Y10T428/24909

Conductive composition, conductive member, conductive member production method, touch panel, and solar cell

The conductive composition contains at least (a) conductive metal fibers, and (b) at least one compound selected from a compound represented by the following Formula (1), a compound represented by the following Formula (2), and a compound having a partial structure represented by the following Formula (3). Each of R.sup.1 and R.sup.2 independently represents a hydrogen atom, an alkyl group, an alkenyl group, an aryl group, an acyl group, an aryloxycarbonyl group, an alkoxycarbonyl group, or a carbamoyl group. Each of R.sup.3, R.sup.4, R.sup.5, R.sup.6, R.sup.8, R.sup.9, R.sup.10, and R.sup.11 independently represents an alkyl group having 1 to 4 carbon atoms, and R.sup.7 represents a hydrogen atom or a substituent. R.sup.12 represents an alkyl group, an alkoxy group, an acyl group, or a hydrogen atom. * represents a bond. ##STR00001##

Magnetisable ink

A magnetizable ink suitable for a packing material for forming food packages is disclosed. The ink comprises magnetizable particles; a solvent; and a binder.

PROTECTIVE ENCLOSURE FOR ELECTRONIC DEVICE
20170099074 · 2017-04-06 ·

A protective case for use with a portable electronic device includes a protective shell including a cavity for receiving the portable electronic device and a pliable surface disposed in an opening of the protective shell. The pliable surface being adapted to transmit at least a portion of a mechanical force applied at an external surface of the protective shell to the control feature of the installed portable electronic device to actuate the control feature of the installed portable electronic device. The protective case also includes a feature disposed in a wall of the protective shell for accessing an electrical connector of the installed portable electronic device from outside the protective shell.

Conductive paste and ceramic substrate manufactured using the same

[Problem to be solved] The present invention provides a conductive paste for constrained firing and a ceramic substrate manufactured with the conductive paste, the conductive paste having an excellent plating resistance and a good adherence against a ceramic substrate and a plated film even after plating treatment, wherein a constraining layer after firing can be easily removed without remaining on a surface conductor in a case where co-firing is performed. [Solution] Provided is a conductive paste comprising 60 to 95 mass % of an Ag powder as the content in a paste composition, 0.5 to 5 mass % of a borosilicate based glass powder relative to the Ag powder, the remainder being a platinum group metal additive and an organic vehicle, wherein the platinum group metal additive contains at least two metals of Ru and Rh, and the content of Ru and the content of Rh in the platinum group metal additive are 0.05 to 5 mass % of Ru and 0.001 to 0.1 mass % of Rh respectively in terms of metal components relative to the mass of the Ag powder

BIOLAMINATE COMPOSITE ASSEMBLY INCLUDING POLYLACTIC ACID AND NATURAL WAX LAMINATE LAYER, AND RELATED METHODS
20170036421 · 2017-02-09 ·

Biolaminate composite assemblies are provided. Generally, the biolaminate composite assemblies may comprise one or more biolaminate layers and at least one biolaminate layer may comprise polylactic acid. In one embodiment, a biolaminate composite assembly is provided comprising one or more biolaminate layers wherein the biolaminate composite assembly is three-dimensionally formable over a rigid non-plastic substrate. At least one of the biolaminate layers comprises polylactic acid and a natural wax. In another embodiment, a method for forming a biolaminate composite assembly is provided.

Protective enclosure for electronic device

A protective enclosure for a mobile computing device that has an interactive touchscreen includes a first case member and a second case member. The second case member is attachable to the first case member via a latching mechanism, and the combined case members provide a protective interior of the enclosure. Pliable areas of the first and/or second case member align with a control button of the mobile computing device and transfer external force to the control button. An electrical connector of the protective enclosure is structured to engage a corresponding connector of the mobile computing device. The protective cover includes audio headphones and a headphone cable that connects between the audio headphones and an exterior surface of the second case member, electrically connecting the audio headphones to the electrical connector of the protective enclosure.