Curtain wall aluminum plate numerical control engraving machine with debris blowing
Patent Information
- Application Number
- CN202522013514.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-18
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-09-18
AI Technical Summary
[0003]数控雕刻机的机床是由后壁钢材料制成,在实际使用过程中,幕墙铝板放置在机床的上表面后,雕刻机运行且对幕墙铝板进行雕纹作业过程中,幕墙铝板表面产生的废屑会积聚在板面上,对于后续雕刻会造成极大的干扰,而现有气吹方式,因气吹范围较大,因而气流的压强会相应减小,且气吹方向难以控制,废屑容易对雕刻机内部元件带来安全隐患
[0016] 1. This utility model sets up a horizontal chip blowing mechanism in the cavity after the outer shell and engraving table of an existing engraving machine are closed. When the aluminum curtain wall panel is placed on the upper surface of the engraving table and engraving is performed, the waste chips generated on the upper surface of the aluminum curtain wall panel will be spirally blown away by the chip blowing mechanism in the sealed cavity. The blown waste chips will be transferred to the chip collection drawer along the arc of the guide cover plate, thereby avoiding the problems of insufficient air pressure and uncertain direction of waste chip blowing caused by large-scale blowing.
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Figure CN224714706U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of CNC engraving machine accessories, specifically a CNC engraving machine for aluminum curtain wall panels with chip blowing function. Background Technology
[0002] CNC engraving machines can perform relief, flat, and hollow engraving operations on aluminum alloy, copper, bakelite, wood, jade, glass, plastic, acrylic, etc. They can engrave different shapes and patterns on the surface of different materials, enhancing the aesthetics of different materials.
[0003] The CNC engraving machine's machine tool is made of steel material on the back wall. In actual use, after the curtain wall aluminum panel is placed on the upper surface of the machine tool, during the engraving operation of the engraving machine and the engraving operation of the curtain wall aluminum panel, the waste generated on the surface of the curtain wall aluminum panel will accumulate on the panel surface, which will cause great interference to subsequent engraving. The existing air blowing method has a large air blowing range, so the air pressure will be reduced accordingly, and the air blowing direction is difficult to control. The waste can easily bring safety hazards to the internal components of the engraving machine.
[0004] In view of this, a CNC engraving machine for aluminum curtain wall panels with debris blowing function was designed to solve the above problems. Utility Model Content
[0005] This utility model aims to solve one of the technical problems existing in the prior art or related technologies.
[0006] Therefore, the technical solution adopted by this utility model is as follows:
[0007] A CNC engraving machine for aluminum curtain wall panels with debris blowing capability includes a chassis assembly, a table-assist mechanism movably installed within the chassis assembly, and a debris blowing mechanism installed on the table-assist mechanism. The chassis assembly includes an engraving table and a track plate. The table-assist mechanism includes a base movably installed within the track plate, with two first bolts installed inside the base. A pressure-bearing roller and an assisting roller are movably installed at the inner end of the base. The debris blowing mechanism includes a base installed outside the two first bolts and bearing pressure on the top of the base. Two air inlet pipes are fixedly installed inside the base. Two symmetrically distributed air guides are provided on the inner side of the base. A protective plate is installed at the other end of the two air guides. Two symmetrically distributed filter screens are installed inside the protective plate. Scraper strips are snapped onto the inner sides of the two air guides.
[0008] In a preferred embodiment, the present invention can be further configured as follows: two second bolts are installed inside the base, a housing is installed outside the two second bolts, a motor is fixedly installed inside the housing, and a drive pulley is fixedly installed on the motor;
[0009] The outer end of the assist roller is fixedly installed with a linkage pulley, and a transmission belt is connected to the linkage pulley and the drive pulley.
[0010] In a preferred embodiment, the present invention can be further configured such that the pressure-bearing roller is composed of a first shaft and a first hub, and the assisting roller is composed of a second shaft and a second hub.
[0011] In a preferred embodiment, the present invention can be further configured such that: a positioning screw is fixedly installed at one end of the flow guide, and a nut for pressing the base is installed on the outside of the positioning screw; and a limiting plate adapted to be snapped into the base is fixedly installed at the bottom of the base.
[0012] In a preferred embodiment, the present invention can be further configured such that: a rectangular through hole is provided inside the flow guide, and an exhaust window is provided on the inner wall of the rectangular through hole.
[0013] In a preferred embodiment, the present invention can be further configured such that: a support frame is fixedly installed inside the air guide, and a guide cover is fixedly installed outside the support frame.
[0014] In a preferred embodiment, the present invention can be further configured such that: two symmetrically distributed chip trays are fixedly installed inside the protective plate, and the chip trays are adapted to be inserted into the support frame; and the protective plate is fitted with buckles.
[0015] By adopting the above technical solution, the beneficial effects achieved by this utility model are as follows:
[0016] 1. This utility model sets up a horizontal chip blowing mechanism in the cavity after the outer shell and engraving table of an existing engraving machine are closed. When the aluminum curtain wall panel is placed on the upper surface of the engraving table and engraving is performed, the waste chips generated on the upper surface of the aluminum curtain wall panel will be spirally blown away by the chip blowing mechanism in the sealed cavity. The blown waste chips will be transferred to the chip collection drawer along the arc of the guide cover plate, thereby avoiding the problems of insufficient air pressure and uncertain direction of waste chip blowing caused by large-scale blowing.
[0017] 2. This utility model uses a horizontal scraper to be snapped into the center of the bottom surface of two adjacent guide hoods. As the table-assisted mechanism drives the chip blowing mechanism to slide at a constant speed along the surface of the aluminum curtain wall panel, the horizontal scraper will effectively scrape off the waste chips that are too attached to the top of the aluminum curtain wall panel. Finally, under the action of high-pressure airflow, the scraped waste chips can be efficiently removed. Attached Figure Description
[0018] Figure 1 This is a schematic diagram illustrating the use of this utility model;
[0019] Figure 2 This is a partial perspective view of the present invention;
[0020] Figure 3 This is a schematic diagram of the tabletop assist mechanism of this utility model;
[0021] Figure 4 This utility model Figure 3 A partial diagram of the explosion;
[0022] Figure 5 This is an exploded view of the chip blowing mechanism of this utility model;
[0023] Figure 6 This is a schematic diagram of the internal structure of the air guide shield of this utility model.
[0024] Figure label:
[0025] 100. Chassis assembly; 110. Engraving table; 120. Track plate;
[0026] 200. Platform assist mechanism; 210. Base; 2101. First bolt; 2102. Second bolt; 2103. Pressure roller; 2104. Assist roller; 2105. Linkage pulley; 220. Chassis; 2201. Motor; 2202. Drive pulley; 230. Transmission belt;
[0027] 300. Chip blowing mechanism; 310. Base; 320. Air inlet pipe; 330. Draft shield; 3301. Positioning screw; 3302. Limiting plate; 3303. Exhaust window; 3304. Support frame; 3305. Guide cover plate; 340. Scraper; 350. Protective plate; 3501. Filter screen; 3502. Buckle; 3503. Chip collection tray. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be noted that, unless otherwise specified, the embodiments and features of the present utility model can be combined with each other.
[0029] It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this invention.
[0030] The following describes, with reference to the accompanying drawings, some embodiments of the present invention, providing a CNC engraving machine for aluminum curtain wall panels with debris blowing function.
[0031] Example 1:
[0032] Combination Figures 1 to 6As shown, the present invention provides a CNC engraving machine for aluminum curtain wall panels with chip removal function, including a chassis assembly 100, a table auxiliary mechanism 200 movably installed inside the chassis assembly 100, and a chip removal mechanism 300 installed on the table auxiliary mechanism 200. The table auxiliary mechanism 200 is used to support the chip removal mechanism 300 and provide stable kinetic energy for the lateral movement of the chip removal mechanism 300. The chip removal mechanism 300 is used to remove chips from the aluminum curtain wall panels placed on the chassis assembly 100.
[0033] The chassis assembly 100 includes an engraving table 110 and a track plate 120;
[0034] The tabletop assist mechanism 200 includes a base 210 movably installed in the track plate 120. Two first bolts 2101 are installed inside the base 210. A pressure-bearing roller 2103 and an assisting roller 2104 are movably installed at the inner end of the base 210.
[0035] The chip blowing mechanism 300 includes a base 310 mounted on the outside of two first bolts 2101 and bearing pressure on the top of the base 210. Two air inlet pipes 320 are fixedly installed inside the base 310. Two symmetrically distributed guide shrouds 330 are provided on the inner side of the base 310. A protective plate 350 is installed at the other end of the two guide shrouds 330. Two symmetrically distributed filter screens 3501 are installed inside the protective plate 350.
[0036] The protective plate 350 has two symmetrically distributed chip collection trays fixedly installed inside, and the chip collection trays are adapted to be inserted into the bearing frame 3304. The protective plate 350 has a buckle 3502 inserted inside.
[0037] The inner sides of the two air deflectors 330 are fitted with scraper strips 340.
[0038] The aluminum panel of the curtain wall is laid flat on the top of the engraving table 110 beforehand. Then, the laser engraving head is used to engrave the aluminum panel of the curtain wall. When the aluminum panel of the curtain wall generates waste, the table assist mechanism 200, which moves horizontally along the inside of the track plate 120, will carry the waste blowing mechanism 300 to move horizontally at a constant speed along the upper surface of the aluminum panel of the curtain wall. While the two guide hoods 330 and the scraper 340 slide smoothly along the top of the aluminum panel of the curtain wall, the two cavities formed between the two guide hoods 330 and the scraper 340 will loosen the waste on the surface of the aluminum panel of the curtain wall. The loosened waste will be transferred along the two cavities into the two support frames 3304. This process can gather and transfer the airflow, avoiding the problem of insufficient air pressure caused by the direct blowing of airflow.
[0039] Example 2:
[0040] Combination Figures 3 to 5As shown, based on embodiment 1, two second bolts 2102 are installed inside the base 210, and a housing 220 is installed outside the two second bolts 2102. A motor 2201 is fixedly installed inside the housing 220, and a drive pulley 2202 is fixedly installed on the motor 2201.
[0041] The outer end of the auxiliary roller 2104 is fixedly installed with a linkage pulley 2105, and the linkage pulley 2105 and the drive pulley 2202 are connected by a transmission belt 230.
[0042] The pressure roller 2103 is composed of a first shaft and a first hub, and the auxiliary roller 2104 is composed of a second shaft and a second hub.
[0043] Preferably, an anti-slip pad is fixedly installed on the top surface of the base 210, and the base 310 is fixed to the top of the anti-slip pad by two first bolts 2101 until the two first bolts 2101 are tightened, and the base 310 and the base 210 will be effectively fixed.
[0044] After the chassis 220 is connected to the engraving machine control module via wires, the motor 2201, after being powered on, will drive the transmission belt 230 in conjunction with the drive pulley 2202. The transmission belt 230 will assist the rotation of the linkage pulley 2105 and the auxiliary roller 2104. Finally, the auxiliary roller 2104 will work with the pressure roller 2103 to move smoothly along the inner side of the track plate 120, thereby ensuring the overall stability of the horizontally placed chip blowing mechanism 300.
[0045] Example 3:
[0046] Combination Figure 5 and Figure 6 As shown, in the above embodiment, a positioning screw 3301 is fixedly installed at one end of the flow guide 330, and a nut for pressing the base 310 is installed on the outside of the positioning screw 3301. A limiting plate 3302 adapted to be snapped into the base 310 is fixedly installed at the bottom of the base 310.
[0047] The interior of the fairing 330 is provided with a rectangular through hole, and the inner wall of the rectangular through hole is provided with an exhaust window 3303;
[0048] The inside of the fairing 330 is fixedly installed with a support frame 3304, and the outside of the support frame 3304 is fixedly installed with a guide cover plate 3305.
[0049] Preferably, the arc surface of the outer wall of the guide cover 3305, together with the arc-shaped groove of the inner wall of the guide shroud 330, forms an effective chip removal path. When the external pipe inputs high-pressure airflow into the two guide shrouds 330 through the two air inlet pipes 320, the high-pressure airflow will be output through the exhaust window 3303 and discharge the waste chips on the top surface of the curtain wall aluminum panel into the inside of the chip collection drawer along the path.
[0050] The working principle and usage process of this utility model are as follows: The tabletop assist mechanism 200 is pre-installed movably inside the track plate 120 until the inner end of the base 210 is inserted into the inner side of the track plate 120, and the pressure roller 2103 and assist roller 2104 movably installed at the inner end of the base 210 respectively bear pressure on the top and bottom of the inner side of the track plate 120.
[0051] Meanwhile, the horizontally positioned chip blowing mechanism 300, which is fixed to the top of the base 210 by two first bolts 2101, is located on the upper surface of the engraving table 110. As the motor 2201 starts and runs, the motor 2201, in conjunction with the drive pulley 2202, drives the transmission belt 230. Finally, the transmission belt 230 drives the linkage pulley 2105 and the auxiliary roller 2104 until the auxiliary roller 2104, in conjunction with the pressure roller 2103, moves smoothly along the inner side of the track plate 120. As the base 210 moves horizontally, the horizontally positioned base 310 carries two guide hoods 330 and moves horizontally along the curtain wall aluminum plate placed on the top of the engraving table 110.
[0052] When the two air inlets 320 continuously input high-pressure airflow into the inner cavity of the air guide shroud 330, the high-pressure airflow will blow towards the upper surface of the curtain wall aluminum panel through the exhaust window 3303. Protected by the air guide shroud 330 and the scraper strip 340, the high-pressure airflow will flow along the outer surface of the guide cover 3305. Finally, the waste generated on the upper surface of the curtain wall will be carried by the airflow into the inner side of the waste collection drawer. Finally, the airflow inside the waste collection drawer will be released outward from the filter screen 3501, and the waste will be effectively stored.
[0053] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A CNC engraving machine for aluminum curtain wall panels with debris blowing function, comprising a chassis assembly (100), characterized in that, It also includes a tabletop assist mechanism (200) that is movably installed within the chassis assembly (100) and a chip blowing mechanism (300) mounted on the tabletop assist mechanism (200). The chassis assembly (100) includes an engraving table (110) and a track plate (120). The platform assist mechanism (200) includes a base (210) movably installed in the track plate (120), two first bolts (2101) are installed inside the base (210), and a pressure roller (2103) and an assist roller (2104) are movably installed at the inner end of the base (210). The chip blowing mechanism (300) includes a base (310) mounted on the outside of two first bolts (2101) and bearing pressure on the top of the base (210). Two air inlet pipes (320) are fixedly installed inside the base (310). Two symmetrically distributed guide shrouds (330) are provided on the inner side of the base (310). A protective plate (350) is installed at the other end of the two guide shrouds (330). Two symmetrically distributed filter screens (3501) are installed inside the protective plate (350). The inner sides of the two flow deflectors (330) are fitted with scraper strips (340).
2. The CNC engraving machine for aluminum curtain wall panels with debris blowing function according to claim 1, characterized in that, Two second bolts (2102) are installed inside the base (210), and a housing (220) is installed outside the two second bolts (2102). A motor (2201) is fixedly installed inside the housing (220), and a drive pulley (2202) is fixedly installed on the motor (2201). The outer end of the auxiliary roller (2104) is fixedly installed with a linkage pulley (2105), and a transmission belt (230) is connected to the linkage pulley (2105) and the drive pulley (2202).
3. The CNC engraving machine for aluminum curtain wall panels with debris blowing function according to claim 1, characterized in that, The pressure roller (2103) is composed of a first shaft and a first hub, and the auxiliary roller (2104) is composed of a second shaft and a second hub.
4. A CNC engraving machine for aluminum curtain wall panels with debris blowing function according to claim 1, characterized in that, One end of the flow guide (330) is fixedly installed with a positioning screw (3301), and a nut for pressing the base (310) is installed on the outside of the positioning screw (3301). A limiting plate (3302) adapted to be snapped onto the base (310) is fixedly installed at the bottom of the base (310).
5. A CNC engraving machine for aluminum curtain wall panels with debris blowing function according to claim 1, characterized in that, The interior of the flow guide (330) is provided with a rectangular through hole, and the inner wall of the rectangular through hole is provided with an exhaust window (3303).
6. A CNC engraving machine for aluminum curtain wall panels with debris blowing function according to claim 1, characterized in that, The inside of the fairing (330) is fixedly installed with a support frame (3304), and the outside of the support frame (3304) is fixedly installed with a guide cover plate (3305).
7. A CNC engraving machine for aluminum curtain wall panels with debris blowing function according to claim 1, characterized in that, The protective plate (350) has two symmetrically distributed chip collection trays fixedly installed inside, and the chip collection trays are adapted to be inserted into the support frame (3304). The protective plate (350) has a buckle (3502) inserted inside.