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市场调查报告书
商品编码
1866610
3D列印:全球市场份额和排名、总收入和需求预测(2025-2031年)3D Printing - Global Market Share and Ranking, Overall Sales and Demand Forecast 2025-2031 |
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全球 3D 列印市场预计在 2024 年达到 51 亿美元,预计到 2031 年将达到 106.71 亿美元,在预测期(2025-2031 年)内以 12.3% 的复合年增长率增长。
3D列印是指利用数位檔案创建三维固体物件的过程。 「3D列印」一词涵盖了多种在电脑控制下组合或固化材料以製造三维物体的工艺。具体而言,3D列印通常涉及逐层建构和融合材料(例如液态分子或粉末颗粒)。本报告主要关注3D列印设备。
3D列印市场的主要驱动因素包括:
1. 技术进步与创新:突破物理限制,重建製造逻辑
材料科学领域的突破:
可生物降解且环保的材料:BASF推出了玉米淀粉基TPU,而eSUN公司则开发了ePHA(6个月内可降解90%)。这些材料可取代传统塑料,并减少50-60%的碳排放。
高性能工程塑胶:杜邦公司的高温 PA(耐温 300°C 以上)和索尔维公司的 PEKK(金属般强度)满足航空航天和医疗应用的严格要求。
智慧材料:4D 列印的光响应自修復聚合物(MIT 衍生公司)和温度可控可变形 PLA(中国科学院)实现了功能再生。
製程优化和设备升级:
多材料列印:利用中国科学院化学研究所的软硬混合材料系统和 Carbon 3D 的光敏聚合物,可以一次成型复杂的结构。
人工智慧驱动设计:Autodesk 的衍生设计软体可将航空航太零件的重量减轻 50%,惠普的 MJF 系统可将列印速度提高 20%(50 微米解析度)。消费级设备的普及:Formlabs Form 4 的价格降至 1000 元人民币左右,创通 3D 的「3D 列印农场」使分散式製造成为现实。
2. 爆炸性的工业需求:从高端製造业到大众消费,它渗透到所有场景。
先进製造:
航太:C919 采用 3D 列印钛合金燃料喷嘴(重量减轻 50%,成本降低 25%),将 Galaxy Power 的火箭生产週期缩短至一个月。
汽车领域:BMW使用回收的碳纤维座椅支架(减重 30%),比亚迪透过电池支架优化供应链效率(减重 25%)。
个人化医疗:
生物列印:来自 Organovo 的功能性肝组织和来自 Materialise 的客製化膝关节移植(术后感染率降低 70%)。
牙科和修復学:eResin-Medical 树脂获得 ISO 10993 认证,将隐形矫正器的交付时间缩短至 48 小时。
消费市场:
居家客製化:Nike的「设计生产」模式(使用者列印限量版运动鞋)和3D Genius Hub促进了创客教育。快速重组:混凝土3D列印房屋(72小时内完成,减少60%的材料浪费)。
3. 政策支持与成本降低:资本共振加速工业化
政府支持:
中国的「十四五」智慧製造发展规划提供了专案补贴,上海市政府提供设备购买成本30%的补贴,以促进透过技术降低成本。
提高行业标准:国家增材製造标准体係要求对用于医疗和航空航太领域的列印零件进行认证,从而推动标准化。
国内材料设备的生产:
国产金属粉末(宝武集团)合格率达到国际标准,降低了25%的成本,降低了35%的设备折旧免税额和维护成本。
工业设备的年产量已扩大到数十万吨,单价下降了40%~60%,而消费设备的价格已降至1,000元左右。
资本与产业丛集:
到2024年,3D列印产业的投资和资金筹措将超过15亿元(年增40%),其中医疗领域将占40%。宝丽莱特和法森高科正在扩大金属3D列印生产线的产能。Delta(消费性电子)、Delta(航太)和西安-武汉(金属印刷)等区域丛集正在各自发展差异化的竞争优势。
在技术创新、各种场景下快速增长的需求、政策和资本投资的推动下,3D 列印市场正在经历从「实验室」到「生产线」的质变。
本报告旨在按地区/国家、类型和应用程式对全球 3D 列印市场进行全面分析,重点关注总收入、市场份额和主要企业的排名。
3D列印市场规模、估计值和预测均以销售收入为指标,以2024年为基准年,并包含2020年至2031年的历史数据和预测数据。我们的定量和定性分析旨在帮助读者制定业务和成长策略,评估竞争格局,了解自身在当前市场中的地位,并就3D列印做出明智的商业决策。
市场区隔
公司
按类型分類的细分市场
应用领域
按地区
The global market for 3D Printing was estimated to be worth US$ 5100 million in 2024 and is forecast to a readjusted size of US$ 10671 million by 2031 with a CAGR of 12.3% during the forecast period 2025-2031.
3D printing is a process of making three dimensional solid objects from a digital file. The term "3D printing" covers a variety of processes in which material is joined or solidified under computer control to create a three-dimensional object, with material being added together (such as liquid molecules or powder grains being fused together), typically layer by layer.The report mainly focuses on 3D Printing Devices
The main drivers of the 3D printing market include the following:
1. Technological Advancement and Innovation: Breaking through Physical Boundaries and Reshaping Manufacturing Logic
Breakthroughs in Materials Science:
Biogenic and Degradable Materials: BASF launches corn starch TPU, and eSUN develops ePHA (90% degradation rate in 6 months), replacing traditional plastics and reducing carbon emissions by 50%-60%.
High-Performance Engineering Plastics: DuPont's high-temperature PA (above 300°C) and Solvay's PEKK (near-metal strength) meet the stringent requirements of aviation and medical applications.
Smart Materials: 4D-printed photoresponsive self-healing polymers (MIT spin-off) and temperature-controlled deformable PLA (Chinese Academy of Sciences) achieve functional regeneration.
Process Optimization and Equipment Upgrades:
Multi-Material Printing: The Institute of Chemistry of the Chinese Academy of Sciences' hybrid soft and hard material system and Carbon 3D photopolymers enable integrated molding of complex structures.
AI-Driven Design: Autodesk's generative design software reduces the weight of aviation components by 50%, and HP's MJF system increases printing speed by 20% (50-micron resolution). Consumer-grade device adoption: The Formlabs Form 4 price has dropped to the 1,000 yuan mark, and Chuangxiang 3D's "3D Printing Farm" enables distributed manufacturing.
2. Explosive industry demand: Penetrating all scenarios, from high-end manufacturing to mass consumption.
Manufacturing upgrades:
Aerospace: The C919 uses 3D-printed titanium alloy fuel nozzles (reducing weight by 50% and costs by 25%), and Galaxy Power's rocket production cycle has been reduced to one month.
Automotive: BMW uses recycled carbon fiber seat brackets (reducing weight by 30%) and BYD uses battery brackets (reducing weight by 25%) to optimize supply chain efficiency.
Personalized healthcare:
Bioprinting: Organovo functional liver tissue and Materialise customized knee implants (reducing post-operative infection rates by 70%).
Dental and prosthetics: eResin-Medical resin has achieved ISO 10993 certification, reducing the delivery cycle for invisible braces to 48 hours.
Consumer market:
Home customization: Nike's "design-to-produce" model (users print limited-edition sneakers) and the 3D Genius Hub promote maker education. Rapid Reconstruction: Concrete 3D-Printed Houses (Completed in 72 Hours, 60% Less Material Waste).
3. Policy Support and Cost Reduction: Capital Resonance Accelerates Industrialization
Government Support:
China's "14th Five-Year Plan for Intelligent Manufacturing Development" provides special subsidies. Shanghai offers a 30% subsidy on equipment purchases, promoting cost reduction through technology.
Improvement of Industry Standards: The "National Additive Manufacturing Standard System" mandates certification of printed parts in the medical and aviation sectors, forcing standardization.
Domestication of Materials and Equipment:
The qualification rate of domestically produced metal powder (Baowu Group) has reached international standards, reducing costs by 25%; equipment depreciation and maintenance costs have been reduced by 35%.
Annual production of industrial-grade equipment has increased to hundreds of thousands of tons, with unit costs falling by 40%-60%. Consumer-grade equipment prices have fallen to the 1,000 yuan level.
Capital and Industrial Clusters:
Investment and financing in the 3D printing sector will exceed 1.5 billion yuan in 2024 (a 40% year-on-year increase), with the medical sector accounting for 40%. Polylite and Farsoon High-Tech are expanding their metal printing line production. Regional clusters: The Pearl River Delta (consumer electronics), the Yangtze River Delta (aerospace), and Xi'an-Wuhan (metal printing) are forming differentiated competitive advantages.
Driven by technological innovation, exploding demand across all scenarios, and policy and capital investment, the 3D printing market is ultimately undergoing a qualitative transformation from "laboratory" to "production line."
This report aims to provide a comprehensive presentation of the global market for 3D Printing, focusing on the total sales revenue, key companies market share and ranking, together with an analysis of 3D Printing by region & country, by Type, and by Application.
The 3D Printing market size, estimations, and forecasts are provided in terms of sales revenue ($ millions), considering 2024 as the base year, with history and forecast data for the period from 2020 to 2031. With both quantitative and qualitative analysis, to help readers develop business/growth strategies, assess the market competitive situation, analyze their position in the current marketplace, and make informed business decisions regarding 3D Printing.
Market Segmentation
By Company
Segment by Type
Segment by Application
By Region
Chapter Outline
Chapter 1: Introduces the report scope of the report, global total market size. This chapter also provides the market dynamics, latest developments of the market, the driving factors and restrictive factors of the market, the challenges and risks faced by manufacturers in the industry, and the analysis of relevant policies in the industry.
Chapter 2: Detailed analysis of 3D Printing company competitive landscape, revenue market share, latest development plan, merger, and acquisition information, etc.
Chapter 3: Provides the analysis of various market segments by Type, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different market segments.
Chapter 4: Provides the analysis of various market segments by Application, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different downstream markets.
Chapter 5: Revenue of 3D Printing in regional level. It provides a quantitative analysis of the market size and development potential of each region and introduces the market development, future development prospects, market space, and market size of each country in the world.
Chapter 6: Revenue of 3D Printing in country level. It provides sigmate data by Type, and by Application for each country/region.
Chapter 7: Provides profiles of key players, introducing the basic situation of the main companies in the market in detail, including product revenue, gross margin, product introduction, recent development, etc.
Chapter 8: Analysis of industrial chain, including the upstream and downstream of the industry.
Chapter 9: Conclusion.