axial stress - tradução para árabe
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axial stress - tradução para árabe

ROTATIONALLY SYMMETRIC STRESS DISTRIBUTION
Axial stress; Axial Stress; Hoop Stress; Hoop stress; Wall tension (pipe); Wall tension; Circumferential stress; Cylinder stresses
  • Components of hoop stress
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axial stress         
‎ إِجْهادٌ مِحْوَرِيّ‎
wall tension         
‎ تَوَتُّرُ الجدار‎
adversity         
  • Schematic overview of the classes of stresses in plants
  • A diagram of the general adaptation syndrome model
  • Neurohormonal response to stress
  • border=darkgray}}
ORGANISM'S RESPONSE TO A STRESSOR SUCH AS AN ENVIRONMENTAL CONDITION OR A STIMULUS
General adaptation syndrome; Stress syndrome; Physiological stress; Adversity; General Adaptation Response; General adaptation response syndrome; Environmental stress; General Adaptation Syndrome; Stress out; Stress (medicine); Stress (medecine); General adaptative syndrome; Environmental stresses; Stress (medical); Stress (biological); Medical stress; Stress (physiology); Stress (Physiology); Stress (mental); Stress in humans; Biological stress; Biology of stress; Effects of chronic stress; Chronic stress and cardiovascular disease
اسْم : شدّة . مِحْنة . ضرّاء . حظّ عاثِر

Definição

Adversity
·noun Opposition; contrariety.

Wikipédia

Cylinder stress

In mechanics, a cylinder stress is a stress distribution with rotational symmetry; that is, which remains unchanged if the stressed object is rotated about some fixed axis.

Cylinder stress patterns include:

  • circumferential stress, or hoop stress, a normal stress in the tangential (azimuth) direction.
  • axial stress, a normal stress parallel to the axis of cylindrical symmetry.
  • radial stress, a normal stress in directions coplanar with but perpendicular to the symmetry axis.

These three principal stresses- hoop, longitudinal, and radial can be calculated analytically using a mutually perpendicular tri-axial stress system.

The classical example (and namesake) of hoop stress is the tension applied to the iron bands, or hoops, of a wooden barrel. In a straight, closed pipe, any force applied to the cylindrical pipe wall by a pressure differential will ultimately give rise to hoop stresses. Similarly, if this pipe has flat end caps, any force applied to them by static pressure will induce a perpendicular axial stress on the same pipe wall. Thin sections often have negligibly small radial stress, but accurate models of thicker-walled cylindrical shells require such stresses to be considered.

In thick-walled pressure vessels, construction techniques allowing for favorable initial stress patterns can be utilized. These compressive stresses at the inner surface reduce the overall hoop stress in pressurized cylinders. Cylindrical vessels of this nature are generally constructed from concentric cylinders shrunk over (or expanded into) one another, i.e., built-up shrink-fit cylinders, but can also be performed to singular cylinders though autofrettage of thick cylinders.