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市场调查报告书
商品编码
1438225
2030 年机器人润滑油市场预测:按产品类型、润滑油类型、应用、最终用户和地区进行的全球分析Robotic Lubricants Market Forecasts to 2030 - Global Analysis By Product Type, Lubricant Type, Application, End User and By Geography |
根据 Stratistics MRC 的数据,2023 年全球机器人润滑油市场规模为 38.2 亿美元,预计在预测期内将以 12.1% 的复合年增长率成长,到 2030 年达到 85 亿美元。
机器人润滑剂是专门为机器人系统和自动化应用而设计的专用润滑剂。这些润滑剂的配方旨在为机器人运动部件(例如关节、齿轮、轴承和致动器)提供最佳的润滑和保护。这些润滑油表现出优异的耐磨性,可延长机器人零件的使用寿命并减少维护和更换的频率。
根据国际机器人联合会2022年数据显示,2021年运作的工业机器人数量为3,477,127台,较2020年成长15%。
工业机器人的采用增加
工业机器人用于多种应用,包括组装、物料输送、焊接、喷漆和包装。机器人润滑油透过减少关键零件的摩擦、磨损和发热,在维持工业机器人的性能和可靠性方面发挥关键作用。此外,最大限度地减少停机时间、优化生产流程并延长机器人系统的使用寿命正在帮助製造商降低成本并提高业务效率,从而加速市场需求。
相容性问题
必须仔细选择润滑剂,以确保与机器人系统中使用的材料和组件的兼容性。相容性问题可能导致效能下降、设备损坏和维护成本增加。此外,机器人系统很复杂,通常使用多种材料,例如金属、塑胶和合成橡胶,使得相容性考虑变得更加复杂。因此,相容性问题对机器人润滑油市场构成了重大威胁。
越来越重视设备维护和可靠性
随着各行业努力最大限度地延长运作、降低维护成本并延长设备使用寿命,润滑油在确保平稳高效运作方面的作用变得至关重要。高品质的机器人润滑油配方能够承受恶劣的条件、最大限度地减少摩擦并防止零件磨损,这对于保持设备的可靠性和性能至关重要。此外,透过投资先进的润滑解决方案,公司可以提高设备的整体效率,最大限度地减少非计划性停机时间并提高生产率。
原物料价格波动
原物料价格波动对机器人润滑油市场构成重大威胁。油价波动、地缘政治紧张局势和供应链中断可能导致润滑油配方中使用的基础油和添加剂的成本急剧增加。然而,这种波动可能会影响润滑油製造商的盈利并增加最终用户的产品成本,从而阻碍市场成长。
COVID-19 的影响
COVID-19 大流行对机器人润滑油市场产生了重大影响。最初,疫情导致供应链、製造业务和贸易中断,影响了原材料和製成品的供应。此外,疫情造成的经济低迷导致企业优先考虑成本削减措施,并推迟对自动化和机器人系统的投资。
预计在预测期内,润滑脂市场将是最大的市场
油脂产业估计占最大份额。润滑脂为机器人应用提供了多种好处。作为半固体,它粘附在表面上并保持在原位,提供长期润滑并防止摩擦、磨损和腐蚀。这项特性对于机器人关节、齿轮、轴承和其他承受重复运动或高负载的零件特别有利。此外,润滑脂可提供优异的密封性,有助于防止灰尘、湿气和其他物质等污染物进入关键的机器人零件。
合成润滑油领域预计将在预测期内成为最大的领域
由于其先进的性能特性和对要求苛刻的机器人应用的适用性,合成润滑油领域预计将在预测期内出现良好的增长。合成润滑油具有出色的热稳定性,并且在快速移动的机器人零件中常见的高温下可抵抗劣化。这种稳定性使您能够保持稳定的润滑性能并延长机器人系统的使用寿命。此外,合成润滑油具有出色的抗氧化和抗油泥形成能力,可确保长期可靠性并最大限度地减少维护需求。
以强调效率、创新和品质为特点的北美地区在预测期内占据了最大的市场占有率。该地区拥有汽车、航太、电子和製药等多种行业,正积极拥抱机器人自动化。此外,北美机器人润滑油市场也受益于成熟的工业基础设施和采用先进机器人系统的高度集中的製造设施。
预计亚太地区在预测期内将实现盈利成长。亚太地区机器人润滑油市场的主要驱动因素之一是製造业活动的快速扩张,特别是在汽车、电子和消费品生产等领域。此外,该地区拥有众多润滑油製造商和供应商,利用其先进的研发能力为机器人应用创新新的润滑解决方案。
According to Stratistics MRC, the Global Robotic Lubricants Market is accounted for $3.82 billion in 2023 and is expected to reach $8.50 billion by 2030 growing at a CAGR of 12.1% during the forecast period. Robotic lubricants are specialized lubricants designed specifically for use in robotic systems and automation applications. These lubricants are formulated to provide optimal lubrication and protection for the moving components of robots, such as joints, gears, bearings, and actuators. These lubricants provide excellent wear protection, extending the service life of robotic components and reducing the frequency of maintenance and replacement.
According to the International Federation of Robotics in 2022, the operational stock of industrial robots was computed at 3,477,127 units in 2021, a rise of 15% compared to 2020.
Rising adoption of industrial robots
Industrial robots are utilized in various applications, including assembly, material handling, welding, painting, and packaging, among others. Robotic lubricants play a crucial role in maintaining the performance and reliability of industrial robots by reducing friction, wear, and heat generation in critical components. Moreover, they help minimize downtime, optimize production processes, and extend the service life of robotic systems, resulting in cost savings and operational efficiency gains for manufacturers, which accelerates market demand.
Concerns about compatibility
Lubricants must be carefully selected to ensure they are compatible with the materials and components used in robotic systems. Incompatibility issues can lead to performance degradation, equipment damage, and increased maintenance costs. Moreover, the complexity of robotic systems, which often involve various materials such as metals, plastics, and elastomers, further complicates compatibility considerations. As a result, concerns about compatibility present a significant threat to the robotic lubricant market.
Growing emphasis on equipment maintenance and reliability
As industries strive to maximize uptime, reduce maintenance costs, and prolong equipment lifespans, the role of lubricants in ensuring smooth and efficient operation becomes paramount. High-quality robotic lubricants formulated to withstand extreme conditions, minimize friction, and prevent component wear are essential for maintaining equipment reliability and performance. Furthermore, by investing in advanced lubrication solutions, businesses can improve overall equipment effectiveness, minimize unplanned downtime, and enhance productivity.
Volatility in raw material prices
Volatility in raw material prices poses a significant threat to the robotic lubricant market. Fluctuations in crude oil prices, geopolitical tensions, and supply chain disruptions can lead to sudden increases in the cost of base oils and additives used in lubricant formulations. However, this volatility impacts the profitability of lubricant manufacturers and increases product costs for end-users, potentially hindering market growth.
Covid-19 Impact
The COVID-19 pandemic had a notable impact on the robotic lubricant market. Initially, the pandemic led to disruptions in supply chains, manufacturing operations, and trade, which affected the availability of raw materials and finished products. Moreover, the economic downturn resulting from the pandemic prompted companies to prioritize cost-cutting measures, leading to deferred investments in automation and robotic systems.
The grease segment is expected to be the largest during the forecast period
The grease segment is estimated to hold the largest share. Grease provides several benefits in robotic applications. Its semi-solid nature allows it to adhere to surfaces and remain in place, providing long-lasting lubrication and protection against friction, wear, and corrosion. This characteristic is particularly advantageous in robotic joints, gears, bearings, and other components subjected to repetitive motion and high loads. Moreover, grease offers excellent sealing properties, helping to prevent the ingress of contaminants such as dust, dirt, and moisture into critical robotic components.
The synthetic lubricants segment is expected to be the largest during the forecast period
The synthetic lubricants segment is anticipated to have lucrative growth during the forecast period, due to their advanced performance characteristics and suitability for demanding robotic applications. They provide exceptional thermal stability, resisting degradation at high temperatures commonly encountered in fast-moving robotic components. This stability helps maintain consistent lubrication performance and extends the service life of robotic systems. Additionally, synthetic lubricants exhibit superior resistance to oxidation and sludge formation, ensuring long-term reliability and minimizing maintenance requirements.
North America commanded the largest market share during the extrapolated period, characterized by a strong emphasis on efficiency, innovation, and quality. With a diverse range of industries such as automotive, aerospace, electronics, and pharmaceuticals, the region is a significant adopter of robotic automation. Furthermore, the North American market for robotic lubricants benefits from a mature industrial infrastructure and a high concentration of manufacturing facilities employing advanced robotic systems.
Asia Pacific is expected to witness profitable growth over the projection period. One of the primary drivers of the robotic lubricants market in the Asia Pacific is the rapid expansion of manufacturing activities, particularly in sectors such as automotive, electronics, and consumer goods production. Moreover, the region is home to a large number of lubricant manufacturers and suppliers, leveraging advanced research and development capabilities to innovate new lubrication solutions tailored to robotic applications.
Key players in the market
Some of the key players in the Robotic Lubricants Market include Shell Plc, BP Plc, Miller-Stephenson Inc, Idemitsu Kosan Co Ltd, Fuchs Petrolub SE, Anand Engineer Pvt Ltd, Chemie-Technik GmbH, ASV Multichemie Pvt Ltd, Kluber Lubrication GmbH & Co KG and Schaeffler Austria GmbH.
In December 2023, BP Plc has announced a memorandum of understanding (MoU) with Chinese shipping giant Cosco Shipping enhancing the oil giant's operations across China.
In September 2023, Oil and gas major BP Plc and Subsea Integration Alliance have formed a partnership to enhance the performance of subsea projects.
In November 2023, Shell New Energies UK Ltd ("Shell"), an international energy company announced its collaboration with Infosys a global leader in next-generation digital services, to accelerate adoption of immersion cooling services for data centers.
In February 2022, Shell plc and Hyundai Motor Company are embarking on a new strategic collaboration to explore ways to offer lower carbon emissions products and services and to reduce emissions across their operations.