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市場調查報告書
商品編碼
1874286
行動機器人鋰電池:全球市場佔有率和排名、總收入和需求預測(2025-2031 年)Mobile Robot Lithium Battery - Global Market Share and Ranking, Overall Sales and Demand Forecast 2025-2031 |
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2024 年全球移動機器人鋰電池市場規模估計為 3.86 億美元,預計到 2031 年將成長至 6.6 億美元,2025 年至 2031 年的複合年成長率為 7.6%。
本報告對近期有關移動機器人鋰電池跨境產業佈局、資本配置模式、區域經濟相互依存以及供應鏈重組的關稅調整和國際戰略反制措施進行了全面評估。
移動機器人是能夠自動執行任務的機械裝置。它們透過軟體接收人類指令並執行預先編程的動作來控制自身運作。移動機器人主要包括服務型移動機器人和工業型移動機器人。電池是移動機器人最常使用的動力來源。鋰離子電池(Li-ion batteries)是一種可充電電池,它利用鋰離子(Li+)可逆地嵌入導電固體中來儲存能量。本報告重點介紹用於移動機器人的鋰電池產品。
移動機器人鋰電池市場的主要促進因素包括:
1. 對技術升級的需求:效能的顯著提升帶來了更廣泛的應用場景
對高能量密度和長壽命電池的需求
移動機器人(AGV、AMR 等)需要長時間連續運作,鋰電池的能量密度直接影響其工作效率。例如,寧德時代第三代 CTP 技術電池組的能量密度高達 250Wh/kg,比傳統電池高出 30%。這使得機器人運作12 小時以上,滿足倉儲物流、製造現場等高強度應用情境的需求。
快速充電技術減少運作
鋰電池快速充電技術(例如4C/6C倍率)可將充電時間從數小時縮短至15分鐘以內,從而提高機器人的運作效率。例如,比亞迪的「刀鋒電池」支援3C快充,充電10分鐘即可實現150公里的續航里程。這使其適用於機場行李運輸、醫院物資配送等高頻使用情境。
智慧型電池管理系統(BMS)
智慧電池管理系統(BMS)即時監控電壓、溫度和荷電狀態(SOC,即剩餘電量)等參數,最佳化充放電策略,進而延長電池壽命。例如,特斯拉4,680電池內建無線BMS,資料傳輸效率提升100倍,故障預測準確率超過95%,有助於降低機器人維修成本。
2. 市場需求爆炸性成長:滲透多個領域創造新的成長點
工業自動化技術的進步
倉儲物流:亞馬遜和京東等電商巨頭正在推廣「暗倉」建設,導致對 AGV(自動導引車)的需求激增。
製造業:工業4.0正在推動彈性生產線的普及,進而帶動了對自主移動機器人(AMR)需求的激增。例如,極客科技的AMR配備鋰電池,可全天候運作,助力汽車、電子等行業實現準時制(JIT)生產。
拓展服務業的應用場景
醫療配送:鈦金機器人的醫療物流機器人配備內建鋰電池,支援精準導航和無菌運輸,提高醫院營運效率。
特殊環境適應性要求
高低溫環境:鋰電池必須能夠承受-20°C至60°C的溫度範圍。例如,新萬達開發了一種耐低溫磷酸鋰鐵電池,在-20°C下仍能維持80%以上的放電率,使其適用於低溫運輸物流和極地科學研究等情境。
防爆和防水要求:採礦機器人必須符合 IP68 防護標準,鋰電池必須通過 UL913 防爆認證,以確保在惡劣環境下的安全。
3. 政策支援:透過全球策略促進產業標準化
新能源政策獎勵
中國:十四五規劃明確支持新能源與智慧製造的融合發展,為鋰電池生產商提供稅收優惠和研發補貼。例如,寧德時代已獲得超過10億元的研發資金,用於將電池能量密度提升至300Wh/kg以上。
歐盟:「電池法規」將要求從 2027 年起,所有在歐洲銷售的電池都必須標註其碳足跡,迫使企業採用綠色生產流程,減少鋰電池生命週期對環境的影響。
提高業界標準
安全標準:UL、IEC 和其他組織發布了鋰電池安全標準(例如 UL 2580),要求電池通過過充、短路和針刺測試,以降低機器人運作期間的風險。
性能認證:中國電子技術標準化研究院發布了《移動機器人用鋰離子電池安全技術規範》,對電池容量、循環壽命等指標進行了規範,提高了市場進入門檻。
移動機器人鋰電池市場的促進因素呈現出「技術、需求、政策和成本」四個維度的相互交織效應。隨著能量密度的提升、快充技術的普及、政策標準的完善以及成本的持續下降,鋰電池將從“性能瓶頸”轉變為“效率引擎”,推動移動機器人滲透到更廣泛的應用場景,並成為智慧製造和智慧服務領域的核心基礎設施。
本報告旨在對全球移動機器人鋰電池市場按地區/國家、類型和應用進行全面分析,重點關注總銷售量、收入、價格、市場佔有率和主要企業的排名。
本報告以2024年為基準年,按銷量(千台)和收入(百萬美元)對行動機器人鋰電池市場規模、估算和預測進行了呈現,並涵蓋了2020年至2031年的歷史數據和預測數據。報告採用定量和定性分析相結合的方法,幫助讀者制定移動機器人鋰電池業務和成長策略,評估競爭格局,分析自身在當前市場中的地位,並做出明智的商業決策。
市場區隔
公司
按類型分類的細分市場
應用領域
按地區
The global market for Mobile Robot Lithium Battery was estimated to be worth US$ 386 million in 2024 and is forecast to a readjusted size of US$ 660 million by 2031 with a CAGR of 7.6% during the forecast period 2025-2031.
This report provides a comprehensive assessment of recent tariff adjustments and international strategic countermeasures on Mobile Robot Lithium Battery cross-border industrial footprints, capital allocation patterns, regional economic interdependencies, and supply chain reconfigurations.
Mobile Robot is a machine device that performs work automatically. It can accept human command and run pre-programmed programs and control actions through software. It mainly includes service mobile robots and industrial mobile robots. Batteries are the most common power source for mobile robots. A lithium-ion or Li-ion battery is a type of rechargeable battery that uses the reversible intercalation of Li+ ions into electronically conducting solids to store energy. The report focuses on the mobile robot lithium battery products.
The driving factors of the mobile robot lithium battery market mainly include:
1. Demand for technology upgrade: performance breakthrough drives the expansion of application scenarios
Demand for high energy density and long battery life
Mobile robots (such as AGV/AMR) need to work continuously for a long time, and the energy density of lithium batteries directly affects their work efficiency. For example, the third-generation CTP technology battery pack launched by CATL has an energy density of 250 Wh/kg, which is 30% higher than traditional batteries. It supports the robot to run continuously for more than 12 hours and meets the needs of high-intensity scenarios such as warehousing logistics and manufacturing.
Fast charging technology shortens downtime
Lithium battery fast charging technology (such as 4C/6C rate) shortens the charging time from several hours to less than 15 minutes, improving the operating efficiency of robots. For example, BYD's "blade battery" supports 3C fast charging, charging for 10 minutes and a battery life of 150 kilometers, which is suitable for high-frequency scenarios such as airport baggage transportation and hospital material distribution.
Intelligent battery management system (BMS)
Intelligent BMS optimizes charging and discharging strategies and extends battery life by real-time monitoring of parameters such as voltage, temperature, SOC (remaining power) and so on. For example, Tesla's 4680 battery integrates a wireless BMS, which increases data transmission efficiency by 100 times, and the accuracy of fault prediction exceeds 95%, reducing robot maintenance costs.
2. Market demand explosion: Multi-field penetration creates incremental space
Industrial automation upgrade
Warehousing and logistics: E-commerce giants (such as Amazon and JD.com) promote the construction of "dark warehouses", and the demand for AGVs surges.
Manufacturing: Industry 4.0 promotes the popularization of flexible production lines, and the demand for AMR (autonomous mobile robots) explodes. For example, Geek+ AMR is equipped with lithium batteries, supports 24-hour continuous operation, and helps the automotive, electronics and other industries to achieve JIT (just-in-time) production.
Service industry application scenario expansion
Medical delivery: Titanium robot medical logistics robots are built-in lithium batteries, support precise navigation and sterile transportation, and improve hospital operation efficiency.
Special environmental adaptability requirements
High temperature/low temperature scenarios: Lithium batteries need to withstand a temperature difference of -20°C to 60°C. For example, Xinwanda has developed a low-temperature resistant lithium iron phosphate battery with a discharge retention rate of over 80% at -20°C, which is suitable for cold chain logistics, polar scientific research and other scenarios.
Explosion-proof/waterproof requirements: Mining robots must meet the IP68 protection level, and lithium batteries must pass the UL913 explosion-proof certification to ensure safety in extreme environments.
3. Policy support: Global strategy promotes industry standardization
New energy policy incentives
China: The "14th Five-Year Plan" clearly supports the integrated development of new energy and intelligent manufacturing, and provides tax breaks and R&D subsidies to lithium battery companies. For example, CATL has received more than 1 billion yuan in R&D funds to promote battery energy density to exceed 300 Wh/kg.
EU: Through the "Battery Regulation", all batteries sold in Europe must be marked with carbon footprints from 2027, forcing companies to adopt green production processes and reduce the environmental impact of lithium battery life cycle.
Industry standards are improved
Safety specifications: UL, IEC and other institutions have issued lithium battery safety standards (such as UL 2580), requiring batteries to pass overcharge, short circuit, acupuncture and other tests to reduce the risk of robot operations.
Performance certification: China Electronics Technology Standardization Institute issued the "Safety Technical Specifications for Lithium-ion Batteries for Mobile Robots", which regulates indicators such as battery capacity and cycle life, and raises the market entry threshold.
The driving factors of the mobile robot lithium battery market present a four-dimensional linkage effect of "technology-demand-policy-cost". With the improvement of energy density, the popularization of fast charging technology, the improvement of policy standards and the continuous decline in costs, lithium batteries will change from a "performance bottleneck" to an "efficiency engine", promoting the penetration of mobile robots into a wider range of scenarios and becoming the core infrastructure in the fields of intelligent manufacturing and smart services.
This report aims to provide a comprehensive presentation of the global market for Mobile Robot Lithium Battery, focusing on the total sales volume, sales revenue, price, key companies market share and ranking, together with an analysis of Mobile Robot Lithium Battery by region & country, by Type, and by Application.
The Mobile Robot Lithium Battery market size, estimations, and forecasts are provided in terms of sales volume (K Units) and sales revenue ($ millions), considering 2024 as the base year, with history and forecast data for the period from 2020 to 2031. With both quantitative and qualitative analysis, to help readers develop business/growth strategies, assess the market competitive situation, analyze their position in the current marketplace, and make informed business decisions regarding Mobile Robot Lithium Battery.
Market Segmentation
By Company
Segment by Type
Segment by Application
By Region
Chapter Outline
Chapter 1: Introduces the report scope of the report, global total market size (value, volume and price). This chapter also provides the market dynamics, latest developments of the market, the driving factors and restrictive factors of the market, the challenges and risks faced by manufacturers in the industry, and the analysis of relevant policies in the industry.
Chapter 2: Detailed analysis of Mobile Robot Lithium Battery manufacturers competitive landscape, price, sales and revenue market share, latest development plan, merger, and acquisition information, etc.
Chapter 3: Provides the analysis of various market segments by Type, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different market segments.
Chapter 4: Provides the analysis of various market segments by Application, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different downstream markets.
Chapter 5: Sales, revenue of Mobile Robot Lithium Battery in regional level. It provides a quantitative analysis of the market size and development potential of each region and introduces the market development, future development prospects, market space, and market size of each country in the world.
Chapter 6: Sales, revenue of Mobile Robot Lithium Battery in country level. It provides sigmate data by Type, and by Application for each country/region.
Chapter 7: Provides profiles of key players, introducing the basic situation of the main companies in the market in detail, including product sales, revenue, price, gross margin, product introduction, recent development, etc.
Chapter 8: Analysis of industrial chain, including the upstream and downstream of the industry.
Chapter 9: Conclusion.