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
    • Method of preparing a transparency having a hot melt ink pattern
    • 制备具有热熔油墨图案的透明体的方法
    • US5980981A
    • 1999-11-09
    • US651321
    • 1991-02-06
    • Steven J. FultonGerald T. Peters, Jr.Charles W. Spehrley, Jr.Lawrence R. Young
    • Steven J. FultonGerald T. Peters, Jr.Charles W. Spehrley, Jr.Lawrence R. Young
    • B41J2/01B41J2/015B41J29/00B41M1/30B41M3/00B41M5/00B41M5/382B41M7/00B05D5/06
    • B41M7/00B41M5/00
    • A method for preparing a transparency involves application of hot melt ink to a transparent substrate to form a three-dimensional pattern with subsequent heating of the hot melt image above its melting point to change the configuration of the upper surface. In the embodiment described in the specification, a hot melt ink image on a substrate is treated in a continuous manner by moving it along a platen having a heating zone to melt drops of hot melt ink and cause them to spread on the substrate. The platen has a flat central portion and curved portions at each end with curvatures sufficient to prevent formation of cockle. At the output end of the heating zone, the substrate is moved continuously into a quenching zone where a cooling platen cools the substrate by thermal contact at a rapid rate to prevent crystallization or frosting of the hot melt ink image. After the quenching zone, the substrate is moved along a surface having a reverse curvature with respect to the curved portions of the heating platen to eliminate residual curvature of the substrate resulting from the curved portions of the heating platen.
    • 制备透明体的方法包括将热熔油墨施加到透明基板上以形成三维图案,随后将热熔体图像加热至其熔点之上,以改变上表面的构造。 在说明书中描述的实施例中,通过沿着具有加热区的压板移动它来熔化液体熔融墨水并使它们在基板上扩散,以连续的方式处理基板上的热熔油墨图像。 压板具有平坦的中心部分,并且在每个端部具有足以防止起翘形成的曲率的弯曲部分。 在加热区的输出端,基板被连续地移动到冷却区域中,其中冷却台板以快速速率通过热接触来冷却基板,以防止热熔体油墨图像的结晶或结霜。 在淬火区域之后,基板相对于加热板的弯曲部分沿着具有相反曲率的表面移动,以消除由加热台板的弯曲部分产生的基板的残余曲率。
    • 2. 发明授权
    • Treatment of hot melt ink images
    • 处理热熔墨水图像
    • US5114747A
    • 1992-05-19
    • US651302
    • 1991-02-06
    • Steven J. FultonGerald T. Peters, Jr.Charles W. Spehrley, Jr.Lawrence R. Young
    • Steven J. FultonGerald T. Peters, Jr.Charles W. Spehrley, Jr.Lawrence R. Young
    • B41M1/30B41M3/00B41M7/00
    • B41M5/0047B41M5/0064B41M7/0027
    • In the embodiment described in the specification, a hot melt ink coating such as an image on a substrate is treated in a continuous manner by moving it along a platen having a heating zone to melt drops of hot melt ink and cause them to spread on the substrate. The platen has a flat central portion and curved portions at each end with curvatures sufficient to prevent formation of cockle. At the output end of the heating zone, the substrate is moved continuously into a quenching zone where a cooling platent cools the substrate by thermal contact at a rapid rate of at least 50.degree. C. per second to prevent crystallization or frosting of the hot melt ink image thereby minimizing light transmission losses. After the quenching zone, the substrate is moved along a surface having a reverse curvature with respect to the curved portions of the heating platen to eliminate residual curvature of the substrate resulting from the curved portions of the heating platen.
    • 在说明书中描述的实施例中,通过沿着具有加热区的压板移动它来熔化液体熔融墨水并使其在 基质。 压板具有平坦的中心部分,并且在每个端部具有足以防止起翘形成的曲率的弯曲部分。 在加热区的输出端,衬底被连续地移动到淬火区域,其中冷却板通过以每秒至少50℃的快速热接触来冷却衬底,以防止热熔体的结晶或结霜 从而使光传输损失最小化。 在淬火区域之后,基板相对于加热板的弯曲部分沿着具有相反曲率的表面移动,以消除由加热台板的弯曲部分产生的基板的残余曲率。
    • 3. 发明授权
    • Treatment of hot melt ink images
    • 处理热熔墨水图像
    • US5281442A
    • 1994-01-25
    • US823874
    • 1992-01-22
    • Steven J. FultonGerald T. Peters, Jr.Charles W. Spehrley, Jr.Lawrence R. Young
    • Steven J. FultonGerald T. Peters, Jr.Charles W. Spehrley, Jr.Lawrence R. Young
    • B41M1/30B41M3/00B41M7/00B05D3/02
    • B41M5/0047B41M5/0064B41M7/0027
    • In the embodiment described in the specification, a hot melt ink image on a substrate is treated in a continuous manner by moving it along a platen having a heating zone to melt drops of hot melt ink and cause them to spread on the substrate. The platen has a flat central portion and curved portions at each end with curvatures sufficient to prevent formation of cockle. At the output end of the heating zone, the substrate is moved continuously into a quenching zone where a cooling platen cools the substrate by thermal contact at a rapid rate to prevent crystallization or frosting of the hot melt ink image. After the quenching zone, the substrate is moved along a surface having a reverse curvature with respect to the curved portions of the heating platen to eliminate residual curvature of the substrate resulting from the curved portions of the heating platen.
    • 在说明书中描述的实施例中,通过沿着具有加热区的压板移动它来熔化液体熔融墨水并使它们在基板上扩散,以连续的方式处理基板上的热熔油墨图像。 压板具有平坦的中心部分,并且在每个端部具有足以防止起翘形成的曲率的弯曲部分。 在加热区的输出端,基板被连续地移动到冷却区域中,其中冷却台板以快速速率通过热接触来冷却基板,以防止热熔体油墨图像的结晶或结霜。 在淬火区域之后,基板相对于加热板的弯曲部分沿着具有相反曲率的表面移动,以消除由加热台板的弯曲部分产生的基板的残余曲率。
    • 6. 发明授权
    • Subtractive color hot melt ink reflection images on opaque substrates
    • 在不透明基板上的消色彩热熔墨水反射图像
    • US5105204A
    • 1992-04-14
    • US560081
    • 1990-07-27
    • Paul A. HoisingtonSteven J. FultonCharles W. Spehrley, Jr.Lawrence R. Young
    • Paul A. HoisingtonSteven J. FultonCharles W. Spehrley, Jr.Lawrence R. Young
    • B41J2/175B41M1/14B41M7/00G01D15/16
    • B41J2/17593B41M1/14B41M7/00G01D15/16
    • In the particular embodiments of the invention described in the specification, an opaque subtractive color ink reflection print having improved color purity resulting from reduced frosting and crystallization of the ink layers is prepared by reheating the ink image to a temperature above the melting point of at least one of the inks and then quenching the image by cooling it at a rate of at least 50.degree. C. per second. In one embodiment, the ink image is produced by an ink jet head applied to a substrate supported on a platen maintained at least 20.degree. C. below the melting point of the inks to inhibit spreading of the inks into the substrate, and the image is thereafter heated to a temperature at least 20.degree. C. above the melting point of at least one of the inks for a period of 3 to 5 seconds and then quenched at a rate of 500.degree. C. per second to produce an image having less than 20% light loss resulting from scattering of light by frosting and crystallization of the ink in the layers.
    • 在本说明书中描述的本发明的具体实施方案中,通过将油墨图像再加热至高于至少熔点的温度来制备具有由于油墨层的结霜和结晶减少而导致的改善的色纯度的不透明减色油墨反射印刷 一种油墨,然后通过以至少50℃/秒的速率冷却来使图像淬灭。 在一个实施例中,油墨图像是通过喷墨头产生的,喷墨头被施加到支撑在保持在油墨熔点以上至少20℃的压板上的基板上以抑制油墨扩散到基板中。 然后在至少一种油墨的熔点以上至少20℃的温度加热3至5秒,然后以每秒500℃的速度淬火以产生小于等于 通过层中的油墨的结霜和结晶而散射光造成的20%的光损失。
    • 7. 发明授权
    • Treatment of hot melt ink images
    • 处理热熔墨水图像
    • US5023111A
    • 1991-06-11
    • US416158
    • 1989-10-02
    • Steven J. FultonGerald T. Peters, Jr.Charles W. Spehrley, Jr.Lawrence R. Young
    • Steven J. FultonGerald T. Peters, Jr.Charles W. Spehrley, Jr.Lawrence R. Young
    • B41J2/01B41J2/015B41J29/00B41M1/30B41M3/00B41M5/00B41M5/382B41M7/00
    • B41M7/00B41M5/00
    • In the embodiment described in the specification, a hot melt ink image on a substrate is treated in a continuous manner by moving it along a platen having a heating zone to melt drops of hot melt ink and cause them to spread on the substrate and decrease the angle of contact of the drops with the surface of the substrate. The platen has a flat central portion and curved portions at each end with curvatures sufficient to prevent formation of cockle. At the output end of the heating zone, the substrate is moved continuously into a quenching zone where a cooling platen cools the substrate by thermal contact at a rapid rate to prevent crystallization or frosting of the hot melt ink image. After the quenching zone, the substrate is moved along a surface having a reverse curvature with respect to the curved portions of the heating platen to eliminate residual curvature of the substrate resulting from the curved portions of the heating platen.
    • 在本说明书中描述的实施例中,通过沿着具有加热区的压板移动它来连续地处理衬底上的热熔体油墨图像以熔化热熔体墨水滴并使其在基板上扩散并减小 液滴与基材表面的接触角。 压板具有平坦的中心部分,并且在每个端部具有足以防止起翘形成的曲率的弯曲部分。 在加热区的输出端,基板被连续地移动到冷却区域中,其中冷却台板以快速速率通过热接触来冷却基板,以防止热熔体油墨图像的结晶或结霜。 在淬火区域之后,基板相对于加热板的弯曲部分沿着具有相反曲率的表面移动,以消除由加热台板的弯曲部分产生的基板的残余曲率。
    • 8. 发明授权
    • Fluid ejection system
    • 流体喷射系统
    • US07699804B2
    • 2010-04-20
    • US10768854
    • 2004-01-30
    • James J. BarryMark C. BagleyPeter L. BurghardtSteven J. Fulton
    • James J. BarryMark C. BagleyPeter L. BurghardtSteven J. Fulton
    • A61M37/00
    • A61M5/30A61M5/204A61M5/286A61M5/31596A61M2005/312A61M2005/3128A61M2005/31598
    • A fluid ejection system (20) comprising a cartridge (24), an ejector (32, 300) and, optionally, a fill station (28) for filling the cartridge with a fluid, such as a vaccine. In some embodiments (52), the cartridge includes a transfer passageway (96) for receiving fluid from the fill station. In other embodiments (200, 400), the cartridge includes a vented fluid reservoir (208, 408) offset from an ejection chamber (224, 420). In yet other embodiments (500, 600), the cartridge includes a vented fluid reservoir chamber (512, 636) inline with the ejection chamber (508, 644). In still other embodiments (700, 1000, 1100), the cartridge includes first and second chambers (728, 736, 1036, 1048, 1136, 1148) initially fluidly sealed from on another by a valve, e.g., either a traveling valve (704, 800, 900, 1200, 1300) or a temporarily stationary valve (1004, 1104).
    • 流体喷射系统(20),其包括筒(24),喷射器(32,300)和可选地用于用诸如疫苗的流体填充盒的填充站(28)。 在一些实施例(52)中,盒包括用于从填充站接收流体的传送通道(96)。 在其他实施例(200,400)中,该盒包括从喷射室(224,420)偏移的排出的流体储存器(208,408)。 在其它实施例(500,600)中,该盒包括与喷射室(508,644)成直线的通气的流体储存室(512,636)。 在另外的其它实施例(700,1000,1100)中,盒包括首先和第二腔室(728,736,1036,1048,1136,1148),其通过阀例如流动阀(704) ,800,900,1200,1300)或临时固定的阀(1004,1104)。
    • 10. 发明授权
    • Apparatus and method for sensing temperature
    • 用于感测温度的装置和方法
    • US06928379B2
    • 2005-08-09
    • US10601762
    • 2003-06-23
    • Steven J. FultonEdward A. NelsonGregory A. Peterson
    • Steven J. FultonEdward A. NelsonGregory A. Peterson
    • G01K7/20G01K11/00A21B1/02G01L19/04
    • G01K7/206
    • An apparatus and method for measuring the temperature in an oven includes a circuit and software algorithm that reads the voltage across a standard resistive temperature device (RTD) or thermistor to determine temperature measured by the device. Using an unregulated high voltage supply to increase the gain and resolution, it overcomes the problems of small changes in resistance with respect to temperature. An additional input to measure the unregulated supply voltage is used as a reference voltage input. The apparatus includes resistor dividers for both the temperature sensor and reference voltages, a microprocessor having analog inputs, and additional components for noise suppression and open sensor protection.
    • 用于测量烘箱中的温度的装置和方法包括电路和软件算法,其读取跨标准电阻温度装置(RTD)或热敏电阻的电压,以确定由该装置测量的温度。 使用不稳定的高压电源来增加增益和分辨率,克服了电阻相对于温度变化小的问题。 用作测量未稳压电源电压的附加输入用作参考电压输入。 该装置包括用于温度传感器和参考电压的电阻分压器,具有模拟输入的微处理器和用于噪声抑制和开放传感器保护的附加组件。