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A study on indium joints for low-temperature microelectronics interconnectionsCheng, Xiaojin January 2011 (has links)
For microelectronics used in the low-temperature applications, the understanding of their reliability and performance has become an important research subject characterised as electronics to serve under the severe or extreme service conditions. Along with the impact from the increased miniaturization of devices, the various properties and the relevant thermo-mechanical response of the interconnection materials to temperature excursion at micro-scale become a critical factor which can affect the reliable performance of microelectronics in various applications. Pure indium as an excellent interconnection material has been used in pixellated detector systems, which are required to be functional at cryogenic temperatures. This thesis presents an extensive investigation into the thermo-mechanical properties of indium joints as a function of microstructure, strain (loading histories-dependent) and temperature (service condition-sensitive), specifically in the areas as follows: (i) the interfacial reactions and evolution between indium and substrate during the reflow process (liquid-solid) and thermal aging (solid-solid) stages by taking low-temperature cycling into account; (ii) determination of the effects of joint thickness and the types of substrate (e.g. Cu or Ni) on the mechanical properties of indium joints, and the stress- and temperature-dependent creep behaviour of indium joints; (iii) the establishment of a constitutive relationship for indium interconnects under a wide range of homologous temperature changes that was subsequently implemented into an FE model to allow the analysis of the evolution of thermally-induced stresses and strains associated with a hybrid pixel detector.
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A vegetation classification and description of five wetland sysems and their respective zones on the Maputuland Coastal PlainPretorius, Mathilde Luïse 14 May 2013 (has links)
The Maputaland Coastal Plain in Kwa Zulu-Natal is covered by aeolian sands . According to the
national wetland delineation manual delineating wetlands in this area is complex due to
problematic wetland soils. The aim of this study was to classify and describe the vegetation of
the different zones of the wetland systems to determine the main drivers of the plant
communities. The understanding of these complex ecosystems could assist in wetland
delineation. Twenty wetlands from five wetland systems were surveyed. The vegetation zones
of each wetland were sampled and basic environmental data were collected.
The results from this study indicate that different plant species assemblages are characteristic
for the wetland zones. However, zone delineation using vegetation composition varies between
the different wetland systems, and should be evaluated according to the system in question.
The major determinants of the vegetation communities in wetlands on the MCP are the
substrate type and hydrological regime / Environmental Sciences / M.Sc. (Environmental Management)
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A vegetation classification and description of five wetland systems and their respective zones on the Maputaland Coastal PlainPretorius, Mathilde Luïse 02 1900 (has links)
The Maputaland Coastal Plain in Kwa Zulu-Natal is covered by aeolian sands . According to the
national wetland delineation manual delineating wetlands in this area is complex due to
problematic wetland soils. The aim of this study was to classify and describe the vegetation of
the different zones of the wetland systems to determine the main drivers of the plant
communities. The understanding of these complex ecosystems could assist in wetland
delineation. Twenty wetlands from five wetland systems were surveyed. The vegetation zones
of each wetland were sampled and basic environmental data were collected.
The results from this study indicate that different plant species assemblages are characteristic
for the wetland zones. However, zone delineation using vegetation composition varies between
the different wetland systems, and should be evaluated according to the system in question.
The major determinants of the vegetation communities in wetlands on the MCP are the
substrate type and hydrological regime / Environmental Sciences / M.Sc. (Environmental Management)
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