Patent classifications
F16D1/064
Shaft-Hub Connection and Drive Train Having a Shaft-Hub Connection of This Type
A shaft-hub connection including a hub element and a shaft element is provided. The hub element includes a hub. The shaft element includes at least one first elongated region arranged in at least one second elongated region of the hub and is at least rotationally fixed to the hub element by way of a longitudinal press-fit including the elongated regions. The longitudinal press-fit has at least one first excess region with a first excess, and at least one second excess region, following the first excess region in the circumferential direction of the shaft element, with a second excess that is smaller than the first excess.
Planetary gear for a planetary gearset and planet carrier for such a planetary gear
A planetary gear for a planetary gearset has a gear body and a planetary gear shaft defining a planetary gear rotational axis (APR) of the planetary gear. The gear body includes a gear rim having a first number (n1) of teeth and a second number (n2) of ribs. The ribs extend between the planetary gear shaft and the gear rim, and planetary gear contact projections are arranged on the ribs and project beyond the gear rim along the planetary gear rotational axis (APR). Also disclosed is a planet carrier for such a planetary gear, including an insert for removing torque from the carrier body, which insert is connected to the first disk-shaped body. The first disk-shaped body forms a first free planet carrier face on which a number of reinforcing ribs are arranged.
Coupling body using Z-pin
Coupling body devices, including methods of making the same, are provided and described. A method of manufacturing a coupling body, for example, can include forming a tube by braiding nonmetal fibers, forming a flange by rolling inwards an end of the tube, providing a metallic connector, inserting at least one Z-pin in an end portion of the connector, and coupling the tube and the connector by inserting the Z-pin in the flange and performing a composite material forming process.
Coupling body using Z-pin
Coupling body devices, including methods of making the same, are provided and described. A method of manufacturing a coupling body, for example, can include forming a tube by braiding nonmetal fibers, forming a flange by rolling inwards an end of the tube, providing a metallic connector, inserting at least one Z-pin in an end portion of the connector, and coupling the tube and the connector by inserting the Z-pin in the flange and performing a composite material forming process.
Fibre Reinforced Polymer Matrix Composite Torque Tubes or Shafts
A torque shaft (20) comprising a hollow tube (22) provided with an end fitting (24, 26) at each end of a tube is made of a thermoplastic polymer matrix with reinforcing fibres embedded in the matrix, The tube (22) and end fittings (24, 26) are connected by mutually complementally shaped plugs (23) and sockets (27) that are dimensioned and positioned relative to each other to form an interference fit between the tube (22) and said plug (23) or socket (27).
Connection System for Connecting a Component such as a Shaft, Hub, Bushing or the Like to a Gear Wheel, the Gear Wheel Comprising Helical Gearing
The present disclosure relates to a connection system for connecting a component to a gear wheel, wherein the gear wheel comprises helical gearing having a tooth helix angle and a first connecting section, and the component comprises a second connecting section by way of which the component can be connected or is connected to the first connecting section, wherein the component, in the second connecting section, comprises at least one depression or elevation that is operatively connected to the first connecting section when the component is connected to the first connecting section, wherein the depression has a connection helix angle, and the connection helix angle is defined as follows: 0. The disclosure furthermore relates to a device for transmitting a rotational movement, comprising a rotatable component and a gear wheel, wherein the gear wheel and the component are connected by way of such a connection system.
Serration connection for a steering assembly
A steering assembly including a serration connection for an automotive vehicle comprising a steering wheel comprising at least one wheel bearing having at least one connection part presenting gear teeth and gear teeth gaps and a steering column comprising a column bearing having at least one connection part presenting gear teeth and gear teeth gaps; the respective gear teeth and gear teeth gaps of the wheel bearing and of the column bearing being intended to cooperate together to connect in transmission the steering wheel and the steering column; and wherein at least one tooth gap of the wheel bearing is at least partially filled with a removable filling material; the corresponding area of the column bearing, respectively, facing the at least partially filled tooth gap, comprises at least one recess, and such arrangement is the initial position of the wheel bearing.
End fittings for drive shaft assemblies
An end fitting for a drive shaft includes a shaft weld side having a face configured for fluid communication with an interior of a shaft with the shaft weld side welded to a shaft. The end fitting also includes a coupling side shaped to be operatively connected to a component for transferring rotational motion from the end fitting to the component. The end fitting further includes a pressure relief bore defined in the end fitting between the face of the shaft weld side and the coupling side such that fluid can flow between the shaft weld side and the coupling side through the pressure relief bore.
End fittings for drive shaft assemblies
An end fitting for a drive shaft includes a shaft weld side having a face configured for fluid communication with an interior of a shaft with the shaft weld side welded to a shaft. The end fitting also includes a coupling side shaped to be operatively connected to a component for transferring rotational motion from the end fitting to the component. The end fitting further includes a pressure relief bore defined in the end fitting between the face of the shaft weld side and the coupling side such that fluid can flow between the shaft weld side and the coupling side through the pressure relief bore.
OUTPUT ELEMENT, MOTORISATION DEVICE FOR DRIVING AT LEAST ONE WINDSCREEN WIPER ARM OF A MOTOR VEHICLE, AND METHOD FOR PRODUCTION OF AN OUTPUT ELEMENT
The invention concerns an output element (15; 151) for a motorisation device (1) for driving at least one windscreen wiper arm of a motor vehicle, comprising an output shaft (17; 171) and a toothed wheel (40) integral to and coaxial with the output shaft (17; 171), characterized in that the output shaft (17; 171) is made of plastic material and in that the output element (15; 151) comprises a metallic insert (16; 161; 162; 163), the plastic material of the output shaft (17; 171) being moulded partially over the metallic insert (16; 161; 162; 163), revealing an insert head (25; 251) protruding from the end of the output shaft (17; 171) and intended to connect to a windscreen wiper element in order to drive this in rotation.
The invention also concerns a motorisation device (1) and a method for production of an output element (15; 151).