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    • 3. 发明授权
    • Pressure regulating valve
    • 调压阀
    • US4423747A
    • 1984-01-03
    • US283666
    • 1981-07-15
    • Joachim HeiserVolkmar Leutner
    • Joachim HeiserVolkmar Leutner
    • F16K31/06G05D16/20H01H50/20G05D16/00
    • H01H50/20G05D16/2086Y10T137/2409
    • A pressure regulating valve for controlling a fluid pressure proportionally to an electric nominal value signal has a housing, a valve body in the housing, a proportionally operating magnet, a displacement pickup, a difference amplifier having inputs receiving a nominal value signal and an output signal from said displacement pickup, and an output connected with an input of the magnet, a valve cone associated with the valve body and loaded in a direction opposite to a fluid pressure as well as connected with a movable member of the displacement pickup, and a measuring spring loading the valve cone and fixedly abutting against the housing, wherein the valve member is movable in the housing and adjustable by an armature of the magnet against a force of the measuring spring.
    • 用于与电动标称值信号成比例地控制流体压力的压力调节阀具有壳体,壳体中的阀体,成比例地操作的磁体,位移拾取器,具有接收标称值信号的输入的差分放大器和输出信号 从所述位移拾取器输出的输出端和与所述磁体的输入相连的输出端,与所述阀体相关联并且以与流体压力相反的方向加载的阀锥以及与所述位移拾取器的可移动构件连接的测量头 弹簧加载阀锥体并且牢固地抵靠壳体,其中阀构件可在壳体中移动,并且抵抗测量弹簧的力由磁体的电枢调节。
    • 4. 发明授权
    • Injection-molding machine for synthetic plastic material
    • 合成塑料注射成型机
    • US4120631A
    • 1978-10-17
    • US664806
    • 1976-03-08
    • Volkmar LeutnerRoman Romes
    • Volkmar LeutnerRoman Romes
    • B29C45/00B29C37/00B29C45/57B29C45/70B29C45/77B29C45/82B29F1/06
    • B29C45/77
    • The injection-molding machine is operative when activated for performing a complete injection-molding cycle. The machine includes a mold defining a mold cavity, a plastifying and injecting screw, and an hydraulic cylinder-and-piston unit for driving the screw. During the course of a single injection-molding cycle, negative-feedback control of the pressure in the mold cavity undergoes an automatic transition into negative-feedback control of the pressure in the hydraulic cylinder of the cylinder-and-piston unit. The transition is selected to be abrupt or gradual, and if gradual there will be a transitional interval during which a composite negative-feedback control of both the mold cavity and hydraulic cylinder pressures is occurring.
    • 注射成型机在被激活时可以进行完整的注模循环。 机器包括限定模具腔的模具,塑化和注射螺杆,以及用于驱动螺钉的液压缸和活塞单元。 在单次注射成型循环过程中,模具腔中的压力的​​负反馈控制经历了自动转换为气缸和活塞单元的液压缸中的压力的​​负反馈控制。 该过渡被选择为突然的或渐进的,并且如果逐渐地将存在过渡间隔,在该过程间隔期间发生模腔和液压缸压力的复合负反馈控制。
    • 6. 发明授权
    • Electromagnetically operated directional valve
    • 电磁式换向阀
    • US6065496A
    • 2000-05-23
    • US43041
    • 1999-03-15
    • Hermann SanzenbacherPeter KrollVolkmar LeutnerJoachim Zumbraegel
    • Hermann SanzenbacherPeter KrollVolkmar LeutnerJoachim Zumbraegel
    • F15B13/04F15B13/044F16K31/06F16K31/11
    • F16K31/0679F15B13/0402F15B13/044F16K31/0613F15B2013/0412Y10T137/86622
    • An electromagnetically actuated directional control valve is proposed, whose control slide (18) can be switched against a restoring spring system (45) into three switching positions (39, 41, 42) by a double-lift magnet (12). The spring system (45) has a strong spring (31) and a counter-acting weak spring (37), which are disposed on both sides of the control slide (18). With a pushing magnet (12), the control slide (18) is solely deflected against the weak spring (37), which is supported on it over the entire lift area. With a pulling magnet (12), a spring plate (32), which centers the center position (39), is pulled way from the control slide (18), which now is displaced by the weak spring (37), against the force of the strong spring (31). The tappet (29), connected with the armature, and the control slide (18) are separate independent components, which only form a frictionally connected operative connection.
    • PCT No.PCT / DE97 / 00277 Sec。 371 1999年3月15日 102(e)1999年3月15日PCT 1997年2月13日提交PCT公布。 出版物WO97 / 32137 日期1997年9月4日提出了一种电磁方向控制阀,其控制滑块(18)可以通过双提升磁体(12)与复位弹簧系统(45)切换成三个切换位置(39,41,42) )。 弹簧系统(45)具有设置在控制滑块(18)两侧的强弹簧(31)和反作用弱弹簧(37)。 通过推动磁体(12),控制滑块(18)仅偏转在弱弹簧(37)上,弱弹簧(37)被支撑在整个升降区域上。 利用拉动磁体(12),以中心位置(39)为中心的弹簧板(32)从控制滑块(18)拉开,控制滑块现在被弱弹簧(37)移位,抵抗力 的强劲的春天(31)。 与电枢连接的挺杆(29)和控制滑块(18)是独立的独立部件,其仅形成摩擦连接的可操作连接。
    • 9. 发明授权
    • Electromagnetic directional control valve
    • 电磁方向控制阀
    • US5197709A
    • 1993-03-30
    • US773903
    • 1991-10-29
    • Peter KrollGunter NeumannVolkmar Leutner
    • Peter KrollGunter NeumannVolkmar Leutner
    • F15B13/04F15B13/044
    • F15B13/044F15B13/0402Y10T137/86622
    • An electromagnetically actuated directional control valve has a housing having a chamber, a control slider guided in the housing so as to be longitudinally movable, a restoring device centering the control slider and including a restoring spring and a spring plate, a magnet having an armature which can deflect the slider into a working position against a force of the restoring spring, a pressure tube communicating with the chamber in the housing via a pressure medium and receiving the armature. The pressure tube receives the restoring spring and the spring plate in its interior. The pressure tube also has a support which prevents the spring plate from falling out.
    • PCT No.PCT / DE90 / 00327 Sec。 371日期1991年10月29日 102(e)日期1991年10月29日PCT 1990年5月9日PCT PCT。 第WO90 / 13749号公报 日本1990年11月15日。电磁致动方向控制阀具有壳体,壳体具有引导在壳体中以便可纵向移动的控制滑块,以控制滑块为中心的恢复装置,包括复位弹簧和弹簧板 ,具有电枢的磁体,其能够克服所述复位弹簧的力将所述滑块偏转到工作位置,压力管经由压力介质与所述壳体中的所述腔室相通并接收所述电枢。 压力管在其内部容纳复原弹簧和弹簧板。 压力管还具有防止弹簧板脱落的支撑。
    • 10. 发明授权
    • Magnetic linear drive
    • 磁性线性驱动
    • US4480202A
    • 1984-10-30
    • US471144
    • 1983-03-01
    • Volkmar LeutnerHans J. HaaseDietmar MeierRoland SchemppBerthold Pfuhl
    • Volkmar LeutnerHans J. HaaseDietmar MeierRoland SchemppBerthold Pfuhl
    • H02K41/025H01F7/122H01F7/16H02K41/00
    • H01F7/1615H01F2007/1684
    • A magnetic linear drive includes an elongated cylindrical armature which is supported for axial displacement in a guiding pipe made of a pressure-resistant material. Two axially spaced solenoid windings are mounted on the guiding pipe and are interconnected by a permanent magnet. The solenoid windings are provided with lateral magnetically conducting cores the ends of which communicate with annular grooves formed in the guiding tube. The grooves are filled with a magnetically conductive material forming the poles of the electromagnet. In the region of the poles, the armature is formed with control flanges of different depths which are acted upon by the magnetic flux to impart the axial movement to the armature. One end of the armature is formed with a measuring flange which cooperates with measuring coils mounted on the guiding pipe.
    • 磁性线性驱动器包括细长的圆柱形电枢,其被支撑用于由耐压材料制成的导向管中的轴向位移。 两个轴向间隔开的螺线管绕组安装在引导管上并通过永磁体相互连接。 螺线管绕组设置有横向导磁芯,其端部与形成在导向管中的环形槽连通。 凹槽被填充有形成电磁体的磁极的导磁材料。 在极点的区域中,电枢形成有不同深度的控制凸缘,这些控制凸缘由磁通量作用,以向轴承运动。 电枢的一端形成有与安装在引导管上的测量线圈配合的测量凸缘。