Description
The military actuators market is poised for significant growth, with a projected value of USD 1.45 billion by 2029, exhibiting a compound annual growth rate (CAGR) of 2.5% during the forecast period from 2023 to 2029. Actuators play a crucial role in converting energy into motion and find widespread application in controlling mechanisms and systems. They are powered by electric current, hydraulic fluid pressure, or pneumatic pressure, enabling both linear and rotary motions.
Although the COVID-19 pandemic has had a slight impact on the market, it is expected to rebound as the global economy recovers and manufacturing facilities resume production. The increasing military spending, driven by geopolitical tensions and border issues, is a key factor propelling the demand for military actuators. As companies and armed forces collaborate to implement 3D printing in the defense industry, manufacturing technologies are expected to advance, leading to enhanced efficiency in actuator production.
Furthermore, the Asia-Pacific and Middle East and Africa regions are actively focusing on developing local defense manufacturing facilities. This strategic emphasis provides growth opportunities for companies engaged in actuator manufacturing. By establishing these facilities, these regions aim to strengthen their defense capabilities and reduce reliance on imports, thereby driving the demand for military actuators.
Market Segmentation
The market is segmented based on type, system, application, and geography.
Segmentation by Type
Linear
Rotary
Segmentation by System
Electrical
Hydraulic
Mechanical
Pneumatic
Segmentation by Application
Air
Land
Sea
Segmentation by Geography
North America - United States, Canada
Europe - United Kingdom, Germany, France, Russia, and Rest of Europe
Asia-Pacific - China, Japan, India, South Korea, and Rest of Asia-Pacific
Latin America - Brazil, and Rest of Latin America
Middle East and Africa - United Arab Emirates, Saudi Arabia, Egypt, Turkey, Rest of Middle East and Africa
OEMs prefer rotary actuators over linear actuators due to advantages like low maintenance, unrestricted travel, and high torque. This drives growth in the rotary actuator market. The military sector is adopting electrical systems and components, including electric vehicles, aircraft, and weapons, leading to growth in this segment.
Countries globally are increasing defense spending and investing in enhancing their capabilities. Tensions with neighboring nations drive funds towards ground vehicles and military systems. Demand for unmanned ground vehicles rises, leading to new models. The land segment of the actuators market is expected to grow more than the sea and air segments due to increased procurement and development of ground vehicles. North America will witness the highest growth, driven by defense investments. The United States, with a substantial defense budget, leads in enhancing capabilities through advanced weapons, armored vehicles, fighter jets, and military equipment.
Competitive Landscape
The military actuator market is fragmented, with various players supporting military programs. Prominent participants include AMETEK Inc., AUMA Riester GmbH & Co. KG, Creative Motion Control Inc., Curtiss-Wright Corporation, Eaton Corporation PLC (Cobham Mission Systems), Heroux-Devtek Inc., Kyntronics Inc., Liebherr-International Deutschland GmbH, Moog Inc., Nook Industries Inc., Parker Hannifin Corporation, RTX Corporation, Triumph Group Inc., Woodward Inc. They supply actuators for aircraft, unmanned programs, armored vehicles, and surface vehicles.
Recent Industry Developments
In June 2021, Kytronics announced its participation in the Rockwell Automation Technology Partner program. Their SMART Electro-Hydraulic Actuators will be integrated with Rockwell Automation's servo motors, drives, and controls.
In May 2021, Marotta Controls achieved a significant milestone in their custom fin Control Actuation System (CAS) design project for Lockheed Martin. The project met over 20 military standards and received full component-level qualification. With this approval, the project moved to the high-volume production stage. The CAS is used in various applications, including missiles, torpedoes, munitions, UAVs, and UUVs.
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