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Cryogenic grinding, also known as freezer milling, freezer grinding, and cryomilling, is the act of cooling or chilling a material and then reducing it into a small particle size. For example, thermoplastics are difficult to grind to small particle sizes at ambient temperatures because they soften, adhere in lumpy masses and clog screens.
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In form milling, the cutter called a form cutter travels axially along the length of the gear tooth at the appropriate depth to produce the gear tooth. After each tooth is cut, the cutter is withdrawn, the gear blank is rotated, and the cutter proceeds to cut another tooth.
Traditional micronization techniques are based on friction to reduce particle size. Such methods include milling, bashing and grinding.A typical industrial mill is composed of a cylindrical metallic drum that usually contains steel spheres.
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In biology, the ribosome provides an example of a programmable mechanosynthetic device. A non-biological form of mechanochemistry has been performed at cryogenic temperatures using scanning tunneling microscopes. [1] So far, such devices provide the closest approach to fabrication tools for molecular engineering.
In molecular biology, treadmilling is a phenomenon observed within protein filaments of the cytoskeletons of many cells, especially in actin filaments and microtubules. It occurs when one end of a filament grows in length while the other end shrinks, resulting in a section of filament seemingly "moving" across a stratum or the cytosol.
Freeform surface milling. In manufacturing, freeform surface machining refers to the machining of complex surfaces that are not uniformly planar. The industries which most often manufactures free-form surfaces are basically aerospace, automotive, die mold industries, biomedical and power sector for turbine blades manufacturing.