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市場調查報告書
商品編碼
1308666
2030 年先進功能材料市場預測 - 按類型、最終用戶和地區劃分的全球分析Advanced Functional Materials Market Forecasts to 2030 - Global Analysis By Type (Composites, Energy Materials, Nanomaterials, Ceramics, Conductive Polymers and Other Types), End User and By Geography |
先進功能材料是具有高機械強度、耐腐蝕、柔韌性以及高熱穩定性和化學穩定性等優異品質的高級物質。 陶瓷、納米材料、複合材料、導電聚合物等多種物質的集合體被稱為先進功能材料。 由於其優越的性能,先進功能材料在醫療保健、電子、航空航天和汽車等多個最終用途行業中具有廣泛的應用。
根據 OICA 的數據,亞太地區目前是世界上最大的汽車生產國。 中國是全球最大的汽車生產國,2021年生產汽車2608萬輛,較2020年增長3%。
納米技術的核、生物和化學檢測的發展可用於軍事和國防應用。 此外,納米技術還將提高車輛性能,減少所需的軍事人員數量,並降低士兵在戰場上的危險。 預計投資和飛機訂單的增加將推動航空航天和國防行業在預測期內大幅擴張。
技術進步預計將限制高功能內容市場進入者的增長,同時缺乏滿足客戶需求的擴展能力。 此外,製造先進功能材料的製造過程相當昂貴。 由於缺乏眾多製造商,先進功能材料的成本往往昂貴,這也是限制市場增長的主要問題。
由於其優異的性能,例如強大的耐腐蝕和抗彎曲能力,現代功能材料越來越多地被應用於各個行業,作為塑料和金屬的替代品。 優異的耐熱性、物理穩定性、化學惰性和強電性能使其成為塑料和金屬的更好替代品。 這些特性,加上它們在電氣/電子、汽車、醫療保健和其他行業的廣泛應用,正在刺激市場擴張。
需要現代化的生產設施來確保先進功能材料的質量,但低收入國家尚無力承擔。 此外,其高成本限制了其進口用於其他行業,從而增加了最終產品的價格。 含有尖端功能材料的最終產品價格相對較高,預計將阻礙價格上漲。
新冠肺炎 (COVID-19) 疫情的爆發已導致全國大部分地區的生產設施關閉。 結果,對先進功能材料,特別是導電聚合物和納米材料的需求大幅下降,限制了全球市場的增長。 複合功能材料也廣泛應用於電氣/電子和汽車行業。 智能手機和其他電子設備的產量大幅下降。
納米材料領域預計將實現利潤豐厚的增長。 納米粒子特別是碳納米材料由於其導熱、導電、耐用、高強度、高彈性、高長徑比、場發射、高吸收等特性,在汽車和航空工業中得到廣泛應用。 此外,由於納米材料在醫療保健領域納米醫學領域的使用不斷增加,該市場可能會迅速增長。
電子和電氣行業預計在預測期內將以最快的複合年增長率增長。 納米材料、導電聚合物和高性能陶瓷都對該領域做出了重大貢獻。 此外,預計將為航空航天和汽車應用領域採用最先進的尺寸複合材料生產特種產品的研發投資打開新的大門。 擴大結合兩種或多種材料的新型功能複合材料的使用,可以保持行業參與者正在開發的獨特品質。
在預測期內,由於電子和汽車行業對這些材料的需求量很大,預計亞太地區將佔據最大的市場份額。 由於該地區以製造業為基礎的經濟,對各種新型功能材料的需求大幅增加。 需求增長是由航空航天、塗料和化學品、基礎設施和汽車等終端用戶行業的擴大推動的。
由於發達國家醫療保健和製造業的快速增長,預計歐洲在預測期內將呈現最高的複合年增長率。 由於汽車產品的需求不斷增長以及多家家用電器製造商的存在,先進功能材料市場預計將在整個預測期內擴大。 航空航天和國防工業投資的增加增加了該地區對創新功能材料的需求。
2022 年 11 月,科思創股份公司開發了適用於汽車應用的功能材料解決方案。 這種創新材料可用於汽車內飾,以滿足汽車行業不斷變化的需求。
According to Stratistics MRC, the Global Advanced Functional Materials Market is accounted for $119.5 billion in 2023 and is expected to reach $257.6 billion by 2030 growing at a CAGR of 11.5% during the forecast period. Advanced functional materials are premium substances with exceptional qualities like high mechanical strength, corrosion resistance, flexibility, and high thermal & chemical stability. A set of diverse substances, including ceramics, nanomaterials, composites, and conductive polymers, are referred to as advanced functional materials. Advanced functional materials offer a wide range of applications in several end-use industries, including healthcare, electronics, aerospace, automobile, and others, due to their excellent qualities.
According to the OICA, Asia-Pacific dominated global automobile production recently. China is the largest producer of automobiles globally, with a production volume of 26.08 million automobiles in 2021, which shows an increase of 3% compared with 2020.
The development of nuclear, biological, and chemical detection by nanotechnology is helpful for military and defence applications. Additionally, nanotechnology increases vehicle performance, lowers the number of military personnel needed, and lessens dangers to troops on the battlefield. Increasing investments and aircraft orders are predicted to cause the aerospace and defence sector to expand significantly throughout the forecast period.
It is anticipated that technical advancement together with a lack of expansion capacity to meet customer demand will restrict the growth of market participants for advanced functional content. Additionally, the manufacturing procedure to create advanced functional materials is somewhat pricey. The cost of advanced functional materials tends to be expensive due to the lack of many manufacturers, which also becomes a major issue restricting the market's growth.
Due to their remarkable qualities, such as strong resistance to corrosion and bending, modern functional materials are being used more and more in a variety of industries as a replacement for plastics and metals. They are a better alternative to plastics and metals due to their superior heat resistance, physical stability, chemical inertness, and strong electrical characteristics. These characteristics, together with the material's widespread use in the electrical & electronics, automotive, healthcare, and other industries, are fueling market expansion.
Modern production facilities are needed to ensure the quality of advanced functional materials, which low-income nations still cannot afford. Additionally, due to their high cost, the import of such materials for use in other industries is restricted, which raises the final product's price. It is anticipated that the increase will be hampered by the relatively high cost of finished goods that contain cutting-edge functional materials.
Due to the COVID-19 outbreak, manufacturing facilities have been shut down across the majority of the country. As a result, demand for advanced functional materials has drastically declined, especially conductive polymers and nanomaterials, which has restricted the global market's growth. Additionally, the electric and electronics industries as well as the automobile industries make extensive use of complex functional materials. Production of smartphones and other electronic devices dropped significantly.
The nanomaterials segment is estimated to have a lucrative growth. Due to their thermal conductivity, electrical conductivity, durability, high strength and elasticity, high aspect ratio, field emissions, and high absorbent qualities, nanoparticles, particularly carbon nanomaterials, are widely used in the automotive and aviation industries. Additionally, the market is likely to rise faster due to the expanding use of nanomaterials in the field of nanomedicine in the healthcare sector.
The electronics & electrical segment is anticipated to witness the fastest CAGR growth during the forecast period. Nanomaterials, conductive polymers, and sophisticated functional ceramics all make major contributions to this sector. Additionally, it is anticipated that R&D investments in the production of specialised products employing cutting-edge dimensional composites for aerospace and vehicles would open up a new doorway. Expanding the use of novel functional composites made by combining two or more materials preserves the unique qualities that industry players are developing.
Asia Pacific is projected to hold the largest market share during the forecast period owing to high demand for these materials in the electronics and automobile sector. The presence of manufacturing-based economies in the area has led to a significant increase in demand for novel functional materials of all kinds. Demand growth is being attributed to by the expansion of end-user industries like aerospace, paints & chemicals, infrastructure, and automotive.
Europe is projected to have the highest CAGR over the forecast period, owing to rapid growth in the healthcare and manufacturing sector in the developed nations. Due to the expanding demand for automotive products and the presence of several manufacturers of consumer electronics products, it is anticipated that the market for advanced functional materials would expand throughout the forecasted period. Due to rising investments in the aerospace and defence industries, there is a greater need for innovative functional materials in the region.
Some of the key players profiled in the Advanced Functional Materials Market include Covestro AG, BASF SE, Arkema Group, Applied Nanotech Holdings, Inc, Evonik Industries AG, Bayer AG, Samsung Electro-Mechanics Co.,Ltd., 3M, CNANO Technologies Ltd., Kyocera Corporation, Momentive Performance minerals, DuPont, CeramTec, Hexcel Corporation, Sumitomo Chemical Co. Ltd., Morgan Advanced Materials and Kuraray Co. Ltd.
In May 2023, Samsung launches the "Blue Elephant (PUCO) Nonviolence Campaign" for a world without youth cyberbullying, the event consisted of various programs, including a signing ceremony for a six-party business agreement, cyberbullying experience booths, an award ceremony for the prevention idea contest, and an exhibition of works.
In November 2022, Covestro Ag has developed a functional material solution for automotive applications. This innovative material can be used in car interiors in order to meet the changing automotive industry demand in the future.