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Parker servo proportional valve sheet metal laser cutting process
Category:answer Publishing time:2025-12-20 10:04:20 Browse: Times
In modern industrial manufacturing, high precision and high efficiency processing technology is increasingly becoming a key factor in enterprise competitiveness. As a core control component in the hydraulic system, Parker servo proportional valves have extremely high requirements for the processing accuracy and quality of sheet metal parts during the manufacturing process. Therefore, the application of laser cutting technology in this field is particularly important. This article will discuss the laser cutting process of Parker servo proportional valve sheet metal parts in depth.
Firstly, laser cutting technology, with its non-contact processing, high cutting accuracy, small heat affected area, and high degree of automation, is widely used in sheet metal processing. For products such as Parker servo proportional valves that have high requirements for size accuracy and surface quality, laser cutting can effectively meet the processing needs of complex structural parts, especially suitable for the precise cutting of metals such as stainless steel, carbon steel, and aluminum alloy.
Secondly, the use of laser cutting in the manufacturing process of Parker servo proportional valve sheet metal parts can significantly improve production efficiency and product consistency. Through CAD/CAM software programming, complex contours can be cut accurately, reducing manual intervention and reducing waste rate. At the same time, laser cutting equipment has good repeat positioning accuracy, ensuring the size consistency of each batch of parts, which is crucial for the assembly and performance stability of hydraulic components.
In addition, laser cutting also has good flexible production capacity, which can quickly respond to changes in product design and adapt to small batch and multi-type production modes. This feature is particularly critical in the context of continuous iteration and upgrade of servo proportional valves.
However, some points of process control need to be paid attention to in practical applications. For example, parameters such as reasonable selection of laser power, cutting speed, auxiliary gas type and pressure should be chosen to avoid problems such as rough cutting surfaces and slag residue; at the same time, necessary deburring and cleaning treatment of the cut sheet metal parts is also required to improve the quality of subsequent welding or bending processes.
In summary, the laser cutting process provides a strong guarantee for the high precision and high efficiency manufacturing of Parker servo proportional valve sheet metal parts. With the continuous development of laser technology, its application prospects in the field of hydraulic component manufacturing will be even broader, helping enterprises to achieve intelligent manufacturing and high-quality development.
In modern industrial manufacturing, high precision and high efficiency processing technology is increasingly becoming a key factor in enterprise competitiveness. As a core control component in the hydraulic system, Parker servo proportional valves have extremely high requirements for the processing accuracy and quality of sheet metal parts during the manufacturing process. Therefore, the application of laser cutting technology in this field is particularly important. This article will discuss the laser cutting process of Parker servo proportional valve sheet metal parts in depth.
Firstly, laser cutting technology, with its non-contact processing, high cutting accuracy, small heat affected area, and high degree of automation, is widely used in sheet metal processing. For products such as Parker servo proportional valves that have high requirements for size accuracy and surface quality, laser cutting can effectively meet the processing needs of complex structural parts, especially suitable for the precise cutting of metals such as stainless steel, carbon steel, and aluminum alloy.
Secondly, the use of laser cutting in the manufacturing process of Parker servo proportional valve sheet metal parts can significantly improve production efficiency and product consistency. Through CAD/CAM software programming, complex contours can be cut accurately, reducing manual intervention and reducing waste rate. At the same time, laser cutting equipment has good repeat positioning accuracy, ensuring the size consistency of each batch of parts, which is crucial for the assembly and performance stability of hydraulic components.

In addition, laser cutting also has good flexible production capacity, which can quickly respond to changes in product design and adapt to small batch and multi-type production modes. This feature is particularly critical in the context of continuous iteration and upgrade of servo proportional valves.

However, some points of process control need to be paid attention to in practical applications. For example, parameters such as reasonable selection of laser power, cutting speed, auxiliary gas type and pressure should be chosen to avoid problems such as rough cutting surfaces and slag residue; at the same time, necessary deburring and cleaning treatment of the cut sheet metal parts is also required to improve the quality of subsequent welding or bending processes.

In summary, the laser cutting process provides a strong guarantee for the high precision and high efficiency manufacturing of Parker servo proportional valve sheet metal parts. With the continuous development of laser technology, its application prospects in the field of hydraulic component manufacturing will be even broader, helping enterprises to achieve intelligent manufacturing and high-quality development.
