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However, thermal stress accumulated during PBF induces part distortion, potentially yielding parts out of specification and frequently process failure.
Internal stresses calculated by the model throughout the part are used in explaining the final part distortion.
It's one part distraction, one part distortion ― and one part hope that nobody is paying too much attention.
To decrease the distortion you get up on a ladder so you are not tilting too much.
The distortion cannot be eliminated by the multiplicative postprocessing correction, but the single-iteration technique can significantly decrease the distortion.
In this article, the iterative method is used to decrease the distortion caused by modulator.
Distortion behaviour arising from thermally induced stress was experimentally explored, indicating that part length, height, and layer thickness have significant effects on part distortions.
A mathematical model was developed, identifying the influential parameters that contribute to part distortions.
Each increment in N can decrease the decoding distortion of x 0 by 3/4.
This wavelength was used to decrease distortion by Fe(III -NTA, whIII -NTArbs strongly at 600 nm.
The converter can avoid high voltage stresses and decrease harmonic distortions under discontinuous conduction mode (DCM).
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