Abstract:
An optical element in which a hard coat layer is formed on an organic glass base material surface via a primer layer. For a primer composition forming a primer layer, whole or the main body of the primer layer formation polymer is made as being ester based TPE. Moreover, a hard coat composition forming a hard coat layer is consisted of a hydrolysate of alkoxysilane in which trialkoxysilane containing monoexpoxy organic group is the main body as a matrix formation ingredient, and the titanium based metal oxide complex particle as being an optical interference control agent, the foregoing titanium based metal oxide complex particle is consisted of T1O2 as the main body, SiO2 as a major sub-ingredient, and further, ZrO2 and K2O as a trace sub-ingredient. An optical element of the present invention is capable of suppressing optical interference even if it is a high refractive index base material and the stability of coated film portion is also excellent as well as has a variety of properties comparable to the conventional optical parts.
Abstract:
A folding cup holder with a base plate including one or more through holes; a holder arm for holding a cup, the holder arm being pivotally supported to the base plate; and a tray including one or more latch arms respectively inserted to the through holes, and axially supported to the base plate. The latch arms and the through holes are engaged with each other to hold the tray in a position for holding a cup and engagement thereof is cancelled in case that excessive force is applied to the tray.
Abstract:
An antenna device comprising a conductive earth substrate, a receiving element located in the proximity of said conductive earth substrate and having a receiving terminal, and a transmitting element located in the proximity of said receiving element and having a transmitting terminal, characterized in that an end of said receiving element and an end of said transmitting element are connected to said conductive earth substrate for grounding through a common portion and the frequency band of said receiving element is different from that of said transmitting element.
Abstract:
A bag-like airbag is folded into a substantially T-shape having a first developing portion which is continuous with an opening from which gas flows in and second developing portions extending fore-and-aft direction from an upper end of the first developing portion. Each of the second developing portions is folded into a bellows toward a prescribed point, thereby forming an aggregate. The aggregate is rotated, the first developing portion is wound around the aggregate, and the folded airbag is accommodated in an airbag accommodation portion of a retainer.
Abstract:
In a female terminal (10), projections (17) of a contact piece (12), received within a body (11), are engaged respectively in windows (16) formed respectively in opposed walls (15) of the body (11). A support portion (31), formed on the body (11), is resiliently held against a concave surface (18A) of the contact piece (12). The support portion (31) is held against the contact piece (12) through an engagement portion (40) which makes a concave-convex engagement in a direction of a thickness of the contact piece (12).
Abstract:
A plurality of rows (stages) of wire receiving portions (13, 14) are formed in a connector housing (1), and are arranged in a stepped manner in a direction of a length of the wires, and a plurality of rows (stages) of wire-pressing projections (8, 9) are formed on the spacer (7), and are offset from each other in the direction of the length of the wires, and each row of wires are pressed against a corresponding wall portion (11, 12), extending from the corresponding row of wire receiving portions, by the corresponding row of projections, respectively. The first row of wire receiving portions (14) are provided at an inlet side of a spacer receiving portion (3), and the second row of wire receiving portions (13) are provided at an inner side of the spacer receiving portion, and are longer than the first row of wire receiving portions, and the projections (9) are opposed to a step wall portion (12a) formed between the first and second rows of wire receiving portions, and the projections (8) are opposed to the wall portion (11). Formed on a base wall portion (27) of the spacer (7), and terminal receiving portions (31) are formed in the spacer, and are offset from the projections (9) in the direction of the length of the wires. The projections (8) are formed on the outer wall portion (29) of the terminal receiving portions. Terminal-retaining projected portions (35-38) are formed on the base wall portion (27) and the outer wall portion (29). Each of the projections (8, 9) has slanting surfaces (8a-9b) or an arcuate surface for preventing damage to the wire. A terminal support portion (18) is provided within the spacer receiving portion in the connector housing.
Abstract:
A fluid pressure generating system for a vehicle has a reservoir that stores brake fluid, a fluid pump that pressurizes the brake fluid, an accumulator that accumulates brake fluid pressurized by the fluid pump, and a pressure switch that detects a pressure value in the accumulator. A warning device is adapted to be operated in response to the pressure switch, and a mechanism is provided for detecting a stop of the vehicle. A warning suspending device controls the warning device by using a signal from the pressure switch and a signal from the device for detecting a stop of said vehicle.
Abstract:
A rubbing buff is wrapped around a roller so that an axial direction of short fibers on a rubbing cloth crosses diagonally with a roller rolling direction. The roller is placed so that a rotational shaft crosses diagonally with a moving direction of a substrate. Then orientation films formed on an upper and a lower substrates are rubbed by the roller in a first and second directions whereby an orientation direction is determined. As a result, quality display can be realized on an LCD.
Abstract:
This invention relates to a liquid crystal display apparatus formed by sealing a liquid crystal between two substrates having electrodes and an alignment film with a seal material, the production process comprising the steps of attaching two substrates in a vacuum, compressing under atmospheric pressure to provide a uniform cell gap, a temporary hardening process of the seal material by ultraviolet ray irradiation and a main hardening process of the seal material by heating, wherein a radically polymerizable curing resin is used in the liquid crystal seal material. The method provides a liquid crystal display panel having a uniform cell gap, without dislocation of the alighnment between substrates, or discharge of uncured component of a seal material to the liquid crystal, capable of having a seal material firmly attached to the substrates even at panel corner portions, and having an excellent straightness and moisture resistance of the seal material.
Abstract:
There is provided an aqueous resin composition which does not cause coagulation, can be cured at low temperature, and, by this curing, forms a coating superior in mechanical strength, water resistance, solvent resistance and adhesion to various substrates. The aqueous resin composition of this invention comprises an oxazoline group-containing polymer (A), a carboxyl group-containing polymer (B), and an acidic compound-amine salt catalyst (C). The curing is carried out by a reaction between the oxazoline group-containing polymer (A) and the carboxyl group-containing polymer (B) in the presence of the acidic compound-amine salt catalyst (C).