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The solid bonding at AA6060/A356 interface was obtained under as-cast condition and T7 heat-treated condition.
For the specimens formed with the aid of ultrasound, a stronger chemically bonded joint interface was obtained, and this increases the fatigue life of the joint.
Thirdly, the optimal frequency for this de-icing system was calculated, and the stress distribution in the interface was obtained using numerical simulations.
Using confocal laser scanning microscopy (CLSM), bacterial cell density distribution in a 3D space near solid-liquid interface was obtained, and a robust image analysis method was developed to generate a quantitative profile of cell concentration near the interface, which allowed the precise quantification of EZ and of a transition zone (TZ), based on pixel intensity profiles.
The effect of the ratio of coating thickness to contact radius (t/a) on the distributions and magnitudes of contact stresses within coating and at coating/substrate interface was obtained by single-layer coating systems.
At high Sn contents and short times, a cellular film with a rugged interface was obtained which evolved into a compact film with a scalloped interface as the Sn content decreased and exposure time increased.
Similar(52)
The results show that a 17.95 J/m2 of G-value for aforementioned interface is obtained.
The statistical characteristics of the wavy interface were obtained with an ultrasound transducer.
Distribution of the contact pressure along the tube fin interface is obtained from the numerical results.
The porosity of initial sealing interface is obtained based on the fractal parameters of rotating and stationary rings firstly.
Solutions to the case of both a stationary and a mobile alloy/scale interface are obtained.
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Justyna Jupowicz-Kozak
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