Abstract:
This invention involves in metal solidification and continuous casting field, especially a chamfered narrow side copper plate for mould with funnel-shaped curved surface. The working face of the narrow side copper plate (1) contacting molten steel comprise a middle area (2) and two chamfered areas (3, 4) which are arranged at two sides, and said working face has a funnel-shaped curved surface which is big at top and small at bottom. In present invention, the chamfered narrow side copper plate for mould with funnel-shaped curved surface can ensure the uniformity of the cooling effect of the chamfered surface and enhance the service life of the narrow side copper plate.
Abstract:
The present invention provides a computer processing method and a system thereof for searching. The computer processing method includes: receiving a first keyword; performing search using the first keyword to obtain a first search result; receiving user evaluation of the first search result; in response to the evaluation being unsatisfactory, searching for associated keywords from a keyword data source based on the first keyword; recommending associated keywords to the user according to matching degrees of the associated keywords and the first keyword; and in response to that the user selects an associated keyword from the recommended associated keywords, performing search based on the associated keyword selected by the user. The related specific implementation of the present application will help a user to find an input keyword more effectively during a search so as to enable him/her get more satisfactory search result.
Abstract:
A fiber optic enclosure includes a housing and a cable spool assembly. The housing includes a main body and a cover mounted to the main body. The cover and the main body cooperatively define an interior region. The cable spool assembly is connected to an exterior of the housing. The cable spool assembly includes a drum portion and a strain relief post.
Abstract:
The present invention relates a one-direction ratchet wrench, which has a driving head with a first cavity and a second cavity. There are walls located on the top and the bottom portions of the second cavity, and a pin hole is extended from the second cavity to the walls. A ratchet wheel is rotatably mounted in the first cavity, and there is a plurality of ratchet teeth in the outer periphery of the ratchet wheel and a receptacle formed in the middle to receive and drive workpieces. A pawl is located in the second cavity and one of its sides has a plurality of teeth engaged with the ratchet teeth. A pin is inserted in a pin hole for an elastic assembly to hitch on. The elastic assembly has a first elastic element and a second elastic element. One end of the second elastic element links to the pawl and the other end links to the first elastic element. The first elastic element hitches on the pin and one of its ends sticks against the inner wall of the second cavity. Thus, the present invention is able to effectively control workpieces being driven in one-direction.
Abstract:
In an embodiment, a sensor arrangement may be provided. The sensor arrangement may include a sensor including a first spin valve. The first spin valve may include a first free layer structure; a first pinning structure disposed over the first free layer structure; and a first anti-ferromagnetic layer disposed over the first pinning structure. The sensor may further include a second spin valve. The second spin valve may include a second free layer structure; a second pinning structure disposed over the second free layer structure; and a second anti-ferromagnetic layer disposed over the second pinning structure. The sensor may also include a separator structure positioned between the first spin valve and the second spin valve such that the separator structure may be in contact with the first free layer structure and the second free layer structure. The first pinning structure may include an odd number of first ferromagnetic layers and the second pinning structure may include an even number of second ferromagnetic layers so as to enable the sensor to provide a differential signal when a current flows through the sensor.
Abstract:
An electronic apparatus (10) includes a main body (30), a lid (20) pivotably connected with a side of the main body, a magnetic detecting unit (40) and a magnetic shield member (28). The detecting unit includes a magnetic body (42) mounted on one of the main body or the lid and a magnetic detector (44) mounted on the other one of the main body or the lid, respectively. The magnetic body has a facing side (421) to face the magnetic detector. The magnetic detector detects a position of the lid according to a magnetic field intensity of the magnetic body. The magnetic shield member is disposed at a distance from the facing side and adjacent to a second side (422) of the magnetic body, to prevent the magnetic field from extending in the direction of the second side of the magnetic body.
Abstract:
An electronic device includes a body, a cover rotatably mounted to the body, and at least one limiting mechanism rotatably mounted to the body. The at least one limiting mechanism includes a connecting member mounted to the cover and a limiting member arranged on the connecting member. The limiting member resists against the body to limit the movement of the cover in a direction parallel to the axis.
Abstract:
One embodiment of the present invention provides a method for fabricating light-emitting diodes (LEDs). The method includes fabricating an InGaAlN-based multilayer LED structure on a conductive substrate. The method further includes etching grooves of a predetermined pattern through the active region of the multilayer LED structure. The grooves separate a light-emitting region from non-light-emitting regions. In addition, the method includes depositing electrode material on the light-emitting and non-light-emitting regions, thereby creating an electrode. Furthermore, the method includes depositing a passivation layer covering the light-emitting and non-light-emitting regions. Moreover, the method includes removing the passivation layer on the electrode to allow the non-light-emitting regions which are covered with the electrode material and the passivation layer to be higher than the light-emitting region and the electrode, thereby protecting the light-emitting region from contact with test equipment.
Abstract:
A three-dimensional video system includes a panel driving module, a signal transmitter and a shutter glasses. The panel driving module includes a timing controller, and a control unit, for generating a control signal. The signal transmitter is utilized for transmitting a radio frequency control signal according to the control signal. The shutter glasses includes a receiver, a calibrating and selecting unit, for alternating the receiver between a first operating status and a second operating status, and generating a calibration signal according to the received radio frequency control signal, and an LCD glass, for operating according to the calibration signal.
Abstract:
The present disclosure relates to a method for making a conjugated polymer. In the method, polyacrylonitrile, a solvent, and a catalyst are provided. The polyacrylonitrile is dissolved in the solvent to form a polyacrylonitrile solution. The catalyst is uniformly dispersed into the polyacrylonitrile solution. The polyacrylonitrile solution with the catalyst is heated to induce a cyclizing reaction of the polyacrylonitrile, thereby forming a conjugated polymer solution with the conjugated polymer dissolved therein.