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    • 1. 发明申请
    • HAND-POWERED PROJECTILE ASSEMBLY
    • 手动投影机组装
    • US20140158103A1
    • 2014-06-12
    • US13712953
    • 2012-12-12
    • Shawn Phillips
    • Shawn Phillips
    • F41B7/00
    • F41B3/02F41B7/08
    • A hand-powered projectile assembly is provided for launching projectiles. The hand-powered projectile assembly includes an elastic projectile pouch, a hollow base ring and a hollow locking ring. The elastic projectile pouch having an open end is attached to the hollow base ring. The hollow base ring is attached to the locking ring. The hollow locking ring further maintains a tight seal with the elastic projectile pouch. The hand-powered projectile assembly further includes a cap to maintain the position of the projectiles inside the elastic projectile pouch. The cap maintains a watertight connection with the hollow base ring. The projectile exits through the open end of the elastic projectile pouch and the hollow base ring.
    • 提供用于发射弹丸的手动弹丸组件。 手动弹丸组件包括弹性弹丸袋,中空基座环和中空锁紧环。 具有开口端的弹性射弹袋附接到中空基座环。 空心基座环连接到锁定环上。 中空锁定环进一步与弹性弹丸袋保持紧密的密封。 手动弹丸组件还包括一个帽子,以保持射弹在弹性弹丸袋内部的位置。 盖与空心基圈保持水密连接。 弹丸通过弹性弹丸袋和空心基环的开口端离开。
    • 2. 发明授权
    • Nanostructured chemicals as alloying agents in polymers
    • 纳米结构化学品作为聚合物中的合金剂
    • US06716919B2
    • 2004-04-06
    • US09818265
    • 2001-03-26
    • Joseph D. LichtenhanJoseph J. SchwabAndre LeeShawn Phillips
    • Joseph D. LichtenhanJoseph J. SchwabAndre LeeShawn Phillips
    • C08F800
    • B82Y30/00C08K5/5419C08K7/00C08K2201/011C08L2205/14C08L23/10
    • A method of using nanostructured chemicals as alloying agents for the reinforcement of polymer microstructures, including polymer coils, domains, chains, and segments, at the molecular level. Because of their tailorable compatibility with polymers, nanostructured chemicals can be readily and selectively incorporated into polymers by direct blending processes. The incorporation of a nanostructured chemical into a polymer favorably impacts a multitude of polymer physical properties. Properties most favorably improved are time dependent mechanical and thermal properties such as heat distortion, creep, compression set, shrinkage, modulus, hardness and abrasion resistance. In addition to mechanical properties, other physical properties are favorably improved, including lower thermal conductivity, fire resistance, and improved oxygen permeability.
    • 使用纳米结构化学品作为合成剂的方法,用于在分子水平上增强聚合物微结构,包括聚合物线圈,结构域,链和链段。 由于其与聚合物的可兼容的相容性,纳米结构化学品可以通过直接共混方法容易且有选择地并入聚合物中。 将纳米结构化学物质​​掺入聚合物有利地影响了许多聚合物的物理性质。 最有利地改善的性能是时间相关的机械和热性能,如热变形,蠕变,压缩永久变形,收缩率,模量,硬度和耐磨性。 除了机械性能之外,其他物理性能得到有利改善,包括较低的导热性,耐火性和改善的氧气渗透性。