Inspection Services Provide Avenues for Discovering Very Small Production Problems


We live in complicated times. These times, however, can also be simple. for example, the success or failure of a highly complicated machine can sometimes be dependent upon a very small part of a very small piece in a very large and complicated piece of equipment. And while sometimes these flaws are easy to pick out, at other times finding a small problem in a large process requires the use of industrial CT scanning inspection services.
The history of industrial ct scanning inspection services is interesting. The technology, first developed in 1972, was originally created for medical use. Two scientists, who later won the Nobel Prize for the contributions to both the fields of medicine and science, first developed for the purposes of head imaging. Used in medical research for areas that could not be x-rayed for enough detail, British engineer Godfrey Hounsfield of EMI Laboratories in England and by South African-born physicist Allan Cormack of Tufts University in Massachusetts, are credited for this discovery that is now used in a variety of settings and implications.
Since its discovery, the use of this technology has not only been expanded to whole body scans, it has also moved into other fields. Inspection services are used throughout the world as security scanning and monitoring systems. And, most recently, reverse engineering services use the detailed information from CT scans to create plans to replace or repair faulty pieces. Additionally, detailed, non-destructive testing, which is an extension of the scanning services technology, can be used to safely test new parts.
Scanning Technologies Continue to Create New Avenues for Helping the World
Reverse engineering companies are able to help their customers recreate a part that is no longer produced. They are also able to modify an older part so that it can function at an even higher level. Taken to its extreme, industrial Ct scanning inspection services continue to lead to the development of new technology. For example, how could a 3D laser printer have the information it needs to create its products without the initial production details from the product’s scan?
Now that x-rays can be taken as fast as 30 frames a second and part size is not an issue for scanning services, the limits of technology seem endless. Whether your company is looking for a flaw in a part as small as .5mm in length, or you are looking for ways to save costs in parts as large as 660mm in diameter by 1m in length, scanning technologies can provide you the images you need.

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