Abstract:
The present invention provides a pest control composition comprising, as active ingredients, (A) an amide compound of the formula (I), wherein R1 is an ethyl group, R2 is a hydrogen atom or an ethyl group, R3 is a methyl group, R4 is a chlorine atom, a bromine atom or a methyl group, R5 is a chlorine atom, a bromine atom or a cyano group, R6 is a chlorine atom, a bromine atom or a trifluoromethyl group and R7 is a chlorine atom; and (B) pyriproxyfen.
Abstract:
In a multilayered sintered sliding member, a porous sintered alloy layer comprising 3 to 10 wt. % of an Sn component, 10 to 30 wt. % of an Ni component, 0.5 to 4 wt. % of a P component, 30 to 50 wt. % of an Fe component, 1 to 10 wt. % of a high-speed tool steel component, 1 to 5 wt. % of a graphite component, and 20 to 55 wt. % of a copper component is integrally diffusion-bonded to a backing plate.
Abstract:
A sliding contact surface-forming material includes a reinforcing base impregnated with a resol-type phenolic resin having polytetrafluoroethylene resin dispersed therein. The reinforcing base being composed of a woven fabric formed by using, respectively as the warp and the weft, a ply yarn which is formed by paralleling at least two strands of a single twist yarn spun from fluorine-containing resin fiber and a single twist yarn spun from polyester fiber, and by twisting them in the direction opposite to the direction in which the single twist yarns were spun Additionally, a multi-layered sliding contact component having the overall shape of a flat plate or a circular cylinder includes the above-described sliding contact surface-forming material so as to configure at least the sliding-contact surface thereof.
Abstract:
To enable the reduction in working efforts by hand by performing control a drying operation by appropriately selecting dry conditions depending on the connection mode of the cooling device, and removal of moisture and the like without fail. The thermal analysis system uses a heater and a cooling device to raise and decrease the temperature inside the purge box. In the drying method for the thermal analysis system, the drying operation is performed by: previously setting dry conditions depending on the connection mode of the cooling device; starting control of an opening time dry process upon activation of the thermal analysis system; supplying a predetermined amount of dry gas into the purge box in accordance with the dry conditions corresponding to the selected connection mode of the cooling device with the cooling device kept off; and making the temperature control module control the temperature of the dry gas.
Abstract:
At a differential scanning calorimeter, a cooling mechanism for cooling a heat sink is provided at a lower part of the heat sink. A thermoconductor equipped with a second heater is provided between the heat sink and the cooling mechanism, and a heat path is formed between the heat sink and the cooling mechanism by the thermoconductor.
Abstract:
A sliding contact surface-forming material includes a reinforcing base impregnated with a resol-type phenolic resin having polytetrafluoroethylene resin dispersed therein. The reinforcing base is composed of a woven fabric formed by using, respectively as the warp and the weft, a ply yarn which is formed by paralleling at least two strands of a single twist yarn spun from fluorine-containing resin fiber and a single twist yarn spun from polyphenylene sulfide fiber, and by twisting them in the direction opposite to the direction in which the single twist yarns were spun. Also, a multi-layered sliding contact component having the overall shape of a flat plate or a circular cylinder includes the sliding contact surface-forming material so as to configure at least the sliding-contact surface thereof.
Abstract:
A semiconductor device is provided with: a first conductivity type contact region; a second conductivity type body region; a first conductivity type drift region of; a trench formed through the contact region and body region from a front surface of the semiconductor substrate, wherein a bottom of the trench is positioned in the drift region; an insulating film covering an inner surface of the trench; a gate electrode accommodated in the trench in a state covered with the insulating film; and a second conductivity type floating region formed at a position deeper than the bottom of the trench, and adjacent to the bottom of the trench. The floating region includes a first layer adjacent to the bottom of the trench and a second layer formed at a position deeper than the first layer, wherein a width of the first layer is broader than a width of the second layer.
Abstract:
A mast assembly for a forklift truck includes a plurality of guide units. At least one of the guide units includes a sliding pad member made of a plastic material and having a block-shaped body, which is hollow, is open at its base side, and has a rectangular ring-shaped cross section. The sliding pad member has a rectangular, plain, front wall provided at the side of the block-shaped body opposite to the base side thereof. The front wall has a sliding contact surface. Reinforcement ribs are formed on the inner surface of the front wall. Grooves are formed in the sliding contact surface, extending along the respective ones of the reinforcement ribs and helping avoid formation of shrinkage depressions in the sliding contact surface. The block-shaped body includes first and second pairs of opposing side walls. Tabs are formed on the first pair of opposing side walls.
Abstract:
The differential scanning calorimeter includes: a heat sink, which stores a measuring sample and a reference material; a heater, which heats the heat sink; a cooling block, which is separated away from the heat sink, and positioned below the heat sink; a thermal resistor, which is connected between the heat sink and the cooling block, and forms a heat flow path therebetween; a cooling head, which is detachably fitted to the cooling block, and is cooled by an external cooling device; and differential heat flow detectors, which output a temperature difference between the measuring sample and the reference material as a heat-flow-difference signal, in which: the cooling block forms a side wall to fit the bore of the cooling head outward from the joint of the thermal resistance body; the top surface of the cooling head is lower than the joint.
Abstract:
This invention provides a harmful organism control composition comprising as an effective ingredient the following 4-(2-chlorobenzyl)-6-(2-butynyloxy)pyrimidine (X): and a hydrazide compound represented by formula (I): wherein A1 and A2 represent, for example, an oxygen atom; R1, R2, and R3 represent, for example, a hydrogen atom, a C1-6 alkyl group optionally substituted by a halogen atom; and Q represents, for example, a methoxycarbonyl group.
Abstract translation:本发明提供一种有害生物体对照组合物,其包含以下4-(2-氯苄基)-6-(2-丁炔氧基)嘧啶(X)作为有效成分:和由式(I)表示的酰肼化合物:其中A1和A2 代表例如氧原子; R 1,R 2和R 3表示例如氢原子,任选被卤素原子取代的C 1-6烷基; Q表示例如甲氧基羰基。