Global Automotive Air Intake Manifold Market Growth, Share, Size, Trends and Forecast (2025 - 2031)
By Material;
Aluminum, Magnesium, Plastic/Other Composites, and Iron.By Manifold;
Single Plane, Dual Plane, EFI, HI-RAM, and Supercharger.By Application;
Passenger Cars, M&HCVs, and LCVs.By Distribution Channel;
OEM, and Aftermarket.By Geography;
North America, Europe, Asia Pacific, Middle East and Africa and Latin America - Report Timeline (2021 - 2031).Introduction
Global Automotive Air Intake Manifold Market (USD Million), 2021 - 2031
In the year 2024, the Global Automotive Air Intake Manifold Market was valued at USD 50,774.01 million. The size of this market is expected to increase to USD 80,471.16 million by the year 2031, while growing at a Compounded Annual Growth Rate (CAGR) of 6.8%.
The global automotive air intake manifold market is a crucial segment of the automotive industry, focused on the design, development, and supply of air intake manifolds used in internal combustion engine (ICE) vehicles. The air intake manifold plays a significant role in optimizing engine performance by directing air into the engine’s combustion chamber, ensuring proper air-fuel mixture and supporting efficient combustion. Over the past few years, the market has witnessed considerable growth driven by the increasing demand for fuel-efficient and high-performance vehicles, coupled with the rising adoption of stringent emission regulations.
The market has been influenced by advancements in automotive technologies, including the development of turbocharged engines, variable intake manifolds, and the shift toward lightweight materials. These innovations have enhanced the design and efficiency of air intake manifolds, leading to improvements in fuel economy, engine power, and overall vehicle performance. Additionally, the growing popularity of electric vehicles (EVs), though not directly reliant on air intake systems, has spurred manufacturers to explore new solutions for hybrid systems and the integration of innovative technologies into the market.
Geographically, North America, Europe, and Asia Pacific remain key players in the global automotive air intake manifold market, with Asia Pacific leading due to its thriving automotive manufacturing sector, particularly in countries like China, Japan, and India. The region’s dominance is also supported by the growing consumer demand for more fuel-efficient and environmentally friendly vehicles. Furthermore, the rise in vehicle production in emerging markets is expected to boost the demand for air intake manifolds, contributing to the global market’s expansion.
The automotive air intake manifold market is also witnessing an increase in mergers, acquisitions, and partnerships as manufacturers strive to enhance their product portfolios and gain a competitive edge. Companies are focusing on delivering advanced materials, including aluminum and composites, to reduce the overall weight of intake manifolds and improve fuel efficiency. As automotive manufacturers continue to prioritize performance, fuel efficiency, and sustainability, the market for air intake manifolds is expected to grow steadily, driven by innovation and technological advancements in automotive engineering.
Global Automotive Air Intake Manifold Market Recent Developments
-
In September 2023, Magneti Marelli developed lightweight plastic air intake manifolds for turbocharged engines, reducing weight and enhancing engine performance.
-
In January 2022, Mann+Hummel expanded its product range to include multi-functional manifolds with integrated sensors.
Segment Analysis
The global automotive air intake manifold market is segmented by material into aluminum, magnesium, plastic/other composites, and iron. Aluminum is one of the most commonly used materials for air intake manifolds due to its lightweight nature and high strength, making it ideal for improving fuel efficiency and performance. Magnesium, though less common, is gaining traction due to its lower weight, contributing further to fuel savings. Plastic and other composite materials are also increasingly popular due to their cost-effectiveness, corrosion resistance, and lightweight properties. Iron, being more durable, is used in specific applications where strength is critical, though it tends to be heavier compared to alternatives.
The automotive air intake manifold market is further categorized by manifold type, including single plane, dual plane, EFI (Electronic Fuel Injection), HI-RAM (High-Ram), and supercharger. Single plane manifolds are commonly used in high-performance applications, as they provide better airflow at high RPMs, while dual plane manifolds offer improved fuel efficiency at lower RPMs. EFI manifolds are widely used in modern vehicles for their ability to manage precise fuel delivery, contributing to enhanced engine performance and lower emissions. HI-RAM manifolds, designed for performance vehicles, optimize air intake for high power output, while supercharger manifolds are designed for forced induction engines, offering significant performance gains.
In terms of application, the market for automotive air intake manifolds is categorized into passenger cars, M&HCVs (Medium and Heavy Commercial Vehicles), and LCVs (Light Commercial Vehicles). Passenger cars dominate the market as they represent a significant portion of global vehicle production, with air intake manifolds contributing to engine efficiency and emissions control. M&HCVs, which include trucks and buses, require air intake manifolds that can handle higher engine loads and offer durability under heavy-duty conditions. LCVs, such as delivery vans and pickups, are witnessing increased demand, with air intake manifolds tailored to balance fuel efficiency and engine power in these vehicles.
The distribution channel segment is divided into OEM (Original Equipment Manufacturer) and aftermarket. OEMs dominate the market, as air intake manifolds are crucial components that are integrated into vehicles during the manufacturing process. OEM parts are known for their high-quality standards and reliability. The aftermarket segment is growing as well, driven by the increasing demand for replacement and upgraded components for vehicles post-purchase. Consumers and repair shops often seek aftermarket air intake manifolds to enhance vehicle performance or replace worn-out parts, creating opportunities for aftermarket suppliers.
Geographically, the market is segmented into North America, Europe, Asia Pacific, Middle East and Africa, and Latin America. North America holds a significant share of the market, primarily driven by the high demand for passenger cars and the presence of major automotive manufacturers in the region. Europe follows closely, with strong demand from both passenger cars and commercial vehicles, driven by stringent emission regulations that emphasize engine efficiency. The Asia Pacific region is expected to experience the highest growth due to the increasing production of vehicles in countries like China and India, coupled with the rising demand for fuel-efficient and high-performance vehicles. The Middle East and Africa market is expanding, fueled by the growth of the automotive sector, especially in emerging markets. Latin America is also witnessing growth, although at a slower pace, with increased demand for vehicles in countries like Brazil and Argentina contributing to the market expansion.
Global Automotive Air Intake Manifold Segment Analysis
In this report, the Global Automotive Air Intake Manifold Market has been segmented by Material, Manifold, Application, Distribution Channel, and Geography.
Global Automotive Air Intake Manifold Market, Segmentation by Material
The Global Automotive Air Intake Manifold Market has been segmented by Material into Aluminum, Magnesium, Plastic/other composites, and Iron.
The global automotive air intake manifold market has seen significant growth with a variety of materials being used for the manufacturing of intake manifolds. Aluminum, being lightweight and offering superior corrosion resistance, is one of the most popular materials in the industry. It is often preferred in modern automotive manufacturing due to its ability to reduce overall vehicle weight, improve fuel efficiency, and provide better engine performance. Aluminum air intake manifolds are commonly used in both passenger cars and commercial vehicles for their durability and ability to withstand high temperatures.
Magnesium, another key material in the automotive air intake manifold market, is gaining popularity due to its lightweight properties. Magnesium alloys are approximately 30% lighter than aluminum, which makes them an attractive choice for manufacturers aiming to improve fuel efficiency and reduce carbon emissions. This material is primarily used in high-performance vehicles and luxury models where weight reduction plays a crucial role in overall vehicle performance and efficiency.
Plastic and other composite materials are also extensively used in the production of air intake manifolds. These materials are increasingly being favored due to their cost-effectiveness, flexibility in design, and ability to withstand various operating conditions. Composite materials offer the benefit of reducing manufacturing costs while still maintaining the strength and thermal stability required for air intake systems. Plastic intake manifolds are particularly popular in entry-level and mid-range vehicles, offering an optimal balance between performance and cost.
Iron, though less common compared to aluminum and plastic, still holds a position in the market, especially for heavy-duty and industrial vehicles. Iron air intake manifolds are highly durable and capable of withstanding extreme temperatures and pressures, which makes them suitable for larger engines. However, due to the weight factor, iron intake manifolds are typically used in specialized applications where performance, rather than weight reduction, is the priority. While not as prevalent as aluminum or plastic, iron remains a crucial material in specific market segments.
Global Automotive Air Intake Manifold Market, Segmentation by Manifold
The Global Automotive Air Intake Manifold Market has been segmented by Manifold into Single Plane, Dual Plane, EFI, HI-RAM, and Supercharger.
The Global Automotive Air Intake Manifold Market is categorized based on the type of manifold used in automotive applications. One of the primary segments is the Single Plane manifold, which is commonly used in performance engines due to its ability to allow for a higher volume of air to enter the engine. This design is preferred for high-performance vehicles where maximizing engine efficiency and horsepower is a priority. The Single Plane manifold is known for its simplicity and cost-effectiveness, making it a popular choice for many automotive manufacturers.
Another important segment is the Dual Plane manifold, which is designed to improve engine performance by utilizing two separate intake planes. This configuration helps to balance air intake across all cylinders, enhancing fuel mixture distribution and improving throttle response. The Dual Plane manifold is commonly found in passenger vehicles and light trucks, where a balanced engine performance is essential for both fuel efficiency and power delivery, especially in mid-range engine speeds.
The EFI (Electronic Fuel Injection) manifold segment is gaining traction as automotive technology shifts toward more fuel-efficient systems. This manifold type is designed to optimize the air-fuel mixture with precision, thanks to the integration of electronic fuel injectors. EFI manifolds are widely used in modern vehicles with electronic control systems, offering better fuel economy, reduced emissions, and improved overall engine performance compared to older carburetor-based systems.
The HI-RAM and Supercharger manifold segments are mainly utilized in high-performance and racing vehicles. The HI-RAM manifold is designed for engines that require high airflow at high RPMs, making it ideal for vehicles that focus on maximum speed and performance. On the other hand, the Supercharger manifold is used in supercharged engines to increase the intake air pressure, thereby enhancing the engine's overall power output. These specialized manifolds are typically found in performance vehicles and motorsports, where power and efficiency are critical.
Global Automotive Air Intake Manifold Market, Segmentation by Application
The Global Automotive Air Intake Manifold Market has been segmented by Application into Passenger cars, M&HCVs and LCVs.
The Global Automotive Air Intake Manifold Market is primarily segmented by application into passenger cars, medium and heavy commercial vehicles (M&HCVs), and light commercial vehicles (LCVs). Each of these categories plays a significant role in the market dynamics, catering to different consumer needs and vehicle requirements. The passenger cars segment dominates the market due to the high demand for fuel-efficient and environmentally friendly vehicles. With the rising adoption of electric and hybrid cars, the air intake manifold’s role in optimizing engine performance and reducing emissions becomes more crucial.
In the M&HCVs segment, the air intake manifold is essential for improving engine efficiency and meeting stricter emission standards. These vehicles require highly durable and efficient components due to their heavy-duty applications and long operational hours. As demand for logistics, transportation, and construction continues to grow globally, the M&HCV segment is expected to see significant growth in the automotive air intake manifold market. Manufacturers are focusing on improving the design and performance of these manifolds to support large, powerful engines used in commercial vehicles.
The LCV segment is another key contributor to the global market. Light commercial vehicles, including delivery trucks, vans, and small transport vehicles, rely on efficient engine systems to balance power with fuel economy. With the increasing trend of e-commerce and last-mile delivery services, the demand for LCVs is anticipated to rise, subsequently driving the demand for high-performance air intake manifolds. The adoption of cleaner technologies in these vehicles is also influencing the demand for advanced manifold solutions that help reduce emissions while maintaining engine efficiency.
Overall, the segmentation by application highlights the diversity in requirements for automotive air intake manifolds across different vehicle categories. Each segment, whether passenger cars, M&HCVs, or LCVs, has unique challenges and opportunities. As the automotive industry shifts towards greener technologies and increasingly stringent regulations, the demand for optimized air intake systems that support engine performance, fuel efficiency, and emission control will continue to grow. This trend will be pivotal in shaping the market’s future development and technological advancements.
Global Automotive Air Intake Manifold Market, Segmentation by Distribution Channel
The Global Automotive Air Intake Manifold Market has been segmented by Distribution Channel into OEM, and Aftermarket.
The Global Automotive Air Intake Manifold Market has seen significant growth due to the increasing demand for fuel-efficient vehicles and the rising adoption of advanced automotive technologies. The distribution channel segmentation of this market plays a crucial role in shaping its overall dynamics. OEM (Original Equipment Manufacturer) is a key segment in the market, as it involves the production of air intake manifolds that are supplied directly to vehicle manufacturers. This segment benefits from strong relationships with automakers, ensuring a steady demand for high-quality components that meet specific vehicle requirements. The OEM segment is expected to maintain a dominant position due to the increasing production of vehicles globally.
On the other hand, the Aftermarket segment is gaining momentum as the automotive industry experiences growth in vehicle ownership, particularly in regions with a high number of older vehicles. As these vehicles age, there is an increased need for replacement parts, including air intake manifolds. The Aftermarket segment caters to this demand by offering a wide variety of components that suit different vehicle models. This segment provides significant opportunities for companies to capture a larger share of the market by offering cost-effective solutions and catering to a diverse customer base.
With rising consumer awareness about the importance of maintaining vehicle performance and reducing emissions, both the OEM and Aftermarket segments are witnessing technological advancements in air intake manifolds. These advancements include the integration of materials that enhance fuel efficiency and improve engine performance. The Aftermarket segment, in particular, benefits from the availability of aftermarket performance parts that promise enhanced engine efficiency and power output. As vehicles continue to become more complex, the demand for specialized air intake manifolds that cater to performance and fuel economy improvements is expected to increase.
In terms of market competition, the segmentation by distribution channel allows companies to target different customer segments more effectively. The OEM segment is typically characterized by long-term contracts and strong partnerships with vehicle manufacturers, while the Aftermarket segment is more flexible, with a focus on consumer-driven demand. Both segments require strategic marketing efforts to meet the unique needs of their respective customer bases, and companies are continuously exploring innovative ways to improve their product offerings and gain a competitive edge in this evolving market.
Global Automotive Air Intake Manifold Market, Segmentation by Geography
In this report, the Global Automotive Air Intake Manifold Market has been segmented by Geography into five regions; North America, Europe, Asia Pacific, Middle East and Africa and Latin America.
Global Automotive Air Intake Manifold Market Share (%), by Geographical Region, 2024
The Global Automotive Air Intake Manifold Market shows varying trends across different regions, driven by technological advancements, regulatory standards, and consumer demands. In North America, the market is primarily fueled by increasing demand for fuel-efficient vehicles and stringent emission regulations. Automotive manufacturers are increasingly adopting air intake manifolds that are lightweight, durable, and optimized for enhanced fuel efficiency. This region is also experiencing growth in electric vehicle (EV) production, which indirectly influences the demand for advanced intake manifold technologies in hybrid and electric models.
In Europe, the market growth is significantly impacted by the rising emphasis on reducing carbon emissions and enhancing vehicle performance. European countries are known for their strict environmental standards, pushing manufacturers to innovate and adopt more efficient air intake systems. The ongoing shift toward electric and hybrid vehicles also plays a pivotal role in shaping the regional market dynamics, as manufacturers explore new designs for air intake manifolds that cater to alternative propulsion systems.
Asia-Pacific is emerging as a key region in the automotive air intake manifold market due to the rapid expansion of the automotive industry, especially in countries like China, India, and Japan. The region benefits from robust vehicle production and increasing consumer preference for affordable yet high-performance vehicles. Additionally, the rising adoption of electric vehicles in this region is stimulating the demand for innovative air intake manifold solutions. The automotive industry's growth in Asia-Pacific is also supported by low manufacturing costs, making it a critical hub for both production and consumption.
The Middle East and Africa (MEA) region is seeing a gradual increase in the demand for automotive air intake manifolds, driven by improving infrastructure and rising automotive manufacturing activities. However, the market in MEA remains smaller compared to other regions, with demand being concentrated in countries like Saudi Arabia and South Africa. The growing focus on fuel efficiency, along with government initiatives aimed at boosting the local automotive sector, is expected to propel the adoption of advanced intake manifold technologies in the region.
Market Trends
This report provides an in depth analysis of various factors that impact the dynamics of Global Automotive Air Intake Manifold Market. These factors include; Market Drivers, Restraints and Opportunities Analysis.
Drivers, Restraints and Opportunities Analysis
Drivers:
- Growing Demand for Fuel-Efficient Vehicles
- Increasing Adoption of Electric Vehicles (EVs)
-
Technological Advancements in Air Intake Manifolds- The global automotive air intake manifold market has witnessed significant growth due to technological advancements in automotive components, particularly air intake manifolds. Air intake manifolds are essential in directing and regulating the flow of air into an engine, contributing to fuel combustion efficiency. Innovations in material science have led to the development of lighter, more durable, and heat-resistant intake manifolds, enhancing engine performance and fuel efficiency. These advancements also contribute to the reduction of vehicle weight, which is a key consideration in the automotive industry's push for improved fuel economy and reduced emissions.
One of the most significant technological advancements in air intake manifolds is the integration of variable intake manifold (VIM) systems. VIM technology adjusts the length and shape of the intake manifold depending on the engine's speed, optimizing airflow and improving engine power across a wider range of RPMs. This technology allows for better fuel efficiency, enhanced throttle response, and increased overall engine performance, making it a vital component in modern high-performance engines. Additionally, manufacturers are increasingly incorporating advanced manufacturing techniques, such as 3D printing and precision casting, to improve the design and performance of air intake manifolds.
The rise of electric vehicles (EVs) and hybrid powertrains has led to further innovation in air intake manifold design. Although traditional internal combustion engine (ICE) vehicles use air intake manifolds to regulate air intake for combustion, hybrid and electric vehicles have different airflow requirements. As a result, the design and materials used in air intake manifolds for hybrid and electric vehicles are being optimized for reduced weight, better airflow, and integration with new types of engines, such as fuel cells or smaller combustion engines. These advancements support the development of more efficient and environmentally friendly automotive powertrains.
The focus on emission reductions and environmental regulations has driven further technological advancements in the air intake manifold market. Manufacturers are increasingly adopting smart sensors and integrated systems that can monitor and adjust air intake for optimal performance based on environmental conditions and driving behavior. These smart technologies help optimize fuel consumption and reduce harmful emissions, meeting stringent global regulatory standards. As a result, technological advancements in air intake manifold design are playing a crucial role in improving vehicle performance, efficiency, and sustainability in the automotive industry.
Restraints:
- High Manufacturing and Development Costs
- Stringent Environmental Regulations
-
Complexity in Design and Integration- In the Global Automotive Air Intake Manifold Market, the complexity in design and integration is a significant restraint that impacts the development and production of these components. Air intake manifolds, which distribute air to the engine's cylinders, must meet rigorous design standards for performance, durability, and fuel efficiency. As engine designs become more advanced, the air intake manifold’s design must be tailored to fit the specific needs of newer engine technologies, such as turbocharged and hybrid engines. This complexity in design increases the challenge of ensuring that manifolds can seamlessly integrate with a variety of engine components, which can result in higher production costs and longer development cycles.
The integration of advanced features such as variable geometry and integrated sensors within air intake manifolds further complicates their design. These components must be engineered to work efficiently with the electronic control systems, enhancing performance while also meeting environmental and regulatory standards. The integration of these features requires sophisticated engineering, as it involves not only the mechanical aspects but also the software and control systems that govern the manifold's operation. This adds another layer of complexity to the manufacturing process, requiring collaboration across multiple engineering disciplines.
The complexity of designing and integrating air intake manifolds is also compounded by the increasing need for customization. As automotive manufacturers strive to differentiate their vehicles, there is a growing demand for customized air intake solutions that are tailored to specific models or even individual customer preferences. This trend increases the difficulty for manufacturers to standardize production, leading to potential inefficiencies and higher costs. Moreover, these custom designs must still adhere to the high-performance standards necessary for engine efficiency and emissions reduction, creating a delicate balance between customization and the overarching need for functionality.
The integration of new materials, such as lightweight composites and advanced plastics, to improve the efficiency and weight of air intake manifolds presents additional challenges. These materials often require new manufacturing techniques, which can be difficult to integrate with existing production lines. The increased use of such materials also introduces new testing and quality control procedures to ensure that they meet the durability and performance requirements for automotive applications. As a result, manufacturers must invest in new technologies and processes to remain competitive, further driving up costs and complicating the design and integration of air intake manifolds in the global automotive market.
Opportunities:
- Expansion in Emerging Markets
- Development of Lightweight Materials
-
Growth in Aftermarket Replacement Parts Segment- The global automotive air intake manifold market presents significant opportunities for growth in the aftermarket replacement parts segment due to the increasing number of vehicles on the road and their aging fleet. As more vehicles are being driven for longer periods, the demand for replacement parts, including air intake manifolds, rises. These components play a crucial role in managing air and fuel mixture for optimal engine performance. As vehicles age, wear and tear often lead to the need for replacement parts to maintain efficiency, making aftermarket parts a critical solution for vehicle maintenance.
Another key opportunity lies in the growing awareness of vehicle maintenance among consumers. As car owners become more conscious of the importance of proper maintenance, they are increasingly turning to aftermarket suppliers for affordable and high-quality parts. This shift away from original equipment manufacturer (OEM) parts toward aftermarket replacements is driven by cost-effectiveness, availability, and the increasing variety of parts offered by aftermarket suppliers. The growing consumer preference for high-quality, affordable replacements further propels the demand for air intake manifolds in the aftermarket segment.
The rise of e-commerce platforms also plays a pivotal role in the growth of the aftermarket replacement parts segment. Consumers now have easier access to a broad range of replacement parts online, including air intake manifolds. This shift to online sales has reduced barriers to entry for aftermarket parts suppliers, allowing smaller businesses to expand their reach and compete with larger, established brands. The convenience of ordering replacement parts online, along with the competitive pricing, further boosts the growth prospects in the automotive aftermarket industry.
The increasing focus on sustainability and fuel efficiency presents an opportunity for the air intake manifold market to innovate. With stricter emission regulations and a global push towards reducing carbon footprints, vehicle manufacturers and aftermarket suppliers are focusing on more efficient and eco-friendly solutions. Air intake manifolds that optimize engine performance, reduce fuel consumption, and lower emissions are in high demand. This trend encourages the development of advanced materials and designs for air intake manifolds, creating further opportunities for growth in the aftermarket segment.
Competitive Landscape Analysis
Key players in Global Automotive Air Intake Manifold Market include:
- Edelbrock L.L.C.
- Magnetic Marellic S.p.A.
- Rochling Group
- Holley Performance Products
- Sogefi SpA
- Keihin North America, Inc.
- Aisin Seiki Co., Ltd
- Donaldson Company
- Novares
- Mikuni Corporation
In this report, the profile of each market player provides following information:
- Company Overview and Product Portfolio
- Key Developments
- Financial Overview
- Strategies
- Company SWOT Analysis
- Introduction
- Research Objectives and Assumptions
- Research Methodology
- Abbreviations
- Market Definition & Study Scope
- Executive Summary
- Market Snapshot, By Material
- Market Snapshot, By Manifold
- Market Snapshot, By Application
- Market Snapshot, By Distribution Channel
- Market Snapshot, By Region
- Global Automotive Air Intake Manifold Market Dynamics
- Drivers, Restraints and Opportunities
- Drivers
- Growing Demand for Fuel-Efficient Vehicles
- Increasing Adoption of Electric Vehicles (EVs)
- Technological Advancements in Air Intake Manifolds
- Restraints
- High Manufacturing and Development Costs
- Stringent Environmental Regulations
- Complexity in Design and Integration
- Opportunities
- Expansion in Emerging Markets
- Development of Lightweight Materials
- Growth in Aftermarket Replacement Parts Segment
- Drivers
- PEST Analysis
- Political Analysis
- Economic Analysis
- Social Analysis
- Technological Analysis
- Porter's Analysis
- Bargaining Power of Suppliers
- Bargaining Power of Buyers
- Threat of Substitutes
- Threat of New Entrants
- Competitive Rivalry
- Drivers, Restraints and Opportunities
- Market Segmentation
- Global Automotive Air Intake Manifold Market, By Material, 2021 - 2031 (USD Million)
- Aluminum
- Magnesium
- Plastic/Other Composites
- Iron
- Global Automotive Air Intake Manifold Market, By Manifold, 2021 - 2031 (USD Million)
- Single Plane
- Dual Plane
- EFI
- HI-RAM
- Supercharger
- Global Automotive Air Intake Manifold Market, By Application, 2021 - 2031 (USD Million)
- Passenger Cars
- M&HCVs
- LCVs
- Global Automotive Air Intake Manifold Market, By Distribution Channel, 2021 - 2031 (USD Million)
- OEM
- Aftermarket
- Global Automotive Air Intake Manifold Market, By Geography, 2021 - 2031 (USD Million)
- North America
- United States
- Canada
- Europe
- Germany
- United Kingdom
- France
- Italy
- Spain
- Nordic
- Benelux
- Rest of Europe
- Asia Pacific
- Japan
- China
- India
- Australia & New Zealand
- South Korea
- ASEAN (Association of South East Asian Countries)
- Rest of Asia Pacific
- Middle East & Africa
- GCC
- Israel
- South Africa
- Rest of Middle East & Africa
- Latin America
- Brazil
- Mexico
- Argentina
- Rest of Latin America
- North America
- Global Automotive Air Intake Manifold Market, By Material, 2021 - 2031 (USD Million)
- Competitive Landscape
- Company Profiles
- Edelbrock L.L.C.
- Magnetic Marellic S.p.A.
- Rochling Group
- Holley Performance Products
- Sogefi SpA
- Keihin North America, Inc.
- Aisin Seiki Co., Ltd
- Donaldson Company
- Novares
- Mikuni Corporation
- Company Profiles
- Analyst Views
- Future Outlook of the Market