市場調查報告書
商品編碼
1617105
2030 年氣壓缸市場預測:按產品類型、氣缸、最終用戶和地區分類的全球分析Pneumatic Cylinder Market Forecasts to 2030 - Global Analysis By Product Type, Cylinder, End User and By Geography |
根據 Stratistics MRC 的數據,2024 年全球氣壓缸市場規模為 205.8 億美元,預計在預測期內複合年成長率為 8.2%,到 2030 年將達到 330.2 億美元。
氣缸是一種利用壓縮空氣產生直線運動的機械裝置。它的工作原理是將壓縮空氣的能量轉化為機械力,驅動圓柱形室內的活塞。氣壓推動活塞,活塞根據汽缸設計而膨脹和收縮。它們有多種尺寸和配置,包括單作用和雙作用氣缸,也可以針對特定應用進行客製化。
越來越關注永續性和綠色技術
對永續性和綠色技術的日益關注導致氣缸的設計和功能取得了重大進步。這些工業自動化的重要設備正在不斷發展,以滿足對能源效率、減少碳排放和綠色營運日益成長的需求。製造商正在使用創新材料和技術來最大限度地減少廢棄物、提高耐用性並減少生產對環境的影響。例如,採用輕質、高強度材料來製造需要較少能量來運作的氣缸,並降低整體功耗。
洩漏和可靠性問題
氣缸的洩漏和可靠性問題極大地影響其性能和效率。洩漏通常是由密封件磨損、零件損壞或組裝不良引起的,會導致氣壓損失並降低氣缸功率和效率。這會導致不穩定的運動、緩慢的反應時間和不完整的行程,從而損害系統的整體功能。可靠性問題可能是由維護不善、材料品質差以及隨著時間的推移過度磨損等因素造成的。由於頻繁的故障、計劃外停機以及不斷的維修和更換需求,這些問題可能會導致營運成本增加。
節能系統的需求不斷成長
對節能系統不斷成長的需求正在推動氣缸的進步。氣壓對於將壓縮空氣轉化為機械運動至關重要,並且擴大針對能源效率進行最佳化。變速壓縮機、再生煞車系統和改進的密封設計等創新有助於減少空氣洩漏和能源浪費。此外,物聯網感測器等智慧技術的整合可以更好地監控和控制,確保氣動系統僅在需要時運行,進一步節省能源。
缺乏技術純熟勞工
依靠壓縮空氣執行機械任務的氣壓系統需要精確的組裝、維護和故障排除。技術純熟勞工對於氣缸的設計、測試和維修至關重要,以確保最佳的性能和安全性。然而,許多公司很難找到在動態、自動化系統和機械設計等領域擁有必要技術專長的工人。這種技能短缺不僅會延誤生產進度,還會影響產品質量,導致潛在的效率低下、設備故障和成本增加。
COVID-19 的爆發對氣缸行業產生了重大影響,導致生產、供應鏈和需求中斷。由於健康限制和勞動力短缺,製造設施面臨關閉和營運減少,導致生產和交付延誤。全球鋼鐵和鋁等原料短缺加劇了這些挑戰,推高了成本並延長了前置作業時間。然而,許多公司出於財務考慮推遲或取消了訂單。
預計雙作用氣壓缸部分在預測期內將是最大的
預計雙作用氣壓缸部分在預測期內將佔據最大佔有率。雙作用氣缸 (DAC) 是一種先進類型的氣缸,它通過在伸出和縮回運動中使用氣壓、僅在一個方向上使用氣壓以及返回行程來提高性能,這與單作用氣缸不同。依賴彈簧。 DAC 由圓柱形外殼內的活塞組成,兩端都有空氣端口。當壓縮空氣供應到一端時,活塞會沿著一個方向移動(例如延伸)。若要反轉運動,請向另一端供氣並縮回活塞。
預計旋轉缸產業在預測期內複合年成長率最高。
透過在傳統氣動致動器提供的標準線性運動中添加旋轉運動功能,預計旋轉氣缸部分將在預測期內實現快速成長。旋轉氣缸使用壓縮空氣產生旋轉力,非常適合需要精確且一致旋轉的應用,例如自動機械、機械臂和閥門致動器。這些氣缸通常具有可調節擋塊、旋轉頭和用於反饋的整合感測器等功能,確保更高的精度和旋轉運動的控制。透過將這些功能整合到氣壓系統中,工業界可以實現更緊湊的設計,降低機械複雜性並提高系統效率。
預計北美地區將在整個預測期內保持最大的市場佔有率。支援物聯網的氣缸使製造商能夠即時監控和控制氣缸性能,提高營運效率並減少停機時間。這些氣缸內建的感測器收集壓力、溫度和衝程位置等資料,並將其發送到中央系統進行分析。此外,這種資料驅動的方法可以實現預測性維護,有助於在潛在問題導致故障之前識別它們,從而降低維護成本並提高系統可靠性。
據估計,歐洲地區在預測期內的複合年成長率最高。智慧製造將物聯網 (IoT)、自動化、人工智慧 (AI) 和資料分析等先進技術整合到生產流程中,幫助製造商最佳化效率、減少停機時間並提高產品品質。對於自動化系統至關重要的氣壓正受益於此趨勢,因為它們變得更加互聯和智慧。感測器和預測性維護功能使這些氣瓶能夠提供即時性能資料,從而實現主動維護並最大限度地減少對營運的干擾。
According to Stratistics MRC, the Global Pneumatic Cylinder Market is accounted for $20.58 billion in 2024 and is expected to reach $33.02 billion by 2030 growing at a CAGR of 8.2% during the forecast period. A pneumatic cylinder is a mechanical device that uses compressed air to produce linear motion. It operates on the principle of converting the energy from pressurized air into mechanical force, driving a piston within a cylindrical chamber. The air pressure forces the piston to move, either extending or retracting, depending on the design of the cylinder. They come in various sizes and configurations, such as single-acting and double-acting cylinders, and can be customized to suit specific applications.
Rising focus on sustainability and green technologies
The rising focus on sustainability and green technologies is driving significant advancements in the design and functionality of pneumatic cylinders. These devices, essential for industrial automation, are evolving to meet the growing demand for energy efficiency, reduced carbon emissions, and environmentally friendly operations. Manufacturers are adopting innovative materials and technologies that minimize waste, enhance durability and reduce the environmental impact of production. For instance, lightweight, high-strength materials are being used to create cylinders that require less energy to operate, reducing overall power consumption.
Leakage and reliability issues
Leakage and reliability issues in pneumatic cylinders significantly impact their performance and efficiency. Leakage, typically caused by worn seals, damaged components, or poor assembly, leads to a loss of air pressure, reducing the cylinder's power and efficiency. This can result in erratic movement, slower response times, or incomplete strokes, all of which compromise the system's overall functionality. Reliability issues can arise from factors like inadequate maintenance, poor-quality materials, or excessive wear over time. These problems can cause frequent breakdowns, unexpected downtimes, and higher operational costs due to the need for constant repairs or replacements.
Rising demand for energy-efficient systems
The rising demand for energy-efficient systems is driving advancements in pneumatic cylinders, as industries seek solutions that minimize energy consumption while maintaining high performance. Pneumatic cylinders, which are essential for converting compressed air into mechanical motion, are being increasingly optimized for energy efficiency. Innovations such as variable-speed compressors, regenerative braking systems, and improved seal designs are helping reduce air leakage and energy wastage. Additionally, the integration of smart technologies like IoT-enabled sensors allows for better monitoring and control, ensuring that pneumatic systems operate only when necessary, further saving energy.
Lack of skilled labor
Pneumatic systems, which rely on compressed air to perform mechanical tasks, require precise assembly, maintenance, and troubleshooting. Skilled workers are essential for tasks such as designing, testing, and repairing pneumatic cylinders to ensure optimal performance and safety. However, many companies struggle to find workers with the necessary technical expertise in areas like fluid dynamics, automation systems, and mechanical design. This lack of skills not only delays production timelines but also affects product quality, leading to potential inefficiencies, equipment failures and increased costs.
The COVID-19 pandemic significantly impacted the pneumatic cylinder industry, causing disruptions in production, supply chains, and demand. Manufacturing facilities faced closures or reduced operations due to health restrictions and labor shortages, leading to delays in production and delivery. The global shortage of raw materials, including steel and aluminum, further exacerbated these challenges, raising costs and extending lead times. However, many companies delayed or canceled orders as they dealt with financial uncertainties.
The Double Acting Cylinder segment is expected to be the largest during the forecast period
Double Acting Cylinder segment is expected to dominate the largest share over the estimated period. A Double Acting Cylinder (DAC) is an advanced type of pneumatic cylinder that enhances performance by using air pressure for both extension and retraction movements, unlike a Single Acting Cylinder, which uses air pressure for only one direction and relies on a spring for the return stroke. The DAC consists of a piston inside a cylindrical housing, with air ports at both ends. When compressed air is supplied to one end, the piston moves in one direction (e.g., extending). To reverse the motion, air is supplied to the opposite end, causing the piston to retract.
The Rotary Cylinders segment is expected to have the highest CAGR during the forecast period
Rotary Cylinders segment is estimated to grow at a rapid pace during the forecast period, by adding rotational motion capabilities to the standard linear motion offered by traditional pneumatic actuators. Rotary pneumatic cylinders use compressed air to generate rotational force, which is ideal for applications requiring precise and consistent rotation, such as in automated machinery, robotic arms, or valve actuators. These cylinders often incorporate features like adjustable stops, swivel heads, and integrated sensors for feedback, ensuring greater accuracy and control in rotational movements. By integrating these capabilities into pneumatic systems, industries can achieve more compact designs, reduce mechanical complexity and enhance system efficiency.
North America region is poised to hold the largest share of the market throughout the extrapolated period. With IoT-enabled pneumatic cylinders, manufacturers can monitor and control cylinder performance in real time, improving operational efficiency and reducing downtime. Sensors embedded in these cylinders collect data such as pressure, temperature, and stroke position, which is then transmitted to central systems for analysis. Furthermore, this data-driven approach allows for predictive maintenance, identifying potential issues before they cause failures, thus reducing maintenance costs and enhancing system reliability.
Europe region is estimated to witness the highest CAGR during the projected time frame. Smart manufacturing integrates advanced technologies like Internet of Things (IoT), automation, artificial intelligence (AI), and data analytics into production processes, enabling manufacturers to optimize efficiency, reduce downtime, and improve product quality. Pneumatic cylinders, essential in automation systems, are benefiting from this trend as they become more connected and intelligent. With sensors and predictive maintenance capabilities, these cylinders can provide real-time data on performance, allowing for proactive maintenance and minimizing operational disruptions.
Key players in the market
Some of the key players in Pneumatic Cylinder market include Airtac International Group, Bosch Rexroth AG, Emerson Electric Co, Honeywell International Inc, Koganei Corporation, Univer Group, Parker Hannifin Corporation, Rockwell Automation, SMC Corporation, Thomson Industries, Inc, Airwork Pneumatic Equipment, Camozzi Group, Hansen Technologies, Kawasaki Heavy Industries and Cameron International Corporation.
In May 2022, Festo SE & Co. KG, a multinational industrial control and automation company, launched fast motion terminal VTEM pneumatics. Festo Motion Terminal VTEM is the combination of digitization and pneumatics.
In March 2022, Fabco-Air a company that provides pneumatic products and solutions announced a web store named shop.fabco-air.com. The Fabco-Air website was created to put forth all the standard products in collaboration with KYKLO Ltd., a content and e-commerce solution company for the electrical, automation, fluid, and energy industries.