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Manufacturing Production in China increased 6.20 percent in May of 2025 over the same month in the previous year. This dataset provides - China Manufacturing Production- actual values, historical data, forecast, chart, statistics, economic calendar and news.
In 2024, South Korea's gross domestic product (GDP) increased by two percent compared to the previous year, while the manufacturing sector grew by approximately four percent. The manufacturing sector plays a significant role in the South Korean economy and has been a key driver of rapid economic growth over the past few decades. Although manufacturing made vital contributions during the COVID-19 pandemic, its overall impact has slowed in recent years.
In November 2024, industrial production in Italy overall decreased by 1.5 percent compared to November 2023. Manufacturing of transport equipments and petroleum products recorded a drop by more than ten percent. On the contrary, electricity, and pharmaceuticals registered the highest growth rates. Impact on consumption and production The spring of 2020 recorded a very sharp decrease in industrial production and consumption. In terms of industrial production, some of the most impacted sectors by the coronavirus were the manufacture of textiles, apparel, leather, and accessories, as well as the manufacture of transport equipment. Similarly, consumption volume increased in March 2021 compared to one year ago. During the pandemic, the sectors of air transportation and leisure activities saw some of the largest drops in consumption. Recovery after COVID-19 Italy's economy has been strongly hit by the coronavirus pandemic, with Italy's GDP dropping consistently in 2020. Additionally, Italian exports are estimated to have decreased by over 15 percent. However, 2021 seems to be a year of recovery. The GDP is estimated to grow from three to four percent. The exports and imports are going to increase as well. Nevertheless, the next two years might experience an increase in unemployment rate, particularly during 2021.
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Key information about Brazil Industrial Production Index Growth
Additive Manufacturing Market Size 2025-2029
The additive manufacturing market size is forecast to increase by USD 46.76 billion at a CAGR of 23.9% between 2024 and 2029.
The market is experiencing significant growth, driven primarily by the high demand in the medical device sector for customized and complex components. This trend is further fueled by increasing consumer interest in personalized, 3D-printed products across various industries. However, the market growth is not without challenges. The high initial cost of setting up additive manufacturing facilities remains a significant barrier for entry, limiting the number of players and potentially hindering market penetration. Moreover, the technology's limited material options and the need for specialized expertise pose additional challenges.
To capitalize on the market opportunities and navigate these challenges effectively, companies must focus on collaborations, strategic partnerships, and continuous innovation to reduce costs, expand material offerings, and improve production efficiency. By staying abreast of the latest industry developments and trends, businesses can position themselves to succeed in this dynamic and evolving market.
What will be the Size of the Additive Manufacturing Market during the forecast period?
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The market continues to experience significant growth and innovation, driven by the increasing adoption of industrial 3d printing technologies in various industries. The market's size is projected to expand at a robust rate, with the automotive and industrial segments leading the charge. Technologies such as fuse deposition modeling, stereolithography, and selective laser sintering are gaining popularity due to their ability to produce complex geometries and reduce production expenses. The market is also witnessing increased regulatory scrutiny, leading to the development of certification standards and quality assurance protocols. The integration of advanced scanning software and design software capabilities is enabling more precise and efficient manufacturing processes.
Mergers & acquisitions and collaboration agreements are common as companies seek to expand their offerings and enhance their competitive positions. Despite the advancements, challenges remain, including the need for installation services, addressing the skills gap, and ensuring compatibility with traditional manufacturing methods. Desktop additive manufacturing and desktop 3d printers are also gaining traction for prototyping and educational purposes. The market's future direction lies in the continued development of more advanced technologies, improved design software, and the expansion of applications beyond prototyping to production. The shift from subtractive manufacturing methods to additive manufacturing is transforming industries, offering new opportunities for innovation and cost savings.
The market's dynamics are shaped by ongoing technological advancements, regulatory developments, and industry 4.0 trends.
How is this Additive Manufacturing Industry segmented?
The additive manufacturing industry research report provides comprehensive data (region-wise segment analysis), with forecasts and estimates in 'USD million' for the period 2025-2029, as well as historical data from 2019-2023 for the following segments.
Component
Hardware
Software
Services
End-user
Automotive
Aerospace
Industrial
Healthcare
Defense
Consumer Goods
Education/Research
Others
Material
Plastics
Metals
Ceramics
Others
Technology
Stereolithography
Polyjet printing
Binder jetting
Laser sintering
Fused Deposition Modeling (FDM)
Direct Metal Laser Sintering (DMLS)
Electron Beam Melting (EBM)
Directed Energy Deposition (DED)
Others
Binder jetting
Geography
North America
US
Canada
Europe
France
Germany
Spain
UK
APAC
China
India
Japan
South America
Brazil
Middle East and Africa
UAE
Rest of World
By Component Insights
The hardware segment is estimated to witness significant growth during the forecast period.
Additive manufacturing, also known as 3D printing, is revolutionizing industrial production by enabling the creation of complex parts layer-by-layer. The market for this technology is in a high-growth stage, driven by the increasing adoption in industries such as aerospace, automotive, healthcare, and manufacturing. Industrial 3D printers, which use technologies like Fused Deposition Modeling (FDM), Stereolithography, Selective Laser Sintering (SLS), and Digital Light Processing (DLP), are at the heart of this process. These printers offer advantages such as enhanced material usage, functional parts precision, and reduced production expenses. The dental industry and education sector are witnessing significant growth in the utiliz
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The smart manufacturing market size & share value expected to touch USD 593.81 billion by 2030, to grow at a CAGR of 13.5% during the forecast period.
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Total Manufacturing Production for the United States was -0.47717 Growth Rate Previous Period in January of 2024, according to the United States Federal Reserve. Historically, Total Manufacturing Production for the United States reached a record high of 12.93370 in January of 1955 and a record low of -13.78342 in January of 2009. Trading Economics provides the current actual value, an historical data chart and related indicators for Total Manufacturing Production for the United States - last updated from the United States Federal Reserve on July of 2025.
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Key information about Israel Industrial Production Index Growth
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The global manufacturing operations management software market was valued at USD 12.65 Billion in 2024. The industry is expected to grow at a CAGR of 9.00% during the forecast period of 2025-2034 to attain a valuation of USD 29.95 Billion by 2034.
The annual growth rate for industrial production in India recovered and registered a growth rate of over five percent in the financial year 2023. The IIP growth rate is expected to increase to nearly six percent in 2024.
In 2023, the manufacturing sector contributed approximately 4.46 trillion Thai baht to Thailand's gross domestic product (GDP), which amounted to around 17.52 trillion Thai baht that year. In contrast to other sectors, the manufacturing sector made the largest contribution to Thailand's GDP in that particular year. The GDP value of the manufacturing sector has been fluctuating in the past decade. The key segments of the manufacturing sector in Thailand Thailand is one of the largest manufacturing hubs in the world, with leading segments such as electrical and electronic appliances, automobiles and parts, and food products. As of April 2024, the manufacturing production index (MPI) of coke and refined petroleum products in Thailand was the highest among other segments. In addition, coconut milk had the highest production growth among other food products in 2024, closely followed by white sugar. Thailand’s exports of manufactured goods Thailand is one of the world’s leading exporters of manufactured goods. Some of the key product categories for Thailand’s exports are electronics, electrical appliances, and automobiles. Electronic products accounted for the largest share of manufactured goods exports in the country as of April 2024, accompanied by vehicles. Thailand also exports a large volume of electrical appliances and equipment: around 70 percent of local production of such goods was aimed for exports in 2020.
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The global custom manufacturing market size was valued at USD XX million in 2022 and is projected to reach USD XX million by 2033, exhibiting a CAGR of XX% from 2023 to 2033. The rising demand for customized products from various industries, such as aerospace, semiconductor, and biomedical, is driving the market growth. Additionally, the need for flexibility, efficiency, and precision in the manufacturing process is further fueling the market demand. The custom manufacturing market is segmented by type into precision parts, precision components, and others. The precision parts segment held the largest market share in 2022 and is anticipated to maintain its dominance during the forecast period. This segment includes components that require high accuracy and dimensional tolerances, making them critical for industries such as aerospace and medical devices. Other segments, such as precision components and others, are expected to witness significant growth due to increasing demand for customized components in electronics, automotive, and industrial applications.
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Vietnam VN: GDP: Growth: Gross Value Added: Industry: Manufacturing data was reported at 14.400 % in 2017. This records an increase from the previous number of 11.900 % for 2016. Vietnam VN: GDP: Growth: Gross Value Added: Industry: Manufacturing data is updated yearly, averaging 11.106 % from Dec 1986 (Median) to 2017, with 32 observations. The data reached an all-time high of 14.400 % in 2017 and a record low of -21.839 % in 2010. Vietnam VN: GDP: Growth: Gross Value Added: Industry: Manufacturing data remains active status in CEIC and is reported by World Bank. The data is categorized under Global Database’s Vietnam – Table VN.World Bank: Gross Domestic Product: Annual Growth Rate. Annual growth rate for manufacturing value added based on constant local currency. Aggregates are based on constant 2010 U.S. dollars. Manufacturing refers to industries belonging to ISIC divisions 15-37. Value added is the net output of a sector after adding up all outputs and subtracting intermediate inputs. It is calculated without making deductions for depreciation of fabricated assets or depletion and degradation of natural resources. The origin of value added is determined by the International Standard Industrial Classification (ISIC), revision 3.; ; World Bank national accounts data, and OECD National Accounts data files.; Weighted average; Note: Data for OECD countries are based on ISIC, revision 4.
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The global Smart Factory and Manufacturing market is anticipated to expand significantly, with a projected market size of 209420 million value units by 2033. This growth is attributed to a CAGR of 9.5%, driven by factors such as increasing automation, digitalization, and the need for improved efficiency and productivity in manufacturing processes. Key market trends include the adoption of artificial intelligence (AI), machine learning (ML), and the Internet of Things (IoT) to enhance decision-making, optimize operations, and connect machines and systems across the manufacturing ecosystem. However, challenges such as cybersecurity risks, skilled labor shortages, and data interoperability issues present potential restraints. The market is segmented into application areas (e.g., automotive, pharmaceuticals, food and beverages) and product types (hardware, software). Major players in the industry include ABB, Bosch Rexroth, Dassault Systèmes, Emerson Electric, and Fanuc Corporation. North America is expected to hold the largest market share, followed by Europe and Asia Pacific.
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Global Manufacturing Analytics Market size was valued at USD 10.6 Billion in 2022 and is poised to grow from USD 12.8 Billion in 2023 to USD 58.06 Billion by 2031, at a CAGR of 20.8% during the forecast period (2024-2031).
Report Metric | Details |
Market size value in 2022 | USD 10.6 Billion |
Market size value in 2023 | USD 12.8 Billion |
Market size value in 2031 | USD 58.06 Billion |
Forecast Year | 2024-2031 |
Growth Rate (CAGR) | 20.8% |
Segments Covered |
|
Largest Market | North America |
Fastest Growing Market | Asia Pacific |
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The global pharmaceutical continuous manufacturing market has witnessed significant growth, with a market size valued at approximately USD 1.5 billion in 2023, and it is expected to further expand to USD 6.3 billion by 2032, exhibiting a robust compound annual growth rate (CAGR) of 17.3% during the forecast period. This growth trajectory is driven by several factors, including the increasing demand for efficient manufacturing processes, the need for cost reduction, and the shift towards more sustainable production methods. One of the primary growth drivers of the market is the efficiency and flexibility that continuous manufacturing offers compared to traditional batch processes. This innovation not only reduces manufacturing time but also enhances product quality, which is crucial for meeting regulatory standards and ensuring patient safety.
The pharmaceutical industry is under constant pressure to meet the increasing demands for high-quality drugs while managing production costs. Continuous manufacturing addresses these needs by streamlining production processes, reducing downtime, and enabling real-time quality monitoring. These advantages significantly lower operational costs and minimize waste, making it an attractive option for pharmaceutical companies looking to improve their profitability margins. Furthermore, the growing prevalence of chronic diseases and the need for personalized medicine are driving the demand for more efficient drug production methods, further propelling the market growth.
Regulatory bodies like the FDA and EMA have also been promoting the adoption of continuous manufacturing in the pharmaceutical industry. Their support is centered on the technology’s ability to enhance supply chain reliability and ensure consistent product quality. This endorsement is a significant growth factor as it encourages more pharmaceutical companies to transition from traditional batch manufacturing to continuous processes. Additionally, technological advancements in process analytical technology and control systems have bolstered the efficiency and safety of continuous manufacturing, making it a viable and attractive option for a broader range of pharmaceutical products.
From a regional perspective, North America stands out as a major contributor to the market growth, primarily due to the presence of a well-established pharmaceutical industry, substantial R&D investments, and supportive regulatory frameworks. Europe follows closely, with countries like Germany and Switzerland playing significant roles due to their robust pharmaceutical sectors and technological advancements. The Asia Pacific region is also witnessing a surge in pharmaceutical continuous manufacturing adoption, driven by increasing investments in healthcare infrastructure and the rising demand for generic medications. This regional diversity in market growth signifies the global acceptance and potential scalability of continuous manufacturing technologies.
The pharmaceutical continuous manufacturing market is segmented by product into integrated systems, semi-continuous systems, and control & software. Integrated systems are a focal point within the market due to their ability to offer a comprehensive solution that seamlessly combines multiple manufacturing processes into a single, continuous operation. These systems facilitate significant improvements in process efficiency, quality control, and cost savings. The demand for integrated systems is particularly high among large pharmaceutical companies that are looking to maximize production efficiency and ensure compliance with stringent quality standards. The integration of various manufacturing stages into a unified system reduces the need for manual interventions, thereby minimizing human error and ensuring uniformity in the final product.
Semi-continuous systems, on the other hand, represent a more flexible approach that allows manufacturers to transition from traditional batch processes to continuous production gradually. These systems offer the advantage of scalability and can be customized to meet specific production needs, making them suitable for smaller pharmaceutical companies or those with a diverse product portfolio. The adaptability of semi-continuous systems is particularly beneficial for companies that are not yet ready to fully commit to an integrated system but still wish to reap the benefits of continuous manufacturing technology. This segment is expected to grow steadily as more players in the market recognize the advantages of transitioning to semi-continuous production.</p&g
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Manufacturing, value added (annual % growth) in Equatorial Guinea was reported at --9.9401 % in 2023, according to the World Bank collection of development indicators, compiled from officially recognized sources. Equatorial Guinea - Manufacturing, value added (annual % growth) - actual values, historical data, forecasts and projections were sourced from the World Bank on June of 2025.
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The Satellite Manufacturing Market report segments the industry into Application (Communication, Earth Observation, Navigation, and more), Satellite Mass (10-100kg, 100-500kg, and more), Orbit Class (GEO, LEO, and more), End User (Commercial, Military & Government, and more), Satellite Subsystem (Propulsion Hardware and Propellant, and more), Propulsion Tech (Electric, and more), and Region (Asia-Pacific, and more).
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Market Overview: The global predictive maintenance in manufacturing market is poised to witness exponential growth, propelled by a robust CAGR of 22.2% during the forecast period of 2025-2033. This growth is fueled by the increasing adoption of Industry 4.0 technologies, rising concerns regarding unplanned downtime, and the growing need for proactive maintenance strategies. Key drivers of this market include advancements in artificial intelligence (AI) and machine learning (ML), increasing sensor deployment, and the convergence of operational technology (OT) and information technology (IT). Market Trends and Segmentation: The market is segmented by type (cloud-based and on-premises) and application (industrial and manufacturing, transportation and logistics, energy and utilities, healthcare and life sciences, education and government, and others). Cloud-based solutions are gaining traction due to their scalability and cost-effectiveness. In terms of application, industrial and manufacturing holds the largest market share, driven by the need for optimized maintenance in complex industrial machinery. Geographically, North America dominates the market, followed by Europe and Asia Pacific. Major players in this market include IBM, Microsoft, SAP, GE Digital, Schneider, Hitachi, Siemens, Intel, RapidMiner, Rockwell Automation, Software AG, Cisco, Bosch.IO, C3.ai, Dell, Augury Systems, Senseye, T-Systems International, TIBCO Software, Fiix, Uptake, Sigma Industrial Precision, Dingo, Huawei, ABB, and AVEVA.
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The global custom plasmid production and manufacturing market is projected to reach USD 5.6 billion by 2033, exhibiting a CAGR of 14.5% during the forecast period (2023-2033). The rising demand for gene therapy, personalized medicine, and advanced research in various scientific fields is driving the growth of the market. Additionally, the increasing prevalence of chronic diseases and the need for efficient and targeted treatment options further contribute to the market's expansion. Major market players include Aldevron, Catalent Biologics, Polyplus, Creative Biogene, and PlasmidFactory GmbH, and they are adopting strategies such as collaborations, acquisitions, and new product development to gain a competitive edge. The Asia Pacific region is expected to witness significant growth due to increasing healthcare investments, rising awareness about personalized medicine, and a growing biotechnology industry. Key application segments include gene therapy, basic research, drug development, and others, with diverse end-users ranging from academia, pharmaceutical companies, and research institutes.
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Manufacturing Production in China increased 6.20 percent in May of 2025 over the same month in the previous year. This dataset provides - China Manufacturing Production- actual values, historical data, forecast, chart, statistics, economic calendar and news.