Abstract:
A magnetic head-positioning servo system is provided to accurately test a magnetic disk with a track written in advance, by providing two fine actuators. The second fine actuator, to which a magnetic head is attached, is mounted on the first fine actuator. The second fine actuator has a larger generating displacement than a generating displacement of the first fine actuator, and lets the magnetic disk to follow the eccentricity of the track. In this way, the positioning accuracy can be increased.
Abstract:
Responsive to braking, a CPU of a driving assist apparatus calculates an average deceleration of the vehicle and then calculates a braking distance. The CPU further calculates a final position at which the vehicle will come to a stop, on the basis of the braking distance. The CPU next activates an assist display for display a map including, superimposed thereon, the route to the final position and an arrival indicator indicating the stop (final) position of the vehicle.
Abstract:
A vehicle braking control assistance device includes: a speed detecting unit for detecting current vehicle speed; a brake force detecting unit for detecting the current braking force; a deceleration target point determining unit for determining a target point for deceleration control; a target vehicle speed determining unit for determining a target vehicle speed at the deceleration target point; an ideal brake force determining unit for determining an ideal brake force to be applied in continued movement to the deceleration target point with the target vehicle speed realized at the deceleration target point, based on the current vehicle speed, the deceleration target point and the target vehicle speed; a notification information generating unit for generating notification information indicating the relationship between the ideal brake force and the current brake force; and a notification unit for bringing the generated notification information to the attention of the driver.
Abstract:
A heat plate for fixation includes: a metallic base plate; and a heating resistor arranged on a reverse face of the metallic base plate, the heating resistor being formed by laminating, at least, an electric insulating layer and heating resistor layer in this order on the metallic base plate, wherein the heat plate is capable of raising the temperature of the metallic base plate to a fixing temperature when the heating resistor layer is energized and heated. A semicircular heating member for fixation includes the heat plate which is curved so that the metallic base plate has a convex surface, a belt type fixing device is provided with the semicircular heating member, and an electrophotographic image forming apparatus is provided with the belt type fixing device having the semicircular heating member.
Abstract:
The structure for mounting a door wire harness is configured to wire a door harness from a door inner panel toward a body panel in a vehicle. The door harness is mountable into a grommet. The door inner panel has a portion proximal to the body panel. The proximal portion is recessed and the recessed portion includes a grommet-holding device, such that the grommet can be fixed into the recessed portion from outside the door inner panel. Further, the door inner panel includes an inward face confronting the compartment of the vehicle. The portion proximal to the body panel includes a weather strip and the grommet is installed farther from the inward face than the weather strip.
Abstract:
A door harness mounting device in a door inner panel of a vehicle, the door inner panel including an internal face facing the compartment of the vehicle, a mounting panel mountable on the internal face, an edge face facing the body panel of the vehicle and a weather strip extending on the edge face. The device includes a grommet including a bellows portion and an elastic device which at least includes an elastic portion and a panel-fixing portion, such that the door harness can fit into the grommet and be installed closer to the internal face than a weather strip. The panel-fixing portion is adapted to engage with the mounting panel, such that the elastic device can be mounted on the mounting panel, and the mounting panel is adapted to engage with the internal face, such that the elastic portion can expand or contract as a function of whether the door is opened or closed.
Abstract:
It comprises a mask (11) having a first, a second and a third action edge (11a, 11b, 11c), and a drive means for moving the mask (11) relative to a substrate (12) in a uniaxial direction (A) whereby moving the mask at a fixed rate of movement to cause the edges to successively act on an identical substrate region while successively applying different materials thereto forms thin films of three components successively with respective film thickness gradients oriented in three different directions mutually angularly spaced apart by an angle of 120° to allow these films to overlap, thereby forming a ternary phase diagrammatic thin film 13.
Abstract:
A heat plate for fixation comprising: a metallic base plate; and a heating resistor arranged on a reverse face of the metallic base plate, the heating resistor being formed by laminating, at least, an electric insulating layer and heating resistor layer in this order on the metallic base plate, wherein the heat plate is capable of raising the temperature of the metallic base plate to a fixing temperature when the heating resistor layer is energized and heated. A semicircular heating member for fixation comprises the heat plate which is curved so that the metallic base plate has a convex surface, a belt type fixing device is provided with the semicircular heating member, and an electrophotographic image forming apparatus is provided with the belt type fixing device comprising the semicircular heating member.
Abstract:
A method is provided for producing a preform structure which is used in a composite aluminium or aluminium alloy component in which a base metal of an aluminium or aluminium alloy is reinforced with reinforcing materials. A slurry is prepared by mixing reinforcing materials including ceramic particles and first whiskers with burning-away powders and liquid. Liquid components contained in the slurry are filtered to provide a dehydrated structure. Thereafter a preform structure is produced by sintering the ceramic particles with the first whiskers after burning the burning-away powders in the dehydrated structure.
Abstract:
A method for preparing a light metal or light metal alloy composite product, wherein (a) an aqueous slurry containing water, a reinforcement powder, a metal powder and an alumina sol binder is prepared; (b) a preform is prepared from the slurry; (c) the preform is sintered; and (d) the sintered preform is impregnated with a melt of a light metal or a light metal alloy to produce a light metal or a light metal alloy based composite product.