The Science of PerfectCLEAN
The remarkable results and performance achieved cleaning with PerfectCLEAN is a matter of fibers, ultramicrofibers (uMF), that is! PerfectCLEAN is made of the finest uMF available. The PerfectCLEAN uMF is a so-called super-microfiber (involving a highly complex manufacturing process) that has been split in a way that dramatically increases the surface area of the finished material.
The PerfectCLEAN ultraMICROfiber is unique in its design and is unbelievably strong. One of the smallest ultraMICROfiber, it has a unique wedge shape with sharp edges. This results in a material that is capable of efficiently removing, accumulating, and absorbing virtually any type of dust, dirt, grease, oils, pollen, dust mites, and many other contaminants leaving virtually nothing behind.
How It Works
The PerfectCLEAN ultraMICROfibers look like a single wedge of an orange having very sharp edges. The PerfectCLEAN fiber’s actual size is about the same size as many germs found in the home. There is approximately 260 miles of ultraMICROfiber per PerfectCLEAN cloth. The sharp edges and extremely small size result in remarkable cleaning performance. Reaching into the invisible crevices on a materials surface (ie: stainless steel) PerfectCLEAN picks up and removes virtually everything from the surface.
The PerfectCLEAN materials performance is due in part, to its generation of an overall Positive (+) electrostatic charge. Dirt and dust particles, bacteria and pollen, and other organic particles all have a negative (-) charge. The PerfectCLEAN fibers literally act as thousands of tiny magnets (positively charged fibers attract negatively charged dust, dirt, etc.) drawing in and holding all these different particles. When damp the solution is bound to the surface of the ultramicrofiber resulting in a powerful capillary action (suction). The solution dissolves and/or further enhances the affinity of the PerfectCLEAN fibers for dirt particles. The PerfectCLEAN material is able to hold 6 to 7 times its weight in water!
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