Abstract:
A spherical annular seal member 46 includes a spherical annular base member 42 defined by a cylindrical inner surface 38, a partially convex spherical surface 39, and large- and small-diameter side annular end faces 40 and 41 of the partially convex spherical surface 39; a plurality of partially convex spherical intermediate layers 43 formed integrally on the partially convex spherical surface 39 of the spherical annular base member 42 and laminated in a radial direction; and an outer layer 45 formed integrally on a partially convex spherical surface 44 of the outermost partially convex spherical intermediate layer 43 of these partially convex spherical intermediate layers 43.
Abstract:
A booster circuit is configured, such that: in response to a reading request for reading data from a flash memory, when a voltage of an output terminal detected by a voltage detection circuit is not higher than a voltage, an oscillator outputs a control clock signal of predetermined on time and off time to a transistor of a boost converter to perform switching control of the transistor; and when the voltage detection circuit detects that the voltage of the output terminal reaches a voltage, an oscillator outputs a control clock signal of an on time and an off time input from a selection circuit to a transistor of a boost converter to perform switching control of the transistor.
Abstract:
A spherical annular seal member 39 includes a spherical annular base member 37 defined by a cylindrical inner surface 33, a partially convex spherical surface 34, and an annular end faces 35 and 36; and an outer layer 38 formed integrally on the partially convex spherical surface 34 of the spherical annular base member 37. The spherical annular base member 37 includes a reinforcing member 5 made from a metal wire net and a heat-resistant material 6 filling meshes of the metal wire net of the reinforcing member 5 and formed integrally with the reinforcing member 5 in mixed form. The outer layer 38 includes a base layer 46 and a sliding layer 40 constituted of a lubricating composition and adherently formed integrally on the base layer 46 at an outer layer intermediate surface 42, the base layer 46 including a reinforcing member 15 made from a metal wire net and compressed and a heat-resistant material 14 filling meshes of the metal wire net of the reinforcing member 15 and closely press bonded to the reinforcing member 15, the base layer 46 being formed integrally with the partially convex spherical surface 34.
Abstract:
An airbag device configured to be disposed in an instrument panel includes an inflator configured to generate gas, and an airbag that includes a gas inlet through which the gas from the inflator is introduced and is inflated and deployed in a bag shape toward a vehicle room side by the gas introduced from the inflator through the gas inlet. The airbag has, in an upper portion thereof, an extra length in a front and rear direction of a vehicle and is folded in a housed state after experiencing a folded state in an approximately planar fashion such that the extra length portion is tucked into the airbag toward the rear of the vehicle.
Abstract:
Disclosed are a heat-sensitive recording material comprising a support, a heat-sensitive recording layer comprising a leuco dye and a developer, and a protective layer comprising a resin in the form of a film, the protective layer being obtained by coating the heat-sensitive recording layer with a protective layer aqueous coating composition comprising at least resin particles having a core/shell structure and then drying the coating, wherein the resin in the form of a film formed of said resin particles having a core/shell structure is present in an amount of not less than 80 mass % of the total solids of the protective layer, and the protective layer having a gloss (based on JIS P 8142) of not less than 80%, a heat-sensitive recording material comprising an interlayer between the heat-sensitive recording layer and the support of the heat-sensitive recording material, as well as processes for preparing these heat-sensitive recording materials.
Abstract translation:公开了一种热敏记录材料,其包括载体,包含无色染料和显影剂的热敏记录层,以及包含薄膜形式的树脂的保护层,所述保护层通过涂覆热敏记录材料, 具有至少包含具有核/壳结构的树脂颗粒,然后干燥涂层的保护层水性涂料组合物的敏感记录层,其中由具有核/壳结构的所述树脂颗粒形成的膜形式的树脂存在于 保护层总固体量不小于80质量%的量,保护层具有不低于80%的光泽度(基于JIS P 8142),不高于80%的热敏记录材料包括: 热敏记录层和热敏记录材料的支撑体,以及制备这些热敏记录材料的方法。
Abstract:
A continuous mixer for liquids comprises a casing having a conical interior surface and a discharge outlet at the apex of the cone formed by the conical interior surface, a rotor that rotates at its center on the axis of the cone and has a conical exterior surface whose vertical angle is approximately equal to the vertical angle of the conical interior surface, a pressure-transport device that has one or more feed lines which communicate with a gap between the interior surface of the casing and the exterior surface of the rotor a position removed from the discharge outlet and that delivers one or more liquid inputs under pressure through the feed lines, and a gap-adjustment device capable of axially adjusting the rotor within the casing to adjust the gap. The internal pressure and temperature or the mixer can be controlled or adjusted while the rotor is rotating by changing the gap width along the axial direction.
Abstract:
The objectives of the present invention are achieved by preparing a foamable composition comprising a viscous liquid and a gas homogeneously dispersed in the liquid. The compositions are prepared by blending a pressurized gas with the viscous liquid in a mixing chamber. In accordance with the present method the flow rate of the pressurized gas into the mixing chamber is controlled as a function of the flow rate of at least one high viscosity liquid into said chamber. The apparatus includes a means for controlling the flow rate of the pressurized gas as a function of either the difference in the feed pressures of said gas and said liquid or a predetermined ratio of the volumes of liquid and gas present in said mixing chamber.
Abstract:
The interposer 30 is disposed on an upper surface of the stacked structure 24 formed by stacking a plurality of a DRAM chip 20 and a plurality of a flash memory chip 22. Thus down-size of an entire device is accomplished. A boost converter having an inductor is used as a voltage boost circuit 40. Thus down-size of the entire device is accomplished.
Abstract:
The channel number detecting circuit 50 detects the operation channel number Nch based on the the output terminal voltage Vpgm after falling down when the output terminal voltage Vpgm falls down during the voltage boosting control, and the switching control circuit 70 generates the control clock signal CLK having the on-time and the off-time adjusted based on the operation channel number Nch and performs the voltage boosting control using generating control clock signal CLK. The voltage boosting control is properly performed based on the operation channel number Nch when the operation channel number Nch increase during performing the voltage boosting control. Thus boosting the power supply voltage Vdd up to the voltage V2 is accomplished.
Abstract:
Novel enzymes that stereoselectively reduce imine derivatives were isolated and purified, and polynucleotides encoding the enzymes were cloned. Optically active amine derivatives were produced by acting on imine derivatives with a culture of microorganisms having the ability to stereoselectively reduce the compounds, microbial cells or processed products thereof, and/or imine reductases thereof, followed by collecting the generated optically active amine derivatives. The present invention enables, for example, production of an optically active compound represented by formula (IV): (wherein R group represents an alkyl group having one to three carbon atoms; and n represents an integer of 1 to 4).