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  • Layers Durably Bonded To Surfaces | TechLink
    lubricants and other functional coatings to a substrate by burnishing for example selected soft materials including oxides such as antimony trioxide against the substrate The new method and bond coat is a major improvement over conventional bonding or coating methods The process is non vacuum at ambient temperatures requiring no binders adhesives curing or baking Lubricant performance can be enhanced by orders of magnitude compared to when the bond coat

    Original URL path: http://techlinkcenter.org/patents/8637162 (2016-02-10)
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  • Flux Pinning Of Cuprate Superconductors With Nanoparticles | TechLink
    pinning material providing a cuprate material doping the nanoparticulate pinning material with a dopant to form a doped nanoparticulate material depositing a layer of the cuprate material on a substrate and depositing a layer of the doped nanoparticulate material on the layer of cuprate material The invention also provides a high temperature superconductor HTS having a doped nanoparticulate pinning structure including a plurality of layers of a cuprate material and

    Original URL path: http://techlinkcenter.org/patents/8623788 (2016-02-10)
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  • Pyrophoric Materials And Methods Of Making Same | TechLink
    Nanotechnology An improved method for the production of pyrophoric materials which does not employ hot NaOH and produces pyrophoric materials on various types of ceramic metal nanomaterial substrates The method impregnates the substrate materials with pyrophoric iron or other materials resulting in materials that are tunable with respect to its pyrophoric output as determined by its temperature rise time sustenance etc through selective variation of particle size morphology and diluents

    Original URL path: http://techlinkcenter.org/patents/8623156 (2016-02-10)
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  • Detection Of Discontinuity Densities In Composite Materials | TechLink
    method includes transmitting terahertz electromagnetic radiation toward a surface of the material This radiation is received at an expected location after interacting with the material The power level of the received radiation is measured and deviation from the expected value is used to determine a suspended discontinuity density gradient in the material The method can be used with either reflected radiation or transmitted radiation Embodiments of the method can calculate

    Original URL path: http://techlinkcenter.org/patents/8618485 (2016-02-10)
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  • Hexafluorodimethylcarbinol Terminated Alkane- And Alkenethiols | TechLink
    Tech Managers at http techlinkcenter org about staff Patent Identifier 8618330 Categories Advanced Materials Nanotechnology A hexafluorodimethylcarbinol terminated compound method of making it and a composition of matter are disclosed The compound may have the formula CF3 2C OH L M R The substructure L may be selected from an optionally substituted propenylene group CH2CH CH and trimethylene group CH2CH2CH2 The substructure M may be selected from a substituted or unsubstituted methylene chain a substituted or unsubstituted oxyalkylene chain and a silicon containing chain or combination thereof In one embodiment M may be selected from CH2 n OCH2CH2 m and Si CH3 2O p Si CH3 2 CH2 q wherein n is at least 1 e g n is up to 10 m can be at least 1 e g m is up to 10 p can be 0 and in one embodiment is from 1 to 10 and wherein q can be 1 and in one embodiment is from 1 to 12 The substructure R represents one of a halogen SH SZ S S M L C CF3 2 OH wherein Z represents a thiol protecting group USPTO url http patft uspto gov netacgi nph Parser patentnumber 8618330 Facebook

    Original URL path: http://techlinkcenter.org/patents/8618330 (2016-02-10)
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  • Bulk Low-Cost Interface-Defined Laminated Materials And Their Method Of Fabrication | TechLink
    about this patent and related research and licensing opportunities please contact any of our Tech Managers at http techlinkcenter org about staff Patent Identifier 8617456 Categories Advanced Materials Nanotechnology This invention describes a novel type of materials named by the inventors as Interface Defined nano Laminates IDnL and a new method for fabricating these materials from ceramic metallic and other powders The laminate layer thickness in IDnL is smaller than that of ordinary laminates but greater than that of superlattices IDnL are fundamentally different from ordinary laminates in that their properties are defined by interfaces and not by the properties of the bulk materials comprising individual layers In contrast to superlattice materials IDnL can be made thermally stable due to the wide selection of interface defining materials which allows judicial use of equilibrium phase diagrams and the entropic stabilization approach discovered by the authors and in addition IDnL can be manufactured inexpensively in bulk industrial quantities and large sizes by the techniques revealed in this invention The degree of interface coherency in an IDnLs can be varied to optimize material properties USPTO url http patft uspto gov netacgi nph Parser patentnumber 8617456 Facebook Twitter Google Plus LinkedIn Main menu Home

    Original URL path: http://techlinkcenter.org/patents/8617456 (2016-02-10)
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  • Bipropellants Based On Chosen Salts | TechLink
    our Tech Managers at http techlinkcenter org about staff Patent Identifier 8617326 Categories Advanced Materials Nanotechnology Advanced bipropellant fuels with fast ignition upon mixing with storable oxidizer N2O4 nitric acid have been synthesized and demonstrated The bipropellant fuels are based upon salts containing dicyanamide or tricyanomethanide anions and employ at least two hydrazine functionalities in the cations USPTO url http patft uspto gov netacgi nph Parser patentnumber 8617326 Facebook Twitter

    Original URL path: http://techlinkcenter.org/patents/8617326 (2016-02-10)
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  • Thermal Barrier For Firearms And Firearm Provided With Such A Thermal Barrier | TechLink
    cylindrical made of a ceramic material The body 2 is shaped and configured for being placed between a respective barrel C of a firearm A and at least one structure S of the firearm A The body 2 of the thermal barrier 1 has a first portion 3 suitable for remaining facing the barrel C of the respective firearm A and a second portion 4 facing the side opposite with

    Original URL path: http://techlinkcenter.org/patents/8615916 (2016-02-10)
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