Patent classifications
B32B17/066
Foam Core Mirror Configured for Interior Aerospace Applications and a Process of Implementing the Same
A foam core mirror includes a transparent mirror layer, a foam core layer, and a backing layer. One face of the transparent mirror layer is hard-coated to increase scratch resistance and/or wear resistance, and another face of the transparent mirror layer is metalized to provide reflective mirror properties. The foam core layer is arranged adjacent to the transparent mirror layer and includes lightweight foam material. The backing layer is arranged adjacent to the foam core layer and includes a high tensile strength material.
Electrically powered transport vehicle with a lighting system
A personal transport system is provided including, in an embodiment, an electrically powered vehicle, a companion remote control, and a companion mobile phone application. The vehicle includes an operator-supporting deck, one or more deck-mounted trucks, one or more axle-mounted wheels on each of the one or more trucks, one or more batteries, and a deck lighting system. The one or more batteries power a motor configured to drive the wheels by way of a pulley system, at least one battery of which is disposed under a battery enclosure. The battery enclosure has a first light indicator system, and the companion remote control has a second light indicator system, each of which is configured for communicating with the operator. The deck lighting system includes a light strip of light-emitting diodes disposed in a groove of the deck configured to change state to communicate with the operator or others sharing a road.
Foam reefer wall backing with hook strip/shape additions and related method
An improved reefer wall panel having better foam adhesion by including a plurality of hook and loop tape sections. The sections, as strips, may be applied horizontally or diagonally and may extend from the top to near the bottom of any such wall panel before foaming. They may be applied to the whole of panel, randomly throughout or to just the more vulnerable lower sections of a given panel.
Composite board to support a weight of a user of a personal transportation vehicle
Methods and apparatus are discussed for an electric-powered personal transportation vehicle with a composite board to support a weight of a user, one or more wheels driven by one or more electric motors, where the electric motors are powered by one or more batteries. The composite board includes a heterogeneous mix of individual components making up the composite board. The composite board includes i) a spine of the composite board made of a hardwood material connected to ii) sides of the composite board made of a vibration-dampening, high-density, foam.
Battery and other improvements for a personal transportation vehicle
Methods and apparatus are discussed for an electric powered personal transportation vehicle with electric motors powered by one or more batteries. A battery pack storage enclosure i) contains a set of pocket cores. The first battery pack storage enclosure has a rigid internal structure that has a set of pocket cores that hold the battery cells in place and ii) contains a metal mid-plate that functionally transfers thermal heat rapidly through a metal mass of the metal mid-plate to smooth out spikes of local temperatures when an initial battery cell overheats and fails in order to minimize the heat from the initial battery cell failure from propagating and causing a neighboring battery cell to also fail from the heat.
LOW DENSITY MICROSPHERES
Low-density thermoplastic expandable microspheres are disclosed. Various low-density structures, in particular, sandwich panels, based on foam prepared from the low-density microspheres, are also disclosed. Process of preparing low-density polymeric microspheres, per se, and the corresponding low-density structures, based on the microsphere foam, are also disclosed.
Foam core mirror configured for interior aerospace applications and a process of implementing the same
A foam core mirror includes a transparent mirror layer, a foam core layer, and a backing layer. One face of the transparent mirror layer is hard-coated to increase scratch resistance and/or wear resistance, and another face of the transparent mirror layer is metalized to provide reflective mirror properties. The foam core layer is arranged adjacent to the transparent mirror layer and includes lightweight foam material. The backing layer is arranged adjacent to the foam core layer and includes a high tensile strength material.
Low density microspheres
Low-density thermoplastic expandable microspheres are disclosed. Various low-density structures, in particular, sandwich panels, based on foam prepared from the low-density microspheres, are also disclosed. Process of preparing low-density polymeric microspheres, per se, and the corresponding low-density structures, based on the microsphere foam, are also disclosed.
Double glazed window of polycarbonate layer
The present invention relates to a double glazed window of a polycarbonate layer and, specifically, to a double glazed window of a polycarbonate layer, comprising an outer glass layer and an inner polycarbonate layer so as to have improved heat insulation and earthquake resistance. The double glazed window of a polycarbonate layer comprises: a glass layer forming an outer layer; a polycarbonate layer forming an inner layer; a vacuum layer (VL) formed between the glass layer and the polycarbonate layer; and sealing means for sealing the VL while coupling the glass layer and the polycarbonate layer.
SYSTEMS AND METHODS FOR PRODUCING DURABLE, DIMENSIONALLY STABLE, EXTRUDED SHEET GOODS HAVING A DESIRED SPECIFIC GRAVITY
The present invention provides a system, method, and apparatus for producing a dimensionally stable extruded board product for use in surface coverings. The board product may be a basalt casting powder-based product for use as a substrate for wall or other surface coverings or may be used as a core layer in a modular floor covering unit. The modular floor covering unit comprises multiple layers. The layers are a thin cut stone veneer layer, a core layer with a density similar to that of the thin cut stone veneer layer, and an optional magnetically receptive underlayment layer. Other layers or combinations of layers may also be used.