Advanced manufacturing technology is already one of the important means of a country's economic development. Many countries attach great importance to the level and development of advanced manufacturing technology, and use it to innovate products, expand production and improve international economic competitiveness.
At present, one of the important reasons why the economic development of the United States, Japan, Germany and other countries is at the leading level in the world is that they regard advanced manufacturing technology as a key factor for the economic success of modern countries.
After World War II, in order to quickly recover the economy, Japan vigorously developed manufacturing technology, especially precision machining technology, which greatly improved the level of machinery manufacturing and strongly supported the development of other industries. And the microelectronics industry has made remarkable achievements. In just 30 years, it has developed from a defeated country to an economic power in the world.
The United States has been a world leader in manufacturing technology since the 1930s, but after the 1950s, it did not pay enough attention to manufacturing technology, and felt a huge threat in economic competition. After careful summary, we realized that after entering the 1980s , a big reason for losing out in an important, high-growth technology market is that the U.S. has not applied its own technology to manufacturing.
After repeated studies, the National Research Council of the National Academy of Engineering proposed to refocus attention on manufacturing technology, rather than making manufacturing subordinate to design as in previous years.
Advanced manufacturing technology is the main direction and strategic decision for the development of the national economy of all countries in the world.
In terms of the technical substance of advanced manufacturing technology, there are mainly two fields of precision and ultra-precision machining technology and manufacturing automation. The former pursues the precision and surface quality limit of processing, and the latter includes the automation of product design, manufacturing and management. It is not only an important means to quickly respond to market demand, increase productivity, and improve labor conditions, but also an effective measure to ensure product quality. The two are closely related. Many precision and ultra-precision machining rely on automation technology to achieve expected indicators, not Less manufacturing automation relies on precision machining to be achieved accurately and reliably.
The two have an overall and decisive role and are the backbone of advanced manufacturing technology.
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