Full-automatic glass cutting machine for glass processing

The dust collection and cleaning mechanism of the fully automatic glass cutting machine solves the problem of collecting and cleaning dust and particles during the glass cutting process, protecting health and reducing pollution, while improving cleaning efficiency and flexibility.

CN223811384UActive Publication Date: 2026-01-20ANHUI ANGGUAN INTELLIGENT SYST CO LTD
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Patent Information

Application Number
CN202520123045.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-01-20
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Dust and particles generated during glass cutting are difficult to collect and clean, endangering the health of operators and polluting the environment.

Method used

A fully automatic glass cutting machine was designed, equipped with a dust collection device and a cleaning mechanism. The dust collection device sucks up dust and particles through a dust collection box, corrugated pipe and dust collection hood, and the cleaning mechanism cleans the glass through a cleaning roller and brush assembly.

Benefits of technology

It effectively collects and removes glass dust and particles, protects the health of operators, reduces environmental pollution, improves cleaning efficiency, and adapts to different height requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a full-automatic glass cutting machine for glass processing, and relates to the technical field of glass processing. The cutting table is fixedly mounted on the upper surface of the machine base; the control mechanism is mounted on the surface of one side of the base; the two movable supporting structures are arranged on the two sides of the machine base; the first slider is fixedly mounted on the surface of the movable supporting structure; according to the glass cutting machine, the first motor drives the fan blade set to generate suction force, glass dust and particles generated during glass cutting are sucked and collected in time through the corrugated pipe, the dust collection cover and the dust collection box, air mixed with the glass dust is purified through the filter element and the filter screen, and finally the air is exhausted through the exhaust holes in the dust suction machine box. And the effects of protecting the health of operators and reducing the dust pollution of the operation environment are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass processing technical field, concretely relates to a full -automatic glass cutting machine for glass processing. BACKGROUND

[0002] Glass processing refers to the process that according to use requirement, different processing technology is adopted to the shaped flat glass as basic raw material, and the glass product with specific function is made, and glass cutting is an important link in glass processing, and it involves multiple methods and tools to meet the demand of glass products of different shapes and sizes.

[0003] When glass cutting is carried out, a large amount of glass dust and glass particles are generated, and these dust and particles cannot be collected and cleaned in time in the cutting process, which can cause harm to the health of operators and pollute the environment. Therefore, a full -automatic glass cutting machine for glass processing is particularly needed to solve the above problems. UTILITY MODEL CONTENT

[0004] The full -automatic glass cutting machine for glass processing provided by the utility model solves the problems in the background art.

[0005] To solve the above technical problems, the technical scheme of the utility model is as follows:

[0006] The embodiment of the utility model provides a full -automatic glass cutting machine for glass processing, which comprises:

[0007] A machine base;

[0008] A cutting table is fixedly installed on the upper surface of the machine base;

[0009] A control mechanism is installed on the surface of one side of the machine base;

[0010] Two movable support structures are arranged on the two sides of the machine base, and the movable support structure comprises a movable frame slidably connected to one side of the machine base, and a square groove is formed in one side of the movable frame;

[0011] A first slider is fixedly installed on the surface of the movable support structure;

[0012] A cutting mechanism comprises a main laser electric group, the main laser electric group is arranged on the surface of the first slider, a second slider is installed on the surface of one side of the main laser electric group, a vice laser electric group is arranged on the surface of the second slider, a driver is fixedly installed on the upper end of the vice laser electric group, and a laser cutting head is fixedly installed on the lower end of the vice laser electric group;

[0013] A dust collection device is arranged on the surface of the main laser electric group and is used for sucking and collecting glass dust and particles generated during glass cutting.

[0014] The cleaning mechanism is arranged at the upper end of the cutting table and used for cleaning the cutting table.

[0015] Further, the dust collection device comprises a dust collection box fixedly connected to the surface of the main laser group, a first bellow mounted at the bottom of the dust collection box, a clamping block mounted at the end of the first bellow away from the dust collection box, a clamping block fixedly connected below the first slider, a second bellow mounted at the side of the clamping block, a dust collecting cover mounted at one end of the second bellow, a No.1 motor arranged inside the dust collection box, a No.1 rotating rod fixedly connected to the output end of the No.1 motor, a fan group fixedly mounted on the surface of the No.1 rotating rod, a plurality of first limiting blocks fixedly arranged on the inner surface of the dust collection box, the plurality of first limiting blocks being divided into four groups, two groups of the first limiting blocks being arranged on the opposite sides of the inner wall of the dust collection box, two second limiting blocks fixedly connected to the inner surface of the dust collection box and capable of supporting the No.1 motor, and a cover slidably mounted on the surface of the dust collection box.

[0016] Further, the dust collecting cover, the first bellow, the clamping block, the second bellow and the dust collection box are communicated with each other, and a dust collecting box is movably connected to the lower end of the clamping block.

[0017] Through the above technical solution, the collected glass dust and particles can be collected, and the harm of dust to the health of operators is reduced.

[0018] Further, a plurality of exhaust holes are formed on the surface of the dust collection box, the plurality of exhaust holes are distributed on the dust collection box in two groups, a silica gel protective pad is arranged inside the dust collection box, and the silica gel protective pad is sleeved on the arc surface of the No.1 motor.

[0019] Through the above technical solution, the exhaust holes are used for exhausting the air inside the dust collection box, and the silica gel protective pad can reduce the vibration of the No.1 motor.

[0020] Further, two clamping plates and a filter screen are slidably connected to the surfaces of the two groups of first limiting blocks, a filter element is mounted between the two clamping plates, and the silica gel protective pad, the No.1 motor, the filter element and the filter screen are sequentially arranged inside the dust collection box in the vertical direction from top to bottom.

[0021] Through the above technical solution, the air sucked into the dust collection box can be filtered and purified, and the air pollution to the operating environment is reduced.

[0022] Further, the cleaning mechanism comprises a special-shaped connector arranged in the square groove, two No.

[0023] Through the above technical scheme, the cleaning roller is driven to rotate by the No.

[0024] Further, the surface of the moving frame is fixedly installed with positioning blocks, the surface of each positioning block is uniformly provided with a plurality of positioning holes, the inner wall of each positioning hole is slidably connected with a positioning rod, and the size of the positioning hole is matched with that of the positioning rod.

[0025] Through the above technical scheme, the height of the cleaning mechanism is adjusted by adjusting the positioning rod.

[0026] Further, a plurality of limiting rods are fixedly installed in the square groove, the limiting rods penetrate through the special-shaped connector and are all sleeved with springs, and the two ends of each spring are fixedly connected with the moving frame and the special-shaped connector.

[0027] Through the above technical scheme, the limiting rods can limit the special-shaped connector from moving in the horizontal direction, and the springs can assist in adjusting the height of the cleaning mechanism.

[0028] The above scheme of the utility model at least has the following beneficial effects:

[0029] The utility model discloses, through No. 1 motor drives fan blade group to produce suction, then through corrugated pipe, dust collecting cover and dust collecting box to the glass dust and particle that glass cutting produced timely suck and collect, and through filter core and filter screen to the air that absorbs mixed glass dust purifies, finally by the exhaust hole on dust extraction machine box and is excluded, play the health of protection operator and the effect of reducing the dust pollution of operating environment.

[0030] The utility model discloses, through No. 2 motor drives cleaning roller to rotate and cooperates brush group to realize double -cleaning effect, has increased the effect of cleaning, has improved the efficiency of cleaning, can also adjust the height through spring and positioning rod simultaneously, has increased the flexibility of different height use requirement. ACCURACY OF DRAWINGS

[0031] Figure 1 It is the whole structure schematic diagram of the utility model;

[0032] Figure 2It is cutting system and dust collection device structure schematic view of the utility model;

[0033] Figure 3 It is dust collection device partial disassembly structure schematic view of the utility model;

[0034] Figure 4 It is dust collection machine box internal disassembly structure schematic view of the utility model;

[0035] Figure 5 It is dust collection machine box and machine cover structure schematic view of the utility model;

[0036] Figure 6 It is cleaning mechanism partial structure schematic view of the utility model;

[0037] Figure 7 It is mobile frame structure schematic view of the utility model.

[0038] Mark explanation:

[0039] 1, base stand; 2, cutting table;

[0040] 4, first slider; 401, clamping block;

[0041] 5, mobile support structure; 501, mobile frame; 502, square groove; 503, limiting rod; 504, spring;

[0042] 6, cutting mechanism; 601, main laser group; 602, second slider; 603, auxiliary laser group; 604, driver; 605, laser cutting head;

[0043] 7, dust collection device; 701, dust collection machine box; 702, first bellow; 703, second bellow; 704, dust collecting cover; 705, dust collecting box; 706, silica gel protection pad; 707, no. 1 motor; 708, no. 1 rotating rod; 709, fan blade group; 710, clamping plate; 711, filter core; 712, filter screen; 713, machine cover; 714, first limiting block; 715, second limiting block; 716, exhaust hole;

[0044] 8, cleaning mechanism; 801, special-shaped connecting body; 802, no. 2 rotating rod; 803, gear; 804, cleaning roller; 805, no. 2 motor; 806, magnetic stripe; 807, brush group; 808, positioning block; 809, positioning hole; 810, positioning rod. Specific implementation

[0045] Exemplary embodiments of the present application will be described in greater detail below with reference to the accompanying drawings. While exemplary embodiments of the present application are shown in the drawings, it is understood that the present application can be embodied in various forms without being limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the application to those skilled in the art.

[0046] As shown in Figures 1 to 7 the embodiment of the present application provides a full-automatic glass cutting machine for glass processing, comprising:

[0047] a base 1;

[0048] a cutting table 2 fixedly installed on the upper surface of the base 1;

[0049] a control mechanism 3 installed on the surface of one side of the base 1;

[0050] two movable support structures 5 arranged on both sides of the base 1, the movable support structure 5 comprising a movable frame 501 slidably connected to one side of the base 1, and a square groove 502 being formed on one side of the movable frame 501;

[0051] a first slider 4 fixedly installed on the surface of the movable support structure 5;

[0052] a cutting mechanism 6 comprising a main laser group 601 arranged on the surface of the first slider 4, a second slider 602 installed on one side of the main laser group 601, a sub-laser group 603 arranged on the surface of the second slider 602, a driver 604 fixedly installed on the upper end of the sub-laser group 603, and a laser cutting head 605 fixedly installed on the lower end of the sub-laser group 603;

[0053] a dust collection device 7 arranged on the surface of the main laser group 601 for sucking and collecting glass dust and particles generated during cutting of the glass;

[0054] a cleaning mechanism 8 arranged on the upper end of the cutting table 2 for cleaning the surface of the cutting table 2.

[0055] In the embodiment of the present application, the base 1 provides support, when the glass is placed on the cutting table 2, the positions of the movable frame 501, the first slider 4 and the second slider 602 are adjusted according to the position and thickness of the glass by using the control mechanism 3, and then the laser cutting head 605 completes cutting of the glass by the main laser group 601 and the sub-laser group 603.

[0056] As shown in Figures 2 to 3As shown, the dust suction device 7 is arranged on the surface of the main laser electric group 601 and can move along with the main laser electric group 601, the bottom of the dust suction box 701 is provided with a first bellows 702, one end of the first bellows 702 away from the dust suction box 701 is provided with a clamping block 401, the lower end of the clamping block 401 is movably clamped with a dust collecting box 705, one side of the clamping block 401 is provided with a second bellows 703, one end of the second bellows 703 is provided with a dust collecting cover 704, due to the telescopic feature of the bellows, the second bellows 703 and the dust collecting cover 704 are fixedly communicated, the dust collecting cover 704 is fixedly arranged at the lower end of the auxiliary laser electric group 603, so that the second bellows 703 can be telescoped along with the height adjustment of the auxiliary laser electric group 603, and the dust collecting cover 704, the first bellows 702, the clamping block 401, the second bellows 703 and the dust suction box 701 are communicated with each other.

[0057] As shown in the drawings, Figures 4 to 5 The inside of the dust suction box 701 is provided with a silica gel protective pad 706, the silica gel protective pad 706 is sleeved on the arc surface of the first motor 707, the first motor 707 is damped, and the first motor 707 is further stabilized by cooperating with the second limiting block 715, so that the position of the first motor 707 is prevented from deviating in the running process. The output end of the first motor 707 is fixedly connected with a rotating rod 708, the surface of the rotating rod 708 is fixedly provided with a fan blade group 709, the surface of the first limiting block 714 is slidably connected with two clamping plates 710 and a filter screen 712, a filter core 711 is arranged between the two clamping plates 710, the silica gel protective pad 706, the first motor 707, the filter core 711 and the filter screen 712 are sequentially arranged in the inside of the dust suction box 701 in the vertical direction, and the surface of the dust suction box 701 is slidably provided with a machine cover 713, a plurality of exhaust holes 716 are formed in the surface of the dust suction box 701, and the plurality of exhaust holes 716 are distributed on the dust suction box 701 in two groups.

[0058] In the embodiment of the utility model, when the first motor 707 starts, the fan blade group 709 is rotated to generate suction force through the rotating rod, the glass dust and glass particles generated during cutting glass are sucked through the first bellows 702, the clamping block 401, the second bellows 703 and the dust collecting cover 704, when the glass particles pass through the clamping block 401, due to the large mass, the glass particles fall into the dust collecting box 705 and are collected, the glass dust and small particles mixed in the air reach the dust suction box 701 through the second bellows 703, and finally the air sucked into the dust suction box 701 is discharged from the exhaust holes 716 after being blocked and filtered by the filter screen 712 and the filter core 711.

[0059] As shown in the drawings, Figures 6 to 7As shown, the cleaning mechanism 8 includes a special-shaped connector 801 arranged in the square groove 502, two No. 2 rotating rods 802 are arranged on both sides of the special-shaped connector 801, a gear 803 is fixedly connected to one end of the No. 2 rotating rod 802, and a cleaning roller 804 is rotatably arranged on the surface of the gear 803, a No. 2 motor 805 is fixedly connected to the other end of the No. 2 rotating rod 802, a protruding block of an integral structure and extending outward is arranged on both sides of the special-shaped connector 801, the No. 2 motor 805 is fixedly installed on the surface of the protruding block, the special-shaped connector 801 is of an integral metal material, a magnetic stripe 806 is arranged on the surface of the special-shaped connector 801, a brush group 807 is fixedly installed on the lower surface of the magnetic stripe 806, the brush group 807 used for a long time can be replaced by taking down the magnetic stripe 806, a plurality of limiting rods 503 are fixedly installed in the square groove 502, springs 504 are sleeved on the limiting rods 503, and the two ends of the spring 504 are fixedly connected with the moving frame 501 and the special-shaped connector 801, respectively, a positioning block 808 is fixedly installed on the surface of the moving frame 501, a plurality of positioning holes 809 are uniformly formed in the surface of the positioning block 808, and a positioning rod 810 is slidably connected with the inner wall of the positioning hole 809.

[0060] In the embodiment of the present application, when the No. 2 motor 805 is started, the cleaning roller 804 is driven to rotate through the rotating rod and the gear 803, and the height of the cleaning mechanism 8 is changed by adjusting the positions of the positioning rod 810 and the positioning hole 809, so as to facilitate the advance or real-time adjustment during the glass cutting. The protruding blocks of an integral structure and extending outward arranged on both sides of the special-shaped connector 801 and the limiting rods 503 prevent the special-shaped connector 801 from moving left and right, and the spring 504 sleeved on the limiting rod 503 is stretched and contracted to assist the height adjustment during the height adjustment.

[0061] The above is the preferred embodiment of the present application, and it should be pointed out that, for ordinary skilled in the art, without departing from the principle of the present application, a number of improvements and refinements can be made, and these improvements and refinements should be regarded as the protection scope of the present application.

Claims

1. A full-automatic glass cutting machine for glass processing, characterized by, Include: Base (1); Cutting table (2), fixedly installed on the upper surface of the base (1); Control mechanism (3), installed on the surface of one side of the base (1); Two mobile support structures (5) are arranged on both sides of the base (1), the mobile support structure (5) comprises a mobile frame (501) slidably connected to one side of the base (1), and a square groove (502) is formed in one side of the mobile frame (501); The first slider (4) is fixedly installed on the surface of the mobile support structure (5); The cutting mechanism (6) comprises a main laser group (601), the main laser group (601) is arranged on the surface of the first slider (4), the surface of one side of the main laser group (601) is provided with a second slider (602), the surface of the second slider (602) is provided with a secondary laser group (603), the upper end of the secondary laser group (603) is fixedly installed with a driver (604), and the lower end of the secondary laser group (603) is fixedly installed with a laser cutting head (605); The dust collection device (7) is arranged on the surface of the main laser group (601), and is used for sucking and collecting glass dust and particles generated during glass cutting; The cleaning mechanism (8) is arranged on the upper end of the cutting table (2), and is used for cleaning the cutting table (2).

2. The full-automatic glass cutting machine for glass processing according to claim 1, characterized in that, The dust collection device (7) comprises a dust collection box (701), the dust collection box (701) is fixedly connected to the surface of the main laser group (601), the bottom of the dust collection box (701) is provided with a first bellows (702), one end of the first bellows (702) away from the dust collection box (701) is provided with a clamping block (401), the lower side of the first slider (4) is fixedly connected with the clamping block (401), one side of the clamping block (401) is provided with a second bellows (703), one end of the second bellows (703) is provided with a dust collecting cover (704), the inside of the dust collection box (701) is provided with a motor (707), the output end of the motor (707) is fixedly connected with a rotating rod (708), the surface of the rotating rod (708) is fixedly installed with a fan group (709), the inside surface of the dust collection box (701) is fixedly provided with a plurality of first limiting blocks (714), the plurality of first limiting blocks (714) are divided into four groups, two groups of the first limiting blocks (714) are arranged on the opposite sides of the inner wall of the dust collection box (701), the inside surface of the dust collection box (701) is fixedly connected with two second limiting blocks (715) capable of supporting the motor (707), and the surface of the dust collection box (701) is slidably installed with a cover (713).

3. The full-automatic glass cutting machine for glass processing according to claim 2, characterized in that, The dust collecting cover (704), the first bellows (702), the clamping block (401), the second bellows (703) and the dust collection box (701) are communicated with each other, and the lower end of the clamping block (401) is movably connected with a dust collecting box (705).

4. The full-automatic glass cutting machine for glass processing according to claim 2, characterized in that, The surface of the dust collector box (701) is provided with a plurality of exhaust holes (716), a plurality of exhaust holes (716) are distributed on the dust collector box (701) in two groups, the inside of the dust collector box (701) is provided with a silica gel protective pad (706), the silica gel protective pad (706) is sleeved on the arc surface of the first motor (707).

5. The full-automatic glass cutting machine for glass processing according to claim 4, characterized in that, The surface of the two first limiting blocks (714) is slidably connected with two clamping plates (710) and a filter screen (712), a filter core (711) is installed between the two clamping plates (710), the silica gel protective pad (706), the first motor (707), the filter core (711) and the filter screen (712) are sequentially arranged in the inside of the dust collector box (701) from top to bottom in the vertical direction.

6. The full-automatic glass cutting machine for glass processing according to claim 1, characterized in that, The cleaning mechanism (8) comprises a special-shaped connecting body (801) arranged in the square groove (502), two second rotating rods (802) are installed on the two sides of the special-shaped connecting body (801), a gear (803) is fixedly connected to one end of the second rotating rod (802), a cleaning roller (804) is rotatably arranged on the surface of the gear (803), a second motor (805) is fixedly connected to the other end of the second rotating rod (802), the special-shaped connecting body (801) is provided with a protruding block of integral structure and outward extension on the two sides, the second motor (805) is fixedly installed on the surface of the protruding block, a magnetic stripe (806) is arranged on the surface of the special-shaped connecting body (801), and a brush group (807) is fixedly installed on the lower surface of the magnetic stripe (806).

7. The full-automatic glass cutting machine for glass processing according to claim 1, characterized in that, The surface of the moving frame (501) is fixedly installed with a positioning block (808), a plurality of positioning holes (809) are uniformly arranged on the surface of the positioning block (808), and a positioning rod (810) is slidably connected to the inner wall of the positioning hole (809).

8. The full-automatic glass cutting machine for glass processing according to claim 6, characterized in that, A plurality of limiting rods (503) are fixedly installed in the square groove (502), the limiting rods (503) penetrate through the special-shaped connecting body (801) and are all sleeved with springs (504), and the two ends of the spring (504) are fixedly connected with the moving frame (501) and the special-shaped connecting body (801).