91ÊÓÆµ¹ÙÍø

Industry 4.0 Making Smart Automation of Production Systems Available
Trend

Industry 4.0 Making Smart Automation of Production Systems Available

4.0 Automation technologies, through the IIoT (Industrial Internet of Things) connect, control and monitor networks of manufacturing and processing machines, devices, robots and cloud information in real time via Cloud Monitoring. This allows them to learn, operate and function automatically, minimizing human intervention and optimizing production.
Published: Mar 23, 2022
Industry 4.0 Making Smart Automation of Production Systems Available

The introduction of 3D printing or sensors on production lines facilitates and optimizes the production process. Their use provides immediate feedback through the collected and compiled data. Likewise, automation, a pillar of Industry 4.0, is measured and verified in terms of time savings from design to machine monitoring.

Visualizing the limits of a project, anticipating a possible machine failure or a stock shortage are now possible and carried out by the participants in the manufacturing process. In Industry 4.0, intelligent automation systems have a direct impact on development and maintenance. This new industrial mode generates a cost reduction for companies.

91ÊÓÆµ¹ÙÍø Does IoT Help in Transforming Traditional Production into a Smart Industry?

In a smart factory, the ability to exchange, record and analyze data without being on the production floor is one of the advantages offered by the use of connected tools. Industry 4.0 uses connected devices. The IoT allows operators to remotely control machines, assess risks or intervene in production.

In Industry 4.0, digital technologies with the use of 3D printing allow increasingly customized production, without requiring new manufacturing tools, or even their acquisition. It is thus a source of both flexibility and optimization.

This transformation of industries, induced by new manufacturing methods and smart tools or procedures, brings more flexibility to companies. It offers more possibilities to operators who interact directly with production, making for more rewarding working conditions.

In this sense, it marks the end of assembly line work, and the operating methods that have been used since the beginning of the 20th century. The digitalization of industry requires new skills and new professions that put people at the center of the industrial revolution or Industry 4.0.

Industry 4.0 Has Created a New Generation of Production Systems

Smart companies can better manage their productivity and manufacturing costs by adapting more quickly to market demand. This industrial revolution:

  • completely changes the use of the machine
  • optimizes the production cycle
  • impacts the technology used in every sector of the industry

From modeling a car to modeling a purse to building a building, Industry 4.0 is revolutionizing work by transforming the way we work.

The software which drives robots or augmented reality can simplify the use of devices, making their elaboration or modification faster. Industries of the future want to facilitate efficiency. Gaining efficiency at each stage of the manufacturing process to satisfy the end customer is its mantra. Its use applies to the technology of each sector of activity. Considered a source of division when it was first introduced, it now unites all branches of activity, bringing together traditional craftsmen and high-tech companies.

Automation Becomes an Industrial Phenomenon

Automation through robotics is accelerating in all areas of European industry. While there was one unit per 100 employees in 1995, there were 10 units per 100 in 2019. This figure is constantly increasing with the emergence of the industry 4.0 and shows how this process will change production cycles and work methods in the company.

Automation concerns all sectors of a chain. It starts with the supply of the production lines by using robots to feed the machines with parts, continues by controlling the processing machines and changing their rhythm according to the orders and ends with the packaging. The production speed can be modulated as well as the supply to design specific batches. Automation allows the transition from mass production to demand-driven series production.

As far as production systems are concerned, Industry 4. 0 allows for better control by assessing the risks of breakdowns or stock shortages. Industry trends of the future will be determined by the rhythm of innovations and improvement of technologies. The creation of new smart factories will be the wave of the future. Smart factories will be intelligent and automated, where machines will be networked with each other, able to diagnose and solve problems by collecting and analyzing big data in real-time.

Published by Mar 23, 2022 Source :, Source :, Source :

Further reading

You might also be interested in ...

Headline
Trend
The Path to Upgrading Metal Fabrication: Digital Transformation, Low-Carbon Challenges, and Global Opportunities
Facing resource- and energy-intensive production processes, the metal fabrication industry must harness smart manufacturing and automation¡ªdeploying CNC machining, robotic arms, and AI monitoring¡ªto cut costs and errors while enhancing precision and delivery reliability. Integration of ERP, MES, and APS platforms increases process transparency and enables real-time scheduling adjustments, forming a seamless data and management loop. It¡¯s recommended to support this with global market size data and figures on rising automation investments to boost credibility.
Headline
Trend
Urgent Need for Low-Carbon Transformation in the Metal Fabrication Industry
The urgent need for low-carbon transformation is especially pronounced in the metal fabrication industry, which has long been resource- and energy-intensive with high carbon emissions, making it a key sector for addressing climate change and global carbon neutrality goals.
Headline
Trend
The Multifaceted Innovative Impact of Microfactories on the Manufacturing Industry
Compared to traditional large factories, microfactories have lower investment costs and modular design advantages. Equipment and production units can be quickly replicated and replaced, reducing downtime and maintenance costs, enabling companies to respond more flexibly to market changes and product adjustments. Moreover, microfactories can shorten time-to-market by quickly responding to market demands and technological innovations. Through modular design and digitized production processes, new product development and market introduction speed up significantly, offering a clear advantage in competitive markets.
Headline
Trend
Intelligent Oil Mist Purification Technology for Machine Tools: From Air Cleaning to Smart Factory Accelerator
As CNC machining and precision metal processing continue to grow, machine tools release large amounts of oil mist, atomized coolant droplets, smoke, and fine oil particles during operation. Prolonged exposure to such environments not only endangers operator health but also affects machine accuracy and maintenance costs. Therefore, highly efficient oil mist filtration equipment has become an essential asset in modern machining facilities.
Headline
Trend
Oil Mist Filtration: Creating Safer Workplaces
In industrial machining processes, the generation of oil smoke and fine oil mist is unavoidable. Without effective collection and filtration, these airborne contaminants pose serious health risks to workers, increasing the likelihood of respiratory diseases and occupational illnesses. At the same time, accumulated oil smoke not only pollutes the work environment and degrades air quality but also accelerates wear and malfunction of machinery, resulting in higher maintenance costs. Furthermore, the presence of flammable oil mist increases the risk of fire hazards, endangering factory safety. To ensure stable, safe production that complies with regulations, oil smoke collection systems have become an essential protective measure in modern smart manufacturing¡ªsafeguarding employee health while enhancing equipment efficiency and environmental quality.
Headline
Trend
EU Rules and Taiwan¡¯s Textile Sustainability Shift
In recent years, the European Union has introduced a series of new regulations on sustainability and the circular economy, with the textile industry being one of the key areas under scrutiny. These regulations not only change how products are designed and manufactured, but also reshape collaboration models across global supply chains. For Taiwan¡¯s export-oriented textile sector, this means accelerating the pace of sustainable transformation in order to remain competitive in the European market¡ªwhile turning challenges into opportunities for brand and technological upgrades.
Headline
Trend
New Landscape in Precision Machining: Five Key Evolution Trends in CNC Toolroom Lathes
As global manufacturing competition intensifies, the precision machining industry is facing unprecedented challenges: parts are becoming smaller and more geometrically complex, machining accuracy requirements are rising, and delivery deadlines are increasingly compressed. As a core piece of equipment in this field, the CNC toolroom lathe is undergoing a profound transformation driven by both technological breakthroughs and evolving market demands.
Headline
Trend
Digital Transformation and Smart Manufacturing Trends in Machining Industry: Applications of Industry 4.0, IoT, and AI
The global manufacturing sector is undergoing an unprecedented wave of digital revolution. This trend brings technological advancement but also intensifies international market competition. The processing industry, a critical part of the manufacturing supply chain, faces multiple challenges including raw material price fluctuations, rising labor costs, and stricter environmental regulations. As consumer demands become more diverse and customized, the processing sector must swiftly adjust production methods. By embracing digital transformation, companies can enhance production efficiency and product quality, securing their competitive edge and market position. Digital transformation is no longer optional but an essential path for sustainable development in manufacturing¡¯s future.
Headline
Trend
Multi-Model Comparison: The Full Evolution from Manual to CNC Toolroom Lathes
High-precision lathes and toolroom lathes specialize in producing small, high-accuracy components, often used in prototype development and sample manufacturing. As CNC toolroom lathes become increasingly widespread, the industry is moving toward digital and automated control to shorten production cycles and improve machining quality and consistency.
Headline
Trend
CNC Market in India Exhibits CAGR Significantly Higher Than Global Average: Market Outlook
India¡¯s manufacturing sector is undergoing a critical transformation phase, with the rapid rise of industrial automation propelling the CNC machine tool market into a global growth hotspot. According to the latest research report by Technavio, the overall machine tool market in India is expected to increase by approximately USD 3.08 billion from 2024 to 2029, with a compound annual growth rate (CAGR) of 11.6%. In contrast, the global machine tool market CAGR is only about 5.07% (2023¨C2029), and the global CNC machine tool market CAGR is around 5.4% (2025¨C2029). India¡¯s market growth rate is nearly twice the global average. Furthermore, supported by its large industrial base and favorable policies, India has strong potential to become a key strategic region in the global CNC machine tool market.
Headline
Trend
Global Competitiveness of Taiwan¡¯s Lathe Industry
As global manufacturing moves toward high-precision and high-efficiency machining, lathe equipment remains an indispensable core tool in aerospace, automotive, energy, and medical sectors. Leveraging a solid manufacturing foundation and flexible customization capabilities, Taiwan has steadily expanded in the international lathe market, becoming a key supplier to both Europe, the United States, and emerging markets. To address diverse machining needs, Taiwanese manufacturers deploy both manual and CNC lathes, covering educational training, basic machining, and large-scale automated production¡ªdemonstrating high adaptability to market demands.
Headline
Trend
Textile Black Tech: The Superpowers of Functional Fabrics
Have you ever wondered why some jackets can block wind and rain without making you feel stuffy? Or why some sportswear wicks away sweat quickly, keeping you dry? This isn't magic; it's the superpower of high-performance textiles. They are no longer just clothes but key materials that improve quality of life and ensure personal safety.
Agree