一种静龙门的数控铲片机

By using a horizontal base to fix the gantry frame in the CNC shovel machine and using a displacement component to drive the worktable to move, combined with angle adjustment and locking components, the problems of large footprint, high energy consumption and poor stability of traditional CNC shovel machines are solved, and high-precision and efficient shovel operation is achieved.

CN224508999UActive Publication Date: 2026-07-17DONGGUAN SONGZHI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN SONGZHI TECH CO LTD
Filing Date
2025-07-09
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The traditional CNC shovel machine has a large gantry frame, which results in excessively large drive components and base size, increasing the machine's footprint, high energy consumption, and poor stability and precision, making it difficult to meet the needs of high-precision production.

Method used

The horizontal base is used to fix the gantry frame, and the worktable is driven to move through the displacement component, which reduces the horizontal size and weight of the equipment. Combined with the angle adjustment part and locking component, it can achieve precise blade scraping operation.

Benefits of technology

It reduces equipment footprint and energy consumption, improves stability and precision, meets the needs of high-precision production, extends equipment life, and optimizes factory layout and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及数控铲片机的技术领域,尤其是涉及一种静龙门的数控铲片机,包括卧式底座,具有中轴底座和侧面底座;门式框架,包括立柱和顶梁;工作台,吸盘组件用于吸附固定金属加工件;以及铲片机构,安装于门式框架,用于配合工作台对金属加工件进行铲片操作;其中,在卧式底座与工作台之间还设有位移组件,位移组件驱动工作台沿中轴底座进行平行滑动,从而驱动金属加工件相对铲片机构进行相对位移,使铲片机构对金属加工件形成铲片操作。综上所述,通过固定门式框架、移动工作台,减少设备占地与能耗,提升运行稳定性及铲片精度;角度调节精准且方案灵活,锁紧组件延长设备寿命,高效适配高精度生产需求。
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Claims

1. A numerical control blade machine of a static dragon gate, characterized in that, The CNC chip-shoveling machine includes: A horizontal base (10) is installed on the factory floor and has a central base (11) and a side base (12). The portal frame (13) includes two columns (14) and a top beam (15) that are fixed to each other. The upper ends of the two columns (14) are fixed to the two ends of the top beam (15), and the lower ends of the two columns (14) are fixed to the side base (12). The worktable (20) has its bottom surface slidably connected to the central shaft base (11), and its top surface is equipped with a suction cup assembly (22), which is used to adsorb and fix the metal workpiece (21); and The scraper mechanism (40) is installed on the portal frame (13) and is used to cooperate with the worktable (20) to scrape the metal workpiece (21); Among them, a displacement component (30) is provided between the horizontal base (10) and the worktable (20). The displacement component (30) drives the worktable (20) to slide parallel along the central shaft base (11), thereby driving the metal workpiece (21) to move relative to the shovel mechanism (40), so that the shovel mechanism (40) performs a shovel operation on the metal workpiece (21).

2. A numerical control blade excavator of a static dragon gate according to claim 1, characterized in that, The displacement assembly (30) is also provided with a displacement screw (31), a displacement nut seat (32) and a displacement power device (33). The displacement screw (31) is rotatably connected to the central shaft base (11) through a screw bearing seat. The displacement nut seat (32) is fixed to the bottom of the worktable (20) and sleeved on the screw nut of the displacement screw (31). The displacement power device (33) is fixed to the screw motor seat of the displacement screw (31) and forms a transmission connection with the displacement screw (31).

3. A numerical control blade machine of a static dragon gate according to claim 2, characterized in that, The displacement assembly (30) is also provided with a displacement slide rail (34) and a displacement slider (35). The displacement slide rail (34) is fixed to the top of the central shaft base (11), and the displacement slider (35) is fixed to the bottom of the worktable (20). The displacement slider (35) and the displacement slide rail (34) cooperate with each other to form a sliding connection.

4. The numerical control blade excavator of a static dragon gate according to claim 1, characterized in that, The shovel mechanism (40) is provided with a shovel rotating seat (41), a shovel sliding plate (42), a shovel tooth (43), a shovel rotating shaft (44), and an angle adjustment part (50). The shovel rotating seat (41) is rotatably connected to the portal frame (13) through the shovel rotating shaft (44). The shovel sliding plate (42) is slidably connected to the shovel rotating seat (41). The shovel tooth (43) is fixed to one end of the shovel sliding plate (42) near the worktable (20). The angle adjustment part (50) is installed on the portal frame (13) and forms a transmission connection with the end of the shovel rotating seat (41) away from the worktable (20).

5. A numerical control blade machine of a static dragon gate according to claim 4, characterized in that, The angle adjustment unit (50) is equipped with an angle electric cylinder (51) and an angle motor (52). The angle motor (52) is installed on the angle electric cylinder (51) to provide rotational power. The angle electric cylinder (51) is installed on the top beam (15) through the electric cylinder mounting seat (53). The output rod of the angle electric cylinder (51) is installed on the shovel blade rotating seat (41) through the electric cylinder tail end seat (54).

6. A numerical control blade machine of a static dragon gate according to claim 4, characterized in that, The angle adjustment unit (50) is equipped with an angle cylinder (55). The angle cylinder (55) is mounted on the top beam (15) via a cylinder mounting seat (56). The piston rod of the angle cylinder (55) is mounted on the blade rotating seat (41) via a cylinder tail end seat (57).

7. A numerical control blade machine of a static dragon gate according to claim 4, characterized in that, The shovel mechanism (40) is also provided with a locking assembly (60), one end of which is installed on the portal frame (13) and the other end is installed on the shovel rotating seat (41), and performs a releaseable locking operation on the shovel rotating seat (41) so that it is stably held at a certain angle.

8. A numerical control blade machine of a static dragon gate according to claim 7, characterized in that, The locking assembly (60) includes a locking guide rod (61), a locking support (62), a locking power device (63), a first locking block (64), and a second locking block (65). One end of the locking guide rod (61) is rotatably connected to the column (14) of the portal frame (13), and the other end forms a free end. The locking support (62) is rotatably connected to the shovel blade rotating seat (41) and sleeved on the free end of the locking guide rod (61), thereby allowing the locking support (62) to move along the locking guide rod (61). The locking power device... (63) Fixed to the locking support (62), one side of the first locking block (64) is fixed to the locking support (62), and the other side abuts against the locking guide rod (61); one side of the second locking block (65) is fixed to the driving end of the locking power device (63), and the other side abuts against the locking guide rod (61), so that the locking power device (63) drives the second locking block (65) to move towards the first locking block (64), and cooperates with the first locking block (64) to perform clamping and locking operation on the locking guide rod (61).

9. A numerical control blade machine of a static dragon gate according to claim 4, characterized in that, The shovel mechanism (40) is also provided with a slide screw (45), a slide nut seat (46) and a slide power device (47). The two ends of the slide screw (45) are rotatably connected to the shovel slide plate (42). The slide nut seat (46) is fixed to the shovel rotating seat (41) and sleeved and fixed to the screw nut of the slide screw (45). The slide power device (47) is fixed to the shovel slide plate (42) and forms a transmission connection with the slide screw (45), so that the slide power device (47) drives the slide screw (45) to rotate, thereby driving the slide nut seat (46) and the shovel slide plate (42) to move linearly along the slide screw (45).

10. A numerical control blade machine of a static dragon gate according to claim 4, characterized in that, The shovel mechanism (40) is also provided with a bending assembly (70), which is located at one end of the shovel slide plate (42) where the shovel toothed blade (43) is installed. It works in conjunction with the shovel toothed blade (43) to bend the shoveled metal sheet in an instant, so that it forms a fin shape. The bending assembly (70) is provided with a bending bracket (71), a bending push plate (72), a bending connecting rod (74), and a bending cylinder (75). The bending bracket (71) and the bending cylinder (75) are respectively fixed. Connected to the shovel plate slide (42), one end of the bending push plate (72) is rotatably connected to the bending bracket (71), and the other end is equipped with a secondary blade plate (73). One end of the bending connecting rod (74) is driven to the piston rod of the bending cylinder (75), and the other end is fixed to the bending push plate (72), so that the bending cylinder (75) drives the bending push plate (72) to rotate through the bending connecting rod (74), thereby causing the secondary blade plate (73) to rotate synchronously and bend the sheet metal.