Laser Processing Market Growth 2020 Along with Business Insights and Forecast to 2025


The Laser Processing Market Size is anticipated to increase from USD 4.0 billion in 2020 to USD 5.8 billion by 2025, at a predicted CAGR of 7.8%. The growth of the laser processing industry is primarily due to the end-user industries' increasing preference for laser-based material processing over conventional methods, the rising demand for high-quality and authentic end products, the demand for the miniaturisation of microelectronic devices, and the rapid advancement of technology in the medical field.

A device that can emit light using an optical amplification process based on the stimulated emission of electromagnetic radiation is called a laser (light amplification by stimulated emission of radiation). In a variety of end-user industries, laser processing entails the use of lasers to cut, weld, or grind materials. It operates by using optics to focus a high-power laser output. Today, lasers are employed in a variety of end-user sectors, including machine tools, architecture, semiconductor and electronics, healthcare, and defence.

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During the anticipated period, the solid lasers sector is anticipated to account for the biggest market share in the laser processing industry. Solid lasers produce both continuous and pulsed output at great efficiency while preventing the waste of materials in the active medium. These lasers can be used for a variety of tasks, including drilling holes in metal, endoscopy in the medical field, and military targeting.

During the forecast period, it is anticipated that the system revenue segment would account for a higher portion of the Laser Processing Market. Sales of several kinds of laser processing systems, such as those for marking and engraving, welding and brazing, cutting and scribing, drilling, cladding and coating, annealing, material removal, and other multi-function laser processing systems, produce system revenue.

During the anticipated period, the hybrid configuration segment is anticipated to account for the majority of the laser processing market. A hybrid system is more effective than a moving beam system because it allows for a very simple beam delivery system and maintains a constant beam delivery path length. This is because the hybrid system has both a moveable table and a moveable head.

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During the anticipated period, the laser processing market, the cutting application segment is anticipated to hold the greatest market share. Worldwide need for powerful lasers to cut both metals and non-metals is rising. In recent years, lasers have also seen significant growth in low-power applications like cutting paper and plastics. Lasers have shown to be a cost-effective way to cut wafers for high-quality products in the microelectronics sector.

The end-user industry sector for machine tools is anticipated to account for the biggest market share for laser processing over the anticipated time frame. Generally speaking, lasers are used extensively in machine construction, mostly for cutting and welding operations. Particularly in the field of processing sheet metal and tubes, lasers aid in producing clean-cut edges and trustworthy weld seams. To produce tubes and other components that are cut or welded, for instance, lasers are utilised. As a result, there are now many new uses for lasers in the machine tool sector.

During the forecast period, Asia Pacific (APAC) is anticipated to account for the highest share of the global laser processing market. China, Japan, South Korea, and India are the main contributors to the APAC laser processing market. When compared to other regions, APAC has been at the forefront of the use of laser processing solutions. The region's Laser Processing Market is anticipated to grow as a result of the high population density, increased R&D spending on technology, and expansion of the manufacturing and electronics industries.

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