Wheel End Apparatus With Electric Generator
US-2020161898-A1 · May 21, 2020 · US
US12492964B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12492964-B2 |
| Application number | US-202217864984-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 14, 2022 |
| Priority date | Jul 22, 2021 |
| Publication date | Dec 9, 2025 |
| Grant date | Dec 9, 2025 |
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Disclosed is a sensor roller for monitoring a lubrication condition of a roller bearing, the sensor roller providing a measuring unit for measuring at least a temperature, a speed change and a load of the roller, and a processing unit for generating a temperature profile, a speed change profile and a load profile of the roller based on the measured temperature and speed change.
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The invention claimed is: 1. A sensor roller for a roller bearing, the sensor roller comprising: a measuring unit for measuring at least a temperature, a speed change, and a load of the roller, wherein the sensor roller comprises a processing unit for generating a temperature profile, a speed change profile and a load profile of the roller based on the measured temperature, speed change and load, wherein the sensor roller further comprises a memory unit that stores temperature profiles, speed change profiles, and load profiles of the roller, wherein the processing unit is configured to compare the generated temperature profile, the generated speed change profile, and the generated load profile with the stored temperature profiles, the stored speed profiles, and the stored load profiles, and wherein the processing unit is configured to update the stored temperature profiles, the stored speed change profiles, and the stored load profiles based on the comparison to the generated temperature profile, the generated speed change profile and the generated load profile. 2. The sensor roller according to claim 1 , wherein the processing unit is further adapted to compare the generated temperature profile, speed change profile and load profile with stored reference temperature profiles, speed change profiles and load profiles of a roller of an undamaged roller bearing and to detect a bearing condition change based on the comparison result. 3. The sensor roller according to claim 2 , wherein the bearing condition is a lubrication condition. 4. The sensor roller according to claim 1 , wherein the measuring unit is further configured to measure a self-rotational speed of the roller and/or an orbit speed. 5. The sensor roller according to claim 1 , wherein the processing unit is adapted to output a signal indicating a change of the lubrication condition. 6. The sensor roller according to claim 1 , wherein the processing unit is adapted to store the generated temperature profile, speed change profile and/or load profile as reference profiles during a defined period of operation. 7. A method of using a sensor roller to monitor a bearing condition, the method comprising the following steps: providing the sensor roller comprising a measuring unit, a processing unit, and a memory unit, measuring at least a baseline temperature, a baseline load, and a baseline speed change of a roller of the bearing, storing the baseline temperature, the baseline load, and the baseline speed change within the memory unit as a baseline temperature profile, a baseline load profile, and a baseline speed change profile, measuring at least an operational temperature, an operational load, and an operational speed change of the roller of the bearing generating a temperature profile, a load profile, and a speed change profile of the sensor roller based on a comparison between the measured operational temperature, the measured operational load, and the measured operational speed change and the baseline temperature profile, the baseline load profile, and the baseline speed change profile, and updating the stored baseline temperature profile, the stored baseline load profile, and the stored baseline speed change profile with the generated temperature profile, the generated load profile, and the generated speed change profile within the memory unit, wherein the steps of measuring are carried out by the measuring unit and the steps of generating are carried out by the processor.
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