An easy-to-disassemble die-casting mold for titanium castings

The combination of pins and clamping devices solves the problem of time-consuming disassembly of traditional die-casting molds, enabling convenient disassembly and efficient assembly of the molds, maintaining positioning accuracy, and reducing maintenance costs.

CN120438573BActive Publication Date: 2025-10-31JIANGSU FEIRUIDA MOULD TECH CO LTD
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Patent Information

Application Number
CN202510961998.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-14
Publication Date
2025-10-31
Estimated Expiration
2045-07-14

AI Technical Summary

Technical Problem

The disassembly process of traditional die-casting molds is time-consuming, and repeated clamping can easily lead to a decrease in positioning accuracy.

Method used

It adopts a combination structure of pins and clamping devices, replacing traditional screw connections with the clamping device, and is equipped with a reset device and modular design to achieve convenient disassembly and assembly of the mold.

Benefits of technology

It improved mold disassembly efficiency, reduced maintenance costs, and maintained mold positioning accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of die-casting mold technology and discloses a titanium casting die-casting mold that is easy to disassemble. It includes an upper sealing plate, a female template mounted on the lower surface of the upper sealing plate, a male template mounted on the lower surface of the female template, an ejector plate mounted on the lower surface of the male template, and a lower sealing plate mounted on the lower surface of the ejector plate. The ejector plate consists of an ejector face plate and an ejector base plate. This invention achieves a fixed connection between the upper sealing plate and the female template by clamping a first pin with a first clamping device, a fixed connection by clamping a second pin with a second clamping device, and a fixed connection by clamping a third pin with a third clamping device. The use of pins and clamping devices replaces the traditional screw connection, facilitating disassembly and assembly between the upper sealing plate and the female template, between the male template and the lower sealing plate, and between the lower sealing plate and the limiting port.
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Description

Technical Field

[0001] This invention relates to the field of die-casting mold technology, and more specifically to a die-casting mold for titanium castings that is easy to disassemble. Background Technology

[0002] As a core process equipment for the mass production of complex metal parts in modern manufacturing, the design optimization of die-casting molds is of great significance for improving production efficiency and reducing maintenance costs. Traditional die-casting molds generally adopt an integral or fixed structure, which can meet the molding requirements of high strength and high precision, but there are significant pain points in the mold disassembly, maintenance and replacement process. For example, the connection between the mold ejection system, cavity inserts and mold base mostly relies on bolt fastening or interference fit, and the disassembly process requires a lot of time for manual disassembly, and repeated clamping can easily lead to a decrease in positioning accuracy. Summary of the Invention

[0003] In order to overcome the above-mentioned defects of the prior art, the present invention provides a titanium casting die-casting mold that is easy to disassemble, so as to solve the problems existing in the background art.

[0004] This invention provides the following technical solution: a titanium casting die-casting mold that is easy to disassemble, comprising an upper sealing plate, a female template mounted on the lower surface of the upper sealing plate, a male template mounted on the lower surface of the female template, an ejector plate mounted on the lower surface of the male template, and a lower sealing plate mounted on the lower surface of the ejector plate. The ejector plate is composed of an ejector face plate and an ejector base plate. The upper sealing plate has four first pins inside, a pouring port at the center of the upper sealing plate, four vents on the lower surface of the upper sealing plate, and lifting eye holes on both sides of the upper sealing plate. The female template has two first clamping devices fixedly connected inside, three sliding pillars on the lower surface of the female template, four guide sleeves inside the female template, lifting eye holes on both sides of the female template, and four female mold fixing holes inside the female template. The upper sealing plate and the female template are fixedly connected by clamping between the first pins and the first clamping devices.

[0005] Furthermore, the first clamping device consists of a disassembly device, a caliper, and a collar. The disassembly device has collars fixedly connected to both ends, and a caliper is fixedly connected to the other end of each collar. The disassembly device consists of a pull rod, a long rod, a limiting post, a connecting block, and a return spring. The pull rod has long rods movably connected to both ends by bolts, and a connecting block is movably connected to the other end of each long rod by bolts. Two return springs are fixedly connected to the right side of the connecting block, and the other end of each return spring is fixedly connected to the limiting post. The pull rod is movably connected to the cylindrical outer surface of the limiting post, and the limiting post is fixedly connected inside the mother template.

[0006] Furthermore, one end of the moving rod is movably connected to a connecting rod via bolts on both its upper and lower surfaces. The other end of each connecting rod is movably connected to a clamping arm via bolts. A limit spring is fixedly connected to the outer surface of each clamping arm. A collar is fixedly connected to the other end of the moving rod. A connecting block is fixedly connected to the other end of the collar. A limit block is provided on the outer surface of the moving rod. The limit block is fixedly connected inside the mother template. Limit holes are provided at both ends of the limit block. The limit block is movably connected to the clamping arm through the limit holes.

[0007] Furthermore, the male template has two second clamping devices inside, three sliders are movably connected to the upper surface of the male template, four guide pillars are inside the male template, lifting eye holes are provided at both ends of the male template, four male mold fixing holes are inside the male template, four return pin holes are inside the male template, and multiple ejector pin holes are inside the male template. Each slider and slide pillar are embedded through a groove inside the slider, and the female template and male template are embedded through a guide sleeve and a guide pillar.

[0008] Furthermore, the ejector panel has four positioning holes inside, four return pins inside, and multiple ejector pins inside, with a helical spring fitted on each return pin.

[0009] Furthermore, the upper surface of the ejector base plate is provided with four positioning blocks, and the interior of the ejector base plate is provided with four locking pins. Each locking pin has a square post inside, and spring assemblies are fixedly connected to the four walls of the square post. The other end of the spring assembly is fixedly connected to a locking block. The interior of the locking pin is provided with a top post. The ejector panel and the ejector base plate are fixedly connected by the locking pins. The return pin is embedded into the male template through the return pin hole, and the ejector pin is embedded into the male template through the ejector pin hole.

[0010] Furthermore, the lower sealing plate has four second pins inside and four third pins inside. Two mold feet are fixedly connected to the upper surface of the lower sealing plate. A third clamping device is fixedly connected inside each mold foot. Two limiting holes are provided inside each mold foot. The second pins are fixedly connected to the male template through the limiting holes. The lower sealing plate has a top outlet in the middle.

[0011] Furthermore, the male template and the lower sealing plate are fixedly connected by a second pin and a second clamping device, and the lower sealing plate and the limiting port are fixedly connected by a third pin and a third clamping device.

[0012] The technical effects and advantages of this invention are as follows:

[0013] 1. The present invention achieves a fixed connection between the upper sealing plate and the female template by clamping the first pin with the first clamping device, a fixed connection by clamping the second pin with the second clamping device, and a fixed connection by clamping the third pin with the third clamping device. The use of pins and clamping devices replaces the traditional screw connection, which facilitates the disassembly and assembly between the upper sealing plate and the female template, between the male template and the lower sealing plate, and between the lower sealing plate and the limiting port.

[0014] 2. The present invention, by providing a reset device, facilitates the automatic reset of the locking device after the loose pin is removed, thus not affecting the next use.

[0015] 3. The present invention has a sliding column and a slider. The sliding column and the slider are interlocked so that when the mold is closed, the sliding column will drive the slider to move towards the center to clamp the mold core. When the mold is opened, the sliding column will drive the slider to move outward to loosen the clamping of the mold core, which is beneficial to clamping the mold core.

[0016] 4. The modular design of this invention facilitates the disassembly and assembly of die-casting molds. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention.

[0018] Figure 2 This is an exploded view of the overall structure of the present invention.

[0019] Figure 3 This is a schematic diagram of the upper sealing plate structure of the present invention.

[0020] Figure 4 This is a schematic diagram of the master template structure of the present invention.

[0021] Figure 5 This is an exploded view of the mother template structure of the present invention.

[0022] Figure 6 This is a schematic diagram of the clamping device of the present invention.

[0023] Figure 7 This is a schematic diagram of the disassembly device of the present invention.

[0024] Figure 8 This is an exploded view of the disassembly device structure of the present invention.

[0025] Figure 9 This is a schematic diagram of the caliper structure of the present invention.

[0026] Figure 10 This is an exploded view of the caliper structure of the present invention.

[0027] Figure 11This is a schematic diagram of the public template structure of the present invention.

[0028] Figure 12 This is an exploded view of the template structure of the present invention.

[0029] Figure 13 This is a schematic diagram of the ejector plate structure of the present invention.

[0030] Figure 14 This is a cross-sectional schematic diagram of the locking pin structure of the present invention.

[0031] Figure 15 This is an exploded view of the lower sealing plate structure of the present invention.

[0032] The attached figures are labeled as follows: 1. Upper sealing plate; 101. First pin; 102. Sprue; 103. Vent; 104. Lifting eye hole one; 2. Female mold plate; 201. First clamping device; 2011. Disassembly device; 20111. Pull rod; 20112. Long rod; 20113. Limiting post; 20114. Linking block; 20115. Return spring; 2012. Caliper; 20121. Moving rod; 20122. Limiting block; 20123. Connecting rod; 20124. Clamping arm; 20125. Limiting spring; 20126. Limiting hole; 2013. Collar; 202. Sliding column; 203. Guide sleeve; 204. Lifting eye hole two; 205. Female mold fixing hole; 3. Male mold plate 301. Second clamping device; 302. Slider; 303. Guide post; 304. Lifting ring hole three; 305. Male mold fixing hole; 306. Return pin hole; 307. Ejector pin hole; 4. Ejector plate; 401. Ejector plate; 4011. Positioning hole; 4012. Return pin; 4013. Ejector pin; 4014. Helical spring; 402. Ejector base plate; 4021. Positioning block; 4022. Clamping pin; 40221. Square post; 40222. Spring assembly; 40223. Positioning block; 40224. Ejector pin; 5. Lower sealing plate; 501. Second pin; 502. Third pin; 503. Mold foot; 504. Third clamping device; 505. Limiting port; 506. Ejector outlet. Detailed Implementation

[0033] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. In addition, the forms of the various structures described in the following embodiments are merely illustrative. The easily disassembled titanium casting die-casting mold involved in the present invention is not limited to the structures described in the following embodiments. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0034] Reference Figure 1 and Figure 2The present invention provides a titanium casting die casting mold that is easy to disassemble, including an upper sealing plate 1, a female template 2 installed on the lower surface of the upper sealing plate 1, a male template 3 installed on the lower surface of the female template 2, an ejector plate 4 installed on the lower surface of the male template 3, and a lower sealing plate 5 installed on the lower surface of the ejector plate 4. The ejector plate 4 is composed of an ejector panel 401 and an ejector base plate 402.

[0035] Modular design makes die-casting molds easier to disassemble and assemble.

[0036] Reference Figure 3 , Figure 4 and Figure 5 The upper sealing plate 1 has four first pins 101 inside, a pouring port 102 at the center of the upper sealing plate 1, four vents 103 on the lower surface of the upper sealing plate 1, and lifting eye holes 104 on both sides of the upper sealing plate 1. The mother mold 2 has two first clamping devices 201 fixedly connected inside, three sliding columns 202 on the lower surface of the mother mold 2, four guide sleeves 203 inside the mother mold 2, lifting eye holes 204 on both sides of the mother mold 2, and four mother mold fixing holes 205 inside the mother mold 2. The upper sealing plate 1 and the mother mold 2 are fixedly connected by clamping between the first pins 101 and the first clamping devices 201.

[0037] The connection between the upper sealing plate 1 and the mother template 2 is fixed by clamping the first pin 101 and the first clamping device 201, making it easy to disassemble and assemble the upper sealing plate 1 and the mother template 2. The air vent 103 allows the air inside the guide sleeve 203 and the guide post 303 to be discharged when they are connected. The lifting eye hole 104 and the lifting eye hole 204 allow the lifting eye to be used to assist in disassembly and assembly.

[0038] Reference Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10The first clamping device 201 comprises a disassembly device 2011, a clamp 2012, and a collar 2013. The disassembly device 2011 has collars 2013 fixedly connected to both ends, and a clamp 2012 fixedly connected to the other end of each collar 2013. The disassembly device 2011 comprises a pull rod 20111, a long rod 20112, a limiting post 20113, a connecting block 20114, and a return spring 20115. The pull rod 20111 has long rods 20112 movably connected to both ends by bolts, and a connecting block 20114 movably connected to the other end of each long rod 20112 by bolts. Two return springs 20115 are fixedly connected to the right side of the connecting block 20114, and the other end of each return spring 20115 is fixedly connected to the limiting post 20113. The cylindrical outer surface of the limiting post 20113... A pull rod 20111 is movably connected to the surface, and a limiting post 20113 is fixedly connected to the inside of the mother template 2. One end of the moving rod 20121 has connecting rods 20123 movably connected to its upper and lower surfaces by bolts. The other end of each connecting rod 20123 is movably connected to a clamping arm 20124 by bolts. Each clamping arm 20124 has a limiting spring 20125 fixedly connected to its outer surface. The other end of the moving rod 20121 is fixedly connected to a collar 2013. The other end of the collar 2013 is fixedly connected to a connecting block 20114. The outer surface of the moving rod 20121 is provided with a limiting block 20122, which is fixedly connected to the inside of the mother template 2. Both ends of the limiting block 20122 are provided with limiting holes 20126, and the limiting block 20122 is movably connected to the clamping arm 20124 through the limiting holes 20126.

[0039] The pin can be clamped during assembly by the caliper 2012, and the pin can be loosened during disassembly by the disassembly device 2011. The caliper 2012 can be quickly reset after the pin is loosened by the return spring 20115.

[0040] Reference Figure 4 , Figure 11 and Figure 12 The male template 3 has two second clamping devices 301 inside, three sliders 302 are movably connected to the upper surface of the male template 3, four guide pillars 303 are provided inside the male template 3, lifting eye holes 304 are provided at both ends of the male template 3, four male mold fixing holes 305 are provided inside the male template 3, four return pin holes 306 are provided inside the male template 3, and multiple ejector pin holes 307 are provided inside the male template 3. Each slider 302 is embedded in the slider pillar 202 through the groove inside the slider 302, and the female template 2 and the male template 3 are embedded in the guide sleeve 203 and the guide pillar 303.

[0041] The insertion of the slide column 202 and the slider 302 allows the slide column 202 to drive the slider 302 to move towards the center during mold closing, thereby clamping the mold core. During mold opening, the slide column 202 will drive the slider 302 to move outward, thereby loosening the clamping of the mold core. The presence of lifting eye hole 204 and lifting eye hole 304 allows for disassembly and assembly to be assisted by lifting eye.

[0042] Reference Figure 11 , Figure 13 and Figure 14 The ejector plate 401 includes four positioning holes 4011 inside, four return pins 4012 inside, and multiple ejector pins 4013 inside. Each return pin 4012 is fitted with a helical spring 4014. The upper surface of the ejector base plate 402 has four positioning blocks 4021, and the ejector base plate 402 has four locking pins 4022 inside. Each locking pin 4022 has a... Square column 40221, spring assembly 40222 is fixedly connected to all four walls of square column 40221, and locking block 40223 is fixedly connected to the other end of spring assembly 40222. Top column 40224 is provided inside the locking pin 4022. Ejector plate 401 and ejector base plate 402 are fixedly connected by locking pin 4022. Return pin 4012 is embedded into male template 3 through return pin hole 306. Ejector 4013 is embedded into male template 3 through ejector hole 307.

[0043] The positioning hole 4011 and positioning block 4021 make it easy to position the ejector plate 401 and ejector base plate 402 during assembly, and the helical spring 4014 allows for quick reset after ejection.

[0044] Reference Figure 11 and Figure 15 The lower sealing plate 5 has four second pins 501 inside and four third pins 502 inside. Two mold feet 503 are fixedly connected to the upper surface of the lower sealing plate 5. A third clamping device 504 is fixedly connected inside each mold foot 503. Two limiting holes 505 are provided inside each mold foot 503. The second pins 501 are fixedly connected to the male template 3 through the limiting holes 505. The lower sealing plate 5 has a top outlet 506 in the middle. The male template 3 and the lower sealing plate 5 are fixedly connected by clamping the second pins 501 and the second clamping device 301. The lower sealing plate 5 and the limiting holes 505 are fixedly connected by clamping the third pins 502 and the third clamping device 504.

[0045] The connection between the male template 3 and the lower sealing plate 5 is fixed by clamping the second pin 501 and the second clamping device 301, making it easy to disassemble and assemble the male template 3 and the lower sealing plate 5. The connection between the lower sealing plate 5 and the limiting port 505 is fixed by clamping the third pin 502 and the third clamping device 504, making it easy to disassemble and assemble the lower sealing plate 5 and the limiting port 505.

[0046] Working principle of the invention:

[0047] During die-casting mold assembly, firstly, the female mold core (the core component in the mold used to shape the outer surface of the product, which, together with the male mold core, forms the complete cavity of the product) is placed into the female mold plate 2. Then, the female mold core is fixed with screws through the female mold fixing hole 205. Next, the guide sleeve 203 is inserted from the upper surface into the corresponding hole on the female mold plate 2. Then, the first pin 101 is inserted from the upper surface of the upper sealing plate 1 and then into the corresponding hole on the upper surface of the female mold plate 2. When the first pin 101 is inserted to a certain depth, the clamping arm 20124 will slightly open under the action of the first pin 101. The opening of the clamping arm 20124 causes the limiting spring 20125 to compress and store force. When the groove on the surface of the first pin 101 passes through the clamping arm 201... At 24:00, the clamping arm 20124 will reset under the action of the limit spring 20125, causing the first pin 101 to clamp with the clamping arm 20124, thereby achieving the clamping effect and fixing the upper sealing plate 1 and the female template 2. When the upper sealing plate 1 and the female template 2 are fixed, the guide sleeve 203 is embedded inside. Then, the male mold core (the male mold core refers to the part in the mold that forms the inner surface or internal structure of the product, generally referred to as the male mold side) is placed into the male template 3. Then, the male mold core is fixed with screws through the male mold fixing hole 305. Then, the slider 302 is fixed on the male template 3. Then, the guide post 303 is inserted into the corresponding hole on the male template 3 from the lower surface. Then, the return pin 4012 is inserted from the lower surface of the ejector plate 401. Finally, the coil spring 4014 is inserted. Each return pin 4012 is fitted onto a return pin 4012, which is then inserted into the return pin hole 306 on the male template 3. The ejector pin 4013 is then inserted from the lower surface of the ejector plate 401 and into the ejector pin hole 307 on the male template 3. The ejector base plate 402 is then aligned with the positioning hole 4011 on the ejector plate 401 via the positioning block 4021, thus initially fixing the ejector plate 401 and ejector base plate 402. The clamping pin 4022 is then inserted from the lower surface of the ejector base plate 402. The ejector post 40224 is then pressed upwards. The upward movement of the ejector post 40224 compresses the locking block 40223, causing the locking block 40223 to move away from the center, thus fixing the clamping pin 4022 and the ejector plate 401. 1. Internal locking, thereby re-fixing the ejector plate 401 and ejector base plate 402. Then, insert the third pin 502 from the lower surface of the lower sealing plate 5, and install the mold foot 503 on the lower sealing plate 5, so that the third pin 502 is inserted into the mold foot 503. The third pin 502 is locked by the third locking device 504 inside the mold foot 503, thereby fixing the mold foot 503 to the lower sealing plate 5. Then, insert the second pin 501 from the lower surface of the lower sealing plate 5, pass through the limiting hole 505 and insert into the lower surface of the male template 3. When inserted into the fixed position, the second pin 501 will lock with the second locking device 301, thereby fixing the male template 3 and the lower sealing plate 5. When the male template 3 and the lower sealing plate 5 are fixed, the guide post 303 is embedded inside.Next, by connecting the guide sleeve 203 on the female mold plate 2 with the guide post 303 on the male mold plate 3, when the mold is closed to a certain position, the sliding post 202 on the female mold plate 2 is inserted into the slider 302 on the male mold plate 3. When fully closed, the sliding post 202 will drive the slider 302 to move towards the center, and the slider 302 will clamp the male mold core when closed. The gas generated by the compression of the guide sleeve 203 and the guide post 303 will be discharged through the corresponding vent 103 on the upper sealing plate 1. At this time, the mold assembly is complete and die casting can be performed.

[0048] When disassembling after die casting, first insert the lifting ring into the lifting ring hole 204 to separate the female mold 2 from the male mold 3. Then pull the pull rod 20111 outward. The force on the pull rod 20111 will pull the long rod 20112. The movement of the long rod 20112 will cause the connecting block 20114 to move towards the limiting post 20113. Since a return spring 20115 is fixedly connected between the connecting block 20114 and the limiting post 20113, and the limiting post 20113 is fixed inside the female mold 2, the return spring 20115 will be compressed under the action of the connecting block 20114. Since the connecting block 20114 and the moving rod 20121 are fixedly connected by the collar 2013, when the connecting block 20114 moves towards the limiting post 20113, the return spring 20115 will be compressed under the action of the connecting block 20114. Since the connecting block 20114 and the moving rod 20121 are fixedly connected by the collar 2013, when the connecting block 20114 moves towards the limiting post 20113, the return spring 20115 will be compressed under the action of the connecting block 20114. When column 20113 moves, it drives moving rod 20121 to move towards limiting column 20113. The force on moving rod 20121 causes connecting rod 20123 to move accordingly, and the force on connecting rod 20123 causes clamping arm 20124 to move accordingly. However, since clamping arm 20124 is embedded in limiting block 20122 through limiting hole 20126, it moves within limiting block 20122. Because the direction of movement of clamping arm 20124 within limiting block 20122 forms a certain angle with the direction of movement of moving rod 20121, clamping arm 20124 will open, thereby loosening the clamping of first pin 101, achieving a loosening effect, and thus allowing the first pin 101 to be released. 1. Remove the upper sealing plate 1 from the mother template 2. When the pull rod 20111 is released, the return spring 20115 is compressed and stored, causing the linkage block 20114 to move in the opposite direction. The movement of the linkage block 20114 will drive the long rod 20112 to move, and the long rod 20112 will drive the pull rod 20111 to move towards the limit post 20113, thus restoring the pull rod 20111 to its original position. The linkage block 20114 will then drive the moving rod 20121 to move in the opposite direction. The force on the moving rod 20121 will drive the connecting rod 20123 to move accordingly, and the force on the connecting rod 20123 will drive the clamping arm 20124 to move accordingly, thus causing the clamping arm 20124 to move. The original state is restored, thus achieving the reset effect. Similarly, the second clamping device 301 is loosened to remove the second pin 501, thereby disassembling the male template 3 and the lower sealing plate 5. Similarly, the third clamping device 504 is loosened to remove the third pin 502, thereby disassembling the mold foot 503 and the lower sealing plate 5. Then, the ejector pin 40224 in the clamping pin 4022 is pulled out. Since the internal part of the locking block 40223 is fixedly connected to the spring assembly 40222, the locking block 40223 is restored to its original state under the pulling force of the spring assembly 40222, so the clamping pin 4022 can be removed, thereby disassembling the ejector plate 401 and the ejector base plate 402, thus completing the rapid disassembly of the die-casting mold.

[0049] In conclusion, the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A easily disassembled titanium casting die-casting mold, comprising an upper sealing plate (1), characterized in that: The lower surface of the upper sealing plate (1) is fitted with a female template (2), the lower surface of the female template (2) is fitted with a male template (3), the lower surface of the male template (3) is fitted with an ejector plate (4), the lower surface of the ejector plate (4) is fitted with a lower sealing plate (5), the ejector plate (4) is composed of an ejector panel (401) and an ejector base plate (402), the upper sealing plate (1) has four first pins (101) inside, the upper sealing plate (1) has a pouring gate (102) at its center, and the lower surface of the upper sealing plate (1) has four vents (103). The plate (1) has a first lifting eye hole (104) on both sides. The mother template (2) has two first clamping devices (201) fixedly connected inside. The lower surface of the mother template (2) has three sliding columns (202). The mother template (2) has four guide sleeves (203) inside. The mother template (2) has a second lifting eye hole (204) on both sides. The mother template (2) has four mother mold fixing holes (205) inside. The upper sealing plate (1) and the mother template (2) are fixedly connected by the first pin (101) and the first clamping device (201) clamping together. The first clamping device (201) consists of a disassembly device (2011), a caliper (2012), and a collar (2013). The disassembly device (2011) has collars (2013) fixedly connected to both ends, and each collar (2013) has a caliper (2012) fixedly connected to the other end. The disassembly device (2011) consists of a pull rod (20111), a long rod (20112), a limiting post (20113), a connecting block (20114), and a return spring (20115). The pull rod (20111) has two ends... All are movably connected by bolts to long rods (20112), and the other end of each long rod (20112) is movably connected by bolts to a connecting block (20114). Two return springs (20115) are fixedly connected to the right side of the connecting block (20114), and the other end of each return spring (20115) is fixedly connected to a limiting post (20113). A pull rod (20111) is movably connected to the cylindrical outer surface of the limiting post (20113), and the limiting post (20113) is fixedly connected to the inside of the mother template (2). The caliper (2012) consists of a moving rod (20121), a limiting block (20122), a connecting rod (20123), a clamping arm (20124), a limiting spring (20125), and a limiting hole (20126). One end of the moving rod (20121) has connecting rods (20123) movably connected to its upper and lower surfaces via bolts. The other end of each connecting rod (20123) has a clamping arm (20124) movably connected via bolts. Each clamping arm (20124) has a limiting spring (20126) fixedly connected to its outer surface. 25), the other end of the moving rod (20121) is fixedly connected to a collar (2013), the other end of the collar (2013) is fixedly connected to a connecting block (20114), the outer surface of the moving rod (20121) is provided with a limiting block (20122), the limiting block (20122) is fixedly connected to the inside of the mother template (2), both ends of the limiting block (20122) are provided with limiting holes (20126), the limiting block (20122) is movably connected to the clamping arm (20124) through the limiting holes (20126).

2. The easily disassembled titanium casting die-casting mold according to claim 1, characterized in that: The male template (3) is provided with two second clamping devices (301) inside. Three sliders (302) are movably connected to the upper surface of the male template (3). The male template (3) is provided with four guide pillars (303) inside. The two ends of the male template (3) are provided with lifting eye holes (304). The male template (3) is provided with four male mold fixing holes (305) inside. The male template (3) is provided with four return pin holes (306) inside. The male template (3) is provided with multiple ejector pin holes (307) inside. Each slider (302) and the slider (202) are embedded through the groove inside the slider (302). The female template (2) and the male template (3) are embedded through the guide sleeve (203) and the guide pillar (303).

3. The easily disassembled titanium casting die-casting mold according to claim 1, characterized in that: The ejector panel (401) has four positioning holes (4011) inside, four return pins (4012) inside, and multiple ejector pins (4013) inside. Each return pin (4012) is fitted with a helical spring (4014). Each return pin (4012) is embedded into the male template (3) through the return pin hole (306), and each ejector pin (4013) is embedded into the male template (3) through the ejector pin hole (307).

4. The easily disassembled titanium casting die-casting mold according to claim 1, characterized in that: The upper surface of the ejector base plate (402) is provided with four positioning blocks (4021), and the interior of the ejector base plate (402) is provided with four locking pins (4022). Each locking pin (4022) is provided with a square post (40221). The four walls of the square post (40221) are fixedly connected with spring groups (40222). The other end of the spring group (40222) is fixedly connected with a locking block (40223). The interior of the locking pin (4022) is provided with a top post (40224). The ejector panel (401) and the ejector base plate (402) are fixedly connected by the locking pins (4022).

5. The easily disassembled titanium casting die-casting mold according to claim 1, characterized in that: The lower sealing plate (5) has four second pins (501) inside and four third pins (502) inside. The upper surface of the lower sealing plate (5) is fixedly connected to two mold feet (503). Each mold foot (503) is fixedly connected to a third clamping device (504). Each mold foot (503) is provided with two limiting ports (505). The second pins (501) are fixedly connected to the male template (3) through the limiting ports (505). The lower sealing plate (5) has a top outlet (506) in the middle.

6. The easily disassembled titanium casting die-casting mold according to claim 1, characterized in that: The male template (3) and the lower sealing plate (5) are fixedly connected by clamping between the second pin (501) and the second clamping device (301), and the lower sealing plate (5) and the limiting port (505) are fixedly connected by clamping between the third pin (502) and the third clamping device (504).

Citation Information

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