Rolling device for manufacturing integrated optoelectronic device

By introducing vacuum adsorption and movable baffle mechanisms into the rolling device, the problem of material displacement during the rolling process is solved, achieving stable adsorption and flatness of the material, and improving production efficiency and material utilization.

CN223545822UActive Publication Date: 2025-11-14JIANGSU RUIBO PHOTOELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202423035982.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-14
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Existing rolling devices lack a vacuum adsorption and fixing structure, which makes the optoelectronic device materials prone to force displacement during the rolling process, resulting in uneven stress on the materials, cracks and delamination, and wasting materials and time.

Method used

A rolling device for manufacturing integrated optoelectronic devices was designed, comprising a base mechanism, an adsorption mechanism, a gantry mechanism, a cylinder, a rolling mechanism, a pole mechanism, and a movable baffle mechanism. The device utilizes a vacuum adsorption box and adsorption holes to achieve stable adsorption of materials, and the stability and flatness of the rolling process are achieved through the cooperation of a cylinder and an electric guide rail.

Benefits of technology

This method achieves stable adsorption of materials during the rolling process, avoids material displacement, improves the flatness and stability of the rolling process, facilitates material removal, and reduces material waste and production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rolling device for manufacturing an integrated optoelectronic device, which belongs to the technical field of optoelectronic device manufacturing, and comprises a base mechanism and an adsorption mechanism, the top end of the base mechanism is provided with a table board mechanism, the outer side of the base mechanism is provided with a portal frame mechanism, and the portal frame mechanism is provided with an adsorption mechanism. An air cylinder is fixed to the top of the portal frame mechanism, and a rolling mechanism is fixed to the output end of the air cylinder. Through the arrangement of the adsorption holes, the vacuum adsorption box, the sealing sliding sleeve and the air suction connector, vacuum adsorption of materials is achieved, and therefore the situation that the rolling flatness is affected due to displacement of the materials during rolling is avoided; the device can adsorb materials during rolling and can automatically stop adsorption when rolling is finished, so that workers can conveniently take the rolled materials, and the convenience of the device is improved.
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Description

Technical Field

[0001] This utility model relates to the field of optoelectronic device manufacturing technology, and in particular to a rolling device for manufacturing integrated optoelectronic devices. Background Technology

[0002] Optoelectronic devices refer to various functional devices made using the photoelectric effect, which can realize the mutual conversion between optical signals and electrical signals or process optical signals. In the manufacturing process of optoelectronic devices, many optoelectronic materials need to be processed into very thin sheets, and when manufacturing some composite optoelectronic devices, different material layers need to be tightly bonded together. All of the above processing processes require the use of rolling devices.

[0003] In existing technologies, rolling devices mostly consist of a motor-driven roller and a pressure-bearing rolling table. Although such equipment can roll materials for optoelectronic devices, it lacks a vacuum adsorption and fixing structure. During rolling, the material is easily misaligned due to force, resulting in uneven stress on the material. This leads to problems such as cracks and delamination, causing the material to be scrapped and resulting in a waste of time and materials.

[0004] Therefore, there is an urgent need to provide a rolling device for manufacturing integrated optoelectronic devices to solve the above problems. Utility Model Content

[0005] The technical problem to be solved by this utility model is to overcome the shortcomings of the prior art and provide a rolling device for manufacturing integrated optoelectronic devices.

[0006] To solve the above-mentioned technical problems, the present invention adopts a technical solution as follows: a rolling device for manufacturing integrated optoelectronic devices is provided, including a base mechanism and an adsorption mechanism. A table mechanism is provided at the top of the base mechanism, a gantry mechanism is provided on the outside of the base mechanism, and a cylinder is fixed at the top of the gantry mechanism.

[0007] The output end of the cylinder is fixed with a rolling mechanism, and the two ends of the rolling mechanism are fixed with upright mechanisms;

[0008] The bottom of the platform mechanism is provided with an adsorption mechanism, and the inner side of the adsorption mechanism is provided with a movable baffle mechanism.

[0009] The present invention is further configured such that: the base mechanism includes a base body, an electric guide rail is fixed on one outer wall of the base body, and a slide rail is fixed on the other outer wall of the base body.

[0010] Through the above technical solution, the cylinder can drive the rolling mechanism to rise or fall, and the electric guide rail and slide rail can drive the rolling mechanism to move horizontally, thereby rolling the material.

[0011] The present invention is further configured such that: the table mechanism includes a table body fixed to the top of the seat body, the table body has two strip grooves, the top of the table body is fixed with a rolling table, and the rolling table has multiple adsorption holes.

[0012] With the above technical solution, the material to be rolled can be placed on the rolling table, the adsorption holes are used for vacuum adsorption, the adsorption holes are uniformly distributed and the pore size is small, so it will not affect the flatness of the rolling.

[0013] The present invention is further configured such that: the gantry mechanism includes a frame body that is slidably connected to the slide rail, and the inner side of the frame body is provided with a slide groove.

[0014] Through the above technical solution, the frame is made of aluminum alloy, which is lightweight and high-strength. The slide can limit the rolling mechanism when it is raised and lowered, thereby improving the stability of the rolling mechanism.

[0015] The present invention is further configured such that: the rolling mechanism includes a lifting frame fixed to the cylinder, and a pressure roller is rotatably connected to the inner side of the lifting frame.

[0016] With the above technical solution, the lifting frame and the slide are slidably connected. When the material needs to be rolled, the cylinder extends and the pressure roller comes into contact with the rolling table and the material on the rolling table. At this time, the electric guide rail can drive the pressure roller to move horizontally, and the pressure roller can roll the material.

[0017] The present invention is further configured such that: the pole mechanism includes a pole body fixed to the lifting frame, and a pressure rod is provided at the bottom end of the pole body.

[0018] With the above technical solution, the rod passes through the strip groove, and the end of the rod and the pressure rod are both located inside the seat. When the rolling mechanism presses down, the rod and the pressure rod will also press down.

[0019] The present invention is further configured such that: the adsorption mechanism includes a vacuum adsorption box fixed to the bottom of the rolling table, the bottom of the vacuum adsorption box is provided with a sealing sliding sleeve, and the vacuum adsorption box is provided with an air intake port.

[0020] With the above technical solution, the top of the vacuum adsorption box is open and the vacuum adsorption box is airtightly connected to the bottom of the rolling table. The suction port can be connected to external adsorption equipment such as negative pressure fan or vacuum pump. When the device is working, the vacuum adsorption equipment is turned on, and negative pressure is generated at the vacuum adsorption box and adsorption hole, thereby sucking the material to be rolled tightly and preventing it from shifting. The sealing sleeve can prevent air leakage at the contact part between the vacuum adsorption box and the slide rod.

[0021] The present invention is further configured such that: the movable baffle mechanism includes a slide rod slidably disposed inside the sealing sleeve, a plate is connected to the top end of the slide rod, a sealing sheet is adhered to the top end of the plate, a crossbar is fixed to the bottom end of the slide rod, a return spring is fixed on the crossbar, and cantilever arms are fixed to both ends of the crossbar.

[0022] Through the above technical solution, the sealing sheet is made of rubber and its size is slightly smaller than that of the vacuum adsorption box. It can seal the bottom of the adsorption hole. When the rolling mechanism presses down, it will drive the upright mechanism to press down. At this time, the pressure rod presses the cantilever, causing the crossbar and slide bar to move downward, which in turn drives the plate and sealing sheet to move downward. At this time, the adsorption hole opens, and the device can adsorb the rolled material, thereby improving the material stability and preventing the material from shifting during rolling. The return spring has a large elastic coefficient and can resist the negative pressure in the vacuum adsorption box. When the rolling mechanism rises, the plate and sealing sheet will seal the adsorption hole under the action of the return spring. At this time, the device no longer adsorbs the material, and personnel can easily remove the rolled material.

[0023] The beneficial effects of this utility model are as follows:

[0024] 1. This utility model achieves vacuum adsorption of materials by setting up adsorption holes, vacuum adsorption box, sealing sliding sleeve and air intake interface, thereby avoiding material displacement during rolling and affecting the flatness of rolling;

[0025] 2. By setting up an adsorption mechanism and a movable baffle mechanism, this utility model enables the device to adsorb materials during rolling and automatically stop adsorption when rolling ends, making it convenient for personnel to take out the rolled materials and improving the convenience of the device. Attached Figure Description

[0026] Figure 1 This is a first-view structural diagram of the present invention;

[0027] Figure 2 This is a second-view structural diagram of the present invention;

[0028] Figure 3 This is a partial structural diagram of the cylinder, rolling mechanism, and upright mechanism of this utility model;

[0029] Figure 4 This is a partial structural diagram of the tabletop mechanism, rolling mechanism, upright mechanism, adsorption mechanism, and movable baffle mechanism of this utility model;

[0030] Figure 5 This is a partial structural diagram of the movable baffle mechanism of this utility model.

[0031] In the diagram: 1. Base mechanism; 101. Base body; 102. Electric guide rail; 103. Slide rail; 2. Table mechanism; 201. Table body; 202. Strip groove; 203. Rolling table; 204. Adsorption hole; 3. Gantry mechanism; 301. Frame body; 302. Slide groove; 4. Cylinder; 5. Rolling mechanism; 501. Lifting frame; 502. Pressure roller; 6. Upright mechanism; 601. Rod body; 602. Pressure rod; 7. Adsorption mechanism; 701. Vacuum adsorption box; 702. Sealing sleeve; 703. Suction port; 8. Movable baffle mechanism; 801. Slide rod; 802. Plate body; 803. Sealing plate; 804. Crossbar; 805. Return spring; 806. Cantilever. Detailed Implementation

[0032] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings, so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby making a clearer and more definite definition of the scope of protection of the present invention.

[0033] Please see Figures 1-5 A rolling device for manufacturing integrated optoelectronic devices includes a base mechanism 1 and an adsorption mechanism 7. The base mechanism 1 includes a seat 101. An electric guide rail 102 is fixed on one outer wall of the seat 101, and a slide rail 103 is fixed on the other outer wall of the seat 101. A cylinder 4 can drive the rolling mechanism 5 to rise or fall. The electric guide rail 102 and the slide rail 103 can drive the rolling mechanism 5 to move horizontally, thereby rolling the material.

[0034] like Figure 1 and Figure 2 As shown, a platform mechanism 2 is provided at the top of the base mechanism 1. The platform mechanism 2 includes a platform 201 fixed to the top of the base 101. Two strip grooves 202 are provided on the platform 201. A rolling platform 203 is fixed at the top of the platform 201. Multiple adsorption holes 204 are provided on the rolling platform 203. Materials to be rolled can be placed on the rolling platform 203. The adsorption holes 204 are used for vacuum adsorption. The adsorption holes 204 are evenly distributed and have a small diameter, so they will not affect the flatness of the rolling.

[0035] like Figure 1 and Figure 2 As shown, a gantry mechanism 3 is provided on the outer side of the base mechanism 1. A cylinder 4 is fixed on the top of the gantry mechanism 3. The gantry mechanism 3 includes a frame 301 that is slidably connected to the slide rail 103. A slide groove 302 is provided on the inner side of the frame 301. The frame 301 is made of aluminum alloy, which has the characteristics of being lightweight and having high strength. The slide groove 302 can limit the rolling mechanism 5 when it is raised and lowered, thereby improving the stability of the rolling mechanism 5.

[0036] like Figure 3As shown, a rolling mechanism 5 is fixed to the output end of the cylinder 4. The rolling mechanism 5 includes a lifting frame 501 fixed to the cylinder 4. A pressure roller 502 is rotatably connected to the inner side of the lifting frame 501. The lifting frame 501 is slidably connected to the slide groove 302. When the material needs to be rolled, the cylinder 4 extends, and the pressure roller 502 contacts the rolling table 203 and the material on the rolling table 203. At this time, the electric guide rail 102 can drive the pressure roller 502 to move horizontally, and the pressure roller 502 can roll the material. The two ends of the rolling mechanism 5 are fixed with a pole mechanism 6. The pole mechanism 6 includes a rod 601 fixed to the lifting frame 501. A pressure rod 602 is provided at the bottom end of the rod 601. The rod 601 passes through the strip groove 202. The end of the rod 601 and the pressure rod 602 are both located inside the seat 101. When the rolling mechanism 5 presses down, the rod 601 and the pressure rod 602 will also press down.

[0037] like Figure 4 and Figure 5 As shown, the bottom of the tabletop mechanism 2 is provided with an adsorption mechanism 7. The adsorption mechanism 7 includes a vacuum adsorption box 701 fixed to the bottom of the rolling table 203. The bottom of the vacuum adsorption box 701 is provided with a sealing sleeve 702. The vacuum adsorption box 701 is provided with an air intake port 703. The top of the vacuum adsorption box 701 is open. The vacuum adsorption box 701 is airtightly connected to the bottom of the rolling table 203. The air intake port 703 can be connected to external adsorption equipment such as a negative pressure fan or a vacuum pump. When the device is working, the vacuum adsorption equipment is turned on, and a negative pressure is generated at the vacuum adsorption box 701 and the adsorption hole 204, thereby adsorbing the material to be rolled tightly and preventing it from shifting. The sealing sleeve 702 can prevent air leakage at the contact part between the vacuum adsorption box 701 and the slide rod 801.

[0038] As shown in the figure, a movable baffle mechanism 8 is provided inside the adsorption mechanism 7. The movable baffle mechanism 8 includes a slide rod 801 slidably disposed inside the sealing sleeve 702. The top end of the slide rod 801 is connected to a plate 802, and a sealing sheet 803 is bonded to the top end of the plate 802. A crossbar 804 is fixed to the bottom end of the slide rod 801, and a return spring 805 is fixed on the crossbar 804. Cantilever arms 806 are fixed to both ends of the crossbar 804. The sealing sheet 803 is made of rubber and its size is slightly smaller than that of the vacuum adsorption box 701. It can seal the bottom end of the adsorption hole 204. When the rolling mechanism 5 presses down, the rolling mechanism 5 will drive the upright rod. When mechanism 6 is pressed down, pressure rod 602 presses against cantilever 806, causing crossbar 804 and slide bar 801 to move downwards, which in turn drives plate 802 and sealing plate 803 to move downwards. At this time, adsorption hole 204 opens, and the device can adsorb the rolled material, thereby improving material stability and preventing material displacement during rolling. The return spring 805 has a large elastic coefficient and can resist the negative pressure in vacuum adsorption box 701. When rolling mechanism 5 is raised, plate 802 and sealing plate 803 will block adsorption hole 204 under the action of return spring 805. At this time, the device no longer adsorbs material, and personnel can easily remove the rolled material.

[0039] In use, the operator can first turn on the adsorption mechanism 7 and then place the material to be rolled on the rolling table 203. At this time, the adsorption mechanism 7 can hold the material on the rolling table 203 to prevent the material from shifting during the rolling process. After the material is placed, the device can start rolling. At this time, the cylinder 4 extends, causing the rolling mechanism 5 to press down and contact the material. The electric guide rail 102 drives the gantry mechanism 3 and the rolling mechanism 5 to move horizontally. The pressure roller 502 will roll to flatten and press the material. When the rolling ends and the cylinder 4 retracts, the movable baffle mechanism 8 will block the adsorption hole 204 under the elastic contraction force of the return spring 805. At this time, the device will no longer adsorb the material, and the operator can easily remove the rolled material.

[0040] The above are merely embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A rolling device for manufacturing integrated optoelectronic devices, comprising a base mechanism (1) and an adsorption mechanism (7), characterized in that: The base mechanism (1) is provided with a table mechanism (2) at its top, and a gantry mechanism (3) is provided on the outside of the base mechanism (1). A cylinder (4) is fixed on the top of the gantry mechanism (3). The output end of the cylinder (4) is fixed with a rolling mechanism (5), and the two ends of the rolling mechanism (5) are fixed with a pole mechanism (6). The bottom end of the tabletop mechanism (2) is provided with an adsorption mechanism (7), and the inner side of the adsorption mechanism (7) is provided with a movable baffle mechanism (8).

2. The rolling device for manufacturing integrated optoelectronic devices according to claim 1, characterized in that: The base mechanism (1) includes a base (101), an electric guide rail (102) is fixed on one side of the outer wall of the base (101), and a slide rail (103) is fixed on the other side of the outer wall of the base (101).

3. The rolling device for manufacturing integrated optoelectronic devices according to claim 2, characterized in that: The platform mechanism (2) includes a platform (201) fixed to the top of the base (101), the platform (201) having two strip grooves (202), the top of the platform (201) having a rolling table (203) fixed thereon, and the rolling table (203) having multiple adsorption holes (204).

4. The rolling device for manufacturing integrated optoelectronic devices according to claim 2, characterized in that: The gantry mechanism (3) includes a frame (301) that is slidably connected to a slide rail (103), and a slide groove (302) is provided on the inner side of the frame (301).

5. The rolling device for manufacturing integrated optoelectronic devices according to claim 1, characterized in that: The rolling mechanism (5) includes a lifting frame (501) fixed to the cylinder (4), and a pressure roller (502) is rotatably connected to the inner side of the lifting frame (501).

6. The rolling device for manufacturing integrated optoelectronic devices according to claim 5, characterized in that: The pole support mechanism (6) includes a pole (601) fixed to the lifting frame (501), and a pressure rod (602) is provided at the bottom end of the pole (601).

7. The rolling device for manufacturing integrated optoelectronic devices according to claim 3, characterized in that: The adsorption mechanism (7) includes a vacuum adsorption box (701) fixed to the bottom of the rolling table (203), a sealing sliding sleeve (702) is provided at the bottom of the vacuum adsorption box (701), and an air intake port (703) is provided on the vacuum adsorption box (701).

8. The rolling device for manufacturing integrated optoelectronic devices according to claim 7, characterized in that: The movable baffle mechanism (8) includes a slide rod (801) slidably disposed inside the sealing sleeve (702). The top end of the slide rod (801) is connected to a plate (802), and the top end of the plate (802) is bonded with a sealing sheet (803). The bottom end of the slide rod (801) is fixed with a crossbar (804), and a return spring (805) is fixed on the crossbar (804). Both ends of the crossbar (804) are fixed with cantilever arms (806).