市场调查报告书
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2030 年数位製造市场预测 - 按组件、按产品、製程类型、技术、用途和地区进行的全球分析Digital Manufacturing Market Forecasts to 2030 - Global Analysis By Component (Hardware, Software, Services, and Other Components), Product (Cloud-based design and manufacturing, and On demand), Process Type, Technology, Application and By Geography |
根据Stratistics MRC的数据,2023年全球数位製造市场规模为4,003.8亿美元,预估至2030年将达到1,2,678.7亿美元,预测期内年复合成长率为17.9%。
使用电脑辅助设计 (CAD) 软体将产品开发为虚拟数位原型的过程称为「数位製造」。数位製造使用数位系统和最尖端科技来製造商品和产品。数位製造包括电脑辅助设计 (CAD)、电脑辅助製造 (CAM) 和三维 (3D) 列印等专业工具和技术,使您能够更快、更有效地设计、开发和製造。包含许多。
根据美国劳工部职业安全与健康管理局 (OSHA) 的数据,美国约有 252,000 个製造业,僱用了约 65 亿人。
数位製造可以帮助检验机器人和自动化程序,帮助工厂加速製造流程,帮助实施六西格玛和其他精益营运管理实践,简化生产流程,改善产品设计,有助于产品和工厂资讯在修改过程中顺畅流动,而不会失去一致性,例如可以同时查看加工、模具资讯和3D产品资讯。因此,这些要素可能会对预测期内全球数位製造市场的扩张产生正面影响。
电子产业正在迅速采用和整合最新的创新技术,以提高业务效率并降低整体开发成本。从产品和製程设计到客户回馈,数位製造正在演变成整个设计和开发系统的关键结构要素。另一方面,数位製造和通讯基础设施需要大量的初始投资。实施数位製造软体需要定义一份全面的业务需求列表,作为昂贵流程的一部分。因此,高实施成本和流程复杂性预计将对预测期内的全球市场成长产生负面影响。
市场扩张主要是由数位化的新兴趋势和产品生命週期管理 (PLM) 系统的使用增加所推动的。云端基础的数位製造解决方案(称为产品生命週期管理)有助于管理复杂的产品资讯、製造工作流程、产品工程和协作,同时提供机构弹性。
大多数参与我们业务运营的第三方公司都维护资讯技术系统和网路。处理和管理资料的机器人和物联网连接设备很容易受到协调一致的、有针对性的网路攻击。这会使资料的安全性和完整性面临风险。除了资讯之外,这些网路攻击还可能损害消费者声誉并导致罚款、政府采取法律行动以及与他人提起诉讼。这些缺陷为物联网的实施带来了严重的风险,特别是在製造和生产部门。因此,数位製造市场的扩张受到协作设备日益增加的安全风险的限制。
COVID-19的爆发对数位领域的发展产生了不同的影响,因为即使参与者无法聚集,专案也可以在虚拟数位环境中继续进行的技术进步已被广泛采用。这场大流行迫使製造商创造更安全、更有效率的业务运作方式。另一方面,由于封锁导致生产活动减少,这对市场造成拖累。
预计机器人细分市场在预测期内将是最大的。机器人技术帮助製造车间的工作车辆相互连接。它提供有关生产、生产流程、弱点、设备停机和即将发生的任务的日常资讯,减少车辆停机时间并以最小的油耗最大限度地提高车辆生产率。它还包括计划维护,以防止因服务不足或不可避免的故障而导致专案延误。西门子公司和阿拉斯公司等大公司正在进行收购,以扩大其製造机器人的产品线。
预计 3D 列印领域在预测期内年复合成长率最高。 3D设计列印市场受到客製化产品需求不断增长的推动。 3D 列印机用于复杂结构的精密製造过程。由于新兴市场基础设施建设不断扩大,该市场正在不断增长。此外,3D 列印技术有助于减少产品製造过程中的时间和浪费,并最大限度地降低与製造流程相关的成本。它比需要昂贵劳动力的旧技术更可取。数位製造市场是由越来越多使用 3D 列印技术的行业推动的。
由于都市化程度的提高和技术的快速利用,预计亚太地区在预测期内将占据最大份额。製造业实力雄厚的开发中国家包括越南、缅甸、泰国、菲律宾等。随着都市化以及改造和建设项目数量的增加,拆除产业预计也会成长。因此,自动化和机器人技术的采用预计将导致市场扩张。
预计欧洲地区在预测期内的年复合成长率最高。欧盟(EU)将推动数位技术在製造相关业务中的使用,并专注于促进物联网、巨量资料、边缘运算和其他技术领域的数位化和创新,以改变经济价值链。它被推广。例如,2020年6月,无人机公司Parrot宣布推出新款无人机ANAFI USA,可用于3D製造测绘和航空测量。
According to Stratistics MRC, the Global Digital Manufacturing Market is accounted for $400.38 billion in 2023 and is expected to reach $1267.87 billion by 2030 growing at a CAGR of 17.9% during the forecast period. The process of developing products virtually as digital prototypes with the use of Computer-Aided Design (CAD) software is known as "digital manufacturing." Digital systems and cutting-edge technology are used in digital manufacturing to manufacture goods and products. It includes a number of specialised tools and technologies, which includes computer-aided design (CAD), computer-aided manufacturing (CAM), and three-dimensional (3D) printing, which can design, develop, and create items more quickly and effectively.
According to the Occupational Safety and Health Administration (OSHA), a part of the US Department of labor, around 252,000 manufacturing industries in the US employ approximately 6.5 billion people.
Digital manufacturing is helping to validate robotics and automation programmes, aiding in the acceleration of the factory manufacturing process, assisting in the implementation of Six Sigma and other lean operation management, making the production process easier, helping to smoothen the flow of product and plant information during modifications without losing consistency in product design, machining and tooling information, and 3D information of the product that can be viewed at the same time. Therefore, during the forecasting period, these factors will have a favourable effect on the expansion of the worldwide Digital Manufacturing Market.
The electronics industry is quickly embracing and integrating modern innovations to improve operational effectiveness and lower overall development costs.From product and process design through customer feedback, Digital Manufacturing has evolved into a crucial component of the overall design and development system. Meanwhile, the significant initial expenditure required for the Digital Manufacturing and communication infrastructure. A comprehensive list of business requirements must be defined as part of the costly process of deploying Digital Manufacturing software. Thus, the high cost of implementation and complexity of processes will negatively impact the growth of the global market during the forecast period.
The market's expansion is primarily being driven by the new trend of digitalization and the rising use of product lifecycle management (PLM) systems. A cloud-based digital manufacturing solution known as product lifecycle management assists in managing complicated product information, manufacturing workflows, product engineering, and collaborations while affording authorities flexibility.
Most third-party-businesses engaged in business operations maintain the information-technology systems and networks. Robotics and IoT-connected devices that process and maintain data are vulnerable to coordinated and targeted cyber attacks. The security and integrity of data are at risk because of this. Additionally, these cyber-attacks harm consumers' reputations in addition to their information, which could result in fines, legal action from the government, and litigation with other parties. Such Flaws pose a serious risk to IoT Implementation, particularly in the manufacturing-production-sector. Therefore, the expansion of the digital manufacturing market is constrained by the growing security risks in linked devices.
The COVID-19 epidemic had a mixed impact on the development of the digital manufacturing sector because of the widespread adoption of advances in technology that made it possible for projects to continue in a virtual and digital environment, even when participants was unable to gather. The pandemic has compelled manufacturers to create safer and more efficient methods to run their businesses. On the other hand, because of the lockdown, there was less production activity, which hampered the market.
The robotics segment is expected to be the largest during the forecast period. Robotics assists a manufacturing site's operational vehicles to connect to one another. It provides every day information on Fabrication, manufacturing processes, weak points, equipment outages, and impending tasks, reducing vehicle downtime and maximising vehicle productivity with the least amount of fuel consumption. Additionally, this involves planned maintenance that prevents project delays brought through inadequate service and unavoidable breakdowns. Acquisitions are being made by major organisations like Siemens AG and Aras Corporation, in order to expand their product lines of robots for the manufacturing sector.
The 3D Printing segment is expected to have the highest CAGR during the forecast period. The market for 3D designing printing is driven by an increase in demand for customised products. 3D-Printers are employed in the precise manufacturing processes of the complicated construction. The market is growing as a result of the expanding infrastructure development in numerous nations. In addition, the 3D-Printing-Technologie aids in reducing time and waste during product manufacturing and minimising the expenses associated with the manufacturing process. It is preferable to older technology, which has expensive labour requirements. The market for digital manufacturing is driven by several industrial businesses' increased use of 3D-Printing Technology.
The Asia-Pacific region is expected to have the largest share during the forecast period, owing to the rising urbanisation and rapid technological usage. Developing countries with robust manufacturing sectors include Vietnam, Myanmar, Thailand, the Philippines, and Thailand. Urbanisation also increases the number of renovation and building projects, which is anticipated to grow the demolition sector. Therefore, it is projected that the adoption of automation and robotics will lead to market expansion.
The Europe region is expected to have the highest CAGR during the forecast period. The use of digital technology in manufacturing-related operations is encouraged by the European Union's major focus on fostering digitalization and innovation in the fields of IoT, Big Data, Edge Computing, and other technologies to transform the economic value chain. For instance, in June 2020, the drone company Parrot unveiled the new drone ANAFI USA, which can be used for 3D manufacturing mapping and aerial surveying.
Some of the key players in Digital Manufacturing market include: Autodesk Inc., BobCAD-CAM Inc., Dassault Systemes SE, HCL Technologies Ltd., Makino Inc., PTC Inc., Tebis Technische Informationssysteme AG, CNC Software LLC, MecSoft Corp., Bentley Systems Inc., CAD Schroer GmbH, Graebert GmbH, Hexagon AB, NTT DATA Corp., Siemens AG, SolidCAM GmbH, ZWSOFTA Co. Ltd., OPEN MIND Technologies AG and Makino Inc.
In August 2023, TCS launches neural manufacturing solutions on Microsoft Cloud. The cloud combines various Microsoft technologies, linked by a common data model to build resiliency and sustainability through operational visibility, data integration, and digital collaboration.
In July 2023, TCS partners Microsoft for generative AI solutions. Tata Consultancy Services has deepened its partnership with Microsoft by announcing plans to significantly scale its Azure Open AI expertise, and launching its new Generative AI Enterprise Adoption offering on Microsoft Cloud to help customers jumpstart their generative AI journey.
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Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.