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Automotive Engine Encapsulation Market Share

ID: MRFR//4690-CR | 106 Pages | Author: Sejal Akre| August 2020

The automotive industry is on a perpetual quest to enhance fuel efficiency by reducing vehicle size and weight. One effective strategy embraced by automotive Original Equipment Manufacturers (OEMs) is engine downsizing. This approach involves reducing the size of the engine while augmenting its torque capabilities, ultimately resulting in lowered fuel consumption. However, this downsizing strategy directly impacts the design of crucial engine support systems, including the powertrain, and may potentially diminish the efficiency of engine heating systems.

The process of engine downsizing necessitates a comprehensive overhaul of all engine support systems to accommodate the smaller engine size. While it enhances fuel efficiency and torque, it poses challenges related to maintaining optimal engine temperatures throughout the vehicle's drive cycle. This is where engine encapsulation assumes a pivotal role.

Engine encapsulation's primary function in the context of engine downsizing is to ensure that the engine maintains the necessary operating temperature consistently during the vehicle's operation. By effectively managing the engine's thermal dynamics, engine encapsulation helps counter the potential challenges posed by downsized engines. Thus, it facilitates the maintenance of the required engine temperature, optimizing the engine's performance despite the downsizing modifications.

This emerging trend of engine downsizing within the automotive industry is anticipated to offer significant growth prospects to market participants in the foreseeable future. As automotive OEMs increasingly adopt downsizing strategies to enhance fuel efficiency and torque while reducing vehicle weight, the importance of engine encapsulation becomes more pronounced. Its ability to regulate and maintain optimal engine temperatures becomes crucial in ensuring the downsized engines operate efficiently across diverse driving conditions.

By effectively mitigating the challenges associated with downsized engines, engine encapsulation emerges as a solution that aligns with the automotive industry's drive towards improved fuel economy. The integration of engine encapsulation technology enables manufacturers to address the potential drawbacks of downsized engines, thus enhancing their overall performance.

Moreover, engine downsizing remains a prevalent approach adopted by automotive OEMs seeking to meet stringent fuel efficiency standards and reduce carbon emissions. As regulatory pressures continue to encourage the development of more environmentally friendly vehicles, engine encapsulation stands out as a viable solution. Its ability to optimize engine performance while aiding in downsizing initiatives positions it as a critical component in achieving higher fuel efficiency targets set by regulatory authorities.

Conclusively, the growing trend of engine downsizing in the automotive industry is expected to create substantial growth opportunities for market players. Engine encapsulation's role in maintaining optimal engine temperatures amid downsizing endeavors underscores its significance in supporting the industry's pursuit of improved fuel efficiency, torque enhancement, and compliance with environmental regulations. Hence, the market for engine encapsulation is poised to experience significant growth during the forecast period, driven by the increasing adoption of downsizing strategies by automotive OEMs worldwide.

Covered Aspects:

Report Attribute/Metric Details
Base Year For Estimation   2021
Historical Data 2019 & 2020
Forecast Period   2022 to 2030
Growth Rate (2022 to 2030

Global Automotive Engine Encapsulation Market Overview 


The global automotive engine encapsulation market is estimated to reach a valuation of USD 5500 million by the year 2030. The automotive engine encapsulation insulates the engine from the environment and maintains engine temperature for long durations even when the engine is turned off which slows down the engine cooling rate, providing initial heat during start-up. Hence, encapsulation reduces the friction between engine parts and provides a short warm-up time for the engine, which ultimately helps minimize CO2 emissions.


Automotive Engine Encapsulation Market


The global automotive engine encapsulation market is growing rapidly due to an increased demand for fuel-efficient vehicles and stringent regulations to minimize engine noise and CO2 emissions. For this, noise control materials are used with automotive soundproofing and heat shielding solutions. However, the growth of the said market may be hindered by limited applications of engine encapsulation in electric and hybrid vehicles. The demand for fuel-efficient vehicles is on the rise all over the globe to reduce greenhouse gas emissions and minimize the carbon footprint. Furthermore, fuel-efficient vehicles improve mileage and decrease fuel costs. Hence, automotive OEMs are continuously working to develop new methods and components that could perform as proper vehicle noise reduction solutions.


Global Automotive Engine Encapsulation Market Trends


The new-age trend of driving a vehicle with better sound acoustics and fuel economy is aiding the market's growth.


Engine encapsulation comprises thermoplastics and casings that are affixed to the engine in order to shield it from the elements and maintain its temperature for an extended period, and for this, thermal insulation technologies are employed. By maintaining engine temperature, these Low Weight Reinforced Thermoplastics (LWRT) not only reduce undesirable engine friction but also decrease vehicle fuel consumption. Therefore, the implementation of thermal engine encapsulation or engine compartment enclosure for internal combustion engines contributes to environmental conservation by preventing the combustion of each gram of fuel, thereby diminishing our ecological impact. 


Carbon fibre is an innovative material utilized in the encapsulation of automobile engines. Despite its high cost, carbon fibre remains a popular material with its ability to fabricate lightweight engine shields and covers. Because body-mounted engine encapsulations typically encase the engine on all sides and are installed in luxury vehicles, lightweight material is favoured in their manufacturing. In light of the aforementioned considerations, carbon fibre is the material of choice for luxury vehicles.


Additionally, body-mounted encapsulation is most prevalent in luxury vehicles. Despite this, several mid-range luxury vehicles also employ this system. The body-mounted encapsulation devices utilized in high-end vehicles are predominantly constructed from carbon fibre materials. Body-mounted encapsulation is anticipated to reach USD 3,193.7 million by 2025, expanding at a faster CAGR than engine-mounted encapsulation. 


Automotive Engine Encapsulation Market Segment Insights


The global automotive engine encapsulation market is primarily divided into mounting type and vehicle type segments. 


In the Mounting type segmentation, the market is further divided into body-mounted and engine-mounted.


Body-mounted encapsulation systems (BMEs) are rectangular constructions that envelop the engine on all sides, thereby enhancing thermal insulation and promoting fuel economy within the vehicle. At present, body-mounted encapsulation is predominantly observed in high-end automobiles. The body-mounted encapsulation devices utilized in high-end vehicles are predominantly constructed from carbon fibre materials. Body-mounted encapsulation is anticipated to experience a higher compound annual growth rate (CAGR) compared to engine-mounted systems, owing to its perceived advantageous contribution to the engine encapsulation industry.


The rapid attainment of the ideal temperature is facilitated by the engine-mounted systems, resulting in a reduction of carbon emissions and fuel consumption. The engine undershield systems of this system are composed of thermoplastic materials arranged in multiple layers. A high volume of enclosed air pores renders these lightweight, reinforced thermoplastics optimal for use in underhood insulation systems for the engine compartment design.


Considering the vehicle type segmentation of the automotive engine encapsulation market, passenger cars are the dominant segment in terms of application, this is due to the increasing emphasis on fuel efficiency and increasingly stringent emissions regulations, which create a critical need for efficient engine encapsulation. Encapsulation contributes to enhanced fuel economy, improved thermal management, and decreased aerodynamic turbulence. Passenger automobiles must have a quiet and pleasant interior environment for their occupants. Ensuring efficient acoustic encapsulation is of paramount importance in mitigating engine noise, thereby augmenting the rider's comfort and tranquillity.


Global Automotive Engine Encapsulation Regional Insights


The global automotive engine encapsulation market is primarily studied across four prominent regions, namely North America, Europe, Asia-Pacific and the Rest of the World. 


Europe accounted for the largest market share of 35.7% in 2019, with a market value of USD 1.4 billion and is projected to register a 5.70% CAGR during the forecast period. The region is the fastest-growing market for automotive engine encapsulation owing to the presence of several well-established OEMs in Germany and the UK. Stringent emission standards such as Euro 6 and the downsizing of engines to reduce vehicle weight have resulted in the increased demand for engine encapsulation in the region. A multitude of prominent automotive manufacturers and suppliers are situated within the region. The prevalence of automotive manufacturing facilities and research institutions in the region has significantly increased the need for sophisticated engine encapsulation solutions.


Asia-Pacific was the second-largest market in 2019, valued at USD 1.2 billion and is projected to register the highest CAGR of 7.5%. The automotive industry in the region was growing rapidly till the beginning of 2020, due to the increase in production in developing nations such as China and India. The demand for technologically advanced cars was increasing with the growth of the information and communication technology (ICT), automotive, and transportation industries, resulting in the rising demand for advanced engine management systems. 


The automotive exports of China are significantly impacted by environmental regulations and the global economy. Exports of vehicles from China have been marginally impacted by the COVID-19 pandemic. Over the past several years, China has dominated the global automobile manufacturing industry.


Automobile sales increased annually in 2021 for the first time since 2017. Year-over-year, automobile sales increased by 3.8% to 26.28 million units. In other automobile markets, Chinese automobile brands enjoy a substantial cost advantage over imported vehicles from international automakers. Therefore, Chinese automotive manufacturers primarily target emergent markets and other developing nations as their export destinations, which is eventually helping the APAC market witness growth.


Automotive Engine Encapsulation Market Key Players & Competitive Insights


The automotive engine encapsulation market is complex and divided, featuring a multitude of both domestic and international participants. Prominent market participants consist of Autoneum Holding AG, Trocellen Automotive, BASF SE, Continental AG, and Roechling Group, among others. Principal companies rely on OEM contracts as their primary revenue generator. In addition to increasing the demand for thermal reduction, OEM expansions are anticipated to increase the national demand for engine encapsulation. 


Key Companies in the Automotive Engine Encapsulation Market 



  • Röchling Group (Germany)

  • Adler Pelzer Holding GmbH (Germany)

  • Autoneum (Switzerland)

  • ElringKlinger AG (Germany)

  • Greiner Foam International GmbH (Austria)

  • Woco Industrietechnik GmbH (Germany)

  • Carcoustics (Germany)

  • Trocellen GmbH (Germany)

  • SA Automotive (US)

  • Continental Corporation (Germany)

  • Furukawa Electric Co., Ltd

  • Hennecke GmbH


Recent Developments 


February 2021 - 


In February 2021, BASF declared that it is enhancing its range of high-temperature polyamide products through the development of a novel heat-stabilized variant of Ultramid B3PG6 BK23238. Polyamide, which is reinforced with 30% glass fibres, has gained recognition for its exceptional resistance to thermal ageing and vibration in hybrid and electric vehicle (EV) applications. 


October 2021 - 


In October 2021, By announcing supply contracts for engine mounts to several vehicle manufacturers in Europe, the United States, and China, Continental demonstrated its ability to provide customized solutions through partnerships with original equipment manufacturers (OEMs). 


February 2023 - 


In February 2023, the Swiss automotive provider Autoneum Holding AG acquired the French manufacturer of lightweight insulation materials Trocellen Automotive. By acquiring Autoneum, the company will be able to strengthen its position in the automotive engine encapsulation market and broaden its range of products.


Automotive Engine Management System Market Segmentation:


Global Automotive Engine Encapsulation Market, By Type



  • Engine Mounted

  • Body Mounted


Global Automotive Engine Encapsulation Market, By Vehicle Type



  • Passenger Vehicle

  • Light Commercial Vehicle

  • Heavy Commercial Vehicle


Global Automotive Engine Encapsulation Market, By Material



  • Carbon Fiber

  • Polypropylene

  • Polyurethane

  • Polyamide

  • Others


Global Automotive Engine Encapsulation Market, By Sales Channel



  • Oem

  • Aftermarket


Automotive Engine Encapsulation Market Regional Outlook



  • North America


    • Us

    • Canada


  • Europe


    • Germany

    • France

    • Uk

    • Italy

    • Spain

    • Rest Of Europe


  • Asia-Pacific


    • China

    • Japan

    • India

    • Australia

    • South Korea

    • Australia

    • Rest Of Asia-Pacific


  • Rest Of the World


    • Middle East

    • Africa

    • Latin America


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