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    • 8. 发明授权
    • Method and apparatus for dispersing a sample of particulate material
    • 用于分散颗粒材料样品的方法和装置
    • US08448534B2
    • 2013-05-28
    • US12451563
    • 2008-05-19
    • Nicholas Craig DavidsonMargaret Ellen DysonJonathan PowellAndrew John Prior
    • Nicholas Craig DavidsonMargaret Ellen DysonJonathan PowellAndrew John Prior
    • G01N15/00
    • G01N1/2813G01N1/286
    • An apparatus for dispersing a sample of particulate material, includes a carrier (31;35;37;38;39) having a sample-bearing surface on which to place the sample, and a housing (10;44;48) for forming a dispersion chamber (17), at least when closed off at a base (46;51). The carrier is arranged such that the sample-bearing surface is removed from contact with the sample upon application of a sufficient pressure differential across the carrier between the sample-bearing surface and an opposite side of the carrier. The housing (10;44;48) has an inlet (26) at least partially facing the base (46;51). The apparatus includes an apparatus (15;16) for passing a volume of fluid past the carrier (31;35;37;38;39) through the inlet (26) by subjecting the carrier (31;35;37;38;39) to a pulsed positive pressure differential relative to the dispersion chamber (17).
    • 一种用于分散颗粒材料样品的装置,包括具有放置样品的样品承载表面的载体(31; 35; 37; 38; 39)和用于形成 至少在基部(46; 51)处封闭时分散室(17)。 载体被布置成使得在载体表面和承载体的相对侧之间施加足够的压力差,载体表面与样品脱离接触。 壳体(10; 44; 48)具有至少部分地面向基部(46; 51)的入口(26)。 该装置包括一个装置(15; 16),用于使一定体积的流体经过载体(31; 35; 37; 38; 39)穿过入口(26),使载体(31; 35; 37; 38; 39 )相对于分散室(17)的脉冲正压差。
    • 10. 发明授权
    • Modular capillary bridge viscometer
    • US09612183B2
    • 2017-04-04
    • US13825623
    • 2011-09-23
    • Paul G. ClarkeMichael P. Murphy
    • Paul G. ClarkeMichael P. Murphy
    • G01N11/08
    • G01N11/08
    • A capillary bridge viscometer (120), comprises at least two at least generally balanced bridge arm conduits (R1, R2) a bulkhead supporting structure (122,134) supporting removable connection portions for each of a plurality of the arms in a bridge configuration, a bridge supporting structure (124,136) supporting the bridge arm conduits (R1,R2) and supporting two further removable connection portions (132) for each of the bridge arm conduits, wherein each of the further removable connection portions (132) supported by the bridge supporting structure are positioned to mate with a corresponding one of the removable connection portions (130) supported by the bulkhead supporting structure concurrently to hydraulically connect the bridge arm conduits in the bridge configuration; and a balance detector having hydraulic connections for connection between first and second differential detection points in the bridge when the removable connection portions on the bridge are mated to corresponding ones of the removable connection portions supported by the bulkhead supporting structure.