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    • 1. 发明授权
    • Method of making a gyricon display using magnetic latching
    • 使用磁性锁定制作陀螺仪显示的方法
    • US06197228B1
    • 2001-03-06
    • US09199543
    • 1998-11-25
    • Nicholas K. Sheridon
    • Nicholas K. Sheridon
    • B29B1308
    • G02B26/026G09F9/372G09F9/375
    • A method of making rotating element sheet material utilizing magnetic latching is disclosed. First a plurality of rotating elements, each element having a magnetized segment, are mixed with an elastomer and a plurality of magnetic particles to attract the magnetic particles to the magnetized segments. Then a magnetic field is applied to orient the elements in a common direction. When the rotating elements have all been oriented in a common direction, they are held in that orientation for a long enough period of time to allow the magnetic particles to migrate in the elastomer to the regions of the elastomer in the vicinity of the magnetized segments of the elements. The elastomer is then cured to form an elastomer substrate with trapped rotating elements and magnetic particles. The elastomer substrate is then immersed into a bath of dielectric plasticizer which is absorbed more readily by elastomer than by the rotating elements. The elastomer substrate swells to create plasticizer-filled voids around the rotating elements. The magnetic particles remain incorporated within the elastomer to form magnetic material pads which are associated with an element.
    • 公开了一种利用磁性锁定来制造旋转元件片材的方法。 首先,将具有磁化段的每个元件的多个旋转元件与弹性体和多个磁性颗粒混合以将磁性颗粒吸引到磁化段。 然后施加磁场以使元件沿共同的方向定向。 当旋转元件全部沿共同的方向定向时,它们被保持在该取向上足够长的时间段,以使磁性颗粒在弹性体中迁移到弹性体的磁化段附近的区域 元素。 然后将弹性体固化以形成具有捕获的旋转元件和磁性颗粒的弹性体基材。 然后将弹性体基材浸入电介质增塑剂的浴中,其比由旋转元件更容易被弹性体吸收。 弹性体基体膨胀以在旋转元件周围产生增塑剂填充的空隙。 磁性颗粒保持结合在弹性体内以形成与元件相关联的磁性材料垫。
    • 2. 发明授权
    • Method and apparatus for accelerating the manufacture of molded particleboard parts
    • 用于加速模制刨花板零件制造的方法和装置
    • US06368544B1
    • 2002-04-09
    • US09434237
    • 1999-11-05
    • Thomas L. Owens
    • Thomas L. Owens
    • B29B1308
    • B29B13/08B27N3/18B27N5/00B29C43/02B29C43/52B29C2035/0283B29C2035/0855
    • All of the current processes for making molded particleboard products require very long furnish dwell times within a heated press, due to the low heat transfer rates from the heated molds to the furnish being compressed. Furnish dwell times vary between approximately one minute to more than 10 minutes, depending upon the part thickness. Since profitability of a particleboard molding operation is closely related to product throughput, these long furnish dwell times within the heated press limit production rates and continue to be a major economic concern to the industry. The essence of the invention is a heretofore unsuggested use of radiowave energy to speed production of molded particleboard parts by preheating the furnish prior to the application of heat and pressure within the forming mold. Because radiowaves propagate readily throughout the volume of the furnish, rapid heating is obtainable even for a loose, uncompacted particulate furnish that has very poor thermal conductivity. By utilizing a radiowave preheating scheme, rather than applying radiowaves simultaneously with hot pressing, relatively simple yet highly effective radiowave applicators may be devised.
    • 由于从被加热的模具到被压缩的配料的传热速率低,所以当前制造模制刨花板产品的所有工艺都需要在加热压机内非常长的配料停留时间。 取决于部件厚度,提供的驻留时间在约1分钟至10分钟之间变化。 由于刨花板成型操作的盈利能力与产品的产量密切相关,因此这些长时间的加热压力限制生产率,并继续成为行业的主要经济关注点。 本发明的本质是迄今为止,在对成形模具内施加热和压力之前预热配料,无线电波能量的使用是迄今未提及的无线电波能量来加速模制刨花板部件的生产。 因为无线电波容易地在配料的整个体积中传播,所以即使对于具有非常差的热导率的松散的未压实的微粒配料也可以获得快速加热。 通过利用无线电波预热方案,而不是与热压同时应用无线电波,可以设计出相对简单但高度有效的无线电波施加器。
    • 3. 发明授权
    • Method of making a gyricon display using magnetic latching
    • 使用磁性锁定制作陀螺仪显示的方法
    • US06251329B1
    • 2001-06-26
    • US09199818
    • 1998-11-25
    • Nicholas K. Sheridon
    • Nicholas K. Sheridon
    • B29B1308
    • G02B26/026G09F9/372G09F9/375
    • A method of making rotating element sheet material utilizing magnetic latching is disclosed. First a plurality of rotating elements having a magnetized segment are mixed with magnetic particles to attract the magnetic particles to the magnetized segments. Then the rotating elements with the attached magnetic particles are mixed with a liquid elastomer. A magnetic field is applied to orient the rotating elements in a common direction. When the rotating elements and the attached magnetic particles have all been oriented the elastomer is cured to form an elastomer substrate with trapped rotating elements and magnetic particles. The elastomer substrate is then immersed into a bath of dielectric plasticizer which is absorbed more readily by elastomer than by the rotating elements. The elastomer substrate swells to create plasticizer-filled voids around the rotating elements. The magnetic particles remain incorporated within the elastomer to form magnetic material pads which are associated with an element.
    • 公开了一种利用磁性锁定来制造旋转元件片材的方法。 首先,具有磁化段的多个旋转元件与磁性颗粒混合以将磁性颗粒吸引到磁化段。 然后将具有附着的磁性颗粒的旋转元件与液体弹性体混合。 施加磁场以使旋转元件沿共同的方向定向。 当旋转元件和附着的磁性颗粒全部被取向时,弹性体被固化以形成具有被捕获的旋转元件和磁性颗粒的弹性体基底。 然后将弹性体基材浸入电介质增塑剂的浴中,其比由旋转元件更容易被弹性体吸收。 弹性体基体膨胀以在旋转元件周围产生增塑剂填充的空隙。 磁性颗粒保持结合在弹性体内以形成与元件相关联的磁性材料垫。
    • 6. 发明授权
    • Method for manufacturing a holder
    • 制造支架的方法
    • US06613267B1
    • 2003-09-02
    • US09609485
    • 2000-07-05
    • Hideaki Konno
    • Hideaki Konno
    • B29B1308
    • H01R13/2414H04M1/03H04R1/08H05K3/301H05K3/325
    • A method is provided for manufacturing a holder which has a holding part and a connector part. The holding part has an elastic body holding a built-in electronic part in a position. The method steps include pouring a liquid polymer mixed with a magnetic electric conductor into a mold for forming the holder. A magnetic force is applied to a desired position in the mold to orient the magnetic electric conductor to form a connector pattern of the connector part with the magnetic force. A holding part is molded integrally with the connector part to provide a one piece integral structure by crosslinking the liquid polymer. The magnetic electric conductor may be linked together by a force of a magnetic field. This defines a conductive passage in the connector part.
    • 提供一种用于制造具有保持部和连接器部的保持器的方法。 保持部具有将内置电子部件保持在位置的弹性体。 方法步骤包括将与磁性导电体混合的液体聚合物倒入用于形成保持器的模具中。 将磁力施加到模具中的期望位置以使磁性导电体定向以形成具有磁力的连接器部件的连接器图案。 保持部件与连接器部件一体地模制,以通过交联液体聚合物来提供一体的整体结构。 磁导体可以通过磁场的力连接在一起。 这限定了连接器部件中的导电通路。