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    • 12. 发明授权
    • Hydrophobic proppant and preparation method thereof
    • 疏水性支撑剂及其制备方法
    • US09434874B2
    • 2016-09-06
    • US13877243
    • 2011-09-14
    • Shengyi QinBaoling Hu
    • Shengyi QinBaoling Hu
    • C09K8/80C09K8/62
    • C09K8/805C09K8/62
    • The invention discloses a hydrophobic proppant and a preparation method thereof. The aggregate particles of the hydrophobic proppant are coated with a coating resin which comprises a hydrophobic resin and nano-particles which are uniformly distributed in the coating resin and constitute 5-60% of the coating resin by weight. The contact angle labeled as θ between water and the hydrophobic proppant in which nano-particles are added is in the range of 120°≦θ≦180°. The proppant of the present invention is prepared by adding the nano-particles in the existing resin in which low-surface-energy substances with hydrophobic groups are added, and a rough surface with a micro-nano structure is constructed on the outer surface of the prepared resin film, so that the contact angle θ at the solid-liquid contact surface on the outer surface of the coating resin of the proppant is more than 120°.
    • 本发明公开了一种疏水性支撑剂及其制备方法。 疏水性支撑剂的聚集体颗粒用涂覆树脂涂覆,该涂料树脂包含均匀分布在涂料树脂中的疏水性树脂和纳米颗粒,占重量的5-60%的涂料树脂。 水与添加有纳米粒子的疏水性支撑剂之间的标记为θ的接触角在120°≤θ≤180°的范围内。 本发明的支撑剂是通过将纳米颗粒添加到其中添加具有疏水基团的低表面能物质的现有树脂中制备的,并且在其外表面上构造具有微纳米结构的粗糙表面 使得支撑剂的涂层树脂的外表面上的固液接触面的接触角θ大于120°。
    • 13. 发明申请
    • WALL BLOCK, CORNER, AND WALL BODY
    • 墙壁,角落和墙体
    • US20130340372A1
    • 2013-12-26
    • US13989812
    • 2011-10-31
    • Shengyi Qin
    • Shengyi Qin
    • E04B2/16
    • E04B2/16E04B2/42E04B2/44E04B2/54E04B2002/0215E04C1/395
    • The present invention provides a wall block. The wall block (1) comprises a first wall (11), a second wall (12), a third wall (13) and a rib (14), wherein the first wall (11) is in parallel with the second wall (12), the third wall (13) is securely connected between the two walls, at the two respective ends of the two walls; the rib (14) is connected fixedly between the first wall (11) and the second wall (12), and forms a hollow portion (17) with the third wall (13). With the technical solution, as the wall block has a hollow structure, a load-bearing structure (such as a bearing pillar) may be arranged directly in the hollow structure of the wall block, unlike the traditional wall blocks which need to be piled up around the load-bearing structure (such as a bearing pillar) at a large amount. Therefore, the wall block of the present invention can save time for piling up the same and improve construction efficiency.
    • 本发明提供一种壁块。 壁块(1)包括第一壁(11),第二壁(12),第三壁(13)和肋(14),其中第一壁(11)与第二壁(12)平行 ),第三壁(13)在两个壁的两个相应端部处牢固地连接在两个壁之间。 肋(14)固定地连接在第一壁(11)和第二壁(12)之间,并与第三壁(13)形成中空部分(17)。 利用技术方案,由于壁块具有中空结构,承载结构(例如支撑柱)可以直接布置在墙体的中空结构中,与传统的需要堆积的墙砖不同 围绕承重结构(如支撑柱)大量。 因此,本发明的壁块能够节省堆放时间,提高施工效率。
    • 14. 发明申请
    • FILM COATED PARTICLES FOR OIL EXPLOITATION AND OIL EXPLOITATION METHOD USING THE SAME
    • 用于油开采的油墨包覆颗粒和使用该油的开采方法
    • US20120088699A1
    • 2012-04-12
    • US13258188
    • 2010-05-20
    • Shengyi Qin
    • Shengyi Qin
    • C09K8/80
    • C09K8/805E21B43/267
    • The present invention discloses coated particles for oil recovery, a fracturing propping agent that comprises the coated particles, and an oil recovery method that utilizes the fracturing propping agent. The coated particles comprise particles of aggregates and an oil-permeable and water-proof film coated on the particles of aggregates. The coated quartz sand and fracturing propping agent are oil-permeable and water-proof under normal atmospheric pressure, and have oil permeation resistance much lower than water permeation resistance in pressurized state. Therefore, when the coated quartz sand and fracturing propping agent are applied in the oil recovery industry, they can effectively reduce the volume of produced water and increase the oil yield.
    • 本发明公开了用于油回收的涂覆颗粒,包含涂覆颗粒的压裂支撑剂,以及利用压裂支撑剂的油回收方法。 涂覆的颗粒包括聚集体颗粒和涂覆在聚集体颗粒上的油渗透和防水薄膜。 涂覆的石英砂和压裂支撑剂在正常大气压下为透油性和防水性,耐油渗透性远低于加压状态下的耐水渗透性。 因此,当采油涂层石英砂和压裂支撑剂应用于采油业时,可以有效地减少产水量,提高产油量。