市场调查报告书
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软体机器人市场:到 2028 年的预测——按类型(可穿戴设备、协作机器人、软抓手、充气机器人、其他类型)、移动性、组件、应用等进行全球分析。Soft Robotics Market Forecasts to 2028 - Global Analysis By Type (Wearables, Co-Robots, Soft Grippers, Inflated Robots, Other Types), Mobility, Component, Application, and others |
根据 Stratistics MRC 的数据,全球软体机器人市场预计在 2022 年达到 11,090 亿美元,到 2028 年达到 87,170 亿美元,CAGR 有望达到 41%。
软机器人技术是一种利用像生物一样温顺的部件製造机器人的技术。 这主要基于生物如何移动和适应环境。 与刚性机械机器人相比,软体机器人可以更灵活地完成任务,并且在靠近人类操作时更可靠。
根据世界卫生组织 (WHO) 的最新报告,心血管疾病、癌症、糖尿病和慢性呼吸道疾病等非传染性疾病 (NCD) 现在占全球死亡人数的近 71%。我在这里. 这些非传染性疾病每年造成 4100 万人死亡。
医疗保健行业是软体机器人的主要终端应用领域之一。 这些机器人用于医学的各种治疗过程,例如手术、治疗和诊断。 对微创手术的需求预计将推动医疗保健行业对软机器人的需求。 此外,食品和饮料行业使用软机器人来帮助包装、服务和检查。 随着对自动化的渴望,预计软机器人技术将在食品和饮料领域变得更加普遍。
软体机器人的开发需要大量的研发预算,无论是金钱还是时间。 它还为新消费者和玩家设置了进入壁垒,因为他们必须支付过高的价格才能购买成品。 因此,市场在预测期内将受到限制。
通用金属机器人是刚性的,而软体机器人是灵活的,带来未来的增长机会。 此外,软机器人技术的进步有望创造出能够移动大型物体、自我修復和移动到高处的机器人。 此类机器人在建筑工地及其周围的使用越来越多,它们与类人灵活性的结合有望进一步推动市场增长。 软机器人由包括纳米材料在内的柔性软材料组成,因此它们可以模仿人体肌肉的生物运动。 软机器人的这些特性有望促进其在医疗、工业和机车等各种应用中的应用,从而推动市场的增长。
在外层空间使用软体机器人存在重大障碍,例如超高真空、微重力、极端温度和高能辐射。 软机器人也很难管理,因为它们的性能低于刚性机器人,并且需要专门的电子控制。 这些限制阻碍了软机器人市场。
软件机器人市场的主要驱动力是食品和饮料行业自动化的进步以及机器人相关研发的扩展。 儘管存在 COVID-19 问题,世界各国政府已开始对研发进行各种投资,以向世界各地的公司宣传机器人设备的重要性。
据估计,可穿戴外骨骼领域将实现利润丰厚的增长。 外骨骼是一种新开发的设备,可以使仓库和製造工人免于颈部、背部和肩部疼痛,以及因反復提重物而带来的其他问题。 许多科学家正在开发可模仿肌肉运动的柔软、可穿戴机器人。 通用汽车公司创造了一种电池供电的外骨骼手套,由瑞典公司 Bioservo 开发。 Iron Hand 手套的每个手指都配备了一个传感器和电机,可以在提起或握住物体时立即响应施加在手臂上的力的大小。
在预测期内,医疗和保健行业预计将见证最快的复合年增长率。 该细分市场进一步分为医疗、外科和其他应用,涉及软拉伸传感器技术。 软机器人技术还可以在更安全的环境中为患者和医务人员提供高效的程序。 为确保安全的人机交互,医疗保健行业的市场进入者正在将新的製造解决方案、软机器人技术应用于外科和製药等领域。 软机器人系统也正在迅速被全球医疗保健部门采用,因为它们需要比传统方法更深入和针对特定任务的培训。
由于这项技术的广泛接受和家庭生产的增加,预计亚太地区在预测期内将占据最大的市场份额。 软体机器人领域的技术创新和进步也深受该地区供应商的影响。 外骨骼在每个国家都被认为是减少职业伤害和扩大老年人就业的必需品。 我们正在大力投资製造机器人外骨骼,因为它们有可能帮助受伤和残疾的人,并让老龄化人口在劳动力中的工作时间更长。
由于美国拥有丰富的熟练劳动力和高端工业基础设施,预计北美在预测期内的复合年增长率最高。 此外,政府增加在工艺技术自动化方面的支出,特别是在需求量很大的加工食品包装业务方面,预计将帮助它成为市场上的最大股东。
2020 年 6 月,Soft Robotics Inc 延长了其 1000 万美元的 B 轮融资,以进一步扩大其商业运营以满足 COVID-19 大流行的需求。
2017 年 11 月,ABB 和川崎重工宣布了一项协作机器人自动化合作,重点是为“协作机器人”以及安全、编程和通信创建通用的行业方法
According to Stratistics MRC, the Global Soft Robotics Market is accounted for $1109 billion in 2022 and is expected to reach $8717 billion by 2028 growing at a CAGR of 41% during the forecast period. The precise branch of robotics known as "Soft Robotics" deals with creating robots out of incredibly obedient parts that are akin to those found in living things. It primarily borrows from how live things move and adjust to their environment. In contrast to robots made of rigid machinery, soft robots enable greater flexibility and adaptation for task completion as well as greater reliability when operating near humans.
According to the latest World Health Organization (WHO) report, non-communicable diseases (NCDs), such as cardiovascular disease, cancer, diabetes, and chronic respiratory diseases are currently responsible for almost 71% of global deaths. It accounts for 41 million people dying each year of these NCDs.
The healthcare industry is one of soft robots' major final application fields. These robots are used in a range of therapeutic processes in medicine, including surgery, therapy, and diagnosis. The demand for minimally invasive surgeries is expected to drive demand for soft robots in the healthcare industry. Additionally, in the food and beverage industry also soft robots are used which helps in packaging, serving, and inspection in the food and beverage sector. Along with the desire for automation, it is projected that soft robots would become more popular in the food and beverage sector.
Soft robot development requires significant R&D expenditures in terms of both money and time. Since customers must fork over exorbitant prices for the finished product, this serves as a barrier to entry for new consumers and players. As a result, during the time of the forecast, the market is constrained.
Soft robots have flexible natures as opposed to typical metallic robots, which have rigid natures, offering the market attractive future growth opportunities. Robots with the ability to move large objects, repair themselves, and scale great heights are anticipated to be introduced because to advancements in soft robotics technology. Given their expanding application in construction and associated activities, such characteristics are expected to give the market growth additional momentum when combined with flexibility similar to that of humans. Soft robots can mimic the biological actions of human muscles since they are constructed using flexible and soft materials, incorporating Nanomaterials. This trait of soft robots is anticipated to facilitate their use in a number of applications, including as medical, industrial, and locomotive, and hence promote market growth.
Ultra - high vacuum, microgravity, temperature extremes, and high-energy radiation present substantial obstacles for soft robotics used in space conditions. Since they are less powerful than rigid robotics and require specialist electronic controls, soft robots can be difficult to manage. As a result of these constraints, the market for soft robots is hindered.
The market for software robots is primarily driven by the ongoing development of automation with in food and beverage sector as well as the ongoing expansion of robotics-related research and development. Governments from all around the world have started a variety of investments in R & D despite the COVID-19 issue to promote the significance of robotic devices to companies globally.
The Wearables Exoskeletons segment is estimated to have a lucrative growth. Exoskeletons are a newly developed device that could shield and also save warehouse and manufacturing employees from neck, back, and shoulder pain as well as other problems brought on by heavy and repetitive lifting. Many scientists are creating soft, wearable robots that imitate the actions of muscles. General Motors created a battery-operated exoskeleton glove, which was created by the Swedish company Bioservo. Each finger on the "Iron Hand" glove features sensors and motors that react instantly to the amount of force being applied to the arm when lifting or holding an object.
The medical & healthcare segment is anticipated to witness the fastest CAGR growth during the forecast period. This market segment, which is further segmented into applications for medical, surgical, and other purposes, deals with soft stretch sensor technology. Soft robotics also makes it possible for extremely effective procedures to be carried out in a setting that is safer for patients and medical staff. In order to ensure safe human-machine interaction, market participants in the healthcare sector are applying soft robotics, a novel manufacturing solution, in the surgical, pharmaceutical, and other sectors. Soft robotics systems are also being fast adopted by the worldwide healthcare sector since they require more thorough and task-specific training than conventional methods.
Asia Pacific is projected to hold the largest market share during the forecast period owing to the widespread acceptance of the technology and growing household production in the market. The innovation and advancement in the field of soft robotics are also greatly influenced by the regional vendors. Exoskeletons are viewed as essential in both nations for reducing workplace accidents and extending the employment of older workers. Because of their potential to help injured or crippled individuals and to keep elderly communities in the workforce longer, they are heavily making investments in the creation of robotic exoskeletons.
North America is projected to have the highest CAGR over the forecast period, owing to the abundance of a skilled labour and the presence of high-end industrial infrastructure in the US. Additionally, increased government spending on process technology automation, particularly in the high-demand processed food packaging business, would assist the market become the largest shareholder.
Some of the key players profiled in the Soft Robotics Market include: Daqing Jiaotong University, ABB Ltd., Roam Robotics, Festo AG, Yaskawa Electric Corporation, Ekso Bionics Holdings Inc, Bio Servo Technologies, Cyberdyne Inc., F&P Robotics AG, Soft Robotics Inc., Universal Robots A/S, Kawasaki , Weiss Robotics GmbH & Co. KG, Zimmer Group, SMC and Destaco.
In June 2020, Soft Robotics Inc raised a $10M Series B extension to further expand commercial operations to meet COVID-19 pandemic-fueled demand.
In November 2017, ABB and Kawasaki announced collaborative robot automation cooperation, to focus on 'cobots' and the creation of common industry approaches for safety, programming, and communications
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Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.