电池热失控蔓延阻隔材料市场
电池热失控蔓延阻隔材料市场:2026年市场规模约为8亿美元,2031年市场规模约为13.5亿美元;预测期复合年增长率为10.85%;当前最大市场为亚太地区;增长最快的市场为亚太地区。
市场研究正文
规模、增长、细分、驱动因素与关键问题
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核心结论
电池热失控蔓延阻隔材料市场:2026年市场规模约为8亿美元,2031年市场规模约为13.5亿美元;预测期复合年增长率为10.85%;当前最大市场为亚太地区;增长最快的市场为亚太地区。
市场走势
结构化指标
| 指标 | 年份 | 数值 | 性质 |
|---|---|---|---|
| 复合年增长率 | 2031 | 10.85% | 机构预测 |
| 市场规模 | 2026 | USD 0.8 billion | 机构预测 |
| 市场规模 | 2031 | USD 1.35 billion | 机构预测 |
细分市场份额
市场结构
| 维度 | 细分项 | 年份 | 份额 |
|---|---|---|---|
| application | electric vehicles | 2025 | 60.400% |
| battery_chemistry | Nickel Manganese Cobalt (NMC) and Nickel Cobalt Aluminum (NCA) batteries | 2025 | 37.060% |
| form_type | sheets and pads | 2025 | 34.310% |
| geography | Asia-Pacific | 2025 | 44.470% |
| material_type | mica | 2025 | 34.180% |
关键结论
- application 维度中,electric vehicles 在 2025 年的公开份额为 60.4%。
- battery_chemistry 维度中,Nickel Manganese Cobalt (NMC) and Nickel Cobalt Aluminum (NCA) batteries 在 2025 年的公开份额为 37.06%。
- form_type 维度中,sheets and pads 在 2025 年的公开份额为 34.31%。
- geography 维度中,Asia-Pacific 在 2025 年的公开份额为 44.47%。
- material_type 维度中,mica 在 2025 年的公开份额为 34.18%。
主要参与者
- Aspen Aerogels, Inc.
- 3M
- Morgan Advanced Materials plc
- Saint-Gobain
- Rogers Corporation
增长驱动因素
| 因素 | 影响 CAGR | 地区相关性 | 影响周期 |
|---|---|---|---|
| Mandatory Thermal Propagation Compliance in China and North America | +2.800% | China (primary), North America (co-primary), spill-over to EU | Short term (≤ 2 years) |
| Battery Pack Densification Through Cell-to-Pack and Cell-to-Body Architectures | +1.900% | Global, led by China, South Korea, and EU | Short term (≤ 2 years) |
| Rising Energy Density and Faster Charging Requirements | +1.500% | Global, led by China, Germany, and United States | Medium term (2-4 years) |
| Expansion of Grid-Scale Battery Energy Storage Systems | +1.300% | APAC core, spill-over to North America and EU | Short to Medium term (≤ 4 years) |
| Integration of Thermal, Mechanical and Electrical Protection in Single Components | +0.900% | Global, led by EU and North America | Medium term (2-4 years) |
| Qualification Demand for Low-Weight, Thin and Moldable Barrier Systems | +0.700% | Global, led by China, Germany, and Japan | Medium term (2-4 years) |
市场制约因素
| 因素 | 影响 CAGR | 地区相关性 | 影响周期 |
|---|---|---|---|
| High Cost of Aerogel and Advanced Multilayer Barrier Systems | -1.800% | Global; most acute in cost-sensitive Asia-Pacific OEM segments | Short term (≤ 2 years) |
| Lengthy OEM Qualification and Validation Cycles | -1.200% | Global; most acute in EU and North America | Medium term (2-4 years) |
| Material Performance Trade-Offs Under Compression, Venting and Crash Loads | -0.800% | Global, led by EU (UNECE R100.3 combined crash/thermal requirements) | Medium term (2-4 years) |
| Recycling, End-of-Life Separation and Material Traceability Constraints | -0.500% | EU (Battery Regulation 2023/1542), China, expanding globally | Long term (≥ 4 years) |
报告关注的关键问题
What is the size of the battery thermal runaway propagation barrier materials market?
The battery thermal runaway propagation barrier materials market stands at USD 0.80 billion in 2026 and is projected to reach USD 1.35 billion by 2031.
Which material type led the market share in 2025?
Mica led the material type with a 34.18% market share in 2025, supported by thermal resistance, dielectric performance, and cost competitiveness.
Which application is expected to grow fastest through 2031?
Battery energy storage systems are forecast to grow at a 12.13% CAGR through 2031 because rack-level safety conditions require specialized barriers.
Why are coatings gaining importance in battery packs?
Coatings are forecast to grow at an 11.71% CAGR through 2031 because they can be applied directly to cell surfaces in cell-to-pack and cell-to-body designs.
市场概览
- 增长最快市场:亚太地区
- 最大市场:亚太地区
- 市场集中度:低
查看来源:Mordor Intelligence