一种铝合金锭的自动化检测设备
By designing an automated inspection device for aluminum alloy ingots, the device utilizes lifting and adjusting components to adjust the red light rangefinder, and combines it with a centering component to achieve automated multi-position flatness inspection of aluminum alloy ingots. This solves the problem of low efficiency in traditional manual inspection and improves inspection accuracy and adaptability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN WUHUA NEW MATERIAL CO LTD
- Filing Date
- 2025-10-15
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional aluminum alloy ingot inspection methods are inconvenient to use and require manual intervention, making it impossible to automate the inspection process. The high degree of manual intervention also leads to low inspection efficiency. Furthermore, it is impossible to automate the inspection of aluminum alloy ingots and to detect the flatness of aluminum alloy ingots of various thicknesses.
An automated testing device for aluminum alloy ingots was designed, including a testing platform, a lifting component, an adjusting component, and a red light rangefinder. The height of the red light rangefinder is adjusted by the lifting component, and the position of the rangefinder is adjusted by the adjusting component, so as to realize automatic measurement at multiple positions. Combined with the centering component, the sample center positioning is ensured, so as to realize the flatness detection of aluminum alloy ingots of various thicknesses.
It has achieved automated detection of the flatness of aluminum alloy ingots, reduced manual intervention, improved detection efficiency and accuracy, and can meet the detection needs of samples of different thicknesses.
Smart Images

Figure CN224517721U_ABST
Abstract
Claims
1. An automated inspection apparatus for aluminum alloy ingots, comprising an inspection platform (1), characterized in that: The detection platform (1) has upright plates (2) symmetrically fixed on both sides of its top center. Lifting components are installed on the sides of the upright plates (2). Each lifting component includes a vertical slide groove (3), a vertical slide block (4), a fixing hole (5), a fixing rod (6), and a lifting plate (7). The vertical slide groove (3) is located on the side of the upright plate (2), and the vertical slide block (4) slides within it. The fixing hole (5) is located on the vertical slide block (4) and the vertical slide groove (3). The fixing rod (6) is threaded into the fixing hole (5). The lifting plate (7) is fixed to the vertical slide block (4). 4) On the side, a horizontal plate (8) is installed at the bottom of the lifting plate (7). Adjustment components are provided at the bottom of both the lifting plate (7) and the horizontal plate (8). The adjustment components include a side plate (9), a screw (10) and an adjustment plate (11). The side plate (9) is fixed at the bottom of the lifting plate (7) and the horizontal plate (8). The screw (10) rotates on the side of the side plate (9) and its thread passes through the adjustment plate (11). The horizontal plate (8) is fixed at the bottom of one set of adjustment plates (11). A red light rangefinder (12) is installed in the other set of adjustment plates (11).
2. The apparatus for automated detection of aluminum alloy ingots of claim 1, wherein, The vertical slide groove (3) is set through the top of the vertical plate (2), the end of the vertical slider (4) extends beyond the vertical plane where the opening surface of the vertical slide groove (3) is located, and the fixing holes (5) in the vertical slide groove (3) are set at equal intervals.
3. The apparatus of claim 1, wherein, The vertical plate (2) is threadedly fixed to the detection platform (1), the lifting plate (7) is threadedly fixed to the side of the vertical slider (4), the horizontal plate (8) is threadedly fixed to the adjusting plate (11), and the side plate (9) is threadedly fixed to the bottom of the lifting plate (7) and the horizontal plate (8).
4. The automated testing equipment for aluminum alloy ingots according to claim 1, characterized in that, A first guide rod (13) is installed between the side plates (9) below the lifting plate (7), and a second guide rod (14) is installed between the side plates (9) below the horizontal plate (8).
5. The apparatus of claim 1, wherein, The adjustment plate (11) of the set has a mounting groove (15) on its side, and a through hole (16) is provided at the bottom of the mounting groove (15). The red light rangefinder (12) is located in the mounting groove (15). The red light rangefinder (12) includes a display screen (17) and control keys (18).
6. The apparatus of claim 1, wherein, The detection platform (1) has a centering component at the top center. The centering component includes a bottom slide groove (19), a bottom slide block (20), a bottom screw (21), and a clamping plate (22). The bottom slide groove (19) is located at the top center of the detection platform (1). There are two sets of bottom slide blocks (20) that slide symmetrically on both sides of the center of the bottom slide groove (19). The bottom screw (21) is threaded through the two sets of bottom slide blocks (20) and the threads are engaged in opposite directions. The clamping plate (22) is fixed on the bottom slide blocks (20).
7. The apparatus of claim 6, wherein, The bottom groove (19) is provided through both sides of the detection platform (1) and a block (23) slides at the end. The block (23) is threadedly fixed to the side of the detection platform (1), and the bottom screw (21) rotates through the block (23).
8. The apparatus of claim 6, wherein, The top of the bottom slider (20) is flush with the top of the bottom groove (19), and the clamping plate (22) is threadedly fixed on the bottom slider (20).