Abstract:
This display screen turning apparatus includes a first rotation support portion formed to be horizontally rotatable with respect to a base and a second rotation support portion formed to be horizontally rotatable with respect to the base independently of the first rotation support portion, for horizontally rotating a display screen portion by rotating at least either the first rotation support portion or the second rotation support portion.
Abstract:
A method for detecting leak from a fuel vapor treating apparatus defining a first area including a fuel tank and a second area including an adsorbent canister has hermetically closing the first area, measuring internal pressure of the first area, comparing an absolute value of differential pressure between the internal pressure of the first area and the atmospheric pressure with a predetermined value, measuring the internal pressure of the first area in a case that the absolute value is equal to or higher than the predetermined value in order to check for leaks from the first area based on changes in the internal pressure of the first area, fluidly communicating the first area with the second area in order to equilibrate internal pressures of the first area and the second area, hermetically closing the second area, and measuring the internal pressure of the second area in order to check for leaks from the second area based on changes in the internal pressure of the second area.
Abstract:
An adsorbent canister has a housing defining an adsorption chamber therein, an adsorbent filled in the adsorption chamber, and a honeycomb core. The honeycomb core is made from a material having a higher thermal conductivity than the adsorbent, defines therein a plurality of cells passing through the honeycomb core and is disposed in the adsorption chamber. The adsorbent canister can further have a heater for heating the honeycomb core or the honeycomb core can be made from a material, which produce heat when current is applied.
Abstract:
An adsorbent canister has a housing defining an adsorption chamber therein, an adsorbent filled in the adsorption chamber, and a honeycomb core. The honeycomb core is made from a material having a higher thermal conductivity than the adsorbent, defines therein a plurality of cells passing through the honeycomb core and is disposed in the adsorption chamber. The adsorbent canister can further have a heater for heating the honeycomb core or the honeycomb core can be made from a material, which produce heat when current is applied.
Abstract:
A fuel vapor processor has a fuel tank, a canister, a vapor pipe, a recovery pipe, an air pipe, a suction device, a vapor pipe valve, an air pipe valve, and a pressure regulator. The vapor pipe leads fuel vapor generated in the fuel tank to the canister for trapping the fuel vapor in the canister. The recovery pipe recoveries the fuel vapor desorbed from the canister into the fuel tank. The air pipe communicates the canister with the atmosphere. The suction device is disposed on the recovery pipe for desorbing the fuel vapor trapped in the canister. The pressure regulator is communicated with the air pipe between the air pipe valve and the canister in order to allow gas flow from the atmosphere toward the canister. During desorption of the fuel vapor due to the suction device, the vapor pipe valve and the air pipe valve are closed, and negative pressure is kept in the canister such that the fuel vapor is desorbed from the canister and fresh air is led into the canister via the pressure regulator.
Abstract:
This display screen turning apparatus includes a first rotation support portion formed to be horizontally rotatable with respect to a base and a second rotation support portion formed to be horizontally rotatable with respect to the base independently of the first rotation support portion, for horizontally rotating a display screen portion by rotating at least either the first rotation support portion or the second rotation support portion.
Abstract:
This display includes a bracket member mounted on a display screen portion and a stand member including a pair of support portions, having an L-shaped cross section, mounted with the bracket member slid from above, while the bracket member includes a pair of first regulating portions regulating downward movement of the bracket member with respect to the stand member by coming into contact with the pair of support portions of the stand member respectively and a pair of second regulating portions regulating anteroposterior movement of the bracket member with respect to the stand member by anteroposteriorly holding the pair of support portions of the stand member respectively.
Abstract:
The present invention includes a first canister disposed within an intake air passage. The first canister communicates with a fuel tank via a second canister, so that a fuel vapor produced within the fuel tank can be purged by the second canister and further by the first canister. The second canister communicates with the intake air passage via a purge passage. The negative pressure within the intake air passage may be applied to the first and second canisters via the purge passage, so that the fuel vapor adsorbed by the first and second canisters can be desorbed or purged and can then be returned into the intake air passage.
Abstract:
An adsorption/desorption device is communicated with an upper space of a fuel tank via a vapor passage. The adsorption/desorption device is configured to selectively adsorb or desorb air components contained in vapor. The adsorption/desorption device and the vapor passage are not communicated to the external atmosphere. The fuel tank is provided with a pressure detecting device for detecting the internal pressure of the fuel tank. A pressure regulating device is provided to the vapor passage for controlling and maintaining the pressure applied to the adsorption/desorption device. When the internal pressure of the fuel tank is higher than the atmospheric pressure, the internal pressure of the fuel tank is pressure-fed to the side of the adsorption/desorption device via the pressure regulating device until the internal pressure of the fuel tank becomes in equilibrium with the atmospheric pressure. When the internal pressure of the fuel tank is lower than the atmospheric pressure, vapor is pressure-fed to the side of the fuel tank via the pressure regulating device until the internal pressure of the fuel tank becomes in equilibrium with the atmospheric pressure.
Abstract:
A support structure for a display device includes a base member fixed to a rear surface of the display device, a support member which is fixed pivotably to the base member and supports the display device in a supporting position in an opened state where the display device is inclined at a predetermined angle and capable of being stored in a closed state, a holding member fixed to the base member including a regulation portion that regulates rotation of the support member beyond the supporting position, a pressure member that presses an end portion of the support member, and a compression coiled spring that urges the pressure member toward the support member. The pressure member includes a protruded portion having a triangular cross section, and inclined surfaces contacting with the support member while pressing the end portion when the support member rotates from the closed state to the opened state.