Features of microstructure and fracture in the transient liquid phase bonded aluminium-based metal m

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Transient liquid phase (TLP) bonded aluminium based metal matrix composite (MMC) joints can be classified into three distinct regions, i.e. the particulate segregation region, the denuded particulate region and the base material region. The microstructure of the particulate segregation region consists of alumina particulate and Al alloy matrix with the Al 2Cu and MgAl 2O 4. It contains more and smaller alumina particulates compared with the base material region. The TLP bonded joints have the tensile strength of 150 MPa ~200 MPa and the shear strength of 70 MPa ~100 MPa . With increasing tensile stress, cracks initiate in the particulate segregation region, especially in the particulate/particulate interface and the particulate/matrix interface, and propagate along particulate/matrix interface, througth thin matrix metal and by linking up the close cracks. The particulate segregation region is the weakest during tensile testing and shear testing due to obviously increased proportion of weak bonds (particulate particulate bond and particulate matrix bond). The microstructure of the particulate segregation region consists of alumina (TLP) bonded aluminum based metal matrix composite (MMC) joints can be classified into three distinct regions, ie the particulate segregation region, the denuded particulate region and the base material region. particulate and Al alloy matrix with the Al 2Cu and MgAl 2O 4. It contains more and smaller alumina particulates compared with the base material region. The TLP bonded joints have the tensile strength of 150 MPa ~ 200 MPa and the shear strength of 70 MPa ~ 100 MPa. With increasing tensile stress, inscribed in the particulate segregation region, especially in the particulate / particulate interface and the particulate / matrix interface, and propagate along particulate / matrix interface, througth thin matrix metal and by linking up the close cracks. The particulate segregation region is the weakest during tensile testing and shear testing due to obv iously increased proportion of weak bonds (particulate particulate bond and particulate matrix bond).
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