Turbine overspeed protection
US-2024368999-A1 · Nov 7, 2024 · US
US9618529B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9618529-B2 |
| Application number | US-201214370437-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 22, 2012 |
| Priority date | Jan 4, 2012 |
| Publication date | Apr 11, 2017 |
| Grant date | Apr 11, 2017 |
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Official abstract text for this publication.
A sensor device is described for the contactless acquisition of a rotatable object, in particular for acquiring a rotational speed of a compressor wheel of a turbocharger. The sensor device includes a sensor housing. The sensor device also includes at least one magnetic-field generator for generating a magnetic field at the location of the rotatable object, and at least one magnetic-field sensor for detecting a magnetic field generated by eddy currents of the rotatable object. The sensor device furthermore includes at least one connection element, the connection element being set up to connect the sensor device to a device that includes the rotatable object, especially a turbocharger, so that the magnetic-field generator and the magnetic-field sensor are at least partially disposed together in a sensor section of the sensor housing, and the sensor housing is at least regionally set apart from the device that includes the rotatable object.
Opening claim text (preview).
What is claimed is: 1. A sensor device for providing contactless acquisition of a rotation characteristic of rotatable object, comprising: a sensor housing; at least one magnetic-field generator to generate a magnetic field at the location of the rotatable object; at least one magnetic-field sensor to detect a magnetic field generated by eddy currents of the rotatable object and at least one connection element set up to connect the sensor device to a device that includes the rotatable object, so that the magnetic-field generator and the magnetic-field sensor are at least partially disposed together in a sensor section of the sensor housing, and the sensor housing is set apart from the device that includes the rotatable object; wherein the sensor section is in the form of a non-magnetic sleeve; wherein the sensor section is introduce-able into a receptacle in a wall of the device, and a coaxial air gap is situated between the sensor section and a wall of the receptacle in the direction of the longitudinal axis of the sensor section in the introduced state; and wherein the receptacle is a blind hole in the wall of the device. 2. A sensor device for providing contactless acquisition of a rotation characteristic of a rotatable object, comprising: a sensor housing; at least one magnetic-field generator to generate a magnetic field at the location of the rotatable object; at least one magnetic-field sensor to detect a magnetic field generated by eddy currents of the rotatable object and at least one connection element set up to connect the sensor device to a device that includes the rotatable object, so that the magnetic-field generator and the magnetic-field sensor are at least partially disposed together in a sensor section of the sensor housing, and the sensor housing is set apart, from the device that includes the rotatable object; wherein the sensor section is in the form of a non-magnetic sleeve; wherein the sensor section is introduce-able into a receptacle in a wall of the device, and in the introduced state a coaxial air gap is situated between a wall of the receptacle and the sensor section; and wherein the receptacle is a blind hole in the wall of the device. 3. The sensor device of claim 2 , wherein the magnetic-field generator is aligned along an axis, and a longitudinal axis of the sensor section essentially extends in parallel with the axis of the magnetic-field generator, the sensor section being configured so that in a state of the sensor housing in which it is mounted on the device that includes the rotatable object, a part of the device is located between the sensor section and the rotatable object in a direction that runs essentially parallel to the longitudinal axis of the sensor section. 4. The sensor device of claim 3 , wherein the object is rotatable about a pivot axle, and in a state of the sensor housing in which it is mounted on the device, the longitudinal axis of the sensor section is disposed at an angle of 25° to 65°, in relation to the pivot axle. 5. The sensor device of claim 2 , wherein the dimension of the part of the device in the direction of the longitudinal axis of the sensor section ranges from 0.1 mm to 2 mm. 6. The sensor device of claim 2 , wherein the sensor housing includes spacers which touch the device in a state of the sensor housing in which it is mounted on the device that includes the rotatable object. 7. The sensor device of claim 2 , wherein the sensor housing includes at least one of segments and circular projections which touch the device in a state of the sensor housing in which it is mounted on the device that includes the rotatable object. 8. The sensor device of claim 2 , wherein the sensor device is a rotational speed sensor, and the rotatable object is a compressor wheel of a charger. 9. A sensor system, comprising: a sensor device; and a device that includes a rotatable object, the sensor device being mounted on the device that includes the rotatable object so that the sensor housing is at least regionally set apart from the device that includes the rotatable object; wherein the sensor device is for providing contactless acquisition of a rotation characteristic of the rotatable object, and includes: a sensor housing; at least one magnetic-field generator to generate a magnetic field at the location of the rotatable object; at least one magnetic-field sensor to detect a magnetic field generated by eddy currents of the rotatable object; and at least one connection element set up to connect the sensor device to the device that includes the rotatable object, so that the magnetic-field generator and the magnetic-field sensor are at least partially disposed together in a sensor section of the sensor housing, and the sensor housing is set apart, from the device that includes the rotatable object; wherein the sensor section is in the form of a non-magnetic sleeve; wherein the sensor section is situated in a receptacle in a wall of the device in such a way that a coaxial air gap is situated between a wall of the receptacle and the sensor section; and wherein the receptacle is a blind hole in the wall of the device. 10. The sensor system of claim 9 , wherein the sensor device is for providing contactless acquisition of the rotation characteristic of the rotatable object, including the acquisition of a rotational speed of a compressor wheel of a turbocharger, and wherein the rotatable object includes the turbocharger. 11. The sensor system of claim 9 , wherein the dimension of the part of the device in the direction of the longitudinal axis of the sensor section ranges from 0.2 mm to 1.8 mm. 12. The sensor system of claim 9 , wherein the dimension of the part of the device in the direction of the longitudinal axis of the sensor section ranges from 0.5 mm to 1 mm. 13. The sensor system of claim 9 , wherein the object is rotatable about a pivot axle, and the longitudinal axis of the sensor section is disposed at an angle of 30° to 60°, in relation to the pivot axle. 14. The sensor system of claim 9 , wherein the object is rotatable about a pivot axle, and the longitudinal axis of the sensor section is disposed at an angle of 45°, in relation to the pivot axle. 15. The sensor system of claim 9 , wherein the sensor device is a rotational speed sensor, and the rotatable object is a compressor wheel of a charger, which is an exhaust-gas turbocharger.
Turbochargers, i.e. plants for augmenting mechanical power output of internal-combustion piston engines by increase of charge pressure · CPC title
for measuring angles or tapers; for testing the alignment of axes · CPC title
Housings for sensors · CPC title
where the indicating means responds to forces produced by the eddy currents and the generating magnetic field · CPC title
in turbochargers · CPC title
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