Why was she giving this talk? Simple; we beat the German’s in WWII due to our manufacturing abilities. Today, China can easily out produce us, so are we going to make the same mistake as the Germans did in WWII, in a future war with an industrial power that can out produce us? Well, are we? How can you say the answer is yes or no; you can’t and that’s one more reason manufacturing is so vital to US interests, on top of the importance of jobs, trade flows, and GDP growth. ”A nation lives well, when it produces well,” she reminds us, and quoted Adam Smith’s warning about not relying on military resources to make our defense systems.
Invention of Robots has brought about revolutionary changes in the field of industrial manufacturing. In the earlier part of the century humans were engaged in jobs, which were very dangerous and involved serious health hazards, but in 1956, Unimation a company founded by George Devol and Joseph F. Engelberger invented the first robot. These were initially used in industries where it was required that dangers involved in working should be reduced like in spot welding, die casting and forging and then gradually they were employed in areas requiring greater strength and accuracy than human beings.
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Job-specific training brings value to companies but can be very complicated when it comes to making sure every worker has had the best training possible to effectively produce the best products for customers. Especially in the manufacturing industry, efficiency is key and if products are not consistent with quality, they will be worse off in the economy.
Automation improves the level of production and competence of certain industries. It is in this regard that industrial robotic systems have been conceptualized. It is true that this system renders much help to operators. The predicament however lies upon the price that goes with it. In industries where modernization has not yet been introduced, learning how to operate the system adds to the burden.
Market numbers have been estimated based on the average usage of packaging robots for different kinds of applications such as picking, placing, palletizing, de-palletizing, tray packing, case packing and filling among others. Market size and forecast for each segment have been provided in the context of global and regional markets. Market dynamics prevalent in China, Japan, South Korea, North America, and Europe have been taken into account for estimating the growth of the global market. Market estimates for this study have been based on volume, with revenue being derived through regional pricing trends.