In the modern manufacturing industry, machining complex large parts presents numerous challenges. Issues such as insufficient precision and low efficiency often plague manufacturers. These problems not only lead to high production costs but also affect the quality and competitiveness of products. However, the double - column large - scale CNC milling machine GV1625 offers an effective solution to these industry pain points.
The GV1625 features a double - column structure and a rigid steel structure. The double - column structure provides high - rigidity support. This is similar to the pillars of a large bridge, which bear most of the weight and ensure the stability of the entire structure. The rigid steel structure builds a stable cutting platform. It can effectively resist the vibration generated during the cutting process, thereby improving the machining accuracy. For example, in traditional single - column milling machines, the lack of sufficient support often leads to deviations in the machining process, resulting in a precision error of about 0.05mm. In contrast, the GV1625 reduces this error to less than 0.01mm, greatly improving the precision of complex large - part machining.
Traditional milling machines usually have a relatively slow machining speed. The GV1625, on the other hand, adopts an advanced cutting system and a high - speed spindle. It can complete the machining of large parts in a shorter time. In a mold manufacturing enterprise, the use of traditional equipment to machine a large - scale mold took about 20 hours. After replacing it with the GV1625, the machining time was reduced to 12 hours, an efficiency improvement of about 40%.
The GV1625 is equipped with a high - precision positioning system. It can accurately position the workpiece, ensuring that the cutting tool can reach the designated position precisely. In contrast, traditional equipment often has problems with inaccurate positioning due to the lack of advanced sensors and control systems. The precise positioning system of the GV1625 can reduce the scrap rate caused by positioning errors from about 5% to less than 1%.
In the aerospace industry, the machining of large and complex structural parts requires extremely high precision and efficiency. A well - known aerospace company used the GV1625 to machine large aircraft wing parts. The original machining process had a long cycle and a high scrap rate. After using the GV1625, the machining cycle was shortened by 30%, and the scrap rate was reduced by 50%. In the mold manufacturing industry, a mold factory used the GV1625 to machine large - scale injection molds. The production efficiency was increased by 45%, and the production cost was reduced by 20% due to the reduction in scrap rate and the shortening of the machining cycle.
"The GV1625 has completely changed our production process. It not only improves the precision of our products but also significantly reduces the production cost. We are very satisfied with this machine." - A customer from the mold manufacturing industry
With the development of intelligent manufacturing, manufacturing enterprises have higher requirements for the intelligence and automation of equipment. The GV1625 is equipped with an advanced control system and a network communication interface. It can be connected to the enterprise's production management system, realizing real - time monitoring and remote control of the machining process. For example, through the remote control function, technicians can adjust the machining parameters in time according to the actual situation, improving the flexibility and efficiency of production. In addition, the GV1625 can also collect and analyze machining data, providing a basis for the optimization of the production process.
If you are looking for a high - performance CNC milling machine for complex large - part machining, the GV1625 is definitely a worthy choice. It can make your factory more intelligent and efficient, allowing you to take the lead and win at the source. To learn more about the GV1625 or contact our sales team, click here.