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市场调查报告书
商品编码
1724174
全球电动车 (EV) 电池外壳市场:按车辆类型、电池类型、电池化学性质、材料、组件和国家/地区进行分析和预测(2025-2034 年)Electric Vehicle (EV) Battery Housing Market - A Global and Regional Analysis: Focus on Battery Housing Vehicle Type, Cell Format, Battery Chemistry, Material, Component, and Country Analysis - Analysis and Forecast, 2025-2034 |
预计预测期内全球电动车 (EV) 电池外壳市场规模将以 14.27% 的复合年增长率成长。
预计市场成长将受到对电动车、充电基础设施、轻质材料的需求增加以及行驶里程增加的推动。
电动汽车电池外壳是包围和保护电动车电池组的结构部件。它还可以散发电池组的热量,并有助于防止电池故障时火势蔓延。电池外壳是电动车的关键部件,因为它可以保护电池组免受损坏并有助于确保乘客的安全。这对于电池组的温度控管也很重要,有助于提高电池效能和寿命。电池外壳由多种材料製成,包括铝、钢和塑胶。材料的选择取决于电动车电池组的特定设计要求。它们通常设计得轻巧、坚固且耐腐蚀。电池外壳能够有效散热也很重要。因此,它是电动车整体安全的重要组成部分。它有助于防止电池故障时火势蔓延,并保护电池组免受损坏。
就电池形状而言,方形电池占据市场主导地位。这是因为它们具有更高的能量密度、设计灵活性、更好的温度控管,而且成本效益越来越高。它们还具有比圆柱形电池更不容易膨胀、更容易堆迭和连接、并且在发生碰撞时损坏的风险更低的优势。这些优势使得方形电池成为电动车最受欢迎的电池形状。
根据车辆类型,乘用车市场占据主导地位,因为它是最普遍的。这是由于多种因素造成的,其中之一就是乘用车比其他类型的汽车更便宜,并且能提供更舒适、更便捷的驾驶体验。在电动车电池外壳市场中,由于乘用车市场对电动车的需求不断增长,预计乘用车领域的成长速度将快于其他领域。到2022年,全球销售的电动车中70%以上将是乘用车。电动乘用车的平均价格明显低于电动商用车或电动公车的平均价格。电动乘用车通常比其他类型的电动车运行得更安静、更平稳,并且内部空间更大、更舒适。此外,国际能源总署 (IEA) 预测,全球电动乘用车市场将从 2022 年的 660 万辆成长到 2030 年的 2,230 万辆。因此,预计乘用车领域将在未来几年继续占据市场主导地位。
从材料来看,铝业预计将显着成长。铝是电池外壳的理想选择,因为它重量轻、坚固且耐腐蚀。铝也相对便宜,因此对于电池外壳製造商来说是一种经济实惠的选择。此外,铝可回收,使其成为电池外壳的永续选择。回收铝比生产新铝所需的能源更少,从而减少了电动车对环境的影响。随着电动车需求的持续成长,铝电池外壳的需求预计也将成长。这是因为铝是电池外壳的首选材料,是一种经济高效且永续的选择。
从地区来看,亚太地区和日本预计将占据市场主导地位。这背后有几个因素。该地区对电动车的需求正在迅速增长,使其成为全球电动车普及率领先的地区之一,预计这一趋势将持续下去。该地区也是一些世界领先电池製造商的所在地,包括比亚迪、宁德时代和Panasonic。这些公司正在大力投资开发新电池技术,这推动了对电池外壳的需求。此外,该地区拥有製造复杂电池外壳所需的大量高技能劳动力,有助于增强公司的製造能力。此外,世界各国政府正在实施各种优惠政策来推动电动车的普及,也有助于扩大市场。由于这些综合因素,预计亚太地区和日本将继续引领电动车电池外壳市场。
本报告调查了全球电动车 (EV) 电池外壳市场,并总结了主要趋势、市场影响因素分析、法律制度、技术和专利趋势、案例研究、市场规模趋势和预测、各个细分市场、地区/主要国家的详细分析、竞争格局和主要企业的概况。
Electric Vehicle Battery Housing Market Overview
The global electric vehicle battery housing market is expected to grow at a CAGR of 14.27% during the forecast period from 2025 to 2034. The growth in the electric vehicle battery housing market is expected to be driven by growing demand for electric vehicles, charging infrastructure, the need for lightweighting materials, and better range, among others.
Introduction of Electric Vehicle Battery Housing
Electric vehicle battery housing is a structural component that encloses and protects the battery pack in an electric vehicle. It is also responsible for dissipating heat from the battery pack and preventing the spread of fire in the event of a battery failure. The battery housing is a critical component of an electric vehicle because it protects the battery pack from damage and helps to ensure the safety of the vehicle occupants. It is also important for the thermal management of the battery pack, which helps to improve the performance and lifespan of the battery. The battery housing is made of a variety of materials, including aluminum, steel, and plastic. The choice of material depends on the specific design requirements of the electric vehicle battery pack. It is typically designed to be lightweight, strong, and corrosion resistant. It is also important for the battery housing to be able to dissipate heat effectively. Therefore, it is an important part of the overall safety of an electric vehicle. It helps to prevent the spread of fire in the event of a battery failure and helps to protect the battery pack from damage.
Electric Vehicle Battery Housing Market Introduction
The electric vehicle battery housing market is a rapidly growing market due to the increasing demand for electric vehicles. The battery housing is a critical component of an electric vehicle, as it protects the battery pack from damage and helps to dissipate heat. The major players in the electric vehicle battery housing market are ThyssenKrupp AG, SGL Carbon, Nemak, Novelis Inc., Constellium SE, and Covestro AG, among others These companies are focusing on developing innovative battery housing solutions to meet the increasing demand for electric vehicles.
Industrial Impact of Electric Vehicle Battery Housing Market
The industrial impact of the electric vehicle battery housing market is significant. The market is growing rapidly due to the increasing demand for electric vehicles. This is driving growth in the automotive, electronics, and metal industries. The automotive industry is the largest consumer of electric vehicle battery housings. The demand for electric vehicles is increasing due to the rising concerns about environmental pollution and the increasing availability of government incentives for electric vehicles. This is expected to drive growth in the automotive industry, which is, in turn, driving growth in the electric vehicle battery housing market. The electronics industry is also a major consumer of electric vehicle battery housings. The advances in battery technology, such as the development of lithium-ion batteries, are making electric vehicles more affordable and practical. This is driving growth in the electronics industry, which is, in turn, driving growth in the electric vehicle battery housing market. The metal industry is also benefiting from the growth of the electric vehicle battery housing market. The battery housings are made of a variety of metals, including aluminum, steel, and plastic. The demand for these metals is increasing due to the growth of the electric vehicle battery housing market.
The industrial impact of the electric vehicle battery housing market is significant. The market is growing rapidly and is driving growth in the automotive, electronics, and metal industries. This is expected to continue in the coming years as the demand for electric vehicles continues to increase.
Electric Vehicle Battery Housing Market Segmentation:
Segmentation 1: by Cell Format
Prismatic Cells to Dominate the Electric Vehicle Battery Housing Market (by Cell Format)
Based on cell format, prismatic cells dominate the electric vehicle battery housing market because they have a higher energy density, flexible design, better thermal management, and are becoming more cost-effective. They are also less likely to swell, easier to stack and connect, and less likely to be damaged in a crash than cylindrical cells. These advantages make prismatic cells the preferred cell type for electric vehicles.
Segmentation 2: by Vehicle Type
Passenger Vehicles Segment to Grow at a Significant Growth Rate in the Electric Vehicle Battery Housing Market (by Vehicle Type)
Based on vehicle type, the passenger vehicles segment dominates the electric vehicle battery housing market because passenger vehicles are the most popular type of electric vehicle. This is due to a number of factors, including the fact that passenger vehicles are more affordable than other types of electric vehicles, and they offer a more comfortable and convenient driving experience. The passenger vehicles segment is expected to grow at a faster rate than other segments in the electric vehicle battery housing market due to the increasing demand for electric vehicles in the passenger car market. In 2022, passenger vehicles accounted for over 70% of all electric vehicles sold worldwide. The average price of an electric passenger car is significantly lower than the average price of an electric commercial vehicle or bus. Electric passenger cars are typically quieter and smoother than other types of electric vehicles, and they offer a more spacious and comfortable interior. Additionally, the International Energy Agency (IEA) predicts that the global market for electric passenger vehicles will grow from 6.6 million vehicles in 2022 to 22.3 million vehicles in 2030. As a result, the passenger vehicles segment is expected to continue dominating the electric vehicle battery housing market in the coming years.
Segmentation 3: by Material Type
Aluminum Segment to Grow Considerably in the Electric Vehicle Battery Housing Market (by Material Type)
Based on material type, the aluminum segment is expected to dominate the electric vehicle battery housing market because aluminum is a lightweight, strong, and corrosion-resistant material that is well-suited for use in battery housings. Aluminum is also relatively inexpensive, which makes it a cost-effective option for battery housing manufacturers. In addition, aluminum is recyclable, which makes it a sustainable choice for battery housings. The recycling of aluminum requires less energy than the production of new aluminum, which helps to reduce the environmental impact of electric vehicles. As the demand for electric vehicles continues to grow, the demand for aluminum battery housings is expected to grow as well. This is because aluminum is a well-suited material for battery housings, and it is a cost-effective and sustainable option.
Segmentation 4: by Battery Chemistry Type
Lithium-ion Segment to Dominate the Electric Vehicle Battery Housing Market (by Battery Chemistry Type)
The lithium-ion battery segment is expected to dominate the electric vehicle battery housing market because lithium-ion batteries are the most widely used type of battery in electric vehicles. This is due to a number of factors, including their high energy density, long lifespan, and relatively low cost. In addition, lithium-ion batteries are becoming increasingly popular in electric vehicles as they become more efficient and affordable. This is expected to drive the demand for lithium-ion battery housings, as these batteries need to be protected from the elements and from damage.
Segmentation 5: by Component Type
Bottom Cover Segment to Dominate the Electric Vehicle Battery Housing Market (by Component Type)
Based on component type, the bottom cover segment is expected to dominate the electric vehicle battery housing market because it is the most structurally important part of battery housing. The bottom cover provides structural support for the battery pack and protects it from other harsh elements. It also helps to dissipate heat from the battery pack and prevents it from overheating. Moreover, the bottom cover is typically made from a strong and durable material, such as aluminum or steel. This makes it more resistant to damage than other parts of the battery housing.
Segmentation 6: by Region
Based on region, Asia-Pacific and Japan region is expected to dominate the electric vehicle battery housing market due to a number of factors, including:
Recent Developments in the Electric Vehicle Battery Housing Market
Demand - Drivers, Limitations, and Opportunities
Electric Vehicle Battery Housing Market Demand Drivers: Increasing Demand for EVs Globally
The market for electric vehicle battery housings is being driven by the increasing demand for electric vehicles, rising environmental concerns, government incentives, and advances in EV battery technology. As the global electric vehicle market continues to grow, so will the demand for battery housings. These products are essential for the safe and efficient operation of electric vehicles, and they are also becoming more affordable as battery technology improves. There is a growing awareness of the need to reduce pollution, and electric vehicles are seen as a way to do this. Battery housings are essential for the safe and efficient operation of electric vehicles, which is anticipated to drive the demand for these products. Electric vehicles produce zero emissions, which is a major advantage over traditional gasoline-powered vehicles. This is expected to drive the demand for electric vehicles and in turn, the demand for battery housings.
Many governments are providing incentives for the adoption of electric vehicles, and this is also driving the demand for battery housing. These incentives make electric vehicles more affordable for consumers, and this is increasing the demand for these vehicles. For example, the U.S. government offers a tax credit of up to $7,500 for the purchase of an electric vehicle. This tax credit is a major incentive for consumers, and it is expected to drive the demand for electric vehicles.
Electric Vehicle Battery Housing Market Challenges: Lack of Standardization
The market for electric vehicle battery housings is facing a number of challenges, including the high cost of materials, lack of standardization, demand volatility, and competition from other materials. These challenges are making it difficult for manufacturers to produce battery housings that are affordable, compatible, and in demand. The materials used to manufacture battery housings, such as aluminum and steel, are relatively expensive. This is a major challenge for the market, as it can make battery housings a major cost component for electric vehicles.
Also, there is currently no standard for electric vehicle battery housings. This can make it difficult for manufacturers to design and produce battery housings that are compatible with different electric vehicles.
Electric Vehicle Battery Housing Market Opportunities: Housing with Integrated Cooling Systems
The market for electric vehicle battery housings is expected to grow significantly in the coming years, driven by the increasing demand for electric vehicles and the development of new battery technologies. Some of the key market opportunities and trends include:
How can this report add value to an organization?
Product/Innovation Strategy: Globally, the leading electric vehicle OEMs are continuously working to manufacture and sell vehicles with higher range.The growing need for affordable and high-performing electric vehicle battery housings is one of the major factors for the growth of the electric vehicle battery housing market. The market is more on the consolidated side at present, where electric vehicle battery housing manufacturers have been successful to a certain extent in strengthening their market position in the global market. However, with the rise of electric vehicles with better ranges, the existing established players are expected to face stiff competition from emerging players. Moreover, partnerships and collaborations are expected to play a crucial role in strengthening market position over the coming years, with the companies focusing on bolstering their technological capabilities and gaining a dominant market share in the electric vehicle battery housing industry.
Growth/Marketing Strategy: The electric vehicle battery housing market has been growing at a rapid pace. The market offers enormous opportunities for existing and emerging market players. Some of the strategies covered in this segment are mergers and acquisitions, product launches, partnerships and collaborations, business expansions, and investments. The strategies preferred by companies to maintain and strengthen their market position primarily include partnerships, agreements, and collaborations.
Competitive Strategy: The key players in the electric vehicle battery housing market analyzed and profiled in the study include steel suppliers, aluminium suppliers, plastics suppliers, electric vehicle battery housings manufacturers that develop, maintain, and market electric vehicle battery housings. Moreover, a detailed competitive benchmarking of the players operating in the electric vehicle battery housing market has been done to help the reader understand the ways in which players stack against each other, presenting a clear market landscape. Additionally, comprehensive competitive strategies such as partnerships, agreements, and collaborations are expected to aid the reader in understanding the untapped revenue pockets in the market.
Research Methodology
Factors for Data Prediction and Modeling
Electric Vehicle Battery Housing Market Estimation and Forecast
The market size for the electric vehicle battery housing market has been calculated through a mix of secondary research and primary inputs. A top-bottom approach has been followed to derive the quantitative information. The steps involved in the top-bottom approach are as follows:
Primary Research
The primary sources involve industry experts from the electric vehicle battery housing market, such as OEMs, system integrators, and component suppliers. Respondents such as CEOs, vice presidents, marketing directors, and technology and innovation directors have been interviewed to obtain and verify both qualitative and quantitative aspects of this research study.
The key data points taken from primary sources include:
Secondary Research
This research study involves the usage of extensive secondary research, directories, company websites, and annual reports. It also makes use of databases, such as Hoovers, Bloomberg, Businessweek, Factiva, and One-Source, to collect useful and effective information for an extensive, technical, market-oriented, and commercial study of the global market. In addition to the aforementioned data sources, the study has been undertaken with the help of other data sources and websites, such as www.weforum.org and www.trademap.org.
Secondary research was done in order to obtain crucial information about the industry's value chain, revenue models, the market's monetary chain, the total pool of key players, and the current and potential use cases and applications.
The key data points taken from secondary research include:
Key Players and Competition Synopsis in Electric Vehicle Battery Housing Market
The companies that are profiled have been selected based on inputs gathered from primary experts and analyzing company coverage, product portfolio, and market penetration.
Some of the prominent names in this market are:
Companies that are not a part of the aforementioned pool have been well represented across different sections of the report (wherever applicable).
Scope and Definition
Market/Product Definition
Key Questions Answered
Analysis and Forecast Note