市场调查报告书
商品编码
1219650
食品机器人全球市场规模、份额、行业趋势分析报告:按应用(码垛和加工、包装、重新包装、拣选和放置、其他)、有效载荷、类型、区域展望和预测,2022-2028 年Global Food Robotics Market Size, Share & Industry Trends Analysis Report By Application (Palletizing & Processing, Packaging, Repackaging, Pick & Place, and Others), By Payload, By Type, By Regional Outlook and Forecast, 2022 - 2028 |
预测期内,全球食品机器人市场规模预计将以 10.2% 的复合年增长率增长,到 2028 年将达到 40 亿美元。
最近,出现了自动驾驶拖拉机,以及用于收割和除草的机器人。 机器人技术也被引入非植物农业的奶製品、家禽和牛生产部门。 应用包括自给自足的挤奶和餵养、鸡蛋收集和分类以及自给自足的洗涤。 虽然最初是为提升重金属部件而开发的,但现代技术能够在不损坏它们的情况下拾取麵包、奶酪和水果等易碎物品。
食品製造商不仅关注产品,还关註消费者需求,数据分析使他们能够根据这种需求定制产品。 机器人技术和人工智能软件的创建使这成为可能。 企业将受益于评估运输、加工和储存等关键过程的能力的增强,食品是否被意外污染,食品的运输地点和获取地点,质量和安全可以得到更好的监控。 最近,几家大型餐饮服务公司纷纷投资机器人和人工智能。
COVID-19 影响分析
COVID-19 大流行带来了严重的经济衰退。 一些国家实施了严格的封锁以遏制病毒,导致食品和饮料 (F&B) 加工设施关闭,并暂时中断食品和饮料供应链。 食品和日用品短缺、全球消费者恐慌性抢购、旅行限制导致的供应链中断、劳动力短缺等都对食品和饮料供应链产生了重大影响。 由于经济衰退,主要机器人製造商报告 2020 年上半年销售额下降。 这是由于政府对世界各地隔离和封锁的限制,以及对自动化的需求暂时下降所致。
市场增长因素
对包装食品的需求不断扩大
近年来,对即食和半食食品的需求不断增加,食品包装需要延长保质期并满足消费者的需求。 包装食品的大规模生产正在推动食品机器人市场,尤其是在美国、日本、法国和意大利等国家。 许多大型食品製造厂自动化程序以确保质量和库存单位 (SKU) 的一致性。 儘管农业和食品製造任务更难用机器人实现自动化,但公司仍在继续部署机器人。 因此,包装乳製品和烘焙食品行业的扩张也推动了食品机器人市场,因为这些产品是跨地区批量生产的。
食品和饮料行业的数字化进程
数字化意味着通过 IT/OT 融合、大数据分析、数字孪生、3D 打印、人工智能和自动化技术等新的数字技术优化企业运营。 IoT 和 AI 正在帮助公司实现高水平的食品安全,增强食品可追溯性,减少食品浪费,并降低与食品加工和包装相关的成本和风险。 近年来,数字化已成为自动化的关键驱动力,人工智能 (AI) 通过提高员工的工作效率来提高运营效率。 因此,未来几年,餐饮业越来越多地采用数字化将推动食品机器人市场的增长。
市场约束
安装机器人系统成本高
由于额外的安装成本,大多数食品和饮料运营商都不愿意实施自动化程序。 将单个机器人集成到综合机器人系统中的额外成本,包括安全屏障、传感器、可编程逻辑控制器 (PLC)、人机界面 (HMI) 和安全系统等外围设备,阻碍了市场扩展。 工程成本还包括安装、编程、调试等。 这种不断增加的成本限制了市场的增长。 中小型製造商不愿意从一开始就承担大量安装费用,因为这会延迟投资回收期并进一步增加运营成本。
应用展望
按应用划分,食品机器人市场分为码垛和加工、包装、重新包装、拾取和放置等。 到 2021 年,码垛和加工领域将以最大的收入份额主导食品机器人市场。 机器人码垛通过增加吞吐量、提高质量和改善工人工作条件,使工作更快、更高效。 无论是箱子、袋子还是板条箱,机器人都会使用夹具并与人类一起工作以提高产量。 它可以顺利集成到您当前的生产线中。 肉类加工中涉及的许多任务都不是由人类完成的。
有效载荷展望
根据有效载荷,食品机器人市场分为低、中和高。 2021 年,低端细分市场在食品机器人市场占据了显着的收入份额。 许多可用的 SCARA 食品机器人都属于低负载类别,因为拾取物体被认为是一项相当简单的任务。 食品处理、取放、包装和码垛、密封、贴标籤、喷涂等方面的专业知识是这一领域爆炸式增长的重要因素。
按类型划分的前景
按类型划分,食品机器人市场分为铰接式、正交式、阶梯式、圆柱形、协作式等。 在 2021 年的食品机器人市场中,SCARA 细分市场获得了显着的收入份额。 Selective Compliance Articulated Robotic Arm (SCARA) 机器人用于拾放应用,具有相对较高的速度和精度。 SCARA 机器人可以轻鬆、自适应地解决许多自动化装配应用。 食品机器人的使用范围不断扩大,需求不断增加。
区域展望
按地区划分,对北美、欧洲、亚太地区和拉美地区的食品机器人市场进行了分析。 2021年,亚太地区占据了食品机器人市场的最高收入份额。 该地区食品机器人市场的快速扩张归因于人们对食品安全和生活方式的日益关注,人们转向准备好的和包装好的食品。 该地区消费者收入的增加推动了对高科技包装食品和饮料的需求。 在亚太地区,众所周知,中国是製定食品机器人部署标准的国家。
市场进入者采取的主要策略是产品发布。 根据罗克韦尔自动化公司 Cardinal Matrix 中的分析,ABB 集团是食品机器人市场的先驱。 三菱电机公司、发那科公司和电装公司等公司是食品机器人市场的一些主要创新者。
The Global Food Robotics Market size is expected to reach $4 billion by 2028, rising at a market growth of 10.2% CAGR during the forecast period.
Food robotics are referred to as robots employed in the food and beverage business to carry out intricate tasks like picking, packing, and palletizing. Robots from science fiction are already a reality owing to various technological developments. Furthermore, robots are becoming a crucial component of many sectors due to the rise in demand for increased productivity and the introduction of robots to job or task automation.
Automation and robotics play a significant role in the solution. The food manufacturing business has been particularly sluggish in incorporating robotics compared to other industries. Robotics, however, has begun to penetrate practically every stage of the food supply chain in the past few years, from the farm to the kitchen. Seedling planting, identification, and sorting are examples of robotic applications.
Additionally, self-driving tractors are also present nowadays along with robots for harvesting and weeding. Robotics are also being brought to the dairy, poultry, and cattle production sectors of non-plant agriculture. Applications include self-sufficient milking and feeding, egg gathering and sorting, and self-sufficient cleaning. Despite being originally developed to lift heavy metal components, modern technology can pick up delicate items like bread loaves, cheese, and fruits without causing any harm.
Manufacturers of food are now able to keep an eye on products as well as consumer demand, then use data analysis to tailor the output to this need. Robotics and the creation of AI software enable this. Companies can better monitor food quality and safety when they are better equipped to assess crucial processes like shipping, processing, and storage, as well as whether food is accidentally contaminated, where that food was shipped, and where that food was acquired from. Several large food service companies have recently invested in robots and artificial intelligence.
COVID-19 Impact Analysis
The COVID-19 pandemic brought on a significant economic depression. Several nations implemented strict lockdowns to contain the virus, which caused the closure of food & beverages (F&B) processing facilities and a brief disruption in the F&B supply chain. The absence of F&B products and necessities, panic buying by consumers worldwide, disruption of supply chains as a result of travel restrictions, and labor shortages had a substantial influence on the F&B supply chain. Major robot manufacturers reported lower revenue generation in the first half of 2020 due to lower sales brought on by an economic slowdown. This was brought on by quarantine and lockdown restrictions imposed by governments worldwide, as well as a temporary decrease in the demand for automation.
Market Growth Factor
Demand for packaged foods is increasing
The need for ready-to-cook and ready-to-eat foods has increased in recent years, necessitating the packaging of food goods to extend their shelf life and meet consumer demand. The mass production of packaged food goods has pushed the market for food robotics, especially in nations such as the United States, Japan, France, and Italy. Most large-scale food manufacturing factories are automating their procedures to assure quality and consistency in the Stock Keeping Units (SKUs). Agriculture and food manufacturing tasks are more difficult to automate using robots, yet companies continue to implement them. As a result, the expansion of the packaged dairy products and baked goods industries is also driving the market for food robotics, as these products are mass-produced across regions.
Increasing digitalization in the food and beverage industries
Digitalization is the optimization of corporate operations by emerging digital technologies, such as IT/OT convergence, big data analytics, digital twin, 3D printing, artificial intelligence, and automation technologies. IoT and AI are assisting businesses in achieving high levels of food safety, enhancing food traceability, reducing food waste, and lowering food processing and packaging-related costs and risks. In recent years, digitalization has emerged as a crucial driver for automation, where artificial intelligence (AI) pushes operational productivity through enhancing workforce productivity. Hence, the growing adoption of digitalization across the F&B industry will propel the growth of the food robotics market in the coming years.
Market Restraining Factor
High cost of robotic system installation
Due to the additional installation expense, most food and beverages businesses are unwilling to implement automated procedures. Market expansion is hindered by the extra cost of integrating individual robots into a comprehensive robotic system, including peripheral equipment such as safety barriers, sensors, programmable logic controllers (PLC), human-machine interface (HMI), and safety systems. In addition, engineering expenses include installation, programming, and commissioning. These increased expenses limit the growth of the market. Small and medium-sized manufacturers are hesitant to incur substantial installation expenditures at the outset since it could delay the payback period and further increase their operational cost.
Application Outlook
Based on application, the food robotics market is divided into palletizing & processing, packaging, repackaging, pick & place, and others. In 2021, the palletizing & processing segment dominated the food robotics market with maximum revenue share. Robotic palletizing ensures quick and effective operations to increase throughput, improve quality, and improve working conditions for personnel. Robotics use grippers for either cases, bags, or crates and operate with people to increase production. They smoothly integrate into the current manufacturing line. Humans do not best perform numerous tasks involved in meat preparation.
Payload Outlook
On the basis of payload, the food robotics market is fragmented into low, medium and high. The low segment covered a remarkable revenue share in the food robotics market in 2021. Many of the available SCARA food robots fall under the low payload category as picking objects is considered a rather simplistic task. The expertise in food handling, pick-and-place, packaging & palletizing, sealing, labeling, and spraying, among many other things, is largely responsible for the segment's explosive expansion.
Type Outlook
By type, the food robotics market is segmented into articulated, cartesian, SCARA, cylindrical, collaborative and others. The SCARA segment generated the prominent revenue share in the food robotics market in 2021. A selective compliance articulated robot arm (SCARA) robot is intended for pick-and-place applications and has a relatively high speed and a high degree of precision. SCARA robots can easily and adaptably solve a number of automated assembling applications. Demand is rising with the expanding use of food robotics in this industry.
Regional Outlook
Region wise, the food robotics market is analyzed across North America, Europe, Asia Pacific and LAMEA. In 2021, the Asia Pacific region held the highest revenue share in the food robotics market. The rapid expansion of the food robotics market in this region is ascribed to the population's shift toward prepared and packaged foods as a result of growing concerns about food safety and lifestyle. The region's desire for high-tech packaged foods and beverages has been spurred by the rise in consumer income. In Asia Pacific, China is well-known as the nation that sets the standard for food robot adoption.
The major strategies followed by the market participants are Product Launches. Based on the Analysis presented in the Cardinal matrix; Rockwell Automation, Inc. and ABB Group are the forerunners in the Food Robotics Market. Companies such as Mitsubishi Electric Corporation, FANUC Corporation, and Denso Corporation are some of the key innovators in Food Robotics Market.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Mitsubishi Electric Corporation, ABB Group, Rockwell Automation, Inc., Kawasaki Heavy Industries, Ltd., Kuka AG (Midea Investment Holding Co., Ltd.), FANUC Corporation, Yaskawa Electric Corporation, Seiko Epson Corporation, Teradyne, Inc. (Universal Robots A/S) and Denso Corporation
Recent Strategies Deployed in Food Robotics Market
Product Launches and Expansions:
Oct-2022: Yaskawa launched MOTOMAN-HC30PL, a collaborative robot. The new cobot features a 30 kg payload capacity, 1600 mm reach, easy connection with peripheral devices, secure design, increased safety, and is easy to operate.
Mar-2022: FANUC launched CRX-5iA, CRX-20iA/L and CRX-25iA cobots. These new cobots are a part of the CRX series. The new products are developed to serve every type of manufacturer. Further, these robots perfectly fit and align with FANUC's already existing CR and CRX series.
Mar-2022: Mitsubishi Electric introduced a system that allows robots to carry out tasks in conditions where they have had difficulty performing in the past. The new system has the potential to reduce the number of hours needed to perform a task.
Feb-2022: Yaskawa introduced two new collaborative robots, HC10DTP and HC20DTP, both equipped with six axes. The new cobots are made up of cast aluminum, are IP67-rated, are food-grade certified, and can be used in splash-prone or damp areas. The new robots have multiple applications including dispensing, machine tending, packaging, welding, etc.
Sep-2021: ABB launched GoFa CRB 15000, a collaborative robot. The GoFa CRB 15000 features, a 950mm reach and speed of up to 2.2 meters per second, and can perform multiple tasks including pick, pack-and-place, product handling, and kitting. Moreover, the new cobot caters to the evolving demand for heavy payload robots.
Feb-2021: ABB introduced GoFa and SWIFTI cobot (collaborative robot) families. The new robots features, a higher payload capacity, are faster and stronger and are simple to operate & configure. The new product expands and complements ABB's already existing cobot product offerings, and further advances the company's growth in multiple high-growth segments including, healthcare, food & beverage, electronics, etc.
Aug-2020: Mitsubishi Electric India, part of Mitsubishi Electric Corporation launched the MELFA ASSISTA Series of Collaborative Robots. The Cobot features collision detection and is ISO 10218-1 and ISO/TS15066 compliant. The new product would make the manufacturing process smooth and efficient, and would also improve productivity by working alongside the employees.
Acquisitions and Mergers:
Jul-2021: ABB acquired ASTI Mobile Robotics Group, a Spain-based provider of automated intralogistics technologies. The acquisition broadens ABB's robotics and automation portfolio. Further, the addition of ASTI aligns with ABB's external growth strategy.
Partnerships, Collaborations and Agreements:
Jan-2022: Mitsubishi came into partnership with Cartken, a US-based developer of an outdoor delivery robot. The partnership involves jointly working to introduce Cartken's delivery robots to a Japanese mall. The partnership allows Mitsubishi to explore other applications of the technology and enables them to enter the Japanese autonomous delivery market.
Apr-2021: Rockwell Automation partnered with Comau, an Italy-based provider of industrial automation and a manufacturer of robots. The partnership involves providing businesses globally with essential tools to boost efficiency in manufacturing processes. Moreover, the integration of Rockwell's expertise in food and beverage, life sciences, automated material handling, and Comau's competence in industrial and robotics automation benefits customers through improved value.
Feb-2021: Epson Robots, part of Seiko Epson came into partnership with Heitek Automation, a distributor of automation products and solutions. The partnership agreement involves establishing Heitek as Epson's official distributor for robot automation solutions.
Geographical Expansions:
Aug-2022: YASKAWA India, part of Yaskawa Electric Corporation opened a new robotic solution facility in Haryana, India. The new facility focuses on advancing and promoting innovation, and further aims to develop and advance industrial robotic automation.
Jul-2022: FANUC America expanded its Michigan facility to nearly two million square feet. This expansion of the facility allows FANUC to cater to the heavy demand for its automation solutions.
Jul-2022: FANUC expanded its footprint by setting up a new 109,000-sq.-ft. a facility in Aguascalientes, Mexico which would also act as robotics and automation headquarters. This geographical expansion enables FANUC to better take care of the needs of its clients operating in the aerospace, consumer goods, and aerospace industry. Moreover, the expansion further reflects FANUC's devotion to supporting organizations in enhancing their production processes.
Market Segments covered in the Report:
By Application
By Payload
By Type
By Geography
Companies Profiled
Unique Offerings from KBV Research
List of Figures