市場調查報告書
商品編碼
1587670
到 2030 年金屬鋰電池外殼市場預測:按電池類型、材料、製造流程、應用和地區進行的全球分析Metal Li-based Battery Casing Market Forecasts to 2030 - Global Analysis By Battery Type (Lithium-ion Lithium-metal and Other Battery Types), Material, Manufacturing Process, Application and By Geography |
根據Stratistics MRC預測,2024年全球金屬鋰基電池殼市場規模將達到7.944億美元,並在預測期內以20.0%的複合年成長率成長,到2030年將達到23.7206億美元。
金屬鋰電池外殼是指由鋁、鋼等各種金屬製成的容納鋰電池的保護機殼。這些外殼可保護電池免受環境因素、機械衝擊和潮濕的影響,在確保電池安全和長壽命方面發揮重要作用。此外,金屬外殼增強了溫度控管並在運行過程中實現有效散熱,這對於電動車和航太等高性能應用尤其重要。
國際能源總署題為《2020年電動車展望》的研究顯示,2019年電動乘用車保有量持續成長,達到720萬輛,比2018年成長40%。
家用電子電器的採用率提高
隨著智慧型手機、筆記型電腦和平板電腦等家用電子電器產品的日益普及,對耐用且輕巧的電池盒的需求變得至關重要。金屬外殼提供了對機械衝擊和熱現象的重要保護,確保了鋰電池的安全性和使用壽命。此外,電池技術的進步和能量密度的提高進一步增加了對堅固金屬外殼的需求,並促進了它們在現代電子設備中的使用。這一趨勢與對永續性和能源效率的更廣泛關注相一致,最終擴大了市場成長。
材料和生產成本高
這些情況所需的特殊金屬合金通常很昂貴,特別是那些具有高強度和輕質特性的合金。此外,精密鑄造、機械加工、表面處理等複雜的製造流程也提高了整體製造成本。這些高成本可能會限制金屬外殼的廣泛使用,特別是在家用電子電器產品等成本敏感的應用中。雖然金屬外殼具有巨大的性能優勢,但與塑膠外殼等更實惠的替代品相比,其高價位可能成為競爭障礙。
輕質金屬合金的進展
鋁和鎂等輕質金屬合金的進步提供了卓越的強度重量比,並允許生產更薄、更輕的外殼。這種重量的減輕與提高電池的能量密度和延長其續航里程直接相關,這對於電動車和攜帶式電子設備尤其重要。此外,許多輕質金屬合金具有高度可回收性,這增加了電池產業對永續和環保解決方案的重視。隨著對高性能、高能量密度和永續電池的需求持續飆升,電池盒中輕質金屬合金的採用預計將推動市場的顯著成長。
與替代材料的競爭
例如,基本案例具有成本更低、重量更輕和靈活性更高等優點。這些材料越來越受到家用電子電器和穿戴式裝置的青睞。此外,陶瓷基本案例具有良好的熱穩定性和防火性,使其適合高性能應用並受到歡迎。金屬外殼具有卓越的結構完整性和導熱性,但其高成本和重量可能會限制其在某些應用中的採用。隨著這些替代材料不斷進步並變得更具成本效益,它們對金屬基本案例的優越性構成了重大挑戰,並阻礙了市場成長。
COVID-19 的影響
COVID-19 大流行擾亂了供應鏈並導致生產和分銷延遲,對金屬鋰電池盒市場產生了重大影響。製造設施面臨關閉,導致產量減少和成本增加。然而,隨著消費者和產業優先考慮永續性,這種流行病也可能加速電動車和可再生能源儲存解決方案的採用,從而推動未來對堅固電池盒的需求。隨著製造業的恢復和清潔能源技術需求的增加,市場預計將復甦。
預計鋼鐵業將在預測期內成為最大的產業
由於高強度、耐用性和良好的導熱性,預計鋼鐵業在預測期內將佔據最大的市場佔有率。這些特性對於保護電池免受機械損壞、散熱和確保最佳性能至關重要。此外,鋼材用途廣泛且具有成本效益,使其成為各種電池應用的可行選擇。隨著對高性能和可靠電池的需求持續成長,特別是在汽車和能源儲存領域,鋼鐵業處於有利地位,可以利用這一趨勢並為整體市場成長做出貢獻。
預計汽車領域在預測期內複合年成長率最高
由於高性能、高可靠性和高耐用性的電池盒,汽車領域預計在預測期內將出現最高的市場複合年成長率。金屬外殼,特別是鋁和鋼外殼,具有優異的機械強度、導熱性和電磁屏蔽性能,使其成為電動車電池組的理想選擇。這些外殼可保護電池免受外部衝擊、振動和潮濕的影響,確保最佳性能和使用壽命。
預計亞太地區在預測期內將佔據最大的市場佔有率,因為對鋰離子電池的需求直接推動了對堅固、高效外殼的需求。中國、日本、韓國和印度等國家處於電動車和可再生能源採用的前沿。金屬外殼,特別是鋁和鋼,可提供卓越的保護、溫度控管和結構完整性,使其成為這些應用的惡劣條件的理想選擇。此外,隨著亞太地區繼續引領世界轉向永續能源解決方案,對金屬鋰電池盒的需求預計將大幅成長。
預計北美地區在估計和預測期間將實現最高成長率。該地區的汽車產業正在蓬勃發展,尤其是對電動車 (EV) 的需求不斷成長。嚴格的排放法規和消費者對環保汽車日益成長的偏好進一步推動了市場的發展。此外,主要汽車製造商的存在以及強大的電池材料和零件供應鏈也有助於市場成長。
According to Stratistics MRC, the Global Metal Li-based Battery Casing Market is accounted for $794.4 million in 2024 and is expected to reach $2372.06 million by 2030 growing at a CAGR of 20.0% during the forecast period. Metal lithium-based battery casing refers to protective enclosures made from various metals, such as aluminium or steel that house lithium batteries. These casings play a crucial role in ensuring the safety and longevity of batteries by shielding them from environmental factors, mechanical shocks, and moisture. Additionally, metal casings enhance thermal management, allowing for effective heat dissipation during operation, which is particularly important in high-performance applications such as electric vehicles and aerospace.
The inventory of electric passenger cars continued to grow in 2019, reaching 7.2 million units, 40% more than in 2018, according to research by the International Energy Agency titled "The EV Outlook 2020."
Increased adoption in consumer electronics
Increased adoption of consumer electronics such as smartphones, laptops, and tablets, continues to rise, the need for durable and lightweight battery casings becomes paramount. Metal casings provide essential protection against mechanical shocks and thermal events, ensuring the safety and longevity of lithium batteries. Additionally, advancements in battery technology and the push for higher energy densities further enhance the necessity for robust metal casings, promoting their use in modern electronic devices. This trend aligns with a broader focus on sustainability and energy efficiency, ultimately expanding the growth of the market.
High material and production costs
The specialized metal alloys required for these casings are often expensive, particularly those with high strength and lightweight properties. Additionally, the intricate manufacturing processes involved, including precision casting, machining, and surface treatments, add to the overall production cost. These high costs can limit the widespread adoption of metal casings, especially in cost-sensitive applications like consumer electronics. While metal casings offer superior performance benefits, their higher price point can hinder their competitiveness compared to more affordable alternatives like plastic casings.
Advancements in lightweight metal alloys
Advancements in lightweight metal alloys such as aluminium and magnesium, offer superior strength-to-weight ratios, enabling the production of thinner and lighter casings. This reduction in weight directly translates to increased battery energy density and extended range, particularly crucial for electric vehicles and portable electronics. Additionally, many lightweight metal alloys are highly recyclable, aligning with the growing emphasis on sustainable and environmentally friendly solutions in the battery industry. As the demand for high-performance, energy-dense, and sustainable batteries continues to soar, the adoption of lightweight metal alloys for battery casings is poised to drive substantial market growth.
Competition from alternative materials
Polymer-based casings, for instance, offer advantages like lower cost, lighter weight, and improved flexibility. These materials are increasingly favoured in consumer electronics and wearable devices. Additionally, ceramic-based casings are gaining traction due to their excellent thermal stability and fire resistance, making them suitable for high-performance applications. While metal casings offer superior structural integrity and thermal conductivity, their higher cost and weight can limit their adoption in certain applications. As these alternative materials continue to advance and become more cost-effective, they pose a substantial challenge to the dominance of metal-based casings, hindering market growth.
Covid-19 Impact
The COVID-19 pandemic significantly impacted the Metal Lithium-based Battery Casing Market by disrupting supply chains and causing delays in production and distribution. Manufacturing facilities faced shutdowns, leading to reduced output and increased costs. However, the pandemic also accelerated the adoption of electric vehicles and renewable energy storage solutions as consumers and industries prioritized sustainability, potentially driving future demand for robust battery casings. The market is expected to recover as manufacturing resumes and demand increases for clean energy technologies.
The steel segment is expected to be the largest during the forecast period
The steel segment is projected to account for the largest market share during the projection period, due to high strength, durability, and excellent thermal conductivity. These properties are crucial for protecting battery cells from mechanical damage, dissipating heat, and ensuring optimal performance. Additionally, steel is widely available and cost-effective, making it a viable option for various battery applications. As the demand for high-performance and reliable batteries continues to grow, especially in the automotive and energy storage sectors, the steel segment is well-positioned to capitalize on this trend and contribute to the overall growth of the market.
The automotive segment is expected to have the highest CAGR during the forecast period
The automotive segment is projected to have the highest CAGR in the market during the extrapolated period, due to high-performance, reliable, and durable battery casings. Metal casings, particularly those made from aluminium and steel, offer superior mechanical strength, thermal conductivity, and electromagnetic shielding properties, making them ideal for EV battery packs. These casings protect the battery cells from external shocks, vibrations, and moisture, ensuring optimal performance and longevity.
The Asia Pacific region is projected to account for the largest market share during the forecast period due to demand for lithium-ion batteries is directly fuelling the need for robust and efficient casings. Countries like China, Japan, South Korea, and India are at the forefront of electric vehicle and renewable energy adoption. Metal casings, particularly aluminium and steel, offer superior protection, thermal management, and structural integrity, making them ideal for the demanding conditions of these applications. Additionally, as the Asia Pacific region continues to lead the global shift towards sustainable energy solutions, the demand for metal Li-based battery casings is set to experience significant expansion.
During the estimation period, the North America region is forecasted to record the highest growth rate, by the region's strong automotive industry, particularly the growing demand for electric vehicles (EVs). The stringent emission norms and increasing consumer preference for eco-friendly vehicles are further propelling the market. Additionally, the presence of major automotive manufacturers and a robust supply chain for battery materials and components contribute to the market's growth.
Key players in the market
Some of the key players profiled in the Metal Li-Based Battery Casing Market include Samsung SDI Co., Ltd., LG Energy Solution, Panasonic Corporation, BYD Company Ltd., Contemporary Amperex Technology Co., Ltd. (CATL), Tesla, Inc., GS Yuasa Corporation, Envision AESC Group Ltd., Amperex Technology Limited (ATL), SK Innovation Co., Ltd., EnerSys, Saft Groupe S.A. (TotalEnergies), Hitachi Chemical Co., Ltd., Johnson Controls International plc, Mitsubishi Chemical Corporation, Varta AG, Murata Manufacturing Co., Ltd., Renata SA, Toshiba Corporation and Northvolt AB.
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