市場調查報告書
商品編碼
1359046
2030 年 3D 技術市場預測 -依產品、用途和地區分類的全球分析3D Technology Market Forecasts to 2030 - Global Analysis By Product, Application and By Geography |
根據 Stratistics MRC 的數據,2023 年全球 3D 技術市場規模為 1970.1 億美元,預計預測期內年複合成長率為 16.3%,到 2030 年將達到 5,669.5 億美元。
3D (3D) 技術賦予任何影像3D感。透過與 3D 視覺效果的交互,使用者可以步入場景並發現現實生活場景。使用 3D 技術創建的物件影像極為精確。各種用途對基於 3D 技術的產品的需求不斷成長,包括健康、娛樂、政府、國防、娛樂、航太、汽車和工業領域。
根據《歐亞時報》發表的報導稱,美國正在利用 3D 列印技術創建一個臨時掩體,可以容納 HIMARS 車載火箭發射器系統。為此,國防創新部門 (DIU) 與 Icon 3D 合作,這是一家位於奧斯汀的建設公司,專門從事 3D 列印技術。
醫療3D列印廣泛應用於醫療保健研究和臨床活動。 3D 技術在醫療保健領域的應用已被觀察到用於各種目的,例如手術規劃、醫學影像和矯正器具。更具體地說,3D 列印徹底改變了個人化醫療設備、植入物和解剖模型的生產。此外,該技術還具有更快的製造速度、更低的成本和改善的患者治療效果。這項技術提高了手術計劃的準確性並改善了醫學教育。
與 3D 列印機、掃描器和軟體相關的初始投資、持續維護和材料成本可能會限制其採用,特別是對於小型企業和個人消費者而言。購買和安裝複雜的設備可能非常昂貴。 3D 列印過程中使用的材料可能比用於射出成型的金屬錠或塑膠貴得多。 3D 技術材料的單位重量成本比傳統材料高出八倍。
在教育中使用 3D 技術有許多好處。 3D科技讓教育變得更加身臨其境、更具互動性。實現體驗式學習、任務想法的視覺化和虛擬實驗。此外,3D 列印可以創建實體原型和模型,從而增強工程和設計等領域的實踐教育。此外,3D 建模技術可用於為學生客製化學習體驗。透過讓學生接觸各種學習體驗,3D 列印技術可以培養學生的分析思維。學生可以依照自己的步調學習,並使用教育工作者專門為學生創建的客製化 3D 模型和模擬來專注於特殊需求的領域。
3D技術不僅需要數位資訊,還需要連接設備。資料外洩、詐欺的存取和智慧財產權盜竊等網路安全威脅會導致漏洞增加。為了破壞 3D 系統,惡意行為者可以利用網路、硬體和軟體缺陷,導致敏感資料被盜和業務營運中斷。
COVID-19的出現和傳播對涉及3D技術的市場參與企業產生了重大影響。 3D技術市場擴大的主要促進因素之一是全球範圍內汽車需求的不斷成長。然而,由於各國政府為阻止 COVID-19 傳播而採取的封鎖措施,全球汽車銷售量大幅下降。這對3D技術領域的發展產生了負面影響。此外,這些封鎖也將影響全球人均收入和相關國家的國內生產毛額。目標商標產品製造商生產放緩以及對3D和其他電子產品的需求減少略微阻礙了3D技術的市場擴張。零件和材料的短缺正在對全球供應鏈產生重大影響。
預計3D成像領域將佔據最大佔有率。 3D 成像是創造物體3D影像的過程。它使用獨特的相機和軟體來拍照並建立物體的3D模型。它具有廣泛的用途範圍,包括產品設計、建築渲染和醫學影像。此外,它還可用於製造義肢、安排手術和診斷疾病。它還可用於工程和製造原因、創建產品模型以及更快、更明顯的研究。更輕鬆的手術計劃、治療和診斷,以改善臨床結果。這些因素正在推動市場需求。
預計航太和國防領域在預測期內將出現良好的成長。 3D 技術在重量和太空限制方面為航太和國防工業提供了顯著優勢,能夠生產提高飛機和太空船性能的零件。技術的進步無疑為產業帶來了突破,而3D列印目前正在為航太和國防工業帶來顯著的效益。此外,借助 3D 列印技術,可以生產極其耐用且輕質的結構零件,重量減輕約 40-60%,從而節省成本和材料,並減少燃料使用。
由於工業領域擴大採用先進技術,北美在估計期間佔據了最大的市場佔有率。該地區對最尖端科技的解決方案的需求不斷成長,這些解決方案有助於加快處理速度,這是推動 3D 技術在各個應用領域採用的關鍵要素。此外,美國和加拿大是北美國家在各種製造流程中率先採用此類技術的例子。這是因為 3D 技術正在汽車、醫療保健和教育等廣泛行業中迅速採用。同樣,由於 3D 技術的改進和簡化,3D 遊戲在美國變得越來越流行。
預計亞太地區在預測期內將實現盈利成長。亞太地區是一個快速擴張的市場。該地區3D技術應用被寄予厚望的主要國家是印度、中國和日本。此外,3D技術也廣泛應用於醫療、教育、家電等領域。健康的財政資源的增加、生活方式的廣泛改變以及對採用適當技術進行快速製造的偏好預計將推動對 3D 設備的需求,這可能有利於亞洲 3D 技術市場。Masu。
According to Stratistics MRC, the Global 3D Technology Market is accounted for $197.01 billion in 2023 and is expected to reach $566.95 billion by 2030 growing at a CAGR of 16.3% during the forecast period. Three-dimensional (3D) technology provides any image with an enhanced perception of dimension. Users can interact with the 3D visuals to enter the scenario and locate an actual scene. Images of objects created using 3D technology are incredibly precise and accurate. There is a growing demand for products based on 3D technology in a variety of applications, such as the health, entertainment, government, defence, entertainment, aerospace, automotive, and industrial sector.
According to an article published in The EurAsian Times, US Marines have been using 3D printing technologies to create instant bunkers capable of holding a HIMARS truck-mounted rocket launcher system. For this, the Defence Innovation Unit (DIU) collaborated with the Austin-based Icon 3D, a construction company specializing in 3D printing technologies.
Healthcare research and clinical activities employ medical 3D printing extensively. The deployment of 3D technology in the healthcare sector has been observed for a variety of purposes, such as surgery planning, medical imaging, and prosthetics. More specifically, 3D printing has transformed the production of personalised medical equipment, implants, and anatomical models. Moreover, faster production, lower prices, and better patient results are all benefits of this technology. This technology has allowed for greater accuracy in surgical planning and improved medical education.
The initial investment, ongoing maintenance, and material costs associated with 3D printers, scanners, and software can limit adoption, especially for small and medium-sized businesses and individual consumers. Sophisticated equipment can be extremely expensive to buy and install. The material used in 3D printing processes can be significantly more expensive than metal ingots or plastic for injection moulding. Up to eight times more money per unit of weight can be spent on materials for 3D technology than on traditional materials.
There are numerous advantages to using 3D technology in education. Education has become immersive and interactive with 3D technology. It enables experiential learning, the visualisation of challenging ideas, and virtual experimentation. Additionally, 3D printing makes it possible to produce actual prototypes and models, enhancing practical education in domains like engineering and design. Moreover, students' learning experiences can be tailored using 3D modelling technologies. Through exposure to various learning experiences, 3D printing technology helps students develop their analytical thinking. Students can work at their own pace and concentrate on the areas where they need extra help with customised 3D models or simulations that have been created by educators specifically for them.
Digital information as well as connected devices is essential to 3D technologies. Threats to cybersecurity, including data breaches, unauthorised access, and intellectual property theft, are made more vulnerable as a consequence. In order to compromise 3D systems, malicious actors can take advantage of flaws in networks, hardware, or software, potentially resulting in the theft of confidential data or the interruption of business activities.
The emergence and spread of COVID-19 have had a substantial impact on market participants engaged in 3D technologies. One of the major drivers of the 3D technology market's expansion is the rising demand for automobiles on a global scale. However, due to lockdowns implemented by various governments to stop the spread of COVID-19, automobile sales have been considerably reduced globally. This has an adverse effect on the development of the 3D technology sector. Additionally, these lockdowns have an effect on global per capita income as well as the GDP of the nations involved. The slowdown in original equipment manufacturer production and the decline in demand for 3D and other electronics products have marginally hampered the market's expansion for 3D technology. Shortages of components and materials have significantly impacted global supply chains.
The 3D Imaging segment is estimated to hold the largest share. 3D imaging is the process of creating a three-dimensional image of an object. It entails the use of distinctive cameras and software to take pictures and build a three-dimensional model of the thing. It can be applied to a wide range of applications, including product design, architectural rendering, and medical imaging. Additionally, it can be used to build prosthetic devices, schedule surgeries, and diagnose diseases. For engineering and manufacturing reasons, it can also be used to make models of commodities as well as more rapid, easier-to-read studies. It facilitates surgical planning, treatment, and diagnosis, resulting in an increase in clinical output. These elements are increasing market demand.
The Aerospace & Defense segment is anticipated to have lucrative growth during the forecast period. 3D technology offers the aerospace and defence industries significant advantages in terms of weight and space constraints, allowing them to build components that will improve the performance of aeroplanes or spacecraft. More technological advances will undoubtedly result in industry breakthroughs, and 3D printing currently offers substantial benefits to the aerospace and defence industries. Moreover, with the aid of 3D printing technology, parts may be produced with extremely durable and light architectures that achieve weight reductions of about 40-60%, resulting in cost and material savings as well as reduced fuel usage.
North America commanded the largest market share during the extrapolated period, due to an increase in the adoption of advanced technologies in the industrial sector; North America is now dominating the market. The region's expanding demand for cutting-edge technology-based solutions that help speed up the pace of processing is the primary driver behind the adoption of 3D technology in a variety of application areas. Moreover, two examples of North American countries that were among the pioneering and early adopters of such technology in a range of manufacturing processes are the U.S. and Canada. Due to the fast adoption of 3D technology across a wide range of industries, including automotive, healthcare, education, and other sectors. Likewise, 3D gaming has grown in popularity in the United States as a result of improved and simplified 3D technology.
Asia-Pacific region is expected to witness profitable growth over the projection period. The Asia-Pacific region has a rapidly expanding market. The key nations with significant prospects for the application of 3D technology in the region are India, China, and Japan. In addition, 3D technology is being extensively used in fields including healthcare, education, and consumer electronics. A desire for 3D-enabled devices is anticipated to be fuelled by increased healthy financial resources, extensive lifestyle changes, and a preference for faster manufacturing with the correct technology, which will benefit the Asian market for 3D technology.
Some of the key players in the 3D Technology Market include: 3D Systems Corporation, Autodesk Inc., Panasonic Corporation, TomTec Imaging Systems GmbH, Vicon Motion Systems Ltd., American Paper Optics, ExOne Company, Stratasys Ltd., Hexagon AB, Cognex Corporation, Faro Technologies Inc., Samsung, Dassault Systemes, Barco, HP Development Company L.P., Nikon Corporation, WASP S.r.l, Desktop Metal Inc., Koninklijke Philips NV and Dolby Laboratories Inc.
In July 2023, 3D Systems announced new materials to enhance its Stereolithography (SLA) and Figure 4®? portfolios - Accura® AMX Tough FR V0 Black, Figure 4 Tough FR V0 Black, and Figure 4 JCAST-GRN 20. These new high-performance materials are enabling efficient production of end-use parts in industries such as automotive, aerospace, semiconductor, and consumer goods.
In March 2023, 3D Systems Announces Partnerships with 6K and TE Connectivity. 3D Systems has announced two new partnerships, each involving another American manufacturing company. One of the partnerships, with TE Connectivity - a major producer of electrical connectors and sensors, headquartered in Pennsylvania - will involve the development of 3D printed electrical connectors, using a unique photopolymer that 3D Systems engineered specifically for TE.