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
    • Blower operated airknife with air augmenting shroud
    • 鼓风机操作气刀与空气增强罩
    • US06702101B2
    • 2004-03-09
    • US10037142
    • 2001-12-21
    • James HaruchWai Y. LeungEmily SmithTimothy H. Hennessy
    • James HaruchWai Y. LeungEmily SmithTimothy H. Hennessy
    • B65G4500
    • F26B21/004B08B5/023
    • A low pressure blower operated airknife having a housing with an elongated primary air discharge orifice for directing a narrow width curtain of air. The airknife includes an air-augmenting shroud which defines auxiliary discharge orifices on opposite longitudinal sides of the primary air discharge orifice such that air discharging from the primary discharge orifice creates a low pressure condition adjacent the auxiliary air discharge orifices for drawing additional air through the auxiliary discharge orifices which augments the velocity and volume of the discharging air current without the necessity for increasing the air inlet pressure or blower size. The shroud may take alternative forms, including pairs of wings disposed on opposite sides of the primary discharge orifice or hollow structures that surround the airknife housing. The airknife further is adapted for low pressure direction and application of air laden particles, such as preatomized liquid particles.
    • 一种低压鼓风机操作的气刀,其具有带有细长一次空气排放孔的壳体,用于引导狭窄的宽度的空气帘。 气刀包括一个空气增强罩,其在主空气排放孔的相对的纵向侧面上限定辅助排放孔,使得从主排放孔排出的空气在辅助空气排出孔附近产生低压状态,以通过辅助空气抽吸附加空气 排放孔,其不需要增加空气入口压力或鼓风机尺寸,这增加了排放气流的速度和体积。 护罩可以采取替代形式,包括设置在主排放口的相对侧上的一对翼或围绕气刀壳的中空结构。 气刀进一步适用于低压方向和应用含空气的颗粒,例如预先溶解的液体颗粒。
    • 3. 发明授权
    • Screw-in type spray nozzle and method of assembly
    • 螺旋式喷嘴及组装方法
    • US5337958A
    • 1994-08-16
    • US71073
    • 1993-06-02
    • Timothy H. HennessyPatrick M. Maney
    • Timothy H. HennessyPatrick M. Maney
    • B05B15/00B05B1/04B05B15/06
    • B05B15/065
    • A spray nozzle and method of assembly onto the threaded end of a supply line or like by use of a conventional wrench. The spray nozzle has an elongated body formed with an axial flow passageway, a threaded upstream end, a wrench engaging downstream end, and a radial locating and support flange intermediate its upstream and downstream ends for supporting the nozzle on the wrench with the downstream end in operative relation to the gripping elements of the wrench and with the threaded upstream end extending outwardly of the wrench for positioning into threaded engagement with the threaded supply line by use of the wrench. The spray nozzle has an elongated discharge orifice and the support flange has flats formed parallel to the long axis of the discharge orifice to aid in orientating the nozzle.
    • 一种喷嘴和通过使用常规扳手组装到供应管线的螺纹端上的方法。 喷嘴具有细长的主体,其形成有轴向流动通道,螺纹上游端,与下游端接合的扳手,以及位于其上游和下游端部的径向定位和支撑凸缘,用于将喷嘴支撑在扳手上,下游端 与扳手的抓握元件的操作关系,并且带螺纹的上游端延伸到扳手外部,以通过使用扳手定位成与螺纹供给线螺纹接合。 喷嘴具有细长的排出孔,并且支撑凸缘具有平行于排放孔的长轴形成的平面,以有助于使喷嘴定向。
    • 4. 发明授权
    • Lightweight solenoid-operated spray gun
    • 轻型电磁喷枪
    • US07086613B2
    • 2006-08-08
    • US10351237
    • 2003-01-24
    • Timothy H. Hennessy
    • Timothy H. Hennessy
    • B05B1/30
    • B05B1/3053B05B13/0431
    • A solenoid-operated liquid spray gun having a lightweight, corrosion resistant plastic housing which enables the spray gun to be mounted on and be more easily moved by robotic transfer devices. To effect the necessary flux loop within the plastic-housed spray gun for reciprocating a valve plunger in response to energization of the solenoid coil, the spray gun includes a radially disposed flux-directing member adjacent at least one end of the coil. The flux-directing member, while extending radially outwardly a distance less than the diameter of solenoid coil, effects efficient flux direction for operating the solenoid notwithstanding the lack of a magnetic conductive medium provided by the metal housing of conventional solenoid-operated spray guns.
    • 一种电磁操作液体喷枪,具有重量轻,耐腐蚀的塑料外壳,可使喷枪安装在机器人传输装置上并更容易移动。 为了在塑料容纳的喷枪内实现必要的通量回路,用于响应于螺线管线圈的通电使阀柱塞往复运动,喷枪包括与线圈的至少一端相邻的径向设置的磁通引导构件。 磁通引导构件尽管径向向外延伸一小于螺线管线圈直径的距离,但是由于缺少由传统电磁操作喷枪的金属外壳提供的导磁介质,所以使电磁线圈操作有效的通量方向。
    • 5. 发明授权
    • Blower operated airknife with air augmenting shroud
    • 鼓风机操作气刀与空气增强罩
    • US06859974B2
    • 2005-03-01
    • US10765812
    • 2004-01-27
    • James HaruchWai Y. LeungEmily SmithTimothy H. Hennessy
    • James HaruchWai Y. LeungEmily SmithTimothy H. Hennessy
    • B08B5/02F26B21/00A47L5/00
    • F26B21/004B08B5/023
    • A low pressure blower operated airknife having a housing with an elongated primary air discharge orifice for directing a narrow width curtain of air. The airknife includes an air-augmenting shroud which defines auxiliary discharge orifices on opposite longitudinal sides of the primary air discharge orifice such that air discharging from the primary discharge orifice creates a low pressure condition adjacent the auxiliary air discharge orifices for drawing additional air through the auxiliary discharge orifices which augments the velocity and volume of the discharging air current without the necessity for increasing the air inlet pressure or blower size. The shroud may take alternative forms, including pairs of wings disposed on opposite sides of the primary discharge orifice or hollow structures that surround the airknife housing. The airknife further is adapted for low pressure direction and application of air laden particles, such as preatomized liquid particles.
    • 一种低压鼓风机操作的气刀,其具有带有细长一次空气排放孔的壳体,用于引导狭窄的宽度的空气帘。 气刀包括一个空气增强罩,其在主空气排放孔的相对的纵向侧面上限定辅助排放孔,使得从主排放孔排出的空气在辅助空气排出孔附近产生低压状态,以通过辅助空气抽吸附加空气 排放孔,其不需要增加空气入口压力或鼓风机尺寸,这增加了排放气流的速度和体积。 护罩可以采取替代形式,包括设置在主排放口的相对侧上的一对翼或围绕气刀壳的中空结构。 气刀进一步适用于低压方向和应用含空气的颗粒,例如预先溶解的液体颗粒。
    • 6. 发明授权
    • Process for preparing a metal body having a hermetic seal
    • 制备具有气密密封的金属体的方法
    • US06228508B1
    • 2001-05-08
    • US09498673
    • 2000-02-07
    • Richard KassanitsTimothy H. Hennessy
    • Richard KassanitsTimothy H. Hennessy
    • B22F702
    • B22F3/225B22F7/062B22F2998/00B22F2998/10B22F2999/00Y10T428/12021Y10T428/12028B22F3/1021B22F3/10B22F2202/01
    • Disclosed is a process for preparing a metal body via metal powder molding techniques. First and second component parts are conventionally injection molded from a metal powder molding material. The first ultrasonic part is molded to have an ultrasonic energy director surface, which may be, for example, a rib having a triangular cross section. In accordance with the disclosed process, the first and second component parts then are ultrasonically welded to form a green assembly, and this green assembly is debound and sintered in accordance with conventional metal powder molding techniques to form a metal body. The metal body thus formed will be hermetically sealed along the ultrasonic weld. The process of the invention thus may be employed in the preparation of metal objects that require a hermetic seal, such as fluid flow nozzles, pressure vessels, and the like.
    • 公开了一种通过金属粉末成型技术制备金属体的方法。 第一和第二组分通常由金属粉末成型材料注塑成型。 第一超声波部件被模制成具有超声波能量引导器表面,其可以是例如具有三角形横截面的肋。 根据所公开的方法,然后对第一和第二组分进行超声波焊接以形成绿色组件,并且根据传统的金属粉末模塑技术将该生坯组件脱模并烧结以形成金属体。 这样形成的金属体将沿着超声波焊缝气密密封。 因此,本发明的方法可用于制备需要气密密封的金属物体,例如流体流动喷嘴,压力容器等。