honeycomb dots - определение. Что такое honeycomb dots
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Что (кто) такое honeycomb dots - определение

NATURAL OR MAN-MADE STRUCTURES THAT HAVE THE GEOMETRY OF A HONEYCOMB
Composite honeycomb; Paper honeycomb; Paper honey comb; Honeycomb Structures; Honeycomb sandwich; Honeycomb structures; Aluminum honeycomb
  • Honeycomb crash absorption structure made of injection moulded thermoplastic polymer on a [[BMW i3]]
  • Aluminum]] honeycomb structure
  • A composite sandwich panel (A) with honeycomb core (C) and face sheets (B)
  • Honeycombed, screened center for Langley's first wind tunnel
  • XB-70 of [[Dryden Flight Research Center]] in 1968
  • Honeycomb grille used on a [[computer fan]] to cover fan blades.
  • Honeycomb structure in nature
Найдено результатов: 286
Honeycomb structure         
Honeycomb structures are natural or man-made structures that have the geometry of a honeycomb to allow the minimization of the amount of used material to reach minimal weight and minimal material cost. The geometry of honeycomb structures can vary widely but the common feature of all such structures is an array of hollow cells formed between thin vertical walls.
Dots (candy)         
PRODUCED BY TOOTSIE ROLL INDUSTRIES
Yogurt DOTS; DOTS (candy); Mason DOTS; Mason Dots; Tropical DOTS; Tropical Dots; Hot DOTS; Hot Dots; Hot dots; Wild Berry DOTS; Wild Berry Dots; Mini-Dots; Dots candy
Dots, or Mason Dots (trademarked DOTS), is a brand of gum drops marketed by Tootsie Roll Industries, which claims that "since its 1945 launch," the candy has become "America's...#1 selling gumdrop brand.
Braille pattern dots-14         
BRAILLE PATTERN
⠉; ⡉; ⢉; ⣉; U+2889; U+28C9; U+2849; U+2809; Braille pattern dots-147; Braille pattern dots-1478; Braille pattern dots-148
The Braille pattern dots-14 ( ) is a 6-dot or 8-dot braille cell with the two top dots raised. It is represented by the Unicode code point U+2809, and in Braille ASCII with "C".
Braille pattern dots-34         
BRAILLE PATTERN
⠌; ⡌; ⢌; ⣌; U+288C; U+28CC; U+284C; U+280C; Braille pattern dots-347; Braille pattern dots-3478; Braille pattern dots-348
The Braille pattern dots-34 ( ) is a 6-dot braille cell with the top right and bottom left dots raised, or an 8-dot braille cell with the top right and lower-middle dots raised. It is represented by the Unicode code point U+280c, and in Braille ASCII with the slash: /.
Braille pattern dots-145         
BRAILLE PATTERN
⠙; ⡙; ⢙; ⣙; U+2899; U+28D9; U+2859; U+2819; Braille pattern dots-1457; Braille pattern dots-14578; Braille pattern dots-1458
The Braille pattern dots-145 ( ) is a 6-dot braille cell with both top and the middle right dots raised, or an 8-dot braille cell with both top and the upper-middle right dots raised. It is represented by the Unicode code point U+2819, and in Braille ASCII with D.
Braille pattern dots-12345         
BRAILLE PATTERN
⠟; ⡟; ⢟; ⣟; U+289F; U+28DF; U+285F; U+281F; Braille pattern dots-123457; Braille pattern dots-1234578; Braille pattern dots-123458
The Braille pattern dots-12345 ( ) is a 6-dot braille cell with the all top and middle dots and the bottom left dot raised, or an 8-dot braille cell with the top four and lower-middle left dots raised. It is represented by the Unicode code point U+281f, and in Braille ASCII with Q.
Braille pattern dots-456         
BRAILLE PATTERN
⠸; ⡸; ⢸; ⣸; U+2878; U+28B8; U+28F8; U+2838; Braille pattern dots-4567; Braille pattern dots-45678; Braille pattern dots-4568
The Braille pattern dots-456 () is a 6-dot braille cell with all three right dots raised, or an 8-dot braille cell with the top, upper-middle, and lower-middle right dots raised. It is represented by the Unicode code point U+2838, and in Braille ASCII with the underscore: _.
Braille pattern dots-123456         
BRAILLE PATTERN
⠿; ⡿; ⢿; ⣿; U+287F; U+28BF; U+28FF; U+283F; Braille pattern dots-1234567; Braille pattern dots-12345678; Braille pattern dots-1234568
The Braille pattern dots-123456 ( ) is a 6-dot braille cell with all six dots raised, or an 8-dot braille cell with both dots in the top three rows raised. It is represented by the Unicode code point U+283F, and in Braille ASCII with the equal sign.
Braille pattern dots-23         
BRAILLE PATTERN
⠆; ⡆; ⢆; ⣆; U+2886; U+28C6; U+2846; U+2806; Braille pattern dots-237; Braille pattern dots-2378; Braille pattern dots-238
The Braille pattern dots-23 ( ) is a 6-dot braille cell with the middle and bottom left dots raised, or an 8-dot braille cell with the two middle-left dots raised. It is represented by the Unicode code point U+2806, and in Braille ASCII with the number "2".
Braille pattern dots-123         
BRAILLE PATTERN
⠇; ⡇; ⢇; ⣇; U+2887; U+28C7; U+2847; U+2807; Braille pattern dots-1237; Braille pattern dots-12378; Braille pattern dots-1238
The Braille pattern dots-123 ( ) is a 6-dot braille cell with all three left side dots raised, or an 8-dot braille cell with the top, upper-middle, and lower-middle left dots raised. It is represented by the Unicode code point U+2807, and in Braille ASCII with "L".

Википедия

Honeycomb structure

Honeycomb structures are natural or man-made structures that have the geometry of a honeycomb to allow the minimization of the amount of used material to reach minimal weight and minimal material cost. The geometry of honeycomb structures can vary widely but the common feature of all such structures is an array of hollow cells formed between thin vertical walls. The cells are often columnar and hexagonal in shape. A honeycomb shaped structure provides a material with minimal density and relative high out-of-plane compression properties and out-of-plane shear properties.

Man-made honeycomb structural materials are commonly made by layering a honeycomb material between two thin layers that provide strength in tension. This forms a plate-like assembly. Honeycomb materials are widely used where flat or slightly curved surfaces are needed and their high specific strength is valuable. They are widely used in the aerospace industry for this reason, and honeycomb materials in aluminum, fibreglass and advanced composite materials have been featured in aircraft and rockets since the 1950s. They can also be found in many other fields, from packaging materials in the form of paper-based honeycomb cardboard, to sporting goods like skis and snowboards.