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
    • 61. 发明授权
    • Miniature poppet valve assembly
    • 微型提升阀总成
    • US06722628B1
    • 2004-04-20
    • US10361135
    • 2003-02-06
    • Michael G. Seil
    • Michael G. Seil
    • F16K3102
    • F16K31/0658
    • Fluid valves suitable for manufacture as a miniature poppet valve assembly. The valves include an upper pole piece, a lower pole piece and an armature, all formed of magnetic material. The upper and lower pole pieces are permanently joined such as by a press fit to entrap an electromagnetic actuator coil and form the magnetic circuit for a moveable armature assembled therein. A valve seat member is molded to, presses, snaps or barbs onto the lower pole piece entrapping the armature and armature return spring to complete the assembly. Use of intended permanent assemblies and use of the parts of the magnetic circuit as the valve outer housing or case allows realization of valves in relatively smaller sizes and capable of relatively higher speeds and frequencies of operation than could be practically provided using valves of other designs or using other assembly techniques.
    • 适用于微型提升阀组件制造的流体阀。 这些阀包括由磁性材料形成的上极片,下极片和电枢。 上下极片通过压配合永久地接合,以夹住电磁致动器线圈并形成用于组装在其中的可移动衔铁的磁路。 阀座构件被模制成,压紧,卡扣或倒钩到夹在电枢和电枢复位弹簧上的下极片上以完成组件。 使用预期的永久组件和使用磁路的部件作为阀外壳或壳体允许实现相对较小尺寸的阀,并且能够实现比使用其它设计的阀门实际提供的更高的速度和操作频率, 使用其他装配技术。
    • 62. 发明申请
    • Anti-lock brake equipment solenoid valve
    • US20030201417A1
    • 2003-10-30
    • US10322733
    • 2002-12-19
    • HYUNDAI MOBIS, CO., LTD
    • Dong-Ho Ahn
    • F16K031/02
    • F16K31/0658B60T8/363
    • The present invention relates to an oil pressure control valve for an anti-lock brake, and more particularly to an oil pressure control valve for an anti-lock brake for discharging brake oil introduced from a master cylinder to an inlet port through a discharge port to a wheel cylinder. The oil pressure control valve for an anti-lock brake comprises a modulator block; a receiving section formed within the modulator block to communicate with the inlet and discharge ports; a housing mounted on the receiving section, having a coupling hole; a coil body which is coupled with the housing 10 at an outer portion thereof and formed within the modulator block; an armature which is coupled within the coil body and formed coaxial with the housing; a plunger coupled with the armature and mounted within the housing, the plunger having a projection at an end thereof; a compressed spring coupled to one lateral side of the projection of the plunger; a valve seat to which one end of the compressed spring is supported, the valve seat installed in the coupling hole of the housing; a chamber defined in the valve seat; and an openable hole for communicating with the chamber to adjust brake oil flow, wherein the openable hole is tightly contacted to the projection and has an openable construction, thereby allowing it to be attached/detached to/from the projection, and the openable hole of the valve seat and the projection of the plunger are positoned within the discharge hole of the housing. Therefore, in accordance with the present invention, it is possible to reduce parts so that the control valve are advantageously decreased in size and weight. Accordingly, it is possible to simplify the construction of a valve housing, also simplify an assembly process, and enhance a competitiveness of a product as well as increase a productivity according the reduction of parts. In addition, according to the present invention, it allows brake oil to flow rapidly and smoothly when putting a break.
    • 63. 发明申请
    • High-pressure switching valve device
    • 高压切换阀装置
    • US20020139953A1
    • 2002-10-03
    • US10109728
    • 2002-04-01
    • Shoichi HagiwaraMasaru GamohNobutaka TeshimaKiyoshi YoshizumiTakeshi Yamamoto
    • F16K031/02F16K001/00
    • F16K31/0658F16K1/36F16K25/00
    • This invention is intended to greatly improve an allowable pressure limit with a simple structure and without depending on a material strength of a seal member. A high-pressure switching valve device includes a valve main body 10 pressed to contact with an end face 8 of a valve seat when the high-pressure switching valve device is closed, and a seal member 9 pressed to contact with the end face 8 of the valve seat when the high-pressure switching valve device is closed. When the high-pressure switching valve device is closed, the seal member 9 is located on a high-pressure side 1a and the valve main body 10 is located on a low-pressure side 1b. The valve main body 10 is constituted out of a high strength member and the seal member 9 is constituted out of an annular elastic member.
    • 本发明旨在通过简单的结构大大提高容许压力极限,而不依赖于密封构件的材料强度。 高压切换阀装置包括当高压切换阀装置关闭时被压向与阀座的端面8相接触的阀主体10,以及密封构件9,其被按压以与阀座的端面8接触 当高压切换阀装置关闭时,阀座。 当高压切换阀装置关闭时,密封构件9位于高压侧1a上,阀主体10位于低压侧1b。 阀主体10由高强度构件构成,密封构件9由环形弹性构件构成。
    • 68. 发明授权
    • Solenoid valve
    • 电磁阀
    • US5441232A
    • 1995-08-15
    • US166348
    • 1993-12-10
    • Masaharu Tanaka
    • Masaharu Tanaka
    • F16K31/06G05D7/06
    • F16K31/0679F16K31/0658G05D7/0635
    • A solenoid valve capable of controlling precisely a small quantity of flow and obtaining a large quantity of fluid. In a duty control solenoid valve, there are provided a guide body for shutting off a fluid passage and in which a plunger is slidably guided, plural stages of flow control ports which are provided in the guide body and are opened or closed in response to the movement of the plunger, a plurality of return springs in response to the plural stages of flow control ports whereby the excitation energy of the electromagnetic coil can be switched to plural stages or the electromagnetic coils are selectable separately, thereby varying the opening areas of the plural stages of flow control ports.
    • 一种能够精确地控制少量流动并获得大量流体的电磁阀。 在占空比控制电磁阀中,设置有用于切断流体通道并且柱塞被可滑动地引导的引导体,多个流量控制端口,其设置在引导体中并响应于该引导体而被打开或关闭 柱塞的移动,响应于多级流量控制端口的多个复位弹簧,由此电磁线圈的激发能量可以切换到多级,或者电磁线圈可以分开选择,从而改变多个开关面积 流量控制端口的阶段。
    • 69. 发明授权
    • Magnetically linked multi-valve system
    • 磁连接多阀系统
    • US5404908A
    • 1995-04-11
    • US194722
    • 1994-02-14
    • Robert H. Reinicke
    • Robert H. Reinicke
    • F16K11/04F16K11/14F16K31/06
    • F16K31/0658F16K11/04F16K11/14Y10T137/0497Y10T137/5987Y10T137/87161
    • A magnetically linked twin-valve assembly is electromagnetically actuated in response to excitation of a single solenoid winding. Valve-body structure features relatively thick non-magnetic and magnetic slabs which are bonded into a consolidated body block, in laminated alternation, prior to machining the same for dual-valve purposes. Two spaced guide bores through the body block accommodate movement of separate valve members of magnetic material; the upper end of each of these valve members is upwardly exposed in confronting relation with one to the exclusion of the other pole face of the U-shaped core of an electromagnet, whereby a single magnetic circuit, established by the U-shaped core and the valve members, relies upon the middle slab of magnetic material to complete the circuit by magnetically linking both valve members. Inlet and outlet flows of pressure fluid pass through separate chambers formed primarily in the lowermost slab on the respective guide-bore alignments. Except for a valve-seat and outlet, each valve chamber is closed at its lower end, and spring means reacting between the pole faces of the U-shaped core and the respective valve members normally urge the valve members into seated, valve-closed coaction with their valve seats. Electrical excitation is effective to displace both valve members to valve-open position, against spring action, for assured valve closure when the electrical excitation ceases.
    • 磁耦合双阀组件响应于单个螺线管绕组的激励而被电磁致动。 阀体结构具有相对厚的非磁性和磁性板,它们在用于双阀目的的机械加工之前被层压交替地结合到固结体块中。 通过主体块的两个间隔开的导向孔适应磁性材料的分离的阀构件的运动; 这些阀构件的每一个的上端以与电磁体的U形磁芯的另一个极面排除的方式面对面地向上暴露,由此由U形磁芯和 阀构件依赖于中间的磁性材料板,通过磁性连接两个阀构件来完成电路。 压力流体的入口和出口流动通过主要在相应导孔对准物上最下面的板坯上形成的分开的室。 除了阀座和出口之外,每个阀室在其下端都是封闭的,并且弹簧装置在U形铁心和各个阀构件的极面之间反应通常将阀构件推入就座的阀闭合 与他们的阀座。 电激励有效地将两个阀构件移动到阀打开位置,以防止弹簧作用,以在电激励停止时确保阀关闭。