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The material flow behaviour mainly decides the quality of the FSW joints.
The macro features of the stir zone exhibit different material flow behaviour.
In UWFSW process, the soundness of joint is decided by the heat generation and the material flow behaviour (Mishra & Ma 2005).
Hence, the thermal softening in the preheat zone, stir zone and TMAZ differs which in turn causes the difference in material flow behaviour.
To date, no detailed analysis of parameters influencing full scale material flow behaviour and recovery in modern SLC mines has been documented in the literature.
The material flow behaviour in FSW depends on the process parameters such as tool rotation speed, tool traverse speed, axial force, tool tilt angle, tool shoulder diameter, tool shoulder profile and tool pin profile.
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Within this paper an experimental setup will be introduced, which enables the determination of the material's flow behaviour according to the hot stamping time-temperature-characteristics.
In order to effectively predict abrasive wear in large scale applications, models for solid structure, granular material flow and wear behaviour have to be coupled.
An important property is the flow behaviour of granular material during its transportation in a granular material handling system.
The Particle Size Distribution (PSD) results alone do not allow ranking the powder materials in relation to the flow behaviour.
The flow behaviour of materials in FSW and UWFSW process is entirely different, because of the difference in heat dissipation capacity of the cooling mediums.
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