항공우주 산업은 항공우주 로봇공학 이라는 로봇 기술을 사용하여 비행기를 만듭니다. 항공우주 로봇은 엔진에 구멍을 뚫고, 제조하고, 금속 부품을 접합하고, 기체를 도색하는 등 다양한 작업에 사용됩니다. 항공우주 로봇공학 기술은 높은 정확도, 적응형 자동화, 반복 가능한 작업을 수행하는 능력, 고속 생산 등 여러 가지 장점이 있으며, 이 모든 것이 비행기 제작에 필수적입니다.
항공기 생산업체는 더 저렴한 제품을 제공함으로써 다른 회사보다 경쟁 우위를 확보하기를 바랍니다. 항공우주 산업이 직면한 주요 문제 중 하나는 노동 비용 상승입니다. 로봇을 배치하면 노동 비용이 절감되고 생산성이 향상될 것으로 예상됩니다. 로봇은 처음에는 비용이 더 많이 들 수 있지만 장기적으로는 많은 직원을 고용하는 것보다 비용 효율적입니다. 급여, 보너스, 휴가 및 수당과 같은 다른 형태의 지불은 인간 노동에 대한 보상에 필요합니다. 그러나 로봇 에는 그러한 보상이 필요하지 않습니다 .
| 기인하다 | 세부 |
| 학습 기간 | 2020-2029 |
| 기준년도 | 2021 |
| 추정 연도 | 2022 |
| 예상 연도 | 2022-2029 |
| 역사적 기간 | 2018-2020 |
| 단위 | 가치(10억 달러) |
| 분할 | 응용프로그램, 로봇 유형, 기술, 솔루션 및 지역별로 분류됩니다. |
| 응용 프로그램으로 |
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| 로봇 유형별 |
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| 기술로 |
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| 솔루션별로 |
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| 지역별로 |
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로봇 자동화는 특히 중소기업(SME)의 경우 어렵습니다. 비용이 많이 드는 초기 자본 지출이 필요합니다. 게다가 로봇을 유지 관리하고 프로그래밍하기 위해 직원에게 교육을 제공해야 합니다. 로봇은 용접, 조립, 포장을 포함한 다양한 목적으로 중소기업에서 사용됩니다. 그러나 제품 사양의 변경은 로봇의 작동 방식에도 영향을 미칠 수 있습니다. 따라서 사용자 정의가 필요하며, 이로 인해 로봇 가격이 상승합니다 . 따라서 이러한 요소로 인해 이 시장이 확장되는 것을 막을 수 있습니다.
로봇은 인간이 달성할 수 없는 기술과 정밀성이 필요한 작업을 수행하기 위해 항공우주 산업에서 기존 생산 공정을 대체하고 있습니다. 협업 로봇의 등장으로 인간-로봇 협업 간의 협업이 증가했으며, 로봇은 인간 직원과 손을 잡고 작업합니다. 로봇과 인간 인력의 이러한 통합으로 생산성과 효율성이 향상되었습니다. 또한 제조에서 일부 작업은 인간이 더 잘 수행할 수 있고, 다른 작업은 로봇이 더 잘 수행할 수 있습니다. 항공기 제조에 로봇을 도입하는 것은 항공우주 로봇 시장에서 인간과 로봇의 다양한 강점을 탐구할 수 있는 핵심 성장 기회입니다.
불확실하고 몇 년 동안 지속될 것으로 예상되는 COVID-19는 항공우주 로봇 사업에 영향을 미칠 가능성이 높습니다. COVID-19 발병으로 인해 전 세계 정부는 엄격한 봉쇄 조치를 시행하고 2020년 대부분과 2021년 몇 달 동안 원자재의 수입 및 수출을 제한해야 했습니다. 이로 인해 항공우주 로봇의 구성 요소를 만드는 데 필요한 중요한 원자재 공급이 급격히 감소했습니다. 또한 전국적인 봉쇄로 인해 항공우주 로봇을 생산하는 공장은 활동을 축소하거나 중단해야 했습니다. COVID-19 팬데믹의 영향으로 정교한 항공우주 로봇 구성 요소 개발과 관련된 전 세계 운영 및 프로젝트가 지연되었습니다.
The global Aerospace Robotics Market is expected to grow at 11.80% CAGR from 2020 to 2029. It is expected to reach above USD 7.91 Billion by 2029 from USD 2.90 Billion in 2020.
Aerospace held more than 38% of the Aerospace Robotics Market revenue share in 2020 and will witness tremendous expansion during the forecast period.
One of the key issues facing the aerospace sector is the rising cost of labor. The deployment of robots is anticipated to save labor costs and boost productivity. Robotics may be more expensive initially, but over the long run they are more cost-effective than hiring a large staff.
The Aerospace Robotics Market key players include ABB, AV&R, Electroimpact Inc., Fanuc Corporation, JH Robotics Inc., KUKA AG, Mitsubishi Electric Corporation, OC Robotics, Universal Robots A/S, Yaskawa Electric Corporation
The aerospace the major sectors where the application of Cloud OSS BSS has seen more.
The Markets largest share is in the Asia Pacific region.
The aerospace robotics industry is divided into many application categories, including material handling, surface treatment, composites applications, assembly. The demand for composites-based components in the aerospace sector, such as improved engine turbine blades and aircraft frame structures, is predicted to increase throughout the forecast period, leading to a higher market share for the composites application segment. The section for material handling comprises forging, handling, foundries, and press unloading. Similar to cleaning, laser treatment, high-pressure water jet washing, and other processes are included in the surface treatment sector. Eddy current inspection, welding, and other processes are a part of the assembly phase. Due to the widespread use of robots in drilling, welding, and painting tasks in the aircraft manufacturing industry, this sector is anticipated to have the greatest market share.
According to the kind of robot, the market is segmented into parallel robots, articulated robots, linear/Cartesian robots, selected compliance assembly robot arm (SCARA) robots, and others. The aerospace robotics market is expected to be dominated by the linear robot segment. That is because assembling, painting, machining, and packing industries heavily utilize linear robots. Due to its superior technology for performing a variety of tasks in the industrial industry efficiently, the SCARA robot segment is anticipated to have the quickest growth over the projected period.
The aircraft robotics market is divided into conventional technology and collaborative technology based on technology. It was predicted that the conventional technology sector will dominate the market. Because collaborative robots are lightweight, flexible, reliable, and capable of optimizing low-weight collaborative operational activities like putting, picking, testing, and measuring, the collaborative technology market is anticipated to have quicker growth throughout the projection period.The market is divided into three categories based on the solution: services, software, and hardware. Among them, the hardware sector had the biggest market share. because of the growing need for the controller, arm processor, sensors, and motor for the most cutting-edge robots. Due to the technical progress in planning, safety, and project engineering software, it is projected that the aerospace robotics software segment would have the quickest growth throughout the projection period. The upkeep and repair of robots are taken into consideration in the services section.
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The Aerospace Robotics Market key players include ABB, AV&R, Electroimpact Inc., Fanuc Corporation, JH Robotics Inc., KUKA AG, Mitsubishi Electric Corporation, OC Robotics, Universal Robots A/S, Yaskawa Electric Corporation
For corporate expansion, these key leaders are implementing strategic formulations such as new product development and commercialization, commercial expansion, and distribution agreements. Moreover, these participants are substantially spending on product development, which is fueling revenue generation.
Recent Developments In July2021, Fanuc Corporation announced that it has started the production of 750,000th industrial robot, representing a record high point in the robotics industry. FANUC Corporation’s customer base covers a wide range of industries including automotive, aerospace, food and beverage, consumer goods, medical and pharmaceutical, warehousing, and many more. Nov 2022 The use of robotic MROs (Maintenance, Repair and Overhauls) on aircraft is becoming increasingly popular due to their high efficiencies and low cost. With robotic systems, inspections and maintenance are more user friendly and take less time as engines can remain on the aircraft's wings.The Aerospace Robotics Market by region includes North America, Asia-Pacific (APAC), Europe, South America, and Middle East & Africa (MEA).
The biggest revenue share was attributed to the Asia Pacific region. This is because there are more businesses, like COMAC and local producers, that sell aerospace robotics systems for less money than other manufacturers. In order to meet the demand for aircraft, COMAC has hastened the renovation of its assembly and manufacturing line. India is recognized as a significant participant in the Asia Pacific region in terms of both the domestic aviation market and the global aviation sector. To encourage domestic aircraft manufacturing, the Indian government is also implementing new aviation laws. International businesses have come to India as a result of a new government policy that allowed 100% Foreign Direct Investment (FDI) in the manufacturing and aerospace sectors. Such measures will facilitate knowledge transfer from Western nations to India and increase country's production of aerospace robots.
The North American market is anticipated to develop rapidly in terms of revenue. The Internet of Things (IoT), artificial intelligence (AI), cloud computing, robots, and the integration of 3D visualization are just a few of the technological advancements that are fueling the North American market's revenue growth. These developments improve human-robot collaboration and speed up industrial turnaround times. Intense R&D (Research and Development) activities and significant developments in cyber-physical systems with automated decision-making capabilities are also anticipated to propel global revenue growth.
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