lamellar$43144$ - определение. Что такое lamellar$43144$
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Что (кто) такое lamellar$43144$ - определение

STRUCTURE OF A MATERIAL CONTAINING LAMELLA
Lamellar microstructure
  • A schematic of a lamellar structure for a [[eutectic system]]

Lamellar structure         
In materials science, lamellar structures or microstructures are composed of fine, alternating layers of different materials in the form of lamellae. They are often observed in cases where a phase transition front moves quickly, leaving behind two solid products, as in rapid cooling of eutectic (such as solder) or eutectoid (such as pearlite) systems.
Lamellar ichthyosis         
DISEASE
Nonbullous ichthyosiform erythroderma; Ichthyosis, lamellar; Collodion baby; Lamellar recessive ichthyosis; Ichthyosis lamellaris; LIPN
Lamellar ichthyosis, also known as ichthyosis lamellaris and nonbullous congenital ichthyosis, is a rare inherited skin disorder, affecting around 1 in 600,000 people.
Lamellar armour         
  • [[Song dynasty]] period deity wearing lamellar armoured skirt from the tomb of Wang Chuzhi
  • [[Han dynasty]] lamellae pieces
  • Lamellar armour worn by [[Koryak people]]
  • One example of how lamellar armour is laced together
ARMOUR MADE OF OVERLAPPING SCALES, WITHOUT A SOLID BACKING
Lamellar armor
Lamellar armour is a type of body armour, made from small rectangular plates (scales or lamellae) of iron or steel, leather (rawhide), or bronze laced into horizontal rows. Lamellar armour was used over a wide range of time periods in Central Asia, Eastern Asia (especially in China, Japan, Mongolia, and Tibet), Western Asia, and Eastern Europe.

Википедия

Lamellar structure

In materials science, lamellar structures or microstructures are composed of fine, alternating layers of different materials in the form of lamellae. They are often observed in cases where a phase transition front moves quickly, leaving behind two solid products, as in rapid cooling of eutectic (such as solder) or eutectoid (such as pearlite) systems.

Such conditions force phases of different composition to form but allow little time for diffusion to produce those phases' equilibrium compositions. Fine lamellae solve this problem by shortening the diffusion distance between phases, but their high surface energy makes them unstable and prone to break up when annealing allows diffusion to progress. A deeper eutectic or more rapid cooling will result in finer lamellae; as the size of an individual lamellum approaches zero, the system will instead retain its high-temperature structure. Two common cases of this include cooling a liquid to form an amorphous solid, and cooling eutectoid austenite to form martensite.

In biology, normal adult bones possess a lamellar structure which may be disrupted by some diseases.