A glass curtain wall panel processing device and its usage method
By designing a glass curtain wall panel processing device with a rotary motor-driven cutting device and an automatic separation structure, the problems of low cutting accuracy and safety hazards in the existing technology have been solved, and efficient and safe glass curtain wall panel cutting has been achieved.
Patent Information
- Application Number
- CN202510069264.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2045-01-16
AI Technical Summary
The cutting precision of existing glass curtain wall panels is difficult to guarantee, the cutting speed is slow, and there are safety hazards.
Design a glass curtain wall panel processing device that uses a rotary motor to drive a cutting tool to move along a fixed path, and achieves automatic separation of glass curtain wall panels through a support plate and a lifting structure, avoiding manual operation.
This improved the cutting precision and efficiency of glass curtain wall panels while enhancing cutting safety and reducing the risk of injury from glass shards.
Smart Images

Figure CN119773069B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of building construction technology, specifically relating to a glass curtain wall panel processing device and its usage method. Background Technology
[0002] A glass curtain wall refers to an exterior building envelope or decorative structure that is supported by a structural system and allows for a certain degree of displacement relative to the main structure, without sharing the loads of the main structure. The wall can be single-pane or double-pane glass. Glass curtain walls are an aesthetically pleasing and innovative method of architectural wall decoration, a prominent feature of the modernist high-rise building era. Glass curtain wall panels are a crucial component of a glass curtain wall.
[0003] Existing glass curtain wall panels require processing before use. Typically, workers need to cut the glass curtain wall panels to the required length to meet construction requirements. Currently, the cutting method on construction sites mostly involves manual operation with a handheld glass cutter. Scratches are made on the surface of the glass curtain wall panel before it is broken. This cutting method not only makes it difficult to guarantee cutting accuracy, but also results in slow cutting speed. In addition, during the cutting process, defects such as chipping and cracking are prone to occur at the edges of the glass curtain wall panel. Operators may be cut by glass shards if they are not careful when breaking the panels, posing certain safety hazards. Summary of the Invention
[0004] In view of this, the purpose of the present invention is to provide a glass curtain wall panel processing device and its method of use, so as to improve the cutting accuracy, cutting efficiency and cutting safety of glass curtain wall panels.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] This invention discloses a glass curtain wall panel processing device, comprising a processing table. An L-shaped plate is provided on the bottom surface of one end of the processing table. The vertical portion of the L-shaped plate is fixed to the processing table. A plurality of supporting springs are provided on the upper surface of the horizontal portion of the L-shaped plate. One end of each supporting spring is fixed to the L-shaped plate, and a supporting plate is provided on the other end of each supporting spring. The supporting plate is fixed to the supporting spring. The supporting plate is at the same height as the processing table, and the processing table and the supporting plate are joined together. Fixing plates are symmetrically provided on both sides of the end of the processing table. One end of each fixing plate is fixed to the processing table, and a driving mechanism is provided on the fixing plate. A screw, with its two ends rotatably connected to a fixed plate, has a rotary motor mounted on one end of the drive screw. The rotary motor is fixed to the fixed plate, and its output end is fixed to the end of the drive screw. A nut slider is mounted on the drive screw and threadedly connected to the screw. A tool holder is mounted on the end of the nut facing the support plate. The tool holder passes through the nut slider and is vertically and vertically connected to the nut slider. A cutting tool is mounted on the end of the tool holder facing the processing table. The cutting tool is fixed to the tool holder, and its cutting edge is flush with the edge of the processing table.
[0007] Furthermore, the nut slider is provided with a U-shaped frame, the open end of the U-shaped frame is fixed to the nut slider, the knife handle is cylindrical and slidably connected to the nut slider, the closed end of the U-shaped frame is provided with a mounting through hole, the knife handle is located in the mounting through hole, a sliding plate is provided on the knife handle below the closed end of the U-shaped frame, the sliding plate is slidably sleeved on the knife handle, an adjusting spring is provided on the sliding plate, one end of the adjusting spring is fixed to the sliding plate, a baffle is provided on the end of the knife handle above the U-shaped frame, the baffle is fixed to the knife handle, the other end of the adjusting spring is fixed to the baffle, and the adjusting spring is sleeved on the knife handle and located in the mounting through hole, symmetrical adjusting screws are provided on the closed end of the U-shaped frame, the adjusting screws are threadedly connected to the closed end of the U-shaped frame, and the threaded ends of the two adjusting screws are respectively rotatably connected to the two ends of the sliding plate.
[0008] Furthermore, a mounting plate is provided on the side of the fixed plate on one side. One end of the mounting plate is fixed to the fixed plate. A hollow lifting cavity is provided below the mounting plate. The lifting cavity includes a horizontal cavity and an arc-shaped cavity. The horizontal cavity is located directly below the mounting plate. The arc-shaped surface of the arc-shaped cavity faces the mounting plate. Several connecting springs are provided on the side of the mounting plate facing the horizontal cavity. The two ends of the connecting springs are respectively fixed to the surfaces of the mounting plate and the horizontal cavity. A push rod is provided on the end of the nut slider facing the support plate. One end of the push rod is fixed to the nut slider, and the other end of the push rod is located in the cavity of the lifting cavity.
[0009] Furthermore, a limiting post is provided on the surface of the arc-shaped cavity, the limiting post passes through the surface of the arc-shaped cavity and is slidably connected to the arc-shaped cavity, a right-angle plate is provided on the fixing plate near the arc-shaped cavity, one end of the right-angle plate is fixed to the fixing plate, one end of the limiting post is fixed to the right-angle plate, and several rubber blocks are provided on the side of the lifting cavity facing the support plate, the rubber blocks are fixed on the lifting cavity.
[0010] Furthermore, the fixed plate is provided with a wedge-shaped block, the wedge-shaped surface of the wedge-shaped block is set facing the baffle, and the wedge-shaped block is fixed to the fixed plate. When the baffle contacts the wedge-shaped block, the wedge-shaped surface of the wedge-shaped block is used to raise the vertical position of the baffle. A limiting plate is provided on the processing table directly below the wedge-shaped block. The limiting plate is used to limit the side of the glass curtain wall panel. When the baffle disengages from the wedge-shaped surface of the wedge-shaped block, the cutting tool provided at the end of the tool holder contacts the edge of the glass curtain wall panel.
[0011] Furthermore, symmetrical columns are provided on both sides of the processing table below the nut slider. One end of each column is fixed to the processing table, and a pressure plate is slidably sleeved on the column. A tension spring is provided on the upper surface of the pressure plate. One end of the tension spring is fixed to the pressure plate, and the other end of the tension spring is fixed to the other end of the column. The tension spring is sleeved on the column. A clamping screw is provided on the nut slider above the pressure plate. The clamping screw is threaded to the nut slider, and the end of the clamping screw abuts against the surface of the pressure plate.
[0012] Furthermore, the pressure plate has connecting blocks at both ends on one side facing the processing table, and a pressure rod is rotatably mounted on the connecting block. The pressure rod contacts the surface of the glass curtain wall panel placed on the processing table, and the pressure rod rotates as the glass curtain wall panel moves on the processing table.
[0013] Furthermore, the nut slider is provided with a light rod, the two ends of which are fixedly connected to the fixed plate, and the nut slider is slidably connected to the light rod.
[0014] Furthermore, the contact end of the clamping screw that contacts the pressure plate is provided with an arc-shaped surface.
[0015] A method of using a glass curtain wall panel processing device includes the following steps:
[0016] S1. Place the glass curtain wall panel on the processing table and push it forward so that the cutting position of the glass curtain wall panel is directly below the cutting tool;
[0017] S2. Depending on the material of the glass curtain wall panel, rotate the adjusting screw to adjust the pressure of the cutting tool on the glass curtain wall panel;
[0018] S3. Start the rotary motor, which drives the cutting tool to move through the nut slider, thereby performing the cutting operation on the glass curtain wall panel;
[0019] S4. After the cutting is completed, the push rod enters the arc-shaped cavity. Under the action of the connecting spring, it drives the position of the lifting cavity to move down, and then acts on the glass curtain wall panel on the support plate, thereby causing the glass curtain wall panel to separate along the cut.
[0020] S5. The staff removes the glass curtain wall panel from the support plate, and then controls the rotary motor to reverse, driving the nut slider to reset.
[0021] S6. During the reset of the nut slider, the baffle at the end of the tool holder contacts the wedge block, which in turn drives the tool holder to rise, thereby lifting the cutting tool upward. At this time, the worker pushes the glass curtain wall panel on the processing table forward to below the cutting tool.
[0022] S7. Repeat steps S1-S6 until the glass curtain wall panels are cut.
[0023] The beneficial effects of this invention are as follows:
[0024] In this technical solution, the glass curtain wall panels can be separated along the cut by the staff simply pressing the glass curtain wall panels on the support plate. This means that the staff does not need to come into contact with the edge of the glass curtain wall panels, which improves the cutting safety of the glass curtain wall panels. At the same time, the cutting tool is driven by a rotary motor to move and cut the glass curtain wall panels along a fixed path, which improves the cutting efficiency and cutting accuracy of the glass curtain wall panels.
[0025] Other advantages, objectives, and features of the invention will be set forth in the following description and will be apparent to those skilled in the art in some respects, or may be learned by practice of the invention. The objectives and other advantages of the invention can be realized and obtained through the following description. Attached Figure Description
[0026] To make the objectives, technical solutions, and beneficial effects of this invention clearer, the following figures are provided for illustration:
[0027] Figure 1 This is a three-dimensional schematic diagram of the processing device in this invention;
[0028] Figure 2 This is a three-dimensional schematic diagram of the support plate portion in the processing device of the present invention;
[0029] Figure 3 This is a three-dimensional schematic diagram of the nut slider part in the processing device of the present invention;
[0030] Figure 4 This is a three-dimensional schematic diagram of the nut slider portion after the clamping screw is removed in the processing device of the present invention;
[0031] Figure 5 This is a three-dimensional schematic diagram of the nut slider portion after the clamping screw has been removed from the processing device in this invention, taken from another perspective.
[0032] Figure 6 This is a three-dimensional schematic diagram of the pressure plate and clamping screw in the processing device of the present invention;
[0033] Figure 7 This is a schematic cross-sectional view of the processing device in this invention.
[0034] The following labels are shown in the attached diagram:
[0035] 1. Processing tabletop; 2. Support leg; 3. L-shaped plate; 4. Support spring; 5. Support plate; 6. Fixing plate; 7. Drive screw; 8. Rotary motor; 9. Nut slider; 10. Smooth rod; 11. Tool holder; 12. Cutting tool; 13. Mounting plate; 14. Connecting spring; 15. Horizontal cavity; 16. Arc-shaped cavity; 17. Push rod; 18. Right angle plate; 19. Limiting post; 20. Rubber block; 21. Limiting plate; 22. Wedge block; 23. U-shaped frame; 24. Mounting through hole; 25. Sliding plate; 26. Adjusting spring; 27. Baffle; 28. Adjusting screw; 29. Column; 30. Tension spring; 31. Pressure plate; 32. Connecting block; 33. Clamping screw; 34. Pressure rod; 35. Glass curtain wall panel. Detailed Implementation
[0036] like Figures 1 to 7As shown, this invention discloses a glass curtain wall panel processing device and its usage method. The glass curtain wall panel processing device includes a processing table 1 with several supporting legs 2. An L-shaped plate 3 is provided on the bottom surface of one end of the processing table 1. The vertical portion of the L-shaped plate 3 is fixed to the processing table 1. Several supporting springs 4 are provided on the upper surface of the horizontal portion of the L-shaped plate 3. One end of each supporting spring 4 is fixed to the L-shaped plate 3, and a supporting plate 5 is provided on the other end of each supporting spring 4. The supporting plate 5 is fixed to the supporting spring 4. The supporting plate 5 is at the same height as the processing table 1, and the processing table 1 and the supporting plate 5 are spliced together. Fixing plates 6 are symmetrically provided on both sides of the end of the processing table 1, and one end of each fixing plate 6 is fixed to the processing table 1. On the workbench 1, a drive screw 7 is provided on a fixed plate 6. The two ends of the drive screw 7 are rotatably connected to the fixed plate 6. A rotary motor 8 is provided on one end of the drive screw 7. The rotary motor 8 is fixed to the fixed plate 6, and the output end of the rotary motor 8 is fixed to the end of the drive screw 7. A nut slider 9 is provided on the drive screw 7. The nut slider 9 is threadedly connected to the screw. A tool holder 11 is provided on the end of the nut facing the support plate 5. The tool holder 11 passes through the nut slider 9 and is vertically connected to the nut slider 9. A cutting tool 12 is provided on the end of the tool holder 11 facing the workbench 1. The cutting tool 12 is fixed to the tool holder 11, and the cutting edge of the cutting tool 12 is flush with the end edge of the workbench 1.
[0037] The working principle of the above technical solution is as follows:
[0038] First, raise the handle 11 upwards. Then, slide the glass curtain wall panel 35 from the mounting table to below the cutting tool 12, ensuring the area to be cut is directly below it. Lower the cutting tool 12 to contact the glass curtain wall panel 35 and apply pressure. Start the rotary motor 8, causing the nut slider 9 to move laterally, which in turn moves the cutting tool 12 laterally, cutting the surface of the glass curtain wall panel 35. After cutting, the worker simply presses the glass curtain wall panel 35 on the support plate 5, causing the support plate 5 to compress the support spring 4 and move downwards, breaking the cut and detaching the glass curtain wall panel 35. This pressing method eliminates the need for the operator to hold the glass curtain wall panel 35 and apply pressure, improving processing safety. The rotary motor 8 moves the cutting tool 12 along a fixed path, improving cutting efficiency and accuracy. The detached glass curtain wall panel 35 rests on the support plate 5, facilitating subsequent transport or removal.
[0039] In one feasible embodiment, a U-shaped bracket 23 is provided on the nut slider 9, the open end of the U-shaped bracket 23 is fixed to the nut slider 9, the tool holder 11 is cylindrical and slidably connected to the nut slider 9, the closed end of the U-shaped bracket 23 is provided with a mounting through hole 24, the tool holder 11 is located in the mounting through hole 24, a sliding plate 25 is provided on the tool holder 11 below the closed end of the U-shaped bracket 23, the sliding plate 25 is slidably sleeved on the tool holder 11, and an adjusting spring 26 is provided on the sliding plate 25, one end of the adjusting spring 26 is fixed to the sliding plate 25. 5. A baffle 27 is provided on one end of the tool holder 11 above the U-shaped frame 23. The baffle 27 is fixed on the tool holder 11. The other end of the adjusting spring 26 is fixed on the baffle 27. The adjusting spring 26 is sleeved on the tool holder 11 and located in the mounting through hole 24. Adjusting screws 28 are symmetrically provided on the closed end of the U-shaped frame 23. The adjusting screws 28 are threadedly connected to the closed end of the U-shaped frame. The threaded ends of the two adjusting screws 28 are respectively rotatably connected to the two ends of the sliding plate 25 (rotatable connection can be achieved by the inner and outer rings of the bearing).
[0040] By rotating the adjusting screw 28, the connection position of the adjusting screw 28 to the U-shaped frame 23 can be changed, thereby changing the position between the sliding plate 25 and the closed end of the U-shaped frame 23. This, in turn, changes the tension length of the adjusting spring 26, thereby changing the traction force applied by the adjusting spring 26 to the baffle 27, thereby changing the pressure applied to the knife handle 11, and thus changing the pressure of the cutting tool 12 on the glass curtain wall panel 35. Therefore, the pressure of the cutting tool 12 on the surface of the glass curtain wall panel 35 can be adjusted according to different materials or thicknesses to ensure the cutting effect.
[0041] In one feasible embodiment, a mounting plate 13 is provided on the side of a fixed plate 6. One end of the mounting plate 13 is fixed to the fixed plate 6. A hollow lifting cavity is provided below the mounting plate 13. The lifting cavity includes a horizontal cavity 15 and an arc-shaped cavity 16. The horizontal cavity 15 is located directly below the mounting plate 13. The arc-shaped surface of the arc-shaped cavity 16 faces the mounting plate 13. A plurality of connecting springs 14 are provided on the side of the mounting plate 13 facing the horizontal cavity 15. The two ends of the connecting springs 14 are respectively fixed to the surfaces of the mounting plate 13 and the horizontal cavity 15. A push rod 17 is provided on the end of the nut slider 9 facing the support plate 5. One end of the push rod 17 is fixed to the nut slider 9, and the other end of the push rod 17 is located in the cavity of the lifting cavity.
[0042] When the nut slider 9 moves to drive the cutting tool 12 to cut, the push rod 17 moves within the cavity of the horizontal cavity 15, and the drag rod contacts the upper inner wall of the horizontal cavity 15. At this time, the connecting spring 14 is in a compressed state. That is, when the cutting tool 12 finishes cutting, the push rod 17 moves to the arc-shaped cavity 16 and moves along the arc-shaped inner wall. Under the action of the connecting spring 14, the position of the lifting cavity will be lowered, that is, the lower surface of the lifting cavity will contact the glass curtain wall panel 35, thereby applying pressure to the glass curtain wall panel 35 located on the support plate 5, and then the glass curtain wall panels 35 on both sides will separate along the cut, thus achieving automatic separation of the glass curtain wall panel 35 after cutting through the linkage structure. When the nut slider 9 resets, the push rod 17 will gradually enter the interior of the horizontal cavity 15 along the arc-shaped surface, thereby driving the entire lifting cavity to return to its initial height.
[0043] In one feasible embodiment, a limiting post 19 is provided on the surface of the arc-shaped cavity 16. The limiting post 19 passes through the surface of the arc-shaped cavity 16 and is slidably connected to the arc-shaped cavity 16. A right-angle plate 18 is provided on the fixing plate 6 near the arc-shaped cavity 16. One end of the right-angle plate 18 is fixed to the fixing plate 6. One end of the limiting post 19 is fixed to the right-angle plate 18. Several rubber blocks 20 are provided on the side of the lifting cavity facing the support plate 5. The rubber blocks 20 are fixed to the lifting cavity.
[0044] The setting of the limiting column 19 ensures the vertical movement of the lifting cavity and avoids tilting, which would result in poor pressure on the glass curtain wall panel 35. At the same time, the setting of the rubber block 20 can protect the glass curtain wall panel 35 from compression and avoid cracking and damage caused by rigid contact.
[0045] In one feasible embodiment, the fixing plate 6 is provided with a wedge block 22, the specific structure of which is as follows: Figure 5 As shown, the specific connection relationship will not be elaborated in detail here. The wedge-shaped surface of the wedge block 22 is set facing the baffle 27, and the wedge block 22 is fixed on the fixing plate 6. When the baffle 27 contacts the wedge block 22, the wedge-shaped surface of the wedge block 22 is used to raise the vertical position of the baffle 27. A limiting plate 21 is provided on the processing table 1 directly below the wedge block 22. The limiting plate 21 is used to limit the side of the glass curtain wall panel 35. When the baffle 27 and the wedge-shaped surface of the wedge block 22 are disengaged, the cutting tool 12 provided at the end of the tool holder 11 contacts the edge of the glass curtain wall panel 35.
[0046] After the overall cutting is completed, the glass curtain wall panel 35 on the processing table 1 needs to be pushed to the cutting position. At this time, the cutting tool 12 will obstruct its movement. Therefore, by setting the wedge block 22 to apply force to the baffle 27, the tension of the adjusting spring 26 is overcome, the position of the tool holder 11 is raised, and the position of the tool is raised, so that the glass curtain wall panel 35 can be pushed to the bottom of the cutting tool 12. Then, the rotating motor 8 moves, and when the nut slider 9 moves along the cutting path, the baffle 27 will gradually disengage from the wedge block 22. After disengagement, the cutting tool 12 will act on the glass curtain wall panel 35 to perform the cutting operation. That is, after cutting, there is no need to manually reset the height of the cutting tool 12. Instead, the height of the cutting tool 12 is automatically raised by the wedge block 22, which facilitates the feeding and pushing of the glass curtain wall panel 35 on the processing table 1.
[0047] In one feasible embodiment, symmetrical columns 29 are provided on both sides of the processing table 1 below the nut slider 9. One end of the column 29 is fixed to the processing table 1. A pressure plate 31 is slidably sleeved on the column 29. A tension spring 30 is provided on the upper surface of the pressure plate 31. One end of the tension spring 30 is fixed to the pressure plate 31, and the other end of the tension spring 30 is fixed to the other end of the column 29. The tension spring 30 is sleeved on the column 29. A clamping screw 33 is provided on the nut slider 9 above the pressure plate 31. The clamping screw 33 is threadedly connected to the nut slider 9, and the end of the clamping screw 33 abuts against the surface of the pressure plate 31.
[0048] By adjusting the position of the clamping screw 33, a force can be applied to the pressure plate 31, which in turn applies the force to the end of the glass curtain wall panel 35 on the processing table 1, thereby limiting the vertical displacement of its end. As a result, when a force is applied to the glass curtain wall panel 35 located on the support plate 5, the end of the glass curtain wall panel 35 located on the processing table 1 will not lift up, thus facilitating the separation of the glass curtain wall panels 35 at both ends along the cut.
[0049] In one feasible embodiment, connecting blocks 32 are provided at both ends of the side of the pressure plate 31 facing the processing table 1. A pressure rod 34 is rotatably mounted on the connecting block 32. The pressure rod 34 contacts the surface of the glass curtain wall panel 35 placed on the processing table 1, and rotates as the glass curtain wall panel 35 moves on the processing table 1. The advantage of this arrangement is that it ensures effective control over the pressing position of the glass curtain wall panel 35 on the processing table 1 while reducing the resistance during the pushing and feeding of the glass curtain wall panel 35, thus avoiding scratches and other problems.
[0050] In one feasible embodiment, a smooth rod 10 is provided on the nut slider 9, with both ends of the smooth rod 10 fixedly connected to the fixed plate 6. The nut slider 9 is slidably connected to the smooth rod 10, which restricts the rotation of the nut and improves the movement effect of the nut. The contact end of the clamping screw 33 that contacts the pressure plate 31 is set with an arc-shaped surface, and the arc-shaped setting reduces the movement resistance.
[0051] A method of using a glass curtain wall panel processing device includes the following steps:
[0052] S1. Place the glass curtain wall panel 35 on the processing table 1 and push it forward so that the cutting position of the glass curtain wall panel 35 is directly below the cutting tool 12.
[0053] S2. Depending on the material of the glass curtain wall panel 35, rotate the adjusting screw 28 to adjust the pressure of the cutting tool 12 on the glass curtain wall panel 35.
[0054] S3. Start the rotary motor 8, which drives the cutting tool 12 to move through the nut slider 9, thereby performing the cutting operation on the glass curtain wall panel 35;
[0055] S4. After the cutting is completed, the push rod 17 enters the arc-shaped cavity 16. Under the action of the connecting spring 14, it drives the position of the lifting cavity to move down, and then acts on the glass curtain wall panel 35 on the support plate 5, thereby causing the glass curtain wall panel 35 to separate along the cut.
[0056] S5. The staff removes the glass curtain wall panel 35 located on the support plate 5, and then controls the rotary motor 8 to reverse, driving the nut slider 9 to reset.
[0057] S6. During the reset process of the nut slider 9, the baffle 27 at the end of the tool holder 11 and the wedge block 22 come into contact, thereby driving the tool holder 11 to rise, and then lifting the cutting tool 12 upward. At this time, the worker pushes the glass curtain wall panel 35 on the processing table 1 forward to below the cutting tool 12.
[0058] S7. Repeat steps S1-S6 until the glass curtain wall panel is cut to 35mm.
[0059] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made to it in form and detail without departing from the scope defined by the claims of the present invention.
Claims
1. A glass curtain wall panel processing apparatus, characterized by: The utility model provides a processing table top (1), the bottom surface of one end of processing table top (1) is equipped with L type board (3), the vertical part of L type board (3) is fixed on processing table top (1), the upper surface of horizontal part of L type board (3) is equipped with a plurality of support spring (4), one end of support spring (4) is fixed on L type board (3), the other end of support spring (4) is equipped with support plate (5), support plate (5) is fixed on support spring (4), support plate (5) is at the same height with processing table top (1), and processing table top (1) and support plate (5) are connected, the both sides of end of processing table top (1) are symmetrically equipped with fixed plate (6), one end of fixed plate (6) is fixed on processing table top (1), be equipped with drive screw (7) on fixed plate (6), the both ends of drive screw (7) are rotatably connected on fixed plate (6), one end of drive screw (7) is equipped with rotary motor (8), rotary motor (8) is fixed on fixed plate (6), and the output end of rotary motor (8) is fixed on the end of drive screw (7), be equipped with nut sliding block (9) on drive screw (7), nut sliding block (9) is screwed on screw, the one end of nut towards support plate (5) is equipped with tool shank (11), tool shank (11) passes through nut sliding block (9), and can be liftablely connected on nut sliding block (9), the one end of tool shank (11) towards processing table top (1) is equipped with cutting tool (12), cutting tool (12) is fixed on tool shank (11), and the cutting edge of cutting tool (12) is flush with the edge of end of processing table top (1) setting.
2. The glass curtain wall panel processing device according to claim 1, characterized in that: The nut sliding block (9) is provided with a U-shaped bracket (23), and the opening end of the U-shaped bracket (23) is fixed on the nut sliding block (9). The tool shank (11) is cylindrical and is slidingly connected to the nut sliding block (9). The closed end of the U-shaped bracket (23) is provided with a mounting through hole (24), and the tool shank (11) is located in the mounting through hole (24). A sliding plate (25) is arranged on the tool shank (11) below the closed end of the U-shaped bracket (23). The sliding plate (25) is slidingly sleeved on the tool shank (11). An adjusting spring (26) is arranged on the sliding plate (25). One end of the adjusting spring (26) is fixed on the sliding plate (25). A baffle (27) is arranged on one end of the tool shank (11) above the U-shaped bracket (23). The baffle (27) is fixed on the tool shank (11). The other end of the adjusting spring (26) is fixed on the baffle (27). The adjusting spring (26) is sleeved on the tool shank (11) and located in the mounting through hole (24). Two adjusting screws (28) are symmetrically arranged on the closed end of the U-shaped bracket (23). The adjusting screws (28) are threadedly connected to the closed end of the U-shaped bracket. The threaded ends of the two adjusting screws (28) are rotatably connected to the two ends of the sliding plate (25).
3. The glass curtain wall panel processing apparatus according to claim 1, characterized in that: The side of the fixed plate (6) is provided with a mounting plate (13), one end of the mounting plate (13) is fixed to the fixed plate (6), the lower side of the mounting plate (13) is provided with a hollow lifting cavity, the lifting cavity includes a horizontal cavity (15) and an arc cavity (16), the horizontal cavity (15) is located directly below the mounting plate (13), the arc surface of the arc cavity (16) faces the mounting plate (13), the side of the mounting plate (13) facing the horizontal cavity (15) is provided with a plurality of connecting springs (14), both ends of the connecting spring (14) are fixed to the surface of the mounting plate (13) and the horizontal cavity (15) respectively, one end of the push rod (17) provided on the nut sliding block (9) facing the supporting plate (5) is fixed to the nut sliding block (9), the other end of the push rod (17) is located in the cavity of the lifting cavity.
4. The glass panel processing apparatus of claim 3, wherein: The surface of the arc cavity (16) is provided with a limiting column (19), the limiting column (19) is connected with the surface of the arc cavity (16) and the arc cavity (16) in a sliding manner, the fixed plate (6) close to the arc cavity (16) is provided with a right angle plate (18), one end of the right angle plate (18) is fixed to the fixed plate (6), one end of the limiting column (19) is fixed to the right angle plate (18), the side of the lifting cavity facing the supporting plate (5) is provided with a plurality of rubber blocks (20), the rubber blocks (20) are fixed to the lifting cavity.
5. The glass panel processing apparatus of claim 2, wherein: The fixed plate (6) is provided with a wedge block (22), the wedge surface of the wedge block (22) faces the baffle (27), and the wedge block (22) is fixed to the fixed plate (6), when the baffle (27) contacts the wedge block (22), the wedge surface of the wedge block (22) is used to raise the vertical position of the baffle (27), the limiting plate (21) is arranged on the working table top (1) below the wedge block (22), the limiting plate (21) is used to limit the side edge of the glass curtain wall plate (35), when the baffle (27) is separated from the wedge surface of the wedge block (22), the cutting tool (12) arranged at the end of the handle (11) contacts the edge of the glass curtain wall plate (35).
6. The glass panel processing apparatus of claim 1, wherein: The two sides of the working table top (1) below the nut sliding block (9) are symmetrically provided with a stand column (29), one end of the stand column (29) is fixed to the working table top (1), the stand column (29) is slidably sleeved with a pressing plate (31), the upper surface of the pressing plate (31) is provided with a tension spring (30), one end of the tension spring (30) is fixed to the pressing plate (31), the other end of the tension spring (30) is fixed to the other end of the stand column (29), and the tension spring (30) is sleeved on the stand column (29), the nut sliding block (9) above the pressing plate (31) is provided with a pressing screw (33), the pressing screw (33) is threadedly connected to the nut sliding block (9), and the end of the pressing screw (33) is abutted to the surface of the pressing plate (31).
7. The glass panel processing apparatus of claim 6, wherein: The connecting block (32) is rotatably provided with a pressing rod (34), the pressing rod (34) is in contact with the surface of the glass curtain wall plate (35) placed on the processing table top (1), and the pressing rod (34) rotates with the movement of the glass curtain wall plate (35) on the processing table top (1).
8. The glass panel processing apparatus of claim 1, wherein: The light rod (10) is fixedly connected to the fixed plate (6) at both ends, and the nut sliding block (9) is slidingly connected to the light rod (10).
9. The glass panel processing apparatus of claim 6, wherein: The contact end of the pressing screw (33) in contact with the pressing plate (31) is provided with an arc surface.
10. The method of using a glass wall panel processing apparatus according to any one of claims 1-9, wherein: The use steps include: A use method of a glass curtain wall plate processing device includes the following use steps: S1, place the glass curtain wall plate (35) on the processing table top (1), and push it forward so that the cutting position of the glass curtain wall plate (35) is directly below the cutting tool (12); S2, according to the material of the glass curtain wall plate (35), rotate the adjusting screw (28) to adjust the pressure of the cutting tool (12) acting on the glass curtain wall plate (35); S3, start the rotating motor (8), move the cutting tool (12) through the nut sliding block (9), and then cut the glass curtain wall plate (35); S4, after cutting, the push rod (17) enters the arc cavity (16), under the action of the connecting spring (14), the position of the lifting cavity is lowered, and then acts on the glass curtain wall plate (35) on the supporting plate (5), and then the glass curtain wall plate (35) is separated along the cutting seam; S5, the worker takes out the glass curtain wall plate (35) on the supporting plate (5), and then controls the rotating motor (8) to reverse, and drives the nut sliding block (9) to reset; S6, during the resetting process of the nut sliding block (9), the baffle (27) at the end of the tool handle (11) is in contact with the wedge block (22), thereby driving the tool handle (11) to rise, and then lifting the cutting tool (12) upwards, at this time, the worker pushes the glass curtain wall plate (35) on the processing table top (1) to the lower side of the cutting tool (12); S7, repeat steps S1-S6 until the glass curtain wall plate (35) is cut.
Citation Information
Patent Citations
Rapid cutting equipment for glass curtain wall and cutting method of the rapid cutting equipment
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