A glass deep processing equipment based on remote communication

By combining four edge hole fitting modules and a glue-filling head, the problems of easy deformation of edge holes and water vapor erosion in laminated glass are solved, enabling efficient deep processing and long-term safe use of laminated glass.

CN119239100BActive Publication Date: 2026-05-05信义节能玻璃(江门)有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
信义节能玻璃(江门)有限公司
Filing Date
2024-10-30
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Laminated glass is prone to deformation at the edge holes, moisture erosion, and incomplete sealing of the sealant, which can lead to bubbles or delamination, affecting safe use over a long period of time.

Method used

The four edge hole mating and filling modules are adopted, including the mating top shell, mating middle shell and mating bottom shell. Multi-directional glue injection is carried out through the glue injection head and fixed vertical cylinder to fill and fill the edge hole area of ​​the laminated glass.

Benefits of technology

It effectively covers and fills the edge holes of laminated glass, improves deep processing efficiency, and ensures the safe use of laminated glass for a long time.

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Abstract

This invention discloses a glass deep processing equipment based on remote communication, belonging to the field of glass deep processing technology. It includes a processing table with two control arms fixedly connected to its side. A glass positioning module is located on the top of the processing table, comprising a bottom frame, a middle frame, and a top frame. The top frame and the middle frame are controlled by corresponding control arms. This invention uses four edge hole docking and filling modules connected to the interior of the four edge holes. The docking top shell, docking middle shell, and docking bottom shell are respectively aligned with the upper glass layer, the middle laminated layer, and the lower glass layer. Two surface covering shells, through their own deformation, are positioned and completely cover the outer edges of the edge holes on the upper and lower surfaces of the laminated glass. A glue-filling head is connected to the interior of the corresponding fixed-point vertical cylinder, effectively allowing for simultaneous direct injection of glue into various areas inside the edge holes from multiple directions, thus deep-processing and filling the edge hole areas of the laminated glass.
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Description

Technical Field

[0001] This invention relates to the field of glass deep processing technology, and specifically to a glass deep processing equipment based on remote communication. Background Technology

[0002] Laminated glass is made from two sheets of glass bonded together using a deep processing technique. Before use, holes are drilled in the edge area of ​​the laminated glass to connect it to adjacent structures. These edge holes are drilled directly into the edge area of ​​the glass using a drilling machine, close to the edge. The edge holes penetrate the upper and lower glass sheets and the central interlayer. Under load, the area around these edge holes often deforms significantly, and moisture easily erodes the exposed interlayer through them. Effective localized patching of the edge holes is impossible, making the laminated glass prone to air bubbles or delamination during use. Some laminated glass has a rubber ring directly inserted into the edge hole to fill the gap between the edge hole and the adjacent structure. However, the rubber ring cannot effectively cover and completely fill the area of ​​the edge hole, making it easy for air bubbles or delamination to occur in the near-edge hole part of the original glass sheet. This makes it impossible to effectively fill the edge hole part of the laminated glass with deep processing, thus affecting the long-term safe use of the laminated glass. Summary of the Invention

[0003] To overcome the aforementioned deficiencies of the prior art, this invention provides a glass deep processing device based on remote communication. This device features four edge hole mating and filling modules that connect to the interior of the four edge holes. The mating top shell, mating middle shell, and mating bottom shell are aligned with the upper glass layer, the middle laminated layer, and the lower glass layer, respectively. Two surface covering shells, through their own deformation, are positioned and completely cover the outer edges of the edge holes on the upper and lower surfaces of the laminated glass, effectively filling and filling the corresponding areas of the edge holes. A glue-filling head connects to the interior of the corresponding fixed-point vertical cylinder, effectively and simultaneously injecting glue directly into the inner areas of the edge holes from multiple directions, thus deep-processing and filling the edge hole areas of the laminated glass and solving the problems mentioned in the background art.

[0004] To achieve the above objectives, the present invention provides the following technical solution:

[0005] A glass deep processing device based on remote communication includes a processing table. Two control arms are fixedly connected to the side of the processing table. A glass positioning module is provided on the top of the processing table. The glass positioning module includes a bottom frame, a middle frame, and a top frame. The top frame and the middle frame are controlled by corresponding control arms and are sequentially clamped above the bottom frame from top to bottom to position the laminated glass on the top of the processing table. Four processing and glue-filling modules are provided on the top of the processing table. Each processing and glue-filling module includes a glue-filling component, a connecting plate, and a glue-filling head. The glue-filling head is positioned inside the top frame through the connecting plate, and the connecting plate connects the glue-filling component to the glass. The glue-filling head applies glue to the corresponding edge hole of the laminated glass. Below the connecting plate is an edge hole mating and filling module, which includes a bottom mating shell, a middle mating shell, a top mating shell, a surface covering shell, and a fixed-point vertical cylinder. The top mating shell, the middle mating shell, and the bottom mating shell are fixedly positioned from top to bottom on the inner side of the corresponding edge hole of the laminated glass via the fixed-point vertical cylinder. There are two surface covering shells, each fixedly positioned on the upper and lower surfaces of the laminated glass to fill the outer edge of the edge hole. The glue-filling head connects to the fixed-point vertical cylinder from the inner side to apply glue and fill the edge hole of the laminated glass.

[0006] Furthermore, since the glass positioning module is positioned in a fixed area on the top of the processing table, the bottom frame is fixedly connected to the top of the processing table, the middle frame is snapped into the top of the bottom frame, and the top frame is snapped into the top of the middle frame, so that the top frame and the middle frame can smoothly and stably complete the sequential connection and fixing operation above the bottom frame, so as to align and assemble the glass positioning module and separate the components of the glass positioning module, thereby flexibly and conveniently placing, securing, separating and removing the laminated glass in the glass positioning module.

[0007] Furthermore, since the glass positioning module is controlled by the two control arms to separate and assemble components on the top of the processing table, the front ends of the two control arms are fixedly connected to the combination plates. The two combination plates are respectively fixedly connected to the outer wall of the middle frame and the side of the corresponding connecting plate, so that the two control arms are stably connected to the middle frame and the top frame respectively, so as to perform the sequential separation and assembly of the top frame and the middle frame through the two control arms.

[0008] Furthermore, since the processing and potting module performs the potting operation on the top of the processing table to the corresponding edge hole mating and filling module, the potting component is fixedly connected to the top of the processing table, and the four potting components are respectively located on the outer side of the four corners of the bottom frame, so that the four potting components are fixedly located on the outer side of the four edge hole mating and filling modules. The connecting plate is fixedly connected to the top of the top frame, and the potting head is fixedly connected to the bottom of the connecting plate. The connecting plate and the potting head are stably connected to the top frame, so that the potting head can complete the alignment operation with the edge hole mating and filling module located below the top frame, ensuring that the potting head can effectively mate with the edge hole mating and filling module, so as to smoothly perform the potting and filling operation of the edge hole part of the laminated glass.

[0009] Furthermore, a connecting pipe is fixedly connected to the output end of the potting component. The connecting pipe is inserted into the connecting plate, and the other end of the connecting pipe is fixedly connected to the top of the potting head. The connecting pipe connects the potting component and the potting head, allowing the adhesive to be transported from the potting component to the potting head. The connecting plate constrains a portion of the connecting pipe from the outside, thus positioning and constraining the connecting pipe in a designated area outside the top frame. This improves the stability of the potting module and ensures the smooth completion of the potting and filling operation at the edge holes of the laminated glass.

[0010] Furthermore, the fixed-point vertical cylinder is engaged with the outside of the dispensing head, and the bottom end of the fixed-point vertical cylinder is engaged with the top of the processing table, so that the edge hole mating and filling module can be stably positioned on the top of the processing table corresponding to the edge hole of the laminated glass. At the same time, the dispensing head is smoothly inserted into the fixed-point vertical cylinder from top to bottom and is engaged with the dispensing head inside the fixed-point vertical cylinder. The dispensing port on the dispensing head is aligned with the mating hole on the fixed-point vertical cylinder, so that the glue released by the dispensing head passes through the fixed-point vertical cylinder and enters the mating top shell, the mating middle shell and the mating bottom shell to continue the dispensing and filling operation of the edge hole.

[0011] Furthermore, the top docking shell, the middle docking shell, and the bottom docking shell are sequentially and fixedly connected to the outer wall of the fixed-point vertical cylinder from top to bottom. The two surface covering shells are respectively fixedly connected to the bottom of the bottom docking shell and the top of the top docking shell, stably combining the top docking shell, the middle docking shell, the bottom docking shell, the two surface covering shells, and the fixed-point vertical cylinder. The fixed-point vertical cylinder is positioned at the edge hole of the laminated glass, so that the top docking shell, the middle docking shell, and the bottom docking shell are respectively aligned with the upper glass, the middle laminated part, and the lower glass. At the same time, the two surface covering shells, through their own deformation, are respectively fixed and completely cover the outer edge of the edge hole on the upper and lower surfaces of the laminated glass, which can effectively fill and supplement the corresponding areas of the edge hole of the laminated glass, so that the glue injected later can directly fill the designated area, improving the glue filling effect of the subsequent edge hole.

[0012] Furthermore, the surfaces of the bottom shell, the middle shell, the top shell, and the surface covering shell are all equipped with release mesh holes. Through these release mesh holes, adhesive is simultaneously injected into the inner side of the edge holes from multiple directions, effectively completing the diffusion and injection of the adhesive, improving the deep processing effect of the edge hole portion of the laminated glass, and increasing the efficiency of deep glass processing.

[0013] Compared with the prior art, the beneficial effects of the present invention are:

[0014] This invention uses a modular glass positioning module to position the laminated glass with punched edge holes at the top of a processing table. Four edge hole fitting modules positioned at the top of the table align with the four edge holes of the laminated glass, simultaneously connecting to the interior of each hole. The top, middle, and bottom shells align with the upper glass, the middle laminated layer, and the lower glass, respectively. Two surface covering shells, through their deformation, position and completely cover the outer edges of the edge holes on the upper and lower surfaces of the laminated glass, effectively filling and fitting the corresponding areas of the edge holes. A dispensing head, controlled by a control arm, connects to the corresponding vertical cylinder. Through the expansion of the components of the edge hole fitting module and the diffusion effect of several release mesh holes on the surface, adhesive can be effectively and simultaneously injected directly into the inner areas of the edge holes from multiple directions. This improves the deep processing and filling effect of the laminated glass edge holes, increases the efficiency of deep glass processing, and ensures the long-term safe use of the processed laminated glass. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments, the accompanying drawings will be briefly described below.

[0016] Figure 1 This is a schematic diagram of the structure of the present invention;

[0017] Figure 2This is a side view of the cross-sectional structure of the present invention;

[0018] Figure 3 This is a cross-sectional structural diagram of the combined state of the present invention;

[0019] Figure 4 This is a schematic diagram of the partially separated structure of the present invention;

[0020] In the diagram: 1. Processing table; 11. Control arm; 111. Combination plate; 2. Glass positioning module; 21. Bottom frame; 22. Middle frame; 23. Top frame; 3. Processing and potting module; 31. Potting component; 311. Connecting pipe; 32. Connecting plate; 33. Potting head; 4. Edge hole mating and filling module; 41. Butt bottom shell; 42. Butt middle shell; 43. Butt top shell; 44. Surface covering shell; 45. Positioning vertical cylinder; 46. Release mesh. Detailed Implementation

[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Specific mechanical structures of the present invention will be described in conjunction with the following references. Figures 1 to 4 The detailed description of the structure will be clearly presented. All structural details mentioned in the following embodiments are based on the accompanying drawings.

[0022] Please see Figures 1-4 In this embodiment of the invention, a glass deep processing equipment based on remote communication includes a processing table 1. Two control arms 11 are fixedly connected to the side of the processing table 1. A glass positioning module 2 is provided on the top of the processing table 1. The glass positioning module 2 includes a bottom frame 21, a middle frame 22, and a top frame 23. The top frame 23 and the middle frame 22 are controlled by corresponding control arms 11 and are sequentially clamped above the bottom frame 21 from top to bottom to position the laminated glass on the top of the processing table 1. Four processing and glue-filling modules 3 are provided on the top of the processing table 1. The processing and glue-filling module 3 includes a glue-filling component 31, a connecting plate 32, and a glue-filling head 33. The glue-filling head 33 is positioned inside the top frame 23 by the connecting plate 32, and the connecting plate 32 is connected to the glue-filling component. The component 31 and the glue-filling head 33 apply glue to the corresponding edge hole of the laminated glass; an edge hole mating and filling module 4 is provided below the connecting plate 32. The edge hole mating and filling module 4 includes a mating bottom shell 41, a mating middle shell 42, a mating top shell 43, a surface covering shell 44, and a fixed-point vertical cylinder 45. The mating top shell 43, the mating middle shell 42, and the mating bottom shell 41 are fixedly positioned inside the corresponding edge hole of the laminated glass from top to bottom through the fixed-point vertical cylinder 45. There are two surface covering shells 44. The two surface covering shells 44 are fixedly positioned on the upper and lower surfaces of the laminated glass to fill the outer edge of the edge hole. The glue-filling head 33 is connected to the fixed-point vertical cylinder 45 from the inside to apply glue to fill the edge hole of the laminated glass.

[0023] The processing table 1 is used to connect equipment parts. Two control arms 11 are fixedly connected to the side of the processing table 1. The control arms 11 are used to control the assembly of the glass positioning module 2 on the top of the processing table 1. The control arms 11 are remotely controlled by the operator to improve the convenience of operation. The glass positioning module 2 is set on the top of the processing table 1. The glass positioning module 2 consists of a bottom frame 21, a middle frame 22 and a top frame 23. The glass positioning module 2 is positioned in a fixed area on the top of the processing table 1. The bottom frame 21 is fixedly connected to the top of the processing table 1. The middle frame 22 is snapped into the top of the bottom frame 21. The top frame 23 is snapped into the top of the middle frame 22, so that the top frame 23 and the middle frame 22 can smoothly and stably complete the sequential connection and fixing operation above the bottom frame 21 to align and assemble the glass positioning module 2 and separate the components of the glass positioning module 2, thereby flexibly and conveniently placing, securing and separating the laminated glass in the glass positioning module 2. The glass positioning module 2, controlled by two control arms 11, separates and assembles components on the top of the processing table 1. Each control arm 11 has a fixed assembly plate 111 at its front end. The two assembly plates 111 are respectively fixedly connected to the outer wall of the middle frame 22 and the side of the corresponding connecting plate 32, allowing the two control arms 11 to stably connect the middle frame 22 and the top frame 23. This enables the sequential separation and assembly of the top frame 23 and the middle frame 22, allowing them to be sequentially clamped onto the bottom frame 21 from top to bottom. The top frame 23 and the bottom frame 21 correspond to the upper and lower glass layers, respectively, while the middle frame 22 corresponds to the middle laminated glass layer, thus positioning the laminated glass on the top of the processing table 1.

[0024] Four processing and filling modules 3 are provided on the top of the processing table 1. Each processing and filling module 3 consists of a filling component 31, a connecting plate 32, and a filling head 33. The processing and filling modules 3 perform the filling operation on the top of the processing table 1 to fill the corresponding edge hole filling modules 4. The filling component 31 is fixedly connected to the top of the processing table 1. The four filling components 31 are located on the outer side of the four corners of the bottom frame 21, so that the four filling components 31 are fixedly located on the outer side of the four edge hole filling modules 4. The connecting plate 32 is fixedly connected to the top of the top frame 23, and the filling head 33 is fixedly connected to the bottom of the connecting plate 32. The connecting plate 32 and the filling head 33 are stably connected to the top frame 23, so that the filling head 33 can complete the alignment operation with the edge hole filling module 4 located below the top frame 23, ensuring that the filling head 33 can effectively connect with the edge hole filling module 4, so as to smoothly carry out the filling operation of the edge hole part of the laminated glass. The output end of the potting component 31 is fixedly connected to a connecting pipe 311, which is inserted into the inside of the connecting plate 32. The other end of the connecting pipe 311 is fixedly connected to the top of the potting head 33. The potting component 31 and the potting head 33 are connected through the connecting pipe 311, so that the glue can be transported from the potting component 31 to the inside of the potting head 33 through the connecting pipe 311. The connecting plate 32 constrains a part of the connecting pipe 311 from the outside, which plays the role of positioning and constraining the connecting pipe 311 in the designated area outside the top frame 23, improving the stability of the potting module 3 and ensuring the smooth progress of the potting and filling operation of the edge hole of the laminated glass.

[0025] Below the connecting plate 32, an edge hole mating module 4 is provided. The edge hole mating module 4 consists of a mating bottom shell 41, a mating middle shell 42, a mating top shell 43, a surface covering shell 44, and a fixed-point vertical cylinder 45. The mating top shell 43, the mating middle shell 42, and the mating bottom shell 41 are fixedly positioned inside the corresponding edge holes of the laminated glass from top to bottom through the fixed-point vertical cylinder 45. The mating top shell 43, the mating middle shell 42, and the mating bottom shell 41 are fixedly connected to the outer wall of the fixed-point vertical cylinder 45 from top to bottom. There are two surface covering shells 44, which are fixedly connected to the bottom of the mating bottom shell 41 and the top of the mating top shell 43, respectively, stably combining the mating top shell 43, the mating middle shell 42, the mating bottom shell 41, the two surface covering shells 44, and the fixed-point vertical cylinder 45. The positioning vertical cylinder 45 is positioned at the edge hole of the laminated glass, aligning the top shell 43, middle shell 42, and bottom shell 41 with the upper glass, middle laminated section, and lower glass, respectively. Simultaneously, the two surface covering shells 44 deform to precisely and completely cover the outer edges of the edge holes on the upper and lower surfaces of the laminated glass, effectively filling the corresponding areas of the edge holes. This allows subsequent glue to be directly applied to the designated areas, improving the glue filling effect of the edge holes. The positioning vertical cylinder 45 engages with the outside of the glue-applying head 33, and its bottom end engages with the top of the processing table 1. This ensures the edge hole filling module 4 is stably positioned at the top of the processing table 1 corresponding to the edge hole of the laminated glass, allowing the glue-applying head 33 to smoothly enter the positioning vertical cylinder 45 from top to bottom and securely engage within it. The glue-filling nozzle on the glue-filling head 33 is aligned with the mating hole on the fixed-point vertical cylinder 45, allowing the glue-filling head 33 to connect to the inside of the fixed-point vertical cylinder 45. This allows the glue released from the glue-filling head 33 to pass through the fixed-point vertical cylinder 45 and enter the interior of the mating top shell 43, mating middle shell 42, and mating bottom shell 41 to continue the glue-filling and filling operation of the edge holes. The surfaces of the mating bottom shell 41, mating middle shell 42, mating top shell 43, and surface cover shell 44 all have release mesh holes 46. Through the release mesh holes 46, the glue is simultaneously injected into the inside of the edge holes from multiple directions, effectively completing the diffusion and filling of the glue, improving the deep processing effect of the edge hole portion of the laminated glass, and increasing the efficiency of glass deep processing. The edge hole mating and filling module 4 acts as a filler to ensure a stable connection between the laminated glass and the adjacent structure.

[0026] After the components of the glass positioning module 2 are assembled by the control arm 11, the laminated glass with the edge holes punched is positioned on the top of the processing table 1. The four edge hole fitting modules 4 positioned on the top of the processing table 1 are respectively connected to the inside of the four edge holes. The top shell 41, the middle shell 42, and the bottom shell 43 are aligned with the upper glass, the middle laminated part, and the lower glass, respectively. The two surface covering shells 44 are positioned and completely covered on the outer edge of the edge holes on the upper and lower surfaces of the laminated glass through their own deformation, which can effectively fill and fill the corresponding areas of the edge holes of the laminated glass. The control arm 11 controls the moving glue-filling head 33 to connect to the corresponding fixed-point vertical cylinder 45, and simultaneously connects to the fixed-point vertical cylinder 45. Through the self-expansion of each component of the edge-hole-connecting and filling module 4 and the diffusion of several release mesh holes 46 on the surface, the glue can be effectively poured into each area inside the edge hole from multiple directions at the same time, improving the deep processing filling effect of the edge hole part of the laminated glass, improving the efficiency of deep glass processing, and ensuring the safe use of the deep-processed laminated glass for a long time.

[0027] The working principle of this invention is as follows: The laminated glass is placed inside the bottom frame 21 at the top of the processing table 1. The top frame 23 and the middle frame 22 are driven by the corresponding control arm 11 to sequentially connect to the bottom frame 21, thus securing the laminated glass with the edge holes punched to the top of the processing table 1. The four edge hole connecting and filling modules 4 are respectively connected to the four edge holes. The connecting top shell 41, connecting middle shell 42, and connecting bottom shell 43 are respectively aligned with the upper glass, the middle laminated part, and the lower glass. The two surface covering shells 44 deform and recover during the process of entering the edge holes. The two recovered surface covering shells 44 are respectively fixed and completely The glue is applied to the outer edge of the edge holes on the upper and lower surfaces of the laminated glass, filling and supplementing the corresponding areas of the edge holes. The control arm 11 controls the moving glue head 33 to connect to the corresponding fixed vertical cylinder 45, connecting the fixed vertical cylinder 45 to release the glue through the fixed vertical cylinder 45 into the docking bottom shell 41, docking middle shell 42, docking top shell 43 and surface cover shell 44. The components of the edge hole docking and filling module 4 expand to tightly cover the edge hole areas. At the same time, several release mesh holes 46 on the surface release glue from multiple directions to the edge hole areas, completing the deep processing and filling of the edge hole part of the laminated glass.

[0028] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A glass deep processing equipment based on remote communication, comprising a processing table (1), wherein two control arms (11) are fixedly connected to the side of the processing table (1), characterized in that, The processing table (1) is provided with a glass positioning module (2) on the top. The glass positioning module (2) includes a bottom frame (21), a middle frame (22) and a top frame (23). The top frame (23) and the middle frame (22) are controlled by the corresponding control arm (11) and are clamped from top to bottom above the bottom frame (21) to position the laminated glass on the top of the processing table (1). The processing table (1) is provided with four processing and dispensing modules (3) on the top. Each processing and dispensing module (3) includes a dispensing component (31), a connecting plate (32), and a dispensing head (33). The dispensing head (33) is positioned inside the top frame (23) through the connecting plate (32). The connecting plate (32) connects the dispensing component (31) and the dispensing head (33) to dispense glue to the corresponding edge hole of the laminated glass. Below the connecting plate (32) is an edge hole mating and filling module (4). The edge hole mating and filling module (4) includes a mating bottom shell (41), a mating middle shell (42), a mating top shell (43), a surface covering shell (44), and a fixed-point vertical cylinder (45). The mating top shell (43), the mating middle shell (42), and the mating bottom shell (41) are fixedly positioned from top to bottom on the inner side of the corresponding edge hole of the laminated glass through the fixed-point vertical cylinder (45). There are two surface covering shells (44). The two surface covering shells (44) are fixedly positioned on the upper and lower surfaces of the laminated glass to fill the outer edge of the edge hole. The glue-filling head (33) is connected to the fixed-point vertical cylinder (45) from the inside to fill the edge hole of the laminated glass with glue.

2. The glass deep processing equipment based on remote communication according to claim 1, characterized in that, The bottom frame (21) is fixedly connected to the top of the processing table (1), the middle frame (22) is snapped into the top of the bottom frame (21), and the top frame (23) is snapped into the top of the middle frame (22).

3. The glass deep processing equipment based on remote communication according to claim 1, characterized in that, The front ends of the two control arms (11) are fixedly connected to a combination plate (111), and the two combination plates (111) are respectively fixedly connected to the outer wall of the middle frame (22) and the side of the corresponding connecting plate (32).

4. The glass deep processing equipment based on remote communication according to claim 1, characterized in that, The potting component (31) is fixedly connected to the top of the processing table (1). The four potting components (31) are located on the outer sides of the four corners of the bottom frame (21). The connecting plate (32) is fixedly connected to the top of the top frame (23). The potting head (33) is fixedly connected to the bottom of the connecting plate (32).

5. The glass deep processing equipment based on remote communication according to claim 1, characterized in that, The output end of the dispensing component (31) is fixedly connected to a connecting tube (311), which is inserted into the inside of the connecting plate (32). The other end of the connecting tube (311) is fixedly connected to the top of the dispensing head (33).

6. The glass deep processing equipment based on remote communication according to claim 1, characterized in that, The fixed-point vertical cylinder (45) is engaged with the outside of the glue dispensing head (33), and the bottom end of the fixed-point vertical cylinder (45) is engaged with the top of the processing table (1).

7. A glass deep processing equipment based on remote communication according to claim 1, characterized in that, The docking top shell (43), the docking middle shell (42), and the docking bottom shell (41) are fixedly connected to the outer wall of the fixed-point vertical cylinder (45) from top to bottom. The two surface covering shells (44) are fixedly connected to the bottom of the docking bottom shell (41) and the top of the docking top shell (43), respectively.

8. A glass deep processing equipment based on remote communication according to claim 1, characterized in that, The surfaces of the docking bottom shell (41), the docking middle shell (42), the docking top shell (43), and the surface covering shell (44) all have release mesh holes (46).

Citation Information

Patent Citations

  • Production process of laminated glass

    CN118683157A

  • Laminated glass convenient for colloid fusion

    CN217415117U