HEATING SYSTEM FOR PRODUCTION OF A DOUBLE-LAYER TUBE
20220072595 · 2022-03-10
Inventors
Cpc classification
B21C37/06
PERFORMING OPERATIONS; TRANSPORTING
B23K20/002
PERFORMING OPERATIONS; TRANSPORTING
B23K20/00
PERFORMING OPERATIONS; TRANSPORTING
F27B9/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23K2103/22
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A heating system for use in the manufacture of copper coated double-layer steel tubes having a casing (10) in which the roll-wrapped tube is heated to a predefined temperature value. The heating system comprises a sensor (17) configured in an outer portion of the casing (10) such that the sensor (17) is able to determine a temperature value within the casing (10).
Claims
1. A heating system for manufacture of copper coated double-layer steel tubes having a casing in which the roll-wrapped tube is heated to a predefined temperature value characterized by a sensor configured in an outer portion of the casing such that the sensor is able to determine temperature value inside the casing.
2. The heating system according to claim 1, wherein the sensor is being positioned such that facing towards a joining point of the tube forms in the casing.
3. The heating system according to claim 1, wherein a first window is arranged on the casing corresponding to the sensor.
4. The heating system according to claim 3, wherein the first window is arranged on an upper wall of the casing.
5. The heating system according to claim 1, wherein a bar is extending away from the casing.
6. The heating system according to claim 5, wherein a retaining element is disposed on the bar and which at least partially surrounds the sensor.
7. The heating system according to claim 1, wherein the casing has a second window from which an interior of the casing is seen.
8. The heating system according to claim 1, wherein the casing comprises an inlet into which the tube form of the roll is fed to the heating system.
9. A heating device according to claim 1, wherein the casing comprising an outlet from which the copper coated double layer steel tube exit from the heating system.
10. The heating system according to claim 1, wherein a handle is provided allowing adjustment of the temperature value within the casing.
11. The heating system according to claim 1, wherein a control element is configured to measure the temperature value provided by the sensor.
12. The heating system according to claim 11, wherein a display configured to indicate the temperature value provided by the control element.
13. The heating system according to claim 1, wherein the sensor is a temperature sensor which measure the temperature value from a predefined a distance.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0021]
[0022]
[0023]
DETAILED DESCRIPTION OF THE INVENTION
[0024]
[0025] In the heating system (1), there is a bar (21) provided with the casing (10) in the upper wall (13) with the first window (15). A retaining element (22) is positioned on one side of said bar (21) away from the upper wall (13).
[0026] The retaining element (22) secures a sensor (17). In more detail, the retaining element (22) is configured to at least partially surround the sensor (17). In this way, the sensor (17) is located in an outer portion of the casing (10).
[0027] Referring to
[0028] In the heating system (1), the casing (10) has a adjustment mechanism in which the temperature value is adjusted. There is a handle (20) in the adjustment mechanism. The temperature value in the casing (10) increases as the user enables the adjustment mechanism to move in a first direction (a) by means of the handle (20). Again, the temperature value in the casing (10) decreases with the user enabling the adjustment mechanism to move in a second direction (b) via the handle (20). In this way, the user adjusts the temperature value in the casing (10) by means of the handle (20) and can visually see the temperature value sensed by the sensor (17) on the display (19). In a possible embodiment, said temperature value is in the range of a minimum of 100° C. and a maximum of 1200° C.. In a possible embodiment, the sensed temperature is a melting temperature of the copper.
REFERENCE NUMBERS
[0029] 1. Heating system [0030] 10. Casing [0031] 11. Inlet [0032] 12. Outlet [0033] 13. Upper wall [0034] 14. Front wall [0035] 15. First window [0036] 16. Second window [0037] 17. Sensor [0038] 18. Control unit [0039] 19. Display [0040] 20. Handle [0041] 21. Bar [0042] 22. Retaining element [0043] 23. Control element [0044] 30. Double-layer tube [0045] 31. Steel layer [0046] 32. Copper layer [0047] 33. Joining section [0048] a. First direction [0049] b. Second direction [0050] K. Joining point [0051] L1. First line [0052] L2. Second line