PUBLISHER: Verified Market Research | PRODUCT CODE: 1622048
PUBLISHER: Verified Market Research | PRODUCT CODE: 1622048
The increasing use of electric and hybrid vehicles, which require sophisticated thermal management solutions to maintain maximum battery performance and longevity, is propelling the automotive thermal management market forward. According to the analyst from Verified Market Research, the automotive thermal management market is estimated to reach a valuation of USD 4.27 Billion over the forecast subjugating around USD 3.11 Billion valued in 2024.
The market for automotive thermal management is primarily driven by the growing need for ecologically friendly and fuel-efficient cars, which calls for the use of sophisticated thermal management systems to maximize vehicle efficiency and lower emissions. It enables the market to grow at aCAGR of 4.04% from 2024 to 2031.
Automotive Thermal Management Market: Definition/ Overview
Automotive thermal management refers to the systems and technology that regulate the temperature of various vehicle components, assuring peak performance and efficiency. These systems control the heat produced by the engine, battery, and other components to avoid overheating and enhance fuel efficiency.
Furthermore, applications include cooling systems for internal combustion engines, thermal regulation for electric car batteries, climate management for passenger comfort, and waste heat recovery to improve total energy efficiency. Effective thermal management is critical to the performance, safety, and lifetime of modern automobiles.
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The global shift toward electric vehicles (EVs) is propelling the automotive thermal management market. EVs require sophisticated thermal management systems to regulate battery temperatures and assure peak performance and lifetime. This is especially important because battery efficiency and safety are heavily reliant on temperature control, boosting the demand for sophisticated thermal management solutions in the rapidly expanding EV market.
Governments throughout the world are enacting stronger environmental restrictions to limit greenhouse gas emissions, forcing automakers to improve car efficiency. Thermal management systems are crucial for lowering fuel consumption and pollutants in internal combustion engines while also boosting the efficiency of electric components in EVs. As regulations tighten, the demand for effective thermal management solutions increases, driving market growth.
Furthermore, advancements in automotive technology, as well as rising consumer expectations for vehicle comfort and performance, are driving demand for improved thermal management systems. Modern automobiles contain a large number of heat-generating electrical components, and good thermal management is critical to ensuring the reliability and functionality of these systems. Also, consumer desire for consistent cabin comfort regardless of external conditions drives the development and implementation of advanced thermal management technology.
The intricacy and depth of the technology involved in integrating sophisticated thermal management systems, particularly in electric and hybrid vehicles, results in significant expenses. This raises the overall cost of vehicles, reducing market penetration, particularly in cost-sensitive regions.
Furthermore, the rising complexity of vehicle thermal management systems creates major design, integration, and maintenance issues. These systems must be optimized to function with a variety of different components in more compact vehicle architectures. The integration of such systems necessitates precise engineering, which complicates production processes and raises the chance of operating faults, reducing reliability and maintenance costs, and thereby limiting the market demand.
According to VMR analysis, the passenger vehicle segment is estimated to hold the largest market share during the forecast period. The continued growth in worldwide passenger vehicle sales, driven by rising consumer demand and increased affordability, has greatly boosted demand for advanced thermal management systems. These systems are critical for improving vehicle comfort and performance, which are major selling elements in this segment.
The increase in electric vehicle use necessitates advanced thermal management technology to preserve battery efficiency and safety. Passenger vehicles, especially EVs, are at the vanguard of this change, demanding reliable thermal management systems to maximize battery life and performance.
Furthermore, passenger vehicle thermal management systems are receiving more attention as consumer demands for comfort and safety in their vehicles rise. Effective thermal management ensures that electronics perform properly and improves passenger comfort, accelerating the segment's growth.
The battery thermal management segment is estimated to dominate the automotive thermal management market during the forecast period. The growing global trend toward electric vehicles, fueled by environmental concerns and favorable government legislation, has greatly increased demand for sophisticated battery thermal management systems. These systems are critical for preserving battery performance, efficiency, and longevity by controlling the heat generated during operation.
Furthermore, battery technology has undergone constant innovation, including improvements in thermal management technologies. Advanced heat management systems are critical for maximizing battery performance and permitting faster charging times, both of which are important selling features for modern EVs.
According to VMR analyst, Asia Pacific is estimated to dominate the automotive thermal management market during the forecast period. The Asia Pacific region, particularly China and India, has experienced tremendous growth in the automobile sector as a result of rising domestic demand and large manufacturing capacity. Automotive thermal management systems are becoming increasingly popular for improving vehicle performance and efficiency.
Furthermore, Asian countries have developed significant laws and incentives to encourage the use of electric vehicles, which necessitate improved heat management systems for battery maintenance and efficiency. This government effort is greatly driving the development and integration of these technologies in the region.
North America is estimated to exhibit substantial growth within the automotive thermal management market during the forecast period. The electric vehicle industry in North America is expanding rapidly, owing to regulatory incentives and customer demand for environmentally friendly mobility. The increased use of electric vehicles necessitates the development of improved thermal management systems to maintain battery efficiency and safety, hence driving market growth.
Furthermore, North America is a pioneer in automotive technology innovation, with major automakers and technology businesses making significant amounts in research and development. This emphasis on innovation fosters the development of more efficient and advanced thermal management systems, which are vital for current vehicles, including hybrids and completely electric versions.
The competitive landscape of the automotive thermal management market is characterized by intense innovation and strategic collaboration, as numerous companies work to develop improved systems to satisfy the changing demands of modern automobiles.
Some of the prominent players operating in the automotive thermal management market include:
DENSO Corporation
Gentherm Incorporated
MAHLE Group
BorgWarner, Inc.
Valeo
Dana Incorporated
Eberspacher Group
Calsonic Kansei Corporation
Continental AG
Robert Bosch
In October 2022, TotalEnergies and Valeo have agreed to collaborate on developing a novel dielectric fluid for cooling electric vehicle batteries. This idea would increase the utilization of electric vehicles while also reducing their carbon footprint.
In March 2022, Hanon Systems announced the approval of a new plant in Hubei, China, to support manufacturers in the electrified vehicle segment. The new plant will create HVAC components for electrified vehicles.