Patent classifications
B65D25/02
Extender for receptacle and method thereof
An extender for a receptacle to increase a storage capacity of a typical garbage receptacle is provided. The extender may be inserted into a receptacle, or may be placed on the receptacle. A method for collecting garbage is also provided, including providing a receptacle for storing waste materials, the receptacle configured to be lifted and inverted by a mechanical means of a garbage collection vehicle to empty the waste materials, providing an extender for use with the receptacle, the extender cooperating with the receptacle to increase a storage capacity of the provided receptacle, wherein the extender is disposable along with the waste materials, and at the same time, collecting the waste materials and the extender using the mechanical means of the garbage collection means.
FOOD TRAY
A food tray has a lower tray containing a first food product and an upper tray nested stably at least partly inside the lower tray, with the upper tray containing a second food product. An air permeable interface is provided between the upper tray and lower tray to allow venting of steam from the lower tray during cooking. A cover is provided for the food tray. Each of the lower tray and the upper tray are formed of a material that is suitable for use in a microwave or conventional oven. Various constructions may be used to create the air permeable interface, such as lugs, ledges and lips. The upper tray may sit above the lower tray. The trays are nested loosely for ease of removal of the upper tray from the lower tray. Various configurations of cover may be used such as a sleeve, carton or lid. The upper tray may contain the higher value food product.
FOOD TRAY
A food tray has a lower tray containing a first food product and an upper tray nested stably at least partly inside the lower tray, with the upper tray containing a second food product. An air permeable interface is provided between the upper tray and lower tray to allow venting of steam from the lower tray during cooking. A cover is provided for the food tray. Each of the lower tray and the upper tray are formed of a material that is suitable for use in a microwave or conventional oven. Various constructions may be used to create the air permeable interface, such as lugs, ledges and lips. The upper tray may sit above the lower tray. The trays are nested loosely for ease of removal of the upper tray from the lower tray. Various configurations of cover may be used such as a sleeve, carton or lid. The upper tray may contain the higher value food product.
Waste Cooking Grease Collection and Disposal Apparatus
A waste cooking grease collection and disposal apparatus includes a flexible heat-resistant non-conductive polymeric housing devised to withstand introduction of very hot cooking grease poured therein. The housing includes a base bounded topside by a perimetric wall to enclose an interior volume. Grease collected into the interior volume is transportable thereby to cool within a conditioned space, such as inside a refrigerator, for example. Once the grease is cooled, a block of solidified grease is readily removable from the apparatus by manual deformation of the housing. Since the housing comprises known dimensions, blocks of solidified grease of known dimensions are producible for disposal or reuse, as desired.
High-capacity self-locking toolbox with three opening modes
A high-capacity self-locking toolbox with three opening modes, which includes a box frame, a box cover, and a clamping base. The box frame includes an upper box frame and a lower box frame which are folded in the middle to make two pieces. The box cover includes an upper box cover and a lower box cover. The two box covers are respectively provided on an upper surface and a lower surface of the box frame. A reinforced rib surface is provided inside an inner wall of the box frame. The reinforced rib surface is provided with self-locking clamping members in pairs, and the clamping base is installed in the self-locking clamping members. The three opening modes enable the toolbox to be opened from the upper side, the lower side, or the middle, so as to have access to the tools from any side of the toolbox. The interior of the toolbox is designed in modular, the clamping base has a self-locking function, and the tools have a compact arrangement.
High-capacity self-locking toolbox with three opening modes
A high-capacity self-locking toolbox with three opening modes, which includes a box frame, a box cover, and a clamping base. The box frame includes an upper box frame and a lower box frame which are folded in the middle to make two pieces. The box cover includes an upper box cover and a lower box cover. The two box covers are respectively provided on an upper surface and a lower surface of the box frame. A reinforced rib surface is provided inside an inner wall of the box frame. The reinforced rib surface is provided with self-locking clamping members in pairs, and the clamping base is installed in the self-locking clamping members. The three opening modes enable the toolbox to be opened from the upper side, the lower side, or the middle, so as to have access to the tools from any side of the toolbox. The interior of the toolbox is designed in modular, the clamping base has a self-locking function, and the tools have a compact arrangement.
SYSTEM AND METHOD FOR A REINFORCED CONTAINER ASSOCIATED WITH BATTERY HANDLING
A heat containment system is provided comprising a double wall steel insulated box, a vent system with a flame arrestor and a filter, a fire proof insulated lid with a fire proof seal and a latch, a fire proof wire way, and a built in charger stand. The system is configured to contain heat of a fire. The vent system to prevent excessive pressure inside the box. The built in charger stand holds a charger. The box contains heat of a battery fire associated with charging of a lithium battery. The box has a vent system to prevent excessive pressure inside the box from combustion gases. The vent system has a filter that removes soot from the combustion gases.
SYSTEM AND METHOD FOR A REINFORCED CONTAINER ASSOCIATED WITH BATTERY HANDLING
A heat containment system is provided comprising a double wall steel insulated box, a vent system with a flame arrestor and a filter, a fire proof insulated lid with a fire proof seal and a latch, a fire proof wire way, and a built in charger stand. The system is configured to contain heat of a fire. The vent system to prevent excessive pressure inside the box. The built in charger stand holds a charger. The box contains heat of a battery fire associated with charging of a lithium battery. The box has a vent system to prevent excessive pressure inside the box from combustion gases. The vent system has a filter that removes soot from the combustion gases.
Systems and methods for adaptive monitoring of a shipping container for an environmental anomaly
An adaptive method and system for monitoring a shipping container for an environmental anomaly uses sensor-based ID nodes within the container and a command node. Sensors on each ID node generate sensor data about an environmental condition proximate the ID node as disposed within the container. Each ID node periodically broadcasts the sensor data. The command node monitors a first group of sensor data from the ID nodes over a first time period to detect an initial environmental threshold condition related to the container, then monitors a subsequent group of sensor data over a second time period under a modified monitoring parameter to detect a secondary environmental threshold condition related to the container as the anomaly. In response to detecting the secondary condition, the command node generates an alert notification and transmits the alert notification to an external transceiver to initiate a mediation response related to the anomaly.
Systems and methods for adaptive monitoring of a shipping container for an environmental anomaly
An adaptive method and system for monitoring a shipping container for an environmental anomaly uses sensor-based ID nodes within the container and a command node. Sensors on each ID node generate sensor data about an environmental condition proximate the ID node as disposed within the container. Each ID node periodically broadcasts the sensor data. The command node monitors a first group of sensor data from the ID nodes over a first time period to detect an initial environmental threshold condition related to the container, then monitors a subsequent group of sensor data over a second time period under a modified monitoring parameter to detect a secondary environmental threshold condition related to the container as the anomaly. In response to detecting the secondary condition, the command node generates an alert notification and transmits the alert notification to an external transceiver to initiate a mediation response related to the anomaly.