市場調查報告書
商品編碼
1215810
2022-2028 年汽車機器人市場Automotive Robotics Market 2022-2028 |
在預測期內,全球汽車工業機器人市場預計將以 11.1% 的複合年增長率顯著增長。 預計在預測期內,對自動駕駛汽車的偏好上升將激增對汽車機器人市場的需求。 例如,2021 年 8 月,MG Motor India 推出了 Astor,一款配備個人人工智能助手和 Level 2 自動駕駛技術的中型 SUV。 該公司押注於新的汽車技術能力和“可能性與服務”的汽車即平台 (CAAP) 概念,以使 Aster 脫穎而出。 此外,Aster SUV 的儀錶盤配備了個人 AI 助手機器人,可以繪製類似人類的情緒和聲音,並通過維基百科提供有關任何主題的詳細信息。
全球汽車機器人市場根據類型、組件和應用進行細分。 根據類型,市場分為鉸接式、標量式、正交式、合作式等。 基於組件,市場分為控制器、機械臂、末端執行器、傳感器、驅動器等。 按應用又細分為裝拆、焊接、噴漆、切割、物料搬運等。 預計 SCARA 機器人在預測期內將在市場上佔據重要份額。 SCARA 機器人以高速和高精度運行。 在可重複性方面,目前可用的 SCARA 機器人可以實現 10 微米或更小的公差,而 6 軸機器人的公差為 20 微米。 當佔地面積有限時,緊湊的佈局便於為臨時或遠程應用程序重新部署。
市場細分按地區劃分如下: 北美、歐洲、亞太地區和世界其他地區。 預計在預測期內,亞太地區將在汽車機器人市場佔據重要份額。 不斷上升的勞動力成本和提高的生產率正在推動該地區採用機器人。 據國際機器人聯合會(IFR)稱,中國是全球最大、增長最快的工業機器人市場。 此外,汽車行業的擴張預計將進一步增加中國汽車行業對機器人技術的需求。
Title:Global Automotive Robotics Market Size, Share & Trends Analysis Report, By Type (Articulated, SCARA, Cartesian, Collaborative, and Others), By Component (Controller, Robotic Arm, End Effector, Sensors, Drive, and Others), By Application (Assembling & Disassembling, Welding, Painting, Cutting, Material Handling, and Others), Forecast Period (2022-2028).
The global automotive robotics market is anticipated to grow at a substantial CAGR of 11.1 % during the forecast period. The rising inclination towards autonomous vehicles is expected to surge the demand for the automotive robotics market during the forecast period. For instance, in August 2021, MG Motor India revealed its mid-sized SUV, Astor equipped with a personal artificial intelligence assistant and level 2 autonomous driving technology. The company is betting on new auto-tech features and its concept of car-as-a-platform (CAAP) of 'possibilities and services' to differentiate the Astor. Further, the Astor SUV personal AI assistant robot on its dashboard that depicts human-like emotions and voices and can give detailed information on every topic through Wikipedia.
The global automotive robotics market is segmented based on the type, component, and application. Based on the type, the market is segmented into articulated, SCARA, Cartesian, collaborative, and others. Based on the component, the market is segmented into the controller, robotic arm, end effector, sensors, drive, and others. Based on the application, the market is further sub-segmented into assembling & disassembling, welding, painting, cutting, material handling, and others. The SCARA robots are expected to hold a considerable share in the market during the forecast period. The SCARA robot operates at high speed with high accuracy. In terms of repeatability, currently available SCARA robots can achieve tolerances lower than 10 microns, compared to 20 microns for a six-axis robot. By design, the SCARA robot suits applications with a smaller field of operation, and where floor space is limited, the compact layout also makes them more easily re-allocated in temporary or remote applications.
Geographically market is segmented into: North America, Europe, Asia Pacific, and the Rest of the World. The Asia-Pacific region is expected to hold a prominent share in the automotive robotics market during the forecast period. Due to the increasing labor cost and enhanced productivity, the adoption of robots is growing in the region. According to the International Federation of Robotics (IFR), China has become the world's largest market for industrial robotics and the fastest-growing market globally. In addition, the expansion of the automotive industry is expected to further strengthen the demand for automotive robots in China.
The major companies serving the global automotive robotics market include ABB Ltd., FANUC Corp., Kawasaki Heavy Industries Ltd., Yaskawa Electric Corp., and Kuka AG. The market players are contributing to the market growth by the adoption of various strategies including mergers and acquisitions, collaborations, and new product launches, to stay competitive in the market. For instance, in January 2020, Fanuc launched its lightweight collaborative robot for industrial applications, CRX-10iA. The company already has six models of its CR series of collaborative robots. However, this newly-launched industrial robot is of a new category. It is developed by taking the collaboration of manufacturing employees and robots into consideration. Further, the intuitive application is intended to facilitate operation for new users as companies scale up their automation and reduce setup times for experienced employees as well.
Research Methodology
The market study of the global automotive robotics market is incorporated by extensive primary and secondary research conducted by the research team at OMR. Secondary research has been conducted to refine the available data to break down the market into various segments, and derive the total market size, market forecast, and growth rate. Different approaches have been worked on to derive the market value and market growth rate. Our team collects facts and data related to the market from different geography to provide a better regional outlook. In the report, the country-level analysis is provided by analyzing various regional players, regional tax laws and policies, consumer behavior, and macro-economic factors. Numbers extracted from secondary research have been authenticated by conducting proper primary research. It includes tracking down key people from the industry and interviewing them to validate the data. This enables our analyst to derive the closest possible figures without any major deviations in the actual number. Our analysts try to contact as many executives, managers, key opinion leaders, and industry experts. Primary research brings authenticity to our reports.
Secondary Sources Include:
The report provides an in-depth analysis of the market size, and intended quality of the service preferred by consumers. The report will serve as a source for a 360-degree analysis of the market thoroughly integrating different models.
Market Segmentation
The Report Covers: