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    • 73. 发明授权
    • Multiple-component tampon applicator
    • 多组分卫生棉条敷料器
    • US07862533B2
    • 2011-01-04
    • US11137809
    • 2005-05-25
    • Jessica E. LeMayDane R. JacksonMichael L. MillerWayne D. Melvin
    • Jessica E. LeMayDane R. JacksonMichael L. MillerWayne D. Melvin
    • A61F13/20A61M5/00
    • A61F13/26Y10S604/904Y10T156/10Y10T156/1038
    • There is provided a multiple-component tampon applicator formed from at least three separate components. A fingergrip having a reduced cross-section as compared to that of the barrel may be formed such that it is a separate component or is integrally formed with a barrel component. The reduced cross-section fingergrip provides exceptional grippability to the user. The multiple components may be formed from materials including, for example, biopolymer including starches and proteins, cardboard, heat shrink plastic, paper slurry, plastic, plastic tubing, pulp slurry, pulp-molded paper, or any combinations thereof. Prior to assembly of the applicator and prior to loading the barrel component with an absorbent pledget, petals may be formed on the insertion end of the barrel using existing processes and equipment. Alternatively, a separate insertion tip component having petals may be formed. This separate component may then be connected to the barrel component either before or after an absorbent pledget is loaded into the barrel component.
    • 提供了由至少三个分开的部件形成的多组分棉塞施用器。 可以形成具有与筒相比减小的横截面的指甲,使得其是单独的部件或与筒部件一体形成。 减少的横截面指甲为用户提供了极好的抓握性。 多个组分可以由包括例如包括淀粉和蛋白质的生物聚合物,纸板,热收缩塑料,纸浆,塑料,塑料管,纸浆,纸浆模制纸或其任何组合的材料形成。 在组装施用器之前并且在用吸收剂填充物装载桶组件之前,可以使用现有的工艺和设备在筒的插入端上形成花瓣。 或者,可以形成具有花瓣的单独插入尖端部件。 然后,可以在将吸收剂填充到筒部件中之前或之后将该单独的部件连接到筒部件。
    • 76. 发明授权
    • Identifying a cause of a fault based on a process controller output
    • 根据过程控制器输出识别出故障的原因
    • US06778873B1
    • 2004-08-17
    • US10210640
    • 2002-07-31
    • Jin WangElfido Coss, Jr.Brian K. CussonAlexander J. PasadynMichael L. MillerNaomi M. JenkinsChristopher A. Bode
    • Jin WangElfido Coss, Jr.Brian K. CussonAlexander J. PasadynMichael L. MillerNaomi M. JenkinsChristopher A. Bode
    • G06F1900
    • G05B19/4184G05B23/0281G05B2219/31357G05B2219/31363G05B2219/32201Y02P90/14Y02P90/22
    • A method and apparatus is provided for identifying a cause of a fault based on controller output. The method comprises processing at least one workpiece under a direction of the controller and detecting a fault associated with the processing of the at least one workpiece. The method further includes determining a plurality of possible causes of the detected fault, identifying a more likely possible cause out of the plurality of possible causes, providing fault information associated with the identified more likely possible cause to the controller. The method further includes providing fault information associated with the identified more likely possible cause to the controller. The method further comprises adjusting the processing of one or more workpieces to be processed next based on the fault information provided to the controller. The method further includes generating prediction data associated with processing of the next workpieces, and comparing the prediction data to processing data associated with the processing of the next workpieces to identify a possible cause of the fault.
    • 提供了一种基于控制器输出来识别故障原因的方法和装置。 该方法包括在控制器的方向上处理至少一个工件,并检测与至少一个工件的处理相关的故障。 该方法还包括确定检测到的故障的多个可能的原因,从多个可能的原因中识别更可能的可能原因,将与所识别的更可能的可能原因相关联的故障信息提供给控制器。 该方法还包括向控制器提供与所识别的更可能的可能原因相关联的故障信息。 该方法还包括基于提供给控制器的故障信息来调整接下来要处理的一个或多个待处理工件的处理。 该方法还包括生成与下一个工件的处理相关联的预测数据,以及将预测数据与与下一个工件的处理相关联的处理数据进行比较,以识别故障的可能原因。
    • 78. 发明授权
    • Method for creep-sizing annular-shaped structures and device therefor
    • 环形结构蠕变方法及其装置
    • US06241832B1
    • 2001-06-05
    • US09481170
    • 2000-01-12
    • Michael L. Miller
    • Michael L. Miller
    • C21D800
    • C21D8/00C21D7/12C21D9/0025
    • A method and device for thermal creep-sizing an annular-shaped structure. The creep-sizing device includes a ring member with through-holes present between the inner and outer diametrical boundaries of the ring member, and with through-slots alternatingly extending from each through-hole to either the inner or outer diametrical boundary. In use, the ring member is placed within the annular-shaped structure, and pins are installed in the through-holes in the ring member to cause the outer diametrical boundary of the ring member to diametrically expand. The structure and creep-sizing device are then heated so that the mechanically expanded ring member causes the structure to undergo thermal creep-sizing.
    • 一种环形结构热蠕变方法和装置。 蠕变尺寸装置包括环形构件,其具有存在于环构件的内径和外径边界之间的通孔,并且具有从每个通孔交替地延伸到内直径边界或外直径边界的通孔。 在使用中,环构件被放置在环形结构内,并且销安装在环构件中的通孔中,以使环构件的外直径边界径向膨胀。 然后将结构和蠕变尺寸装置加热,使得机械膨胀的环构件使结构经受热蠕变施胶。