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到 2030 年 SCARA 机器人的市场预测:按组件、有效负载、应用、最终用户和地区进行全球分析SCARA Robot Market Forecasts to 2030 - Global Analysis By Component, Payload Capacity, Application, End User and By Geography |
根据Stratistics MRC预测,2024年全球SCARA机器人市场规模将达129亿美元,预计到2030年将达到261亿美元,预测期内复合年增长率为12.5%。
SCARA(选择性顺应组装机器人手臂)机器人是一种工业机械臂,主要用于组装、物料输送、包装等高速、精密任务。它具有独特的配置,包括两个平行旋转关节和一个垂直线性关节。这种设计使机器人在垂直方向上具有刚性,但在水平方向上具有灵活性,从而实现选择性合规性,这对于拾放和组装任务等任务来说是理想的选择。 SCARA机器人可以高精度处理小零件,非常适合需要高精度和可重复性的应用,例如组装电子元件。
据国际机器人联合会称,亚太地区正在经历一场“机器人革命”,中国在2016年已部署了87,000台工业机器人。
汽车组装就业增加
SCARA 机器人专为在有限的工作空间内快速、精确地移动而设计,是零件插入、物料输送和组装工作等任务的理想选择。 SCARA 机器人在垂直轴上是刚性的,在水平面上是灵活的,使它们能够结合速度和精度,这在快节奏的汽车行业中至关重要。对于希望提高生产率和减少停机时间的製造商来说,SCARA 机器人是一种可靠的解决方案,可以简化操作,同时确保高品质标准。它处理重复任务的能力,加上人工智慧和机器学习的进步,将使自动化系统更聪明、更具适应性。
对操作员的初始训练要求较高
在工业环境中采用和有效使用 SCARA 机器人的一个主要挑战是操作员需要较高的初始训练。虽然这些机器人在组装、包装和拾放等任务中具有高精度和高速度,但它们需要专业知识和技能才能有效运作。操作员必须接受程式设计、故障排除、维护和安全通讯协定的培训,通常需要陡峭的学习曲线。这不仅增加了部署 SCARA 机器人的初始成本,而且还增加了工人上手之前的停机时间。
增加搬运酬载
有效载荷的增加极大地增强了 SCARA(选择性顺应组装机械臂)机器人的性能,使它们能够以更高的效率处理更重、更复杂的任务。传统上,SCARA 机器人以其快速、精确的运动而闻名,这使得它们非常适合在轻到中负载环境中组装、包装和物料输送等任务。此外,设计、物料输送和马达技术的进步使现代 SCARA 机器人具有更高的承重能力,使其能够在不牺牲速度或精确度的情况下处理较重的物体。
缺乏标准化
SCARA(选择性顺应组装机器人手臂)机器人缺乏标准化,对其广泛采用和效率构成了重大挑战。然而,在将这些机器人整合到现有生产线和其他自动化系统中时,缺乏标准化的设计通讯协定和软体介面会产生相容性问题。不同的製造商有不同的设计、控制系统和程式语言,这使得模型之间的无缝部署和切换变得困难。结果是更高的培训成本、更长的设置时间和更复杂的维护。缺乏统一的方法会产生扩充性问题,并限制系统升级和产能扩展。
COVID-19 大流行对 SCARA(选择性合规装配机器人手臂)机器人行业产生了重大影响,扰乱了生产和需求。工厂停工、劳动力短缺和供应链问题导致SCARA机器人的生产和交付延迟。这场流行病也加速了自动化的采用,因为公司正在寻找方法来减少对人力的依赖,并确保停工和社交疏离措施期间的连续性。 SCARA 机器人以其组装和包装作业的精确度而闻名,在满足新的製造需求方面变得越来越重要。
预计软体细分市场在预测期内将成为最大的细分市场
由于其性能、灵活性和易于整合到各种工业应用中的改进,软体领域预计在预测期内将占据最大份额。这些升级通常着重于改进机器人的运动控制演算法,以提高精度和速度,同时保持可靠性。它还包括引入先进的运动学和动态建模,使 SCARA 机器人能够以更高的精度执行更复杂的任务。此外,软体改进可能包括改进的用于程式设计和操作的使用者介面,让操作员轻鬆配置、监控和修改任务。
预计组装和拆卸领域在预测期内复合年增长率最高。
预计组装和拆卸产业将在预测期内快速成长。 SCARA机器人高效、精确、快速,非常适合需要重复性和详细任务的任务,例如组装和拆卸。在组装中,SCARA 机器人用于自动进行零件放置、紧固和品质检查,以确保一致性并减少人为错误。同样,拆卸可以处理精细而复杂的任务,例如从组件中移除零件、对零件进行分类以及对产品进行返工。 SCARA 机器人对于简化生产流程、提高效率和降低组装和拆卸应用中的人事费用变得越来越重要。
预计亚太地区将在整个预测期内占据最大的市场份额。日本、中国、韩国和印度等政府正在增加对先进製造技术的投资,并为自动化计划提供财政奖励、税收减免和资助。这些倡议是提高工业自动化、降低人事费用和提高製造效率的更广泛策略的一部分。此外,许多政府正在推动智慧工厂和工业4.0计划,鼓励使用机器人系统来提高生产能力。
据估计,欧洲地区在预测期内的复合年增长率最高。随着欧洲各行业寻求优化其製造流程,SCARA 机器人因其执行快速、精确和可重复任务的能力而越来越受到青睐,特别是在组装、物料输送和包装方面。对客製化的关注使公司能够根据特定任务定制机器人,从而无缝整合到不同的生产线中。此外,对能够响应产品要求和产量变化的灵活自动化解决方案的需求不断增长,正在推动 SCARA 机器人的创新。製造商现在提供易于重新编程和重新配置的模组化设计和软体主导功能,使 SCARA 机器人在各种应用中更加通用且更具成本效益。
According to Stratistics MRC, the Global SCARA Robot Market is accounted for $12.9 billion in 2024 and is expected to reach $26.1 billion by 2030 growing at a CAGR of 12.5% during the forecast period. A SCARA (Selective Compliance Assembly Robot Arm) robot is a type of industrial robotic arm designed for high-speed, precision tasks, primarily in assembly, material handling, and packaging. It is characterized by its unique configuration, which includes two parallel rotary joints and a vertical linear joint. This design allows for selective compliance, meaning the robot is rigid in the vertical direction but can be flexible in the horizontal plane, making it ideal for tasks like pick-and-place or assembly operations. SCARA robots excel in applications requiring high precision and repeatability, such as electronic component assembly, as they can handle small parts with high accuracy.
According to International Federation of Robotics, APAC region is experiencing a 'robot revolution', during which China already added 87,000 industrial robots in 2016.
Rising adoption in automotive assembly
SCARA robots are designed to perform high-speed, precise movements in a confined workspace, making them ideal for tasks such as part insertion, material handling, and assembly line operations. With their rigid structure in the vertical axis and flexibility in the horizontal plane, SCARA robots offer both speed and accuracy, crucial for the fast-paced automotive industry. As manufacturers aim for higher productivity and reduced downtime, SCARA robots provide a reliable solution that streamlines operations while ensuring high-quality standards. Their ability to handle repetitive tasks, coupled with advancements in AI and machine learning, allows for smarter and more adaptable automation systems.
High initial training requirements for operators
High initial training requirements for operators are a significant challenge for the adoption and effective use of SCARA robots in industrial settings. These robots, while offering high precision and speed in tasks like assembly, packaging, and pick-and-place, demand specialized knowledge and skills to operate efficiently. Operators must be trained in programming, troubleshooting, maintenance, and safety protocols, often requiring a steep learning curve. This not only increases the upfront cost of implementing SCARA robots but also adds to the downtime as workers get up to speed.
Improved payload capacities for handling
Improved payload capacities are significantly enhancing SCARA (Selective Compliance Assembly Robot Arm) robots by enabling them to handle heavier and more complex tasks with greater efficiency. Traditionally, SCARA robots were known for their high-speed, precise movements, making them ideal for tasks like assembly, packaging, and material handling in environments with light to medium loads. Furthermore, advancements in design, materials, and motor technologies, modern SCARA robots now feature higher payload capacities, allowing them to handle heavier objects without compromising speed or accuracy.
Lack of standardization
The lack of standardization in SCARA (Selective Compliance Assembly Robot Arm) robots is creating significant challenges in their widespread adoption and efficiency. However, without standardized design protocols and software interfaces, compatibility issues arise when integrating these robots into existing production lines or with other automation systems. Different manufacturers use varying designs, control systems, and programming languages, making it difficult for businesses to seamlessly adopt or switch between models. This results in higher training costs, longer setup times, and increased maintenance complexity. The absence of a unified approach can lead to issues in scalability, limiting the ability to upgrade systems or expand production capabilities.
The COVID-19 pandemic significantly impacted the SCARA (Selective Compliance Assembly Robot Arm) robot industry, disrupting both production and demand. Factory shutdowns, labor shortages, and supply chain issues led to delays in manufacturing and delivery of SCARA robots. The pandemic also accelerated the adoption of automation as businesses sought ways to reduce reliance on human labor and ensure continuity during lockdowns and social distancing measures. SCARA robots, known for their precision in assembly and packaging tasks, became increasingly important in adapting to new manufacturing needs.
The Software segment is expected to be the largest during the forecast period
Software segment is expected to dominate the largest share over the estimated period as it improves its performance, flexibility, and ease of integration into various industrial applications. These upgrades typically focus on refining the robot's motion control algorithms, increasing its precision and speed while maintaining reliability. Enhancements may include implementing advanced kinematics and dynamic modeling, which enable the SCARA robot to perform more complex tasks with greater accuracy. Additionally, software improvements could involve better user interfaces for programming and operation, allowing operators to easily set up, monitor and modify tasks.
The Assembling & Disassembling segment is expected to have the highest CAGR during the forecast period
Assembling & Disassembling segment is estimated to grow at a rapid pace during the forecast period. SCARA robots are highly efficient, precise, and fast, making them ideal for tasks requiring repetitive and detailed work, such as assembly and disassembly. In assembly, SCARA robots are used to automate the process of placing components, fastening parts, and performing quality checks, ensuring consistency and reducing human error. Similarly, for disassembly, they can handle delicate or complex tasks like removing parts from assemblies, sorting components, or reworking products. SCARA robots are becoming increasingly essential for streamlining production processes, improving efficiency, and reducing labor costs in assembling and disassembling applications.
Asia Pacific region is poised to hold the largest share of the market throughout the extrapolated period. Governments across countries like Japan, China, South Korea, and India are increasingly investing in advanced manufacturing technologies, offering financial incentives, tax benefits, and funding for automation projects. These initiatives are part of broader strategies to boost industrial automation, reduce labor costs, and improve manufacturing efficiency. Additionally, many governments are promoting smart factory and Industry 4.0 initiatives, fostering the use of robotic systems for enhanced production capabilities.
Europe region is estimated to witness the highest CAGR during the projected time frame. As industries across Europe seek to optimize manufacturing processes, SCARA robots are being increasingly favored due to their ability to perform high-speed, precise, and repeatable tasks, particularly in assembly, material handling, and packaging. The focus on customization allows businesses to tailor the robots to specific tasks, enabling seamless integration into diverse production lines. Additionally, the increasing need for flexible automation solutions that can adapt to changing product requirements and production volumes is driving innovation in SCARA robotics. Manufacturers are now offering modular designs and software-driven features that allow easy reprogramming and reconfiguration, making SCARA robots more versatile and cost-effective for various applications.
Key players in the market
Some of the key players in SCARA Robot market include ABB Robotics, Delta Electronics, Inc, Denso Corporation, Inventec Corporation, Kawasaki Heavy Industries Ltd, KUKA Robotics Corporation, Mitsubishi Electric Corporation, Omron Corporation, Parker Hannifin Corporation, Seiko Epson Corporation, Yaskawa Electric Corporation, Toshiba Machine Co., Ltd, Universal Robots A/S, Parker Hannifin Corporation and Autonics Corporation.
In November 2023, ABB Robotics introduced the IRB 930 to its SCARA robot lineup, which now includes three models capable of handling payloads weighing 12 kg and 22 kg. This addition, designed to address increasing opportunities in both conventional and new markets, strengthens ABB's industrial automation solutions, satisfying a wide range of precision and efficiency needs in manufacturing applications.
In February 2023, FANUC introduced two new SCARA pick-and-place robots: the pedestal-mounted, cleanroom-standard SR-3iA/C three-axis and SR-6iA/C four-axis SR robots. Ideal for replacing manual labor in handling duties, they also feature innovative anti-contamination features that meet the highest safety and hygiene standards in even the most challenging pharmaceutical environments.
In June 2022, FANUC America expanded its SCARA robot lineup with three new models, including the SR-3iA/U ceiling mount, SR-3iA/C, and SR-6iA/C variants. These additions bolster FANUC's capacity to address automation requirements in assembly, packaging, material handling, and inspection processes.