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    • 1. 发明授权
    • Low stress droplet generator mount assembly
    • 低应力液滴发生器安装组件
    • US5754206A
    • 1998-05-19
    • US606427
    • 1996-02-23
    • Bruce A. BowlingDavid J. Stephens
    • Bruce A. BowlingDavid J. Stephens
    • B41J2/01B41J2/025B41J2/075B41J2/02
    • B41J2/025B41J2002/14362
    • A mounting apparatus holds in position a droplet generator assembly to be mounted in a continuous ink jet printing system. The droplet generator assembly comprises a pair of conical slots and a pair of conical apertures, located on opposing sides of the droplet generator. A resonator clamping plate includes a plurality of mating protrusions. A resonator support includes a plurality of spherical protrusions. A holding force, such as a screw, securely holds the assembled structure. The clamp and support interact with the conical slots and apertures to locate and exactly constrain the droplet generator. With the mounting structure of the present invention, the six degrees of freedom of adjustment are controlled.
    • 安装装置将液滴发生器组件保持在待安装在连续喷墨打印系统中的位置。 液滴发生器组件包括位于液滴发生器的相对侧上的一对锥形槽和一对锥形孔。 谐振器夹板包括多个配合突起。 谐振器支撑件包括多个球形突起。 诸如螺钉的保持力牢固地保持组装结构。 夹具和支撑件与锥形槽和孔相互作用以定位并精确约束液滴发生器。 利用本发明的安装结构,可以控制六个自由度的调整。
    • 3. 发明授权
    • Beveled charge structure
    • 斜面电荷结构
    • US07506443B2
    • 2009-03-24
    • US11533380
    • 2006-09-20
    • Bruce A. BowlingDexter N. Douglass
    • Bruce A. BowlingDexter N. Douglass
    • B21D53/76B23P17/00H01L41/22H04R17/00H05K3/20H05K3/10
    • B41J2/125Y10T29/42Y10T29/49128Y10T29/49155Y10T29/49401
    • A drop selection assemblage for use in a printhead and method of making includes a drop generator with a jet array for releasing a drop stream along a normal drop path. The drop stream includes print media drops and recycle drops. The assemblage has a charge structure disposed in a spaced apart relationship to the jet array. The charge structure is a substrate with a non-beveled and beveled portion sloped between 3 degrees and 25 degrees relative to the normal drop path. The charge structure has one or more drop charging electrodes on the non-beveled portion to charge recycle drops and one or more short detection electrodes on the beveled portion. A catcher is located adjacent to the charge structure for catching drops that have passed along the charge structure. The print media drops are selected, and the recycle drops are deflected without either contacting the charge structure.
    • 用于打印头的制品选择组合件和制造方法包括具有喷射阵列的液滴发生器,用于沿着普通液滴路径释放液滴流。 滴流包括打印介质滴和循环滴。 组合体具有以与喷射阵列间隔开的关系设置的电荷结构。 电荷结构是具有相对于法线下降路径在3度和25度之间倾斜的非斜面和斜面部分的基底。 电荷结构在非倾斜部分上具有一个或多个液滴充电电极,以对再循环液滴和斜面上的一个或多个短检测电极进行充电。 捕获器位于与装料结构相邻的位置,用于捕捉沿着电荷结构传递的液滴。 选择打印介质液滴,并且循环液滴在不接触电荷结构的情况下被偏转。
    • 4. 发明授权
    • Low profile disposable polymer wicking pad
    • 低调一次性聚合物芯吸垫
    • US06527363B1
    • 2003-03-04
    • US09916992
    • 2001-07-27
    • Bruce A. BowlingDavid A. Huliba
    • Bruce A. BowlingDavid A. Huliba
    • B41J2165
    • B41J2/16535B41J2/185
    • A laminated structure utilizes differential adhesive to achieve high adhesion to a wicking material and low adhesion where removal is desired. The low profile wicking pad is useful in any technology where it is desirable to control excess moisture with a passive device. The wicking device is particularly useful in the field of continuous ink jet printing systems, where the low profile of the device is desirable and the cost reduction makes disposability of the device a reality. In ink jet printing systems, the wicking device improves ink jet printhead performance via ink mist and ink drip elimination.
    • 层压结构使用差示粘合剂来实现对芯吸材料的高粘合性,并且在需要去除时具有低粘合性。 低调芯吸垫可用于任何需要用无源器件控制多余水分的技术。 芯吸装置在连续喷墨打印系统领域中是特别有用的,其中装置的低轮廓是期望的,并且成本降低使得装置的可处理性成为现实。 在喷墨打印系统中,芯吸装置通过墨雾和墨滴脱除改善喷墨打印头的性能。
    • 6. 发明授权
    • Ink jet print head mounting mechanism
    • 喷墨打印头安装机构
    • US5212502A
    • 1993-05-18
    • US845987
    • 1992-03-04
    • Bruce A. Bowling
    • Bruce A. Bowling
    • B41J2/175B41J25/34
    • B41J2/17526B41J2/1752B41J25/34
    • An exact constraint mounting is provided between the print head and the carriage of an ink jet printer. The mounting scheme includes three generally spherical alignment features on the carriage, a conical depression on the print head for cooperating with a first alignment feature to define a point, a trough on the print head for cooperating with a second alignment feature to define a line through the point, and a flat on the print head for cooperating with the third alignment feature to define a rotation about the line. The improved mounting system results in a highly precise, repeatable, stress-free mounting for the print head.
    • 在打印头和喷墨打印机的托架之间提供了精确的约束安装。 安装方案包括在滑架上的三个通常为球形的对准特征,在打印头上的锥形凹陷,用于与第一对准特征相配合以限定点,打印头上的凹槽,用于与第二对准特征配合以限定线 该点和打印头上的平面,用于与第三对准特征配合以限定围绕该线的旋转。 改进的安装系统为打印头提供了高度精确,可重复,无压力的安装。
    • 8. 发明授权
    • Flux brush torque sensor
    • 助焊剂刷扭矩传感器
    • US06644134B2
    • 2003-11-11
    • US10080265
    • 2002-02-21
    • John F. LaidlawStephen T. HungBruce A. Bowling
    • John F. LaidlawStephen T. HungBruce A. Bowling
    • G01L302
    • B62D6/10G01L3/104G01L5/221
    • A torque sensing device includes a housing, an input shaft, and a pinion shaft. A torsion bar interconnects and allows rotation of the shafts relative to one another. The shafts are supported to allow axial movement within the housing. A plurality of magnets are spaced radially about the input shaft, and a stator assembly mounted to the pinion shaft extend axially over the magnets. A pair of flux rings is supported by the housing and extend annularly around the stator assembly at a radial distance from the stator assembly. Each one of a pair of flux brushes is magnetically proximal to one of the flux rings. The flux brushes are spaced apart from one another by a gap. A pair of sensors within the gap measures the direction and magnitude of a magnetic flux passing between the flux brushes.
    • 扭矩感测装置包括壳体,输入轴和小齿轮轴。 扭杆互连并允许轴相对于彼此旋转。 轴被支撑以允许在壳体内的轴向运动。 多个磁体围绕输入轴径向间隔开,并且安装到小齿轮轴上的定子组件在磁体上轴向延伸。 一对磁通环由壳体支撑并且在定子组件的径向距离处围绕定子组件环形地延伸。 一对磁通电刷中的每一个磁通量近似于磁通环中的一个。 焊剂刷通过间隙彼此间隔开。 间隙内的一对传感器测量通过刷子之间通过的磁通量的方向和大小。