Abstract:
This intermediate grasping tool of a charging cable is mounted on a charging cable that extends from a charging stand, is provided with a cylindrical part which is hung on a hook provided on the charging stand and which is formed such that the charging cable passes through said cylindrical part, and is also provided with a gripping part which extends from the cylindrical part and is grasped. By means of such a configuration, charging operations can be performed while grasping the intermediate grasping tool of the charging cable with the hand that is not grasping the charging connector. In this way, the operability during charging can be improved.
Abstract:
A charging port cover including a cover body closing an open part formed between an opening-closing body and a vehicle body in a state where the opening-closing body is opened when a charging gun is attached to a charging inlet and charging for a vehicle-mounted battery is performed, the opening-closing body capable of opening and closing an opening portion which is provided in the vehicle body and includes the charging inlet. The cover body includes a cover-side engaging member and a cover-side engaged member which engage respectively with an engaged member and an engaging member configured to engage with the engaged member, the engaged member and the engaging member being configured to engage and lock the closed opening-closing body with the vehicle body. The cover-side engaging member and the cover-side engaged member are integrated with each other by a joining member.
Abstract:
A radiation detection apparatus comprising semiconductor substrates each having a first surface on which a photoelectric conversion portion is formed and a second surface opposite to the first surface; a scintillator layer, placed over the first surfaces of the semiconductor substrates, for converting radiation into light; and an elastic member, placed between a base and the second surfaces, for supporting the second surfaces of the semiconductor substrates such that the first surfaces of the semiconductor substrates are flush with each other is provided. In measurement of the elastic member as a single body, an amount of stretch of a cubic specimen in a direction parallel to the first surface when being compressed in a direction perpendicular to the first surface is smaller than an amount of stretch of the specimen in the direction perpendicular to the first surface when being compressed in the direction parallel to the first surface.
Abstract:
Disclosed is a shift knob (31) of a driving mode switching device allowing switching of multiple driving modes by rotation of a lever member (523) having a holding unit (31a) on an upper end thereof. In a region extending from a first position in a direction of an axis of the lever member (523) to a bottom surface (315) of the holding unit (31a) located downward of the first position, a length of the holding unit (31a) in a radial direction thereof is equal to or longer than a length thereof in the radial direction at the first position.
Abstract:
To provide a crimped terminal wire for automobile having a stable anticorrosion property in automobile environment. The wire includes an aluminum electric wire including an aluminum conductor wire coated with insulation, a copper connecting terminal onto an end of the aluminum electric wire, the terminal including a crimped member and an electrical contact portion, a crimped portion, and a resin-coated portion on the crimped portion, wherein an entire periphery of the crimped portion is coated with the resin-coated portion, and wherein the resin-coated portion is made from a material mainly made from a thermoplastic polyamide resin and having a tensile lap-shear strength of lapped aluminums of 6 N/mm2 or more in accordance with the JIS K6850, an elongation of 100% or more in accordance with the ASTM D-1708, and a water absorption of 1.0% or less in accordance with the HS K7209.
Abstract:
A charging port cover including a cover body closing an open part formed between an opening-closing body and a vehicle body in a state where the opening-closing body is opened when a charging gun is attached to a charging inlet and charging for a vehicle-mounted battery is performed, the opening-closing body capable of opening and closing an opening portion which is provided in the vehicle body and includes the charging inlet. The cover body includes a cover-side engaging member and a cover-side engaged member which engage respectively with an engaged member and an engaging member configured to engage with the engaged member, the engaged member and the engaging member being configured to engage and lock the closed opening-closing body with the vehicle body. The cover-side engaging member and the cover-side engaged member are integrated with each other by a joining member.
Abstract:
A radiation detection panel including a photoelectric conversion element that detects fluorescence by a phosphor layer, the radiation detection panel comprising: a base material for supporting the phosphor layer, including the photoelectric conversion element; and a protective film for covering the phosphor layer, wherein the phosphor layer is formed on a surface and at least one lateral face of the base material, and an angle between the surface and the at least one lateral face is less than 90 degrees.
Abstract:
Provided is an anticorrosive that has an excellent coating property and excellent anticorrosive capability compared with a conventional anticorrosive. The anticorrosive mainly contains a thermoplastic polyamide resin, and has a tensile lap-shear strength of lapped aluminums of 6 N/mm2 or more, which is measured in accordance with the JIS K6850, an elongation of 100% or more, which is measured in accordance with the ASTM D-1708, and a water absorption of 1.0% or less, which is measured in accordance with the JIS K7209. The anticorrosive is capable of being applied to an electrically connected portion between a wire conductor 18 of a coated electric wire 10 with a terminal and a terminal member 14.
Abstract:
A radiation detection apparatus to detect radiation. A substrate (1) has a conversion element on a first surface. The conversion element is configured to convert radiation into electric charges. A readout circuit is connected to a first region. The first region includes a first edge of the first surface. A driving circuit is connected to a second region other than the first region. The second region includes a second edge of the first surface. A light source (4) is arranged on a second surface side which faces the first surface. The light source (4) is arranged so as to face any regions of the second surface side except the first region.
Abstract:
A radiation detecting apparatus includes: a sensor panel that has a substrate, and has a plurality of pixels each of which has a photoelectric conversion element for converting light into an electric signal, arranged on the substrate; and a scintillator layer arranged on a reverse side of the pixels with respect to the substrate, wherein the scintillator layer contains an activator added in a main ingredient, and has a higher concentration of the activator in a peripheral area than in a center area, in a surface direction of the scintillator layer.