Count on the revolutionary technology that overturns traditional manufacturing

Manufacturing, once regarded as the quintessential blue-collar industry, is now an exciting new center of technology and innovation. These advanced technologies are bringing manufacturing unimaginable changes 10 years ago, both in terms of speed, efficiency, precision and customization. The Huffington Post named six revolutionary technologies for manufacturing change in 2016.

1.3D print

After completely changing the field of product design, 3D printing technology is setting off new waves in the manufacturing industry. The ability of 3D printing to design and create anything using metal, plastic or even body tissue will revolutionize the way we manufacture our products. 3D printing, also known as Additive manufacturing, offers many benefits, including dramatic reductions in design-to-manufacturing time, easier creation of personalized and small batch prototypes, greater flexibility in production, less waste, and higher Cost-effective and so on. 3D printing technology is still in its infancy and will get better and better over time.

Internet of Things

Since the early days of the industrial revolution, one of the main goals of manufacturing plants has been to achieve connectivity. The Internet of Things takes this goal to a whole new level by closely combining machines, sensors and humans. The tighter links mean better communication, faster response times, and higher efficiency. For example, suppose a manufacturing company owns a piece of equipment whose system must never be below 100 gallons of liquid. Equipment attached to the instrument, "Internet of Things" can use the instrument wireless transmission of data. The data will be sent to the CMMS and the system automatically generates work orders as liquids fall to a specific standard. This interconnectivity helps manufacturing plants reduce maintenance costs, increase efficiency and prevent costly downtime. In the next few years, the "Internet of things" will greatly enhance and improve production and business activities.

3. Nanotechnology

It is undeniable that the integration of nanotechnology into the mainstream still requires more time, but is crucial to changing manufacturing. Nanotechnology involves the manipulation of atomic, molecular or supramolecular levels. For traditional manufacturing, this means materials can be strengthened, allowing them to last longer or be given new attributes, such as clothes that can feel warm and cold. In the computer industry, nanotechnology can provide faster processing power and better memory. At present, nanotechnology is mainly used in the field of space engineering and biotechnology. However, it is also being applied in the manufacturing industry, the next step will be applied to atomic-precision manufacturing (APM), which is likely to change the entire manufacturing industry.

Cloud computing

Cloud computing has been applied to many areas and is now having a huge impact on manufacturing. The reason why it is now applied to the manufacturing industry is that cloud computing has connectivity and security issues. But as cloud computing advances, these fears will subside. "Internet of Things" can improve the connectivity of a single factory, cloud computing can improve the connectivity of multiple factories. Companies can share data globally, reduce costs and shorten production time in the blink of an eye. Sharing data is still a long way from improving product quality and consistency across plants.

5. Next generation robot

Just last year, the Dongguan factory in China pioneered the world and replaced 650 human workers with 60 robotic arms. The plant's parent, Surplus Precision Technology Co., Ltd., plans to replace 80% of its manufacturing workers with 1,000 robotic arms next year. The massive adoption of robots can cause many problems, and full automation can be beneficial to normal production, but theorists claim it is not good for innovation. In any case, it is undeniable that robotics will play a huge role in manufacturing.

6. Augmented reality

Although the Google Glass project has failed, but the concept of augmented reality glasses survived. This technology has broad potential in manufacturing, including real-time instructions / guidance, real-time notification, real-time monitoring of employee tasks, improving safety warnings, improving training efficiency, data retrieval, and reducing the need for field maintenance / technical support. Like the top 5 technologies, augmented reality is still in its infancy, and it's exciting to see its evolution evolve over the next few years.

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