市場調查報告書
商品編碼
1489346
疊層母排的全球市場預測(~2030年):按導體材料、絕緣材料、重量、長度、額定功率、形狀、電鍍、最終用戶和地區進行分析Laminated Busbar Market Forecasts to 2030 - Global Analysis By Conductor Material, Insulation Material, Weight Wise, Length, Power Rating, Shape Wise, Plating, End User and By Geography |
2023年全球疊層母排市場規模為7.364億美元,預計2030年將達12.869億美元,預測期內複合年成長率為8.3%。疊層母排是起導體作用的電氣元件。它是一組導體,用於從輸入饋線收集電力並將其分配到輸出饋線。然而,應用於這些母線的電鍍各不相同,並且對於整合導電服務很有用。其緊湊的設計和高載流能力使其成為最小化空間需求和提高電氣性能的理想選擇。
根據BP《2022年世界能源統計年鑑》,2021年全球發電量為28,466.3 TWh(兆瓦瓦時),高於2015年的24,270.5 TWh。
電氣化需求增加
電動車(EV)的快速普及、可再生能源的整合以及工業自動化的進步推動了電氣化需求的激增,是推動疊層母排市場的關鍵因素。與傳統佈線系統相比,疊層母排具有多種優勢,包括提高效率、減少空間需求和改善溫度控管。隨著工業和運輸業擴大轉向電氣化以滿足永續性目標和監管要求,對疊層母排的需求持續飆升。此外,人們對能源效率的興趣日益濃厚,以及各種應用對可靠配電解決方案的需求正在進一步加速市場成長。
初始投資高
在配電系統中實施疊層母排需要大量的材料、製造流程和專用設備的初始成本。對於潛在的採用者來說,這些成本可能過高,尤其是小型企業和在預算限制下營運的公司。因此,疊層母排市場的成長可能慢於預期。創新和簡化生產流程的努力將有助於緩解這些障礙,並使疊層母排可用於更廣泛的行業和應用。
資料中心需求不斷成長
資料中心需要可靠、高效的配電解決方案來處理高效能運算和儲存系統產生的不斷增加的負載。與傳統電纜系統相比,疊層母排具有緊湊、重量輕和改進的熱性能等優勢,使其成為資料中心內配電的理想選擇。此外,可自訂的設計可以輕鬆整合到複雜的佈局中,最佳化空間利用率並簡化安裝過程。隨著資料中心不斷在全球擴張,以滿足不斷成長的數位需求,預計疊層母排市場將出現顯著成長,因為需要針對現代資料基礎設施的獨特需求量身定做高效、可靠的配電解決方案。
環境考慮
疊層母排的生產涉及各種可能對環境產生有害影響的材料和工藝,例如金屬、塑膠和黏劑的使用,這可能會造成污染和資源枯竭。在生命週期結束時處理疊層母排是一項挑戰,因為它們通常含有非生物分解的材料,如果管理不當,可能會導致環境污染。疊層母排所需的能源集中製造過程會導致溫室氣體排放,加劇對氣候變遷的擔憂。
COVID-19大流行對疊層母排市場產生了重大影響,主要原因是全球供應鏈中斷、工業活動下降以及市場需求的不確定性。隨著許多地區實施封鎖以遏制病毒傳播,製造設施面臨關閉或產能有限,導致疊層母排的生產和分銷延遲。然而,隨著各行業逐步恢復營運並適應遠距工作和加強安全措施等新規範,市場慢慢復甦。
環氧粉末塗料領域預計將在預測期內成為最大的領域
預計環氧粉末塗料領域在預測期內將是最大的。環氧粉末塗層為母線提供了耐用的保護層,保護其免受潮濕、腐蝕和高溫等環境因素的影響。這種塗層不僅保證了母線的絕緣和安全,而且增加了其機械強度,使其耐磨損和損壞。此外,環氧粉末塗料在顏色選擇方面具有多種用途,並且可以進行客製化以滿足特定的美學或功能要求。
可再生能源領域預計在預測期內複合年成長率最高
預計可再生能源領域在預測期內的複合年成長率最高。隨著對太陽能和風能等可再生能源的需求持續激增,對高效配電解決方案的需求也隨之增加。憑藉其緊湊的設計、高功率密度和優異的導電性,疊層母排被證明是可再生能源系統中電力傳輸的理想選擇。疊層母排可減少空間需求、降低電力損耗並提高系統可靠性,是逆變器、轉換器和其他可再生能源基礎設施的重要組成部分。
在整個預測期內,由於人口成長、都市化和工業化,亞太地區佔據了最大的市場佔有率。因此,對可靠電源的需求龐大。國際能源總署(IEA)預測,2015年至2021年間,中國作為地球上人口最多的國家,將建造佔全球36%的水力發電裝置和40%的風電裝置。中國已在開發超過259,000兆瓦的新燃煤電廠,佔全球燃煤電廠數量的三分之一以上。
預計亞太地區在預測期內將保持盈利成長。亞太地區的政府法規在疊層母排市場的擴張中發揮重要作用。這些法規通常著重於能源效率、安全標準和環境永續性,這些都是疊層母排的優勢領域。此外,該地區嚴格的安全標準要求使用可靠耐用的電氣元件,進一步推動了對疊層母排的需求,層壓母線以其堅固性和可靠性而聞名。
According to Stratistics MRC, the Global laminated Busbar Market is accounted for $736.4 million in 2023 and is expected to reach $1,286.9 million by 2030 growing at a CAGR of 8.3% during the forecast period. Laminated Busbars are electrical components that function as conductors. They are a group of conductors that are used to gather electricity from incoming feeders and distribute it to outgoing feeders. However, the plating applied to these busbars fluctuates, which helps in the integration of the conductive services. Their compact design and high current-carrying capacity make them ideal for minimizing space requirements and enhancing electrical performance.
According to the BP Statistical Review of World Energy 2022, global electricity generation capacity in 2021 was 28,466.3 TWh (Terawatt-hours), up from 24,270.5 TWh in 2015.
An increase in electrification demand
The surge in electrification demand, fueled by the rapid adoption of electric vehicles (EVs), renewable energy integration, and advancements in industrial automation, is a primary driver propelling the laminated busbar market. Laminated busbars offer several advantages over traditional wiring systems, including enhanced efficiency, reduced space requirements, and improved thermal management. As industries and transportation sectors increasingly shift towards electrification to meet sustainability goals and regulatory requirements, the demand for laminated busbars continues to soar. Moreover, the growing focus on energy efficiency and the need for reliable power distribution solutions in various applications further amplify the market growth.
High initial investment
Implementing laminated busbars in power distribution systems necessitates substantial upfront costs for materials, manufacturing processes, and specialized equipment. These costs can be prohibitive for potential adopters, particularly smaller businesses or those operating within budget constraints. As a result, the market for laminated busbars may experience slower growth than anticipated, as businesses weigh the upfront financial commitment against the potential long-term benefits. Efforts to innovate and streamline production processes may help mitigate these barriers and make laminated busbars more accessible to a broader range of industries and applications.
Increasing demand for data centers
Data centers require reliable and efficient power distribution solutions to manage the increasing loads generated by high-performance computing and storage systems. Laminated busbars offer advantages such as compactness, reduced weight, and enhanced thermal performance compared to traditional cabling systems, making them ideal for power distribution within data centers. Additionally, their customizable design allows for easy integration into complex layouts, optimizing space utilization and streamlining installation processes. As data centers continue to expand globally to meet escalating digital demands, the laminated busbar market is poised for substantial growth, driven by the imperative for efficient and reliable power distribution solutions tailored to the unique requirements of modern data infrastructure.
Environmental concerns
The production of laminated busbars involves various materials and processes that can have detrimental effects on the environment, including the use of metals, plastics, and adhesives that may contribute to pollution and resource depletion. The disposal of laminated busbars at the end of their lifecycle poses challenges, as they often contain non-biodegradable materials that can lead to environmental contamination if not properly managed. The energy-intensive manufacturing processes required for laminated busbars may contribute to greenhouse gas emissions and exacerbate climate change concerns.
The Covid-19 pandemic significantly impacted the laminated busbar market, primarily due to disruptions in the global supply chain, reduced industrial activities, and uncertainty in market demand. With lockdown measures enforced in many regions to curb the spread of the virus, manufacturing facilities faced closures or operated at limited capacities, leading to delays in production and distribution of laminated busbars. However, as industries gradually resumed operations and adapted to new norms, such as remote work and enhanced safety measures, the market witnessed a slow recovery.
The epoxy powder coating segment is expected to be the largest during the forecast period
Epoxy Powder Coating segment is expected to be the largest during the forecast period. Epoxy powder coating provides a durable and protective layer to the busbars, shielding them from environmental factors such as moisture, corrosion, and heat. This coating not only ensures the insulation and safety of the busbars but also enhances their mechanical strength, making them more resilient to wear and tear. Additionally, epoxy powder coating offers versatility in terms of color options, allowing for customization to match specific aesthetic or functional requirements.
The renewable energy segment is expected to have the highest CAGR during the forecast period
Renewable Energy segment is expected to have the highest CAGR during the forecast period. As demand for renewable energy sources like solar and wind power continues to surge, the need for efficient power distribution solutions intensifies. Laminated busbars, with their compact design, high power density, and superior electrical conductivity, are proving to be an ideal choice for transmitting power within renewable energy systems. Their ability to reduce space requirements, lower electrical losses, and enhance system reliability makes them indispensable components in inverters, converters, and other renewable energy infrastructure.
Throughout the forecast period, the Asia Pacific region held the largest share of the market owing to its growing population, urbanization, and industrialization. Consequently, there is an enormous demand for a reliable power source. China, the most populous nation on earth, is predicted by the International Energy Agency (IEA) to build 36% of the world's hydroelectricity producing capacity and 40% of the world's wind energy between 2015 and 2021. China already has more than 259,000 MW of new coal plants under development, making up more than one-third of the world's coal plant pipeline.
Asia Pacific region is poised to hold profitable growth during the extrapolated period. Government regulations in the Asia Pacific region are playing a substantial role in enhancing the laminated busbar market. These regulations often focus on energy efficiency, safety standards, and environmental sustainability, all of which are areas where laminated busbars excel. Furthermore, stringent safety standards in the region mandate the use of reliable and durable electrical components, further driving the demand for laminated busbars known for their robustness and reliability.
Key players in the market
Some of the key players in laminated Busbar market include Amphenol Corporation, Eaton Corporation PLC, Electronic Systems Packaging LLC, Mersen SA, Methode Electronics Inc, Molex LLC, Raychem RPG Private Limited, Rogers Corporation, Ryoden Kasei Co. Ltd, Segue Electronics Inc, Shanghai Eagtop Electronic Technology Co. Ltd, Suzhou West Deane Machinery Inc and Zhuzhou CRRC Times Electric Co. Ltd.
In April 2024, Amphenol announced the pricing of its offering of $450 million aggregate principal amount of senior notes due 2027, $450 million aggregate principal amount of senior notes due 2029 and $600 million aggregate principal amount of senior notes due 2034.
In January 2023, Mersen, an international leader in electrical power and advanced materials, was selected by Automotive Cells Company (ACC), a joint venture involving Stellantis; TotalEnergies/Saft; and Mercedes-Benz to deliver intelligent laminated busbars.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.