Einschnürung
constriction
contraction
Description:
This elongations a right angles to the direction of traction is called lateral contraction. This narrowing is referred to as lateral contraction, which is dependent on the Poisson ratiov. The Poisson number is a dimensionless parameter for a body's lateral contraction under a tensile stress.
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Example sentences:
- This elongations a right angles to the direction of traction is called lateral contraction.
- This narrowing is referred to as lateral contraction, which is dependent on the Poisson ratiov.
- The Poisson number is a dimensionless parameter for a body's lateral contraction under a tensile stress.
neck
Description:
Die Innenecke der Winkelprofile ist mit einem Freistich versehen. Kanal-Innenecken, -Abdeckkappen und -Durchführungen - Kurvenlage. Exceeding the static strength causes necking of the tensile test specimen.
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Example sentences:
- Die Innenecke der Winkelprofile ist mit einem Freistich versehen.
- Kanal-Innenecken, -Abdeckkappen und -Durchführungen - Kurvenlage.
- Exceeding the static strength causes necking of the tensile test specimen.
- Exceeding the static strength causes necking of the tensile test specimen.
necking
Description:
Exceeding the static strength causes necking of the tensile test specimen.
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Example sentences:
- Exceeding the static strength causes necking of the tensile test specimen.
- Exceeding the static strength causes necking of the tensile test specimen.
reduction in area
restriction
Description:
Profile structures can thus be combined without any restrictions. Standalone work benches place the fewest restrictions on planning. In this case, we have a free choice of work bench concept with no restrictions.
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Example sentences:
- Profile structures can thus be combined without any restrictions.
- Standalone work benches place the fewest restrictions on planning.
- In this case, we have a free choice of work bench concept with no restrictions.
constricción
contracción
cuello
reducción
Description:
La reducción es cuando las fuerzas individuales ${{F}_{i}}$ se combinan para crear una resultante ${{F}_{R}}$ (fuerza resultante). Esta fuerza colectiva representa los efectos de todas las fuerzas individuales en forma de un vector de fuerza. Se calcula sumando los vectores de las fuerzas individuales. Gráficamente, la resultante es determinada al crear un paralelogramo de fuerzas. Bajo ciertas circunstancias, la reducción puede producir una resultante con un valor de cero. Este es el caso cuando las fuerzas externas están en un estado de equilibrio. Paralelogramo de fuerzas para determinar la resultante