市场调查报告书
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1521310
3D 列印材料市场报告,按类型(聚合物、金属、陶瓷等)、形式(粉末、长丝、液体)、最终用户(消费品、航太和国防、汽车、医疗保健、教育和研究等)和地区2024-20323D Printing Materials Market Report by Type (Polymers, Metals, Ceramic, and Others), Form (Powder, Filament, Liquid), End User (Consumer Products, Aerospace and Defense, Automotive, Healthcare, Education and Research, and Others), and Region 2024-2032 |
IMARC Group年全球3D列印材料市场规模达27亿美元。工业部门对 3D 列印材料的需求不断增长、生物相容性和可消毒材料的引入以及有利的政府法规是推动市场发展的一些关键因素。
3D列印材料广泛应用于增材製造过程。它们有多种形式,用于从数位檔案建立物件。最常见的 3D 列印材料之一是热塑性塑料,使用 3D 列印机将其熔化并成型。它们具有多种特性,包括低成本、灵活性和强度,使其成为最受欢迎的 3D 列印材料类型。 3D 列印中使用的其他材料包括金属、碳纤维、陶瓷和复合材料。每种材料都有其独特的属性,允许使用者自订他们创建的物件。例如,金属 3D 列印材料可提供卓越的强度,而碳纤维和复合材料可提供更轻的重量和更高的耐用性。陶瓷用于製造具有光泽表面的物体,而复合材料则提供各种颜色和纹理。因此,随着 3D 列印材料为用户提供了一系列从数位檔案创建物件的选项,它们在全球范围内获得了广泛的关注。
工业领域对3D列印材料不断增长的需求主要推动了全球市场。这可以透过各个行业(包括航空航天、医疗保健、汽车和建筑)不断增长的产品采用来支持。此外,3D 列印材料的广泛采用创造了对满足这些行业特定需求的需求。例如,航空航太工业需要轻质和高强度的材料,而医疗保健产业需要生物相容性和可消毒的材料,这是另一个成长诱导因素。与此一致的是,3D 列印材料正在彻底改变医学领域,允许生产客製化医疗设备、植入物和器官。这反过来又增加了对生物相容性3D列印材料的需求,这种材料在植入人体时不会引起不良反应,进一步推动市场发展。除此之外,各国政府正透过资助计画、税收优惠和补贴等方式推动3D列印技术在各行业的采用,拉动全球的需求。此外,引入立体光刻 (SLA)、熔融沈积成型 (FDM) 和选择性雷射烧结 (SLS) 等新型 3D 列印技术来开发针对每种技术进行最佳化的新材料,正在创造积极的市场前景。推动市场的其他一些因素包括持续的技术进步和广泛的研发(R&D)活动。
The global 3D printing materials market size reached US$ 2.7 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 10.9 Billion by 2032, exhibiting a growth rate (CAGR) of 16.4% during 2024-2032. The growing demand for 3D printing materials from the industrial sector, the introduction of biocompatible and sterilizable materials, and favorable government regulations represent some of the key factors driving the market.
3D printing materials are widely utilized in the additive manufacturing process. They come in a variety of forms and are used to create objects from a digital files. One of the most common 3D printing materials is thermoplastics, which are melted and formed using a 3D printer. They offer a variety of properties, including low cost, flexibility, and strength, making them the most popular type of 3D printing material. Other materials used in 3D printing include metal, carbon fiber, ceramic, and composite materials. Each material offers its own unique properties, allowing users to customize the objects they create. For instance, metal 3D printing materials provide superior strength, while carbon fiber and composite materials offer lighter weight and improved durability. Ceramics are used to create objects with a glossy finish, while composite materials provide a range of colors and textures. As a result, they are gaining widespread prominence across the globe as 3D printing materials provide a range of options for creating objects from digital files to the users.
The escalating demand for 3D printing materials from the industrial sector majorly drives the global market. This can be supported by the growing product adoption across various industries, including aerospace, healthcare, automotive, and architecture. Additionally, the widespread adoption has created a demand for 3D printing materials to meet the specific needs of these industries. For instance, the aerospace industry requires lightweight and high-strength materials, while the healthcare industry requires biocompatible and sterilizable materials, which is acting as another growth-inducing factor. In line with this, 3D printing materials are revolutionizing the field of medicine, allowing the production of customized medical devices, implants, and organs. This, in turn, is growing demand for 3D printing materials that are biocompatible, which do not cause an adverse reaction when implanted in the human body, propelling the market further. Apart from this, governments of various countries are promoting the adoption of 3D printing technology in various industries through funding programs, tax incentives, and subsidies, driving the demand on the global level. Moreover, the introduction of new 3D printing technologies, such as stereolithography (SLA), fused deposition modeling (FDM), and selective laser sintering (SLS) to develop new materials that are optimized for each technology is creating a positive market outlook. Some of the other factors driving the market include continual technological advancements and extensive research and development (R&D) activities.
IMARC Group provides an analysis of the key trends in each sub-segment of the global 3D printing materials market report, along with forecasts at the global, regional and country level from 2024-2032. Our report has categorized the market based on type, form and end user.
Polymers
Acrylonitrile Butadiene Styrene (ABS)
Polylactic Acid (PLA)
Photopolymers
Nylon
Others
Metals
Steel
Titanium
Aluminum
Others
Ceramic
Silica Sand
Glass
Gypsum
Others
Others
Laywood
Paper
Others
The report has provided a detailed breakup and analysis of the 3D printing materials market based on the type. This includes polymers (acrylonitrile butadiene styrene (ABS), polylactic acid (PLA), photopolymers, nylon, others); metals (steel, titanium, aluminum, others); ceramic (silica sand, glass, gypsum, others); and others (laywood, paper, others). According to the report, polymers represented the largest segment.
Powder
Filament
Liquid
A detailed breakup and analysis of the 3D printing materials market based on the form have also been provided in the report. This includes powder, filament, and liquid. According to the report, filament accounted for the largest market.
Consumer Products
Aerospace and Defense
Automotive
Healthcare
Education and Research
Others
The report has provided a detailed breakup and analysis of the 3D printing materials market based on the end user. This includes consumer products, aerospace and defense, automotive, healthcare, education and research, and others. According to the report, automotive represented the largest segment.
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
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 was the largest market for 3D printing materials. Some of the factors driving the North America 3D printing materials market included continual technological advancements, escalating demand for 3D printing materials from the industrial sector, extensive research and development (R&D) activities, etc.
The report has also provided a comprehensive analysis of the competitive landscape in the global 3D printing materials market. Competitive analysis such as market structure, market share by key players, player positioning, top winning strategies, competitive dashboard, and company evaluation quadrant has been covered in the report. Also, detailed profiles of all major companies have been provided. Some of the companies covered include 3D Systems Inc., Arkema S.A., Carbon Inc., Clariant AG, EOS, Formlabs, Hoganas AB, Markforged, Materialise NV, Sandvik AB, Stratasys Ltd., Taulman3d LLC, etc. Kindly note that this only represents a partial list of companies, and the complete list has been provided in the report.