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    • 1. 发明申请
    • HEAT STABLE FORMED CERAMIC, APPARATUS AND METHOD OF USING THE SAME
    • WO2010059322A3
    • 2010-05-27
    • PCT/US2009/061055
    • 2009-10-16
    • EXXONMOBIL CHEMICAL PATENTS INC.CHUN, ChangMinHERSHKOWITZ, Frank
    • CHUN, ChangMinHERSHKOWITZ, Frank
    • C04B38/00C04B35/48
    • In one aspect, the invention includes a heat stable, formed ceramic component that includes a multimodal grain distribution including (i) at least 50 wt% of coarse grains including stabilized zirconia, the coarse grains comprising a D50 grain size in the range of from 5 to 800 μm, based upon the total weight of the component; and (ii) at least 1 wt% of fine grains comprising a D50 average grain size not greater than one-fourth the D50 grain size of the coarse grain, dispersed within the coarse grains, based upon the total weight of the component; wherein after sintering, the component has porosity at ambient temperature in the range of from 5 to 45 vol.%, based on the formed volume of the component. In other embodiments, the invention includes a process for the manufacture of a hydrocarbon pyrolysis product from a hydrocarbon feed using a regenerative pyrolysis reactor system, comprising the steps of: (a) heating a pyrolysis reactor comprising a bi-modal stabilized zirconia ceramic component to a temperature of at least 15000C to create a heated reactive region, wherein after exposing the component to a temperature of at least 15000C for two hours the component has a bulk porosity measured at ambient temperature in the range of from 5 to 45 vol.%, based on the bulk volume of the component; (b) feeding a hydrocarbon feed to the heated pyrolysis reactor to pyrolyze the hydrocarbon feed and create a pyrolyzed hydrocarbon feed; and (c) quenching the pyrolyzed hydrocarbon feed to produce the hydrocarbon pyrolysis product.
    • 4. 发明申请
    • ELASTOMER NANOCOMPOSITES WITH INCORPORATED PROCESS OILS
    • 具有加工过程油的弹性体纳米复合材料
    • WO2011056351A1
    • 2011-05-12
    • PCT/US2010/052016
    • 2010-10-08
    • EXXONMOBIL CHEMICAL PATENTS INC.WENG, WeiqingSHARMA, Bharat, B.RODGERS, Michael, B.
    • WENG, WeiqingSHARMA, Bharat, B.RODGERS, Michael, B.
    • C08K3/34
    • C08J3/215B60C1/0008C08J2323/28C08K2201/011
    • This disclosure is directed to nanocomposite compositions that are suitable for air bladders, innertubes, innerliners and other desirable air-retention articles. In particular, this disclosure is directed to compositions that include the nanocomposite, the nanocomposite made in such that its air-retention properties are much improved over what is known, while maintaining desirable elasticity and processability. In a particular aspect, an air-retention article such as an innerliner if formed by first contacting a desirable elastomer, especially a functionalized poly(isobutylene-co-/?-methylstyrene) elastomer, with one or more layered fillers such as a clay described further below, and also contacting one or more processing aids, and one or more solvents to form an nanocomposite composition. The nanocomposite composition is then precipitated to form the solid nanocomposite composition which can be dried and further blended with other suitable ingredients such as, for example, curative agents, thus forming an innerliner suitable for a tire or other article.
    • 本公开涉及适合于气囊,内管,内衬和其它所需的保气制品的纳米复合组合物。 特别地,本公开涉及包括纳米复合材料的纳米复合材料,其制成的纳米复合材料在保持理想的弹性和可加工性的同时保持其性能比已知的大大改进。 在一个特定的方面,一种保气制品,例如内衬,如果通过首先接触期望的弹性体,特别是官能化的聚(异丁烯 - 共 - /α-甲基苯乙烯)弹性体与一种或多种层状填料如粘土形成,则形成 并且还接触一种或多种加工助剂和一种或多种溶剂以形成纳米复合组合物。 然后将纳米复合材料组合物沉淀以形成固体纳米复合材料组合物,其可以被干燥并进一步与其它合适的成分例如固化剂共混,从而形成适合于轮胎或其它制品的内衬层。