Heated media line
11480284 · 2022-10-25
Assignee
Inventors
Cpc classification
F16L11/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B2203/014
ELECTRICITY
Y02A50/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16L53/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B2214/02
ELECTRICITY
F16L11/11
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B3/44
ELECTRICITY
International classification
F16L53/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B3/44
ELECTRICITY
F16L11/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L11/11
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L53/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A heat conductor and a heated media line having an inner tubular fluid line and at least one heat conductor arranged on the periphery thereof. The heat conductor is formed by a braid made of twisted individual wires and, in particular, an outer protective sheath surrounding the heat conductor and the fluid line. The braid is formed by at least six individual wires surrounding a support element, of which at least one individual wire is made of a copper-nickel (CuNi) alloy, and the remaining individual wires are produced from copper (Cu) or from a nickel-chromium (NiCr) alloy. All of the individual wires have the same diameter.
Claims
1. A heated media line consisting of: an inner tubular fluid line and at least one electric heat generating conductor arranged over a circumference of the fluid line, the heat generating conductor being a resistive heating element in the form of a braid of stranded individual wires; and of an outer protective sheath surrounding the heat generating conductor and the fluid line, the braid being formed by at least six stranded individual wires and an inner support element, whereby the individual wires are twisted about and surrounding the inner support element and all of the individual wires of the braid being made of a copper-nickel (CuNi) alloy, one of the individual wires being made of a first copper-nickel alloy, at least one of the other individual wires being made of a second copper-nickel alloy, the second copper-nickel alloy being different than the first copper-nickel alloy; and wherein all of the individual wires have a same diameter, the inner support element being formed by an additional individual wire having the same diameter as the other individual wires, the inner support element being made of the same material as the individual wires or of plastic, and wherein all of the individual wires of the braid have a resistance selected so that a total resistance of the braid is in a range of 0.097 to 4.651 Ω/m over any length of the braid.
2. A heated media line consisting of: an inner tubular fluid line and at least one electric heat generating conductor arranged over a circumference of the fluid line, the heat generating conductor being a resistive heating element in the form of a braid of stranded individual wires, and of an outer protective sheath surrounding the heat conductor and the fluid line; wherein the braid is formed by at least six stranded individual wires and an inner support element, wherein the individual wires are twisted about and surrounding the inner support element, the braid is made of at least one of the individual wires of the braid is made of a copper-nickel (CuNi) alloy and at least one individual wire of the braid is made of copper (Cu), all other individual wires of the braid being made of one of a copper-nickel (CuNi) alloy and copper (Cu), or at least one of the individual wires of the braid is made of a copper-nickel (CuNi) alloy and at least one of the individual wires of the braid is made of a nickel-chromium (NiCr) alloy, all other individual wires of the braid being made of one of a copper-nickel (CuNi) alloy and a nickel-chromium (NiCr) alloy; and wherein all of the individual wires have a same diameter, the inner support element being made of a plastic profile having a diameter that is the same as the diameter of the individual wires or the inner support element being formed by an additional individual wire having a diameter that is the same as the diameter of the other individual wires and the inner support element being made of the same material as the individual wires and wherein all of the individual wires of the braid have a resistance selected so that a total resistance of the braid is in a range of 0.097 to 4.651 Ω/m over any length of the braid.
3. The heated media line according to claim 1 or claim 2, wherein at least one of the individual wires made of a copper-nickel alloy is selected from the group consisting of CuNi1 having a specific resistance of 0.0250 Ωmm.sup.2/m, CuNi2 having a specific resistance of 0.0500 Ωmm.sup.2/m, CuNi6 having a specific resistance of 0.1000 Ωmm.sup.2/m, CuNi10 having a specific resistance of 0.1500 Ωmm.sup.2/m, CuNi15 having a specific resistance of 0.2100 Ωmm.sup.2/m, CuNi23Mn having a specific resistance of 0.3000 Ωmm.sup.2/m, CuNi30Mn having a specific resistance of 0.4000 Ωmm.sup.2/m, and CuNi44 having a specific resistance of 0.4900 Ωmm.sup.2/m.
4. The heated media line according to claim 2, wherein the nickel-chromium alloy is NiCr3020 having a specific resistance of 1.040 Ωmm.sup.2/m at 20° C.
5. The heated media line according to claim 1 or claim 2, the individual wires have a specific resistance in the range of 0.008 to 0.74 Ωmm.sup.2/m at 20° C.
6. The heated media line according to claim 1 or claim 2, wherein each of the individual wires of the braid has a diameter of 0.19 mm.
7. The heated media line according to claim 1 or claim 2, wherein the braid includes nineteen individual wires and each of the individual wires has a diameter of 0.115 mm.
8. The heated media line according to claim 1 or claim 2, wherein the heat generating conductor includes a plastic sheath enclosing the individual wires and the inner support element, and wherein an outer diameter of the heat generating conductor is 1.1 mm.
9. The heated media line according to claim 1 or claim 2, wherein the heat generating conductor has a weight in the range of 2 g/m to 4 g/m.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In the drawings:
(2)
(3)
(4)
(5)
(6)
(7) In the various figures of the drawings, identical parts are always provided with the same reference numerals.
DETAILED DESCRIPTION
(8) With respect to the subsequent description it is expressly noted that the subject matter considered to be the invention is not limited to all or several features of the described combinations of features, but rather that any individual features or partial group of features of the exemplary embodiment can also have an inventive importance, even when separated from all other partial features described in connection therewith, and also in combination with other features, as well as independently from the feature combinations and dependencies of the claims.
(9) As is depicted in
(10) As shown in
(11) It is provided according to the invention that the individual wires 1-6 or 1-7 are produced in such a way with regard to the material that at least one of the individual wires 1-6 or 1-7 is made from a copper-nickel alloy, and the remaining individual wires are produced either from copper or from a copper-nickel alloy or from a nickel-chromium alloy.
(12) In the exemplary embodiments depicted in
(13) TABLE-US-00001 TABLE 1 R Wire 1 Wire 2 Wire 3 Wire 4 Wire 5 Wire 6 Wire 7 Braid Ω/m Material Material Material Material Material Material Material Example 1 0.097 Cu Cu Cu Cu Cu CuNi1 CuNi1 Example 2 0.119 Cu Cu Cu CuNi1 CuNi1 CuNi1 CuNi6 Example 3 0.436 CuNi2 CuNi2 CuNi6 CuNi6 CuNi6 CuNi10 CuNi10 Example 4 2.658 CuNi30Mn CuNi44 CuNi44 CuNi44 CuNi44 CuNi44 NiCr3020 Example 5 4.651 CuNi44 NiCr3020 NiCr3020 NiCr3020 NiCr3020 NiCr3020 NiCr3020
(14) In Table 2 are contained further inventive material combinations of heat conductor 9 consisting of seven individual wires.
(15) TABLE-US-00002 TABLE 2 R Wire 1 Wire 2 Wire 3 Wire 4 Wire 5 Wire 6 Wire 7 Braid Ω/m Material Material Material Material Material Material Material Example 1 0.131 Cu Cu Cu CuNi1 CuNi2 CuNi2 CuNi2 Example 2 0.145 CuNi1 CuNi1 CuNi1 CuNi1 CuNi1 CuNi1 CuNi6 Example 3 0.177 CuNi1 CuNi1 CuNi1 CuNi1 CuNi2 CuNi2 CuNi15 Example 4 0.198 CuNi1 CuNi1 CuNi1 CuNi1 CuNi6 CuNi10 CuNi10 Example 5 0.218 CuNi1 CuNi1 CuNi2 CuNi2 CuNi2 CuNi2 CuNi10 Example 6 0.242 CuNi1 CuNi2 CuNi2 CuNi2 CuNi2 CuNi2 CuNi6 Example 7 0.326 CuNi2 CuNi2 CuNi2 CuNi2 CuNi2 CuNi10 CuNi15 Example 8 0.397 CuNi2 CuNi2 CuNi2 CuNi6 CuNi6 CuNi10 CuNi15
(16) The diameter of the six or seven individual wires is preferably 0.19 mm.
(17) It falls within the scope of the disclosure that the heat conductor 9 may be formed by a braid 10 that is manufactured from nineteen or thirty-seven twisted individual wires—as seen in
(18) TABLE-US-00003 TABLE 3 Example Example Example Example Example 1 2 3 4 5 R Ω/m 0.131 0.145 0.162 0.177 0.198 Wire 1 Material Cu CuNi1 Cu CuNi1 CuNi1 Wire 2 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 3 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 4 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 5 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 6 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 7 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 8 Material CuNi1 CuNi1 CuNi1 CuNi1 CuNi1 Wire 9 Material CuNi1 CuNi1 CuNi1 CuNi1 CuNi1 Wire 10 Material CuNi1 CuNi1 CuNi1 CuNi1 CuNi1 Wire 11 Material CuNi1 CuNi1 CuNi1 CuNi2 CuNi1 Wire 12 Material CuNi1 CuNi1 CuNi1 CuNi2 CuNi2 Wire 13 Material CuNi1 CuNi1 CuNi2 CuNi2 CuNi10 Wire 14 Material CuNi2 CuNi1 CuNi2 CuNi2 CuNi10 Wire 15 Material CuNi2 CuNi1 CuNi2 CuNi2 CuNi10 Wire 16 Material CuNi2 CuNi1 CuNi2 CuNi2 CuNi10 Wire 17 Material CuNi2 CuNi2 CuNi2 CuNi2 CuNi10 Wire 18 Material CuNi2 CuNi2 CuNi6 CuNi2 CuNi10 Wire 19 Material CuNi6 CuNi6 CuNi6 CuNi10 CuNi15
(19) TABLE-US-00004 TABLE 4 Example Example Example Example Example 1 2 3 4 5 R Ω/m 0.131 0.145 0.162 0.177 0.198 Wire 1 Material Cu Cu Cu CuNi1 CuNi1 Wire 2 Material Cu CuNi1 Cu CuNi1 CuNi1 Wire 3 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 4 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 5 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 6 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 7 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 8 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 9 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 10 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 11 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 12 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 13 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 14 Material Cu CuNi1 CuNi1 CuNi1 CuNi1 Wire 15 Material CuNi1 CuNi1 CuNi1 CuNi1 CuNi2 Wire 16 Material CuNi1 CuNi1 CuNi1 CuNi1 CuNi2 Wire 17 Material CuNi1 CuNi1 CuNi1 CuNi1 CuNi2 Wire 18 Material CuNi1 CuNi1 CuNi1 CuNi1 CuNi2 Wire 19 Material CuNi1 CuNi1 CuNi1 CuNi2 CuNi2 Wire 20 Material CuNi1 CuNi1 CuNi1 CuNi2 CuNi2 Wire 21 Material CuNi1 CuNi1 CuNi1 CuNi2 CuNi2 Wire 22 Material CuNi1 CuNi1 CuNi1 CuNi2 CuNi2 Wire 23 Material CuNi1 CuNi1 CuNi1 CuNi2 CuNi2 Wire 24 Material CuNi1 CuNi1 CuNi1 CuNi2 CuNi2 Wire 25 Material CuNi1 CuNi1 CuNi1 CuNi2 CuNi2 Wire 26 Material CuNi1 CuNi1 CuNi2 CuNi2 CuNi2 Wire 27 Material CuNi2 CuNi1 CuNi2 CuNi2 CuNi2 Wire 28 Material CuNi2 CuNi1 CuNi2 CuNi2 CuNi2 Wire 29 Material CuNi2 CuNi1 CuNi2 CuNi2 CuNi2 Wire 30 Material CuNi2 CuNi1 CuNi2 CuNi2 CuNi2 Wire 31 Material CuNi2 CuNi2 CuNi2 CuNi2 CuNi2 Wire 32 Material CuNi2 CuNi2 CuNi6 CuNi2 CuNi2 Wire 33 Material CuNi2 CuNi2 CuNi6 CuNi2 CuNi2 Wire 34 Material CuNi6 CuNi2 CuNi6 CuNi2 CuNi2 Wire 35 Material CuNi6 CuNi2 CuNi10 CuNi2 CuNi6 Wire 36 Material CuNi6 CuNi2 CuNi10 CuNi2 CuNi6 Wire 37 Material CuNi6 CuNi6 CuNi10 CuNi2 CuNi10
(20) According to the invention, it is advantageous if the range of the specific resistance of the individual wires is 0.008 to 0.74 Ωmm.sup.2/m at 20° C. The weight of the total line is 2 to 4 g/m, preferably 2.6 to 2.8 g/m. The wall thickness of the electrical insulation 11 of the braid 10 is suitably at least 0.20 mm, and especially nominally 0.265 mm.
(21) It is achieved by means of the present media line 1 that the individual wires 1 to 37 of a braid 10 of a heat conductor 9 can all have the same diameter. The invention additionally allows an exact adjustment of the total resistance of a braid 10 or of the heat conductor 9 so that a precise adjustment of the required heating power is possible. The production and storage costs are furthermore reduced by means of the invention.
(22) As seen in
(23) The invention is not limited to the depicted and described exemplary embodiments, but rather includes also all embodiments that are functionally identical in the sense of the invention. It is expressly emphasized that the exemplary embodiments are not limited to all features in combination, but rather that each individual partial feature can also have an inventive importance, separately from all other partial features. The invention is furthermore not limited until now to the combinations of features defined in the claims, but rather can also be defined by any other combination of specific features of all the disclosed individual features. This means that in principle practically any individual feature of the independent claim can be omitted or replaced by at least one other individual feature disclosed elsewhere in the application.