Carbide is widely used in tool manufacturing. Here are some of the main uses:
- Cutting tools: Carbide can be used to manufacture various cutting tools, such as turning tools, milling cutters, planers, drill bits, boring tools, etc. These tools can be used to cut a variety of materials, including metals, non-metals and difficult-to-machine materials.
- Wear-resistant parts: Because cemented carbide has high hardness and high wear resistance, it can be used to manufacture various wear-resistant parts, such as wear-resistant bushings, bearings, and slide plates in mining and oil extraction.
- High-temperature alloy processing: In the aerospace field, cemented carbide can be used to process high-temperature alloys, such as stainless steel, high-temperature alloys and titanium alloys. These materials maintain high strength and low thermal conductivity at high temperatures, placing high demands on cutting tools.
- Cutting of difficult-to-machine materials: Carbide can be used to cut high-strength, high-hardness and difficult-to-machine materials, such as tool steel, heat-resistant steel and stainless steel.
- High-precision parts processing: Due to its high hardness, good wear resistance, strength and toughness, cemented carbide can be used for the processing of high-precision parts. For example, in the automotive industry, carbide can be used to manufacture high-precision parts in engines.
In short, cemented carbide is widely used in tool manufacturing and can be used to manufacture various cutting tools, wear-resistant parts, difficult-to-machine materials, and high-precision parts. These uses are mainly due to the properties of cemented carbide such as high hardness, high wear resistance, high temperature resistance and high strength.
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