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The present work aims to assess the joint behaviour of friction stir spot welded sandwich sheets by changing the quality of the epoxy core layer. Lab scale experiments and numerical simulations are conducted for the purpose. The core property is altered by varying hardener to resin (h/r) ratio within a suitable range.
Pritam Kumar Rana, R. Ganesh Narayanan
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Friction stir spot welding of AA5052-H32/HDPE/AA5052-H32 sandwich sheets at varying plunge speeds
Thin-Walled Structures, 2019Abstract The effect of plunge speed on the friction stir spot welding of AA5052-H32/HDPE/AA5052-H32 sandwich sheets is studied in the range of 2 mm/min. to 12 mm/min. The joint performance is assessed through hook geometry, grain size, hardness distribution, and temperature distribution.
Pritam Kumar Rana +2 more
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Abstract Friction Stir Spot Welding (FSSW) of AA5052-H32/HDPE/AA5052-H32 sandwich sheets is performed at six different tool rotational speeds to evaluate the optimum range. The mechanical performance, hook formation, grain size, hardness and temperature distribution are evaluated.
Pritam Kumar Rana +2 more
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The Minor Planet Electronic Circulars contain information on unusual minor planets, routine data on comets and natural satellites, and occasional editorial announcements. They are published on behalf of Division F of the International Astronomical Union by the Minor Planet Center, Smithsonian Astrophysical Observatory, Cambridge, MA 02138, U.S.A.
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Integral Transform Gaussian Wavefunctions for H32+ and H3+
The Journal of Chemical Physics, 1970Wavefunctions obtained from a particular integral transformation of 1s Gaussian orbitals were used to calculate the ground state energies of both H32+(D3h) and H3+(D3h) molecular ions. A linear combination of integral transform Gaussian-orbital–molecular-orbital (LCITGO–MO) wavefunction, with basis orbitals kν(qr) placed on the nuclei, gives for H3+ a ...
R. L. Somorjai, C. P. Yue
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