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市場調查報告書
商品編碼
1873459
用於汽車領域的耐熱ABS樹脂:全球市場佔有率和排名、總銷售量和需求預測(2025-2031年)Automotive High Heat ABS - Global Market Share and Ranking, Overall Sales and Demand Forecast 2025-2031 |
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2024年全球汽車用耐高溫 ABS 市場規模估計為 5.04億美元,預計到2031年將成長至 7.35億美元,2025年至2031年的年複合成長率為 5.8%。
本報告對近期關稅調整和國際戰略反制措施對汽車耐高溫ABS的跨境產業佈局、資本配置模式、區域經濟相互依存關係和供應鏈重組進行了全面評估。
ABS是一種由丙烯腈、丁二烯和苯乙烯三種單體共聚而成的聚合物。這三種單體各自具有獨特的性能。丙烯腈的加入提高了耐腐蝕性和剛性,丁二烯增強了抗衝擊性,而苯乙烯則賦予材料優異的細度。 ABS是一種低成本的工程塑膠,易於加工和成型。它非常適合需要抗衝擊性、強度和剛性的結構應用。其優異的尺寸穩定性以及易於塗裝和粘合的特性使其廣泛用於汽車儀錶板等原型製作。米色和黑色ABS符合FDA食品加工應用標準。它也廣泛應用於玩具和電子行業(包括PC機殼)。耐熱ABS(HH ABS)是一種強度排名第二、延展性排名第二低的ABS類型。這種ABS樹脂具有優異的耐熱性、抗衝擊性和良好的加工性能。它廣泛應用於汽車零件和電氣設備等領域。本報告中,高耐熱型維卡軟化溫度為109度C,超高耐熱型維卡軟化溫度為115度C。
耐高溫ABS(丙烯腈-丁二烯-苯乙烯共聚物)是一種特殊的熱塑性聚合物,設計用於承受高溫,同時保持抗衝擊性、剛性和尺寸穩定性。它廣泛應用於汽車行業,尤其適用於暴露於持續高溫和溫度波動環境中的內部和外部飾件,例如儀表板、中央控制台、立柱飾板和裝飾件。
與標準ABS不同,耐熱ABS具有更高的熱變形溫度(HDT)和長期熱穩定性,使其特別適合在陽光下溫度可超過80-100°C的車輛內部等環境中使用。
隨著全球汽車設計不斷發展,更加重視輕量化、美觀和成本效益,耐高溫的ABS取代金屬和高成本的工程塑膠等傳統材料。
耐熱性、表面光潔度、紫外線穩定性和著色性方面的優異平衡,使得耐熱ABS成為兼顧美觀性和性能的內裝零件的理想材料。
主要市場促進因素
汽車生產的成長,尤其是在新興市場
耐高溫ABS市場的主要驅動力是全球汽車產業的擴張,尤其是在亞太、拉丁美洲和東歐等地區。隨著印度、越南和巴西等國中產階級的壯大,汽車產量不斷成長,推動了汽車內裝用熱塑性塑膠的需求。
這些地區的汽車製造商轉向耐熱ABS,將其作為一種經濟高效、輕量化的解決方案,以實現其設計目標,同時保持品質並符合法規要求。
輕量化和燃油效率標準
政府和消費者都在呼籲提高燃油經濟性和減少排放氣體,這促使汽車製造商盡可能減輕車輛重量。耐高溫ABS材料在此發揮關鍵作用,它取代了金屬和玻璃纖維增強聚合物等較重的材料,用於內飾和引擎艙內。
其低密度、可成形性和機械性能使製造商能夠在不犧牲零件品質的前提下滿足企業平均燃油經濟性(CAFE)和其他全球排放氣體法規的要求。
對先進汽車內裝的需求不斷成長
隨著消費者對內裝的期望越來越高,追求更美觀、更舒適、更實用,耐熱ABS材料因其優異的表面光潔度和色彩匹配能力,正逐漸成為汽車內裝可見零件的首選材料。
此外,隨著連網汽車和車載電子設備的興起,對能夠承受資訊娛樂系統、線路、HVAC(冷暖氣空調)經銷店產生的局部熱量的熱塑性塑膠的需求日益成長,而耐高溫的ABS在這些領域表現出色。
與替代材料的成本效益比較
與其他工程熱塑性塑膠(如 PC/ABS 共混物、PBT 和 PA6(尼龍))相比,耐高溫 ABS 在許多汽車應用中具有優異的性價比,使其成為中檔和經濟型汽車領域中極具吸引力的選擇,因為在這些領域,成本控制非常重要。
當對超高耐熱性沒有嚴格要求時,汽車OEM廠商和一級供應商擴大採用耐熱ABS來取代更昂貴的樹脂。
本報告目的是依地區/國家、類型和應用對全球汽車耐熱ABS樹脂市場進行全面分析,重點關注總銷售量、收入、價格、市場佔有率和主要企業的排名。
本報告以銷售量(噸)和收入(百萬美元)為單位,對汽車用耐高溫ABS的市場規模、估計值和預測進行了闡述,以2024年為基準年,並涵蓋了2020年至2031年的歷史資料和預測資料。定量和定性分析將幫助讀者制定業務和成長策略,評估市場競爭,分析自身在當前市場中的地位,並就汽車用耐高溫ABS市場做出明智的商業決策。
市場區隔
公司
依類型
依應用
依地區
The global market for Automotive High Heat ABS was estimated to be worth US$ 504 million in 2024 and is forecast to a readjusted size of US$ 735 million by 2031 with a CAGR of 5.8% during the forecast period 2025-2031.
This report provides a comprehensive assessment of recent tariff adjustments and international strategic countermeasures on Automotive High Heat ABS cross-border industrial footprints, capital allocation patterns, regional economic interdependencies, and supply chain reconfigurations.
ABS is a kind of polymer obtained through the copolymerization of three kinds of monomers, namely acrylonitrile, butadiene and styrene. Each of these three monomers has a specific property: the addition of acrylonitrile can improve the anti-corrosion and rigidity properties, butadiene promotes the shock resistance and styrene will contribute the material good fineness. It is among the low cost engineering plastic that is easy to machine and fabricate. ABS is an ideal material for structural applications when impact resistance, strength, and stiffness are required. It is widely used for machining pre-production prototypes such as the auto dashboard since it has excellent dimensional stability and is easy to paint and glue. Natural (beige) ABS and black ABS are FDA compliant for use in food processing applications. Besides, it is widely used in the toys and electron industries including the PC enclosure. Heat resistant ABS (HH ABS) is a grade of ABS. It has the second highest strength and second lowest ductility compared to the other variants of ABS. This ABS resin offers superior heat resistance, shock resistance, and outstanding workability. It has wide-ranging use in items such as Automotive Usage parts, and electrical devices. In the report, the vicat softening temperature of high heat resistant is 109°C and the vicat softening temperature of super high heat resistant is 115°C.
High Heat ABS (Acrylonitrile Butadiene Styrene) is a specialized type of thermoplastic polymer engineered to withstand elevated temperatures while maintaining impact strength, rigidity, and dimensional stability. It is widely used in the automotive industry, particularly in interior and exterior parts that are exposed to sustained heat or temperature fluctuations-such as instrument panels, center consoles, pillar covers, and trim components.
Unlike standard ABS, high heat ABS incorporates improved heat distortion temperature (HDT) and long-term thermal stability, making it suitable for environments like vehicle cabins where temperatures can exceed 80-100°C, especially under sunlight exposure.
As global automotive design evolves with a focus on lightweighting, aesthetics, and cost-efficiency, high heat ABS is increasingly replacing traditional materials like metal or higher-cost engineering plastics.
Its balance of heat resistance, surface finish, UV stability, and colorability makes high heat ABS particularly desirable for interior components where both aesthetics and performance are critical.
Key Market Drivers
Growth in Automotive Production, Especially in Emerging Markets
A primary driver of the high heat ABS market is the expanding global automotive industry, particularly in regions like Asia-Pacific, Latin America, and Eastern Europe. As the middle class grows in countries like India, Vietnam, and Brazil, vehicle production volumes are rising-driving increased demand for thermoplastics in automotive interiors.
Automakers in these regions are adopting high heat ABS as a cost-effective and lightweight solution to meet design goals while maintaining quality and regulatory compliance.
Lightweighting and Fuel Efficiency Standards
Governments and consumers alike are pushing for better fuel economy and reduced emissions. This encourages automakers to reduce vehicle weight wherever possible. High heat ABS plays a key role here by replacing heavier materials like metal or glass-filled polymers in interior and under-hood applications.
Its low density, moldability, and mechanical performance help manufacturers meet Corporate Average Fuel Economy (CAFE) standards and other global emissions regulations without sacrificing part quality.
Increasing Demand for Enhanced Vehicle Interiors
Consumer expectations are shifting toward more aesthetic, comfortable, and feature-rich car interiors. High heat ABS offers excellent surface finish and color-matching capabilities, making it a preferred material for visible components in the passenger cabin.
Additionally, with the rise of connected vehicles and in-cabin electronics, the need for thermoplastics that can withstand localized heat generated by infotainment systems, wiring, and HVAC outlets is growing-areas where high heat ABS excels.
Cost-Effectiveness Compared to Alternatives
Compared to other engineering thermoplastics like PC/ABS blends, PBT, or PA6 (nylon), high heat ABS offers a better price-to-performance ratio for many automotive applications. This makes it attractive for mid-range and economy vehicle segments, where cost containment is critical.
OEMs and Tier 1 suppliers increasingly use high heat ABS in place of more expensive resins where ultra-high thermal stability is not strictly required.
This report aims to provide a comprehensive presentation of the global market for Automotive High Heat ABS, focusing on the total sales volume, sales revenue, price, key companies market share and ranking, together with an analysis of Automotive High Heat ABS by region & country, by Type, and by Application.
The Automotive High Heat ABS market size, estimations, and forecasts are provided in terms of sales volume (Tons) and sales revenue ($ millions), considering 2024 as the base year, with history and forecast data for the period from 2020 to 2031. With both quantitative and qualitative analysis, to help readers develop business/growth strategies, assess the market competitive situation, analyze their position in the current marketplace, and make informed business decisions regarding Automotive High Heat ABS.
Market Segmentation
By Company
Segment by Type
Segment by Application
By Region
Chapter Outline
Chapter 1: Introduces the report scope of the report, global total market size (value, volume and price). This chapter also provides the market dynamics, latest developments of the market, the driving factors and restrictive factors of the market, the challenges and risks faced by manufacturers in the industry, and the analysis of relevant policies in the industry.
Chapter 2: Detailed analysis of Automotive High Heat ABS manufacturers competitive landscape, price, sales and revenue market share, latest development plan, merger, and acquisition information, etc.
Chapter 3: Provides the analysis of various market segments by Type, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different market segments.
Chapter 4: Provides the analysis of various market segments by Application, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different downstream markets.
Chapter 5: Sales, revenue of Automotive High Heat ABS in regional level. It provides a quantitative analysis of the market size and development potential of each region and introduces the market development, future development prospects, market space, and market size of each country in the world.
Chapter 6: Sales, revenue of Automotive High Heat ABS in country level. It provides sigmate data by Type, and by Application for each country/region.
Chapter 7: Provides profiles of key players, introducing the basic situation of the main companies in the market in detail, including product sales, revenue, price, gross margin, product introduction, recent development, etc.
Chapter 8: Analysis of industrial chain, including the upstream and downstream of the industry.
Chapter 9: Conclusion.