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市場調查報告書
商品編碼
1339940
到 2030 年玄武岩纖維市場預測 - 按產品類型、類型、型態、方法、最終用戶和地區進行的全球分析Basalt Fiber Market Forecasts to 2030 - Global Analysis By Product Type, Type (Composites and Non-Composites), Form, Method, End User and By Geography |
根據 Stratistics MRC 的數據,2023 年全球玄武岩纖維市場規模為 3.251 億美元,預計在預測期內將以 14.5% 的年複合成長率成長,到 2030 年達到 8.39 億美元。
由玄武岩製成的產品稱為玄武岩纖維,可用作碳纖維和玻璃纖維的替代品。玄武岩纖維是由玄武岩經高溫熔化而成。這種材料由輝石和橄欖石、斜長石等礦物質結構。玄武岩纖維具有優良的電磁性能、高拉伸強度、高結構可靠性、機械性質、無毒性、不易燃。它還具有廣泛的熱性能。
根據OICA統計,2021年全球汽車產量從2020年的7,77,11,725輛增至8,01,45,988輛,增幅超過3%。
汽車產業對玄武岩纖維的所有品質和性能的需求不斷成長。這些品質包括強大的機械性能、耐高溫、耐用性、耐化學性和環境友善性。玄武岩纖維在汽車工業中用於車頂內襯、CNG 氣缸、燃料箱、煞車片、離合器片、排氣系統、消音器填料、面板、螢幕、輪胎罩、由紡織品和熱塑性化合物製成的內部和外部零件。用於零件等多種零件。由於這些因素,玄武岩纖維市場可能在未來幾年在全球擴張。
玄武岩纖維的生產受到幾個問題的阻礙。生產玄武岩纖維所需的高品質且化學性質正確的玄武岩僅在東歐的有限地區發現。此外,儘管玄武岩纖維比 S 玻璃纖維和 E 玻璃纖維具有許多優點,但由於對其用途缺乏了解和明確性,玄武岩纖維目前纖維在許多用途中進行商業性使用。我還沒有。
環保且易於回收的纖維增強複合材料始終受到市場歡迎。這是一系列新的、嚴格的政府法律法規的結果。越來越多的消費者開始轉向環保且可回收的產品。美國、日本和德國等一些已開發國家正逐步淘汰石油基產品的使用,轉而使用環保產品和生物基材料。此外,政府規則和法規預計將增加玄武岩纖維和其他天然纖維在建築、基礎設施、汽車和運輸等許多最終用途行業中的使用。
玄武岩纖維比無鹼玻璃、碳纖維和芳綸貴。由於其不透明的性質,玄武岩比玻璃更難均勻加熱,需要製造創新,例如將熔融材料長時間儲存在儲存中以及使用階段加熱系統。與透明玻璃相反,不透明玄武岩吸收而不是傳輸紅外光。因此,在玻璃熔爐中使用標準的頂置燃氣燃燒器很難均勻地加熱玄武岩混合物。生產玄武岩纖維所涉及的技術困難限制了市場的擴張。
在全球範圍內,COVID-19 的爆發對玄武岩纖維供應鏈產生了負面影響。許多國家的封鎖導致原物料交付延遲,影響了全球市場的擴張。消費者消費能力下降,影響了航空、建築和汽車產業。因此,玄武岩纖維市場成長有限。
由於其卓越的耐用性、耐腐蝕性和耐高溫性,複合玄武岩纖維在各個部門的需求量很大,預計將創下最大的市場佔有率。此外,隨著輕質材料在汽車和航太領域越來越普及,複合玄武岩纖維的需求量很大,因為它們有助於在減輕重量的同時保持結構完整性。此外,由於消費者越來越意識到其提供的環境效益,同時比碳纖維和玻璃纖維等其他複合材料更便宜,市場正在不斷成長。
由於玄武岩纖維複合材料結合了高強度重量比、耐化學性、耐腐蝕性、低導熱性以及缺乏導電和磁導性等特性,在建築和基礎設施中逐漸取代鋼材行業。該領域預計將快速成長。玄武岩纖維用於各種建築項目,包括組裝住宅和建築、冷地暖板、防火隔間、防火牆和門。其次是鋼筋、拉擠承重型材、雙軸、三軸玄武岩纖維織物、玄武岩鋼筋網、玄武岩纖維混凝土等,成長範圍廣大。
預計亞太地區將在預測期內主導全球市場。中國、日本和印度等國家建設活動的活性化預計將增加亞太地區對玄武岩纖維的需求。此外,該地區再生能源的成長趨勢導致風力發電機安裝數量的增加,這進一步有助於亞太地區的市場擴張。
北美也佔全球玄武岩纖維市場的很大一部分。位於北卡羅來納州謝爾比的全球最大的玄武岩纖維製造工廠目前正在接受 Mafic 的訂單。透過結合各自的專業知識,兩家公司將共同努力提高玄武岩纖維的特殊機械性能。此外,由於基礎設施的快速發展和產業用紡織品領域的成長,預計該地區的市場收入將出現成長。
According to Stratistics MRC, the Global Basalt Fiber Market is accounted for $325.1 million in 2023 and is expected to reach $839.0 million by 2030 growing at a CAGR of 14.5% during the forecast period. A product made from basalt rock called basalt fiber is used as a substitute for carbon and glass fiber. By melting basalt rocks at high temperatures, basalt fiber is created. Pyroxene and minerals like olivine and plagioclase make up this substance. Basalt fiber has superior electromagnetic properties, high tensile strength, high structural reliability, mechanical properties, no toxicity, and is non-combustible. It also has a good thermal performance range.
According to OICA, in 2021, the global motor vehicle production has increased from 7,77,11,725 units in 2020 to about 8,01,45,988 in 2021 which is an increase of more than 3%.
There is huge rise in automotive industry for all of basalt fiber's qualities and properties. These qualities include strong mechanical properties, resistance to high temperatures, durability, chemical resistance, and environmental friendliness. Basalt fiber is utilized in the automotive industry for many parts, including headliners, CNG cylinders, fuel tanks, brake pads, clutch plates, exhausting systems, muffler filler, panels, screens, tire covers, interior and exterior parts made of fabrics, and parts and components made of thermoplastic compounds. All of these elements will probably cause the basalt fiber market to expand globally in the coming years.
The production of basalt fibers is hindered by some issues. There are only a few places in Eastern Europe where basalt rocks are of high quality and have the correct chemical composition needed to produce basalt fibers. Furthermore, despite having a number of advantages over S-glass and E-glass fiber, basalt fiber is not currently being used commercially in many applications due to a lack of knowledge and clarity surrounding its applications.
Fiber-reinforced composites that are environmentally friendly and easily recyclable are in constant demand. This is a result of the numerous new, strict government laws and regulations. A growing number of consumers are switching to recyclable goods that are safe for the environment. The use of petroleum-based products is being phased out in some developed nations, such as the US, Japan, and Germany, in favor of environmentally friendly goods and bio-based materials. Moreover, the government's rules and regulations are anticipated to increase the use of basalt fiber and other natural fibers in construction, infrastructure, automotive, and transportation, among many other end-use industries.
Basalt fiber is more expensive than E-glass, carbon fiber, or aramid. Due to its opaque nature, basalt is much harder to heat uniformly than glass and requires manufacturing modifications like keeping the molten material in a reservoir for a longer period of time or using a two-stage heating system. Contrary to transparent glass, opaque basalt absorbs infrared light rather than transmitting it. As a result, standard overhead gas burners in glass furnaces have trouble evenly heating the basalt mixture. The technical difficulties involved in making basalt fibers are limiting market expansion.
Globally, the COVID-19 outbreak had a negative effect on the basalt fiber supply chain. The delivery of raw materials was delayed as a result of lockdowns in many nations, which had an impact on global market expansion. Consumer spending power has decreased, which has an impact on the aviation, building, and auto industries. As a result, the market for basalt fiber has experienced limited growth.
Due to the superior durability, resistance to corrosive elements, and high temperature tolerance across sectors, composite basalt fiber is in high demand and is anticipated to register the largest market share. In addition, as lightweight materials become more popular in the automotive and aerospace sectors, composite basalt fiber is becoming more in demand because it helps structures remain structurally sound while reducing weight. Furthermore, the market is expanding as a result of consumers' growing awareness of the advantages it offers the environment while still being more affordable than other composite materials like carbon and glass fibers.
Due to their distinctive combination of qualities, including their high strength-to-weight ratio, chemical and corrosion resistance, low thermal conductivity, and lack of electrical and magnetic conduction, basalt fiber composite materials are gradually replacing steel in the construction and Infrastructure industries, and this segment is expected to witness rapid growth. Basalt fibers are used for a variety of construction projects, including assembled homes and buildings, cold floor heating plates, fire partitions, firewalls, and fire doors. It also continues in reinforced rebars, pultruded load-bearing profiles, biaxial and triaxial basalt fabrics, basalt reinforcing meshes, and basalt fiber-reinforced concrete, where there is wide scope for their growth.
During the forecast period, the Asia-Pacific region is anticipated to dominate the global market. Growing building and construction activity in nations like China, Japan, and India is anticipated to increase basalt fiber demand in the Asia-Pacific region. Furthermore, the region's growing emphasis on renewable energy sources has increased the number of wind turbine installations, which has further contributed to the expansion of the market in this Asia-Pacific region.
North America also accounts for a sizable portion of the global basalt fiber market. The world's largest basalt fiber manufacturing facility, located in Shelby, North Carolina, has started accepting orders from Mafic. By combining their respective expertise, the companies will work together to improve the special mechanical properties of basalt fiber. Additionally, the region's market is anticipated to experience revenue growth as a result of rapid infrastructure development and growth in the technical textile sector.
Some of the key players profiled in the Basalt Fiber Market include: Hebei Tong-Hui Technology, Incotelogy GmbH, Isomatex SA, JiangSu Tian Long Continuous, Basalt Fiber Co., Ltd., Kamenny VEK, Mafic SA, Mudanjiang Jinshi Basalt Fiber Co. Ltd., Basalt Fibers, Russian Basalt LLC., Shanxi Basalt Fiber Technology Co Ltd., Sudaglass Fiber Technology, Technobasalt-Invest LLC and Zhejiang GBF.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.