市场调查报告书
商品编码
1401918
2030 年工业 CO2 雷射器市场预测:按类型、应用、最终用户和地区分類的全球分析Industrial CO2 Laser Market Forecasts to 2030 - Global Analysis By Type (Continuous Wave Lasers, Diffusion-Cooled CO2 Lasers, Multi-mode and Single-mode CO2 Lasers and Other Types), By Application, End User and By Geography |
根据 Stratistics MRC 的数据,2023 年全球工业 CO2 雷射器市场规模为 5.55 亿美元,预计在预测期内将以 11% 的复合年增长率成长,到 2030 年达到 11.52 亿美元。
工业用二氧化碳雷射是使用二氧化碳气体混合物产生聚焦红外线光束的高功率设备。它以其精密材料加工而闻名,擅长切割、焊接和雕刻各种材料,包括金属、塑胶和织物。这些雷射用途广泛且高效,由于能够在工业应用中提供高功率和微调控制,因此广泛应用于汽车、航太、电子和医疗行业。
印度 Laser Technology Pvt. Ltd (LTPL) 表示,虽然雷射打标是设备销售中最受欢迎的,但雷射切割将成为 2021 年最大的收益贡献者。
增加在各种工业应用的使用
CO2 雷射在各种工业应用中的使用不断增加是市场成长的主要驱动力。这些雷射在金属、塑胶和纺织品等材料的切割、焊接、雕刻和打标方面提供无与伦比的精度、多功能性和效率。製造、汽车、电子、医疗和航太等行业越来越依赖高品质、高速 CO2 雷射。它能够处理各种材料,同时确保精度和成本效益,正在推动市场扩张和各个工业领域的采用。
材料相容性有限
有限的材料相容性是市场的抑制因素,因为这些雷射在加工某些材料时可能会遇到挑战。 CO2 雷射在金属、塑胶和织物上表现出色,但新的或特殊的材料可能会限制其有效性。这项限制影响了它们在依赖这些材料的行业中的适用性,可能迫使公司寻求替代的雷射技术和加工方法,并可能限制 CO2 雷射在所有工业材料加工要求中的通用性,这阻碍了招聘。
CO2 雷射技术的不断进步
持续的技术创新提高了雷射功率、光束品质和控制精度,从而提高了效率并扩大了工业应用能力。冷却系统、光学元件和软体的改进有助于提高可靠性、减少维护要求和易用性。这些进步透过提供更具成本效益、多功能和高精度的解决方案来推动市场成长,以满足不断变化的行业需求,并增加 CO2 雷射技术在不同工业领域的采用。我们正在推动。
雷射竞争技术
与 CO2 雷射器相比,光纤雷射和固态雷射等竞争雷射技术的存在具有效率高、尺寸紧凑和维护要求低等优势。它们在某些应用(特别是新材料加工和精密製造)中的功率可扩展性和成本效益方面取得的进步正在挑战 CO2 雷射器的市场主导地位。
COVID-19大流行对工业 CO2 雷射器市场产生了重大影响。全球供应链中断、劳动力短缺和经济不确定性导致产业推迟计划进度和资本投资。汽车和航太工业是二氧化碳雷射的主要消费者,面临生产放缓的问题。然而,疫情加速了自动化的采用,并推动了非接触式製造等某些应用对二氧化碳雷射的需求。
预计焊接行业在预测期内将是最大的
由于各行业对高精度、高效焊接解决方案的需求不断增加,预计焊接行业将在预测期内主导工业 CO2 雷射器市场。 CO2 雷射器擅长提供精确且受控的热量,使其成为汽车、製造和电子行业焊接应用的理想选择。它能够焊接包括金属和塑胶在内的多种材料,与雷射技术的进步相结合,提高了製造过程的生产率和品质。由于该行业优先考虑具有成本效益和高性能的焊接解决方案,因此焊接领域预计将成为市场成长的最大贡献者。
预计电子业在预测期内复合年增长率最高
由于电子产品生产中对精确、快速製造流程的需求迅速增长,预计电子产业的工业二氧化碳雷射市场将显着成长。 CO2 雷射为半导体材料和电路基板的复杂图案的切割、钻孔和打标提供无与伦比的精度。由于电子产业不断的技术创新和小型化趋势,CO2雷射提供了所需的精度、效率和弹性,使该领域在预测期内实现最高成长。
在预测期内,亚太地区将主导工业二氧化碳雷射市场。该地区经济的强劲成长,尤其是中国和印度等国家的强劲经济成长,正在推动切割、焊接和雕刻等各种应用对 CO2 雷射的需求。有利的政府政策和不断增加的研发投资促进了该地区在该市场的领先地位。此外,该地区强大的基础设施、熟练的劳动力以及工业中自动化技术的持续采用,都为市场扩张做出了重大贡献。
由于製造、汽车和医疗等不同行业的需求不断增长,推动二氧化碳雷射技术在切割、雕刻和打标应用中的采用,北美工业二氧化碳雷射器市场预计在预测期内将增长。显着增长。该地区注重技术进步,加上强大的工业基础设施,有利于市场扩张。此外,人们对 CO2 雷射的效率和精度的认识不断提高以及政府的支持措施也进一步促进了该地区的成长。
According to Stratistics MRC, the Global Industrial CO2 Laser Market is accounted for $555 million in 2023 and is expected to reach $1152 million by 2030 growing at a CAGR of 11% during the forecast period. Industrial CO2 lasers are high-powered devices using a carbon dioxide gas mixture to generate a focused beam of infrared light. Renowned for precise material processing, they excel in cutting, welding, and engraving various materials like metals, plastics, and fabrics. Versatile and efficient, these lasers find extensive use in automotive, aerospace, electronics and medical industries for their ability to offer high-power outputs and fine-tuned control in industrial applications.
According to Laser Technology Pvt. Ltd (LTPL) India, laser marking is the most popular in terms of equipment sales, although laser cutting was the leading revenue contributor in 2021.
Rising usage in various industrial applications
The increasing usage of CO2 lasers across diverse industrial applications serves as a significant driver for the market's growth. These lasers offer unparalleled precision, versatility, and efficiency in cutting, welding, engraving, and marking materials like metals, plastics, textiles, and more. Industries such as manufacturing, automotive, electronics, healthcare, and aerospace increasingly rely on CO2 lasers for their high-quality and high-speed operations. Their ability to handle a wide range of materials while ensuring precision and cost-effectiveness has fueled their adoption, driving the expansion of the market across various industrial sectors.
Limited material compatibility
Limited material compatibility poses a restraint on the market, as these lasers might encounter challenges when processing certain materials. While CO2 lasers excel with metals, plastics, and fabrics, their effectiveness with newer or specialized materials can be restricted. This limitation affects their applicability in industries reliant on these materials, potentially compelling businesses to seek alternative laser technologies or processing methods, hindering the universal adoption of CO2 lasers across all industrial material processing requirements.
Ongoing advancements in CO2 laser technology
Continuous innovations enhance laser power, beam quality and control precision, enabling higher efficiency and expanded application capabilities across industries. Improvements in cooling systems, optics, and software contribute to increased reliability, reduced maintenance needs, and enhanced user-friendliness. These advancements drive market growth by offering more cost-effective, versatile, and precise solutions, catering to evolving industry demands and fostering the adoption of CO2 laser technology in diverse industrial sectors.
Competing technologies in the lasers
The presence of competing laser technologies such as fiber and solid-state lasers offers advantages such as higher efficiency, compact size, and lower maintenance requirements compared to CO2 lasers. Their advancements in power scalability and cost-effectiveness in specific applications, especially in newer materials processing and precision manufacturing, challenge the market dominance of CO2 lasers.
The COVID-19 pandemic significantly impacted the industrial CO2 laser market. Disruptions in the global supply chain, workforce shortages, and economic uncertainties led to delays in project timelines and capital expenditure by industries. The automotive and aerospace sectors, major consumers of CO2 lasers, faced production slowdowns. However, the pandemic also accelerated the adoption of automation, driving demand for CO2 lasers in certain applications, like contactless manufacturing.
The welding segment is expected to be the largest during the forecast period
The welding segment is anticipated to dominate the industrial CO2 laser market throughout the forecast period due to the increasing demand for high-precision and efficient welding solutions across diverse industries. CO2 lasers excel at providing precise and controlled heat, making them ideal for welding applications in the automotive, manufacturing, and electronics sectors. Their ability to weld a wide range of materials, including metals and plastics, coupled with advancements in laser technology, enhances productivity and quality in manufacturing processes. As industries prioritize cost-effective and high-performance welding solutions, the welding segment is poised to be the largest contributor to the market's growth.
The electronics segment is expected to have the highest CAGR during the forecast period
The electronics segment is set for substantial growth in the Industrial CO2 Laser market due to burgeoning demand for precise and high-speed manufacturing processes in electronics production. CO2 lasers offer unparalleled precision for cutting, drilling, and marking intricate patterns on semiconductor materials and circuit boards. With the electronics industry's continuous innovation and miniaturization trends, CO2 lasers provide the required accuracy, efficiency, and flexibility, positioning this segment to experience the highest growth during the forecast period.
The Asia Pacific region is set to dominate the industrial CO2 laser market during the forecast period, primarily driven by burgeoning industrialization and manufacturing activities. The region's robust economic growth, particularly in countries like China and India, fuels the demand for CO2 lasers across diverse applications, including cutting, welding, and engraving. Favorable government policies and increasing investments in research and development contribute to the region's leadership in this market. Additionally, the region's robust infrastructure, skilled labor force, and escalating adoption of automation in industries contribute significantly to the market expansion.
The industrial CO2 laser market in North America is poised for substantial growth during the forecast period due to rising demand across diverse industries, such as manufacturing, automotive, and healthcare, which is driving the adoption of CO2 laser technology for cutting, engraving, and marking applications. The region's emphasis on technological advancements, coupled with a robust industrial infrastructure, fosters the market's expansion. Additionally, increasing awareness of the efficiency and precision offered by CO2 lasers, along with supportive government initiatives, further contributes to the growth in the region.
Some of the key players in Industrial CO2 Laser Market include Amada Weld Tech, Coherent Inc., Epilog Laser, Full Spectrum Laser, Han's Laser, IPG Photonics, LaserStar Technologies Corporation, Sintec Optronics, Synrad (Novanta Inc.), Trotec Laser, TRUMPF, Universal Laser Systems and Wuhan Raycus Fiber Laser Technologies Co., Ltd.
In June 2023, AMADA WELD TECH, Inc. announces an expanded range of galvo scan heads for precision laser welding applications. Common usages for these scanning heads include point-to-point positioning for multi-point welding, shape welding for hermetic seams, and beam weaving to increase weld width.
In May 2023, AMADA WELD TECH announces that it is now processing samples and providing product and process training in 3 technical centers across the United States.
In April 2023, Epilog Laser, the leading producer of CO2 and fiber laser engraving, cutting, and marking systems, is excited to announce the expansion of the highly-popular Fusion Maker Laser Series.