市場調查報告書
商品編碼
1475220
全球汽車引擎封裝市場研究報告 - 2024 年至 2032 年產業分析、規模、佔有率、成長、趨勢與預測Global Automotive Engine Encapsulation Market Research Report - Industry Analysis, Size, Share, Growth, Trends and Forecast 2024 to 2032 |
全球汽車引擎封裝市場需求預計將從2023年的39.7億美元達到近51.2億美元的市場規模,2024-2032年研究期間複合年成長率為6.23%。
汽車引擎封裝,也稱為引擎室隔熱層或引擎蓋,是安裝在車輛中的一個部件,用於封閉和保護引擎室免受噪音、熱量和碎片等外部因素的影響。引擎封裝有多種用途,包括減少引擎噪音和傳遞到車廂的振動、改善空氣動力學、增強熱管理以及保護引擎部件免受損壞和腐蝕。它通常由耐熱材料組成,例如泡沫、玻璃纖維或塑膠複合材料,模製或安裝到引擎室的輪廓上。
嚴格的燃油效率和排放法規促使汽車製造商採用引擎封裝作為改善空氣動力學、減少阻力和提高車輛燃油經濟性的關鍵技術。隨著企業平均燃油經濟性 (CAFE) 標準和歐洲排放標準等法規變得越來越嚴格,汽車製造商投資汽車引擎封裝解決方案,以最佳化車輛性能並滿足法規要求。此外,對更安靜、更舒適的駕駛體驗的需求不斷成長,推動了引擎封裝的採用,以降低車艙內的引擎噪音、振動和聲振粗糙度 (NVH) 水平。此外,材料、設計和製造技術的進步使得能夠開發出輕質且經濟高效的引擎封裝解決方案,從而提高隔音和隔熱性能。
此外,包括混合動力和電動動力系統在內的車輛電氣化程度不斷提高,推動了引擎封裝的採用,以最佳化內燃機和電池系統的熱管理,從而提高車輛的整體效率和續航里程。隨著汽車產業向電氣化、自動駕駛和互聯化轉型,引擎封裝對於最佳化車輛性能、能源效率和乘客舒適度至關重要。此外,消費者對環保和技術先進的汽車的需求促使汽車製造商投資引擎封裝,以減少汽車排放並提高永續性。然而,隨著汽車製造商探索替代的降噪和熱管理策略,車輛設計的進步、消費者偏好的變化以及提高燃油效率和減少排放的監管壓力可能會在未來幾年挑戰汽車引擎封裝市場的成長。
該報告涵蓋波特五力模型、市場吸引力分析和價值鏈分析。這些工具有助於清晰地了解行業結構並評估全球範圍內的競爭吸引力。此外,這些工具還對全球汽車引擎封裝市場的各個細分市場進行了包容性評估。汽車引擎封裝產業的成長和趨勢為本研究提供了整體方法。
汽車引擎封裝市場報告的這一部分透過在國家和地區層面進行分析,提供了有關細分市場的詳細資料,從而幫助戰略家確定相應產品或服務的目標人群以及即將到來的機會。
本節涵蓋區域前景,重點介紹北美、歐洲、亞太地區、拉丁美洲以及中東和非洲汽車引擎封裝市場當前和未來的需求。此外,該報告重點關注所有主要地區各個應用領域的需求、估計和預測。
該研究報告還涵蓋了市場主要參與者的全面概況以及對全球競爭格局的深入了解。汽車引擎封裝市場的主要參與者包括巴斯夫SE、Hennecke GmbH、勞士林集團、古河電氣有限公司、大陸集團、Woco Industrietechnik GmbH、Autoneum、3M、Elringklinger AG、Adler Pelzer Holding GmbH、SA Automotive。本節包含競爭格局的整體視圖,包括各種策略發展,例如關鍵併購、未來產能、合作夥伴關係、財務概況、合作、新產品開發、新產品發布和其他發展。
如果您有任何客製化要求,請寫信給我們。我們的研究團隊可以根據您的需求提供客製化報告。
The global demand for Automotive Engine Encapsulation Market is presumed to reach the market size of nearly USD 5.12 Billion by 2032 from USD 3.97 Billion in 2023 with a CAGR of 6.23% under the study period 2024 - 2032.
Automotive engine encapsulation, also known as engine bay insulation or engine cover, is a component installed in vehicles to enclose and protect the engine compartment from external factors such as noise, heat, and debris. Engine encapsulation serves multiple purposes, including reducing engine noise and vibration transmitted to the vehicle cabin, improving aerodynamics, enhancing thermal management, and safeguarding engine components from damage and corrosion. It typically consists of heat-resistant materials such as foam, fiberglass, or plastic composites that are molded or fitted to the contours of the engine bay.
Stringent fuel efficiency and emissions regulations drive automakers to adopt engine encapsulation as a key technology for improving aerodynamics, reducing drag, and enhancing vehicle fuel economy. With regulations such as Corporate Average Fuel Economy (CAFE) standards and Euro emissions standards becoming increasingly stringent, automakers invest in automotive engine encapsulation solutions to optimize vehicle performance and meet regulatory requirements. Additionally, the growing demand for quieter and more comfortable driving experiences fuels the adoption of engine encapsulation to reduce engine noise, vibration, and harshness (NVH) levels inside the vehicle cabin. Moreover, advancements in materials, design, and manufacturing technologies enable the development of lightweight and cost-effective engine encapsulation solutions that offer improved acoustic and thermal insulation properties.
Furthermore, the increasing electrification of vehicles, including hybrid and electric powertrains, drives the adoption of engine encapsulation to optimize the thermal management of internal combustion engines and battery systems, enhancing overall vehicle efficiency and range. With the automotive industry transitioning towards electrification, autonomous driving, and connectivity, engine encapsulation is crucial in optimizing vehicle performance, energy efficiency, and passenger comfort. Additionally, consumer demand for environmentally friendly and technologically advanced vehicles drives automakers to invest in engine encapsulation to reduce vehicle emissions and improve sustainability. However, advancements in vehicle design, changes in consumer preferences, and regulatory pressures to improve fuel efficiency and reduce emissions may challenge the automotive engine encapsulation market growth in the coming years as automakers explore alternative noise reduction and thermal management strategies.
The report covers Porter's Five Forces Model, Market Attractiveness Analysis, and Value Chain analysis. These tools help to get a clear picture of the industry's structure and evaluate the competition attractiveness at a global level. Additionally, these tools also give an inclusive assessment of each segment in the global market of automotive engine encapsulation. The growth and trends of Automotive Engine Encapsulation Industry provide a holistic approach to this study.
This section of the automotive engine encapsulation market report provides detailed data on the segments by analyzing them at country and regional level, thereby assisting the strategist in identifying the target demographics for the respective product or services with the upcoming opportunities.
This section covers the regional outlook, which accentuates current and future demand for the Automotive Engine Encapsulation market across North America, Europe, Asia-Pacific, Latin America, and Middle East & Africa. Further, the report focuses on demand, estimation, and forecast for individual application segments across all the prominent regions.
The research report also covers the comprehensive profiles of the key players in the market and an in-depth view of the competitive landscape worldwide. The major players in the automotive engine encapsulation market include BASF SE, Hennecke GmbH, Roechling Group, Furukawa Electric Co., Ltd., Continental AG, Woco Industrietechnik GmbH, Autoneum, 3M, Elringklinger AG, Adler Pelzer Holding GmbH, SA Automotive. This section consists of a holistic view of the competitive landscape that includes various strategic developments such as key mergers & acquisitions, future capacities, partnerships, financial overviews, collaborations, new product developments, new product launches, and other developments.
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