Abstract:
A protective grill housing assembly includes a bottom base panel, a rear panel, left and right side panels and a roof panel. Upper and lower spacer brackets are provided on the rear of the housing to prevent the grill housing from being placed too close to an adjacent structure. These spacers further ensure that the proper air gap is maintained to further insulate the adjacent structure from heat and flame transfer. A front panel assembly may includes at least one hinged door to provide access to the interior of the housing. Some embodiments may further include an integrated exploding fire extinguisher ball for quick automatic activation should a fire occur.
Abstract:
A method of suppressing a kitchen fire includes detecting a fire and identifying a location of the fire with a tracking system, aiming a nozzle at the location, and releasing an agent through the nozzle at the location.
Abstract:
A manual activation system includes a pulley movable between an inactive position and an active position, a tension member wrapped about the pulley, the tension member having a tensile force acting on the pulley, and at least one arm rotatably mounted adjacent to the pulley. The at least one arm has a groove configured to cooperate with a portion of the pulley to selectively oppose the tensile force.
Abstract:
An automated fire extinguishing assembly for fire protection while using cooking appliances includes a fire extinguisher and a stand. The fire extinguisher is automatic. The stand is configured to couple to the fire extinguisher. The stand is positioned to couple to the fire extinguisher such that the fire extinguisher is positionable above a cooking appliance, such as a crockpot. The fire extinguisher is configured to detect a fire, self-actuate and deliver a fire suppressing agent in the event of a fire.
Abstract:
A container holding a fire suppressing powder has a top, a cylindrical sidewall and a bottom with a hole, the bottom having a score line defining a segment. An explosive material housing containing an explosive material is mounted to a head of a mounting member. The mounting member has a lower portion smaller in cross-sectional dimension than the head, depending downward from the head and extending through the hole in the bottom. A retainer is secured around the lower portion of the mounting member below the bottom to secure the mounting member to the bottom. A fuse extends through the hole in the bottom, a passage in the mounting member, and into the explosive material housing. A plate is mounted within the container a selected distance below the top, the plate being movable a short distance toward and away from the top in response to ignition of the explosive material.
Abstract:
Fire protection mist nozzles for industrial oil cookers, oil cookers with fire protection systems, and method of oil cooker fire protection are provided. The mist nozzles operate at pressures between 170 and 250 psi, and provide a unique distribution pattern that allows for variable installations for protection in certain operative environments including oil cookers with various hood configurations. The fire protection nozzles includes a base defining an inlet and an outlet along an axis. The base includes an orifice having an inlet diameter and an outlet diameter. The outlet diameter is preferably greater than the inlet diameter; and the orifice defines a K-factor of less than 1.0 gpm/psi½. The nozzle includes a diffuser aligned with the orifice. The diffuser has a preferably substantially domed portion with a maximum diameter that is less than the summation of the inlet diameter and the outlet diameter of the orifice.
Abstract:
Systems and methods for fire protection of a fixed space using a fire protection unit having a fixed volume of firefighting agent; a manifold coupled to the fixed volume and an actuator axially aligned with the manifold to pressurize the firefighting agent within the manifold for discharge and dispersion to protect the fixed space.
Abstract:
An automatic stovetop fire suppressor using a compressed spring to lower a bottom lid upon thermal glass bulb fracture is provided herein. A plastic lid seals on the bottom of a can and forms a closed container. The closed container is filled with a fire suppressing agent. A compressed spring extends when a thermal glass bulb fractures. The extending spring lowers the bottom lid to open the closed container. Fire suppressing agent flows out of the radial opening, suppressing a stovetop fire with minimal or no splashing of cooking oil. A center post is secured to a top wall of the container. A ledge, or bottom support, secured to the container catches the bottom lid to limit the radial opening height. A gradual release of a fire suppressing agent in a desired distribution pattern and method of gradual and spatial agent release can be provided with a cone-shaped bottom lid.
Abstract:
An automatic stovetop fire suppressor providing a gradual release of a fire suppressing agent in a desired distribution pattern and method of gradual and spatial agent release are provided herein. A plastic cone shaped lid seals on the bottom of a can and forms a closed container. The closed container is filled with a fire suppressing agent. An initiator charge breaks a designed breaking point of a reduced horizontal cross sectional area when fuse activated. The bottom lid drops down exposing a radial opening. Fire suppressing agent flows out of the radial opening, suppressing a stovetop fire with minimal or no splashing of cooking oil. An initiator housing is affixed to a top wall of the can and serves as the welding point for securing the plastic lid. A travel limiting member attached to the bottom lid catches on a shoulder of the initiator housing to limit the radial opening height.
Abstract:
A fire suppression and annunciation system using a flexible conduit and a wire rope is provided. The wire rope may be connected to a knob assembly at a universal pull station and to a release mechanism of the fire suppression system. An operator may pull a handle of the knob assembly at the universal pull station, thereby activating the release mechanism to release fire suppression agent. A flexible conduit may house the wire rope along at least a part of the connection from the universal pull station to the release mechanism. A material on the liner of the flexible conduit and/or on the wire rope may be used to reduce the coefficient of friction of wire rope in the flexible conduit. The fire suppression system may further include a pulley block system connected to the universal pull station. The pulley block system may comprise bearings, and may lower the force necessary to activate the release mechanism.