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市场调查报告书
商品编码
1627664
偶联剂市场:预测(2025-2030)Coupling Agent Market - Forecasts from 2025 to 2030 |
偶联剂市场预计复合年增长率为4.28%,从2025年的609,309,000美元增长到2030年的751,207,000美元。
偶联剂是充当无机和有机成分之间桥樑的分子。它有两个末端:一个是与玻璃、金属氧化物和矿物质等无机成分形成化学键的无机亲和性和亲和性团。它是一种重要的成分,因为两者之间的化学键可以增强任何复合材料的性能。它广泛应用于复合材料、被覆剂和油漆、黏合剂和密封剂、橡胶和生物材料等领域。
偶联剂有几类,使用最多的是硅烷。其他类型的例子包括钛酸盐、锆酸盐和铝酸盐。偶联剂对于增强复合材料的长期应用的材料性能至关重要。它们是开发创新材料及其复合材料所需设备的一部分,提供强度和耐用性。先进材料和产品在众多领域中发挥重要作用。
偶联剂市场是一个快速成长的行业,受到汽车、建筑、电子、塑胶和橡胶等行业不断增长的需求的推动。高性能材料应用、环保偶联剂和奈米技术进步等新兴趋势预计将推动市场发展。复合材料使用量的增加、汽车和建筑行业的快速成长预计将为市场成长做出积极贡献。
偶联剂市场驱动因素
消费性电子产品、汽车和可再生能源的兴起将增加对电子和电气设备的需求,从而产生对新的先进材料和组件的需求。偶联剂还根据其功能特性进行开发,以提供更好的装置性能、可靠性和耐用性。它用于提高材料的电气性能和性能效率、电子元件的黏合强度和耐用性,减少故障的可能性并延长产品寿命。它还充当热感管理剂,透过散热防止过热来提高设备可靠性。
根据JEITA统计,2024年全球电子资讯技术产业产值预计为36,868亿美元,较2023年的33,826亿美元成长9%。同时,全球电子元件产值预计将再成长7%,从2023年的2,146亿美元增加到2024年的2,301亿美元。此外,这些试剂还具有防潮性,并保护电子元件免受湿度影响而腐蚀。随着对更小、更快、更有效率的设备的需求增加,偶联剂在实现这些进步中的作用变得越来越重要。
由于市场的快速发展、汽车工业的快速成长以及对可再生能源的需求不断增长,预计亚太地区将引领偶联剂市场。中国和印度等国家正在快速工业化。因此,汽车、建筑和电子等行业将蓬勃发展,导致这些国家对偶联剂的需求增加。根据IBEF关于印度承诺的资料,印度将在2025-2026年实现电子製造业3000亿美元、出口1200亿美元的总目标。
不断成长的汽车产业(需要改善轮胎和复合材料等零件的性能)和建筑业(特别是随着基础设施计划的增加)正在推动该地区的偶联剂市场。根据ITA 2024年4月资料,中国是全球最大的建筑市场。此外,「十四五」规划(2021-2025)预计将为新基础设施注入约27兆元人民币(4.2兆美元)。
此外,该地区对再生能源来源进行了大量投资,这些能源通常由依赖偶联剂的先进复合材料组成。偶联剂在中国得到了广泛的应用,因为中国在製造和技术进步方面的成长明显超过了全球整体。
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The coupling agent market is predicted to expand at a CAGR of 4.28% to account for US$751.207 million by 2030 from US$609.309 million in 2025.
A coupling agent is a molecule that works as the bridge between inorganic components and organic ones, which means between what is typically a non-metal and a carbon-based or organic element. It has two ends i.e., an inorganic-philic group that will be involved in forming chemical bonds with the inorganic components like glass, metal oxide, or minerals, and an organic-philic group that will be associated with organic materials such as polymers or resins. It is an important component because the chemical bond between the two sides has reinforced all composite material properties. They are widely used in applications such as composite materials, coatings and paints, adhesives and sealants, rubber, and biomaterials.
There are several categories of coupling agents, of these silanes being the most used. Examples of other types are titanates, zirconates, and aluminates. Coupling agents are fundamental to the performance of materials in strengthening composites for long-term service applications. They form parts of the devices required for innovative materials and their composite development, thus providing them with strength and durability. They play a great role in many areas and among the numerous fields of advanced materials and products.
The coupling agent market is a fast-growing industry, propelled by rising demands from sectors including automotive, construction, electronics, plastics, and rubber. Emerging trends in high-performance materials applications, environment-friendly coupling agents, and advances in nanotechnology would drive the market. The increasing composite material usage and the burgeoning automobile and construction industries will positively contribute to its market growth.
Coupling agent market drivers
Consumer electronics, vehicles, and increasingly renewable energy all create increased demand for electronics and electrical devices, resulting in the need for new advanced materials and components. Coupling agents also develop according to their functional characteristics, providing better device performance, reliability, and durability. They are used to improve the electrical properties and performance efficiency of materials, joint strength, and durability of electronic components; therefore, a reduced likelihood of failure is provided, translating into a lifetime increase for products. It works as a thermal management agent and improves device reliability, supported by heat dissipation features to prevent overheating.
According to JEITA statistics, the forecast value of global electronics and information technology industries for 2024 was US$3,686.8 billion, 9% more than the previous year, valued at US$3,382.6 billion in 2023. Meanwhile, global production of electronic components is estimated to rise further from US$2,146 hundred million in 2023 to US$2,301 hundred million in 2024, an increase of 7%. In addition, these agents provide moisture resistance, thereby protecting electronic components from damage due to corrosion owing to humidity effects. With the increasing demand for smaller, faster, more efficient devices, the role of coupling agents in enabling these advancements will become increasingly critical.
The Asia Pacific region is predicted to lead the market of coupling agents due to its rapidly developing industrial growth, the burgeoning automotive industry, and the rising need for renewable sources. Countries like China and India are undergoing rapid industrialization. Consequently, with industries such as automobile, construction, and electronics, the demand for coupling agents will rise in these countries. According to IBEF data on pledges from India, the country would attain a total target of US$300 billion in electronics manufacturing and US$120 billion in exports by 2025-26.
The growing automotive segment is demanding improved properties for components such as tires and composites, while construction is also increasing, especially in infrastructure projects, driving the regional coupling agent market. According to April 2024 ITA data, China has the largest construction market globally. Further, the 14th Five-Year Plan (2021-2025) was projected to pump about 27 trillion yuan ($4.2 trillion) in new infrastructure.
Additionally, investing in renewable energy sources is massive in this region, which usually consists of advanced materials and composites depending on coupling agents. Coupling agents are extensively used in China as it has grown significantly more than the entire world in terms of manufacturing and advancement in technology.
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