F16C19/546

Butterfly valve
11391378 · 2022-07-19 · ·

A butterfly valve that is capable of reducing torque and improves sealing performance. The butterfly valve 10 includes a shaft member 100, a tabular valve body that is provided on the shaft member 100, a case 310 that is attachable to and detachable from a through-hole 510 formed in an attachment member 500 to which the butterfly valve 10 is configured to be attached, a pair of bearings 320 that is provided in the case 310 and rotatably supports the shaft member 100, and a magnetic fluid seal that is provided between the pair of bearings 320 in the case 310 and seals an annular gap between the case 310 and the shaft member 100.

AXLE ASSEMBLY HAVING A ROTOR BEARING ASSEMBLY
20220242230 · 2022-08-04 · ·

An axle assembly having an electric motor module, a drive pinion, and at least one rotor bearing assembly. The electric motor module may have a rotor. The rotor and the drive pinion may be rotatable about a first axis. The first rotor bearing assembly may extend between the drive pinion and the rotor.

STOPPER AND DRIVER FOR STEERING APPARATUS HAVING THE SAME
20220242477 · 2022-08-04 ·

The present disclosure is direction to a stopper disposed in a driver for a steering apparatus which includes a worm gear, a bearing supporting rotation of the worm gear, and a damper buffering an impact of the bearing is provided, the stopper including: an annular body having a through hole therein allowing one side of the worm gear to pass through; and a leg on the annular body to protrude toward the damper along an axial direction of the worm gear.

SYSTEM AND METHOD FOR DYNAMICALLY DETERMINING REFRIGERANT FILM THICKNESS AND DYNAMICALLY CONTROLLING REFRIGERANT FILM THICKNESS AT ROLLING-ELEMENT BEARING OF AN OIL FREE CHILLER
20220082315 · 2022-03-17 ·

Methods are directed towards dynamically determining refrigerant film thickness at the rolling-element bearing and for dynamically controlling refrigerant film thickness at the rolling-element bearing. Further, an oil free chiller system is configured for dynamically determining refrigerant film thickness at the rolling-element bearing of the oil free chiller system, wherein the oil free chiller system is also configured for dynamically controlling refrigerant film thickness at the rolling-element bearing of the oil free chiller system.

Dual-type strain wave gearing
11280370 · 2022-03-22 · ·

An externally toothed gear of a dual-type strain wave gearing is provided with first and second external teeth having different teeth numbers, and a gap formed between these teeth as a cutter clearance area for tooth cutters. Where L1 is the maximum width of the gap, t1 is a depth from the tooth top land of the first external teeth to the deepest part of the gap, h1 is the tooth depth of the first external teeth, t2 is a depth from the tooth top land of the second external teeth to the deepest part, and h2 is the tooth depth of the second external teeth, any one of the following conditions 1 to 3 is satisfied:
L1=0.1L−0.35L, t1=0.9h1−1.3h1, and t2=0.3h2−0.9h2  Condition 1:
L1=0.1L−0.35L, t1=0.3h1−0.9h1, and t2=0.9h2−1.3h2  Condition 2:
L1=0.1L−0.35L, t1=0.3h1−0.9h1, and t2=0.3h2−0.9h2  Condition 3: It is possible to obtain a dual-type strain wave gearing in which wear resistance and tooth bottom fatigue strength are increased.

Rotary Valve

A rotary valve including a housing with a removable housing cover, a rotor within the housing which is at least partially placeable outside the housing by detaching and displacing the housing cover away from the housing so as to enable access for cleaning or inspection of the rotary valve, wherein an end portion of a shaft of the rotor is mounted in a bearing assembly supported by the housing cover, which bearing assembly comprises a first bearing and a second bearing that are adjustable in position so as to maintain the shaft of the rotor in a level orientation with reference to the housing when the housing cover is moved away from the housing, wherein the first bearing and the second bearing are movable with respect to each other in a direction transversely to a longitudinal direction of the shaft.

Bearing Flange for a Drive System of a Hand-Held Power Tool, and Hammer Drill Having an Impact Mechanism and a Bearing Flange
20220105618 · 2022-04-07 ·

A bearing flange for a drive system of a hand-held power tool includes a first bearing point for a driveshaft of a drive motor, a second bearing point for an intermediate shaft, and a third bearing point for a hammer tube. At least one bearing point includes a ball bearing, which is received in a receiving opening of the bearing flange and is axially secured therein by a snap ring.

Rotatable stand for LCD monitor
11268650 · 2022-03-08 · ·

The present invention relates to a rotatable stand for an LCD monitor and the purpose thereof is to apply a rotating body having a specific structure to the LCD monitor, which is installed on a table therethrough, so as to enable the LCD monitor to freely and continuously make a full 360-degree rotation in left and right directions, while the conventional fixed structure of the LCD monitor is being maintained.

METHOD FOR DIAGNOSING ROLLING DEVICE
20220074813 · 2022-03-10 · ·

A method for diagnosing a rolling device (10) including an outer member (1), an inner member (3), and rolling elements (5) includes: applying an AC voltage to an electric circuit including the outer member (1), the rolling elements (5), and the inner member (3); measuring an impedance and a phase angle of the electric circuit when the AC voltage is applied; and measuring a dielectric constant of a lubricant at least one of between the outer member (1) and the rolling elements (5) and between the inner member (3) and the rolling elements (5) based on the measured impedance and the measured phase angle.

Ceramic bearing system

An example of a ceramic bearing system includes a shaft comprising two radially extending shoulders that define a channel therebetween, a first tolerance ring disposed in the channel of the shaft, and a bearing assembly comprising a ceramic bearing. The bearing assembly is positioned around the first tolerance ring and has an axial length that is longer than an axial length of the first tolerance ring.