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HomeWhat are the technical difficulties of plate and tube integrated laser cutting machine when cutting complex shapes and patterns?

What are the technical difficulties of plate and tube integrated laser cutting machine when cutting complex shapes and patterns?

Publish Time: 2025-01-27
As an advanced processing equipment, plate and tube integrated laser cutting machine has been widely used in the field of metal processing with its high precision, high efficiency and high flexibility. However, the equipment also faces a series of technical difficulties when cutting complex shapes and patterns.

First, the cutting path planning of complex shapes and patterns is an important challenge. Due to the diversity of shapes and patterns, the cutting path needs to be accurately calculated to ensure that the laser beam can move along the predetermined trajectory accurately and efficiently. This requires not only the cutting software to have powerful algorithm capabilities, but also the fine adjustment of the motion control system of the laser cutting machine to achieve high-precision positioning and movement.

Secondly, the control of laser power and focal position is also the key to cutting complex shapes and patterns. The cutting of different shapes and patterns has different requirements for laser power and focal position. During the cutting process, it is necessary to flexibly adjust the laser power and focal position according to the thickness, hardness and characteristics of the cutting shape of the material to achieve the best cutting effect. This requires the operator to have rich experience and skills to accurately judge the cutting conditions and make corresponding adjustments.

In addition, the heat-affected zone and deformation problems generated during the cutting process cannot be ignored. The cutting of complex shapes and patterns is often accompanied by more heat accumulation and uneven stress distribution, which can easily lead to the expansion of the heat-affected zone and deformation of the workpiece. In order to reduce the impact of these problems, a series of measures need to be taken, such as optimizing cutting parameters, adopting appropriate cooling methods, and strengthening workpiece support.

Finally, when cutting complex shapes and patterns, higher requirements are also placed on the stability and durability of the equipment. Due to the complexity of the cutting path and the extension of the cutting time, the equipment needs to withstand greater loads and wear. Therefore, when choosing a plate and tube integrated laser cutting machine, it is necessary to pay attention to its structural design, material selection, maintenance and other aspects of performance to ensure that the equipment maintains stability and durability in long-term use.

In summary, when cutting complex shapes and patterns, the plate and tube integrated laser cutting machine faces technical difficulties in cutting path planning, laser power and focus position control, heat-affected zone and deformation problems, and equipment stability and durability. In order to solve these problems, it is necessary to continuously develop and improve cutting technology, improve the performance and precision of equipment, and meet the needs of cutting complex shapes and patterns in the field of metal processing.
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