市场调查报告书
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1521172
包装机器人市场报告,按夹具类型(夹钳、爪子、真空等)、应用(拾取和放置、包装、码垛)、最终用户(食品和饮料、製药、消费品、物流等)和地区 2024 -2032Packaging Robots Market Report by Gripper Type (Clamp, Claw, Vacuum, and Others), Application (Picking and Placing, Packing, Palletizing), End User (Food and Beverage, Pharmaceutical, Consumer Products, Logistics, and Others), and Region 2024-2032 |
IMARC Group年,全球包装机器人市场规模达36.069亿美元。对提高营运效率和降低成本的需求不断增长、人工智慧和机器学习技术不断进步、劳动力短缺以及劳动力成本上升是推动市场的主要因素。
包装机器人是目前正在彻底改变供应链和製造业的自动化机器。他们专门从事高效处理各种任务,例如对产品进行分类、填充、密封和贴标籤。这些机器人利用人工智慧 (AI)、机器学习 (ML) 和电脑视觉等先进技术,轻鬆适应不同的产品尺寸和包装材料。它们有助于减少与传统人工主导的包装流程相关的时间、劳动力和错误率。公司越来越多地将包装机器人整合到其营运中,以受益于其高速精度、较低的管理成本和增强的可扩展性。这些系统在受控环境中运行,并遵守严格的品质和安全标准,从而确保产品在整个包装生命週期的完整性。因此,包装机器人在现代生产线中得到了广泛的应用,透过简化的操作和成本效益为企业提供竞争优势。
消费者对永续和包装精美的产品的偏好不断提高,促使企业投资先进、环保的包装解决方案。再加上对营运效率和成本节约的高度重视,将刺激预测期内的市场成长。包装机器人高度精确,这意味着它们可以有效地利用材料,有助于减少废物和实现永续发展目标。此外,有关卫生、品质控制和包装安全的严格监管标准和指南加速了这些机器人的采用,以实现合规性。此外,对客製化包装解决方案的需求不断增长,特别是在电子商务和製药等领域,正在对市场成长产生积极影响。机器人配备了可轻鬆重新编程的软体,可以比传统机械更快地适应这些客製化要求。此外,支援物联网的包装机器人的出现提供了增强的监控和资料收集功能,使企业能够做出明智的决策并优化工作流程,正在推动市场成长。其他因素,包括製造业的扩张、新兴国家经济的快速成长,以及由于供应链日益全球化而对自动化的需求不断增长,预计也将促进市场成长。
提高营运效率并降低成本
对更高营运效率的持续追求是推动包装机器人市场的主要力量。公司不断寻求优化生产线、降低管理成本和简化营运的方法。包装机器人以其速度、准确性和一致性而闻名,为这些挑战提供了有效的解决方案。他们可以全天候工作而不会感到疲劳,从而显着提高生产力。此外,它们在分类、填充和密封等任务中的精确性可最大限度地减少浪费和返工,从而进一步降低成本。随着企业在竞争日益激烈的环境中运营,以更少的资源生产更多产品的能力变得势在必行。对效率和成本效益的关注使得包装机器人的采用成为对全球公司越来越有吸引力的选择。
劳动力短缺和劳动成本上升
劳动力短缺,尤其是在已开发国家,是许多行业面临的紧迫问题。除此之外,不断上涨的劳动成本使得以人为主导的营运变得越来越昂贵。包装机器人为这两个问题提供了可行的解决方案。它们可以有效地执行重复且耗时的任务,从而使人类工作者能够专注于更复杂和增值的活动。随着全球范围内与劳动力相关的挑战不断升级,包装机器人作为各行业保持生产力和控製成本的战略资产的新兴作用变得更加突出,为市场增长提供了积极的推动力。
关键参与者的持续技术进步
机器人技术的进步,特别是人工智慧(AI)和机器学习(ML)的融合,是推动包装机器人市场扩张的另一个关键因素。这些技术使机器人能够执行复杂的任务,适应新的情况,甚至从经验中学习,从而扩大了它们的适用性。例如,人工智慧驱动的电脑视觉允许机器人根据尺寸、形状和颜色识别和分类物品,使它们适合更广泛的包装任务。透过技术进步实现的这种适应性和多功能性正在鼓励更多行业将包装机器人整合到其营运中,从而促进市场成长。
The global packaging robots market size reached US$ 3,606.9 Million in 2023. Looking forward, IMARC Group expects the market to reach US$ 9,622.9 Million by 2032, exhibiting a growth rate (CAGR) of 11.3% during 2024-2032. The rising need for higher operational efficiency and cost reduction, constant technological advancements in artificial intelligence and machine learning, and labor shortages coupled with rising labor costs are some of the major factors propelling the market.
Packaging robots are automated machines currently revolutionizing the supply chain and manufacturing industries. They are specialized in handling a wide range of tasks such as sorting, filling, sealing, and labeling products in a highly efficient manner. Leveraging advanced technologies like artificial intelligence (AI), machine learning (ML), and computer vision, these robots adapt to varying product dimensions and packaging materials with ease. They help reduce the time, labor, and error rate associated with traditional human-led packaging processes. Companies are increasingly integrating packaging robots into their operations to benefit from their high-speed precision, lower overhead costs, and enhanced scalability. These systems operate in a controlled environment, adhering to strict quality and safety standards, thereby ensuring product integrity throughout the packaging lifecycle. As a result, packaging robots find extensive applications in modern production lines, offering businesses a competitive edge through streamlined operations and cost-effectiveness.
The rising consumer preferences for sustainable and well-packaged products are prompting companies to invest in advanced, eco-friendly packaging solutions. This, coupled with the heightened emphasis on operational efficiency and cost savings, will stimulate market growth during the forecast period. Packaging robots are highly precise, meaning they utilize materials efficiently, thus contributing to waste reduction and sustainability goals. Moreover, stringent regulatory standards and guidelines regarding hygiene, quality control, and safety in packaging has accelerated the adoption of these robots for compliance. Additionally, the escalating demand for customized packaging solutions, especially in sectors like e-commerce and pharmaceuticals, is positively influencing the market growth. Robots, armed with software that allows easy reprogramming, can adapt to these custom requirements faster than traditional machinery. Furthermore, the advent of IoT-enabled packaging robots that offer enhanced monitoring and data collection capabilities, allowing businesses to make informed decisions and optimize workflows, is propelling the market growth. Other factors, including the expanding manufacturing sectors, rapid economic growth in emerging countries, and the rising need for automation due to the increasingly global nature of supply chains, are also anticipated to catalyze the market growth.
Increase in Operational Efficiency and Cost Reduction
The incessant drive for higher operational efficiency is a major force propelling the packaging robots market. Companies are continually seeking ways to optimize production lines, reduce overhead costs, and streamline operations. Packaging robots, known for their speed, accuracy, and consistency, offer an effective solution to these challenges. They can operate around the clock without fatigue, significantly boosting productivity. Additionally, their precision in tasks like sorting, filling, and sealing minimizes waste and rework, further cutting down costs. As businesses operate in increasingly competitive environments, the ability to produce more with fewer resources has become imperative. This focus on efficiency and cost-effectiveness is making the adoption of packaging robots an increasingly attractive option for companies worldwide.
Rise in Labor Shortages and Labor Costs
Labor shortages, especially in developed countries, are a pressing concern for many industries. In addition to this, rising labor costs are making human-led operations increasingly expensive. Packaging robots offer a viable solution to both issues. They can efficiently perform repetitive and time-consuming tasks, thus freeing human workers to focus on more complex and value-added activities. As labor-related challenges continue to escalate worldwide, the emerging role of packaging robots as a strategic asset for maintaining productivity and controlling costs across a wide range of sectors is becoming more prominent, providing a positive thrust to the market growth.
Continuous Technological Advancements by Key Players
Technological progress in robotics, particularly the integration of artificial intelligence (AI) and machine learning (ML), is another crucial factor fueling the expansion of the packaging robots market. These technologies enable robots to perform complex tasks, adapt to new situations, and even learn from experience, thus expanding their applicability. For instance, AI-powered computer vision allows robots to recognize and sort items based on size, shape, and color, making them suitable for a wider array of packaging tasks. This adaptability and versatility, made possible through technological advancements, are encouraging more industries to integrate packaging robots into their operations, thereby augmenting market growth.
IMARC Group provides an analysis of the key trends in each segment of the global packaging robots market report, along with forecasts at the global, regional and country levels from 2024-2032. Our report has categorized the market based on gripper type, application and end user.
Clamp
Claw
Vacuum
Others
The report has provided a detailed breakup and analysis of the market based on the gripper type. This includes clamp, claw, vacuum, and others.
Clamp grippers are predominantly used for handling rigid objects with defined shapes, such as boxes, cartons, and plastic containers. These grippers are highly reliable and can manage heavy payloads. Industries like food and beverages, pharmaceuticals, and consumer goods often prefer clamp grippers due to their ability to securely hold objects without causing damage, thereby ensuring the integrity of packaged products.
Claw grippers, also known as finger grippers, are versatile and capable of handling a variety of object shapes and sizes. They are particularly useful in industries requiring delicate handling, such as electronics or cosmetics. The multi-fingered design of claw grippers allows for more nuanced control over the items being packaged, making them ideal for tasks requiring greater precision.
Vacuum grippers are widely used for handling objects with flat surfaces or those that require gentle handling, such as glass panels, papers, and plastic films. They rely on suction to hold items and are highly preferred in industries, including automotive, electronics, and food packaging. These grippers are especially useful for high-speed applications and for handling fragile or sensitive items, as they reduce the chance of damaging the product during the packaging process.
Picking and Placing
Packing
Tray Packing
Case Packing
Filling
Others
Palletizing
Case Palletizing
Bag Palletizing
De-Palletizing
Picking and placing holds the largest share in the market
A detailed breakup and analysis of the market based on the application has also been provided in the report. This includes picking and placing, packing (tray packing, case packing, filling, and others), and palletizing (case palletizing, bag palletizing, and de-palletizing). According to the report, picking and placing accounted for the largest market share.
Picking and placing tasks are fundamental to any packaging operation, encompassing activities such as sorting items from conveyor belts and placing them into containers, boxes, or onto other conveyors. Since these tasks are repetitive, time-sensitive, and labor-intensive, packaging robots excel at performing them more efficiently and accurately than human workers.
The integration of advanced technologies like machine vision and artificial intelligence has further improved the effectiveness of robots in these applications, facilitating real-time adjustments and highly accurate operations. Such advancements make robots ideal for environments where speed, consistency, and high throughput are critical, such as in the food and beverage, pharmaceutical, and e-commerce industries. Additionally, automated picking and placing reduces the chances of manual errors and contamination, which is particularly important in sectors where stringent quality control and hygiene standards are in place. Owing to these factors, companies view investment in robots for picking and placing tasks as a strategic avenue to achieve operational excellence, thereby fueling the segment growth.
Food and Beverage
Pharmaceutical
Consumer Products
Logistics
Others
The report has provided a detailed breakup and analysis of the market based on the end user. This includes food and beverage, pharmaceutical, consumer products, logistics, and others.
In the food and beverages sector, packaging robots are crucial for performing tasks like sorting, filling, and sealing perishable items at high speeds. They meet stringent hygiene and safety regulations, ensuring that the packaged products comply with strict quality standards. The need for rapid, yet accurate, packaging to preserve the shelf life of food products makes robots highly preferred in this industry.
In pharmaceuticals, precision and compliance with regulatory standards are paramount. Packaging robots handle tasks ranging from filling vials and blister packs to labeling and capping with extreme accuracy. Their ability to maintain a sterile environment and adhere to Good Manufacturing Practices (GMP) makes them invaluable for pharmaceutical packaging.
Consumer products, such as cosmetics, cleaning supplies, and personal care items, often require intricate and customized packaging. Robots in this industry are adept at handling different packaging formats and materials, thus meeting the diverse needs of consumers. Their flexibility and speed contribute to higher throughput, meeting the large-scale production demands common in this industry.
In the logistics segment, packaging robots are primarily employed for picking and placing items and for sorting and labeling. The exponential growth in online shopping has heightened the need for fast, efficient, and error-free packaging solutions. Robots help enhance the speed of operations while reducing the error rate, making them essential for handling the high volumes of products being shipped daily.
North America
United States
Canada
Asia-Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
Asia-Pacific exhibits a clear dominance in the market
The market research report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia-Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, Asia-Pacific accounted for the largest market share.
Asia-Pacific held the biggest share in the market since the region is witnessing rapid industrialization in countries, such as China, India, and Japan, where manufacturing sectors are expanding at an exponential rate. This industrial growth creates a heightened demand for efficient, automated packaging solutions. Another major contributing aspect is the availability of skilled labor in automation technologies within the region. Countries like Japan are pioneers in robotics and automation, producing the machinery as well as the technical expertise required to integrate and maintain these systems.
Additionally, the Asia Pacific region boasts the presence of some of the world's busiest ports and logistics hubs, necessitating high-speed and high-volume packaging solutions to manage the massive inflow and outflow of goods. Packaging robots fulfill this need by optimizing the supply chain and reducing bottlenecks, thus making operations more efficient. Labor cost advantages also come into play. Although Asia has been known for its relatively low labor costs, increasing wage rates and labor shortages are pushing companies to seek automated solutions, and packaging robots offer an effective alternative.
Moreover, governments in the region are increasingly supportive of automation and Industry 4.0 initiatives, providing subsidies and favorable policies for companies adopting automated technologies, which in turn solidifies the position of Asia-Pacific as the leading regional market for packaging robots.
The market is experiencing steady growth as numerous key players are engaging in a variety of strategic activities to maintain and grow their market share. They are heavily investing in research and development (R&D) to innovate and improve robot capabilities, often incorporating advanced technologies such as artificial intelligence and machine learning to enhance precision and adaptability. Mergers and acquisitions are also common, as these industry leaders aim to diversify their product portfolios and extend their global reach. Partnerships with end-user industries are being formed to better understand client needs and tailor solutions accordingly. Furthermore, these players are increasingly focusing on sustainability, developing energy-efficient models that appeal to environmentally conscious customers. Through these multifaceted approaches, key players are solidifying their competitive edge and driving the industry forward.
ABB Ltd.
Fanuc Corporation
FIPA GmbH
KRONES AG
KUKA AG
MIP Robotics
Mitsubishi Electric Corporation
ProMach Inc.
Remtec Automation LLC
Schneider Electric SE
Syntegon Holding GmbH
Yaskawa America Inc. (Yaskawa Electric Corporation)
In November 2021, FANUC Corporation, a Japan-based manufacturer of automation products, such as robotics and computer numerical control wireless systems, and ROBOMACHINE, launched a new LR-10iA/10 robot designed for machine tending and for various picking applications. This is a compact six-axis robot suitable for small machine tending tasks and warehouse pick-and-place automation.
In February 2021, ABB Ltd. introduced the next-generation GoFa and SWIFTI cobot families, expanding its collaborative robot (cobot) portfolio. These new cobots offer higher payloads and speeds, aiming to complement the company's existing cobot lineup, including YuMi. This launch is part of ABB's strategy to meet the growing demand for automation in various high-growth industries, including electronics, healthcare, consumer goods, logistics, and food and beverage.
In October 2020, Yaskawa Electric Corporation announced the launch of four models as part of the lineup of the new palletizing robot series MOTOMAN-PL. These models include the MOTOMAN-PL190, MOTOMAN-PL320, MOTOMAN-PL500, and MOTOMAN-PL800. The MOTOMAN-PL series maximizes robot performance and improves energy-saving performance by the power regeneration function and enhances maintainability by reducing wiring, contributing to the setup of an optimal palletizing system.