Alignment laminating machine for processing silicon-based micro display

Through the design of the motor-driven threaded rod and lifting hydraulic cylinder combined with the vacuum adsorption head, the problems of inaccurate positioning and unstable adsorption in the production of silicon-based micro-displays are solved, and efficient and high-precision bonding effect is achieved.

CN120456782APending Publication Date: 2025-08-08HANGZHOU LIHU INTEGRATED CIRCUIT CO LTD
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Patent Information

Application Number
CN202510648732.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

Traditional alignment lamination machines are difficult to adapt to the diverse production needs of silicon-based microdisplays, and there are problems of inaccurate positioning, unstable adsorption, and poor fitting pressure control, which affects product quality and production efficiency.

Method used

The motor-driven threaded rod is used to achieve high-precision positioning, combining the adsorption system of the lifting hydraulic cylinder and vacuum adsorption head, and is combined with elastic clamping and adjustable fitting pressure rollers to ensure panel stability and pressure uniformity.

Benefits of technology

It realizes high-precision alignment fit of silicon-based microdisplays, improves production efficiency and product quality, adapts to panels of different sizes and shapes, and reduces the risk of panel damage.

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Abstract

The invention relates to the technical field of laminating machines, and discloses an alignment laminating machine for processing a silicon-based micro display, the alignment laminating machine comprises a support base, the top of the support base is fixedly provided with a support bottom table, and the front side of the support bottom table is fixedly provided with a control display screen. A motor is arranged to drive a threaded rod to rotate, so that an adjusting sliding seat accurately moves in a diagonal sliding groove, high-precision positioning of the placing frame and the silicon-based micro display panel on the placing frame is achieved, the silicon-based micro display panel is effectively prevented from sliding in the placing and attaching process through cooperation of a panel placing groove and an anti-skid pad, meanwhile, a U-shaped plate and an air cylinder are supported, and the placing frame is convenient to use. By means of the arrangement, the U-shaped alignment limiting plate can stably clamp the panel, the elastic clamping plate is matched, the panel is subjected to uniform elastic force in the clamping process, panel damage caused by too large clamping force is avoided, silicon-based micro display panels of different sizes and shapes can be contained, and the effect of improving the attaching precision and the stability in the attaching process is achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of laminating machines, in particular to an alignment laminating machine for processing silicon-based microdisplays. Background Art

[0002] Silicon-based microdisplays are active organic light-emitting diode (OLED) displays manufactured using a single-crystal silicon backplane, combining CMOS and OLED technology. Alignment and lamination are crucial processes in silicon-based microdisplay manufacturing, with their precision and efficiency directly impacting final product quality and production profitability. Alignment and lamination machines are specialized equipment used to precisely align and bond two or more components. However, traditional alignment and lamination technology has numerous shortcomings.

[0003] With the continuous development of silicon-based microdisplay technology, product types and sizes are becoming increasingly diverse. However, traditional equipment is often only able to adapt to products of specific sizes and shapes, making it difficult to meet diverse production needs, limiting the company's production flexibility and market competitiveness. During the alignment process, it is often difficult to achieve high-precision positioning, resulting in large positional deviations between the silicon-based microdisplay panel and the film to be bonded (such as the alignment protective cover), which in turn affects the bonding quality and product performance. During the bonding process, the film to be bonded needs to be stably adsorbed and lifted to a certain height so that it can be accurately aligned with the silicon-based microdisplay panel. However, the adsorption and lifting mechanisms of traditional equipment often have problems with poor stability and easy deviation, resulting in changes in the position of the film during the bonding process, affecting the bonding accuracy. During the bonding process, it is often difficult to accurately control the bonding pressure and position, resulting in frequent problems such as poor bonding and bubble generation, which seriously affects product quality and production efficiency. Therefore, it is necessary to design an alignment bonding machine for silicon-based microdisplay processing. Summary of the Invention

[0004] The purpose of the present invention is to provide an alignment and lamination machine for processing silicon-based micro-displays to solve the problems raised in the above-mentioned background technology.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an alignment and bonding machine for processing silicon-based micro-displays, comprising a supporting base, a supporting bottom platform fixedly mounted on the top of the supporting base, a control display screen fixedly mounted on the front of the supporting bottom platform, and an arched gantry fixedly mounted on the top of the supporting bottom platform; an alignment and bonding component, wherein the alignment and bonding component is arranged above the supporting bottom platform and above the arched gantry; the alignment and bonding component comprises: an adjusting alignment portion, wherein the adjusting alignment portion is arranged above the supporting bottom platform; an adsorption alignment portion, wherein the adsorption alignment portion is arranged above the supporting bottom platform and above the arched gantry, and the adsorption alignment portion is arranged above the adjusting alignment portion; and a bonding portion, wherein the bonding portion is arranged above the supporting bottom platform, and the bonding portion is arranged above the adjusting alignment portion and below the adsorption alignment portion.

[0006] Preferably, the adjustment and alignment part includes: an installation long base, the installation long base is fixedly installed on the top of the supporting base, and there are two groups in total, which are symmetrically arranged; a diagonal slide groove is opened on the top of the installation long base, and a motor is fixedly installed on the back of the installation long base through a support base, and a threaded rod is provided at the output end of the motor through a coupling, and the threaded rod movably passes through the back of the installation long base and extends to the inner wall of the diagonal slide groove, and the outer wall of the threaded rod is movably sleeved with an adjustment slide.

[0007] Preferably, a placement frame is fixedly installed on the top of the adjustment slide, a panel placement groove is opened at the bottom of the inner wall of the placement frame, an anti-slip pad is fixedly installed at the bottom of the inner wall of the panel placement groove, a supporting U-shaped plate is fixedly installed on the top of the placement frame, a cylinder is fixedly installed at the bottom of the inner wall of the supporting U-shaped plate, and there are two groups of cylinders, the connecting end of the cylinder is fixedly installed with a U-shaped alignment limit plate through a connecting column, and adjustment holes are opened at the bottom of the inner wall of the panel placement groove, and two are in a group, there are two groups in total, and they extend to the top of the anti-slip pad.

[0008] Preferably, the U-shaped alignment limit plate passes through the adjustment hole and extends to the top of the anti-slip pad. An elastic clamping plate is fixedly installed on the inner wall of the U-shaped alignment limit plate, and the elastic clamping plate is arranged above the anti-slip pad. A silicon-based micro display panel is arranged between the elastic clamping plates, and the silicon-based micro display panel is arranged above the anti-slip pad.

[0009] Preferably, the adsorption positioning part includes: a lifting hydraulic cylinder, which is fixedly installed on the top of the arch portal frame; a support frame, which is fixedly installed on the back of the arch portal frame; the connecting end of the lifting hydraulic cylinder is fixedly connected to a connecting rod, and the connecting rod extends to the inside of the arch portal frame, and a mounting plate is fixedly installed on the bottom of the connecting rod. A mounting seat is provided on the outside of the lifting hydraulic cylinder, and the mounting seat is fixedly installed on the top of the arch portal frame by a fixing bolt. There are two groups in total, which are located on both sides of the lifting hydraulic cylinder, and a vacuum pump is fixedly installed on the top of the mounting seat.

[0010] Preferably, the connection port of the vacuum pump is connected to a connecting hose, the other end of the connecting hose is connected to a supporting convex tube, both ends of the supporting convex tube are connected to vacuum adsorption heads, and the vacuum adsorption heads are fixedly installed on the bottom of the mounting plate, the outer wall of the supporting convex tube is sleeved with a control valve, and a feeding mechanism is fixedly installed on the bottom of the inner wall of the support frame, the feeding mechanism includes a feeding slide rail, a supporting slide seat, and a containing frame, and a positioning protective shell is placed inside the feeding mechanism.

[0011] Preferably, the fitting parts include: connecting railings, which are fixedly mounted on the top of the placement frame, and there are two groups in total; sliding holes are opened on the outer walls of the connecting railings, and a small motor is fixedly mounted on the outer walls of the connecting railings, and an adjusting screw is provided at the output end of the small motor, and the adjusting screw extends to the outer wall on the other side of the connecting railing, and an L-shaped slide is movably sleeved on the outer wall of the adjusting screw, and the L-shaped slide passes through the inside of the sliding hole and extends to the inside of the placement frame.

[0012] Preferably, an adjustment vertical groove is provided on the inner side wall of the L-shaped skateboard, a connecting top plate is fixedly installed on the top of the L-shaped skateboard, a threaded hole is provided on the top of the connecting top plate, and an adjustment threaded rod is provided inside the threaded hole through a threaded connection, a several-shaped connecting frame is fixedly installed on the bottom of the adjusting threaded rod, and the two ends of the several-shaped connecting frame are slidably connected to the adjustment vertical groove, and the inner wall of the several-shaped connecting frame is provided with a fitting pressure roller through a connecting shaft sleeve.

[0013] The present invention provides an alignment and lamination machine for processing silicon-based microdisplays. It has the following beneficial effects: (1) The present invention is provided with a motor to drive the threaded rod to rotate, so that the adjustment slide can move accurately in the diagonal slide groove, thereby achieving high-precision positioning of the placement frame and the silicon-based micro-display panel thereon, ensuring the position accuracy of the panel before bonding, and effectively preventing the silicon-based micro-display panel from sliding during the placement and bonding process in conjunction with the panel placement groove and anti-slip pad, thereby ensuring the stability of the panel. At the same time, the support U-shaped plate and the cylinder enable the U-shaped alignment limit plate to stably clamp the panel, and cooperate with the elastic clamping plate to ensure that the panel is subjected to uniform elastic force during the clamping process, thereby avoiding panel damage caused by excessive clamping force. The present invention is able to accommodate silicon-based micro-display panels of different sizes and shapes, thereby achieving the effect of improving the bonding accuracy and stability during the bonding process.

[0014] (2) The present invention realizes the effective adsorption and descent of the alignment protective shell or other films to be bonded by providing a lifting hydraulic cylinder and a vacuum adsorption head. The opening and closing of the vacuum adsorption are made more flexible by cooperating with the supporting convex tube and the control valve, and is easy to adjust according to actual needs. At the same time, the feeding mechanism makes the feeding process of the alignment protective shell more convenient. The holding frame moves smoothly under the support of the feeding slide rail and the supporting slide seat, thereby achieving the effect of improving the adsorption stability and enhancing the descent stability.

[0015] (3) The present invention is provided with an adjusting threaded rod and a plurality of connecting frames, so that the bonding pressure of the bonding pressure roller can be adjusted according to actual needs, thereby making the pressure uniform and moderate during the bonding process. The L-shaped slide slides along the sliding hole under the drive of the adjusting threaded rod, thereby realizing the precise adjustment of the lateral position of the bonding pressure roller, making the bonding process more flexible and adaptable, and achieving the effect of improving the bonding quality and efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a rear view of an alignment and laminating machine for processing silicon-based microdisplays according to the present invention; Figure 3 This is a side view of the alignment structure of an alignment laminating machine for processing silicon-based microdisplays according to the present invention; Figure 4 This is a top view of the alignment structure of a silicon-based micro-display processing alignment laminating machine of the present invention; Figure 5 This is a side view of the adsorption structure of an alignment laminating machine for processing silicon-based micro-displays according to the present invention; Figure 6 This is an exploded view of the bonding structure of an alignment bonding machine for processing silicon-based micro-displays according to the present invention.

[0017] In the figure: 1 supporting base, 2 supporting base, 3 control display screen, 4 arched door frame, 5 alignment fitting component, 51 adjusting alignment part, 511 installing long base, 512 diagonal slide, 513 motor, 514 threaded rod, 515 adjusting slide, 516 placement frame, 517 panel placement slot, 518 anti-slip pad, 519 supporting U-shaped plate, 5110 cylinder, 5111 U-shaped alignment limit plate, 5112 adjustment hole, 5113 elastic clamping plate, 5114 silicon-based micro display panel, 52 adsorption alignment part, 521 lifting hydraulic Cylinder, 522 connecting rod, 523 mounting plate, 524 mounting seat, 525 vacuum pump, 526 connecting hose, 527 supporting convex tube, 528 vacuum adsorption head, 529 control valve, 5210 support frame, 5211 feeding mechanism, 5212 alignment protective shell, 53 fitting part, 531 connecting railing, 532 sliding hole, 533 small motor, 534 adjusting screw rod, 535 L-type slide plate, 536 adjusting vertical groove, 537 connecting top plate, 538 adjusting threaded rod, 539 type connecting frame, 5310 fitting pressure roller. DETAILED DESCRIPTION

[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0019] Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, but are not to be construed as limiting the present invention.

[0020] In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," "connect," "fixed," etc. should be understood broadly. For example, they may refer to fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances. Example

[0021] A preferred embodiment of the alignment and lamination machine for processing silicon-based micro-displays provided by the present invention is as follows: Figure 1-6As shown: A positioning and bonding machine for processing silicon-based micro-displays, including a supporting base 1, a supporting base 2 is fixedly installed on the top of the supporting base 1, a control display screen 3 is fixedly installed on the front of the supporting base 2, and an arched door frame 4 is fixedly installed on the top of the supporting base 2; an positioning and bonding component 5, the positioning and bonding component 5 is arranged above the supporting base 2 and above the arched door frame 4; the positioning and bonding component 5 includes: an adjusting positioning part 51, the adjusting positioning part 51 is arranged above the supporting base 2; an adsorption positioning part 52, the adsorption positioning part 52 is arranged above the supporting base 2 and above the arched door frame 4, and the adsorption positioning part 52 is arranged above the adjusting positioning part 51; a bonding part 53, the bonding part 53 is arranged above the supporting base 2, and the bonding part 53 is arranged above the adjusting positioning part 51 and below the adsorption positioning part 52.

[0022] The adjustment and alignment part 51 includes: an installation long base 511, the installation long base 511 is fixedly installed on the top of the supporting base 2, and there are two groups in total, which are symmetrically arranged; a diagonal slide groove 512 is opened on the top of the installation long base 511, and a motor 513 is fixedly installed on the back of the installation long base 511 through a support seat, and a threaded rod 514 is provided at the output end of the motor 513 through a coupling, and the threaded rod 514 movably passes through the back of the installation long base 511 and extends to the inner wall of the diagonal slide groove 512, and the outer wall of the threaded rod 514 is movably sleeved with an adjustment slide 515.

[0023] A placement frame 516 is fixedly installed on the top of the adjustment slide 515, and a panel placement groove 517 is opened at the bottom of the inner wall of the placement frame 516. An anti-slip pad 518 is fixedly installed at the bottom of the inner wall of the panel placement groove 517. A supporting U-shaped plate 519 is fixedly installed on the top of the placement frame 516, and a cylinder 5110 is fixedly installed at the bottom of the inner wall of the supporting U-shaped plate 519, and there are two groups in total. The connecting end of the cylinder 5110 is fixedly installed with a U-shaped alignment limit plate 5111 through a connecting column. Adjustment holes 5112 are opened at the bottom of the inner wall of the panel placement groove 517, and two are in a group, with a total of two groups, and extend to the top of the anti-slip pad 518.

[0024] The U-shaped alignment limit plate 5111 passes through the adjustment hole 5112 and extends to the top of the anti-slip pad 518. The inner wall of the U-shaped alignment limit plate 5111 is fixedly installed with an elastic clamping plate 5113, and the elastic clamping plate 5113 is arranged above the anti-slip pad 518. A silicon-based micro display panel 5114 is arranged between the elastic clamping plates 5113, and the silicon-based micro display panel 5114 is arranged above the anti-slip pad 518.

[0025] Furthermore, in the embodiment, a motor 513 is provided to drive the threaded rod 514 to rotate, so that the adjustment slide 515 moves precisely in the diagonal slide groove 512, thereby achieving high-precision positioning of the placement frame 516 and the silicon-based micro-display panel 5114 thereon, ensuring the position accuracy of the panel before bonding, and cooperating with the panel placement groove 517 and the anti-slip pad 518 to effectively prevent the silicon-based micro-display panel 5114 from sliding during the placement and bonding process, thereby ensuring the stability of the panel. At the same time, the supporting U-shaped plate 519 and the cylinder 5110 enable the U-shaped alignment limit plate 5111 to stably clamp the panel, and cooperate with the elastic clamping plate 5113 to ensure that the panel is subjected to uniform elastic force during the clamping process, thereby avoiding damage to the panel caused by excessive clamping force, and being able to accommodate silicon-based micro-display panels of different sizes and shapes, thereby achieving the effect of improving the bonding accuracy and stability during the bonding process. Example

[0026] See also Figures 1-6 , and on the basis of Example 1, it is further obtained that: the adsorption alignment part 52 includes: a lifting hydraulic cylinder 521, the lifting hydraulic cylinder 521 is fixedly installed on the top of the arched portal frame 4; a support frame 5210, the support frame 5210 is fixedly installed on the back of the arched portal frame 4; the connecting end of the lifting hydraulic cylinder 521 is fixedly connected to a connecting rod 522, and the connecting rod 522 extends to the inside of the arched portal frame 4, and a mounting plate 523 is fixedly installed on the bottom of the connecting rod 522, and a mounting seat 524 is provided on the outside of the lifting hydraulic cylinder 521, and the mounting seat 524 is fixedly installed on the top of the arched portal frame 4 through a fixing bolt. There are two groups in total, which are located on both sides of the lifting hydraulic cylinder 521, and a vacuum pump 525 is fixedly installed on the top of the mounting seat 524.

[0027] The connection port of the vacuum pump 525 is connected to a connecting hose 526, the other end of the connecting hose 526 is connected to a supporting convex tube 527, both ends of the supporting convex tube 527 are connected to a vacuum adsorption head 528, and the vacuum adsorption head 528 is fixedly installed on the bottom of the mounting plate 523, the outer wall of the supporting convex tube 527 is provided with a control valve 529, and a feeding mechanism 5211 is fixedly installed on the bottom of the inner wall of the support frame 5210, the feeding mechanism 5211 includes a feeding slide rail, a supporting slide seat, and a containing frame, and a positioning protective shell 5212 is placed inside the feeding mechanism 5211.

[0028] Furthermore, in the embodiment, an adjusting threaded rod 538 and a several-type connecting frame 539 are provided so that the bonding pressure of the bonding pressure roller 5310 can be adjusted according to actual needs, thereby making the pressure uniform and moderate during the bonding process. The L-shaped slide plate 535 slides along the sliding hole 532 under the drive of the adjusting screw rod 534, thereby realizing the precise adjustment of the lateral position of the bonding pressure roller 5310, making the bonding process more flexible and adaptable, thereby improving the bonding quality and efficiency. Example

[0029] See also Figures 1-6 , and on the basis of Examples 1 and 2, it is further obtained that: the fitting part 53 includes: a connecting fence 531, the connecting fence 531 is fixedly installed on the top of the placement frame 516, and there are two groups in total; the outer wall of the connecting fence 531 is provided with a sliding hole 532, the outer wall of the connecting fence 531 is fixedly installed with a small motor 533, the output end of the small motor 533 is provided with an adjusting screw rod 534, and the adjusting screw rod 534 extends to the outer wall of the other side of the connecting fence 531, the outer wall of the adjusting screw rod 534 is movably sleeved with an L-shaped slide plate 535, and the L-shaped slide plate 535 passes through the interior of the sliding hole 532 and extends to the interior of the placement frame 516.

[0030] An adjustment vertical slot 536 is provided on the inner side wall of the L-shaped skateboard 535, and a connecting top plate 537 is fixedly installed on the top of the L-shaped skateboard 535. A threaded hole is provided on the top of the connecting top plate 537, and an adjustment threaded rod 538 is provided inside the threaded hole through a threaded connection. A type connecting frame 539 is fixedly installed on the bottom of the adjustment threaded rod 538, and both ends of the type connecting frame 539 are slidably connected to the adjustment vertical slot 536. A fitting pressure roller 5310 is provided on the inner wall of the type connecting frame 539 through a connecting shaft sleeve.

[0031] Furthermore, in the embodiment, a motor 513 is provided to drive the threaded rod 514 to rotate, so that the adjustment slide 515 moves precisely in the diagonal slide groove 512, thereby achieving high-precision positioning of the placement frame 516 and the silicon-based micro-display panel 5114 thereon, ensuring the position accuracy of the panel before bonding, and cooperating with the panel placement groove 517 and the anti-slip pad 518 to effectively prevent the silicon-based micro-display panel 5114 from sliding during the placement and bonding process, thereby ensuring the stability of the panel. At the same time, the supporting U-shaped plate 519 and the cylinder 5110 enable the U-shaped alignment limit plate 5111 to stably clamp the panel, and cooperate with the elastic clamping plate 5113 to ensure that the panel is subjected to uniform elastic force during the clamping process, thereby avoiding damage to the panel caused by excessive clamping force, and being able to accommodate silicon-based micro-display panels of different sizes and shapes, thereby achieving the effect of improving the bonding accuracy and stability during the bonding process.

[0032] During use, the silicon-based microdisplay panel 5114 is first placed in the panel placement slot 517 within the placement frame 516, with the anti-slip pad 518 preventing the panel from sliding. Next, the motor 513 rotates the threaded rod 514, and by adjusting the sliding seat 515 within the diagonal slot 512, the initial position of the placement frame 516 and the silicon-based microdisplay panel 5114 on it is adjusted.

[0033] Furthermore, the cylinder 5110 drives the U-shaped alignment limit plate 5111 to descend, and the elastic clamping plate 5113 gently clamps the silicon-based micro display panel 5114 for fine alignment.

[0034] Furthermore, the feeding mechanism 5211 delivers the holding frame containing the alignment protective shell 5212 to the designated position, awaiting adsorption and bonding. Next, the lifting hydraulic cylinder 521 drives the connecting rod 522 downward, and the mounting plate 523 and its vacuum adsorption head 528 contact and adsorb the alignment protective shell 5212 or other film to be bonded. The vacuum pump 525 cooperates with the vacuum adsorption head 528 to provide a vacuum environment through the connecting hose 526 and the supporting convex tube 527, ensuring stable adsorption. After adsorption is completed, the feeding mechanism 5211 returns, and the lifting hydraulic cylinder 521 raises the connecting rod 522, lowering the alignment protective shell 5212 to the bonding position.

[0035] Furthermore, the L-shaped slide plate 535 slides along the slide hole 532 under the drive of the adjusting screw rod 534 to adjust the lateral position of the laminating pressure roller 5310. Then, the adjusting screw rod 538 adjusts the vertical position of the laminating pressure roller 5310 through the multi-shaped connecting frame 539 to ensure that the laminating pressure is moderate.

[0036] When the silicon-based micro display panel 5114 and the alignment protective shell 5212 are accurately positioned, the bonding roller 5310 is driven by the small motor of the driving device to roll and tightly bond the two together.

[0037] Overall workflow Placement and preliminary positioning: Place the silicon-based micro display panel 5114 in the placement frame 516 and perform preliminary position adjustment by adjusting the alignment part 51.

[0038] Adsorption and lifting: The adsorption alignment portion 52 is used to adsorb the alignment protective shell 5212 or other films to be bonded, and then lowered to the bonding position.

[0039] Lamination execution: The silicon-based micro display panel 5114 and the alignment protective shell 5212 are tightly laminated together by the lamination pressing roller 5310 of the lamination part 53 .

[0040] Inspection and removal: After the bonding is completed, check and confirm that the bonding quality is correct before removing the bonded product.

[0041] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0042] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A silicon-based micro-display processing alignment laminating machine, comprising a support base (1), characterized in that: A supporting base (2) is fixedly mounted on the top of the supporting base (1), a control display screen (3) is fixedly mounted on the front of the supporting base (2), and an arched door frame (4) is fixedly mounted on the top of the supporting base (2); An alignment and laminating component (5), wherein the alignment and laminating component (5) is arranged above the supporting base (2) and above the arched door frame (4); The alignment and lamination component (5) includes: An adjusting alignment portion (51), wherein the adjusting alignment portion (51) is arranged above the supporting base (2); An adsorption alignment portion (52), wherein the adsorption alignment portion (52) is disposed above the supporting base (2) and above the arched door frame (4), and the adsorption alignment portion (52) is disposed above the adjustment alignment portion (51); The laminating portion (53) is arranged above the supporting base (2), and the laminating portion (53) is arranged above the adjusting alignment portion (51) and below the adsorption alignment portion (52).

2. The alignment and laminating machine for processing a silicon-based microdisplay according to claim 1, characterized in that: The adjusting alignment part (51) includes: Installing long bases (511), wherein the long bases (511) are fixedly installed on the top of the supporting base (2), and there are two sets of them, which are symmetrically arranged; A diagonal slot (512) is provided on the top of the long mounting base (511), and a motor (513) is fixedly installed on the rear of the long mounting base (511) via a support seat. A threaded rod (514) is provided at the output end of the motor (513) via a coupling, and the threaded rod (514) movably passes through the rear of the long mounting base (511) and extends to the inner wall of the diagonal slot (512), and an adjustment slide (515) is movably sleeved on the outer wall of the threaded rod (514).

3. The alignment and laminating machine for processing a silicon-based microdisplay according to claim 2, characterized in that: A placement frame (516) is fixedly installed on the top of the adjustment slide (515), a panel placement groove (517) is opened at the bottom of the inner wall of the placement frame (516), and an anti-slip pad (518) is fixedly installed at the bottom of the inner wall of the panel placement groove (517). A supporting U-shaped plate (519) is fixedly installed on the top of the placement frame (516), and a cylinder (5110) is fixedly installed at the bottom of the inner wall of the supporting U-shaped plate (519), and there are two groups of cylinders. The connecting end of the cylinder (5110) is fixedly installed with a U-shaped alignment limit plate (5111) through a connecting column. The inner wall bottom of the panel placement groove (517) is opened with an adjustment hole (5112), and two are in a group, and there are two groups in total, which extend to the top of the anti-slip pad (518).

4. The alignment and laminating machine for processing a silicon-based microdisplay according to claim 3, characterized in that: The U-shaped alignment limit plate (5111) passes through the adjustment hole (5112) and extends to the top of the anti-slip pad (518); an elastic clamping plate (5113) is fixedly mounted on the inner wall of the U-shaped alignment limit plate (5111), and the elastic clamping plate (5113) is arranged above the anti-slip pad (518); a silicon-based micro-display panel (5114) is arranged between the elastic clamping plates (5113), and the silicon-based micro-display panel (5114) is arranged above the anti-slip pad (518).

5. The alignment and laminating machine for processing silicon-based microdisplays according to claim 1, characterized in that: The adsorption counter-position part (52) includes: A lifting hydraulic cylinder (521), wherein the lifting hydraulic cylinder (521) is fixedly mounted on the top of the arched portal frame (4); A support frame (5210), wherein the support frame (5210) is fixedly mounted behind the arched door frame (4); The connecting end of the lifting hydraulic cylinder (521) is fixedly connected to a connecting rod (522), and the connecting rod (522) extends to the inside of the arched portal frame (4). A mounting plate (523) is fixedly installed at the bottom of the connecting rod (522). A mounting seat (524) is provided on the outside of the lifting hydraulic cylinder (521), and the mounting seat (524) is fixedly installed on the top of the arched portal frame (4) through a fixing bolt. There are two groups of mounting seats, which are respectively located on both sides of the lifting hydraulic cylinder (521). A vacuum pump (525) is fixedly installed on the top of the mounting seat (524).

6. The alignment and laminating machine for processing a silicon-based microdisplay according to claim 5, characterized in that: The connection port of the vacuum pump (525) is connected to a connecting hose (526), the other end of the connecting hose (526) is connected to a supporting convex tube (527), both ends of the supporting convex tube (527) are connected to a vacuum adsorption head (528), and the vacuum adsorption head (528) is fixedly mounted on the bottom of the mounting plate (523), the outer wall of the supporting convex tube (527) is provided with a control valve (529), and a feeding mechanism (5211) is fixedly mounted on the bottom of the inner wall of the support frame (5210), the feeding mechanism (5211) comprises a feeding slide rail, a supporting slide seat, and a containing frame, and an alignment protective shell (5212) is placed inside the feeding mechanism (5211).

7. The alignment and laminating machine for processing a silicon-based microdisplay according to claim 1, characterized in that: The fitting portion (53) includes: Connecting fences (531), said connecting fences (531) being fixedly mounted on the top of the placement frame (516), and having two sets in total; The outer wall of the connecting fence (531) is provided with a sliding hole (532), and a small motor (533) is fixedly installed on the outer wall of the connecting fence (531). The output end of the small motor (533) is provided with an adjusting screw rod (534), and the adjusting screw rod (534) extends to the outer wall of the other side of the connecting fence (531). The outer wall of the adjusting screw rod (534) is movably provided with an L-shaped slide plate (535), and the L-shaped slide plate (535) passes through the interior of the sliding hole (532) and extends to the interior of the placement frame (516).

8. The alignment and laminating machine for processing a silicon-based microdisplay according to claim 7, characterized in that: An adjustment vertical slot (536) is provided on the inner side wall of the L-shaped slide (535), a connecting top plate (537) is fixedly installed on the top of the L-shaped slide (535), a threaded hole is provided on the top of the connecting top plate (537), and an adjustment threaded rod (538) is provided inside the threaded hole through a threaded connection, a several-shaped connecting frame (539) is fixedly installed on the bottom of the adjustment threaded rod (538), and both ends of the several-shaped connecting frame (539) are slidably connected to the adjustment vertical slot (536), and a fitting pressure roller (5310) is provided on the inner wall of the several-shaped connecting frame (539) through a connecting shaft sleeve.