Die detection equipment

The automated transmission and inspection of mold inspection equipment has solved the problem of low mold inspection efficiency and achieved an efficient and safe mold inspection process.

CN224052031UActive Publication Date: 2026-03-27CHENLING SEMICONDUCTOR (JIAXING) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In existing technologies, mold inspection is inefficient and requires manual operation, resulting in low efficiency.

Method used

A mold inspection device was designed, including a conveyor belt assembly, an inspection assembly, a mold pushing assembly, a lifting assembly, and a carrying assembly. It automatically conveys and pushes the mold to the inspection position, and combined with a limit plate and a safety light curtain, it achieves automated inspection and safety protection.

Benefits of technology

It improves the efficiency and safety of mold inspection, reduces manual operation, avoids interference and deviation during the inspection process, and improves output efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224052031U_ABST
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Abstract

The utility model discloses mold detection equipment, and relates to the technical field of LIPO packaging screens. The mold detection equipment comprises a conveying belt assembly, a detection assembly arranged on the side of the conveying belt assembly and a mold pushing assembly, and the mold pushing assembly comprises a mold pushing plate arranged in a translational mode and a first driving module used for driving the mold pushing plate to move. The mold pushing plate is located on the upper side of the conveying belt assembly and translates in the same direction as the conveying belt assembly to the detection assembly. According to the mold detection equipment, the mold pushing plate on the mold detection equipment can push the mold to the detection assembly in the translation process, a worker can directly detect the mold through the detection assembly, and the detection efficiency is effectively improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of LIPO encapsulation screen, in particular to a mold detection equipment. BACKGROUND

[0002] LIPO is a screen encapsulation technology, which protects the display screen wire connection by using high molecular material for liquid encapsulation, and then solidifies the high molecular material to make the high molecular material, display screen and mobile phone frame tightly combined, thereby reducing the frame width of the mobile phone screen.

[0003] In the processing process of the LIPO screen, a mold is usually used to load the screen, and before using the mold, the mold needs to be manually detected to ensure the cleanliness of the mold. In the prior art, the worker needs to manually take the mold and detect it, and the detection efficiency is low. UTILITY MODEL CONTENT

[0004] In order to overcome the shortcomings of the prior art, the present application provides a mold detection equipment capable of automatically sending the mold to the detection position.

[0005] The mold detection equipment provided by the present application adopts the following technical scheme:

[0006] A mold detection equipment, comprising a conveyor belt assembly, a detection assembly arranged on the side of the conveyor belt assembly, and a mold pushing assembly, wherein the mold pushing assembly comprises a mold pushing plate arranged in a translatable manner and a first driving module for driving the mold pushing plate to move, the mold pushing plate is located on the upper side of the conveyor belt assembly and its translation direction is the same as the direction from the conveyor belt assembly to the detection assembly.

[0007] By adopting the above technical scheme, the mold pushing plate can push the mold to the detection assembly during its translation, and the worker can directly detect the mold through the detection assembly, effectively improving the detection efficiency.

[0008] In a specific implementation scheme, the conveyor belt assembly comprises two belt conveyors arranged side by side and conveying in the same direction, and the mold detection equipment further comprises a first lifting assembly arranged between the two belt conveyors, wherein the first lifting assembly comprises a first lifting plate arranged in a liftable manner and a second driving module for driving the first lifting plate to lift.

[0009] By adopting the above technical scheme, the first lifting plate can lift the mold upward after the mold is conveyed in place, so that the mold can be separated from the belt conveyor, preventing the movement of the mold caused by the belt conveyor from interfering.

[0010] In an embodiment, the mold detection device further comprises a first bearing assembly, which comprises a first bearing frame arranged on the conveyor belt assembly, a first opening arranged on the first bearing frame, and two first limiting plates arranged on opposite ends of the first bearing frame, respectively, and the push mold plate is arranged on the upper side of the first bearing frame, and the arrangement direction of the two first limiting plates is perpendicular to the translation direction of the push mold plate.

[0011] By using the above technical scheme, the two first limiting plates can resist the two sides of the mold, respectively, to prevent the mold from deviating during movement.

[0012] In an embodiment, the conveyor belt assembly has a feeding position at the starting end of the conveying stroke, and the push mold assembly, the first lifting assembly, and the first bearing assembly are arranged at the feeding position.

[0013] In an embodiment, the conveyor belt assembly has a discharging position at the ending end of the conveying stroke, and the mold detection device further comprises a second lifting assembly arranged between the two belt conveyors and located at the discharging position, which comprises a second lifting plate that can be lifted and lowered, and a third driving module for driving the second lifting plate to lift and lower.

[0014] By using the above technical scheme, the worker can directly place the mold on the second lifting plate after detection is completed, and the mold after detection is completed is sent to the belt conveyor by the lowering of the second lifting plate to complete the discharging of the mold, thereby effectively improving the discharging efficiency of the mold.

[0015] In an embodiment, the mold detection device further comprises a second bearing assembly located at the discharging position, which comprises a second bearing frame arranged on the conveyor belt assembly, a second opening arranged on the second bearing frame, and two second limiting plates arranged on opposite ends of the second bearing frame, respectively, and the arrangement direction of the two second limiting plates is perpendicular to the translation direction of the push mold plate.

[0016] By using the above technical scheme, the worker can place the mold between the two second limiting plates to improve the placement accuracy of the mold and prevent interference with the lowering of the second lifting plate due to the deviation of the mold placement.

[0017] In an embodiment, the detection assembly comprises a detection table, and a detection module and a display module are arranged on the detection table, and the upper surface of the first bearing frame is at the same height as the table surface of the detection table.

[0018] By using the above technical scheme, the mold can be smoothly transferred between the first bearing frame and the detection table with consistent height.

[0019] In one specific implementation, the detection table is further provided with a safety light barrier away from one side of the conveying belt assembly.

[0020] By using the above technical solution, the safety light barrier can identify the worker's arm to prevent safety accidents caused by employee misoperation.

[0021] In summary, the present application has at least one of the following beneficial technical effects:

[0022] The mold pushing plate can push the mold to the detection assembly during translation, and the worker can directly detect the mold through the detection assembly without manually grabbing the mold, effectively improving the detection efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0023] Fig. 1 is a structural schematic diagram of a mold detection equipment according to an embodiment of the present application.

[0024] Fig. 2 is a longitudinal sectional schematic diagram of a mold detection equipment according to an embodiment of the present application.

[0025] MARKED FOR EXPLANATION:

[0026] 1, conveying belt assembly; 11, belt conveyor; 2, detection assembly; 21, detection table; 22, detection module; 23, display module; 3, mold pushing assembly; 31, mold pushing plate; 32, first driving module; 4, first jacking assembly; 41, first jacking plate; 42, second driving module; 5, first bearing assembly; 51, first bearing frame; 52, first opening; 53, first limiting plate; 6, second jacking assembly; 61, second jacking plate; 62, third driving module; 7, second bearing assembly; 71, second bearing frame; 72, second opening; 73, second limiting plate; 8, safety light barrier; 9, base; 10, button assembly; 101, qualified button; 102, NG button. DETAILED DESCRIPTION

[0027] The present application will be further described in detail below in conjunction with the accompanying drawings.

[0028] Referring to Figs. 1-2 shown, which shows a mold detection equipment, including a base 9, the base 9 is provided with a conveying belt assembly 1, a detection assembly 2 and a mold pushing assembly 3. The conveying belt assembly 1 and the detection assembly 2 are respectively located on both sides of the base 9 in the width direction, and the mold pushing assembly 3 is located above the conveying belt assembly 1.

[0029] The conveying belt assembly 1 comprises two belt conveyors 11 arranged side by side, and the conveying directions of the two belt conveyors 11 are the same as the length direction of the base 9. The detection assembly 2 comprises a detection table 21, and the detection table 21 is provided with a detection module 22 and a display module 23. The detection module 22 and the display module 23 are a microscope and a display respectively suspended above the detection table 21, and the microscope and the display are electrically connected. The mold pushing assembly 3 comprises a mold pushing plate 31 arranged in a translatable manner, and a first driving module 32 for driving the mold pushing plate 31 to move. The first driving module 32 is a linear motor, and the mold pushing plate 31 is located on the upper side of the conveying belt assembly 1 and has a translation direction the same as the direction from the conveying belt assembly 1 to the detection assembly 2.

[0030] During detection, the worker is located on the side of the detection table 21 away from the conveying belt assembly 1. The conveying belt assembly 1 conveys the mold to the mold pushing assembly 3. The mold pushing plate 31 moves and pushes the mold to the detection table 21. At this time, the worker can directly move the mold below the microscope and detect the mold through the microscope, thereby effectively improving the detection efficiency.

[0031] In the embodiment, the conveying belt assembly 1 has a feeding position at the first end of the conveying stroke, and the mold pushing assembly 3 is located on the upper side of the feeding position. A first lifting assembly 4 is further arranged between the two belt conveyors 11, and the first lifting assembly 4 is located at the feeding position and comprises a first lifting plate 41 arranged in a liftable manner and a second driving module 42 for driving the first lifting plate 41 to lift. The second driving module 42 is a pneumatic cylinder, and the first lifting plate 41 can lift the mold upward after the mold is conveyed to the feeding position, so that the mold can be separated from the belt conveyor 11, thereby facilitating the pushing of the mold by the mold pushing plate 31 and preventing the movement of the mold caused by the belt conveyor 11 from interfering.

[0032] In the embodiment, the conveying belt assembly 1 is further provided with a first bearing assembly 5, and the first bearing assembly 5 is located at the feeding position and comprises a first bearing frame 51 arranged on the conveying belt assembly 1, a first opening 52 formed in the first bearing frame 51, and two first limiting plates 53 respectively arranged at the opposite ends of the first bearing frame 51. The upper surface of the first bearing frame 51 is at the same height as the table surface of the detection table 21, the mold pushing plate 31 is located on the upper side of the first bearing frame 51, and the first opening 52 is used for the mold to pass through.

[0033] The first bearing frame 51 is in the shape of a rectangle and comprises two first frame bodies respectively arranged on the two belt conveyors 11 and two second frame bodies respectively connected to one end of the two first frame bodies in the same direction. The two second frame bodies form a mold pushing area, and the two first limiting plates 53 are respectively arranged on the two second frame bodies and have an arrangement direction perpendicular to the translation direction of the mold pushing plate 31.

[0034] When the mold reaches the loading position, the first lifting plate 41 lifts the mold upwards and through the first opening 52, the mold reaches between the two second frame bodies, and then the mold pushing plate 31 pushes the mold, and the two first limiting plates 53 can be respectively resisted on both sides of the mold to prevent the mold from deviating during movement.

[0035] In the embodiment, the conveyor assembly 1 has a discharging position at the end of the conveying stroke. After the mold detection is completed, if the mold is a qualified product, the worker can directly place the mold on the discharging position, and the conveyor assembly 1 will transport the mold to the discharging position; if the mold is an NG product, the worker will place the mold on the discharging position after cleaning and re-detecting the mold.

[0036] A second lifting assembly 6 is also arranged between the two belt conveyors 11, and the second lifting assembly 6 is located at the discharging position and includes a second lifting plate 61 that can be lifted and lowered, and a third driving module 62 for driving the second lifting plate 61 to lift and lower. The third driving module 62 is a pneumatic cylinder. After the mold detection is completed, the worker only needs to place the mold on the second lifting plate 61, and then the second lifting plate 61 lowers and sends the detected mold to the belt conveyor 11 to complete the discharging of the mold, effectively improving the discharging efficiency of the mold.

[0037] In the embodiment, the conveyor assembly 1 also has a second bearing assembly 7, which is located at the discharging position and includes a second bearing frame 71 arranged on the conveyor assembly 1, a second opening 72 arranged on the second bearing frame 71, and two second limiting plates 73 arranged at opposite ends of the second bearing frame 71. The arrangement direction of the two second limiting plates 73 is perpendicular to the translation direction of the mold pushing plate 31, and the second opening 72 is used for the mold to pass through.

[0038] The second bearing frame 71 is in the shape of a rectangle and includes two third frame bodies arranged on the two belt conveyors 11 and two fourth frame bodies connected to one end of the two third frame bodies in the same direction. The two fourth frame bodies form a limiting area therebetween, and the two second limiting plates 73 are arranged on the two fourth frame bodies and have an arrangement direction perpendicular to the translation direction of the mold pushing plate 31.

[0039] When discharging, the worker can place the mold between the two second limiting plates 73 to improve the placement accuracy of the mold, and then the second lifting plate 61 lowers the mold and passes through the second opening 72. After the mold reaches the conveyor assembly 1, the conveyor assembly 1 will transport the mold to the discharging position.

[0040] In the embodiment, the detection table 21 is provided with two button assemblies 10 respectively at the two ends of the side close to the worker, each of the button assemblies 10 includes a qualified button 101 and an NG button 102. After the mold detection is completed, the worker can press the two qualified buttons 101 or the two NG buttons 102 of the two button assemblies 10 at the same time, and then the second lifting plate 61 is lifted, and the worker can place the mold after detection on the second lifting plate 61. The safety light barriers 8 are further arranged outside the two button assemblies 10 respectively, and the two safety light barriers 8 can cooperate with each other and identify the arms of the worker to prevent safety accidents caused by the misoperation of the worker. The specific identification principle is the prior art, and details are not described herein.

[0041] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application, so that: any equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A mold detection apparatus comprising a conveyor belt assembly (1) and a detection assembly (2) arranged laterally to the conveyor belt assembly (1), characterized in that: The mold detection equipment further comprises a mold pushing assembly (3), the mold pushing assembly (3) comprises a mold pushing plate (31) which is translatable, and a first driving module (32) for driving the mold pushing plate (31) to move, the mold pushing plate (31) is located on the upper side of the conveying belt assembly (1) and its translation direction is the same as the direction of the conveying belt assembly (1) to the detection assembly (2).

2. A mold detection apparatus according to claim 1, characterized by: The conveying belt assembly (1) comprises two belt conveyors (11) which are arranged side by side and have the same conveying direction, and the mold detection equipment further comprises a first jacking assembly (4) arranged between the two belt conveyors (11), the first jacking assembly (4) comprises a first jacking plate (41) and a second driving module (42) for driving the first jacking plate (41) to move up and down.

3. A mould detection apparatus according to claim 2, characterised in that: The mold detection equipment further comprises a first bearing assembly (5), the first bearing assembly (5) comprises a first bearing frame (51) arranged on the conveying belt assembly (1), a first opening (52) arranged on the first bearing frame (51), and two first limiting plates (53) respectively arranged on the opposite ends of the first bearing frame (51), the mold pushing plate (31) is located on the upper side of the first bearing frame (51), and the arrangement direction of the two first limiting plates (53) is perpendicular to the translation direction of the mold pushing plate (31).

4. A mould detection apparatus according to claim 3, characterised in that: The conveying belt assembly (1) has a feeding position at the beginning of the conveying stroke, and the mold pushing assembly (3), the first jacking assembly (4) and the first bearing assembly (5) are arranged at the feeding position.

5. The mold detection apparatus of claim 2, wherein: The conveying belt assembly (1) has a discharging position at the end of the conveying stroke, and the mold detection equipment further comprises a second jacking assembly (6) arranged between the two belt conveyors (11) and located at the discharging position, the second jacking assembly (6) comprises a second jacking plate (61) and a third driving module (62) for driving the second jacking plate (61) to move up and down.

6. A mould detection apparatus according to claim 5, characterised in that: The mold detection equipment further comprises a second bearing assembly (7) located at the discharging position, the second bearing assembly (7) comprises a second bearing frame (71) arranged on the conveying belt assembly (1), a second opening (72) arranged on the second bearing frame (71), and two second limiting plates (73) respectively arranged on the opposite ends of the second bearing frame (71), and the arrangement direction of the two second limiting plates (73) is perpendicular to the translation direction of the mold pushing plate (31).

7. The mold detection apparatus of claim 3, wherein: The detection assembly (2) comprises a detection table (21), the detection table (21) is provided with a detection module (22) and a display module (23), and the upper surface of the first bearing frame (51) is at the same height as the table top of the detection table (21).

8. A mould detection apparatus according to claim 7, characterised in that: The side of the detection table (21) away from the conveying belt assembly (1) is further provided with a safety grating (8).