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市场调查报告书
商品编码
1662663
2030 年汇流排市场预测:按导体材料、额定功率、应用、最终用户和地区进行的全球分析Busbar Market Forecasts to 2030 - Global Analysis By Conductor Material (Copper and Aluminum), Power Rating, Application, End User and By Geography |
根据 Stratistics MRC 的数据,全球汇流排市场预计在 2024 年达到 151 亿美元,到 2030 年将达到 233 亿美元,预测期内的复合年增长率为 7.5%。
汇流排是配电系统中用来有效收集和分配电能的金属条或金属棒。它们通常由铜或铝等高导电材料製成,是变电站、配电盘、开关设备和配电板中必不可少的组件。汇流排充当多个输入和输出电流汇聚或发散的通用连接点。汇流排设计用于承载大电流,同时最大限度地减少损耗和电压降。它们的尺寸、形状和材料会根据载流能力、系统电压和环境因素而变化。
据海军技术学院称,中国已经研发出世界上功率最强大的高能量武器电池。 40165电池是第一款能像超级电容器一样快速释放能量的电池。
高效配电,能量损失最小
对高效能能源分配系统的需求日益增长,有助于最大限度地减少传输过程中的能量损失,并提供比传统布线方法更可靠的解决方案。汇流排更有效分配电力的能力支持了製造业、能源和运输等产业的发展。此外,汇流排还可以透过提高能源性能来降低营运成本。因此,许多行业正在转向汇流排系统来优化其能源基础设施,从而促进市场成长。
新兴经济体认知度较低
在新兴经济体中,人们通常缺乏对汇流排系统的认识和理解,从而减缓了市场采用。由于前期成本较低且熟悉程度较高,这些地区通常依赖传统的布线方法。缺乏经过训练的专业人员进行安装和维护也是广泛采用的障碍。许多新兴国家的经济限制使得企业难以投资汇流排等先进的能源分配解决方案。
汇流排设计与材料的进步
铝和铜等材料的创新使得汇流排更有效率、耐用且经济实惠。此外,设计的增强使得系统更加紧凑和灵活,使其更容易安装在各种工业应用中。智慧电网和可再生能源整合的兴起增加了对能够适应这些技术的高效配电系统的需求,这一趋势为先进的汇流排解决方案创造了一个不断增长的市场。
改造现有系统的复杂性
维修现有的电气系统非常复杂。许多旧基础设施在设计时并未考虑汇流排,这使得整合这些系统变得困难且成本高昂。维修安装可能需要进行重大改动以适应新设备,并会扰乱正在进行的运作。这种复杂性可能会使一些客户犹豫是否要升级到汇流排系统,特别是在涉及高成本和潜在的停机时间时。因此,一些企业可能会继续依赖那些无法提供与现代汇流排相同的能源效率优势的过时系统。
COVID-19 的影响
COVID-19 疫情扰乱了全球供应链并推迟了建设计划,对汇流排市场产生了严重影响。封锁期间,生产设施暂时关闭,导致汇流排和相关组件的生产延迟。此外,产业资金负担也影响了新能源基础设施的投资。然而,疫情凸显了对更具弹性和更有效率的能源系统的需求,这可能会推动汇流排市场未来的成长。
铜市场预计将成为预测期内最大的市场
由于传输过程中的能量损失较低,预计铜线将在预测期内占据最大的市场占有率。这减少了能源损失,改善了配电系统并降低了营运成本。铜的耐用性和耐腐蚀性确保了更长的使用寿命和更少的维护,特别是在恶劣的环境下,使其成为运输、采矿和重工业等需要持续能源供应的行业的宝贵选择,从而推动了市场成长。
预计预测期内配电部门将以最高的复合年增长率成长。
由于全球能源消耗的增加需要更有效率的配电网络,预计配电部门将在预测期内见证最高成长率。传统系统容易发生功率损耗,不适合发电厂、变电站和工厂等大型设施。製造商正在生产满足电力需求且不会造成任何重大损失的高性能汇流排,从而增加现有和新的配电计划的需求,从而推动市场成长。
在预测期内,由于对先进配电解决方案的需求不断增长,预计北美将占据最大的市场占有率。能够承受高负载并与智慧电网技术相容的汇流排需求量很大。配电网路中感测器、GPS 和自动化的整合增强了汇流排功能,能够即时监控电流和使用情况。智慧电网的趋势正在推动先进汇流排解决方案的发展并有助于扩大市场。
在预测期内,亚太地区预计将呈现最高的复合年增长率,这得益于工业和城市的快速成长,尤其是中国、印度和东南亚等新兴经济体。这种成长产生了对强大配电系统的需求。由于汇流排能够以节省空间的设计处理高电流负载,因此越来越多地用于工业厂房、商业综合体和住宅开发项目。随着新的商业和住宅建筑的激增,对可靠、高效和安全的电力系统的需求变得更加迫切。
According to Stratistics MRC, the Global Busbar Market is accounted for $15.1 billion in 2024 and is expected to reach $23.3 billion by 2030 growing at a CAGR of 7.5% during the forecast period. A busbar is a metallic strip or bar used in electrical power distribution systems to collect and distribute electrical energy efficiently. Typically made of highly conductive materials like copper or aluminum, they are integral components of substations, panel boards, switchgear, and distribution boards. They serve as a common junction where multiple incoming and outgoing electrical currents converge or branch out. Busbars are designed to carry large amounts of current while minimizing losses and voltage drops. Their size, shape, and material depend on the current-carrying capacity, system voltage, and environmental factors.
According to Naval University of Engineering published a study stating that China has developed the world's most powerful battery for high-energy weapons, which can be mass-produced in the nation's many lithium battery plants. The 40165 battery was the first to release energy as quickly as a supercapacitor.
High efficiency in distributing electricity with minimal energy losses
The increasing demand for efficient energy distribution systems help minimize energy losses during transmission, offering a more reliable solution compared to traditional wiring methods. Their ability to distribute electricity with higher efficiency supports the growth of industries like manufacturing, energy, and transportation. Moreover, busbars contribute to reducing operational costs by improving energy performance. As a result, many industries are shifting towards busbar systems to optimize their energy infrastructure boosting the market growth.
Limited awareness in emerging economies
In emerging economies, there is often a lack of awareness and understanding of busbar systems, which slows market adoption. These regions typically rely on traditional wiring methods due to lower initial costs and familiarity. The absence of trained professionals for installation and maintenance also presents a barrier to widespread implementation. Financial constraints in many developing countries make it difficult for businesses to invest in advanced energy distribution solutions like busbars.
Advancements in busbar design and materials
New innovations in materials, such as aluminum and copper, have improved the efficiency and durability of busbars, making them more cost-effective. Additionally, enhanced designs allow for more compact and flexible systems that are easier to install in various industrial applications. With the rise of smart grids and renewable energy integration, there is a growing demand for efficient power distribution systems that can accommodate these technologies these trends create an expanding market for advanced busbar solutions.
Complexity in retrofitting existing systems
The complexity involved in retrofitting existing electrical systems. Many older infrastructures were not designed with busbars in mind, making the integration of these systems challenging and costly. Retrofitting can require significant modifications to accommodate new equipment, disrupting ongoing operations. This complexity can discourage industries from upgrading to busbar systems, especially if it involves high costs or potential downtime. As a result, some companies may continue to rely on outdated systems that do not offer the same energy efficiency benefits as modern busbars.
Covid-19 Impact
The Covid-19 pandemic has had a significant impact on the busbar market by disrupting global supply chains and delaying construction projects. During the lockdowns, production facilities faced temporary closures, which slowed the manufacturing of busbars and related components. Additionally, the financial strain on industries also impacted investments in new energy infrastructure. However, the pandemic has highlighted the need for more resilient and efficient energy systems, which could drive future growth in the busbar market.
The copper segment is expected to be the largest during the forecast period
The copper segment is expected to account for the largest market share during the forecast period due to its minimal energy loss during transmission. This reduces energy losses, improving power distribution systems and reducing operational costs. Copper's durability and corrosion resistance, especially in harsh environments, ensures longer lifespans and fewer maintenance requirements, making it a valuable choice for industries like transportation, mining, and heavy manufacturing where constant energy distribution is crucial driving the market growth.
The power distribution segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the power distribution segment is predicted to witness the highest growth rate due to increasing global energy consumption necessitates a need for more efficient power distribution networks. Traditional systems, which often result in power losses, are not suitable for large-scale facilities like power plants, substations, and factories. Manufacturers are producing high-performance busbars to meet electricity demand without significant losses, leading to increased demand in both existing and new power distribution projects, driving market growth.
During the forecast period, the North America region is expected to hold the largest market share owing to driving demand for advanced power distribution solutions. Busbars, which can handle higher loads and are compatible with smart grid technologies, are in high demand. The integration of sensors, GPS, and automation in power distribution networks enhances the functionality of busbars, allowing real-time monitoring of electricity flow and usage. The trend towards smart grids is driving the development of sophisticated busbar solutions, driving market expansion.
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR experiencing rapid industrial and urban growth, especially in emerging economies like China, India, and Southeast Asia. This growth has led to a growing demand for robust power distribution systems. Busbars, due to their space-saving design and ability to handle high current loads, are increasingly used in industrial plants, commercial complexes, and residential developments. As new commercial and residential buildings increase, the need for reliable, efficient, and safe power systems becomes more critical.
Key players in the market
Some of the key players in Busbar market include TE Connectivity , Schneider Electric Co, Rittal GMBH & Co. KG, R.J. Group, Promet AG, Megabarre Group, Legrand, Larsen & Toubro, KGS Engineering Ltd, Godrej & Boyce Manufacturing Company Ltd., General Electric Company, Entraco Power, Eaton Corporation P.L.C., C&S Electric Ltd., Busbar Services, ABB Ltd. And A.E EleKTrik A.S.
In January 2025, Schneider electric champions greater adoption of sustainable technology ahead of the world economic forum annual meeting in Davos. More collaboration and innovative technologies essential for combining business and environmental goals, company claims.
In September 2024, Eaton announced the signing of a Memorandum of Understanding (MoU) with the Government of Tamil Nadu. This agreement marks a significant step in Eaton's expansion plans for its Crouse-Hinds and B-Line business, reinforcing the company's commitment to driving innovation and growth in India through its sustainable solutions.