 are located inside the adjusting component 302, and the adjusting component 302 has a cylindrical structure, and both ends of the adjusting component 302 have hemispherical structures, with round holes at both ends of the adjusting component 302, and the rotating shaft of the adjusting component 302 is inserted into the round hole at the top.

[0042] Using the above scheme, the sliding member 301 is used to assist the control member 3 in moving, and the adjusting member 302 is used to cooperate with the connecting rod 303 to drive the control member 3 to move.

[0043] The auxiliary component 4 has U-shaped structures at both ends, and the auxiliary component 4 is also provided with rotating shafts on both sides. The rotating shafts are inserted into the round holes on the other side of the connecting rod 303, and a threaded hole is provided in the middle of the auxiliary component 4.

[0044] Using the above scheme, the auxiliary component 4 is used to drive the connecting rod 303 to move.

[0045] The control motor 5 includes a screw 501; the control motor 5 is located inside the motor mounting slot 107; the motor shaft of the control motor 5 is connected to the screw 501, and the other end of the screw 501 is inserted into the rotating slot 106, and the screw 501 is inserted into the threaded hole of the auxiliary component 4.

[0046] The specific usage and function of this embodiment are as follows:

[0047] In this invention, the product to be molded is placed in the demolding groove 101. After molding, the control motor 5 is started, which drives the screw 501 to rotate. The screw 501 rotates inside the rotating groove 106, thereby moving the auxiliary component 4. The auxiliary component 4 slides inside the rectangular groove 105, thereby moving the connecting rod 303. The connecting rod 303 moves the adjusting component 302, thereby moving the control component 3 to slide in the wedge groove 103. This, in turn, moves the sliding component 301 to slide in the sliding groove 104. The control component 3 then pushes the demolding component 2 at its top, thus ejecting the product from the demolding groove 101 and demolding the product.

[0048] Of course, the above description is not intended to limit the present utility model, and the present utility model is not limited to the examples given above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of the present utility model should also fall within the protection scope of the present utility model.

Claims

1. A quick-release graphite mold comprising a main body (1), a release element (2), a control element (3), an auxiliary element (4) and a control motor (5); characterized in that: The main body (1) is rectangular structure as a whole; the demolding element (2) is arranged inside the main body (1); two groups of the control element (3) are arranged at the bottom of the main body (1), and the control element (3) is wedge-shaped structure; the auxiliary element (4) is arranged at the middle position of the two groups of control elements (3); the control motor (5) is arranged at the middle position of the two groups of auxiliary elements (4).

2. A quick-release graphite mold as claimed in claim 1, wherein: The main body (1) comprises a demolding groove (101), an auxiliary groove (102), a wedge-shaped groove (103) and a sliding groove (104); the demolding groove (101) is arranged at the middle position of the top of the main body (1), and the demolding groove (101) is rectangular structure; two groups of the auxiliary groove (102) are arranged at the middle position of the demolding groove (101), and the auxiliary groove (102) is conical structure, and the bottom of the auxiliary groove (102) is cylindrical structure; the wedge-shaped groove (103) is arranged at the bottom of the auxiliary groove (102), and the wedge-shaped groove (103) is connected with the auxiliary groove (102); the sliding groove (104) is arranged at the middle position of the bottom of the wedge-shaped groove (103), and the sliding groove (104) is T-shaped structure.

3. A quick-release graphite mold as claimed in claim 2, wherein: The main body (1) further comprises a rectangular groove (105), a rotating groove (106) and a motor mounting groove (107); the rectangular groove (105) is arranged at the middle position of the inner side of the two groups of wedge-shaped grooves (103); the rotating groove (106) is arranged at the middle position of the top of the inner side of the rectangular groove (105), and the rotating groove (106) is cylindrical structure with the middle protruding; the motor mounting groove (107) is arranged at the middle position of the bottom of the inner side of the rectangular groove (105).

4. A quick-release graphite mold as claimed in claim 2, wherein: The demolding element (2) is inserted into the auxiliary groove (102), the top of the demolding element (2) is conical structure, the bottom of the demolding element (2) is circular arc structure, and the bottom end of the demolding element (2) is in contact with the top of the control element (3).

5. A quick-release graphite mold as claimed in claim 2, wherein: The control element (3) comprises a sliding element (301), an adjusting element (302) and a connecting rod (303); the sliding element (301) is arranged at the middle position of the bottom of the control element (3), and the sliding element (301) is T-shaped structure, and the sliding element (301) is inserted into the sliding groove (104); the adjusting element (302) is arranged inside the control element (3), and the adjusting element (302) is U-shaped structure, and the inner side of the adjusting element (302) is provided with a rotating shaft; two groups of the connecting rod (303) are arranged inside the adjusting element (302), and the adjusting element (302) is cylindrical structure, and the two ends of the adjusting element (302) are semicircular spherical structure, and the two ends of the adjusting element (302) are provided with circular holes, and the rotating shaft of the adjusting element (302) is inserted into the circular hole at the top.

6. A quick-release graphite mold as claimed in claim 5, wherein: The two ends of the auxiliary element (4) are U-shaped structure, the two sides of the auxiliary element (4) are further provided with rotating shafts, the rotating shafts are inserted into the circular holes on the other side of the connecting rod (303), and the middle position of the auxiliary element (4) is provided with a threaded hole.

7. A quick-release graphite mold as claimed in claim 6, wherein: The control motor (5) comprises a screw rod (501), the control motor (5) is arranged in a motor mounting groove (107), a motor shaft of the control motor (5) is connected with the screw rod (501), one end of the screw rod (501) is inserted into a rotating groove (106), and the screw rod (501) is inserted into a threaded hole of the auxiliary part (4).