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206results about How to "Reduce twist" patented technology

Route calculation method for a vehicle navigation system

Traffic information, including flow information and incident information, obtained through a traffic management system for providing and facilitating the exchange of traffic information between a remote location and a vehicle may be used in route calculation by a navigation device. The navigation device may recalculate a route based on anticipated user error. Alternatively, the navigation device may recalculate a route using received traffic information triggered by the receipt of a traffic information update, or triggered by the passage of an amount of time. The broadcast rate of traffic information updates may vary temporally (providing more frequent updates during peak commute times) or geographically (providing more frequent updates to metropolitan areas with increased traffic information needs). If route calculation is triggered by an elapsed amount of time, the amount of time may vary to be shorter during peak commute times. Additional route calculation techniques allow the incorporation of historical traffic information or the use of the most recent traffic information if incomplete traffic information is available. Still further route calculation techniques may calculate a best route by avoiding zigzagging or evaluating an assigned cost of a potential route.
Owner:HONDA MOTOR CO LTD

Control method for downhole steering tool

A method for determining a rate of change of longitudinal direction of a subterranean borehole is provided. The method includes positioning a downhole tool in a borehole, the tool including first and second surveying devices disposed thereon. The method further includes causing the surveying devices to measure a longitudinal direction of the borehole at first and second longitudinal positions and processing the longitudinal directions of the borehole at the first and second positions to determine the rate of change of longitudinal direction of the borehole between the first and second positions. The method may further include processing the measured rate of change of longitudinal direction of the borehole and a predetermined rate of change of longitudinal direction to control the direction of drilling of the subterranean borehole. Exemplary embodiments of this invention tend to minimize the need for communication between a drilling operator and the bottom hole assembly, thereby advantageously preserving downhole communication bandwidth.
Owner:SCHLUMBERGER TECH CORP

Remote sensing image fusion method based on sparse representation

The invention discloses a remote sensing image fusion method based on sparse representation. The method comprises the following steps of: firstly, establishing a linear regression model between a multispectral image and a brightness component thereof; secondly, performing sparse representation on a panchromatic image and the multispectral image by using high and low resolution dictionaries respectively, and acquiring sparse representation coefficients of the brightness component of the multispectral image according to the linear regression model; thirdly, extracting detail components according to the sparse representation coefficients of the panchromatic image and the brightness component, and implanting the detail components to the sparse representation coefficients of each band of the multispectral image under a general component replacement fusion framework; and finally, performing image restoration to obtain a multispectral image with high spatial resolution. According to the method, the sparse representation technology is introduced into the field of remote sensing image fusion, so that the defect that high spatial resolution and spectral information cannot be simultaneously preserved in the prior art is overcome; and the fusion result of the method is superior to that of the conventional remote sensing image fusion method on the aspects of spectral preservation and spatial resolution improvement.
Owner:SHANGHAI JIAO TONG UNIV

Nano electrostatic spinning and staple fiber ring spinning integrated yarn forming method

The invention relates to a nano electrostatic spinning and staple fiber ring spinning integrated yarn forming method, and belongs to the technical field of textile processing. The method comprises the following steps: arranging an electrostatic spinning apparatus between each yarn guide hook of a ring spinning frame and a front roller jaw formed by a front roller corresponding to the yarn guide hook and a front rubber roll, enabling a receiving surface of the electrostatic spinning apparatus to stay on a same plane with a public tangential surface of a front leather roll and the front roller at the front roller jaw, forming an electrostatic spinning area between an electrostatic spray head and a receiving surface of a receiving plate, and combining and twisting a nano fiber net spun out from the electrostatic spray head and staple fiber strands passing by the receiving surface of the receiving plate. According to the method, the electrostatic spinning and a conventional ring spinning are reasonably integrated, so that the high-speed successful production of nano fiber yarns is guaranteed, the naon fiber net effectively captures exposed fibers and improves the winding tightness, and the yarn forming structure and performance quality of the nano fiber wrapped blended yarns can be greatly improved. Equipment involved in the method is universal, and the operation and the use are convenient.
Owner:WUHAN TEXTILE UNIV

Non-aqueous electrolyte battery and battery pack

The invention provides a non-aqueous electrolyte battery which reduces the twisting of negative electrode or the peeling of the negative electrode layer from the current collector caused by volume changes on the occasion of charge / discharge reactions and enhancs the charge / discharge cycle characteristics. The non-aqueous electrolyte battery comprises a negative electrode comprising a current collector, and a negative electrode layer formed on one or both surfaces of the current collector, a positive electrode, and a separator interposed between the negative electrode and the positive electrode. The negative electrode layer comprises a plurality of layers laminated each other and containing a different active material each other, the layers comprising a first layer which is contacted with the current collector and contains spinel-type lithium titanate as an active material, and a second layer which is disposed to face the separator and contains Ramsdellite-type lithium titanate or anatase-type titanium oxide as an active material.
Owner:KK TOSHIBA

Separators for enhanced flooded batteries, batteries, and related methods

ActiveUS20170294636A1Reduced internal electrical resistanceIncreased cold cranking ampSilicaCell seperators/membranes/diaphragms/spacersFriabilityUltrahigh molecular weight polyethylene
A battery separator has performance enhancing additives or coatings, fillers with increased friability, increased ionic diffusion, decreased tortuosity, increased wettability, reduced oil content, reduced thickness, decreased electrical resistance, and / or increased porosity. The separator in a battery reduces the water loss, lowers acid stratification, lowers the voltage drop, and / or increases the CCA. The separators include or exhibit performance enhancing additives or coatings, increased porosity, increased void volume, amorphous silica, higher oil absorption silica, higher silanol group silica, reduced electrical resistance, a shish-kebab structure or morphology, a polyolefin microporous membrane containing particle-like filler in an amount of 40% or more by weight of the membrane and ultrahigh molecular weight polyethylene having shish-kebab formations and the average repetition periodicity of the kebab formation from 1 nm to 150 nm, decreased sheet thickness, decreased tortuosity, separators especially well-suited for enhanced flooded batteries.
Owner:DARAMIC LLC

Handheld device with a user interface

A handheld device has a first body part with a first user interface element and a second body part with a second user interface element, and a link mechanism configured to interconnect the first body part and the second body part movably by a user between a first configuration and a second configuration. The first body part and the second body part being stacked in a first order in the first configuration and in a second order opposite to the first order in the second configuration. Each body part has a user interface on its upper surface so that either one can be exposed to a user by changing between the first and second configurations.
Owner:RPX CORP

Method for producing noil yarn

To spin a yarn (17) of staple fibers, a spinning centrifuge (3) is used with a two-stage spinning action. Shortly before the end of the first stage, a prepared yarn end at the yarn wound on a cross wound bobbin (15) is laid in front of the final pair of rollers (10) at the drawing unit (9), and is spliced with the partially-twisted yarn (11) from the first stage. The additionally fed sliver (6) is cut, and the yarn path is changed. In the second stage, the partially-spun yarn cake (12) in the spinning centrifuge is taken off with additional twisting, and wound into a cross wound bobbin. The two-stage spinning process, for a yarn of staple fibers, takes the yarn end from the bobbin into a preparation station (18) before it is spliced with the partially-twisted yarn, where the end of the yarn is untwisted at least partially and thinned out. At the end of the second spinning stage, the yarn is taken off at a higher speed with a lower twist. The draft is temporarily raised at the drawing unit during the splicing phase at the first spinning stage, and at the end of the first spinning stage. The working direction of the final pair of drawing rollers is reversed while the partially-spun yarn is drawn off the spinning cake in the spinning centrifuge. A pressure roller at the final pair of drawing rollers is swung into a take-off setting, to take the partially-spun yarn from the cake in the spinning centrifuge.
Owner:W SCHLAFHORST & CO
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