As the United States continues to try to pull itself out of a recession, many people are wondering where manufacturing jobs stand in the faltering economy. But is manufacturing a growing industry in the United States? Well, it depends on whom you ask.
Better accuracy. Robots themselves are 100% accurate. Auditing robotic automation can also be applied to work performed by other staff to ensure accuracy, consistency and compliance to regulations. The Robots themselves also provide a complete audit train of all of their activities and provide reporting capability for audit and process analysis purposes. This improved accuracy also eliminates the need for quality checking and rework, further reducing costs and improving service levels.
The robotic addition can be of great benefit to companies that requires applying custom product labels in large quantity in product lines. This addition will reduce all the man hours wasted by employees’ hand applying labels at slow speed than an applicator can apply them. This allows employers to use their staff for more important tasks and offers efficient production speed.
According to Research Analyst, principal author of the market research study, “Industrial robot vendors have discovered that with intelligent use of new technology, they can dominate an aspect of some manufacturing automated process for a particular sector. As the early adopters in the auto industry have proven, robots do the work cheaper and better than humans once a repetitive process has been evolved. Industrial robots make the difference between winning competitive advantage or losing it. Solutions offered by vendors are creating market growth opportunities .”
U.S. manufacturing is much more automated than it was thirty years ago. Automation equipment, such as welding robots, perform the manufacturing tasks. Human workers maintain and program the robots. This requires a lot of technical knowledge. The demand of robot programmers is high.
Types of motions for industrial robots. Industrial robots move about in single and multiple directions. One is known as the point-to-point movement where the robots are made to shift from one specific point to other points in the system. Another type is known as the straight line movement where the robot moves onward but does not have the capability to move to other system points. Another type of motion is the defined curve movement or the instance where the robot moves on a curved route according to how the system was engineered.
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