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市场调查报告书
商品编码
1370837
3D 列印市场 - 全球产业规模、份额、趋势、机会和预测,2018-2028 年。按组件、(按软体)、按印表机类型、按技术、按流程、按行业、按地区细分3D Printing Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, 2018-2028F. Segmented By Component, (By Software ), By Printer Type, By Technology, By Process, By Vertical, By Region |
全球3D列印市场预计在2024-2028年预测期内蓬勃发展,由于3D列印的积极研究和开发以及各行业领域对原型应用的需求不断增长,特别是医疗保健、汽车、以及航空航天和国防。
市场概况 | |
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预测期 | 2024-2028 |
2022 年市场规模 | 175.9亿美元 |
2028 年市场规模 | 618.1亿美元 |
2023-2028 年复合年增长率 | 23.34% |
成长最快的细分市场 | 服务 |
最大的市场 | 北美洲 |
工业製造正在逐步利用 3D 列印技术,特别是在汽车、航空航太和国防领域。模具、夹具和固定装置、注塑成型和生产零件製造都可以从 3D 列印中受益。 3D 列印创新在几个领域正处于改进的开始阶段,例如列印硬体、材料、鞋类以及食品和烹饪;然而,珠宝、教育、艺术和建筑业正在迅速采用它。印表机和印刷技术不断进步,印刷材料不断改进,市场上出现了熟练的劳动力。 3D 列印追踪处理 PCB 并生产监听设备、主要设备、列印感测器、电话无线电线、电池、太阳能电池、发光二极管和其他动态和潜在设备的预期机会。
数位中断极大地影响了全球许多国家的先进製造技术。美国可以利用3D技术。该技术作为一项关键能力被列入美国国防部2018年预算。针对积层和 3D 列印製造的产品甚至被 Autodesk、微软和惠普等科技软体巨头所超越。
同样,中国也正在付出巨大努力来维持製造业在全球市场上的竞争力指数。由于中国製造商将这项技术视为提振经济的风险和机会,因此他们经常对其研发进行投资。印度也将这项技术视为全球製造业竞争力做出更多贡献的机会。印度製造计划和其他积极的政府计划支持印度市场。例如,印度水泥公司与建筑 3D 列印新创公司 Tvasta 于 2022 年 5 月合作,促进建筑业的永续发展。
韩国为该技术的研发实施独立路线图提供国家支持。为了鼓励使用这项技术,韩国政府正在加速签署行业监管协议并实施税收优惠。英国政府制定了独立的3D技术战略;然而,受英国脱欧影响,英国製造业正面临一些不确定性。由于其完善的工业 4.0 基础设施,德国有望制定新技术战略。由于所有这些技术的发展,3D 列印市场将在预测期内成长。
成熟的市场参与者和精通技术的新创公司正在升级和开发新技术。由于硬体的进步,用于生产的 3D 列印机变得更快、更可靠。使用最广泛的 3D 列印机之一是聚合物列印机。 2022年12月,Redington Limited与ETEC、Materialise和Wipro产品签订合同,为企业提供全端服务和产品,让3D製造流程变得更容易。此外,Redington Limited 与 Wipro 3D 合作,让聚合物 3D 列印机在印度的推出变得更加容易。
根据统计,聚合物增材製造的进步将为市场参与者带来新的市场机会。由于其高生产率和批量生产的能力,HP Inc. 的 Multi Jet Fusion 和 Fused Filament Fabrication (FFF) 等粉床熔融技术预计将成为最受欢迎的工业 3D 技术。同样,牙科和消费品行业对立体光固化成型 (SLA) 和数位光处理 (DLP) 等树脂技术的需求也可能不断增长。
同样,简化操作的需求正在将 3D 行业的软体开发推向新的高度。由于该技术在製造过程中被大量使用,因此对能够帮助製造商提高产量并更有效地改进其增材製造流程的软体的需求量很大。
全球政府对 3D 列印专案的投资将在预测期内推动市场。
为了进一步研究 3D 列印技术带来的机会并鼓励其发展,世界各国政府正在发起倡议并向教育机构、研究中心和技术组织提供资金。美国、英国和加拿大已实施国家计划,鼓励大学程度的 3D 列印研究、技术进步和新创企业发展。由于 3D 列印技术新用途的出现,世界各地的行业和政府已转向 3D 列印。例如,英国国家增材製造策略2018-2025 的目标是到2025 年创造60,000 个特定行业就业机会,并产生38,4459 万美元的年度总增加价值(GVA)。该策略描述了监督主题的工作组提出的所有建议。
全球 3D 列印市场根据组件、印表机类型、技术、製程、垂直、区域分布和竞争格局进行细分。根据组件,市场分为硬体、软体和服务。此外,软体子部分分为设计软体、检查软体、印表机软体和扫描软体。根据印表机类型,市场分为桌上型 3D 列印机和工业印表机。根据技术,市场分为立体光刻、熔丝沉积建模、选择性雷射烧结、电子束熔化、层压物体製造等。根据工艺,市场分为粉体熔化成型、还原聚合/液体、材料挤製成型、黏着剂喷涂成型、材料喷涂成型等。根据垂直领域,市场分为汽车、消费性电子、医疗、航太与国防、教育和其他。根据地区,市场进一步分为北美、亚太地区、欧洲、南美、中东和非洲。
全球 3D 列印市场的主要市场参与者包括 Stratasys Ltd、3D Systems Corporation、EOS GmbH、通用电气公司 (GE Additive)、Sisma SPA、ExOne Co.、SLM Solutions Group AG、Proto Labs Inc.、Hewlett Packard Inc.、奈米尺寸有限公司
在本报告中,除了以下详细介绍的产业趋势外,全球 3D 列印市场还分为以下几类。
Global 3D Printing Market is expected to thrive during the forecast period 2024-2028F, the market is expected, due to the aggressive research and development of 3D printing and the rising demand for prototyping applications from a variety of industry sectors, particularly healthcare, automotive, and aerospace and defense.
A manufacturing method for creating three-dimensional items from digital files is known as three-dimensional printing. Through additive processes of sequential layers of material, 3D printing creates objects with the high precision and resource efficiency. In addition, 3D printing solutions like resin 3D printers, filament 3D printers, and services 3D printers have become increasingly popular in a variety of industries for the production of bespoke items. Previously, quick prototypes were the only use for 3D printing.
Market Overview | |
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Forecast Period | 2024-2028 |
Market Size 2022 | USD 17.59 Billion |
Market Size 2028 | USD 61.81 Billion |
CAGR 2023-2028 | 23.34% |
Fastest Growing Segment | Services |
Largest Market | North America |
Industrial manufacturing is progressively utilizing 3D printing technology, particularly in the automotive, aerospace, and defense sectors. Tooling, jigs and fixtures, injection molding, and production part manufacturing could all benefit from 3D printing. 3D printing innovation is in a beginning phase of improvement across a few areas, like printed hardware, materials, footwear, and food and culinary; However, the jewelry, education, and art and architecture industries are rapidly adopting it. Printers and printing technologies have advanced, printing materials have improved, and a skilled workforce has emerged in the market. 3D printing tracks down expected chances to dispose of PCBs and produce listening devices, primary gadgets, print sensors, phone radio wires, batteries, sun-oriented cells, light-transmitting diodes, and other dynamic and latent gadgets.
Digital interruptions are extremely affecting advanced manufacturing technologies in many nations worldwide. The United States could make use of 3D technology. This technology was included in the budget of the United States Department of Defense in 2018 as a crucial capability. Products aimed at additive and 3D printing manufacturing have been leaped by even tech software giants like Autodesk, Microsoft, and HP.
In a similar manner, China is putting in a lot of effort to keep the manufacturing industry's competitive index in the global market. Because Chinese manufacturers perceive this technology as both a risk and an opportunity to boost the economy, they frequently make investments in its research and development. And same in India sees this technology as a chance to contribute more to the global manufacturing competitiveness. The Make in India Initiative and other active government programs support India's market. For instance, India Cements and the construction 3D printing startup Tvasta collaborated in May 2022 to promote sustainability in the construction industry.
Korea provides national support for the implementation of an independent roadmap for this technology's research and development. To encourage the use of this technology, the Korean government is accelerating industry regulatory agreements and implementing tax incentives. An independent 3D technology strategy has been developed by the British government; However, because of Brexit, the manufacturing sector in the United Kingdom is experiencing some uncertainty. Due to its well-established Industry 4.0 infrastructure, Germany is expected to define new technology strategies. Due to all these technologies development the market for the 3D printing will grow in the forecast period.
New technologies are being upgraded and developed by established market players and tech-savvy start-ups. 3D printers for production have become faster and more dependable because of hardware advancements. One of the most widely used 3D printers is the polymer printer. In December 2022, Redington Limited signed a contract with ETEC, Materialize, and Wipro products to provide businesses with full-stack services and products to make the 3D manufacturing process easier. In addition, Redington Limited worked with Wipro 3D to make the introduction of polymer 3D printers in India easier.
According to the statistics, new market opportunities for market participants would result from advancements in polymer additive manufacturing. Due to their capacity for high productivity and volume production, powder bed fusion technologies like HP Inc.'s Multi Jet Fusion and Fused Filament Fabrication (FFF) are anticipated to be the most popular industrial 3D technologies. In a similar vein, the dental and consumer goods industries are more likely to have a growing demand for resin-based technologies like Stereolithography (SLA) and digital light processing (DLP).
In a similar vein, the need to streamline operations is propelling software development in the 3D industry to new heights. Since the technology is used a lot in the manufacturing process, software that can help manufacturers increase production volumes and improve their additive manufacturing processes more effectively is in high demand.
Global Government investment in 3D printing projects will drive the market in forecast period.
To further investigate the opportunities presented by 3D printing technology and encourage its development, governments around the world are launching initiatives and providing funding to educational institutions, research centers, and technology organizations. National programs have been implemented in the United States, the United Kingdom, and Canada to encourage university-level 3D printing research, technological advancement, and startup development. Industries and governments around the world have turned to 3D printing because of the emergence of new uses for the technology. For instance, the UK National Strategy for Additive Manufacturing 2018-2025 aims to create 60,000 sector-specific jobs and generate 3844.59 million USD in annual gross value added (GVA) by 2025. The strategy depicts all the recommendations made by the workgroups that oversaw themes.
Global 3D Printing Market is segmented based on Component, Printer Type, Technology, Process, Vertical, regional distribution and competitive landscape. Based on Component, the market is divided into Hardware, Software and Services. Further, the Software sub-Segment is fragmented into Design Software, Inspection Software, Printer Software, and Scanning Software. Based on Printer Type, the market is segmented into Desktop 3D Printer and Industrial Printer. Based on Technology, the market is divided into Stereolithography, Fuse Deposition Modeling, Selective Laser Sintering, Electron Beam Melting, Laminated Object Manufacturing, and Others. Based on Process, the market is divided into Powder Bed Fusion, Vat Polymerization/ Liquid Based, Material Extrusion, Binder Jetting, Material Jetting, and Others. Based on Vertical, the market is divided into Automobile, Consumer Electronics, Medical, Aerospace & Defense, Education, and Others. Based on region, the market is further bifurcated into North America, Asia-Pacific, Europe, South America, Middle East & Africa.
Major market players in the Global 3D Printing Market are Stratasys Ltd, 3D Systems Corporation, EOS GmbH, General Electric Company (GE Additive), Sisma SPA, ExOne Co., SLM Solutions Group AG, Proto Labs Inc., Hewlett Packard Inc., Nano Dimernsion Ltd.
In this report, the Global 3D Printing Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below.