TEMPERATURE SENSOR
20190360871 · 2019-11-28
Inventors
Cpc classification
G01K1/16
PHYSICS
International classification
Abstract
The present disclosure relates to an apparatus for determining and/or monitoring temperature of a liquid. The apparatus includes at least one temperature sensor arranged in a sensor head. Furthermore, the present disclosure relates to a method for manufacturing the apparatus. At least one internal volume of the sensor head is at least partially filled with at least one first material and at least one second material. The first material serves for affixing at least one component of the temperature sensor within the sensor head, and the second material serves for heat conduction within the sensor head.
Claims
1-15. (canceled)
16. An apparatus for determining and/or monitoring temperature of a liquid, including: at least one temperature sensor arranged in a sensor head; wherein at least one internal volume of the sensor head is at least partially filled with at least one first material and at least partially with at least one second material; wherein the first material serves for affixing at least one component of the temperature sensor within the sensor head; wherein the second material serves for heat conduction within the sensor head.
17. The apparatus of claim 16, wherein the temperature sensor includes at least one temperature sensitive sensor element and at least one connection wire for contacting the sensor element.
18. The apparatus of claim 16, wherein the first material is embodied to stabilize at least one component of the temperature sensor within the sensor head, and/or to protect the at least one component against vibrations, and/or to provide electrical insulation of the at least one component.
19. The apparatus of claim 16, wherein the first material is a ceramic or a ceramic potting compound.
20. The apparatus of claim 16, wherein the second material has a thermal conductivity of >100 W/(mK) at 0 C.
21. The apparatus of claim 16, wherein the second material is selected in such a manner that a thermal time constant () for a cube shaped body of the second material with a volume of 1 mm.sup.3 is less than 0.1 s.
22. The apparatus of claim 16, wherein the second material is carbon nanotubes, boron nitride, aluminum nitride, silicon carbide, or a metal.
23. The apparatus of claim 16, wherein the at least one internal volume of the sensor head is filled with a mixture including at least the first material and the second material.
24. The apparatus of claim 17, wherein the at least one internal volume of the sensor head has at least two subregions, wherein a first subregion of the at least one internal volume is filled with the first material and wherein a second subregion of the at least one internal volume is filled with the second material.
25. The apparatus of claim 24, wherein the first subregion is arranged at least partially in a region of the at least one connection wire, and wherein the second subregion is arranged at least partially in a region of the at least one temperature sensitive sensor element.
26. The apparatus of claim 16, wherein the sensor head includes a cylindrical lateral surface and a circular floor element.
27. The apparatus of claim 16, wherein the temperature sensor includes a resistance element or a thermocouple.
28. A method for manufacturing an apparatus for determining and/or monitoring temperature of a liquid, including steps of: introducing at least one component of a temperature sensor into a sensor head; and filling an internal volume of the sensor head at least partially with at least one first material and at least partially with at least one second material; wherein the first material serves for affixing at least one component of the temperature sensor within the sensor head; wherein the second material serves for heat conduction within the sensor head.
29. The method of claim 28, wherein at least one internal volume of the sensor head is filled with a mixture including at least the first material and the second material.
30. The method of claim 29, wherein the first material is filled into a first subregion, and wherein the second material is filled into a second subregion.
Description
[0031] The invention will now be explained in further detail based on the appended drawing, the figures of which show as follows:
[0032]
[0033]
[0034]
[0035] In the following, equal elements are provided with equal reference characters.
[0036]
[0037] A first embodiment of the present invention is shown in
[0038] Different measures are available for preventing an electrical short circuit between at least one component 8,9 of the temperature sensor 7 and the sensor head 3, which is usually manufactured of metal. The connection wires 8,9 can be surrounded throughout a large portion of their length by an electrical insulation (not shown). In the region of contacting the connection wires 9a,9b, an electrically insulating, molded part (likewise not shown) can be used. Alternatively, it can also be provided, for example, that the first 10 and second 11 materials are not electrically conductive in this region. Regarding this subject matter, many other options are known to those skilled in the art, and these all fall within the scope of the present invention.
[0039] A second embodiment of the present invention is subject matter of
[0040] Preferably, the first material 10 is an electrically insulating material in this embodiment. The first material 10 in the embodiment of
[0041] The second subregion 11a is, in turn, preferably arranged in such a manner that it surrounds at least a subsection of the sensor element 8. In the case of a conventional sensor element 8 embodied as a platinum resistance element, the sensor element 8 is usually electrically insulated outside of the region, in which the electrical contacting by means of the connection wires 9a,9b is performed. The second material has, advantageously, a high thermal conductivity and the thermometer 1 has, correspondingly, an especially good response time to a temperature change T of a liquid 5. Also for the embodiment of
[0042] A special advantage, which results from an arrangement of
LIST OF REFERENCE CHARACTERS
[0043] 1 thermometer [0044] 2 protective tube [0045] 3 sensor head [0046] 4 electronics unit [0047] 5 liquid [0048] 6 filler [0049] 7 temperature sensor [0050] 8 sensor element [0051] 9a,9b connection wires [0052] 10 first material [0053] 10a first subregion [0054] 11 second material [0055] 11a second subregion [0056] thermal conductivity [0057] T temperature [0058] V internal volume of the sensor head