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The large-scale industrial metallographic cutter solves the pain point that traditional small-scale metallographic cutters cannot cut large-size samples. Its heavy-duty cast steel body and 3kW high-power motor can provide sufficient power for cutting large-diameter and high-hardness materials, such as large steel ingots, heavy machinery parts and shipbuilding materials. The adjustable sample clamping force can be adjusted between 0-5000N, which can firmly fix samples of different sizes and weights, avoiding shifting during cutting. The automatic feeding system can accurately control the cutting depth and speed, ensuring the consistency of large-size samples. Additionally, the equipped emergency stop device and safety protection cover further improve the operational safety of the equipment.

The key specifications of this large-scale industrial metallographic cutter include a maximum cutting diameter of 300mm, a standard blade size of 400mm, and a 3kW high-power motor that provides stable power output for high-load cutting. The sample clamping force can be adjusted steplessly between 0-5000N, which can firmly fix samples with a maximum weight of 200kg. The workbench measures 500mm × 450mm, providing sufficient space for fixing large-size samples. The power supply is 380V 50Hz, suitable for industrial power configurations. The protection grade reaches IP54, and the blade speed can be adjusted between 0-2000 RPM. The net weight of the whole machine is 280kg, and the overall dimensions are 1200mm × 800mm × 1100mm, which is suitable for fixed placement in professional industrial testing workshops.
This large-scale industrial metallographic cutter is mainly applicable to heavy machinery manufacturing, shipbuilding, metallurgical enterprises, large-scale steel processing and other industrial fields. It is suitable for preparing large-size metallographic samples of various metal and non-metal materials, including large steel ingots, heavy machinery parts, shipbuilding materials, large aluminum alloy profiles and other materials. Typical application scenarios include cutting of large mechanical parts for metallographic analysis, cutting of large-scale steel samples for quality inspection, and preparation of samples for non-destructive testing of shipbuilding materials. It can meet the large-size sample preparation needs of modern industrial production and improve the efficiency and accuracy of large-scale sample testing.