A system for preparing a tessera decorated glass and a method thereof

By combining the feeding and conveying mechanism, the adsorption and separation component, and the unloading and conveying mechanism, the problem of the glass blocks being difficult to remove quickly in the processing of inlaid decorative glass is solved, realizing the rapid separation and efficient conveying of the glass blocks and improving the cutting efficiency.

CN117923780BActive Publication Date: 2026-06-02ANHUI KANGTAI GLASS IND TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ANHUI KANGTAI GLASS IND TECH
Filing Date
2024-01-09
Publication Date
2026-06-02

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Abstract

The application relates to the technical field of inlaid decorative glass processing, and discloses an inlaid decorative glass preparation system and a method thereof, which comprises an inlaid decorative glass preparation system, which comprises a feeding conveying mechanism, a support is fixedly connected to the top of the feeding conveying mechanism, a driving mechanism is fixedly connected to the support, an adsorption separation assembly is connected to the bottom output end of the driving mechanism, and a cutting assembly fixedly connected to the support is installed below the front side of the adsorption separation assembly. In the glass plate conveying process, the glass plate is limited from both sides, and the glass plate is clamped from the bottom and the top, so that the glass plate is stably and accurately conveyed, subsequent cutting operation is facilitated, the cut glass is quickly separated from the glass plate after cutting, different specifications of cut glass can be quickly and batch-wise extracted and conveyed from the glass plate, the glass cutting efficiency is improved, and subsequent processing operation of the inlaid decorative glass product is facilitated.
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Description

Technical Field

[0001] This invention relates to the field of glass inlay processing technology, and in particular to a glass inlay preparation system and method. Background Technology

[0002] In common glass products, many products have raised or recessed patterns or designs on their surface for decorative and aesthetic purposes. These patterns serve as decorative elements. Generally, different shapes and colors of ornaments are inlaid on the surface of glass products. In the process of inlaid decorative glass processing, the main glass product needs to be made first according to the pre-designed drawings. After that, the glass blocks used for decoration need to be cut, trimmed and polished. Only after the glass blocks have been cut, trimmed and polished can they be inlaid and installed according to the inlay requirements. Since there are many glass blocks required and their shapes are different, it is inconvenient to remove them from the glass sheet during the cutting process. Therefore, an inlaid decorative glass preparation system and method are proposed. Summary of the Invention

[0003] To address the technical problem of the inconvenience of removing glass sheets during the cutting process, this invention provides a system and method for preparing inlaid decorative glass.

[0004] The present invention is achieved by the following technical solution: a glass inlay preparation system, including a feeding and conveying mechanism, a support fixedly connected to the top of the feeding and conveying mechanism, a driving mechanism fixedly connected to the support, an adsorption and separation component connected to the bottom output end of the driving mechanism, a cutting component fixedly connected to the support installed below the front side of the adsorption and separation component, and a feeding and conveying mechanism fixedly connected to the support installed below the side of the adsorption and separation component away from the cutting component.

[0005] The adsorption separation assembly includes a long strip-shaped distribution box connected to the bottom output end of the drive mechanism. An adjustment plate is provided at the bottom of the distribution box and is arranged parallel to it. A pushing unit is fixedly connected to the top of the adjustment plate and is fixedly connected to the bottom of the distribution box. An array of adsorption mechanisms is fixedly connected to the adjustment plate and is fixedly connected to the distribution box. An adjustment mechanism for controlling the separation of the adsorption mechanisms is slidably connected to the top of the adjustment plate.

[0006] Through the above technical solution, the plate-shaped glass sheet is fed from the front end of the feeding conveyor to the feeding conveyor, which clamps and conveys the glass sheet. Then, the laser cutting head on the cutting component cuts glass blocks of different shapes on the glass sheet. After that, the driving mechanism drives the adsorption separation component to adsorb and extract the cut glass blocks from the glass sheet and convey them to the unloading conveyor.

[0007] As a further improvement to the above solution, the adsorption mechanism includes a support rod fixedly sleeved with an adjustment plate. A buffer cavity is formed inside the support rod along its length. A connecting pipe is fixedly connected to the top of the support rod, communicating with the buffer cavity and slidably sleeved with a distribution box. A check valve is installed on the connecting pipe, and the top of the connecting pipe communicates with the distribution box. A connecting pipe is slidably sleeved at the bottom of the support rod along its length. A slip ring is fixedly sleeved on the outer ring of one end of the connecting pipe extending into the buffer cavity, slidably connected to the buffer cavity. A spring is fixedly connected to the bottom of the slip ring and to the inner wall of the top of the buffer cavity. A baffle is fixedly sleeved on the outer ring of one end of the connecting pipe extending out of the bottom of the support rod. A spring is fixedly connected to the top of the baffle and to the bottom of the support rod. A suction cup is fixedly connected to the bottom of the connecting pipe. A release ring is slidably sleeved on the outer ring of the support rod and slidably connected to the top of the adjustment plate. The release ring is connected to an adjustment mechanism. A vent hole located on the support rod is formed inside the release ring. An air inlet hole for supplying air to the vent hole is passed through the release ring, and the release ring is connected to the adjustment mechanism.

[0008] Through the above technical solution, the first push unit is activated, pushing the adjustment plate upward. At this time, the suction cup adsorbed to the glass plate is stationary relative to the glass plate, while the suction cup adsorbed with the cut glass block moves upward with the adjustment plate, pulling the cut glass block upward from the glass plate. Since the suction cup adsorbed to the glass plate is stationary relative to the glass plate, the second connecting tube on the suction cup moves downward relative to the support rod until the slip ring at the top of the second connecting tube moves downward along the buffer cavity to the bottom of the vent hole. After that, the eighth push unit on the adjustment mechanism is activated, causing the push-pull plate to move, and then the rack moves, thereby driving the gear ring to rotate. The gear ring causes the release ring to rotate, and the air inlet on the release ring is connected to the vent hole. At this time, the outside gas enters the vent hole along the air inlet and then enters the buffer cavity. At this time, the pressure inside the buffer cavity increases, and the suction cup is no longer adsorbed to the glass plate. At the same time, the check valve above it acts as a check valve for the first connecting tube. Under the action of the first and second springs, the suction cup moves upward, ensuring that the suction cup is completely separated from the glass plate, thereby realizing the rapid separation of the cut glass block from the glass plate.

[0009] As a further improvement to the above solution, the feeding and conveying mechanism includes two sets of parallel side plates, and a conveying unit 1 is connected between the two sets of side plates. On both sides of the conveying unit 1, there are L-shaped movable plates that are slidably connected to the side plates. The movable plates are movably sleeved with upper pressure rollers that are distributed sequentially along their length direction. A stop roller that is movably sleeved with the side plate is installed directly below the upper pressure roller. A side blocking unit that is fixed to the side plate is provided on one side of the stop roller, and the side blocking units are arranged sequentially along the length direction of the side plates. A pushing unit 7 that is fixed to the opposite side plate is fixedly connected to the top of the movable plate.

[0010] With the above technical solution, the glass sheet is placed on the top of the conveying unit. The two sides of the glass sheet abut against the outer wall of the blocking plate on the side blocking unit. The bottom of the glass sheet is placed at the bottom of the contact roller. The top of the glass sheet abuts against the bottom of the upper pressure roller. During the conveying process, the contact roller and the upper pressure roller clamp and abut against the glass sheet. The blocking plate limits the glass sheet from both sides.

[0011] As a further improvement to the above scheme, a chain with an annular structure is installed on the side of each of the two sets of side plates that are far apart from each other. The inner ring of the chain is connected to a sprocket that is fixedly sleeved with the adjacent abutting roller. A motor is installed at the end of the abutting roller that extends out of the side plate. A base that is fixedly connected to the adjacent side plate is installed at the end of the motor. The conveying unit includes a conveyor belt with an annular structure that is disposed between the two sets of side plates. The inner ring of the conveyor belt is movably sleeved with conveyor rollers that are sequentially distributed along its length and movably sleeved with the side plates. A motor is installed at the end of the conveyor rollers that extends out of the side plate. A support brush that is sequentially distributed along its length is fixedly connected to the outer ring of the conveyor belt. The side blocking unit includes an L-shaped fixed frame that is fixedly connected to the side plate. A blocking disc is movably sleeved on the top of the fixed frame.

[0012] As a further improvement to the above solution, the cutting assembly includes a second pushing unit fixedly connected to the bracket, a third pushing unit fixedly connected to the bottom output end of the second pushing unit and perpendicularly arranged thereto, a fourth pushing unit fixedly connected to the bottom output end of the third pushing unit and a laser cutting head fixedly connected to the bottom output end of the fourth pushing unit.

[0013] The above technical solution enables the cutting of glass blocks of different shapes.

[0014] As a further improvement to the above solution, the driving mechanism includes a pushing unit five fixedly connected to the bracket, a pushing unit six fixedly connected to the bottom output end of the pushing unit five and arranged perpendicularly thereto, and the pushing unit six fixedly connected to the top of the distribution box.

[0015] As a further improvement to the above solution, the feeding and conveying mechanism includes a long strip-shaped support frame fixed to the bracket. Inside the support frame, there is a ring-shaped conveyor belt II. The inner ring of the conveyor belt II is movably sleeved with conveyor rollers II distributed sequentially along its length and movably sleeved with the support frame. A motor III is installed at one end of the conveyor rollers II that extends out of the support frame.

[0016] As a further improvement to the above solution, the adjustment mechanism includes a push-pull plate slidably connected to the top of the adjustment plate, and a rack arranged sequentially along its length on one side of the push-pull plate, the rack meshing with a gear ring connected to an adjacent adsorption mechanism.

[0017] As a further improvement to the above solution, an air pipe is fixedly connected to the top of the distribution box, and a solenoid valve is connected to the air pipe.

[0018] A method for preparing inlaid decorative glass, comprising the following steps:

[0019] S1 designs the overall pattern of inlaid decorative glass products, produces design drawings, and determines the size requirements and inlay installation methods based on the drawings;

[0020] S2 cuts the inlaid glass according to the dimensional requirements specified in the drawings;

[0021] S3 grinds and trims the cut glass according to the design drawings, shaping it into the desired form.

[0022] S4 performs the inlay installation operation according to the design drawings and the inlay installation method required by the design.

[0023] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0024] This invention employs a method of limiting the glass sheet from both sides and clamping it from the bottom and top during the glass sheet conveying process, ensuring that the glass sheet is conveyed smoothly and accurately, facilitating subsequent cutting operations.

[0025] This invention enables rapid separation of the cut glass blocks from the glass sheet during the cutting process; it facilitates the rapid batch extraction and conveying of cut glass of different specifications from the glass sheet, improving glass cutting efficiency and facilitating subsequent processing of inlaid decorative glass products. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the structure of a glass inlay manufacturing system provided by the present invention;

[0027] Figure 2 This is a schematic diagram of the feeding and conveying mechanism provided by the present invention;

[0028] Figure 3 This is a partially enlarged structural schematic diagram provided by the present invention;

[0029] Figure 4 This is a schematic diagram of the structure of the adsorption separation component provided by the present invention;

[0030] Figure 5 This is a schematic diagram of the adsorption mechanism provided by the present invention;

[0031] Figure 6 This is a schematic diagram of the adjustment mechanism provided by the present invention.

[0032] Explanation of key symbols:

[0033] 1. Feeding and conveying mechanism; 2. Support frame; 3. Drive mechanism; 4. Adsorption and separation assembly; 5. Discharge and conveying mechanism; 11. Side plate; 12. Conveying unit one; 13. Side blocking unit; 14. Movable plate; 15. Upper pressure roller; 16. Contact roller; 41. Distribution box; 42. Adjusting plate; 43. Pushing unit one; 44. Adsorption mechanism; 45. Adjusting mechanism; 61. Support rod; 62. Connecting pipe one; 63. Check valve; 64. Buffer chamber; 65. Connecting pipe two; 66. Slip ring; 67. Spring one; 68. Vent hole; 69. Release ring; 610. Baffle; 611. Spring two; 612. Suction cup; 451. Push-pull plate; 452. Rack. Detailed Implementation

[0034] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0035] Example 1

[0036] Please combine Figures 1-6 The inlaid decorative glass preparation system of this embodiment includes a feeding conveying mechanism 1. A bracket 2 is fixedly connected to the top of the feeding conveying mechanism 1. A driving mechanism 3 is fixedly connected to the bracket 2. An adsorption separation component 4 is connected to the bottom output end of the driving mechanism 3. A cutting component fixedly connected to the bracket 2 is installed on the lower front side of the adsorption separation component 4. A discharging conveying mechanism 5 fixedly connected to the bracket 2 is installed on the lower side of the adsorption separation component 4 away from the cutting component.

[0037] The adsorption separation component 4 includes a long strip-shaped distribution box 41 connected to the bottom output end of the drive mechanism 3. The bottom of the distribution box 41 is provided with an adjustment plate 42 arranged parallel to it. The top of the adjustment plate 42 is fixedly connected to a push unit 43 fixedly connected to the bottom of the distribution box 41. The adjustment plate 42 is fixedly connected to an array of adsorption mechanisms 44 that are fixedly connected to the distribution box 41. The top of the adjustment plate 42 is slidably connected to an adjustment mechanism 45 for controlling the separation of the adsorption mechanism 44.

[0038] The top of the distribution box 41 is fixedly connected to an air pipe, and an electromagnetic valve is connected to the air pipe; the adjustment mechanism 45 includes a push-pull plate 451 slidably connected to the top of the adjustment plate 42, a rack 452 arranged sequentially along its length is fixedly connected to one side of the push-pull plate 451, the rack 452 meshes with a gear ring that is fixedly sleeved with the release ring 69 of the adjacent adsorption mechanism 44, and a push unit 8 fixedly connected to the adjustment plate 42 is fixedly connected to the other side of the push-pull plate 451.

[0039] The implementation principle of the inlaid decorative glass preparation system and method in this application embodiment is as follows: a plate-shaped glass sheet is fed from the front end of the feeding conveyor 1 onto the feeding conveyor 1, the feeding conveyor 1 clamps and conveys the glass sheet, and then the laser cutting head on the cutting assembly cuts glass blocks of different shapes on the glass sheet. Then the driving mechanism 3 drives the adsorption separation assembly 4 to adsorb and extract the cut glass blocks from the glass sheet and convey them to the unloading conveyor 5.

[0040] Example 2

[0041] This embodiment, based on Embodiment 1, further improves upon the following: the adsorption mechanism 44 includes a support rod 61 fixedly sleeved with the adjustment plate 42. A buffer cavity 64 is formed inside the support rod 61 along its length. A connecting pipe 62, communicating with the buffer cavity 64 and slidably sleeved with the distribution box 41, is fixedly connected to the top of the support rod 61. A check valve 63 is installed on the connecting pipe 62, and the top of the connecting pipe 62 communicates with the distribution box 41. A connecting pipe 65, slidably sleeved along the length of the support rod 61, is slidably sleeved at the bottom of the support rod 61. A slip ring 66, slidably connected to the buffer cavity 64, is fixedly sleeved on the outer ring of one end of the connecting pipe 65 that extends into the buffer cavity 64. A spring 67 is fixedly connected to the bottom of the slip ring 66 and to the inner wall of the top of the buffer chamber 64. A baffle 610 is fixedly sleeved on the outer ring of the connecting tube 65 extending out of the bottom of the support rod 61. A spring 611 is fixedly connected to the top of the baffle 610 and to the bottom of the support rod 61. A suction cup 612 is fixedly connected to the bottom of the connecting tube 65. A release ring 69 is slidably sleeved on the outer ring of the support rod 61 and slidably connected to the top of the adjustment plate 42. The release ring 69 is connected to the adjustment mechanism 45. A vent hole 68 located on the support rod 61 is opened inside the release ring 69. An air inlet hole for supplying air to the vent hole 68 is passed through the release ring 69. The release ring 69 is connected to the adjustment mechanism 45.

[0042] Example 3

[0043] Based on Embodiment 1, this embodiment is further improved in that: the feeding and conveying mechanism 1 includes two sets of parallel side plates 11, and a conveying unit 12 is connected between the two sets of side plates 11. On both sides of the conveying unit 12, there are L-shaped movable plates 14 that are slidably connected to the side plates 11. The movable plates 14 are movably sleeved with upper pressure rollers 15 that are distributed sequentially along their length direction. A contact roller 16 that is movably sleeved with the side plates 11 is installed directly below the upper pressure rollers 15. A side blocking unit 13 that is fixedly connected to the side plates 11 is provided on one side of the contact roller 16. The side blocking units 13 are arranged sequentially along the length direction of the side plates 11. A pushing unit 7 that is fixedly connected to the side plates 11 is fixedly connected to the top of the movable plate 14.

[0044] Both sets of side plates 11 are equipped with a chain of annular structure on the side away from each other. The inner ring of the chain is connected to a sprocket that is fixedly sleeved with the adjacent abutting roller 16. A motor is installed at the end of the abutting roller 16 that extends out of the side plate 11. A base is installed at the end of the motor that is fixedly connected to the adjacent side plate 11. The conveying unit 12 includes a conveyor belt of annular structure disposed between the two sets of side plates 11. The inner ring of the conveyor belt is movably sleeved with conveyor rollers that are sequentially distributed along its length and movably sleeved with the side plate 11. A motor is installed at the end of the conveyor roller that extends out of the side plate 11. The outer ring of the conveyor belt is fixedly connected with support brushes that are sequentially distributed along its length. The side blocking unit 13 includes an L-shaped fixed frame that is fixedly connected to the side plate 11. A blocking disc is movably sleeved on the top of the fixed frame.

[0045] Example 4

[0046] The cutting assembly includes a second pushing unit fixedly connected to the bracket 2, a third pushing unit fixedly connected to the bottom output end of the second pushing unit and perpendicularly arranged thereto, a fourth pushing unit fixedly connected to the bottom output end of the third pushing unit and a laser cutting head fixedly connected to the bottom output end of the fourth pushing unit;

[0047] The drive mechanism 3 includes a push unit five fixedly connected to the bracket 2, a push unit six fixedly connected to the bottom output end of the push unit five and arranged perpendicularly thereto, and the push unit six fixedly connected to the top of the distribution box 41.

[0048] The feeding and conveying mechanism 5 includes a long strip-shaped support frame fixed to the bracket 2. Inside the support frame, there is a ring-shaped conveyor belt 2. The inner ring of the conveyor belt 2 is movably sleeved with conveyor rollers 2 that are distributed sequentially along its length and movably sleeved with the support frame. A motor 3 is installed at one end of the conveyor rollers 2 that extends out of the support frame.

[0049] Example 5

[0050] A control box is installed on one side of the side panel 11. The controller is installed inside the control box. A power interface, a data interface, a display, and a power switch are installed on one side of the control box. Push unit 1 43, push unit 7, push unit 8, push unit 4, and push unit 6 use push rod motors. A proximity switch is installed at the bottom of the adjustment plate 42. Push unit 2, push unit 3, and push unit 5 use linear modules. The controller is connected to motor 1, motor 2, solenoid valve, proximity switch, push rod motor, linear module, power interface, data interface, display, and power switch.

[0051] Example 6

[0052] A method for preparing inlaid decorative glass, comprising the following steps:

[0053] S1 designs the overall pattern of inlaid decorative glass products, produces design drawings, and determines the size requirements and inlay installation methods based on the drawings;

[0054] S2 cuts the inlaid glass according to the dimensional requirements specified in the drawings;

[0055] S3 grinds and trims the cut glass according to the design drawings, shaping it into the desired form.

[0056] S4 performs the inlay installation operation according to the design drawings and the inlay installation method required by the design.

[0057] Working principle:

[0058] When glass cutting is required, the sheet glass is fed from the front end of the feeding conveyor 1 onto the feeding conveyor 1. The feeding conveyor 1 clamps and conveys the glass sheet. Then, the laser cutting head on the cutting assembly cuts glass blocks of different shapes on the glass sheet. After that, the driving mechanism 3 drives the adsorption separation assembly 4 to adsorb and extract the cut glass blocks from the glass sheet and convey them to the unloading conveyor 5.

[0059] When the glass block is adsorbed and extracted from the glass sheet, the second push unit on the drive mechanism 3 is activated first to transport the adsorption separation component 4 located at the top of the feeding conveyor mechanism 5 to the top of the conveying unit 12. Then, the sixth push unit is activated to push the adsorption separation component 4 downward to the top of the conveying unit 12 and to contact the top of the already cut glass sheet. In the initial descent stage, since the first push unit 43 is not activated, the adjustment plate 42 and the distribution box 41 are in a stationary state. As the sixth push unit is activated, the adjustment plate 42 and the distribution box 41 move downward together. At this time, the suction cup 612 first contacts the top of the glass sheet until the proximity switch at the bottom of the adjustment plate 42 is triggered to ensure that the suction cup 612 is adsorbed on the top of the glass sheet. Then, the solenoid valve is activated, the air pipe is opened, and the vacuum pump connected to the air pipe extracts the gas inside the distribution box 41, so that the inside of the distribution box 41 is in a negative pressure vacuum state.

[0060] At the beginning of adsorption, some of the suction cups 612 are on the cutting path of the glass plate and the cut glass block. The suction cups 612 in this position cannot adsorb the glass block or glass plate. The check valve 63 above them blocks the connecting pipe 62 on the adsorption mechanism 44 to prevent gas from entering the distribution box 41 from the bottom of the unadsorbed suction cups 612 and affecting the pressure of the distribution box 41.

[0061] Subsequently, the push unit 43 is activated, pushing the adjustment plate 42 upward. At this time, the suction cup 612 adsorbing the glass plate is stationary relative to the glass plate, while the suction cup 612 adsorbing the cut glass block moves upward with the adjustment plate 42, pulling the cut glass block upward from the glass plate. Since the suction cup 612 adsorbing the glass plate is stationary relative to the glass plate, the connecting tube 65 on the suction cup 612 moves downward relative to the support rod 61 until the slip ring 66 at the top of the connecting tube 65 moves downward along the buffer cavity 64 to the bottom of the vent hole 68. Afterward, the push unit 8 on the adjustment mechanism 45 is activated, causing the push-pull plate 451 to move, and then the rack 452 moves. This drives the gear ring to rotate, which in turn causes the release ring 69 to rotate. The air inlet on the release ring 69 connects with the vent 68. At this time, external gas enters the vent 68 through the air inlet and then enters the buffer chamber 64. The pressure inside the buffer chamber 64 increases, and the suction cup 612 no longer adheres to the glass plate. Simultaneously, the check valve 63 above it prevents backflow of the connecting pipe 62. Under the action of spring 67 and spring 611, the suction cup 612 moves upward, ensuring that the suction cup 612 is completely separated from the glass plate. This achieves the rapid separation of the cut glass block from the glass plate, facilitating the rapid batch extraction and conveying of cut glass of different specifications from the glass plate, thus improving glass cutting efficiency.

[0062] During feeding, the glass sheet is placed on top of the conveying unit 12. The two sides of the glass sheet abut against the outer wall of the blocking plate on the side blocking unit 13. The bottom of the glass sheet is placed on the bottom of the contact roller 16, and the top of the glass sheet abuts against the bottom of the upper pressure roller 15. During the conveying process, the contact roller 16 and the upper pressure roller 15 clamp and abut against the glass sheet. The blocking plate restricts the glass sheet from both sides to ensure that the glass sheet is conveyed smoothly and accurately, which facilitates the subsequent cutting operation.

[0063] The design firstly restricts the glass sheet from both sides during the glass sheet conveying process, and clamps it from the bottom and top to ensure that the glass sheet is conveyed smoothly and accurately, which facilitates subsequent cutting operations. During cutting, it enables the rapid separation of the cut glass blocks from the glass sheet. It also facilitates the rapid batch extraction and conveying of cut glass of different specifications from the glass sheet, improving glass cutting efficiency and facilitating subsequent processing of inlaid decorative glass products.

[0064] The above embodiments are merely preferred embodiments of the present invention and should not be construed as limiting the scope of protection of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention shall fall within the scope of protection claimed by the present invention.

Claims

1. A system for preparing inlaid decorative glass, characterized in that, The device includes a feeding conveyor mechanism, a support fixed to the top of the feeding conveyor mechanism, a drive mechanism fixed to the support, an adsorption separation component connected to the bottom output end of the drive mechanism, a cutting component fixed to the support and installed below the front side of the adsorption separation component, and a discharging conveyor mechanism fixed to the support and installed below the side of the adsorption separation component away from the cutting component. The adsorption separation assembly includes a long strip-shaped distribution box connected to the bottom output end of the drive mechanism. An adjustment plate is provided at the bottom of the distribution box and is arranged parallel to it. A push unit is fixedly connected to the top of the adjustment plate and is fixedly connected to the bottom of the distribution box. An array of adsorption mechanisms is fixedly connected to the adjustment plate and is fixedly connected to the distribution box. An adjustment mechanism for controlling the separation of the adsorption mechanisms is slidably connected to the top of the adjustment plate. The adsorption mechanism includes a support rod fixedly sleeved with an adjustment plate. A buffer cavity is provided inside the support rod along its length. A connecting pipe is fixedly connected to the top of the support rod, communicating with the buffer cavity and slidably sleeved with a distribution box. A check valve is installed on the connecting pipe, and the top of the connecting pipe is connected to the distribution box. A connecting pipe is slidably sleeved at the bottom of the support rod along its length. A slip ring is fixedly sleeved on the outer ring of the end of the connecting pipe that extends into the buffer cavity and is slidably connected to the buffer cavity. A spring is fixedly connected to the bottom of the slip ring and to the inner side wall of the top of the buffer cavity. A baffle is fixedly sleeved on the outer ring of the end of the connecting pipe that extends out of the bottom of the support rod. A spring is fixedly connected to the top of the baffle and to the bottom of the support rod. A suction cup is fixedly attached to the bottom of the connecting pipe. A release ring is slidably sleeved on the outer ring of the support rod and is slidably connected to the top of the adjustment plate. The release ring is connected to the adjustment mechanism. A vent hole is provided inside the release ring on the support rod. An air inlet hole for supplying air to the vent hole is passed through the release ring. The release ring is connected to the adjustment mechanism. The feeding and conveying mechanism includes two sets of parallel side plates, and a conveying unit 1 is connected between the two sets of side plates. On both sides of the conveying unit 1, there are L-shaped movable plates that are slidably connected to the side plates. The movable plates are movably sleeved with upper pressure rollers that are distributed sequentially along their length. A stop roller that is movably sleeved with the side plate is installed directly below the upper pressure roller. A side blocking unit that is fixed to the side plate is provided on one side of the stop roller. The side blocking units are arranged sequentially along the length of the side plates. A pushing unit 7 that is fixed to the opposite side plate is fixedly connected to the top of the movable plate.

2. The inlaid decorative glass preparation system as described in claim 1, characterized in that, Both sets of side plates are equipped with a chain of annular structure on the side away from each other. The inner ring of the chain is connected to a sprocket that is fixedly sleeved with the adjacent abutting roller. A motor is installed at the end of the abutting roller that extends out of the side plate. A base that is fixedly connected to the adjacent side plate is installed at the end of the motor. The conveying unit includes a conveyor belt of annular structure disposed between the two sets of side plates. The inner ring of the conveyor belt is movably sleeved with conveyor rollers that are sequentially distributed along its length and movably sleeved with the side plates. A motor is installed at the end of the conveyor roller that extends out of the side plate. Support brushes that are sequentially distributed along its length are fixedly connected to the outer ring of the conveyor belt. The side blocking unit includes an L-shaped fixed frame that is fixedly connected to the side plate. A blocking disc is movably sleeved on the top of the fixed frame.

3. The inlaid decorative glass preparation system as described in claim 1, characterized in that, The cutting assembly includes a second pushing unit fixedly connected to the bracket, a third pushing unit fixedly connected to the bottom output end of the second pushing unit and perpendicularly arranged thereto, a fourth pushing unit fixedly connected to the bottom output end of the third pushing unit and a laser cutting head fixedly connected to the bottom output end of the fourth pushing unit.

4. The inlaid decorative glass preparation system as described in claim 1, characterized in that, The driving mechanism includes a pushing unit five fixedly connected to the bracket, a pushing unit six fixedly connected to the bottom output end of the pushing unit five and arranged perpendicularly thereto, and the pushing unit six fixedly connected to the top of the distribution box.

5. The inlaid decorative glass preparation system as described in claim 1, characterized in that, The feeding and conveying mechanism includes a long strip-shaped support frame fixed to the bracket. Inside the support frame, there is a ring-shaped conveyor belt II. The inner ring of the conveyor belt II is movably sleeved with conveyor rollers II that are distributed sequentially along its length and movably sleeved with the support frame. A motor III is installed at one end of the conveyor rollers II that extends out of the support frame.

6. The inlaid decorative glass preparation system as described in claim 1, characterized in that, The adjustment mechanism includes a push-pull plate slidably connected to the top of the adjustment plate. A rack is fixedly connected to one side of the push-pull plate and arranged sequentially along its length. The rack meshes with a gear ring connected to an adjacent adsorption mechanism.

7. The inlaid decorative glass preparation system as described in claim 1, characterized in that, An air pipe is fixed to the top of the distribution box, and a solenoid valve is connected to the air pipe.

8. A method for preparing inlaid decorative glass, characterized in that, The steps include: S1 designs the overall pattern of inlaid decorative glass products, produces design drawings, and determines the size requirements and inlay installation methods based on the drawings; S2 cuts the inlaid glass according to the size requirements determined in the drawings using an inlaid decorative glass preparation system as described in any one of claims 1-7; S3 grinds and trims the cut glass according to the design drawings, shaping it into the desired form. S4 performs the inlay installation operation according to the design drawings and the inlay installation method required by the design.