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    • 1. 发明申请
    • EXPANDABLE POLYMERIC MICROSPHERES
    • 可扩展的聚合物微球
    • WO0037547A3
    • 2000-11-09
    • PCT/US9929358
    • 1999-12-10
    • ZMS LLCSOANE DAVID SHOUSTON MICHAEL R
    • SOANE DAVID SHOUSTON MICHAEL R
    • B01J13/02B01J13/04C08J9/232C08J9/32
    • B01J13/02B01J13/04C08J9/232C08J9/32C08J2203/22
    • The present invention is directed to thermo-expandable microspheres and to the expanded microballoons, microcellular foam or foamed composite material that results upon heating the microspheres. The thermo-expandable microsphere of the present invention is characterized by having a polymeric wall surrounding one or more pockets or particles of blowing agent or propellant within the microsphere. The polymeric wall may have reactive functional groups on its surface to give a fusible microsphere. When the microspheres are heated, they expand to form microballoons comprising polymeric shells surrounding one or more internal gaseous voids, and when the microspheres are expanded while in contact with each other, a microcellular foam may be formed. The foam consists of a plurality of microballoons fused together, optionally aided by functional groups present on the surface of the heated microspheres that act to crosslink the material. When microspheres are mixed with a matrix, which can optionally react with functional groups on the microsphere surface, and the resulting combination is heated, the microspheres expand to give a foamed composite material in which the microballoons may be fused or chemically crosslinked to the matrix.
    • 本发明涉及热膨胀性微球和膨胀微球,微孔泡沫或泡沫复合材料,其导致加热微球体。 本发明的热膨胀性微球的特征在于,在微球内具有包围发泡剂或推进剂的一个或多个口袋或颗粒的聚合物壁。 聚合物壁在其表面上可以具有反应性官能团以得到易熔微球。 当微球被加热时,它们膨胀以形成包含围绕一个或多个内部气体空隙的聚合物壳的微球,并且当微球在彼此接触的同时膨胀时,可以形成微孔泡沫。 泡沫由多个融合在一起的微球组成,任选地由存在于用于交联材料的加热微球表面上的官能团辅助。 当微球体与可以任选地与微球表面上的官能团反应的基质混合,并且所得到的组合物被加热时,微球体膨胀以产生发泡复合材料,其中微球可以熔融或化学交联到基质上。
    • 3. 发明申请
    • MORPHOLOGY TRAPPING AND MATERIALS SUITABLE FOR USE THEREWITH
    • 适合使用的形态学和材料
    • WO0196448A3
    • 2002-03-21
    • PCT/US0119222
    • 2001-06-13
    • ZMS LLCHOUSTON MICHAEL RHINO TOSHIAKISOANE DAVID S
    • HOUSTON MICHAEL RHINO TOSHIAKISOANE DAVID S
    • C08F2/44C08F2/00C08F2/46C08F2/48C08F265/04C08F287/00C08F291/00C08J3/28
    • C08F287/00C08F265/04C08F291/00C08J3/28Y10S525/903Y10T428/31504Y10T428/31507Y10T428/31786Y10T428/31826Y10T428/31855
    • This invention is directed to a process for the rapid in-situ curing of polymerizable materials to provide macromolecular networks and articles of manufacture that are "morphology-trapped"; that is, they exhibit a fixed phase morphology and/or molecular orientation that is locked in by the curing step. The process includes the steps of mixing together a dead polymer or a prepolymer, a reactive plasticizer or a diulent, and an initiator to give a polymerizable composition; further processing the mixture in order to achieve a desired phase morphology and/or moelcular orientation of the polymeric constitutents; shaping the polymerizable composition into a desired geometry; and exposing the polymerizable composition to a source of polymerizing energy, without mixing, to give a final product with the desired phase morphology and/or moelcular orientation locked in place. The phase morphlogy and molecular orientation present just prior to cure of the polymerizable composition is subsequently trapped or locked in place by the curing step to that further changes in morphology are hindered or prevented.
    • 本发明涉及一种快速原位固化可聚合材料以提供“形态学被捕”的大分子网络和制品的方法。 也就是说,它们表现出通过固化步骤锁定的固定相形态和/或分子取向。 该方法包括将死聚合物或预聚物,反应性增塑剂或疏水剂和引发剂混合在一起以产生可聚合组合物的步骤; 进一步处理混合物以实现聚合物组分的期望的相形态和/或摩擦取向; 将可聚合组合物成型为所需的几何形状; 并将可聚合组合物暴露于聚合能源,而不混合,得到具有所需相形态和/或摩擦取向锁定在适当位置的最终产品。 在固化可聚合组合物之前存在的相态和分子取向随后通过固化步骤被捕获或锁定在适当的位置,从而妨碍或防止形态的进一步变化。