05112057 Waterjet HP Tube .56 x 4.97 Waterjet Fabricante

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Descripción

Win-Win es el fabricante de chorro de agua para estaciones de trabajo robotizadas, máquinas de corte por chorro de agua y piezas de repuesto, etc.
Part Name: waterjet hp tube

Item number: 05112057

DetalleS: utilizado en la máquina de corte por chorro de agua SL-VI 100HP

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FAQ of platform waterjet machine & waterjet spare parts etc.:

How does abrasive waterjet cutting work?

Abrasive waterjet cutting is a highly effective method for cutting various materials using a high-pressure stream of water mixed with abrasive particles. Here’s a concise explanation of how abrasive waterjet cutting works:The process starts with a high-pressure water pump that pressurizes water to extremely high levels, typically between 30,000 and 90,000 psi. The pressurized water is then combined with abrasive particles, such as garnet or aluminum oxide, in a mixing chamber. This mixture is directed through a specialized nozzle assembly. The nozzle assembly focuses and accelerates the waterjet, which exits the nozzle at a high velocity. As the waterjet comes into contact with the material being cut, the abrasive particles within the stream erode and wear away the material. This erosion process creates a narrow channel called a kerf.The movement of the waterjet is controlled by a computer numerical control (CNC) system, which precisely guides the waterjet along the desired cutting path. This allows for intricate shapes and precise cuts. The waterjet also acts as a coolant, dissipating heat generated during the cutting process and flushing away eroded material. Once the cutting process is complete, the used water and abrasive mixture, along with the cut material and debris, are collected. The water is typically filtered and recycled, while the abrasive particles and waste material are disposed of appropriately. Abrasive waterjet cutting offers numerous advantages, including the ability to cut a wide range of materials, high precision, minimal heat-affected zones, and the absence of mechanical stress on the material. It is commonly used in industries such as aerospace, automotive, architecture, and manufacturing for cutting metals, composites, stone, glass, and other materials.

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