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    • 31. 发明授权
    • Apparatus and method for producing electrical power
    • 用于生产电力的装置和方法
    • US5361377A
    • 1994-11-01
    • US868183
    • 1992-04-14
    • John A. Miller
    • John A. Miller
    • F01K3/18G21D5/16G21C7/32
    • G21D5/16F01K3/183G21Y2002/201G21Y2004/302Y10S376/911
    • A method for producing electrical power from steam generated by a nuclear reactor comprising the steps of: providing a nuclear reactor engaged to a steam generator for generating steam when heated aqueous product is passed therethrough; and passing heated aqueous product through the steam generator to produce steam. The method additionally comprises passing the produced steam through a fossil fired or steam to steam superheater to superheat the produced steam; and passing the superheated produced steam through a first turbine to expand the superheated produced steam and produce steam. The produced steam from the first turbine is subsequently reheated to obtain a reheated steam. The obtained reheated steam is then passed through a second turbine coupled to a generator in order to expand the obtained reheated steam and generate electrical power with the generator. An apparatus to accomplish the method for producing electrical power from steam generated by a nuclear reactor.
    • 一种由核反应堆生成的蒸汽产生电力的方法,包括以下步骤:提供当加热的含水产物通过时与蒸汽发生器接合以产生蒸汽的核反应堆; 并使加热的含水产物通过蒸汽发生器产生蒸汽。 该方法还包括将产生的蒸汽通过化石燃烧或蒸汽传递到蒸汽过热器以使产生的蒸汽过热; 并使过热的产生的蒸汽通过第一涡轮以膨胀过热的产生的蒸汽并产生蒸汽。 随后将来自第一涡轮机的产生的蒸汽再加热以获得再热蒸汽。 所获得的再热蒸汽然后通过耦合到发电机的第二涡轮机,以便扩大所获得的再热蒸汽并用发电机产生电力。 实现由核反应堆产生的蒸汽产生电力的方法的装置。
    • 33. 发明授权
    • Process for fabricating integrally bladed bimetallic rotors
    • 整体叶片双金属转子的制造工艺
    • US4479293A
    • 1984-10-30
    • US325149
    • 1981-11-27
    • John A. MillerRalph E. AndersonMarvin M. Allen
    • John A. MillerRalph E. AndersonMarvin M. Allen
    • B21J5/00B21K1/36B23P15/00B21K3/00
    • B21K1/36B21J5/00B23P15/006Y10T29/49325
    • An integrally bladed bimetallic rotor for high temperature operation having airfoils with good stress rupture and creep strength and a hub with high tensile strength and good low cycle fatigue resistance is made from a preform of two concentric cylinders of different superalloy metals metallurgically bonded to each other at their interface, both materials being in such a condition that they exhibit superplastic behavior at a certain, controlled strain rate and temperature without incurring substantial grain growth. The metal of the outer cylinder is selected such that it has a lower gamma prime solvus temperature than the metal of the inner cylinder. The preform is isothermally forged at the controlled strain rate and temperature to form the airfoils from the alloy of the outer cylinder and to form the hub from the alloy of the inner cylinder. A sharp, reproducible interface is created between the two alloys. After forging, the rotor is heated to a temperature between the gamma prime solvus temperatures of the alloys and under conditions which cause full gamma prime solutioning of the airfoils up to the interface but only partial gamma prime solutioning of the rotor hub. The resulting airfoils have coarse grains and the hub has fine equiaxed grains.
    • 用于高温操作的整体叶片双金属转子具有良好的应力断裂和蠕变强度的翼型和具有高拉伸强度和良好的低循环耐疲劳性的轮毂,由不同超级合金金属的两个同心圆柱体的预成型件相互冶金地结合 它们的界面,这两种材料处于这样的条件下,即它们在一定的受控应变速率和温度下表现出超塑性,而不会引起大量的晶粒生长。 选择外筒的金属使得其具有比内筒的金属更低的伽马值固溶温度。 预制件在受控的应变速率和温度下等温锻造,以从外筒的合金形成翼型,并从内筒的合金形成轮毂。 在两种合金之间产生了一种清晰可重复的界面。 在锻造之后,将转子加热到合金的γ'固溶温度之间的温度,并且在使翼型件完全伽马素溶解到界面上但仅仅转子毂的部分伽马素溶液的条件下被加热。 所得到的翼型件具有粗晶粒,并且毂具有细等轴晶粒。
    • 34. 发明授权
    • Electromagnetic fuel injector
    • 电磁燃油喷射器
    • US4360161A
    • 1982-11-23
    • US210976
    • 1980-11-28
    • William B. ClaxtonGary L. CaseyAlbert BlatterJohn A. Miller
    • William B. ClaxtonGary L. CaseyAlbert BlatterJohn A. Miller
    • B05B1/34F02M51/06F02M51/08F02M61/14F02M61/16F02M63/00
    • F02M51/0671B05B1/3405F02M51/0685F02M61/145F02M61/162F02M2051/08F02M2200/505Y10S239/90
    • A high flow rate electromagnetic fuel injector valve with a rapid response time is disclosed for utilization in electronic fuel injection systems. The fuel injector valve comprises a stator means and a valve assembly having a self-centering valve member reciprocally mounted in a valve housing. The valve member consists of a ball valve with a semispherical sealing surface connected by a stem to a magnetically attractable cup-shaped armature. The armature is preferably coated with a friction reducing material where it slideably contacts an armature guide bore of the injector valve during its reciprocation. The ball valve of the valve member obturates an exit orifice of the valve housing by sealing against a conical valve seat which has been coined to receive it. Adjacent to the ball valve and conical valve seat interface are vortex generating and metering orifices for the tangential entry of fuel into a swirl chamber of the valve housing. The positioning of the metering orifices, which are precisely sized by ballizing to control flow rate, is used to regulate the injector spray angle generated by the vortex of fuel entering the swirl chamber. The conical surface of the valve seat produces vortex amplification to further increase the swirl effect caused by the positioning of the entry orifices.
    • 公开了一种具有快速响应时间的高流量电磁燃料喷射阀,用于电子燃油喷射系统。 燃料喷射阀包括定子装置和具有往复安装在阀壳体中的自定心阀构件的阀组件。 阀构件包括球阀,其具有通过杆连接到可磁吸收的杯形电枢的半球形密封表面。 电枢优选地涂覆有减摩材料,其中它在其往复运动期间可滑动地接触喷射器阀的电枢引导孔。 阀构件的球阀通过密封抵靠已被制造成接收它的锥形阀座而堵塞阀壳体的出口孔。 邻近球阀和锥形阀座接口是涡流产生和计量孔,用于将燃料切向进入阀壳的涡流室。 使用精确尺寸通过球化来控制流量的计量孔的定位用于调节由进入涡流室的燃料涡流产生的喷射器喷射角度。 阀座的锥形表面产生涡流放大,以进一步增加由入口孔定位引起的涡流效应。
    • 35. 发明授权
    • Electromagnetic fuel injector
    • 电磁燃油喷射器
    • US4232830A
    • 1980-11-11
    • US956692
    • 1978-11-01
    • Gary L. CaseyAlbert BlatterJohn A. MillerWilliam B. Claxton
    • Gary L. CaseyAlbert BlatterJohn A. MillerWilliam B. Claxton
    • F02M51/06F02M51/08F02M61/14F02M63/00F02M69/04B05B1/32
    • F02M51/0678F02M61/145F02M69/043F02M2051/08F02M2200/505
    • A high flow rate electromagnetic injector valve with a rapid response time is disclosed for utilization in a single point fuel injection system. Centrally bored end caps are fixed at the front and rear ends of a tubular injector body and a coil wound on a bobbin is disposed inside the body chamber between the end caps. The front end cap receives within its bore a valve assembly including a valve housing and a needle valve with attached armature reciprocally movable against a valve seat to obturate a metering orifice in the valve housing. The valve housing contains fuel inlets for the pressurized entry of fuel into the injector and the needle valve is ported to provide fluid communication to the armature to relieve pressure build-up. The rear end cap mounts within its bore a core member acting as a stator which extends through a central bobbin bore to form a controllable air gap adjacent the armature: the core member further contains internally an adjustment screw and ball member. The ball member and adjustment screw cooperate with a recessed closure spring positioned substantially within the armature to controllably bias the needle valve against the valve seat. Because of its recessed position, the force of the closure spring is applied substantially along the central axis of the injector valve and the ball member prevents torsional windup forces from being generated by the spring. O-ring seals for the bobbin bore are provided in compression between recesses in the bobbin and the slower contracting material of the front end cap and core member to produce extended cold temperature operation.
    • 公开了一种具有快速响应时间的高流量电磁喷射阀,用于单点燃料喷射系统。 中心钻孔端盖固定在管状喷射器主体的前端和后端,并且缠绕在线轴上的线圈设置在端盖之间的主体室内。 前端盖在其孔内容纳有包括阀壳体和针阀的阀组件,其具有可相对于阀座往复移动的附接电枢,以堵塞阀壳体中的计量孔。 阀壳体包含用于加压进入喷射器的燃料入口,并且针阀被移入以提供与电枢的流体连通以减轻压力积聚。 后端盖在其孔内安装有用作定子的芯构件,其延伸穿过中心筒孔以形成邻近衔铁的可控空气间隙:芯构件还内部包含调节螺钉和球构件。 球构件和调节螺钉与基本上位于衔铁内的凹入的闭合弹簧配合,以可控制地将针阀偏压抵靠阀座。 由于其凹入位置,闭合弹簧的力基本上沿着喷射器阀的中心轴线施加,并且球部件防止由弹簧产生扭转卷起力。 筒管的O形圈密封件在筒管中的凹槽和前端盖和芯部件的较慢的收缩材料之间被压缩地设置,以产生延长的冷温度操作。
    • 36. 发明授权
    • Interspinous process spacer insertion device
    • 椎间间隔插入装置
    • US08690920B2
    • 2014-04-08
    • US12976888
    • 2010-12-22
    • Miquelangelo J. Perez-CruetJohn R. PepperJohn A. Miller
    • Miquelangelo J. Perez-CruetJohn R. PepperJohn A. Miller
    • A61B17/70
    • A61B17/7065
    • An interspinous process spacer insertion device that positions an interspinous process spacer between the spinous process of adjacent vertebrae in a minimally invasive percutaneous surgical procedure. The device includes a trocar rod that extends through a cannulated sleeve. The spacer is attached to the end of the cannulated sleeve, where a trocar tip of the trocar rod extends through the spacer. The trocar rod is moved through the cannulated sleeve and an incision in the patient, and is positioned between the spinous process of the vertebra to align the device. The cannulated sleeve is then moved down the trocar rod so that the spacer slides between the spinous process, and the trocar rod is then withdrawn from the patient. The spacer is then rotated so that it locks behind the spinous process, and the cannulated sleeve is detached from the spacer and removed from the patient.
    • 棘突间间隔插入装置,其在微创经皮外科手术中将棘突间间隔物定位在相邻椎骨的棘突之间。 该装置包括穿过套管的套管针杆。 间隔件附接到套管套筒的端部,套管针杆的套管针尖延伸穿过间隔件。 套管针杆通过套管套管和患者的切口移动,并且位于椎骨的棘突之间以对准装置。 然后将套管套筒向下移动套管针杆,使得间隔件在棘突之间滑动,然后将套管针杆从患者身体中取出。 然后将间隔物旋转,使其锁定在棘突的后面,并且将套管套筒与间隔物分离并从患者身上取出。
    • 40. 发明授权
    • Side dressing shield
    • 旁边护罩
    • US07739969B1
    • 2010-06-22
    • US12317914
    • 2008-12-30
    • John A. Miller
    • John A. Miller
    • A01C23/00
    • A01C5/062A01C23/024Y10S111/90
    • An ammonia knife assembly is mounted onto a toolbar and is moved across a field to apply ammonia into the bottom of a trench. The ammonia knife assembly includes a knife for piercing the ground and creating the trench, an ammonia supply tube, and a horizontal shield attached to the knife. The shield has a rounded portion extending forwardly from the leading edge and two side portions extending outwardly from the sides of the knife for deflecting any dirt particles that may be thrown upwardly and outwardly from the leading edge of the knife as it pierces the ground.
    • 将氨刀组件安装在工具栏上并且横过场移动以将氨施加到沟槽的底部。 氨刀组件包括用于刺穿地面并形成沟槽的刀,氨供应管和附接到刀的水平屏蔽。 屏蔽件具有从前缘向前延伸的圆形部分和从刀的两侧向外延伸的两个侧部,用于偏转任何可从刀的前缘向上和向外抛出的灰尘颗粒,因为其刺穿地面。