Abstract:
Composite structures that have an appearance of an anodized bulk metal but that is non-capacitive and/or radio frequency (RF) transparent are disclosed. The composite structure can be part of an enclosure of an electronic device. The composite structure can give the enclosure a metallic look without interfering with the functioning of some electronic components of the electronic device, such as RF antennas, touch pads and touch screens. Some embodiments involve forming a metal oxide layer and depositing a non-capacitive layer on the metal oxide layer. Some embodiments involve forming an imitation metal oxide layer and depositing a non-capacitive layer on the imitation metal oxide layer.
Abstract:
Polymer materials that are color-matched with non-polymer materials are disclosed. Methods involve incorporating the same type of dyes used to colorize the non-polymer materials within the polymer materials. In some embodiments, a solvent casting process is used, which involves dissolving a polymer material and a dye with a solvent or a combination of solvents forming a dye-polymer mixture. In some embodiments, the dye-polymer mixture is dispensed onto a carrier and the solvent is removed forming a dyed polymer layer that can be applied onto a part as a color veneer. In some embodiments, the dye-polymer mixture is dispensed into mold and the solvent is removed forming a dyed polymer structure that can be used as a stand-alone structure or as part of a larger structure.
Abstract:
The disclosure provides an aluminum alloy may include iron (Fe) of at least 0.10 wt %, silicon (Si) of at least 0.35 wt %, and magnesium (Mg) of at least 0.45 wt %, manganese (Mn) in amount of at least 0.005 wt %, and additional elements, the remaining wt % being Al and incidental impurities.
Abstract:
Composite structures that have an appearance of an anodized bulk metal but that is non-capacitive and/or radio frequency (RF) transparent are disclosed. The composite structure can be part of an enclosure of an electronic device. The composite structure can give the enclosure a metallic look without interfering with the functioning of some electronic components of the electronic device, such as RF antennas, touch pads and touch screens. Some embodiments involve forming a metal oxide layer and depositing a non-capacitive layer on the metal oxide layer. Some embodiments involve forming an imitation metal oxide layer and depositing a non-capacitive layer on the imitation metal oxide layer.
Abstract:
The disclosure provides an aluminum alloy may include iron (Fe) of at least 0.10 wt %, silicon (Si) of at least 0.35 wt %, and magnesium (Mg) of at least 0.45 wt %, manganese (Mn) in amount of at least 0.005 wt %, and additional elements, the remaining wt % being Al and incidental impurities.
Abstract:
Polymer materials that are color-matched with non-polymer materials are disclosed. Methods involve incorporating the same type of dyes used to colorize the non-polymer materials within the polymer materials. In some embodiments, a solvent casting process is used, which involves dissolving a polymer material and a dye with a solvent or a combination of solvents forming a dye-polymer mixture. In some embodiments, the dye-polymer mixture is dispensed onto a carrier and the solvent is removed forming a dyed polymer layer that can be applied onto a part as a color veneer. In some embodiments, the dye-polymer mixture is dispensed into mold and the solvent is removed forming a dyed polymer structure that can be used as a stand-alone structure or as part of a larger structure.