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市場調查報告書
商品編碼
1462729
到 2030 年龍門機器人市場預測:按類型、軸類型、有效負載、支援、應用、最終用戶和地區進行的全球分析Gantry Robot Market Forecasts to 2030 - Global Analysis By Type (Open Gantry Robot and Closed Gantry Robot), Axis Type (1-Axis, 2-Axis, 3-Axis and 4-Axis), Payload, Support, Application, End User and By Geography |
根據Stratistics MRC的數據,2023年全球龍門機器人市場規模為39.1億美元,預計2030年將達到66.9億美元,預測期內年複合成長率為8.0%。
龍門機器人是一種常用於製造和自動化過程的工業機器人。這種設計允許在多個軸上進行精確、高效的移動,通常跨越較大的工作空間。龍門機器人用途廣泛、適應性強,可以在多種行業中執行物料輸送、組裝和檢查等任務。配備自動化感測器和軟體,它們可以高精度和可重複性地執行程式設計任務,從而提高生產力並簡化生產流程。
高有效負載和彈性
龍門機器人以其高負載能力和彈性而聞名。它可以處理重負載並在較大的工作空間中運行,使其適合需要提升或移動大型物體的應用。此外,龍門機器人是可自訂的,可根據特定要求進行配置,使其在各種行業中具有多種用途。處理重負載並適應不同任務和環境的能力促進了對龍門機器人的需求。
初始投資高
考慮到機器人本身、夾具和末端執行器等周邊設備的成本,以及所需的客製化和與現有系統的整合,龍門機器人通常具有很高的價格標籤。此外,對於中小型企業 (SME) 和預算有限的公司來說,與購買、安裝和編程龍門機器人相關的初始成本可能是一個重大障礙。因此,高昂的初始投資成本是市場需求的主要障礙。
機器人技術的進步
機器人技術的不斷進步,包括控制系統、感測器、視覺系統和人工智慧的改進,將提高龍門機器人的能力和性能。這些進步使龍門機器人能夠處理複雜的任務,適應動態環境,並與人類操作員合作。機器人技術的不斷創新正在推動龍門機器人在各行業的採用並擴大市場。
程式設計複雜性
對龍門機器人進行程式設計需要開發自訂軟體和控制介面來定義機器人的運動、協調任務以及與其他設備互動。這種程式複雜性源自於精確定位、同步和途徑規劃的需求。然而,程式設計和整合的複雜性為機器人專業知識和資源有限的公司帶來了障礙,阻礙了市場的開拓。
COVID-19 的影響
COVID-19大流行對龍門機器人市場產生了重大影響。最初,由於停工和限制而造成的製造活動大範圍中斷,減緩了各行業對龍門機器人的需求。許多公司面臨財務不確定性,推遲或取消了龍門機器人等自動化技術的投資計畫。
開放式龍門機器人產業預計在預測期內規模最大
開放式龍門機器人領域以其設計和結構為特點,預計將佔據最大佔有率。開放式龍門機器人具有更易於存取和適應性更強的架構,通常由具有清晰的移動和存取通道的框架組成。操作員和維護負責人可以輕鬆訪問,使設定、故障排除和維護任務變得更加容易。這種可訪問性減少了停機時間並提高了工作效率。
預計汽車業在預測期內年複合成長率最高。
汽車產業提供精度、效率和可靠性,以滿足行業的苛刻需求,預計在預測期內將出現良好的成長。這些機器人有助於搬運重物、精確定位組件並快速、一致地執行複雜的任務。此外,它還可以透過減少危險環境(例如焊接和噴漆室)中的體力勞動需求來提高職場安全性。
亞太地區的特點是工業化快速、技術進步、製造業快速成長,在預測期內佔據最大的市場佔有率。此外,政府支持自動化的措施、研發投資以及主要市場參與者的存在也促進了該地區龍門機器人市場的成長。
歐洲擁有強大的製造基礎,預計在預測期內將實現盈利成長。旨在促進工業自動化、數位化和工業 4.0 技術的政府舉措和資助計劃正在推動龍門機器人在歐洲的採用。此外,人工智慧、機器學習和協作能力的整合等技術進步使龍門機器人更加通用、彈性且易於部署在各種應用中,推動了歐洲市場的進一步成長。
According to Stratistics MRC, the Global Gantry Robot Market is accounted for $3.91 billion in 2023 and is expected to reach $6.69 billion by 2030 growing at a CAGR of 8.0% during the forecast period. A gantry robot is a type of industrial robot commonly used in manufacturing and automation processes. This design allows for precise and efficient movement on multiple axes, often spanning large workspaces. Gantry robots are versatile and adaptable, capable of performing tasks such as material handling, assembly, and inspection across various industries. They are equipped with sensors and software for automation, enabling them to execute programmed tasks with high accuracy and repeatability, enhancing productivity and streamlining production processes.
High payload capacity and flexibility
Gantry robots are known for their high payload capacity and flexibility. They can handle heavy loads and operate in large workspaces, making them suitable for applications that require lifting and moving substantial objects. Moreover, gantry robots can be customized and configured to meet specific requirements, allowing for versatility in various industries. The ability to handle heavy payloads and adapt to different tasks and environments contributes to the demand for gantry robots.
High initial investment
Gantry robots typically come with a substantial price tag, considering the cost of the robot itself, peripheral equipment, such as grippers or end effectors, and any necessary customization or integration with existing systems. Furthermore, the initial expenses associated with gantry robot acquisition, installation, and programming can be a significant barrier for small and medium-sized enterprises (SMEs) or businesses with limited budgets. As a result, high initial investment costs are a significant barrier hampering market demand.
Advancements in robotics technology
Ongoing advancements in robotics technology, including improvements in control systems, sensors, vision systems, and artificial intelligence, enhance the capabilities and performance of gantry robots. These advancements enable gantry robots to handle complex tasks, adapt to dynamic environments, and collaborate with human operators. The continuous innovation in robotics technology drives the adoption of gantry robots in various industries, expanding the market.
Complexity of programming
Programming gantry robots involves developing custom software and control interfaces to define their movement, coordinate tasks, and interact with other equipment. This programming complexity arises due to the need for precise positioning, synchronization, and path planning. However, the complexity of programming and integration can be a barrier for companies with limited expertise or resources in robotics, which hinders market development.
Covid-19 Impact
The COVID-19 pandemic significantly impacted the gantry robot market. Initially, widespread disruptions in manufacturing activities due to lockdowns and restrictions led to a slowdown in demand for gantry robots across various industries. Many businesses faced financial uncertainties, causing them to delay or cancel investment plans in automation technologies like gantry robots.
The open gantry robot segment is expected to be the largest during the forecast period
The open gantry robot segment is estimated to hold the largest share, characterized by its design and structure. Open gantry robots have a more accessible and adaptable architecture, typically consisting of a framework with clears pathways for movement and access. It provides easier access for operators and maintenance personnel, facilitating setup, troubleshooting, and maintenance tasks. This accessibility can lead to reduced downtime and increased operational efficiency.
The automotive segment is expected to have the highest CAGR during the forecast period
The automotive segment is anticipated to have lucrative growth during the forecast period offering precision, efficiency, and reliability to meet the industry's demanding requirements. These robots are instrumental in handling heavy payloads, positioning components accurately, and executing complex tasks with speed and consistency. Moreover, they also enhance workplace safety by reducing the need for manual intervention in hazardous environments, such as welding or painting booths.
Asia Pacific commanded the largest market share during the extrapolated period characterized by its rapid industrialization, technological advancements, and burgeoning manufacturing sector. Moreover, government initiatives supporting automation, investments in research and development, and the presence of key market players contribute to the growth of the gantry robot market in this region.
Europe is expected to witness profitable growth over the projection period due to the region's strong manufacturing base. Government initiatives and funding programs aimed at promoting industrial automation, digitalization, and Industry 4.0 technologies have boosted the adoption of gantry robots in Europe. Moreover, technological advancements, such as the integration of artificial intelligence, machine learning, and collaborative capabilities, are making gantry robots more versatile, flexible, and easy to deploy in various applications, further fueling market growth in Europe.
Key players in the market
Some of the key players in the Gantry Robot Market include Bosch Rexroth AG, Gudel Group AG, Toshiba Machine Co., Ltd., Aerotech US., ABB Ltd., Denso Corporation, STON Robot Changzhou Co., Ltd., IAI America, Inc., Yamaha Robotics, Nordson Corporation, Omron Corporation, Sage Automation Inc., Liebherr-International Deutschland GmbH, and Kuka AG.
In January 2024, Bosch Rexroth announced a partnership with leading thermal management manufacturer Modine. The two organizations are collaborating to bring Modine EVantage ((TM)) thermal management systems to the Bosch Rexroth portfolio of eLION products for electrified off-highway machinery worldwide.
In November 2023, ABB and Indian rolling stock manufacturer Titagarh Rail Systems have formed a strategic partnership to supply propulsion systems for metro rolling stock projects in India.
In March 2022, KUKA AG and Wiksfors Technology AB announced a strategic partnership to join forces in the modular house construction industry. Its mission is to facilitate the 'next generation factories' that will provide accommodations produced on a very large scale assembled and constructed offsite.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.