会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Railcar draft gear housing
    • 铁路牵引齿轮箱
    • US06796448B1
    • 2004-09-28
    • US10379028
    • 2003-03-04
    • Donald E. WiltDavid G. AndersonAndrew W. Withall
    • Donald E. WiltDavid G. AndersonAndrew W. Withall
    • B61G1100
    • B61G9/24B61G7/10
    • A railcar draft gear housing formed from an austempered ductile iron casting having an original shape and including an open end, a closed end, and wall structure axially extending between the housing's ends. The wall structure of the housing defines an axial section between and spaced from the ends. The axial section of the wall structure is configured to withstand impact energy imparted to the housing in excess of 81,000 inch pounds while retaining and exhibiting substantially linear elasticity wherein the resultant ratio of stress to energy input remains substantially constant thereby allowing for flexible distortion of the housing in a manner promoting enhanced energy damping characteristics while allowing the casting to return to the original shape after the impact energy is released threrefrom.
    • 轨道牵引齿轮壳体由具有原始形状的奥氏体球墨铸铁铸件形成并且包括在壳体的端部之间轴向延伸的开口端,封闭端和壁结构。 壳体的壁结构限定了在两端之间和间隔开的轴向部分。 壁结构的轴向部分构造成承受超过81,000英寸磅的施加到壳体的冲击能量,同时保持并呈现基本上线性的弹性,其中应力与能量输入的合成比保持基本上恒定,从而允许壳体的柔性变形 以促进增强的能量阻尼特性的方式,同时允许铸造在冲击能量被释放之后恢复到原始形状。
    • 8. 发明授权
    • Wet-wipe maintenance device for a full-width ink-jet printer
    • 湿式维护设备,用于全幅喷墨打印机
    • US5793390A
    • 1998-08-11
    • US391326
    • 1995-02-21
    • Alfred J. ClaflinDavid G. Anderson
    • Alfred J. ClaflinDavid G. Anderson
    • B41J2/165B41J2/18B41J2/185
    • B41J2/16547B41J2/16508B41J2/16585
    • A maintenance device includes a shuttle which is adapted to travel on a track through a fixed path generally parallel to the array. Mounted on the shuttle are an application, which includes a wicking member, for applying a cleaning liquid to the nozzle openings and a vacuum device for applying suction to the nozzle openings. A spacing member on the shuttle spaces the shuttle from the head to form a meniscus of the cleaning liquid against the nozzle openings of the printhead. The maintenance device is used in a cleaning method wherein a vacuum force is applied to the nozzle openings while moving the shuttle in a first direction, the surface is wetted by the cleaning liquid while moving the shuttle in a second direction, and the a vacuum force is again applied to the nozzle openings after the wetting while moving the shuttle in the second direction.
    • 维护装置包括适于在轨道上行进通过大致平行于阵列的固定路径的梭子。 安装在梭子上的应用是包括用于向喷嘴开口施加清洁液体的芯吸构件和用于向喷嘴开口施加吸力的真空装置的应用。 穿梭器上的间隔构件将梭子从头部隔开,以形成清洁液体的弯液面抵靠打印头的喷嘴开口。 维护装置用于清洁方法,其中在沿着第一方向移动梭子的同时向喷嘴开口施加真空力,同时在第二方向上移动梭子时,表面被清洁液润湿,并且真空力 在沿着第二方向移动梭子之后,在润湿之后再次施加到喷嘴开口。
    • 10. 发明授权
    • Ultrasonic liquid wiper for ink jet printhead maintenance
    • 超声波液体刮水器用于喷墨打印头维护
    • US5574485A
    • 1996-11-12
    • US322128
    • 1994-10-13
    • David G. AndersonAlfred J. ClaflinJohn Chinnici
    • David G. AndersonAlfred J. ClaflinJohn Chinnici
    • B41J2/165
    • B41J2/16552B41J2/16585B41J2/16532B41J2002/16567B41J2202/21
    • An ultrasonic liquid wiper for an ink jet printer maintenance station has a cleaning nozzle confrontingly aligned but spaced from printhead nozzles suspected of having viscous plugs of partially dried ink. A cleaning solution is held within the cleaning nozzle by surface tension to form a meniscus and is caused to bulge toward into contact with the printhead nozzle face and form a bridge of cleaning solution therewith. In addition to dissolving ink, the cleaning solution is ultrasonically excited by a piezoelectric material immediately upstream of the cleaning nozzle to provide a high frequency energized liquid wiper to facilitate viscous plug removal without having physical contact with the printhead nozzle face, thereby preventing wear of any hydrophobic coating on the nozzle face. A vacuum nozzle is positioned on each side of the cleaning nozzle to remove the cleaning solution deposited on the nozzle face, together with any ink dissolved therein. The cleaning nozzle optionally dwells for predetermined time periods to more effectively loosen and/or dissolve the viscous plugs of ink. The cleaning nozzles may have different concave shapes to aid in the ultrasonic cleaning action of the cleaning solution.
    • 用于喷墨打印机维护站的超声波液体擦拭器具有面向对准但与疑似具有部分干燥油墨的粘性塞的打印头喷嘴间隔开的清洁喷嘴。 清洁溶液通过表面张力保持在清洁喷嘴内,以形成弯液面,并且使其与打印头喷嘴面接触而形成与之相连的清洁溶液桥。 除了溶解墨水之外,清洁溶液被紧邻清洁喷嘴上游的压电材料超声波激发,以提供高频通电的液体擦拭器,以便于在不与打印头喷嘴面物理接触的情况下去除粘性塞,从而防止任何 喷嘴面上的疏水涂层。 真空喷嘴位于清洁喷嘴的每一侧,以便除去沉积在喷嘴表面上的清洁溶液以及溶解在其中的任何油墨。 清洁喷嘴可选地停留预定时间段,以更有效地使墨水的粘性塞松开和/或溶解。 清洁喷嘴可以具有不同的凹形,以帮助清洁溶液的超声波清洗动作。