Abstract:
Disclosed is a honeycomb structure which is bonded with a bonding material containing 0.1 to 10 mass % of a layered clay mineral. Also disclosed are a honeycomb structure which is bonded with a bonding material containing 0.1 to 10 mass % of an organic binder, and a honeycomb structure which is bonded with a bonding material having a Casson yield value of 6 Pa or more. Further disclosed is a method for producing such a honeycomb structure.
Abstract:
Systems, apparatus and methods are provided to allow users to print to a print device from their computers or portable devices through a cloud print service. In an aspect, each of a client terminal and a guest terminal can access the print device through the cloud print service. In another aspect, the print device can be provided with a user interface that allows a guest to retrieve a print job submitted through the cloud print service, as well as allow a user having user credentials to retrieve a submitted job. Many other cloud print features can be included.
Abstract:
In a valve timing control apparatus, phase-retard and phase-advance hydraulic chambers are defined among a plurality of shoes formed in a housing and a plurality of vanes formed integral with a rotor fixed to a camshaft. The rotor has a large-diameter portion formed between a first group of adjacent vanes and a small-diameter portion formed between a second group of adjacent vanes. The innermost end of a shoe of the shoes, opposed to the outer peripheral surface of the small-diameter portion, is configured to protrude radially inward rather than the innermost end of a shoe of the shoes, opposed to the outer peripheral surface of the large-diameter portion. A lock pin is located in the large-diameter portion of the rotor, whereas a lock hole, with which the lock pin slides into and out of engagement, is located in the inner face of a sprocket.
Abstract:
A film laminate (1) includes a base film (10) and a protection film (2). The base film (10) has positioning parts (11a to 11c) formed thereon that are holes or notches into which operation buttons (91A to 91C) of the electronic device (90) can fit and which is for defining the position of the film laminate (1) on the front surface of the electronic device (90). By the film laminate 1, when a user attaches a protection film to an outer surface of an electronic device, displacement of the film laminate on the outer surface can be prevented, and thereby attachment work of the protection film can be facilitated.
Abstract:
An object is to provide a cover for allowing an operation to an operating part provided on the rear surface of a portable electronic device when the electronic device being used. A cover includes a front cover plate, a rear cover plate, and an attachment member capable of being attached the electronic device. The front cover plate and the rear cover plate are connected to the attachment member such that each relative angle thereof relative to the attachment member are changeable.
Abstract:
An example game system includes a stationary game apparatus and a terminal device allowing a user to perform an input operation. The game apparatus is capable of connecting to a network and communicates with a predetermined external device via the network. An image included in reception data obtained via communication is outputted to a television. In addition, the game apparatus outputs an operation image for use in an operation related to the image to the terminal device. The game apparatus acquires operation data representing an operation on the operation image from the terminal device. The game apparatus executes information processing related to an image displayed on the television, on the basis of the operation data.
Abstract:
In a housing body of an engine valve timing control apparatus, a vane rotor includes a vane, wherein the vane and shoes of the housing body define advance and retard chambers. The housing body is formed with a pulley adapted to winding of a belt, and formed with first bolt holes extending axially through the housing body, and formed with a sealing recess at an open axial end. A plate is fixedly inserted in the sealing recess, and formed with second bolt holes facing the first bolt holes. An annular first sealing ring is arranged between an inside periphery of the sealing recess and an outside periphery of the plate. An annular second sealing ring is arranged between the plate and an axial end surface of one of the shoes, wherein the second sealing ring extends circumferentially around one of the second bolt holes.
Abstract:
A valve timing control apparatus for an internal combustion engine, includes a housing body, a vane rotor, a first plate, and a second plate. The housing body is formed integrally with a shoe at an inside periphery of the housing body, wherein the shoe projects inwardly in a radial direction of the housing body, and wherein the housing body is formed with a sealing recess at an axial end of the housing body. The vane rotor is rotatably mounted in the housing body, wherein the vane rotor includes a vane, wherein the vane and the shoe define advance and retard chambers adapted to supply and drainage of fluid. The first plate is fixedly inserted in the sealing recess of the housing body, the first plate sealing the axial end of the housing body. The second plate seals another axial end of the housing body.
Abstract:
In a honeycomb structure 1 which is made of a ceramic and in which a plurality of honeycomb segments 12 having cell structures 5 and porous outer walls 7 on outer peripheries of the cell structures 5 are integrated by bonding these outer walls 7 to one another with a bonding material 8, each of the cell structures being provided with a plurality of cells 3 constituting fluid channels divided by porous partition walls 2, a base material constituting the honeycomb structure 1 has a thermal conductivity of 0.1 to 20 W/mK. Moreover, an outer periphery coating material constituting the outer peripheral wall of the honeycomb structure 1 has a porosity of 10 to 60%. Furthermore, the outer periphery coating material constituting the outer peripheral wall of the honeycomb structure 1 has a thermal conductivity of 0.01 to 0.5 W/mK.
Abstract:
A handling method for a natural circulation boiling water reactor having a chimney having cylindrical chimney shell disposed above a core in a reactor pressure vessel, a plurality of square tubes disposed in the chimney shell, and a grid support plate with grid holes supporting and in communication with a lower end portion of the square tubes so that adjacent square tubes are disposed at an interval which exceeds the width of one square tube between them. The method includes steps shifting predetermined ones of the square tubes to the interval between the square tubes, and performing maintenance and inspection of members around a core via the grid holes which appear at positions from which the predetermined square tubes are taken out due to the shift of the predetermined square tubes.