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市场调查报告书
商品编码
1753905
2025 年至 2033 年黏合促进剂市场报告(按类型、形式、应用、最终用途行业和地区)Adhesion Promoter Market Report by Type, Form, Application, End Use Industry, and Region 2025-2033 |
2024年,全球黏合促进剂市场规模达43亿美元。展望未来, IMARC Group预计到2033年,市场规模将达到63亿美元,2025-2033年期间的复合年增长率(CAGR)为4.2%。市场需求主要受以下因素驱动:汽车产业需求的不断增长、表面处理技术的持续改进,以及监管压力推动的向环保产品的持续转变。
附着力促进剂,又称为偶联剂,透过与有机聚合物和无机层之间的界面相互作用,提高两者之间的附着力。附着力促进剂在有机-无机界面之间起化学和物理作用,将这些不同的材料黏合在一起。因此,这些剂可以提高涂层和基材之间的附着强度。附着力促进剂可以改变界面处的物理和化学力,并在两者之间建立起相容性桥樑,从而增强附着力。此外,附着力促进剂还可以防止界面键结强度因各种环境因素(例如高温和潮湿)而减弱。除了增强涂料、油墨或黏合剂等无机基材与目标基材的附着力外,它们还可用于提高半导体的可靠性以及製造高性能聚合物和橡胶。
汽车产业需求不断成长
汽车产业对先进材料的需求不断增长,大大支撑了黏合促进剂市场份额的成长。由于黏合促进剂对于确保涂料、油漆和汽车零件之间(尤其是与聚丙烯和热塑性塑胶等轻质材料)的牢固黏合至关重要,因此它们被越来越多地用于满足燃油效率和排放标准。汽车产业向电动车 (EV) 的转变以及复合材料在汽车生产中的应用进一步增加了对先进黏合促进剂的需求。这些产品有助于保持耐用性和美观性,使其成为各种应用(包括内装、外饰部件和涂料)中必不可少的产品。随着全球汽车产业的持续创新,黏合促进剂市场预计将同步成长。
持续向环保和可持续的黏合促进剂转变
随着製造商日益注重开发环保永续产品,黏合促进剂市场规模不断扩大。在监管压力和环保意识增强的推动下,市场主要参与者正在研发能够最大程度减少有害排放、降低挥发性有机化合物 (VOC) 含量的黏合促进剂。与传统的溶剂型黏合促进剂相比,水性黏合促进剂因其对环境的影响较小,正受到越来越多的关注。此外,生物基聚合物的日益普及以及有害化学物质的减少是满足监管要求和消费者需求的关键策略。随着汽车、建筑和包装等行业采用更环保的实践,对永续黏合促进剂的需求预计将上升,从而促进创新并扩大市场。
表面处理技术的持续进步
表面处理技术创新是黏合促进剂市场分析报告中强调的关键因素。等离子处理和紫外线固化等表面改质技术的新发展,透过提高黏合促进剂与更广泛材料的相容性,增强了其性能。这些持续的进步使其在塑胶、复合材料和金属等具有挑战性的表面上具有更好的黏合性,这些表面广泛用于电子、航太和建筑等行业。该研究调查了将 NiTi 基形状记忆合金 (SMA) 整合到 GFRP 层压板中,利用热氧化、等离子处理和化学活化等表面处理。机械特性表明,SMA 产生的驱动应力为 100-700 MPa,超过液压执行器(20-70 MPa)和压电执行器(1-9 MPa)。此外,奈米技术与黏合促进剂配方的结合,透过提高其机械强度、抗环境因素能力和长期耐用性,增强了其有效性。随着各行业采用先进的製造技术,对高性能黏合促进剂的需求不断上升。
The global adhesion promoter market size reached USD 4.3 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 6.3 Billion by 2033, exhibiting a growth rate (CAGR) of 4.2% during 2025-2033. The market demand is primarily driven by the rising demand from the automotive sector, ongoing technological improvements in surface treatments, and a continual shift towards eco-friendly products driven by regulatory pressures.
Adhesion promoters, or coupling agents, improve adhesion between organic polymers and inorganic layers by interacting with the intersection of the two. Adhesion promoters act chemically and physically between organic-inorganic interfaces to bond these dissimilar materials together. Thus, these agents increase the adhesive strength between a coating and a substrate. By using adhesion promoters, physical and chemical forces are altered at the interface, and a compatibility bridge is built between them to increase adhesion. Moreover, adhesion promoters can prevent the bonds from being weakened by various environmental factors, such as heat and moisture. In addition to enhancing the adhesion of inorganic substrates, such as coatings, inks, or adhesives to the substrate of interest, they are used to increase the reliability of semiconductors and manufacture high-performance polymers and rubbers.
Growing Demand from the Automotive Industry
The rising need for advanced materials in the automotive sector is significantly supporting the growth of the adhesion promoter market share. Since adhesion promoters are crucial for ensuring strong bonding between coatings, paints, and automotive components, particularly with lightweight materials such as polypropylene and thermoplastics, they are increasingly used to meet fuel efficiency and emissions standards. The automotive industry's shift towards electric vehicles (EVs) and the use of composite materials in vehicle production further augments the need for advanced adhesion promoters. These products help maintain durability and aesthetic quality, making them essential in various applications, including interior and exterior parts, as well as coatings. As the global automotive sector continues to innovate, the market of adhesion promoters is expected to grow in parallel.
Ongoing Shift Towards Eco-Friendly and Sustainable Adhesion Promoters
The adhesion promoter market size is growing as manufacturers increasingly focus on developing eco-friendly and sustainable products. Driven by regulatory pressures and heightened environmental awareness, key players in the market are creating adhesion promoters that minimize harmful emissions and contain fewer volatile organic compounds (VOCs). Water-based adhesion promoters are gaining higher traction due to their reduced environmental impact compared to traditional solvent-based options. Additionally, the growing adoption of bio-based polymers and the reduction of hazardous chemicals are key strategies to meet regulatory requirements and consumer demand. As industries such as automotive, construction, and packaging adopt greener practices, the demand for sustainable adhesion promoters is expected to rise, fostering innovation, and expanding the market.
Continual Technological Advancements in Surface Treatment
Technological innovations in surface treatment are a crucial factor highlighted in the adhesion promoter market analysis report. New developments in surface modification techniques, such as plasma treatment and UV curing, are enhancing the performance of adhesion promoters by improving their compatibility with a broader range of materials. These ongoing advancements allow for better adhesion on challenging surfaces such as plastics, composites, and metals, which are used extensively across industries including electronics, aerospace, and construction. The study investigates the integration of NiTi-based shape memory alloys (SMAs) into GFRP laminates, utilizing surface treatments such as thermal oxidation, plasma treatment, and chemical activation. Mechanical characterizations showed SMAs generate actuation stress of 100-700 MPa, exceeding hydraulic actuators (20-70 MPa) and piezoelectric actuators (1-9 MPa). Additionally, the integration of nanotechnology in adhesion promoter formulations is augmenting their effectiveness by increasing their mechanical strength, resistance to environmental factors, and long-term durability. As industries adopt advanced manufacturing techniques, the demand for high-performance adhesion promoters continues to rise.