市場調查報告書
商品編碼
1541674
2024-2032 年按產品類型(通風、非通風等)、材料(玻璃、金屬、塑膠和纖維、石材等)、最終用途(商業、住宅、工業)和地區分類的外牆市場報告Facade Market Report by Product Type (Ventilated, Non-Ventilated, and Others), Material (Glass, Metal, Plastic and Fiber, Stones, and Others), End Use (Commercial, Residential, Industrial), and Region 2024-2032 |
2023年全球帷幕牆市場規模達2,732億IMARC Group。快速的城市化和基礎設施發展、對永續性和能源效率的日益關注、嚴格的監管框架、持續的產品創新和技術進步是推動市場的一些主要因素。
立面是指建築物的外表面,特別是考慮到美學吸引力而設計的前視圖。它是該結構的主要顯示表面,能夠立即塑造觀察者的第一印象。外牆通常包含窗戶、門和裝飾特徵等元素,以增強其視覺吸引力並發揮功能作用。它們體現了建築物的建築風格,講述了其歷史時期、功能和文化背景。精心設計的立面將美學與永續性考量相協調,通常包含創新材料和技術以提高能源效率。
全球帷幕牆市場主要受到全球城市化進程和基礎設施發展的推動。除此之外,永續建築的轉變趨勢迫使製造商進行創新並提供環保的外牆解決方案,包括節能玻璃和可回收材料,為市場成長創造了良好的前景。此外,全球監管機構正在實施嚴格的能源消耗規範,要求住宅和商業建築使用節能外牆。此外,技術的重大進步為光伏和智慧玻璃等外牆內智慧功能和數位技術的整合鋪平了道路,推動了市場向前發展。同時,對老化基礎設施的日常維護和改造的需求不斷成長,是另一個重要的成長誘導因素。此外,由於生活水準的提高和對建築趨勢意識的增強,消費者對美觀結構的偏好為市場帶來了有利可圖的成長機會。
都市化和基礎設施發展
隨著全球城市化進程的加快,對新建設項目的需求不斷增加,其中包括大量的建築,從住宅綜合體和商業空間到工業設施和醫院、學校和政府建築等公共基礎設施。這刺激了對高品質、美觀且堅固的外牆的需求。這些對於增強建築物的視覺吸引力、創造獨特的建築特徵以及提供對風、雨和熱等環境因素的基本保護至關重要。此外,廣泛採用產品來提高建築物的能源效率,幫助調節室內溫度,並促進整體永續發展,這有助於市場擴張。
日益關注永續性和能源效率
不斷提高的環保意識和對永續發展的不斷推動對建築業產生了積極影響,反過來又推動了功能性和環境責任結構的建設。在全球範圍內,各國政府正在製定更嚴格的法規來限制與建築物相關的碳排放,並認知到建築業在全球整體排放中發揮的重要作用。這些變化的結果影響了對節能外牆的需求,這些外牆可以調節室內溫度,從而減少對人工加熱和冷卻系統的依賴。除此之外,對具有熱活性建築系統或生物基材料製成的外牆的需求激增,這進一步有助於最大限度地減少建築物的碳足跡,正在加強市場成長。
重大技術進步
建築業不斷的技術創新催生了配備一系列先進功能的智慧幕牆,例如減少維護需求的自清潔表面、能夠根據光強度調整透明度的動態玻璃以及整合數位技術的幕牆用於互動和響應目的。這為市場成長創造了有利的前景。除此之外,將光伏電池整合到外牆中,使建築物能夠產生太陽能,為市場帶來了有利可圖的成長機會。此外,將物聯網(IoT)設備和感測器整合到立面中,可即時監控和控制各種立面功能,提高能源效率和使用者舒適度,正在促進市場成長。
The global facade market size reached US$ 273.2 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 499.4 Billion by 2032, exhibiting a growth rate (CAGR) of 6.93% during 2024-2032. Rapid urbanization and infrastructural development, the rising focus on sustainability and energy efficiency, stringent regulatory framework, ongoing product innovation, and technological advancements are some of the major factors propelling the market.
A facade refers to the exterior face of a building, particularly the front view designed with aesthetic appeal in mind. It serves as the structure's primary display surface, the one that instantly shapes the first impression for observers. Facades often incorporate elements such as windows, doors, and decorative features that enhance their visual allure and serve functional roles. They embody the architectural style of the building, narrating its historical period, function, and cultural context. A well-designed facade harmonizes aesthetics with sustainability considerations, often encompassing innovative materials and techniques for improved energy efficiency.
The global facade market is mainly driven by increasing urbanization and infrastructural developments worldwide. Besides this, the shifting trend toward sustainable construction is compelling manufacturers to innovate and offer environmentally friendly facade solutions, including energy-saving glass and recyclable materials, creating a favorable outlook for market growth. Moreover, regulatory bodies across the globe are implementing stringent norms pertaining to energy consumption, necessitating the use of energy-efficient facades in both residential and commercial buildings. Additionally, significant advancements in technology have paved the way for the integration of smart features and digital technologies within facades, such as photovoltaic and smart glass, propelling the market forward. Concurrently, the growing need for routine maintenance and renovation of aging infrastructure is acting as another significant growth-inducing factor. Furthermore, consumer preference for aesthetically appealing structures, spurred by improved standards of living and growing awareness of architectural trends, is presenting remunerative growth opportunities for the market.
Urbanization and infrastructural development
As urbanization accelerates across the globe, there is an escalating need for new construction projects, including a vast array of structures, ranging from residential complexes and commercial spaces to industrial facilities and public infrastructure such as hospitals, schools, and government buildings. This is fueling the demand for high-quality, aesthetically pleasing, and robust facades. These are crucial for enhancing the visual appeal of buildings and creating distinct architectural identities and providing essential protection against environmental elements such as wind, rain, and heat. Moreover, widespread product adoption for improving a building's energy efficiency, helping regulate indoor temperature, and contributing to overall sustainability is aiding in market expansion.
Increasing focus on sustainability and energy efficiency
The rising environmental awareness and the constant push for sustainability is positively impacting the construction industry, in turn, impelling the construction of structures that are both functional and environmentally responsible. Across the globe, governments are establishing stricter regulations to limit the carbon emissions associated with buildings, recognizing the significant role the construction sector plays in overall global emissions. The result of these changes has influenced the demand for energy-efficient facades that can moderate interior temperatures, thereby reducing the dependency on artificial heating and cooling systems. In addition to this, the surging demand for facades featuring thermally active building systems or those made from bio-based materials, which further help minimize a building's carbon footprint, is strengthening the market growth.
Significant technological advancements
Ongoing technological innovation in the construction industry has resulted in the emergence of smart facades equipped with an array of advanced features such as self-cleaning surfaces that reduce maintenance needs, dynamic glass capable of adjusting its transparency according to light intensity, and facades integrating digital technologies for interactive and responsive purposes. This is creating a favorable outlook for market growth. In addition to this, the integration of photovoltaic cells into facades, allowing buildings to generate their solar energy, is presenting remunerative growth opportunities for the market. Furthermore, the integration of Internet of Things (IoT) devices and sensors into facades enabling real-time monitoring and control of various facade functions, improving energy efficiency and user comfort, is contributing to the market growth.
IMARC Group provides an analysis of the key trends in each segment of the market, along with forecasts at the global, regional, and country levels for 2024-2032. Our report has categorized the market based on product type, material, and end use.
Ventilated
Non-Ventilated
Others
Ventilated facades dominate the market
The report has provided a detailed breakup and analysis of the market based on the product type. This includes ventilated, non-ventilated and others. According to the report, ventilated facades represented the largest segment.
The demand for ventilated facades is primarily propelled by their unique features that enhance building functionality and aesthetics. The ventilation gap present in such facades aids in controlling the interior microclimate, thus providing a healthier, more comfortable environment for occupants. This ability to regulate heat and moisture reduces reliance on HVAC systems, thereby promoting energy efficiency. Moreover, ventilated facades act as an effective sound barrier, enhancing the acoustic comfort inside the building. They also offer increased fire resistance, making them a safer choice for high-rise constructions. Additionally, these facades are designed to facilitate easy installation and replacement of individual components, which significantly reduces maintenance and repair costs over time. Furthermore, the surging demand for customized aesthetic solutions and the availability of ventilated facades due to the wide variety of materials, textures, and colors is positively impacting the market growth.
Glass
Metal
Plastic and Fiber
Stones
Others
A detailed breakup and analysis of the market based on the material has also been provided in the report. This includes glass, metal, plastic and fiber, stones and others.
In the glass segment, the market is witnessing a surge due to the increasing demand for energy-efficient solutions and aesthetic appeal. Glass facades are predominantly used in commercial buildings and high-rise structures, offering benefits like natural lighting and thermal insulation.
The metal facade segment is also growing steadily, primarily driven by its durability and low maintenance requirements. Aluminum and steel are commonly used metals, favored for their ability to withstand extreme weather conditions and for their recyclability.
Plastic and fiber segments are gaining traction for their lightweight properties and cost-effectiveness. These materials are often used in residential and low-rise commercial buildings, offering a balance between durability and design flexibility.
The stone facade market is relatively stable, often chosen for its natural appearance and long-lasting durability. Stone materials like granite and marble are commonly used in luxury residential buildings and historical renovations, providing a timeless aesthetic.
Other materials like wood and composite are also part of the market but occupy a smaller share. These are typically chosen for specific aesthetic or functional needs and are less common in large commercial projects.
Commercial
Residential
Industrial
Commercial represents the leading end use segment
The report has provided a detailed breakup and analysis of the market based on the end use. This includes commercial, residential and industrial. According to the report, commercial represented the largest segment.
The increasing focus on brand image and visual identity represents one of the key trends influencing the market of facades in the commercial segment. Companies are realizing the potential of facades to make a strong architectural statement that aligns with their brand and sets them apart from the competition. This includes unique design elements that reflect the corporate identity, as well as a commitment to environmental sustainability through the use of eco-friendly facade materials. In addition to this, commercial buildings often have extensive requirements for heating, cooling, and lighting. Facades that incorporate smart technologies can optimize these functions, resulting in substantial long-term cost savings. Moreover, the rising emphasis on creating a healthier and more productive work environment to improve employee well-being and productivity is aiding in market expansion.
North America
United States
Canada
Asia Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
North America exhibits a clear dominance in the market, accounting for the largest facade market share
The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, North America accounted for the largest market share.
The demand for facades in North America is being driven by strict energy regulations and green building codes in the region. Besides this, favorable government policies such as tax incentives and rebates are also encouraging the adoption of these solutions. Moreover, the robust economic growth in North America is supporting significant commercial and residential development, which in turn, is propelling the demand for facades. In addition to this, the region's aging infrastructure necessitates extensive renovation and retrofitting activities, which is contributing to market growth. In addition to this, societal awareness regarding environmental issues and a desire for visually appealing architecture are shaping consumer preferences, prompting developers to focus on sustainable, aesthetically pleasing facades. North America is also home to many technology companies, leading to a higher uptake of smart facades with integrated features.
The competitive landscape of the market is highly fragmented and competitive, marked by the presence of numerous players ranging from large multinational corporations to small and medium-sized enterprises. These companies compete based on factors such as product quality, innovation, pricing, and the ability to provide comprehensive solutions and services. The market leaders typically have strong brand recognition, extensive product portfolios, and a wide geographical presence. Innovation is a key differentiator in this market, with companies continually investing in R&D to develop advanced and sustainable facade materials and solutions. Technological advancements, including the incorporation of smart technologies into facades, are frequently being introduced to meet evolving consumer demands.
Compagnie de Saint-Gobain S.A
Enclos Corp. (CH Holdings USA Inc.)
EOS Framing Limited
FunderMax GmbH
Harmon Inc. (Apogee Enterprises Inc.)
Kawneer Company Inc. (Arconic Corporation)
Permasteelisa S.p.A. (Lixil Group Corporation)
Rockwool International A/S
Walters & Wolf Glass Company
YKK AP Inc. (YKK Corporation)
In July 2021, Rockwool North America started commercial production of stone wool insulation products at its new manufacturing facility in West Virginia. The facility, which covers 460,000 square feet, utilizes advanced melting and emissions abatement technologies.
In September 2022, Saint-Gobain partnered with Megasol, a leader in building-integrated photovoltaics (BIPVs), acquiring a minority stake in Megasol's BIPV unit in Deitingen, Switzerland. This partnership will expand Saint-Gobain's sustainable facade solutions and position it as a leading provider for BIPV facade solutions in Europe.
In January 2023, Enclos acquired PFEIFER Structures America, expanding its offerings to include custom tensile membrane structures, structural glass systems, and kinetic structures.