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How are steel strips waterjet cut?

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Using a highly pressurized stream of water mixed with abrasive particles, steel strips undergo waterjet cutting. This involves directing the waterjet onto the steel strip, which is held in place by a cutting bed or fixture. The high-pressure pump generates the waterjet, typically with a range of 30,000 to 90,000 psi. To create a narrow and high-velocity stream, the waterjet is focused through a small orifice, usually around 0.010 to 0.060 inches in diameter. To cut the steel strip, a computer-controlled system moves the waterjet along the desired cutting path. As the high-pressure waterjet stream makes contact, it erodes the steel material and effectively slices through the strip. The addition of abrasive particles, such as garnet, helps accelerate the erosion of the steel and enhances the cutting process. Waterjet cutting offers numerous advantages for cutting steel strips. It provides a precise and clean cut with minimal heat-affected zones, which prevents distortion or warping of the steel. Moreover, the process can cut through various thicknesses of steel strips, ranging from thin gauges to thick plates. Additionally, waterjet cutting is a versatile method that can handle complex shapes and intricate designs, making it suitable for a wide range of applications in industries such as automotive, aerospace, and manufacturing. In conclusion, waterjet cutting of steel strips is an efficient and accurate process that utilizes the power of water and abrasive particles to achieve precise and high-quality cuts.
Steel strips are waterjet cut using a highly pressurized stream of water mixed with abrasive particles. The process involves directing this waterjet onto the steel strip, which is held in place by a cutting bed or fixture. The waterjet is generated by a high-pressure pump, usually ranging from 30,000 to 90,000 pounds per square inch (psi). The waterjet is then focused through a small orifice, typically around 0.010 to 0.060 inches in diameter, to create a narrow and high-velocity stream. To cut the steel strip, the waterjet is moved along the desired cutting path using a computer-controlled system. The high-pressure waterjet stream erodes the steel material as it makes contact, effectively slicing through the strip. The addition of abrasive particles, such as garnet, helps to enhance the cutting process by accelerating the erosion of the steel. Waterjet cutting offers several advantages for steel strip cutting. It provides a precise and clean cut with minimal heat-affected zones, which helps to prevent distortion or warping of the steel. The process is also capable of cutting through various thicknesses of steel strips, ranging from thin gauges to thick plates. Additionally, waterjet cutting is a versatile method that can accommodate complex shapes and intricate designs, making it suitable for a wide range of applications in industries such as automotive, aerospace, and manufacturing. Overall, waterjet cutting of steel strips is a highly efficient and accurate process that utilizes the power of water and abrasive particles to achieve precise and high-quality cuts.
Steel strips are waterjet cut using a high-pressure stream of water mixed with an abrasive material. The waterjet machine precisely directs the stream onto the steel strip, eroding the material and creating a clean and accurate cut.

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