Intelligent induction type automatic opening and closing formwork device

Through the intelligent induction automatic opening and closing mold frame device, the problem of traditional mold frame requiring multiple staff to cooperate with fixing the mold is solved by using technologies such as visual sensors, pressure sensors and telescopic rods, and the problem of the traditional mold frame requires multiple staff to cooperate with the fixing of the mold, realizing automatic fixing and ejecting of the mold, improving efficiency and reducing labor intensity.

CN120116408AInactive Publication Date: 2025-06-10SUZHOU DINGXIANG MOLD CO LTD
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Patent Information

Application Number
CN202510318228.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional mold frames require the cooperation of multiple staff members when fixing molds, which increases labor intensity and reduces fixing efficiency.

Method used

Design an intelligent induction automatic opening and closing mold frame device, using visual sensors, pressure sensors and telescopic rods and other technologies to realize automatic fixing and ejection of the mold and reduce manual intervention.

Benefits of technology

The mold is fixed and ejected through automated means, which significantly reduces the labor intensity of workers and improves the efficiency of mold fixing and workpiece removal.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent induction type automatic opening and closing mold frame device, and relates to the technical field of mold frames, the intelligent induction type automatic opening and closing mold frame device comprises a main body mechanism, and an ejection mechanism is arranged on the inner surface wall of the main body mechanism; in the use process, under the action of a visual sensor and a first detection device, when it is detected that a worker carries a mold to be close to the mold frame, and meanwhile under the action of a pressure sensor, it is not detected that the mold is placed; a second telescopic rod is controlled under the action of a first detection device to enable a limiting block not to play a role in limiting and fixing a limiting plate any more, then a first telescopic rod is controlled to open a top plate, and after a mold is placed, the mold can be fixed and supported under the action of structures such as the first telescopic rod and the second telescopic rod; by means of the structure and the method, when the mold is placed and fixed, excessive intervention of workers can be avoided, the labor intensity of the workers is greatly reduced, and the fixing efficiency of the mold is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of die sets, and particularly to a die set device with intelligent induction automatic opening and closing. Background Art

[0002] In modern manufacturing, molds are important process equipment for producing various components, and are widely used in many fields such as automobile manufacturing, electronic equipment production, plastic product processing, and aerospace. From large covering part molds for automobile bodies to precision injection molds in electronic equipment, the quality and performance of molds directly determine the accuracy, quality, and production efficiency of products. As the basic support structure of the mold, the die set not only provides an installation and positioning platform for each component of the mold, but also plays a key role in the opening and closing process of the mold.

[0003] In the prior art, when injecting and manufacturing workpieces, the injection lower mold needs to be placed inside the die set and fixed to make the mold more stable during the subsequent injection molding process, and at the same time improve the production quality of the workpieces. However, when the traditional mold is placed inside the die set for fixation, it is necessary to cooperate with multiple staff members to open and close the die set, and various tools are required to fix the mold effectively. This will not only increase the labor intensity of the staff, but also reduce the fixation efficiency of the mold. Summary of the Invention

[0004] The purpose of the present invention is to provide a die set device with intelligent induction automatic opening and closing, so as to solve the problem that the traditional die set requires the cooperation of multiple staff members to fix the mold, which will increase the labor intensity of the staff as mentioned in the above background.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A die set device with intelligent induction automatic opening and closing, including a main body mechanism, and an ejection mechanism is arranged on the inner wall of the main body mechanism;

[0006] The main body mechanism includes a bottom plate, a visual sensor is fixedly installed on one side of the outer wall of the bottom plate, two support columns are fixedly installed on the top of the bottom plate, a top plate is arranged between the outer surfaces of the two support columns, two first fixing blocks are fixedly installed on the bottom of the top plate, two second fixing blocks are fixedly installed on the top of the bottom plate, the outer surfaces of the two second fixing blocks are both movably sleeved with first telescopic rods, and the inner wall of the first telescopic rod is movably connected with the outer surface of the first fixing block. Two fixing columns are fixedly installed on the top of the bottom plate, fixing boxes are fixedly installed on one side of the outer walls of the two fixing columns, fixing grooves are opened on one side of the outer walls of the two fixing boxes, second telescopic rods are fixedly inserted into the inner walls of the two fixing grooves, and movable plates are movably embedded in the inner walls of the two fixing boxes.

[0007] Preferably, a plurality of limiting blocks are fixedly installed on one side of the outer walls of the two movable plates, two limiting plates are fixedly installed at the bottom of the top plate, a plurality of limiting grooves are formed in the outer surfaces of the two limiting plates, and the outer surfaces of the limiting plates are movably inserted into the limiting grooves. A housing is fixedly installed on the top of the bottom plate, and a first detection device is arranged inside the housing.

[0008] Preferably, the ejection mechanism includes a mounting frame. Two fixing frames are fixedly installed on the outer surface of the mounting frame. Temperature sensors are fixedly inserted into the inner surfaces of the two fixing frames. A placement groove is formed at the top of the mounting frame. A pressure sensor is fixedly installed at the bottom of the inner wall of the placement groove. A lower mold is arranged on the inner surface of the placement groove. Four circular grooves are formed at the bottom of the lower mold. An installation groove is formed in the outer surface of the mounting frame. Four installation columns are fixedly installed at the bottom of the inner wall of the installation groove. Thrust rods are movably inserted into the inner surfaces of the four installation columns. Two groups of first support plates are fixedly installed at the bottom of the inner wall of the installation groove. A set of first bearings are fixedly installed on the inner surfaces of the two groups of first support plates. A first circular shaft is fixedly inserted between the inner surfaces of each group of the two groups of first bearings.

[0009] Preferably, two transmission gears are fixedly sleeved on the outer surfaces of the two first circular shafts, and the outer surfaces of the transmission gears are meshed with the outer surfaces of the thrust rods. Two first bevel gears are fixedly sleeved on the outer surfaces of the two first circular shafts. Two second support plates are fixedly installed at the bottom of the inner wall of the installation groove.

[0010] Preferably, second bearings are fixedly inserted into the inner surfaces of the two second support plates, and a second circular shaft is fixedly inserted between the inner surfaces of the two second bearings.

[0011] Preferably, two second bevel gears are fixedly sleeved on the outer surface of the second circular shaft, and the outer surfaces of the second bevel gears are meshed with the outer surfaces of the first bevel gears. Two worm wheels are fixedly sleeved on the outer surfaces of the two second circular shafts.

[0012] Preferably, two fixing plates are fixedly installed at the bottom of the inner wall of the installation groove. A worm is movably inserted between the inner surfaces of the two fixing plates, and the outer surface of the worm is meshed with the outer surface of the worm wheel.

[0013] Preferably, a first gear is fixedly sleeved on the outer surface of the worm. A motor is fixedly installed at the bottom of the inner wall of the installation groove. A second gear is fixedly sleeved on the output end of the motor, and the outer surface of the second gear is meshed with the outer surface of the first gear. A box body is fixedly installed at the bottom of the inner wall of the installation groove. A second detection device is fixedly installed at the bottom of the inner wall of the box body.

[0014] Preferably, two positioning blocks are fixedly installed at the bottom of the inner wall of the placement groove. Two positioning grooves are formed at the bottom of the lower mold, and the outer surface of the positioning block is movably inserted into the inside of the positioning groove. Sealing rings are arranged on the outer surfaces of the four ejector rods.

[0015] Preferably, the top of the bottom plate is fixedly connected to the bottom of the mounting frame, and the bottom of the top plate is in contact with the top of the lower mold.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0017] 1. During the use of the present invention, when it is necessary to place the mold inside the mold frame for fixation, first, under the operation of the staff, the mold frame is carried to a suitable position. Under the action of the visual sensor and the first detection device, it is judged whether the staff is approaching with the mold. When it is detected that the staff is approaching the mold frame with the mold, and at the same time, under the action of the pressure sensor, it can be detected whether there is already a mold fixed inside the mold frame. When it is not detected that there is a mold placed, at this time, under the action of the first detection device, a control signal can be issued to control the second telescopic rod to drive the movable plate to move, so that the limiting block no longer plays a role in limiting and fixing the limiting plate. Subsequently, control the first telescopic rod to open the top plate. After the mold is placed, under the action of structures such as the first telescopic rod, the second telescopic rod, and the movable plate, the mold can be fixed and supported, making the mold more stable during use. By the above structure and method for placing and fixing the mold, excessive intervention of the staff can be avoided, greatly reducing the labor intensity of the staff and improving the fixing efficiency of the mold.

[0018] 2. During the use of the present invention, when the mold is fixed and the workpiece is injection-molded, under the action of the temperature sensor, the temperature of the mold can be measured and detected. When the temperature of the mold drops to a certain value, it proves that the raw material inside the mold has been solidified and formed. At this time, the second detection device will send a signal to control the motor to work and drive the second gear to rotate. At the same time, under the action of the first gear, the worm is driven to rotate. Subsequently, under the action of structures such as the worm gear, the second circular shaft, the second bevel gear, the first bevel gear, and the second circular shaft, the ejector rod can be driven to move upward, so as to eject the formed workpiece inside the mold, making it more convenient to take out, providing great convenience for the staff and improving the continuous injection-molding efficiency of the workpiece.

[0019] 3. In the use of the present invention, when the mold needs to be placed inside the mold base after the mold base is opened, the positioning block and the positioning groove can play a role in positioning the mold during the placement process, avoiding placing the mold in an inappropriate position, which may affect the subsequent injection molding of workpieces. When the mold is fixed during the raw material injection process, the sealing ring can prevent the raw material inside the mold from leaking through the circular groove, thus avoiding the waste of workpiece raw materials and reducing resource consumption. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is a perspective view of a mold base device with intelligent induction automatic opening and closing according to the present invention;

[0021] Figure 2 is a perspective view of the main mechanism of a mold base device with intelligent induction automatic opening and closing according to the present invention;

[0022] Figure 3 is an exploded view of the main mechanism of a mold base device with intelligent induction automatic opening and closing according to the present invention;

[0023] Figure 4 is an enlarged view of structure A of a mold base device with intelligent induction automatic opening and closing according to the present invention;

[0024] Figure 5 is a partial exploded view of the main mechanism of a mold base device with intelligent induction automatic opening and closing according to the present invention;

[0025] Figure 6 is a perspective view of the ejection mechanism of a mold base device with intelligent induction automatic opening and closing according to the present invention;

[0026] Figure 7 is an exploded view of the ejection mechanism of a mold base device with intelligent induction automatic opening and closing according to the present invention;

[0027] Figure 8 is a partial exploded view of the top mechanism of a mold base device with intelligent induction automatic opening and closing according to the present invention;

[0028] Figure 9 is a sectional exploded view of the ejection mechanism of a mold base device with intelligent induction automatic opening and closing according to the present invention;

[0029] Figure 10 is a sectional view of the top mechanism of a mold base device with intelligent induction automatic opening and closing according to the present invention.

[0030] In the figure: 1. Main body mechanism; 11. Bottom plate; 111. Vision sensor; 112. Support column; 12. Top plate; 121. First fixing block; 13. Second fixing block; 131. First telescopic rod; 14. Fixed column; 141. Fixed box; 142. Fixed slot; 143. Second telescopic rod; 144. Movable plate; 145. Limiting block; 15. Limiting plate; 151. Limiting slot; 16. Outer shell; 161. First detection device; 2. Ejecting mechanism; 21. Mounting frame; 211. Fixed frame; 212. Temperature sensor; 213. Placing slot; 214. Positioning block; 215. Pressure sensor; 22. Lower die; 221. Positioning slot; 222. Circular slot; 23. Mounting slot; 231. Mounting column; 232. Ejecting rod; 233. Sealing ring; 24. First support plate; 241. First bearing; 242. First circular shaft; 243. Transmission gear; 244. First bevel gear; 25. Second support plate; 251. Second bearing; 252. Second circular shaft; 253. Second bevel gear; 254. Worm gear; 26. Fixed plate; 261. Worm; 262. First gear; 27. Motor; 271. Second gear; 28. Box body; 281. Second detection device. Detailed implementation manners

[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0032] Embodiment 1, referring to Figures 1 - 10 As shown: The present invention provides a mold base device with intelligent induction and automatic opening and closing, including a main body mechanism 1, and an ejecting mechanism 2 is arranged on the inner wall of the main body mechanism 1;

[0033] The main body mechanism 1 includes a bottom plate 11. On one side of the outer wall of the bottom plate 11, a vision sensor 111 is fixedly installed. On the top of the bottom plate 11, two support columns 112 are fixedly installed. Between the outer surfaces of the two support columns 112, a top plate 12 is provided. At the bottom of the top plate 12, two first fixing blocks 121 are fixedly installed. On the top of the bottom plate 11, two second fixing blocks 13 are fixedly installed. A first telescopic rod 131 is movably sleeved on the outer surfaces of the two second fixing blocks 13, and the inner surface of the first telescopic rod 131 is movably connected to the outer surface of the first fixing block 121. On the top of the bottom plate 11, two fixing columns 14 are fixedly installed. On one side of the outer walls of the two fixing columns 14, fixing boxes 141 are fixedly installed. On one side of the outer walls of the two fixing boxes 141, fixing grooves 142 are opened. A second telescopic rod 143 is fixedly inserted into the inner surfaces of the two fixing grooves 142. Movable plates 144 are movably embedded in the inner surfaces of the two fixing boxes 141. On one side of the outer walls of the two movable plates 144, a plurality of limiting blocks 145 are fixedly installed. At the bottom of the top plate 12, two limiting plates 15 are fixedly installed. On the outer surfaces of the two limiting plates 15, a plurality of limiting grooves 151 are opened, and the outer surfaces of the limiting plates 15 are movably inserted into the inside of the limiting grooves 151. On the top of the bottom plate 11, a housing 16 is fixedly installed. Inside the housing 16, a first detection device 161 is provided. At the bottom of the inner wall of the placement groove 213, a pressure sensor 215 is fixedly installed.

[0034] In this embodiment, when it is necessary to use a mold to perform injection molding on a workpiece, first, the mold needs to be placed on the mold base for fixed support. Under the operation of the staff, the mold is carried to the vicinity of the mold base. Under the action of the vision sensor 111, information about the staff carrying the mold is collected and transmitted to the first detection device 161 for detection. Through the internal detection module and controller thereof, the signal transmitted by the vision sensor 111 can be detected. When it is detected that the staff has carried the mold to the vicinity of the mold base, and under the action of the pressure sensor 215, it can be judged whether a mold has been placed inside the mold base through the pressure value. When it is detected that no mold is placed inside the mold base, the first detection device 161 will send a signal to control the second telescopic rod 143 to work, driving the movable plate 144 to move outward inside the fixed box 141 and driving the limit block 145 to move, so that it is taken out from the limit slot 151, and the limit block 145 no longer plays a role in fixing and limiting the limit plate 15. Subsequently, under the action of the first telescopic rod 131, the first fixing block 121 and the second fixing block 13, the top plate 12 is driven to rotate, and the limit plate 15 is taken out from the fixed box 141, so that the top plate 12 is opened. Then, under the operation of the staff, the mold is placed inside the mold base. When the mold is placed at a suitable position inside the mold base, the pressure sensor 215 will be squeezed. When the pressure sensor 215 receives a preset pressure value, under the action of the first detection device 161, the first telescopic rod 131 can be controlled to drive the top plate 12 to rotate to close it, and the limit plate 15 is inserted into the fixed box 141. Subsequently, under the action of the second telescopic rod 143, the movable plate 144 is driven to move to a suitable position, and the limit block 145 is inserted into the limit slot 151, so as to fix the top plate 12 and prevent the mold from being displaced during subsequent use, which affects the injection molding of the workpiece. When the mold needs to be taken out from the mold base after use, the control switch inside the first detection device 161 is operated by the staff to control the first telescopic rod 131 and the second telescopic rod 143 to work, so that the top plate 12 is opened, and the mold is taken out from the mold base. Through the above method, when fixing the mold, excessive intervention of the staff can be avoided, greatly reducing the labor intensity of the staff and improving the fixing efficiency of the mold.

[0035] Embodiment 2, according to Figure 1 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10As shown, the ejection mechanism 2 includes a mounting frame 21. Two fixing frames 211 are fixedly installed on the outer surface wall of the mounting frame 21. Temperature sensors 212 are fixedly inserted into the inner surface walls of the two fixing frames 211. A placement groove 213 is formed at the top of the mounting frame 21. A lower mold 22 is arranged on the inner surface wall of the placement groove 213. Four circular grooves 222 are formed at the bottom of the lower mold 22. An installation groove 23 is formed on the outer surface wall of the mounting frame 21. Four installation posts 231 are fixedly installed at the bottom of the inner wall of the installation groove 23. Ejector rods 232 are movably inserted into the inner surface walls of the four installation posts 231. Two groups of first support plates 24 are fixedly installed at the bottom of the inner wall of the installation groove 23. A group of first bearings 241 are fixedly installed on the inner surface walls of the two groups of first support plates 24. A first circular shaft 242 is fixedly inserted between the inner surface walls of each group of the two groups of first bearings 241. Two transmission gears 243 are fixedly sleeved on the outer surface walls of the two first circular shafts 242. The outer surface wall of the transmission gear 243 meshes with the outer surface wall of the ejector rod 232. Two first bevel gears 244 are fixedly sleeved on the outer surface walls of the two first circular shafts 242. Two second support plates 25 are fixedly installed at the bottom of the inner wall of the installation groove 23. Second bearings 251 are fixedly inserted into the inner surface walls of the two second support plates 25. A second circular shaft 252 is fixedly inserted between the inner surface walls of the two second bearings 251. Two second bevel gears 253 are fixedly sleeved on the outer surface wall of the second circular shaft 252. The outer surface wall of the second bevel gear 253 meshes with the outer surface wall of the first bevel gear 244. Two worm wheels 254 are fixedly sleeved on the outer surface walls of the two second circular shafts 252. Two fixing plates 26 are fixedly installed at the bottom of the inner wall of the installation groove 23. A worm 261 is movably inserted between the inner surface walls of the two fixing plates 26. The outer surface wall of the worm 261 meshes with the outer surface wall of the worm wheel 254. A first gear 262 is fixedly sleeved on the outer surface wall of the worm 261. A motor 27 is fixedly installed at the bottom of the inner wall of the installation groove 23. A second gear 271 is fixedly sleeved on the output end of the motor 27. The outer surface wall of the second gear 271 meshes with the outer surface wall of the first gear 262. A box body 28 is fixedly installed at the bottom of the inner wall of the installation groove 23. A second detection device 281 is fixedly installed at the bottom of the inner wall of the box body 28.

[0036] In this embodiment, after the lower mold 22 is fixed, under the action of an external device, the upper mold moves downward to a proper position, the upper mold is combined with the lower mold 22, and injection molding raw materials are conveyed into the mold. After the raw materials are conveyed, under the action of the temperature sensor 212, the temperature of the lower mold 22 can be collected and transmitted to the inside of the second detection device 281. Under the action of the detection module, control module, and transmission module inside the second detection device 281, the temperature collected by the temperature sensor 212 can be detected. When the temperature of the lower mold 22 drops to a preset value, the upper mold is driven by the external device to move upward to a proper position. At the same time, the control module will send a signal to control the motor 27 to work and drive the second gear 271 to rotate. At the same time, under the action of the first gear 262, the worm 261 can be driven to rotate. By the rotation of the worm 261, the worm wheel 254, the second round shaft 252, and the second bevel gear 253 can be driven to rotate clockwise. And under the action of the first bevel gear 244, the first round shaft 242 and the transmission gear 243 on one side of the mold base can be driven to rotate counterclockwise, and the first round shaft 242 and the transmission gear 243 on the other side rotate clockwise, so as to drive the ejector rod 232 to move upward inside the mounting post 231, playing an ejecting role on the workpiece that has completed injection molding inside the lower mold 22, making it more convenient for the staff to take out the workpiece. After the workpiece is taken out, according to the above method, under the action of the motor 27, the ejector rod 232 returns to the initial position, thus facilitating the production of the next workpiece.

[0037] Embodiment 3. According to Figure 1 、 Figure 2 、 Figure 7 And Figure 9 As shown, two positioning blocks 214 are fixedly installed at the bottom of the inner wall of the placement groove 213. Two positioning grooves 221 are formed at the bottom of the lower mold 22, and the outer surface of the positioning block 214 is movably inserted into the positioning groove 221. Sealing rings 233 are arranged on the outer surfaces of the four ejector rods 232. The top of the bottom plate 11 is fixedly connected to the bottom of the mounting frame 21, and the bottom of the top plate 12 is in contact with the top of the lower mold 22.

[0038] In this embodiment, when the mold base is opened, when the staff places the mold into the mold base, under the action of the positioning block 214 and the positioning groove 221, the lower mold 22 can be positioned during the placement process, avoiding the position deviation of the lower mold 22 and affecting the subsequent injection molding of the workpiece. And during the subsequent injection molding of the workpiece, the displacement of the mold can be further avoided, greatly improving the injection molding effect of the workpiece. When the raw materials are conveyed into the mold, under the action of the sealing ring 233, the raw materials can be prevented from leaking from the round groove 222, thereby reducing the waste of resources and improving the resource utilization rate.

[0039] The working principle of the whole mechanism is as follows: When it is necessary to use the mold to inject and produce the workpiece, the lower mold 22 needs to be fixed inside the mold base. Through the operation of the staff, the mold is carried to the vicinity of the mold base. Under the action of the visual sensor 111, information about the staff carrying the mold is collected and transmitted to the first detection device 161 for detection. Through the detection module and controller inside it, the signal transmitted by the visual sensor 111 can be detected. When it is detected that the staff has carried the mold to the vicinity of the mold base, and under the action of the pressure sensor 215, it can be judged whether there is a mold placed inside the mold base through the pressure value. When it is detected that there is no mold placed inside the mold base, the first detection device 161 will send a signal to control the second telescopic rod 143 to work, driving the movable plate 144 to move outward inside the fixed box 141, and driving the limit block 145 to move, so that it is taken out from the limit slot 151, and the limit block 145 no longer plays a role in fixing and limiting the limit plate 15. Subsequently, under the action of the first telescopic rod 131, the first fixing block 121 and the second fixing block 13, the top plate 12 is driven to rotate, and the limit plate 15 is taken out from the fixed box 141, so that the top plate 12 is opened. Then, under the operation of the staff, the mold is placed inside the mold base, and under the action of the positioning block 214 and the positioning slot 221, the mold can be positioned to make it more stable in subsequent use. When the mold is placed in the appropriate position inside the mold base, the pressure sensor 215 will be squeezed. When the pressure sensor 215 receives the preset pressure value, under the action of the first detection device 161, the first telescopic rod 131 can be controlled to drive the top plate 12 to rotate to close it, and the limit plate 15 is inserted into the fixed box 141. Subsequently, under the action of the second telescopic rod 143, the movable plate 144 is driven to move to the appropriate position, and the limit block 145 is inserted into the limit slot 151, so as to fix the top plate 12 and prevent the mold from shifting during subsequent use, which affects the injection molding of the workpiece. Then, under the action of external equipment, the upper mold moves downward to the appropriate position, the upper mold is combined with the lower mold 22, and the injection molding raw material is conveyed into the mold. When the raw material conveying is completed, under the action of the temperature sensor 212, the temperature of the lower mold 22 can be collected and transmitted to the second detection device 281. Through the detection module, control module and transmission module inside the second detection device 281, the temperature collected by the temperature sensor 212 can be detected. When the temperature of the lower mold 22 drops to the preset value, the external equipment drives the upper mold to move upward to the appropriate position. At the same time, the control module will send a signal to control the motor 27 to work and drive the second gear 271 to rotate. At the same time, under the action of the first gear 262, the worm 261 can be driven to rotate. Through the rotation of the worm 261, the worm wheel 254, the second round shaft 252 and the second bevel gear 253 can be driven to rotate clockwise, and under the action of the first bevel gear 244,It can drive the first circular shaft 242 and the transmission gear 243 on one side of the mold base to rotate counterclockwise, and the first circular shaft 242 and the transmission gear 243 on the other side to rotate clockwise, thereby driving the ejector rod 232 to move upward inside the mounting post 231, playing an ejecting role for the workpiece that has completed injection molding inside the lower mold 22, making it more convenient for the staff to take out the workpiece. When it is necessary to take out the mold inside the mold base, by operating the control switch inside the first detection device 161 by the staff, the first telescopic rod 131 and the second telescopic rod 143 are controlled to work to open the top plate 12, so as to take out the mold from inside the mold base.

[0040] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. An intelligent inductive automatic opening and closing mold frame device, characterized in that: It comprises a main body mechanism (1), wherein the inner surface wall of the main body mechanism (1) is provided with an ejection mechanism (2); The main body mechanism (1) comprises a bottom plate (11), a visual sensor (111) is fixedly mounted on one side of an outer wall of the bottom plate (11), two support columns (112) are fixedly mounted on the top of the bottom plate (11), a top plate (12) is arranged between the outer walls of the two support columns (112), two first fixed blocks (121) are fixedly mounted on the bottom of the top plate (12), two second fixed blocks (13) are fixedly mounted on the top of the bottom plate (11), and the outer walls of the two second fixed blocks (13) are both movably sleeved with a first telescopic rod (121). 31), and the inner surface wall of the first telescopic rod (131) is movably connected to the outer surface wall of the first fixed block (121), two fixing columns (14) are fixedly installed on the top of the bottom plate (11), and a fixing box (141) is fixedly installed on one side of the outer wall of the two fixing columns (14), and a fixing groove (142) is opened on one side of the outer wall of the two fixing boxes (141), and the inner surface walls of the two fixing grooves (142) are fixedly inserted with a second telescopic rod (143), and the inner surface walls of the two fixing boxes (141) are movably embedded with a movable plate (144).

2. The intelligent inductive automatic opening and closing mold frame device according to claim 1, characterized in that: A plurality of limit blocks (145) are fixedly mounted on one side of the outer wall of the two movable plates (144); two limit plates (15) are fixedly mounted on the bottom of the top plate (12); a plurality of limit grooves (151) are provided on the outer walls of the two limit plates (15); and the outer walls of the limit plates (15) are movably inserted into the inner part of the limit grooves (151); a shell (16) is fixedly mounted on the top of the bottom plate (11); and a first detection device (161) is arranged inside the shell (16).

3. The intelligent inductive automatic opening and closing mold frame device according to claim 2, characterized in that: The ejection mechanism (2) comprises a mounting frame (21), two fixing frames (211) are fixedly mounted on the outer wall of the mounting frame (21), temperature sensors (212) are fixedly inserted on the inner walls of the two fixing frames (211), a placement groove (213) is provided on the top of the mounting frame (21), a pressure sensor (215) is fixedly mounted on the bottom of the inner wall of the placement groove (213), a lower mold (22) is provided on the inner wall of the placement groove (213), and four circular grooves (222) are provided on the bottom of the lower mold (22), The outer wall of the mounting frame (21) is provided with a mounting groove (23), the bottom of the inner wall of the mounting groove (23) is fixedly provided with four mounting columns (231), the inner walls of the four mounting columns (231) are movably provided with push rods (232), two groups of first support plates (24) are fixedly provided with the bottom of the inner wall of the mounting groove (23), the inner walls of the two groups of the first support plates (24) are fixedly provided with a group of first bearings (241), and a first round shaft (242) is fixedly provided between the inner walls of each group of the two groups of the first bearings (241).

4. The intelligent inductive automatic opening and closing mold frame device according to claim 3, characterized in that: Two transmission gears (243) are fixedly sleeved on the outer walls of the two first circular shafts (242), and the outer walls of the transmission gears (243) are meshed with the outer walls of the push rod (232). First bevel gears (244) are fixedly sleeved on the outer walls of the two first circular shafts (242), and two second support plates (25) are fixedly installed on the bottom of the inner wall of the installation groove (23).

5. The intelligent inductive automatic opening and closing mold frame device according to claim 4, characterized in that: A second bearing (251) is fixedly inserted into the inner surface walls of the two second support plates (25), and a second round shaft (252) is fixedly inserted between the inner surface walls of the two second bearings (251).

6. The intelligent inductive automatic opening and closing mold frame device according to claim 5, characterized in that: The outer wall fixing sleeve of the second circular shaft (252) is provided with two second bevel gears (253), and the outer wall of the second bevel gear (253) is meshed with the outer wall of the first bevel gear (244), and the outer wall fixing sleeves of the two second circular shafts (252) are provided with worm gears (254).

7. The intelligent inductive automatic opening and closing mold frame device according to claim 6, characterized in that: Two fixing plates (26) are fixedly mounted on the bottom of the inner wall of the mounting groove (23), a worm (261) is movably inserted between the inner surface walls of the two fixing plates (26), and the outer surface wall of the worm (261) is meshed with the outer surface wall of the worm wheel (254).

8. The intelligent inductive automatic opening and closing mold frame device according to claim 7, characterized in that: A first gear (262) is fixedly mounted on the outer wall of the worm (261); a motor (27) is fixedly mounted on the bottom of the inner wall of the mounting groove (23); a second gear (271) is fixedly mounted on the output end of the motor (27); the outer wall of the second gear (271) is meshed with the outer wall of the first gear (262); a box (28) is fixedly mounted on the bottom of the inner wall of the mounting groove (23); and a second detection device (281) is fixedly mounted on the bottom of the inner wall of the box (28).

9. The intelligent inductive automatic opening and closing mold frame device according to claim 8, characterized in that: Two positioning blocks (214) are fixedly mounted on the bottom of the inner wall of the placement groove (213); two positioning grooves (221) are provided on the bottom of the lower mold (22); and the outer walls of the positioning blocks (214) are movably inserted into the inner part of the positioning grooves (221); and the outer walls of the four push rods (232) are all provided with sealing rings (233).

10. The intelligent inductive automatic opening and closing mold frame device according to claim 9, characterized in that: The top of the bottom plate (11) is fixedly connected to the bottom of the mounting frame (21), and the bottom of the top plate (12) is in contact with the top of the lower mold (22).