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    • 11. 发明授权
    • Automatically engageable jaw clutch
    • 自动接合爪式离合器
    • US4274523A
    • 1981-06-23
    • US956040
    • 1978-10-30
    • Hans Sigg
    • Hans Sigg
    • F16H3/60F16D23/10F16D41/12F16H57/10F16D11/10F16D23/02
    • F16D23/10Y10T74/19488
    • An automatically engageable jaw clutch having a toothed drive hub, a toothed power take-off hub, and a clutch star axially displaceable with respect to the power take-off hub. The clutch star is continuously connected with the drive hub for conjoint rotation by means of first teeth means formed thereat and has second teeth means which can be brought into engagement with the teeth of the power take-off shaft by axial shifting of the clutch star. A screw socket or sleeve which is connected by means of a pair of coarse-pitch threading with the power take-off hub, is only conjointly axially displaceable together with the clutch star and rotatable relative thereto. The screw socket is entrainable by the clutch star by means of a pawl blocking mechanism composed of a pawl and ratchet teeth, when the drive hub overrides the power take-off hub. A switching device serves for selectively rendering ineffectual the pawls and contains a sleeve which is axially adjustable in relation to the clutch star and equipped with a ramp surface which, in a predetermined axial position of the sleeve in relation to the clutch star, hinders the pawls from engaging with the ratchet teeth.
    • 一种可自动啮合的爪式离合器,其具有带齿的驱动轮毂,齿形动力输出轮毂和相对于动力输出轮毂可轴向移动的离合器星形。 离合器星与驱动毂连续地连接,通过形成在其上的第一齿形装置连接在一起,并且具有第二齿装置,其可以通过离合器星的轴向移动而与动力输出轴的齿接合。 通过一对带有动力输出轮毂的粗桨距螺纹连接的螺钉套筒或套筒只能与离合器星形件一起可以相对于其相对地轴向移动。 当驱动轮毂超过动力输出轮毂时,螺钉插座借助于由棘爪和棘轮齿构成的棘爪阻挡机构可被离合器星形夹带。 开关装置用于选择性地使棘爪无效地并且包含可相对于离合器星形轴向调节并具有斜面的套筒,该斜面在套筒相对于离合器星形的预定轴向位置中阻碍棘爪 与棘轮啮合。
    • 12. 发明授权
    • Bowl-type grinding apparatus
    • 碗式研磨机
    • US4572442A
    • 1986-02-25
    • US544936
    • 1983-10-24
    • Hans Sigg
    • Hans Sigg
    • B02C15/04B02C15/00B02C15/06
    • B02C15/06B02C15/006
    • Two grinding rolls are mounted at a roll carrier. Below the roll carrier a grinding bowl is rotatably mounted on an axial thrust bearing for rotation about a substantially vertical axis. Below the axial thrust bearing there is arranged a drive device for the grinding bowl. A speed reduction gear arrangement is disposed between the drive device and the grinding bowl and contains a substantially cylindrical housing. This housing supports the axial thrust bearing and itself is supported by a substantially ring-shaped flange at a stand or framework at which there is also supported the roll carrier. The flange is connected to the roll carrier by means of a plurality of, for instance, four tie rods. Thus, the forces exerted by the grinding rolls on the grinding bowl and which are transferred therefrom to the housing and the reaction forces associated therewith are transmitted over a relatively short path via the flange to the roll carrier without loading any members of the drive device which are arranged below the flange.
    • 两个研磨辊安装在辊架上。 在辊架下方,研磨碗可旋转地安装在轴向推力轴承上,用于围绕基本垂直的轴线旋转。 在轴向推力轴承下方设置有用于研磨碗的驱动装置。 减速齿轮装置设置在驱动装置和研磨碗之间并且包含大致圆柱形的壳体。 该壳体支撑轴向推力轴承,并且其本身在支架或框架处由基本上环形的凸缘支撑,在支架或框架处也支撑着辊架。 凸缘通过多个例如四个拉杆连接到辊架上。 因此,研磨辊施加在磨盘上并由此转移到壳体上的力以及与之相关联的反作用力通过凸缘相对较短的路径传递到辊承载件,而不加载驱动装置的任何构件, 布置在法兰下方。
    • 15. 发明授权
    • Pneumatic measuring device for measuring workpiece dimension
    • 用于测量工件尺寸的气动测量装置
    • US4538449A
    • 1985-09-03
    • US548965
    • 1983-11-07
    • Heinz WegmannHans Sigg
    • Heinz WegmannHans Sigg
    • G01B13/10
    • G01B13/10
    • A pneumatic measuring device is disclosed which comprises a pneumatic circuit containing a first branch (15) equipped with an inlet nozzle (16), oppositely disposed measuring nozzles (17) and a second branch (19) equipped with an inlet nozzle (20) and a reference nozzle (21). A differential pressure transducer (22) having a semiconductor element enables the difference in pressure between the branches (15) and (19) to be measured and to supply through a terminal (23) a signal representing the dimensions measured opposite the nozzles (17). The pneumatic circuit system, with the pressure transducer, is included in the measuring spindle (12).
    • 公开了一种气动测量装置,其包括气动回路,该气动回路包含配备有入口喷嘴(16)的第一分支(15),相对设置的测量喷嘴(17)和配备有入口喷嘴(20)的第二分支(19) 参考喷嘴(21)。 具有半导体元件的差压变换器(22)能够测量分支(15)和(19)之间的压力差,并且通过端子(23)提供表示与喷嘴(17)相对测量的尺寸的信号, 。 带有压力传感器的气动回路系统包含在测量轴(12)中。
    • 16. 发明授权
    • Cant segment-radial bearing for heavily loaded high-speed shafts
    • 用于重载高速轴的节段 - 径向轴承
    • US4247157A
    • 1981-01-27
    • US89588
    • 1979-10-29
    • Hans Sigg
    • Hans Sigg
    • F01D25/16F16C17/03F16C33/00F16C33/10
    • F16C33/108F01D25/166F16C17/03
    • A cant or tiltable segment-radial bearing comprises a support segment and two guide segments in which there is mounted a shaft. The shaft can be sprayed with lubricant by means of nozzle tubes which are arranged in the intermediate spaces between the support segment and each of the guide segments and in the intermediate space between both of the guide segments, respectively. The nozzle tubes extend in spaced relationship from such segments essentially parallel to the shaft axis. Since the support segment has a large width in relation to the diameter of the shaft an intensive lubrication of such support segment is required, wherefore this support segment is subdivided by a lubricant outflow groove which extends in the circumferential direction.
    • 倾斜或可倾斜的节段 - 径向轴承包括支撑段和两个引导段,其中安装有轴。 轴可以通过分别布置在支撑段和每个引导段之间的中间空间中以及在两个引导段之间的中间空间中的喷嘴管喷射润滑剂。 喷嘴管与基本上平行于轴线的这些部分间隔开地延伸。 由于支撑段相对于轴的直径具有大的宽度,因此需要这种支撑段的强化润滑,因此该支撑段由沿圆周方向延伸的润滑剂流出槽细分。
    • 18. 发明授权
    • Marine reversing gearing
    • 船用倒车齿轮
    • US4242920A
    • 1981-01-06
    • US941989
    • 1978-09-13
    • Hans Sigg
    • Hans Sigg
    • B63H23/28B63H23/08F16H3/14
    • F16H3/14B63H23/08Y10T74/19409Y10T74/19605Y10T74/19628
    • A marine reversing gearing having a drive shaft, a forward clutch, a forward pinion coaxially arranged with respect to the drive shaft and capable of being coupled therewith by means of the forward clutch for forward travel. Two intermediate gears continuously mesh with the forward pinion, there also being provided two intermediate pinions which are rigidly connected with a respective one of the intermediate gears. A large gear continuously meshes with both intermediate pinions. There are also provided a reverse clutch and a rearward pinion which is coaxially arranged with respect to the drive shaft and can be coupled therewith by the reverse clutch for rearward travel, and two reversing pinions are driven by the rearward pinion. The intermediate gears meshing with the forward pinion exclusively transmit power as forward gears during the forward travel. Both of the reversing pinions mesh with the rearward pinion and with a respective rearward gear, and each of both intermediate pinions also are fixedly connected with one of the rearward gears.
    • 具有驱动轴,前进离合器和向前小齿轮的船用反向齿轮装置,其相对于驱动轴同轴地布置,并且能够通过前进离合器与前进离合器联接。 两个中间齿轮与前进小齿轮连续啮合,还设置有两个中间小齿轮,它们与相应的一个中间齿轮刚性连接。 大齿轮与中间小齿轮连续啮合。 还提供了一个相对于驱动轴同轴布置的反向离合器和后小齿轮,并且可以通过反向离合器与其相连,用于向后行进,并且两个反向小齿轮由后小齿轮驱动。 与前进小齿轮啮合的中间齿轮在向前行驶期间将传递功率作为前进档。 两个反转小齿轮与后小齿轮啮合,并具有相应的后齿轮,并且两个中间小齿轮中的每一个也与后齿轮中的一个固定连接。
    • 19. 发明授权
    • Wireless arrangement for controlling the speed of advance of a tool
toward a workpiece
    • 用于控制工具朝向工件的前进速度的无线布置
    • US4831785A
    • 1989-05-23
    • US89370
    • 1987-08-26
    • Hans Sigg
    • Hans Sigg
    • B23Q17/22B23Q15/22
    • B23Q15/225G05B2219/37351Y10S82/904Y10T409/306832Y10T409/307224
    • A vibration sensor, located on a chuck member for a workpiece and rotating therewith, detects the signal emitted at the instant a tool member contacts the workpiece. The vibration sensor produces an output signal to modulate a transmitter and a receiver fastened to the machine tool frame receives the information broadcast by the transmitter. The information is processed to produce a signal which reduces the speed of a motor controlling the advance of the tool member. The speed of the tool member is thus reduced as soon as the tool member contacts the workpiece. The arrangement is particularly suited to machines for grinding interior diameters and prevents damage following accidental collision of the workpiece and tool member.
    • 位于用于工件的卡盘构件上并随其旋转的振动传感器检测在工具构件接触工件的瞬间发射的信号。 振动传感器产生一个输出信号来调制一个发射器,一个固定在机床框架上的接收器接收由发射机广播的信息。 该信息被处理以产生一个信号,该信号降低控制工具部件前进的电机的速度。 一旦工具构件接触工件,工具构件的速度就会降低。 该装置特别适用于研磨内径的机器,并防止工件和工具构件意外碰撞后的损坏。