F16H2057/0062

Tool and Method for Installation of a Dust Cover on a Pulley
20230049484 · 2023-02-16 · ·

Dust cover installation tool configured for placement of a dust cover in an annular opening of an idler pulley includes a frame and a cap press. The frame includes an actuator end core, an opposed placement plate, and at least first and second arms extending therebetween, and a third arm disposed between the first and second arms. The cap press includes a press plate and a rotatable threaded rod extending through a threaded bore in the actuator end core. Rotation of the threaded rod in a first direction within the threaded bore advances the press plate toward the placement plate.

Slide Valve and Mounting Aid Device
20230228340 · 2023-07-20 ·

A mounting aid device for mounting a valve slide in a housing bore of a valve housing of a slide valve includes a mounting slide arranged movably in a guide of a guide piece and protruding out of the guide of the guide piece on both sides. The guide piece includes a first stop, with which the guide piece is placeable coaxially to the housing bore when the guide piece contacts the valve housing at the first stop. The mounting slide configured to protrude into the housing bore until contact on the second end region of the valve slide and, by force-loading of the mounting slide under compression of the spring element, the valve slide is movable until the valve slide reaches the first end position.

Jig supporting reduction gear of robot and method of replacing reduction gear using jig
11698125 · 2023-07-11 · ·

There is a demand for further improving efficiency of a task of replacing the reduction gear of the robot. A jig configured to support a reduction gear connecting a first element and a second element of a robot to be enabled to perform a speed reduction operation on each other, when the second element is separated from the first element includes a fixed portion removably mounted to the first element or the second element, a movable portion rotationally or translationally movably mounted to the fixed portion, and a support mounted to the movable portion and configured to suspend and support the reduction gear in a gravity direction.

Modular gearbox for wind turbine

A modular gearbox assembly for a wind turbine having improved up-tower serviceability includes a low-speed gear stage module, a separate, intermediate-speed gear stage module adjacent to the low-speed gear stage module, and a separate high-speed gear stage module adjacent to the intermediate-speed gear stage module. The gearbox assembly also includes a first flange removably connecting the intermediate and high-speed gear stage modules and a second flange removably connecting the intermediate and low-speed gear stage modules. Thus, the low-speed gear stage module converts a low-speed, high torque input from a rotor shaft of the wind turbine to a high-speed, low torque output for a generator of the wind turbine via the intermediate and high-speed gear stage modules. In addition, the first and second flanges allow for easy disassembly of the gear stage modules such that the various stages can be easily repaired, replaced, and/or inspected.

Installation for mounting an outer sun gear

An installation for mounting an outer sun gear in a reduction gear. The reduction gear includes an outer sun gear and planet gears meshing with an inner sun gear and with the outer sun gear and each mounted for free rotation around a pivot of a planet carrier. The outer sun gear includes a first crown having a first toothing and a second crown having a second toothing each meshing with first and second toothings of the planet gears. The installation includes a frame for supporting the reduction gear along its longitudinal axis, and first and second torque applicators, such as cylinders, that apply a torque around an axis of first and second rings, respectively. The first ring is configured to engage with the first crown of the outer sun gear and the second ring is configured to engage with a second crown of the outer sun gear.

TRANSMISSION ASSEMBLY COMPRISING A TRANSMISSION HOUSING AND A RECEIVING SPACE FOR RECEIVING AN ELECTRONIC AND/OR ELECTRICAL FUNCTIONAL UNIT

A transmission assembly may include a transmission housing; and a receiving space for receiving an electrical functional unit. The receiving space may be formed by at least one wall in the transmission housing and a lid unit, the receiving space may be sealable from an exterior environment via a seal in a contact region on the transmission housing and the lid unit. The lid unit may be connectable to the transmission housing by a screw, where the lid unit includes a channel through which at least part of the screw passes, and where the channel has an inner thread section.

Method of installing a motor on a gear box

A method of mounting a motor to a gearbox includes positioning a coupling along an input shaft of the gearbox from a starting position to a first alignment position. In the starting position, the coupling drivingly engages a greater portion of the gearbox input shaft than in the first alignment position. In the first alignment position, the coupling operatively contacts the motor output shaft. Another step includes rotating the coupling so that the coupling aligns with the motor output shaft. Another step includes axially positioning the coupling at a second alignment position such that the coupling drivingly engages both the motor output and the gearbox input shafts. Another step includes positioning the motor to allow mounting of the motor on the gearbox with the coupling at a third alignment position drivingly engaging a greater portion of the motor output and the gearbox input shafts than in the second alignment position.

CLUTCH, STEERING DEVICE, AND METHOD FOR DISASSEMBLING CLUTCH
20170282964 · 2017-10-05 · ·

A clutch is configured to mechanically establish and disestablish a torque transmission path between an input shaft through which a torque is input and an output shaft through which the torque is output. The clutch includes a sun gear, an internal gear, planetary gears, and a carrier. The sun gear is configured to switch between a fixed state and a non-fixed state. The internal gear is coupled to the input shaft in a torque transmittable manner. The planetary gears are configured to mesh with the sun gear and the internal gear. The carrier is coupled to the output shaft in a torque transmittable manner and configured to support the planetary gears rotatably. The carrier includes a coupling portion to be coupled to a detachment member configured to detach the carrier from the clutch.

Method for assembling a helically geared first sprocket and a second helically geared sprocket to form a transmission
20170216978 · 2017-08-03 · ·

A method for assembling a helically geared first sprocket, particularly a worm gear and a second sprocket arranged on an axis, particularly a worm, to form a transmission, particularly a worm drive, in which the first sprocket is positioned coaxially in reference to an axis of assembly of the first sprocket, aligned at a 90° position in reference to the axis via an assembly device.

TRANSMISSION REMOVER AND INSTALLER
20220234874 · 2022-07-28 ·

Disclosed is a transmission remover and installer, for removing and installing transmissions, which comprises a plate defined by a top surface and bottom surface; a connecting means at a first end of the plate traversing through a hole in the plate, installed using a first securing means on the top surface and a second securing means on the bottom surface of the plate; a mounting means securing the top of the connecting means using a first protrusion located at the bottom of the mounting means; and a jack adapter coupled at the bottom surface at a second end of the plate. The mounting means has a first hole and a second hole configured to couple with a transmission after identifying a balance point of the transmission and the jack adapter has a coupling means enabling the jack adapter to be coupled with a jack after identifying a balance point.