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市場調查報告書
商品編碼
1476393
到 2030 年汽車變速箱市場預測:按組件、變速箱類型、車輛類型、應用和地區進行的全球分析Automotive Torque Converter Market Forecasts to 2030 - Global Analysis By Component, Transmission Type, Vehicle Type, Application and By Geography |
根據Stratistics MRC的數據,2023年全球汽車液力變矩器市場規模為81.2億美元,預計到2030年將達到128.6億美元,預測期內複合年成長率為7.8%。
汽車變速箱是自動變速箱系統的重要組成部分,可實現從引擎到變速箱的平穩動力傳輸。它的工作原理是利用流體動態傳遞扭矩,使引擎即使在車輛停止或移動時也能繼續運作。變矩器由三個主要元件組成:葉輪、渦輪和定子,它們協同工作以有效地傳輸動力。變矩器在確保自動駕駛汽車平穩加速、高效能傳輸和提高燃油效率方面發揮關鍵作用。
日益關注燃油效率
對燃油效率的日益關注是汽車變速箱市場的關鍵促進因素,因為它對車輛的整體性能和經濟性有直接影響。由於消費者和監管機構優先考慮環境問題和燃料成本,汽車製造商面臨提高車輛效率的壓力。變矩器技術的進步,例如鎖定離合器和最佳化設計,可以實現更好的動力傳輸並減少能量損失,從而提高燃油效率。因此,製造商擴大將先進的變矩器系統整合到他們的車輛中,以滿足嚴格的燃油經濟性標準並滿足消費者對更經濟的駕駛選擇的需求。
增加向電動車 (EV) 的轉變
持續向電動車(EV)的轉變是一個主要障礙。與傳統內燃機汽車不同,電動車使用馬達進行推進,不需要液力變矩器,使得傳統的傳動部件顯得過時。這種轉變將減少汽車產業對變矩器的需求,並對市場產生負面影響。隨著電動車的採用不斷增加,汽車變速箱市場面臨著透過產品多樣化和開拓替代市場來適應不斷變化的條件以維持成長的挑戰。
與自動駕駛系統整合
液力變矩器傳統上對於將動力從引擎傳輸到變速箱至關重要,現在在自動駕駛設定中發現了更大的相關性。隨著汽車向自動駕駛邁進,液力變矩器有助於在加速、減速和滑行階段之間無縫過渡,確保自動駕駛系統的平穩運行。此外,變矩器有助於提高能源效率和最佳化動力傳輸,這對於自動駕駛汽車的能源管理和性能要求至關重要。這種整合滿足了汽車行業不斷變化的需求,使液力變矩器成為向自動駕駛技術過渡的關鍵組件。
換至雙離合器變速箱
供應鏈中斷通常是由於整個供應鏈中材料、零件或成品流動的中斷或延遲所造成的。這些中斷是由多種因素造成的,包括自然災害、地緣政治問題和全球健康危機,並可能影響關鍵組件的可用性和及時交付。用於製造液力變矩器的鋼、鋁和貴金屬等材料的價格可能會根據市場需求、供應鏈限制和地緣政治緊張局勢等因素而波動,這可能會導致行業內的變化,對盈利和定價產生影響。
大範圍的封鎖和經濟不確定性導致全球汽車產銷量急劇下降,進而導致液力變速箱需求下降。供應鏈中斷和製造業停工進一步加劇了這種情況,導致生產和分銷延遲。由於汽車產業消費支出和投資停滯,市場減少了對變矩器技術研發的投入。然而,隨著經濟逐漸復甦以及汽車電動變得更加重要,儘管將會轉向混合動力汽車和電動車技術,但市場預計將會復甦。
葉輪部分預計將成為預測期內最大的部分
由於汽車技術的進步,汽車變矩器市場的葉輪部分正在經歷顯著成長,增加了對更高效、更耐用的變矩器的需求,而葉輪在變矩器中發揮關鍵作用。消費者對平穩駕駛的偏好不斷增加,導致自動變速箱的快速採用,從而推動了葉輪領域的成長。此外,嚴格的燃油經濟性法規正迫使汽車製造商專注於最佳化動力傳輸系統,提高高品質葉輪的重要性。
預計雙離合器變速箱領域在預測期內複合年成長率最高。
雙離合器變速箱 (DCT) 領域的成長歸因於多個因素。與傳統自動變速箱相比,雙離合器變速箱提供更快的換檔速度和更好的燃油經濟性,對尋求改善駕駛性能的消費者俱有吸引力。 DCT 技術的進步帶來了更平穩的操作和更高的耐用性,進一步推動了 DCT 的採用。隨著汽車製造商專注於滿足嚴格的排放氣體法規,DCT 提供了一種可行的解決方案來最佳化動力傳輸並減少碳排放。此外,對混合動力汽車和電動車的需求不斷成長,刺激了針對這些平台量身定做的 DCT 系統市場的開拓,擴大了市場基礎。
由於對自動變速箱車輛的需求不斷增加,北美地區的汽車變速箱市場正在穩步成長。汽車技術的進步導致了更高效、更耐用的變矩器的開發,這些變矩器對消費者和製造商都有吸引力。此外,由於變矩器更換和升級數量的增加,北美汽車售後市場的成長進一步推動了市場。該地區強大的汽車工業基礎設施和大量的研發投資正在推動市場擴張。最後,不斷發展的環境法規推動了對省油車的需求,從而刺激了變矩器技術的創新。
由於中國、印度和日本等國家汽車產量的增加,推動了對變矩器的需求,亞太地區的汽車變速箱市場正在顯著成長。此外,可支配收入的增加和都市化正在刺激小客車的需求,進一步推動市場成長。隨著製造商努力提高傳動效率,技術進步和電動車的出現也有助於變矩器市場的擴大。這些因素的結合使亞太地區成為全球汽車變速箱市場的主導者,並預計將繼續持續成長。
According to Stratistics MRC, the Global Automotive Torque Converter Market is accounted for $8.12 billion in 2023 and is expected to reach $12.86 billion by 2030 growing at a CAGR of 7.8% during the forecast period. An automotive torque converter is a vital component in automatic transmission systems, enabling smooth power delivery from the engine to the transmission. It operates by utilizing fluid dynamics to transmit torque, allowing the engine to continue running while the vehicle is stationary or in motion. The torque converter consists of three main elements: the impeller, turbine, and stator, which work together to transfer power efficiently. The torque converter plays a crucial role in ensuring smooth acceleration, efficient power transfer, and improved fuel economy in automatic vehicles.
Growing preference for fuel efficiency
The growing preference for fuel efficiency is a significant driver of the automotive torque converter market due to its direct impact on overall vehicle performance and economy. As consumers and regulators prioritize environmental concerns and fuel costs, automakers are compelled to enhance the efficiency of their vehicles. Advancements in torque converter technology, such as lock-up clutches and optimized designs, enable better power transfer and reduced energy loss, thereby improving fuel efficiency. Consequently, manufacturers are increasingly integrating advanced torque converter systems into their vehicles to meet stringent fuel economy standards and satisfy consumer demands for more economical driving options.
Increasing shift towards electric vehicles (EVs)
The increasing shift towards electric vehicles (EVs) poses a significant restraint. Unlike traditional internal combustion engine vehicles, electric vehicles do not require torque converters as they utilize electric motors for propulsion, rendering the traditional transmission components obsolete. This shift diminishes the demand for torque converters in the automotive sector, impacting the market adversely. As EV adoption continues to rise, the automotive torque converter market faces the challenge of adapting to the changing landscape by diversifying its product offerings or exploring alternative markets to sustain growth.
Integration with automated driving systems
Torque converters which are traditionally vital in transmitting power from the engine to the transmission, now find enhanced relevance in automated driving setups. As vehicles shift towards autonomy, torque converters can aid seamless transitions between acceleration, deceleration, and coasting phases, ensuring smoother operation of automated driving systems. Additionally, torque converters can contribute to energy efficiency and optimized power delivery, which are crucial in the context of autonomous vehicles' energy management and performance requirements. This integration aligns with the evolving needs of the automotive industry, marking torque converters as pivotal components in the transition towards autonomous driving technology.
Shift towards dual-clutch transmissions
Supply chain disruptions usually happen due to interruptions or delays in the flow of materials, components, or finished products throughout the supply chain. These disruptions can be caused by various factors, such as natural disasters, geopolitical issues, or global health crises, impacting the availability and timely delivery of critical components. The prices of materials like steel, aluminum, and precious metals used in torque converter manufacturing can fluctuate due to factors such as market demand, supply chain constraints, or geopolitical tensions, thereby impacting profitability and pricing strategies within the industry.
Due to widespread lockdowns and economic uncertainties, vehicle production and sales plummeted globally, leading to a decline in demand for torque converters. Supply chain disruptions and manufacturing shutdowns further exacerbated the situation, causing delays in production and distribution. As consumer spending and automotive industry investment stalled, the market witnessed reduced investments in research and development of torque converter technologies. However, with a gradual economic recovery and increased emphasis on vehicle electrification, the market is expected to rebound, albeit with a shift towards hybrid and electric vehicle technologies.
The impeller segment is expected to be the largest during the forecast period
The impeller segment in the automotive torque converter market has experienced significant growth due to advancements in automotive technology which have led to the demand for more efficient and durable torque converters, where impellers play a crucial role. Rising consumer preference for smoother driving experiences has led to a surge in the adoption of automatic transmissions, fueling impeller segment growth. Moreover, stringent fuel efficiency regulations have pushed automakers to focus on optimizing power transmission systems, enhancing the importance of high-quality impellers.
The dual clutch transmission segment is expected to have the highest CAGR during the forecast period
The growth of the dual clutch transmission (DCT) segment can be attributed to several factors. DCT offers quicker gear shifts and improved fuel efficiency compared to traditional automatic transmissions, appealing to consumers seeking enhanced driving performance. Advancements in DCT technology have led to smoother operation and increased durability, further driving its adoption. As automotive manufacturers focus on meeting stringent emissions regulations, DCTs provide a viable solution for optimizing power delivery and reducing carbon emissions. Additionally, the growing demand for hybrid and electric vehicles has spurred the development of DCT systems tailored to these platforms, expanding the market reach.
The North American region has experienced steady growth in the automotive torque converter market due to an increasing demand for automatic transmission vehicles. Advancements in automotive technologies have led to the development of more efficient and durable torque converters, appealing to consumers and manufacturers alike. Additionally, a growing automotive aftermarket sector in North America has further propelled the market with a rising number of torque converter replacements and upgrades. The region's robust automotive industry infrastructure and significant investments in research and development have facilitated market expansion. Lastly, evolving environmental regulations driving the demand for fuel-efficient vehicles have spurred innovations in torque converter technology.
The Asia-Pacific region has experienced significant growth in the automotive torque converter market due to rising automotive production in countries like China, India, and Japan which has spurred demand for torque converters. Additionally, increasing disposable incomes and urbanization have fuelled the demand for passenger vehicles, further driving market growth. Advancements in technology and the emergence of electric vehicles have also contributed to the expansion of the torque converter market, as manufacturers strive to improve transmission efficiency. These factors combined have propelled the Asia-Pacific region to become a prominent player in the global automotive torque converter market, with sustained growth anticipated in the coming years.
Key players in the market
Some of the key players in Automotive Torque Converter market include Aisin Seiki Corporation, BorgWarner Inc., Continental AG, Delphi Technologies, Exedy Corporation, Isuzu Motors Ltd., Jatco Ltd, Schaeffler Technologies AG & Co. Kg, Sonnax Transmission Company, Inc., Subaru Corporation, Transtar Industries, Valeo Group, Voith Gmbh & Co. and ZF Friedrichshafen AG.
In March 2024, Valeo marked a significant milestone with the official opening of its state-of-the-art manufacturing plant in Daegu, Korea. The new facility, a result of a $56 million investment agreement signed with the Daegu Metropolitan Government in July 2022, underscores Valeo's commitment to mass-produce Advanced Driver Assistance Systems (ADAS) components. Construction of the greenfield plant commenced in March 2023, with operations slated to begin in early 2025.
In March 2024, Japanese carmaker Isuzu has announced that it will unveil its first-ever D-Max electric at the 45th Bangkok International Motor Show. This new electric D-Max will get a 1.0-tonne payload, 3.5-tonne towing capacity, and a full-time 4WD system.The prototype of the vehicle will be showcased to the public at the Motor Show from 27 March to 7 April, 2024.