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Excessive Deformation in Laminating Mold Machining? Real - World Testing of GV1625's High - Precision Performance in Large Workpieces
2025-08-02
KAIBO CNC
Customer Cases
Struggling with excessive deformation in laminating mold machining? The GV1625 has been tested to achieve an accuracy of up to ±0.02mm. Its stable cutting platform effectively solves the deformation problem of large workpieces! Through real - world customer cases, this article analyzes the outstanding performance of the double - column CNC milling machine in the machining of composite structures and fuselage components, helping you improve the yield rate and production efficiency.
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Addressing the Precision Challenges in Large Workpiece Machining with GV1625

In the manufacturing industry, machining large workpieces has always been a daunting task. One of the most prominent issues faced by procurement managers and manufacturers is the high probability of deformation during the machining process, which severely affects the precision and quality of the final products. In fact, statistics show that in traditional large - workpiece machining, the rejection rate due to deformation can reach up to 20%, leading to significant losses in both time and cost.

GV1625 machining a large workpiece

Core Advantages of GV1625

The GV1625, a large - scale double - column CNC milling machine, has emerged as a game - changer in this scenario. Its rigid steel structure design is the cornerstone of its stability. The use of high - strength steel materials ensures that the machine can withstand the large forces generated during the machining process without significant deformation. Moreover, the high - stability cutting platform of the GV1625 is another key factor contributing to its outstanding performance.

With a measured accuracy of up to ±0.02mm, the GV1625 can effectively address the deformation problem in large - workpiece machining. The stable cutting platform provides a solid foundation for the cutting tools, enabling them to perform precise operations on the workpiece. This accuracy has been verified through numerous actual machining tests, making it a reliable choice for manufacturers who demand high - precision machining.

Diverse Application Scenarios

The GV1625 is suitable for a wide range of application scenarios. In the aerospace industry, it is often used for machining aircraft fuselage components. These components require extremely high precision and surface quality to ensure the safety and performance of the aircraft. The GV1625 can meet these strict requirements, helping manufacturers produce high - quality fuselage parts.

For the composite material structure processing industry, the GV1625 also shows excellent adaptability. Composite materials are often used in high - end products due to their light weight and high strength. However, their complex structures and special physical properties pose challenges to the machining process. The GV1625 can handle these challenges with ease, thanks to its precise control system and stable cutting performance.

Another important application is the processing of lay - up molds. Lay - up molds are critical in the manufacturing of various products, and their precision directly affects the quality of the final products. The GV1625 can effectively reduce the deformation of lay - up molds during the machining process, improving the overall quality and production efficiency.

GV1625 machining a composite material structure

In - depth Analysis of Customer Cases

Let's take a real - world customer case as an example. A well - known aerospace component manufacturer was facing the problem of high rejection rates in the machining of aircraft fuselage components. The traditional machining equipment they used could not meet the high - precision requirements, resulting in a rejection rate of about 15%. The deformation of the components during machining was the main cause of the high rejection rate.

After adopting the GV1625, the manufacturer designed a comprehensive machining solution. First, they optimized the machining process parameters according to the characteristics of the GV1625, such as adjusting the cutting speed, feed rate, and depth of cut. Then, they used the precise positioning function of the GV1625 to ensure the accuracy of the machining operations.

After three months of actual production, the results were remarkable. The rejection rate of the aircraft fuselage components dropped from 15% to 3%, and the production efficiency increased by 30%. This clearly demonstrates the effectiveness of the GV1625 in solving the machining problems of large workpieces.

"Since we started using the GV1625, the quality of our products has been significantly improved. The precision and stability of this machine have exceeded our expectations. It has helped us save a lot of costs and time, and we are very satisfied with it." - A customer from the aerospace industry

Finished products machined by GV1625

Enhanced Trust and Assurance

In addition to the above - mentioned customer cases, we also have a large number of on - site实拍 images showing the GV1625 in operation. These images clearly show the high - precision machining process and the excellent quality of the finished products. We also provide comparisons between the workpieces before and after machining, which vividly demonstrate the improvement in precision and quality brought about by the GV1625.

Many customers have given positive feedback on the GV1625, praising its reliability and high performance. Their testimonials serve as a strong endorsement of the GV1625's capabilities.

If you are also facing challenges in large - workpiece machining, the GV1625 can be your ideal solution. It has already helped many enterprises improve their product quality and production efficiency. Don't miss this opportunity to transform your manufacturing process.

Click here to schedule a demo, get the technical whitepaper, or consult our engineers!
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