dynamic ultimate strength - definitie. Wat is dynamic ultimate strength
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Wat (wie) is dynamic ultimate strength - definitie

CAPACITY OF A MATERIAL OR STRUCTURE TO WITHSTAND LOADS TENDING TO ELONGATE; RESISTS TENSION (BEING PULLED APART); MEASURED BY THE MAXIMUM STRESS THAT A MATERIAL CAN WITHSTAND WHILE BEING STRETCHED OR PULLED BEFORE BREAKING
Ultimate strength; Ultimate tensile stress; Tensil strength; Hot strength; Tensile strength; Tensile load; Tensile strengths; Tensile loading
  • Round bar specimen after tensile stress testing
  • Offset strain (typically 0.2%)
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  • Two vises apply tension to a specimen by pulling at it, stretching the specimen until it fractures. The maximum stress it withstands before fracturing is its ultimate tensile strength.

tensile strength         
¦ noun the resistance of a material to breaking under tension. Compare with compressive strength.
Ultimate tensile strength         
Ultimate tensile strength (UTS), often shortened to tensile strength (TS), ultimate strength, or F_\text{tu} within equations, is the maximum stress that a material can withstand while being stretched or pulled before breaking. In brittle materials the ultimate tensile strength is close to the yield point, whereas in ductile materials the ultimate tensile strength can be higher.
compressive strength         
  • Barrelling
  • Compressive strength test of concrete in UTM
  • Figure 1: microcrack nucleation and propagation
  • shear band formation
  • A cylinder being crushed under a UTM
  • 183x183px
CAPACITY OF A MATERIAL OR STRUCTURE TO WITHSTAND LOADS TENDING TO REDUCE SIZE, WHICH WITHSTANDS LOADS TENDING TO ELONGATE
Compression strength; Compressional strength; Compressive strength test; Crushing strength; Compressive strengths; Compressive Strength Test; Ultimate compressive strength
¦ noun the resistance of a material to breaking under compression. Compare with tensile strength.

Wikipedia

Ultimate tensile strength

Ultimate tensile strength (also called UTS, tensile strength, TS, ultimate strength or F tu {\displaystyle F_{\text{tu}}} in notation) is the maximum stress that a material can withstand while being stretched or pulled before breaking. In brittle materials the ultimate tensile strength is close to the yield point, whereas in ductile materials the ultimate tensile strength can be higher.

The ultimate tensile strength is usually found by performing a tensile test and recording the engineering stress versus strain. The highest point of the stress–strain curve is the ultimate tensile strength and has units of stress. The equivalent point for the case of compression, instead of tension, is called the compressive strength.

Tensile strengths are rarely of any consequence in the design of ductile members, but they are important with brittle members. They are tabulated for common materials such as alloys, composite materials, ceramics, plastics, and wood.