As the energy was deflected, or made it through the material all of that heat and energy would make its way into openings in all of these devices. Inside of those devices we could put small spinning wheels, and then use that energy once again, rather than wasting it. We could use that energy to power up the laser itself, the robotic arm, and perhaps the assembly line mechanism. By recapturing and reusing we would indeed be one with the theory and methodology behind Six Sigma manufacturing strategies.
It might be entirely possible to collect a good deal of this energy which is deflected during that laser cutting process, or which finds its way through to the other side. What if we tried this strategy to recapture some of that energy; what if we had a ”houseplant pot shaped device” on the other side of the material being cut, and what if we had several of these types of shaped objects surrounding the CO2 laser beam? Those recapturing apparatuses surrounding the laser beam would be set in a concave pattern.
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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 .”
The prominent companies operating in the market are Dyson Ltd., Ecovacs Robotics Inc., Infinuvo, iRobot Corporation, Koninklijke Philips N.V., LG Electronics Inc., and Neato Robotics Inc., Intellibot Robotics LLC, Yujin Robot Co. Ltd., and Samsung Electronics Co. Ltd. They have adopted strategies, such as expansions, partnerships, collaborations, mergers & acquisitions, joint ventures, new product launches, and others to strengthen their position in the market.
Since manufacturing products in the U.S. is more expensive due to salaries, compliance regulations and cost of materials, it has to be high quality. This is why knowledge of quality systems is important. The goal of a quality system is to ensure that the manufactured product has very little variance from the design standard. It is based on statistical process control (SPC). Six Sigma, ISO 9001 or TQM are different kinds of quality systems. Knowledge of any of these systems would make a job seeker stand out from the other job candidates.