Detachable machining die

By designing a detachable processing mold and utilizing a transmission and drive mechanism to achieve rapid mold disassembly and installation, the problem of difficult disassembly of existing molds is solved, and the reliability and convenience of the mold are improved.

CN223918536UActive Publication Date: 2026-02-17ZHONGFU SHENYING CARBON FIBER
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Patent Information

Application Number
CN202520539612.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-02-17
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

The existing molds are difficult to disassemble and cannot be cleaned quickly because the upper and lower molds are fixed to the bracket with bolts.

Method used

The design employs a detachable processing mold, including a bracket, a plate, a first mold, a second mold, a transmission mechanism, and a drive mechanism. The first mold can be quickly disassembled and installed by moving between locked and unlocked positions through the mating part of the transmission mechanism.

Benefits of technology

It reduces the difficulty of mold disassembly, improves the reliability and convenience of molds, and ensures the stability of material manufacturing and the easy removal of finished products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a detachable machining die. The detachable machining die comprises a support and a plate body, the plate body is arranged on the support in a sliding mode, a die mounting hole is formed in the plate body, and a limiting groove is formed in the side wall of the die mounting hole; the first mold is arranged in the mold mounting hole; the second mold is arranged at the bottom of the support, and the first mold and the second mold are correspondingly arranged; the transmission mechanism is arranged on the first mold, and the output end is provided with a matching part corresponding to the limiting groove in position. The first driving mechanism is connected with the transmission mechanism and used for driving the transmission mechanism to act so that the matching part can move between the locking position and the unlocking position, in the locking position, the matching part enters the limiting groove to lock the position of the first mold, and in the unlocking position, the matching part leaves the limiting groove to unlock the first mold. And when the matching part is at the unlocking position, the plate body can unlock the first mold, so that the first mold can be quickly separated from the plate body so as to be cleaned, and the disassembly difficulty of the mold is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of mold technology, and more specifically, to a detachable processing mold. Background Technology

[0002] A mold is a tool used for molding and manufacturing. By filling material into the mold cavity, it is formed into parts or products of specific shapes and sizes, such as drone shells, industrial parts, and tires. In existing technology, molds typically consist of a support, an upper mold, a lower mold, and an injection hole. The upper and lower molds are both fixed to the support. After the upper and lower molds are closed, a cavity is formed, and material is then injected into the cavity through the injection hole. However, because the upper and lower molds are both fixed to the support with bolts, they cannot be quickly disassembled when cleaning is required, resulting in a difficult disassembly process.

[0003] Therefore, finding a processing mold that is easy to disassemble is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0004] To solve the above-mentioned technical problems, this utility model provides a detachable processing mold.

[0005] This utility model provides a detachable processing mold, which includes:

[0006] support

[0007] The plate body is slidably disposed on the bracket, and the plate body is provided with a mold mounting hole, and a limit groove is provided on the side wall of the mold mounting hole;

[0008] A first mold, wherein the first mold is disposed in the mold mounting hole;

[0009] The second mold is disposed at the bottom of the bracket, and the first mold is disposed corresponding to the second mold;

[0010] A transmission mechanism is provided on the first mold, and the output end of the transmission mechanism is provided with a mating part corresponding to the position of the limiting groove;

[0011] A first driving mechanism is connected to the transmission mechanism. The first driving mechanism is used to drive the transmission mechanism to move the mating part between a locked position and an unlocked position. In the locked position, the mating part enters the limiting groove to lock the position of the first mold. In the unlocked position, the mating part leaves the limiting groove to unlock the first mold.

[0012] The limiting groove includes a first limiting groove and a second limiting groove; the first driving mechanism includes a turntable; the transmission mechanism includes:

[0013] Gear, the gear being fixedly connected to the turntable;

[0014] A first gear rack, which meshes with the gear, and the first gear rack is correspondingly positioned to the first limiting groove;

[0015] The second gear rack meshes with the gear, and the second gear rack is correspondingly arranged with the second limiting groove;

[0016] The mating part is disposed at the end of the first gear rack opposite to the gear and the end of the second gear rack opposite to the gear.

[0017] The first mold further includes a first receiving cavity, and the transmission mechanism is disposed in the first receiving cavity. The two opposite cavity walls of the first receiving cavity are respectively provided with a first through hole and a second through hole, and the two mating parts extend out of the first mold through the corresponding first through hole and second through hole.

[0018] The first mold further includes:

[0019] A first anti-detachment plate is disposed at the first end of the first mold and is used to overlap with the top surface of the plate body.

[0020] The second anti-detachment plate is disposed at the second end of the first mold and is used to overlap with the top surface of the plate.

[0021] The first mold further includes:

[0022] The injection hole is located on the top of the first mold and is used to inject material into the cavity formed by the first mold and the second mold.

[0023] The first mold further includes:

[0024] A gripping part is disposed on the first mold and is used to move the first mold.

[0025] The detachable processing mold further includes:

[0026] A drive rod, the first end of which is connected to the top of the bracket, and the second end of which is connected to the bottom of the bracket;

[0027] A drive motor is mounted on the bracket and connected to the drive rod;

[0028] The plate body is provided with a third through hole, and the drive rod passes through the third through hole and connects to the top and bottom of the bracket.

[0029] The detachable processing mold further includes:

[0030] A limiting rod, the first end of which is connected to the top of the bracket, and the second end of which is connected to the bottom of the bracket;

[0031] The plate body is provided with a fourth through hole, and the limiting rod passes through the fourth through hole and connects to the top and bottom of the bracket.

[0032] The detachable processing mold further includes:

[0033] A release template, wherein the release template is disposed within the second mold;

[0034] A second driving mechanism is connected to the template release mechanism;

[0035] The second driving mechanism is used to drive the template to eject the finished product.

[0036] The bracket has a second receiving cavity at its bottom, and a fifth through hole is provided on the bottom wall of the second receiving cavity; the second mold has a sixth through hole at its top, which extends into the second receiving cavity; the first mold further includes:

[0037] The first pressure bar is disposed at the bottom of the first mold;

[0038] The second drive mechanism includes:

[0039] A support column, the first end of which is connected to the template, and the second end of which passes through the second accommodating cavity and is slidably connected to the fifth through hole;

[0040] A connecting plate is disposed in the second accommodating cavity, and the connecting plate is provided with a seventh through hole, through which the connecting plate is fixedly connected to the support column;

[0041] The second pressure rod is slidably disposed in the sixth through hole, and is fixedly connected to the connecting plate. The second pressure rod is correspondingly disposed to the first pressure rod.

[0042] An elastic element is fitted onto the support column and located between the connecting plate and the bottom wall of the second accommodating cavity.

[0043] Beneficial effects: The detachable processing mold includes a support, a plate, a first mold, a second mold, a transmission mechanism, and a first drive mechanism. The plate and second mold are mounted on the support, the first mold is mounted on the plate, the transmission mechanism is mounted on the first mold, and the first drive mechanism is connected to the transmission mechanism. Since the first drive mechanism can drive the mating part of the transmission mechanism to move between a locked position and an unlocked position, when the mating part is in the locked position, the plate can lock the first mold, allowing the first and second molds to shape the material. When the mating part is in the unlocked position, the plate can release the lock on the first mold, allowing the first mold to quickly detach from the plate for cleaning, reducing the difficulty of mold disassembly. Attached Figure Description

[0044] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments 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.

[0045] Figure 1 This is a first-view structural schematic diagram of a detachable processing mold provided according to an exemplary embodiment of the present invention;

[0046] Figure 2 A structural schematic diagram of a detachable processing mold from a second perspective, provided according to an exemplary embodiment of the present invention;

[0047] Figure 3 A schematic diagram of the transmission mechanism provided according to an exemplary embodiment of the present invention;

[0048] Figure 4 A third-view structural schematic diagram of a detachable processing mold provided according to an exemplary embodiment of the present invention;

[0049] Figure 5 A structural schematic diagram of a detachable processing mold from a fourth perspective, provided according to an exemplary embodiment of the present invention.

[0050] The following labels are shown in the attached diagram:

[0051] 10. Bracket; 20. Plate; 21. Limiting groove; 30. First mold; 31. First receiving cavity; 32. First anti-detachment plate; 33. Second anti-detachment plate; 34. Injection hole; 35. Grip part; 36. First pressure rod; 40. Second mold; 41. Sixth through hole; 50. Transmission mechanism; 501. Mating part; 51. Gear; 52. First gear rack; 53. Second gear rack; 54. First limiting block; 55. Second limiting block; 60. First drive mechanism; 61. Turntable; 70. Drive rod; 80. Drive motor; 90. Limiting rod; 100. Demolding plate; 1101. Support column; 1102. Connecting plate; 1103. Second pressure rod; 1104. Elastic element; 120. Base. Detailed Implementation

[0052] 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. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0053] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0054] In existing technology, molds typically consist of a support, an upper mold, a lower mold, and an injection hole. Both the upper and lower molds are fixed to the support. After the upper and lower molds are closed, a cavity is formed, and material is injected into the cavity through the injection hole. However, because both the upper and lower molds are bolted to the support, they cannot be quickly disassembled when cleaning is required, resulting in significant disassembly difficulties.

[0055] The following is combined Figures 1 to 5 The embodiments of this utility model are further described below.

[0056] To solve the above technical problems, such as Figures 1 to 3As shown, an exemplary embodiment of this utility model provides a detachable processing mold, which includes a support 10, a plate 20, a first mold 30, a second mold 40, a transmission mechanism 50, and a first drive mechanism 60. The plate 20 is slidably disposed on the support 10 and has a mold mounting hole. A limiting groove 21 is provided on the side wall of the mold mounting hole. The first mold 30 is disposed in the mold mounting hole. The second mold 40 is disposed at the bottom of the support 10, corresponding to the first mold 30. The transmission mechanism 50 is disposed on the first mold 30, and its output end has a mating part 501 corresponding to the position of the limiting groove 21. The first drive mechanism 60 is connected to the transmission mechanism 50 and drives the transmission mechanism 50 to move the mating part 501 between a locked position and an unlocked position. In the locked position, the mating part 501 enters the limiting groove 21 to lock the position of the first mold 30; in the unlocked position, the mating part 501 leaves the limiting groove 21 to unlock the first mold 30.

[0057] In this embodiment, the detachable processing mold includes a support, a plate, a first mold, a second mold, a transmission mechanism, and a first drive mechanism. The plate and the second mold are mounted on the support, the first mold is mounted on the plate, the transmission mechanism is mounted on the first mold, and the first drive mechanism is connected to the transmission mechanism. Since the first drive mechanism can drive the mating part of the transmission mechanism to move between a locked position and an unlocked position, when the mating part is in the locked position, the plate can lock the first mold, allowing the first and second molds to shape the material. When the mating part is in the unlocked position, the plate can release the lock on the first mold, allowing the first mold to quickly detach from the plate for cleaning, reducing the difficulty of mold disassembly.

[0058] For example, when the first mold 30 needs to be cleaned, the first drive mechanism 60 drives the transmission mechanism 50 to cause the mating part 501 to leave the limiting groove 21 to unlock the first mold 30, enabling quick disassembly of the first mold 30 for cleaning. After the first mold 30 is cleaned, it is placed in the mold mounting hole, and the first drive mechanism 60 drives the transmission mechanism 50 to cause the mating part 501 to enter the limiting groove 21 to lock the first mold 30, allowing the first mold 30 and the second mold 40 to continue manufacturing materials.

[0059] For example, the limiting groove 21 is the locked position, and the position outside the limiting groove 21 is the unlocked position.

[0060] In one embodiment, such as Figure 1 , Figure 2 and Figure 5As shown, the limiting groove 21 includes a first limiting groove and a second limiting groove. The first driving mechanism 60 includes a turntable 61. The transmission mechanism 50 includes a gear 51, a first gear rack 52, and a second gear rack 53. The gear 51 is fixedly connected to the turntable 61. The first gear rack 52 meshes with the gear 51, and the first gear rack 52 is correspondingly arranged in the first limiting groove. The second gear rack 53 meshes with the gear 51, and the second gear rack 53 is correspondingly arranged in the second limiting groove. The mating part 501 is provided at the end of the first gear rack 52 away from the gear 51 and at the end of the second gear rack 53 away from the gear 51.

[0061] In this embodiment, by rotating the turntable, the turntable can drive the gear to rotate. While the gear is rotating, it will drive the first gear rack and the second gear rack to move closer to the limiting groove or move away from the limiting groove at the same time. This allows the mating parts at the ends of the first gear rack and the second gear rack to enter or leave the limiting groove at the same time, thereby locking and unlocking the first mold and improving the reliability of the detachable processing mold.

[0062] For example, the transmission mechanism 50 may further include a first limiting block 54 and a second limiting block 55, wherein the first limiting block 54 is used to limit the movement path of the first gear rack 52, and the second limiting block 55 is used to limit the movement path of the second gear rack 53. The turntable 61 can be connected to the gear 51 via a rotating shaft.

[0063] For example, when the turntable 61 is rotated clockwise (counterclockwise), it drives the gear 51 to rotate clockwise (counterclockwise). The first gear rack 52 and the second gear rack 53, which mesh with the gear 51, move away from the limiting groove 21, so that the mating parts 501 at the ends of the first gear rack 52 and the second gear rack 53 leave the first limiting groove and the second limiting groove respectively, thereby unlocking the first mold 30. When the turntable 61 is rotated counterclockwise (clockwise), it drives the gear 51 to rotate counterclockwise (clockwise). The first gear rack 52 and the second gear rack 53, which mesh with the gear 51, move closer to the limiting groove 21, so that the mating parts 501 at the ends of the first gear rack 52 and the second gear rack 53 enter the first limiting groove and the second limiting groove respectively, thereby locking the first mold 30.

[0064] In one embodiment, such as Figures 1 to 3 As shown, the first mold 30 also includes a first receiving cavity 31, and a transmission mechanism 50 is disposed in the first receiving cavity 31. The two opposite cavity walls of the first receiving cavity 31 are respectively provided with a first through hole and a second through hole, and the two mating parts 501 extend out of the first mold 30 through the corresponding first through hole and second through hole.

[0065] In this embodiment, the mating part can enter the first limiting groove and the second limiting groove through the first through hole and the second through hole respectively to lock the first mold, and can also leave the limiting groove through the first through hole and the second through hole respectively to unlock the first mold, thereby improving the reliability of the detachable mold. Moreover, since the structure of the first through hole and the second through hole is simple, the complexity of the detachable mold structure is reduced.

[0066] For example, the turntable 61 is disposed on top of the first receiving cavity 31.

[0067] In one embodiment, such as Figures 1 to 3 As shown, the first mold 30 also includes a first anti-detachment plate 32 and a second anti-detachment plate 33. The first anti-detachment plate 32 is disposed at the first end of the first mold 30 and is used to overlap with the top surface of the plate body 20. The second anti-detachment plate 33 is disposed at the second end of the first mold 30 and is used to overlap with the top surface of the plate body 20.

[0068] In this embodiment, since both the first and second anti-detachment plates overlap with the top surface of the plate body, the plate body can support the first mold. During the sliding process of the first mold along with the plate body, the first mold will not change position or fall off, thereby improving the stability of the first mold. Furthermore, before locking or unlocking the first mold, due to the supporting effect of the plate body, no external force is required to fix the first mold, which not only improves the installation efficiency of the first mold but also reduces the risk of the first mold falling off, thereby improving the reliability of the detachable mold.

[0069] In one embodiment, such as Figure 1 As shown, the first mold 30 also includes an injection hole 34. The injection hole 34 is disposed on the top of the first mold 30 and is used to inject material into the cavity formed by the first mold 30 and the second mold 40.

[0070] In this embodiment, when the first mold and the second mold form the cavity, material is injected into the cavity through the injection hole. The first mold and the second mold can manufacture the material into a finished product of the required specific shape and size, thereby improving the reliability of the detachable mold.

[0071] For example, the injection hole 34 may be provided on the top of the first mold 30.

[0072] In one embodiment, such as Figure 1 As shown, the first mold 30 also includes a gripping part 35. The gripping part 35 is disposed on the first mold 30 and is used to move the first mold 30.

[0073] In this embodiment, when the first mold needs to be installed onto the plate, it can be installed into the mounting hole of the plate using the gripping part. When the first mold needs to be moved from the plate to other areas, it can be detached from the mounting hole of the plate using the gripping part and moved to other areas for cleaning, maintenance, and other operations. By providing the gripping part, the disassembly and installation of the first mold can be facilitated, thereby improving the convenience of detachable processing molds.

[0074] In one embodiment, such as Figure 1 and Figure 2 As shown, the detachable machining mold also includes a drive rod 70 and a drive motor 80. The first end of the drive rod 70 is connected to the top of the bracket 10, and the second end of the drive rod 70 is connected to the bottom of the bracket 10. The drive motor 80 is mounted on the bracket 10 and connected to the drive rod 70. The plate 20 has a third through hole, through which the drive rod 70 passes and connects to the top and bottom of the bracket 10.

[0075] In this embodiment, a drive motor drives a drive rod to rotate. During rotation, the drive rod causes the plate to slide up and down along it, thus moving the first mold closer to or away from the second mold. When material molding is required, the drive motor drives the first mold closer to the second mold, causing the bottom of the first mold and the top of the second mold to fit together to form a cavity. After material molding, the drive motor drives the first mold away from the second mold, facilitating the removal of the finished product.

[0076] For example, the drive motor 80 can be located on the top of the bracket 10 or in other areas of the bracket 10, and the outer surface of the drive rod 70 can be threaded.

[0077] In one embodiment, such as Figures 1 to 4 As shown, the detachable machining mold also includes a limiting rod 90. The first end of the limiting rod 90 is connected to the top of the bracket 10. The plate 20 is provided with a fourth through hole, through which the limiting rod 90 passes and connects to the top and bottom of the bracket 10.

[0078] In this embodiment, during the rotation of the drive rod driven by the drive motor, the plate can slide up and down along the drive rod and the limiting rod. By limiting the plate with the drive rod and the limiting rod, the plate can slide along a fixed path, thereby improving the reliability of the cavity formation by the first mold and the second mold.

[0079] For example, the number of the fourth through hole and the limiting rod can both be multiple, such as 3, 4, 5, etc.

[0080] In one embodiment, such as Figure 1 and Figure 5As shown, the detachable processing mold also includes a ejector plate 100 and a second drive mechanism. The ejector plate 100 is disposed within the second mold 40, and the second drive mechanism is connected to the ejector plate 100. The second drive mechanism is used to drive the ejector plate 100 to eject the finished product.

[0081] In this embodiment, after the material is shaped by the first mold and the second mold, the driving mechanism drives the demolding plate to eject the finished product from the second mold, avoiding the problem of the finished product sticking to the second mold and making it difficult to remove the finished product, thus reducing the difficulty of removing the finished product.

[0082] In one embodiment, such as Figures 1 to 5 As shown, the bottom of the support 10 is provided with a second receiving cavity, and the bottom wall of the second receiving cavity is provided with a fifth through hole. The top of the second mold 40 is provided with a sixth through hole 41, which extends into the second receiving cavity. The first mold 30 also includes a first pressure rod 36, which is disposed at the bottom of the first mold 30. The second driving mechanism includes a support column 1101, a connecting plate 1102, a second pressure rod 1103, and an elastic element 1104. The first end of the support column 1101 is connected to the demolding plate 100, and the second end of the support column 1101 passes through the second receiving cavity and is slidably connected to the fifth through hole. The connecting plate 1102 is disposed in the second receiving cavity, and the connecting plate 1102 is provided with a seventh through hole, which is fixedly connected to the support column 1101. The second pressure rod 1103 is slidably disposed in the sixth through hole 41. The second pressure rod 1103 is fixedly connected to the connecting plate 1102, and the second pressure rod 1103 is correspondingly disposed to the first pressure rod 36. The elastic element 1104 is sleeved on the support column 1101 and is located between the connecting plate 1102 and the bottom wall of the second accommodating cavity.

[0083] In this embodiment, during the process of the top of the first mold and the bottom of the second mold fitting together to form a cavity, the first pressure rod applies pressure to the second pressure rod, causing the second pressure rod to slide downwards within the sixth through hole, thereby moving the connecting plate downwards. This causes the support column to slide downwards along the fifth through hole and compress the spring component, which in turn moves the ejector plate downwards to the bottom of the second mold cavity to shape the material. After the product is shaped, the first mold is driven away from the second mold, the second pressure rod loses pressure, the spring returns to its original position, and pushes the connecting plate, the second pressure rod, and the support column upwards, causing the ejector plate to eject the finished product.

[0084] For example, the number of the sixth through hole 41, the first pressure rod 36, and the second pressure rod 1103 can both be multiple. For example, 2, 4, 8, etc.

[0085] For example, the detachable processing mold may also include a base 120 for supporting the bracket 10.

[0086] An exemplary embodiment of this disclosure provides a detachable machining mold, such as Figures 1 to 5As shown, the detachable processing mold includes a bracket 10, a plate 20, a first mold 30, a second mold 40, a gear 51, a first gear rack 52, a second gear rack 53, two mating parts 501, a turntable 61, a drive rod 70, a drive motor 80, three limiting rods 90, a demolding template 100, four support columns 1101, a connecting plate 1102, four second pressure rods 1103, and four elastic elements 1104. The plate 20 has a mold mounting hole, and the side wall of the mold mounting hole has a first limiting groove and a second limiting groove. The first mold 30 is disposed in the mold mounting hole. The first mold 30 also includes a first receiving cavity 31. The gear 51, the first gear rack 52, the second gear rack 53, and the two mating parts 501 are all disposed within the first receiving cavity 31. The two opposite cavity walls of the first receiving cavity 31 are respectively provided with a first through hole and a second through hole. The two mating parts 501 extend out of the first mold 30 through their corresponding first and second through holes. A turntable 61 is disposed at the top of the first receiving cavity 31. A gear 51 is fixedly connected to the turntable 61. A first gear rack 52 meshes with the gear 51 and corresponds to the first limiting groove. A second gear rack 53 meshes with the gear 51 and corresponds to the second limiting groove. A mating part 501 is disposed at the end of the first gear rack 52 facing away from the gear 51. A mating part 501 is disposed at the end of the second gear rack 53 facing away from the gear 51. The first mold 30 also includes a first anti-detachment plate 32 and a second anti-detachment plate 33. The first anti-detachment plate 32 is disposed at the first end of the first mold 30 and is used to overlap with the top surface of the plate body 20. The second anti-detachment plate 33 is disposed at the second end of the first mold 30 and is used to overlap with the top surface of the plate body 20. The first mold also includes one injection hole 34 and two gripping parts 35. The injection hole 34 is located on the top of the first mold 30, and the two gripping parts 35 are located on the top of the first mold 30. The first end of the drive rod 70 is connected to the top of the bracket 10, and the second end of the drive rod 70 is connected to the bottom of the bracket 10. The drive motor 80 is located on the top of the bracket 10 and is connected to the drive rod 70. The plate body 20 is provided with a third through hole, through which the drive rod 70 passes and connects to the top and bottom of the bracket 10. The first ends of the three limiting rods 90 are all connected to the top of the bracket 10, and the second ends of the three limiting rods 90 are all connected to the bottom of the bracket 10. The plate body 20 is provided with three fourth through holes, through which the three limiting rods 90 pass and connect to the top and bottom of the bracket 10, respectively. The demolding template 100 is located inside the second mold 40. The bottom of the support 10 is provided with a second receiving cavity, and the bottom wall of the second receiving cavity is provided with four fifth through holes. The top of the second mold 40 is provided with four sixth through holes 41, and all four sixth through holes 41 extend into the second receiving cavity. The first mold 30 also includes four first pressure rods 36, which are located at the bottom of the first mold 30.The first ends of the four support columns 1101 are connected to the respective templates 100, and the second ends of the four support columns 1101 pass through the second accommodating cavity and are slidably connected to the four fifth through holes. A connecting plate 1102 is disposed in the second accommodating cavity and has four seventh through holes, through which it is fixedly connected to the four support columns 1101 respectively. Four second pressure rods 1103 are slidably disposed in the four sixth through holes 41, and are all fixedly connected to the connecting plate 1102. The four second pressure rods 1103 are respectively corresponding to the four first pressure rods 36. Four elastic elements 1104 are respectively sleeved on the four support columns 1101 and located between the connecting plate 1102 and the bottom wall of the second accommodating cavity.

[0087] The working principle of this utility model is described as follows:

[0088] When the first mold 30 needs to be disassembled, the turntable 61 can be rotated first, causing the turntable 61 to drive the gear 51 to rotate. As the gear 51 rotates, it drives the first gear rack 52 and the second gear rack 53 to move, causing the two mating parts 501 to disengage from the first and second limiting grooves respectively, thus unlocking the first mold 30. The first mold 30 can then be moved to another area for cleaning and maintenance via the gripping part 35. After cleaning and maintenance, the first mold 30 can be placed in the mold mounting hole, with the first anti-detachment plate 32 and the second anti-detachment plate 33 overlapping the plate body 20. The turntable 61 can then be rotated in the opposite direction to allow the two mating parts 501 to enter the first and second limiting grooves respectively, locking the first mold 30.

[0089] When the mold is needed, the drive motor 80 is started first. The drive motor 80 drives the drive rod 70 to rotate. As the drive rod 70 rotates, it can move the first mold 30 downward through the plate 20, so that the bottom of the first mold 30 fits against the top of the second mold 40. During the fitting process, the first pressure rod 36 presses against the second pressure rod 1103. The second pressure rod 1103 drives the support column 1101 downward through the connecting plate 1102. Since the top of the support column 1101 is fixedly installed with the release template 100, the support column 1101... 01 While moving downwards, it can drive the demolding template 100 to move downwards and squeeze the elastic element 1104. After the first mold 30 and the second mold 40 fit together to form a cavity, the raw material can be injected into the cavity through the injection hole 34. After the finished product is formed, the drive motor 80 is restarted and reversed. The first mold 30 rises and drives the first pressure rod 36 to move, so that the first pressure rod 36 releases the pressure on the second pressure rod 1103. The elastic element 1104 resets and pushes the connecting plate 1102 and the support column 1101 to rise, so that the demolding template 100 pushes out the finished product.

[0090] The embodiments described in this specification are merely examples of implementations of the inventive concept. The scope of protection of this utility model should not be considered as limited to the specific forms described in the embodiments. The scope of protection of this utility model also includes equivalent technical means that can be conceived by those skilled in the art based on the inventive concept.

Claims

1. A removable processing mold characterized by, The detachable processing mold comprises: a support, a plate body slidably arranged on the support, the plate body being provided with a mold mounting hole, a limiting groove being arranged on the side wall of the mold mounting hole; a first mold arranged in the mold mounting hole; a second mold arranged at the bottom of the support, the first mold and the second mold being arranged correspondingly; a transmission mechanism arranged in the first mold, an output end of the transmission mechanism being provided with a matching part corresponding to the position of the limiting groove; a first driving mechanism connected with the transmission mechanism, the first driving mechanism being used to drive the transmission mechanism to act, so that the matching part moves between a locking position and an unlocking position, in the locking position, the matching part enters the limiting groove to lock the position of the first mold, in the unlocking position, the matching part leaves the limiting groove to unlock the first mold.

2. The detachable machining die of claim 1, wherein, The limiting groove comprises a first limiting groove and a second limiting groove; the first driving mechanism comprises a rotating disc; the transmission mechanism comprises: a gear fixedly connected with the rotating disc; a first gear strip engaged with the gear, the first gear strip being arranged correspondingly with the first limiting groove; a second gear strip engaged with the gear, the second gear strip being arranged correspondingly with the second limiting groove; the matching part being arranged at the end of the first gear strip away from the gear and the end of the second gear strip away from the gear.

3. The detachable machining die of claim 2, wherein, The first mold further comprises a first accommodating cavity, the transmission mechanism being arranged in the first accommodating cavity, first and second through holes being respectively arranged on the two cavity walls of the first accommodating cavity, the two matching parts respectively extending out of the first mold through the corresponding first and second through holes.

4. The detachable machining die of claim 1, wherein, The first mold further comprises: a first anti-drop plate arranged at the first end of the first mold, the first anti-drop plate being used to overlap the top surface of the plate body; a second anti-drop plate arranged at the second end of the first mold, the second anti-drop plate being used to overlap the top surface of the plate body.

5. The detachable machining tool of claim 1, wherein, The first mold further comprises: an injection hole arranged at the top of the first mold, the injection hole being used to inject material into the cavity formed by the first mold and the second mold.

6. The detachable machining tool of claim 1, wherein The first mold further comprises: a holding part arranged on the first mold, the holding part being used to move the first mold.

7. The detachable machining tool of claim 1, wherein, The detachable processing mold further comprises: a driving rod, a first end of the driving rod being connected with the top of the support, a second end of the driving rod being connected with the bottom of the support; a driving motor arranged on the support, the driving motor being connected with the driving rod; wherein the plate body is provided with a third through hole, the driving rod passing through the third through hole to be connected with the top and the bottom of the support.

8. The detachable machining tool of claim 7, wherein, The detachable processing mold further comprises: a limiting rod, a first end of the limiting rod being connected with the top of the support, a second end of the limiting rod being connected with the bottom of the support; The plate body is provided with a fourth through hole, and the limiting rod is connected with the top and bottom of the support through the fourth through hole.

9. The detachable machining tool according to any one of claims 1 to 8, characterized in that The detachable processing mold further comprises: a demolding plate arranged in the second mold; a second driving mechanism connected with the demolding plate; wherein the second driving mechanism is used to drive the demolding plate to eject the finished product.

10. The detachable machining tool of claim 9, wherein, The bottom of the support is provided with a second accommodating cavity, and a fifth through hole is arranged on the bottom wall of the second accommodating cavity; the top of the second mold is provided with a sixth through hole, and the sixth through hole penetrates to the second accommodating cavity; the first mold further comprises: a first pressing rod arranged at the bottom of the first mold; the second driving mechanism comprises: a support column, a first end of the support column being connected with the demolding plate, and a second end of the support column being slidably connected with the fifth through hole through the second accommodating cavity; a connecting plate arranged in the second accommodating cavity, the connecting plate being provided with a seventh through hole, and the connecting plate being fixedly connected with the support column through the seventh through hole; a second pressing rod slidably arranged in the sixth through hole, the second pressing rod being fixedly connected with the connecting plate, and the second pressing rod being correspondingly arranged with the first pressing rod; an elastic member sleeved on the support column and located between the connecting plate and the bottom wall of the second accommodating cavity.