1 / 6 proportion human body model toy forming mold
By designing a replacement, clamping, and fixing device for the molding mold of a 1/6 scale human figure toy, the problem of traditional molds needing to be made multiple times has been solved, thus improving the flexibility of the mold and the quality of the finished product.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2026-03-03
AI Technical Summary
Traditional mannequin molds have fixed internal structures, requiring the creation of multiple molds to meet different pose requirements, increasing production costs and reducing market competitiveness.
A molding die for a 1/6 scale human body model toy was designed, comprising a replacement device, a clamping device, and a fixing device. The replacement device allows modules to be replaced, the clamping device ensures that the modules fit tightly, and the fixing device secures the entire system, enabling flexible replacement and tight connection of modules.
It enables rapid module replacement to meet different posture requirements, reduce production costs, improve market competitiveness, and ensures that the modules fit tightly to prevent molten plastic from entering gaps and affecting the quality of the finished product.
Smart Images

Figure CN223961583U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of toy manufacturing technology, specifically a molding die for a 1 / 6 scale human body model toy. Background Technology
[0002] Human model toys are based on human body parameters. They are humanoid toys that can accurately describe the morphological and mechanical characteristics of the human body. When making human model toys, human model toy molding molds are required.
[0003] In traditional human figure toy molding, workers pour molten plastic into the mold and then remove the toy after it cools.
[0004] However, in actual use, since the internal structure of traditional human model toy molding molds is basically fixed, when it is necessary to make human model toys in different poses, it may be necessary to make multiple human model toy molding molds in advance. This will not only increase production costs, but may also make it impossible to update the styles of human model toys in a timely manner, thereby reducing market competitiveness. Utility Model Content
[0005] To address the shortcomings of existing technologies, this utility model provides a 1 / 6 scale human figure toy molding mold, which solves the problem that in actual use, since the internal structure of traditional human figure toy molding molds is basically fixed, when it is necessary to make human figure toy in different poses, it may be necessary to make multiple human figure toy molding molds in advance. This not only leads to increased production costs, but may also make it impossible to update the styles of human figure toy in a timely manner, thereby reducing market competitiveness.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a 1 / 6 scale human model toy molding mold, comprising a sealed box, and a replacement device disposed inside the sealed box; a clamping device disposed between the sealed box and the replacement device; and a fixing device disposed on the outer wall of the sealed box; wherein, the replacement device facilitates the replacement of the required modules, the clamping device ensures that the modules inside the replacement device fit more tightly, and the fixing device secures the sealed box, the replacement device, and the clamping device together.
[0007] Preferably, the replacement device includes a body module disposed inside a sealed box; two arm modules are disposed, respectively attached to both sides of the body module; a head module is attached to the top of the body module and the two arm modules; a leg module is attached to the bottom of the body module and the two arm modules; and a connecting mechanism is disposed between the body module and the arm modules, head module, and leg modules; wherein, the replacement of the arm modules, head module, and leg modules is achieved through the cooperation of the body module and the connecting mechanism.
[0008] Preferably, the connecting mechanism includes connecting blocks, which are fixedly connected to the top, bottom and side walls of the body module respectively; connecting slots are respectively opened on the outer walls of the arm module, head module and leg module near the body module; wherein, through the cooperation of connecting blocks and connecting slots, the installation between the various modules that make up the replacement device is more convenient.
[0009] Preferably, the top of the head module is provided with an injection groove, and cooling grooves are provided on both sides of the top of the injection groove. A pressure plate is provided above the head module, and an injection port is provided on the top of the pressure plate. The pressure plate is fixedly connected to the top of the sealing box by bolts.
[0010] Preferably, the clamping device includes four cooling pipes, two of which are located on one side and are respectively connected to the bottom sides of the pressing plate; six clamping plates are provided, all located inside the sealing box, and the six clamping plates form a rectangle; multiple elastic elements are provided, with two fixedly connected to the outer wall of one clamping plate near the inner wall of the sealing box, and the side of the elastic element away from the clamping plate is fixedly connected to the inner wall of the sealing box; wherein, through the cooperation of the cooling pipes, clamping plates and elastic elements, the various modules constituting the replacement device are clamped together.
[0011] Preferably, the fixing device includes two first fixing rods, which sequentially penetrate the bottom of the sealing box, the bottom of the clamping plate, and the bottom of the leg module, and extend to the outer wall of the sealing box; two first nuts, which are threaded to both ends of the first fixing rods, and whose outer walls are close to each other, respectively abutting against the two sides of the outer wall of the sealing box; six second fixing rods, with three on one side penetrating the front and rear sides of the sealing box and the two clamping plates close to the front and rear sides of the inner wall of the sealing box, and penetrating the head module, arm module, and leg module from top to bottom; and multiple second nuts, which are threaded to both ends of the second fixing rods, and whose outer walls are close to each other, respectively abutting against the front and rear sides of the outer wall of the sealing box; wherein, through the cooperation of the first fixing rods, first nuts, second fixing rods, and second nuts, the sealing box is fixed together with the replacement device and the clamping device.
[0012] Beneficial effects
[0013] This invention provides a 1 / 6 scale human figure toy molding mold. It offers the following advantages: This 1 / 6 scale human figure toy molding mold, through the coordination of body, arm, and head modules, allows for the modification of different modules to change the posture of the human figure toy according to actual needs. This solves the problem that in practical use, traditional human figure toy molding molds have a basically fixed internal structure. When producing human figure toys in different postures, it may be necessary to pre-produce multiple molding molds, which not only increases production costs but also may prevent timely updates to the styles of human figure toys, thus reducing market competitiveness.
[0014] By combining cooling pipes, clamping plates, and elastic components, the various parts that make up the human body model toy are tightly fitted together. This solves the problem that in traditional 1 / 6 scale human body model toy molding molds, the tightly fitted modules may be squeezed by the plastic melt during casting, causing the plastic melt to enter the gaps, which not only affects the demolding operation but also affects the appearance of the finished product, thus reducing the yield rate of the finished product. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the installation of the replacement device in this utility model;
[0017] Figure 3 This is a schematic diagram of the installation of the clamping device and the fixing device in this utility model;
[0018] Figure 4 for Figure 2 A structural diagram of the body module, arm module, and fixing block.
[0019] In the diagram: 1. Sealed box; 2. Replacement device; 21. Body module; 22. Arm module; 23. Head module; 231. Injection tank; 232. Cooling tank; 24. Leg module; 25. Connecting mechanism; 251. Connecting block; 252. Connecting groove; 3. Pressing plate; 31. Injection port; 32. Bolt; 4. Clamping device; 41. Cooling pipe; 42. Clamping plate; 43. Elastic element; 5. Fixing device; 51. First fixing rod; 52. First nut; 53. Second fixing rod; 54. Second nut. Detailed Implementation
[0020] 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.
[0021] In practical use, since the internal structure of traditional human model toy molding molds is basically fixed, when it is necessary to make human model toys in different poses, it may be necessary to make multiple human model toy molding molds in advance. This not only increases production costs, but may also make it impossible to update the styles of human model toys in a timely manner, thereby reducing market competitiveness.
[0022] In view of this, the present invention provides a 1 / 6 scale human figure toy molding mold, which solves the problem that in actual use, since the internal structure of traditional human figure toy molding molds is basically fixed, when it is necessary to make human figure toy in different poses, it may be necessary to make multiple human figure toy molding molds in advance. This not only leads to increased production costs, but may also make it impossible to update the style of human figure toy in a timely manner, thereby reducing market competitiveness.
[0023] Those skilled in the art can connect the components in this case sequentially. The specific connection and operation sequence should refer to the working principle described below. The detailed connection methods are well-known technologies in the field. The working principle and process are mainly described below.
[0024] Example 1: By Figure 1-4 It is known that a 1 / 6 scale human body model toy molding mold includes a sealed box 1. The 1 / 6 scale human body model toy molding mold also includes a replacement device 2, a clamping device 4, and a fixing device 5. The replacement device 2 is disposed inside the sealed box 1; the clamping device 4 is disposed between the sealed box 1 and the replacement device 2; and the fixing device 5 is disposed on the outer wall of the sealed box 1. The replacement device 2 facilitates the replacement of the required modules, the clamping device 4 makes the modules inside the replacement device 2 fit more tightly, and the fixing device 5 fixes the sealed box 1 together with the replacement device 2 and the clamping device 4.
[0025] In the specific implementation process, it is worth noting that the sealing box 1, as the outer shell of the entire mold, provides installation space and protection for other devices. It is a quadrangular prism and can be divided into two completely symmetrical parts. Its top is set to be open, which makes it easy to place each module inside. The top is provided with threaded holes, two of which are provided on one side. The front and back are provided with circular through holes, and the circular through holes on the front and back are located on the same axis. Circular through holes are also provided on the lower part of the outer walls on both sides. The circular through holes on both sides facilitate subsequent fixing operations. The material of the sealing box 1 can be selected to be mold steel that can withstand high temperature and high pressure, such as P20 steel. The operator can replace the required modules to form the human body model toy through the replacement device 2, and the modules inside the replacement device 2 can be made to fit more tightly through the clamping device 4. Finally, the sealing box 1 can be fixed together with the replacement device 2 and the clamping device 4 through the fixing device 5.
[0026] Furthermore, the replacement device 2 includes a body module 21, an arm module 22, a head module 23, a leg module 24, and a connecting mechanism 25. The body module 21 is disposed inside the sealed box 1; two arm modules 22 are provided, respectively attached to both sides of the body module 21; the head module 23 is attached to the top of the body module 21 and the two arm modules 22; the leg module 24 is attached to the bottom of the body module 21 and the two arm modules 22; the connecting mechanism 25 is disposed between the body module 21 and the arm modules 22, the head module 23, and the leg modules 24; wherein, through the cooperation of the body module 21 and the connecting mechanism 25, the purpose of replacing the arm module 22, the head module 23, and the leg module 24 is achieved.
[0027] In the specific implementation process, it is worth noting that the body module 21 is the main part of the entire human body model toy, providing a connection base and support for other modules. Its inner wall grooves can be smoothed to reduce friction with the cooled molten plastic. The material can be aluminum alloy, and the style and pattern of the inner wall grooves can be designed according to different needs. Modules in different poses can be replaced before casting to create different models. There are two arm modules 22, which can also be made of aluminum alloy. Their inner wall grooves can also be smoothed to reduce friction with the cooled molten plastic. The material and detailed patterns of the inner wall grooves can be designed according to different needs to meet customer requirements. The head module 23 can also be made of aluminum alloy. The inner wall grooves on the head module 23 can also be smoothed to reduce friction with the cooled molten plastic. The detailed patterns of the inner wall grooves can be designed according to different needs. Modules in different poses can be replaced before casting to create different models. High-precision sculpting technology can be used to make facial features more delicate. The leg module 24 can also be made of aluminum alloy. Using aluminum alloy as the material, the inner wall grooves on the leg module 24 can also be smoothed to reduce friction with the cooled molten plastic. Furthermore, the detailed patterns of the inner wall grooves can be designed with different module styles to meet various needs. Different poses of the modules can be replaced before casting to create different models, increasing playability. When replacing different modules, it is essential to ensure that the parts of the arm module 22, head module 23, and leg module 24, except for the inner wall grooves, remain unchanged to ensure the connection between the three modules and the body module 21. And when installing each module, a [missing information - likely a specific method or technique] is used. The two-part combination, such as the body module 21, is divided into front and back parts. When designing, the front and back sides need to be determined according to the actual situation. Under this premise, the mold is carved. When replacing the modules, attention should also be paid to the front and back of each module to prevent defective human model toys that do not conform to human anatomy. A sealing structure can be added between each module and the sealing box 1 to improve the overall sealing effect. Through the cooperation of various body modules 21, arm modules 22, head modules 23 and leg modules 24, the diversity of products manufactured by the molding mold of this 1 / 6 scale human model toy is improved.
[0028] Furthermore, the connecting mechanism 25 includes a connecting block 251 and a connecting groove 252. The connecting block 251 is fixedly connected to the top, bottom, and side wall of the body module 21, respectively. The connecting groove 252 is respectively opened on the outer wall of the arm module 22, the head module 23, and the leg module 24 on the side of the outer wall of the body module 21. The cooperation between the connecting block 251 and the connecting groove 252 makes the installation between the various modules that make up the replacement device 2 more convenient.
[0029] In the specific implementation process, it is worth noting that the connecting block 251 consists of two parts: the part connected to the body module 21 is made of metal, and the part away from the body module 21 is made of magnetic material. The connecting block 251 is cube-shaped. Similarly, the connecting groove 252 consists of two parts: the part connected to the inner walls of the arm module 22, head module 23, and leg module 24 is made of metal, and the part away from the inner walls of the arm module 22, head module 23, and leg module 24 is made of magnetic material. The connecting groove 252 is square groove-shaped. Through the cooperation of the connecting block 251 and the connecting groove 252, the purpose of quickly installing or replacing the modules of each part can be achieved, thereby improving the ease of use of the molding mold of this 1 / 6 scale human body model toy.
[0030] Specifically, when casting a human figure toy, the worker takes out the required body module 21, arm module 22, head module 23, and leg module 24 from the toolbox. The two leg modules 24 are placed at the bottom of the sealed box 1. Then, the body module 21 is placed into the connecting groove 252 at the top of the leg module 24 via its bottom connecting block 251, and magnetically attached together, fixing the body module 21 to the top of the leg module 24. The other body module 21 is treated in the same way. After this, the two arm modules 22 are placed on either side of the body module 21, and similarly, they are magnetically attached to the connecting blocks 251 on both sides of the body module 21 via the connecting groove 252 on the outer wall of the two arm modules that are close to each other, thus fixing the two arm modules 22. The head module 23 is attached to both sides of the body module 21, and the other two arm modules 22 are attached in the same way. Finally, the head module 23 is magnetically attached to the connecting block 251 on the top of the body module 21 through the connecting groove 252 at its bottom, so that the head module 23 and the body module 21 are fixed together. At this time, all modules are placed inside the sealed box 1, and then casting can be performed. When it is necessary to replace the existing head module 23, simply attach the other type of head module 23 to the connecting block 251 on the top of the body module 21 through the connecting groove 252 at its bottom, so that the new head module 23 and the body module 21 are fixed together, and the replacement is completed. The operation is very convenient. When it is necessary to replace the two arm modules 22 or the leg modules 24, they can be replaced in the above way.
[0031] Example 2: From Figure 1-4 It can be seen that the top of the head module 23 is provided with an injection groove 231, and cooling grooves 232 are provided on both sides of the top of the injection groove 231. A pressure plate 3 is provided above the head module 23, and an injection port 31 is provided on the top of the pressure plate 3. The pressure plate 3 is fixedly connected to the top of the sealing box 1 by bolts 32.
[0032] In the specific implementation process, it is worth noting that the injection tank 231 is cylindrical and connected to the head groove below, providing an entry channel for the plastic melt. The inner wall of the injection tank 231 can be polished to reduce the flow resistance of the plastic melt. The cooling tank 232 is cylindrical and is respectively set on the top two sides of the head module 23, the top side of the two arm modules 22 away from the body module 21, and the top side of the leg module 24 away from the groove of the leg module 24. The three cooling tanks 232 are connected. Combining the cooling tanks 232 of each part can form a 'U' shape, providing an entry channel for the coolant. It is understood that the shape and size of the cooling tank 232 are not limited and can be improved according to actual needs to ensure the cooling effect. The clamping plate 3 is rectangular and has circular through holes at its four corners for easy matching with bolts 32 and fixed to the sealing box 1. An injection port 31 is set in the middle, which is connected to the injection tank 231, thereby improving the working stability of the 1 / 6 scale human body model toy molding mold.
[0033] Furthermore, the clamping device 4 includes cooling pipes 41, clamping plates 42, and elastic elements 43. There are four cooling pipes 41, two of which are located on one side, and they are respectively connected to the bottom sides of the clamping plate 3. There are six clamping plates 42, all located inside the sealing box 1, and the six clamping plates 42 form a rectangle. There are multiple elastic elements 43, with two fixedly connected to the outer wall of one clamping plate 42 near the inner wall of the sealing box 1, and the side of the elastic element 43 away from the clamping plate 42 fixedly connected to the inner wall of the sealing box 1. The cooling pipes 41, clamping plates 42, and elastic elements 43 work together to clamp the various modules that make up the replacement device 2 together.
[0034] In the specific implementation process, it is worth noting that the length of the cooling pipe 41 is longer than the thickness of the clamping plate 3, and the outer ring diameter of the cooling pipe 41 is slightly smaller than the diameter of the cooling groove 232, which facilitates the insertion of the cooling pipe 41 into the cooling groove 232. Furthermore, the cooling pipe 41 also limits the movement of other modules through the head module 23, ensuring that the modules are located in the center of the sealed box 1. The material of the cooling pipe 41 can be stainless steel. There are six clamping plates 42 in total, two at the front and two at the back, and one on each side. The surface of the clamping plate 42 can be covered with a rubber pad to increase the friction with the module and also to provide cushioning, preventing damage to the module. The shape of the clamping plate 42 can be designed according to the shape of the module to better fit the module surface and achieve uniform clamping force. Multiple elastic elements 43 are provided between the clamping plate 42 and the sealed box 1. Two clamping plates 42 and two sealing boxes are provided between each other. It is understood that there are no necessary restrictions on the type, style and material of the elastic element 43. For example, springs, rubber seats or memory plastics can all be used as elastic elements 43, as long as the elastic element 43 can assist the clamping plate 42 in clamping each module through its own appropriate elastic deformation. If a spring is selected, its elastic coefficient can be selected according to the material and size of the module to ensure that sufficient clamping force is provided. If a rubber seat is selected, a suitable rubber seat can be selected according to the type of rubber, the degree of cross-linking and the specific working environment to ensure that the actual working needs are met. Through the cooperation of the cooling pipe 41, the clamping plate 42 and the elastic element 43, the modules that make up the replacement device 2 clamp each other, thereby further improving the working stability of the 1 / 6 scale human body model toy molding mold.
[0035] Furthermore, the fixing device 5 includes a first fixing rod 51, a first nut 52, a second fixing rod 53, and a second nut 54. The first fixing rod 51 passes through the bottom of the sealing box 1, the bottom of the clamping plate 42, and the bottom of the leg module 24 in sequence, and extends to the outer wall of the sealing box 1. Two first nuts 52 are provided, which are threaded to the two ends of the first fixing rod 51 respectively, and the sides of the outer walls that are close to each other abut against the two sides of the outer wall of the sealing box 1. Six second fixing rods 53 are provided, and the three second fixing rods 53 on one side all pass through the sealing box 1. Two clamping plates 42 are located on the front and rear sides of the box 1 and near the front and rear sides of the inner wall of the sealed box 1, and pass through the head module 23, arm module 22 and leg module 24 from top to bottom respectively; multiple second nuts 54 are provided, which are threaded to both ends of the second fixing rod 53 respectively, and the sides of the outer walls that are close to each other are respectively clamped to the front and rear sides of the outer wall of the sealed box 1; wherein, through the cooperation of the first fixing rod 51, the first nut 52, the second fixing rod 53 and the second nut 54, the sealed box 1 is fixed together with the replacement device 2 and the clamping device 4;
[0036] In the specific implementation process, it is worth noting that there are two first fixing rods 51. The first fixing rod 51 is cylindrical and can be made of alloy steel. Both ends are threaded to facilitate its use with the first nut 52. There are four first nuts 52. The surface of the first nut 52 can be provided with anti-slip texture. The second fixing rod 53 is made of the same material as the first fixing rod 51. The second fixing rod 53 is shorter. The surface of the second nut 54 can also be provided with anti-slip texture. The uppermost second fixing rod 53 limits the head module 23, the middle second fixing rod 53 limits the arm module 22, and the lowermost second fixing rod 53 limits the leg module 24. The operator uses the cooperation of the first fixing rod 51, the first nut 52, the second fixing rod 53, and the second nut 54 to fix the sealing box 1 together with the replacement device 2 and the clamping device 4.
[0037] Specifically, when the staff places the two leg modules 24 into the sealed box 1, the front and rear outer walls of the leg modules 24 press against the four clamping plates 42 in the front and rear directions respectively. The four clamping plates 42 in the front and rear directions move away from the leg modules 24, compressing their respective two elastic elements 43. The reaction force of the elastic elements 43 presses the leg modules 24 firmly. The left and right clamping plates 42 are pressed against the outer walls of the leg modules 24, and move away from the leg modules 24 respectively, compressing their respective two elastic elements 43. The reaction force of the elastic elements 43 presses the leg modules 24 firmly. At this time, the six clamping plates... After the clamping plate 42 is fully pressed against the leg module 24, the operator places the body module 21, arm module 22, and head module 23 into the sealed box 1 in sequence. At this point, each module is fully pressed against the clamping plate 42. Next, the operator places the pressure plate 3 on top of the sealed box 1. The four cooling pipes 41 connected to the pressure plate 3 are inserted into the four cooling slots 232, and the four bolts 32 are rotated clockwise to fix the pressure plate 3 to the top of the sealed box 1. Then, the operator inserts two first fixing rods 51 into the through holes on both sides of the outer wall of the sealed box 1. The first fixing rods 51 penetrate the left outer wall and left side of the sealed box 1 from left to right. The side clamping plate 42, leg module 24, right side clamping plate 42, and right outer wall of the sealing box 1 extend to the outside of the sealing box 1. The two ends of the first fixing rod 51 are fixed by two first nuts 52. The other first fixing rod 51 is fixed in the same way and fixed by another two first nuts 52. The uppermost second fixing rod 53 passes through the front of the outer wall of the sealing box 1, the clamping plate 42 near the front, the head module 23, the clamping plate 42 near the back, and the back of the sealing box 1 from front to back, and extends to the outside. Its two ends are fixed by second nuts 54. The middle second fixing rod 53 passes through the front of the outer wall of the sealing box 1, the leg module 24, the right side clamping plate 42, and the right side outer wall of the sealing box 1 from front to back, and extends to the outside. The front side of the clamping plate 42, the side arm module 22, the clamping plate 42 near the back side, and the back of the sealing box 1 extend to the outside. Both ends of the clamping plate 42 are fixed by the second nut 54. The bottommost second fixing rod 53 passes through the front of the outer wall of the sealing box 1, the clamping plate 42 near the front side, the leg module 24, the clamping plate 42 near the back side, and the back of the sealing box 1 from front to back, and extends to the outside. Both ends of the fixing rod 53 are fixed by the second nut 54. At this time, the sealing box 1 and all the modules inside it are completely fixed. When casting is required, the plastic melt can be poured directly into the injection port 31. When demolding is required, the above actions can be reversed.
[0038] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A molding die for a 1 / 6 scale human figure toy, comprising a sealed box (1), characterized in that: The 1 / 6 scale human body model toy molding mold also includes: Replacement device (2) is installed inside the sealed box (1); A clamping device (4) is installed between the sealing box (1) and the replacement device (2); Fixing device (5) is installed on the outer wall of the sealed box (1); The replacement device (2) facilitates the replacement of the required module, the clamping device (4) makes the module inside the replacement device (2) fit more tightly, and the fixing device (5) fixes the sealing box (1) together with the replacement device (2) and the clamping device (4).
2. The molding die for a 1 / 6 scale human body model toy according to claim 1, characterized in that: The replacement device (2) includes: The body module (21) is located inside the sealed box (1); There are two arm modules (22), which are respectively attached to the two sides of the body module (21); The head module (23) is attached to the top of the body module (21) and the two arm modules (22); The leg module (24) is attached to the bottom of the body module (21) and the two arm modules (22); A connecting mechanism (25) is disposed between the body module (21) and the arm module (22), head module (23) and leg module (24); The body module (21) and the connecting mechanism (25) work together to replace the arm module (22), head module (23) and leg module (24).
3. The molding die for a 1 / 6 scale human body model toy according to claim 2, characterized in that: The connecting mechanism (25) includes: Connecting blocks (251) are fixedly connected to the top, bottom and side walls of the body module (21) respectively; Connecting slots (252) are respectively opened on the outer wall of the arm module (22), the head module (23) and the leg module (24) on the side of the outer wall of the body module (21) that is close to the body module (21); The connection between the connecting block (251) and the connecting groove (252) makes it easier to install the various modules that make up the replacement device (2).
4. The molding die for a 1 / 6 scale human body model toy according to claim 2, characterized in that: The head module (23) has an injection groove (231) on its top, and cooling grooves (232) are provided on both sides of the top of the injection groove (231). A pressure plate (3) is provided above the head module (23), and an injection port (31) is provided on the top of the pressure plate (3). The pressure plate (3) is fixedly connected to the top of the sealing box (1) by bolts (32).
5. The molding die for a 1 / 6 scale human body model toy according to claim 4, characterized in that: The clamping device (4) includes: The cooling pipes (41) are provided in four parts, with two on one side, which are respectively connected to the bottom sides of the pressure plate (3); Six abutment plates (42) are provided, all of which are located inside the sealed box (1), and the six abutment plates (42) form a rectangle; Multiple elastic elements (43) are provided. Two are fixedly connected to the outer wall of the abutment plate (42) near the inner wall of the sealing box (1), and the side of the elastic element (43) away from the abutment plate (42) is fixedly connected to the inner wall of the sealing box (1). The cooling pipe (41), the clamping plate (42) and the elastic element (43) work together to make the various modules that make up the replacement device (2) press against each other.
6. The molding die for a 1 / 6 scale human body model toy according to claim 5, characterized in that: The fixing device (5) includes: The first fixing rod (51) passes through the bottom of the sealing box (1), the bottom of the abutment plate (42) and the bottom of the leg module (24) in sequence, and extends to the outer wall of the sealing box (1); The first nut (52) is threaded to both ends of the first fixing rod (51), and the outer walls of the two sides that are close to each other abut against the outer walls of the sealing box (1). The second fixing rod (53) is provided in six parts. The three second fixing rods (53) on one side all penetrate the front and rear sides of the sealing box (1) and the two abutting plates (42) near the front and rear sides of the inner wall of the sealing box (1), and penetrate the head module (23), arm module (22) and leg module (24) respectively from top to bottom. The second nut (54) is provided in multiple forms, which are threaded to both ends of the second fixing rod (53) and the outer walls of the two sides of the outer wall of the sealing box (1) are respectively pressed against the front and rear sides of the outer wall of the sealing box (1). The sealing box (1) is fixed together with the replacement device (2) and the clamping device (4) by the cooperation of the first fixing rod (51), the first nut (52), the second fixing rod (53) and the second nut (54).