Pressing arrangement
11298905 · 2022-04-12
Assignee
Inventors
Cpc classification
International classification
F27D7/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A pressing arrangement (100) is disclosed. The pressing arrangement (100) comprises a pressure vessel (2) and a furnace chamber (18) arranged within the pressure vessel (2). The furnace chamber (18) is at least partly enclosed by a heat insulated casing (6, 5 7, 8) and arranged so that pressure medium can enter and exit the furnace chamber (18). The pressing arrangement (100) comprises a plurality of pressure medium guiding passages (10, 11) in fluid communication with the furnace chamber (18) and arranged to form an outer cooling loop within the pressure vessel (2). The pressing arrangement (100) comprises a heat absorbing element (20) which is arranged within the pressure vessel (2) and which is 10 configured to absorb heat from pressure medium having exited the furnace chamber (18).
Claims
1. A pressing arrangement comprising: a pressure vessel comprising a pressure cylinder and a first end closure and a second end closure; a furnace chamber arranged within the pressure vessel, the furnace chamber being at least partly enclosed by a heat insulated casing and arranged so that pressure medium is configured to enter and exit the furnace chamber; a plurality of pressure medium guiding passages in fluid communication with the furnace chamber and arranged to form an outer cooling loop within the pressure vessel; and a heat absorbing element arranged within the pressure vessel and configured to absorb heat from the pressure medium; wherein the heat insulated casing comprises a heat insulating portion and a housing at least partly enclosing the heat insulating portion, and wherein a part of the outer cooling loop comprises at least one first pressure medium guiding passage formed between at least a portion of the housing and at least a portion of the heat insulating portion, and arranged to guide the pressure medium after having exited the furnace chamber towards the first end closure to a space between the first end closure and the furnace chamber in which the heat absorbing element is arranged, the heat absorbing element comprising a plurality of inlets permitting the pressure medium having exited the furnace chamber to enter into an interior of the heat absorbing element, the heat absorbing element being configured so as to permit pressure medium to be guided through the heat absorbing element towards at least one outlet of the heat absorbing element, the at least one outlet permitting the pressure medium to exit the heat absorbing element, wherein the plurality of inlets are arranged on a first side of the heat absorbing element and the at least one outlet is arranged on a second side of the heat absorbing element, wherein at least a portion of the first side of the heat absorbing element comprises a plurality of perforations or openings distributed over the at least a portion of the first side of the heat absorbing element, the plurality of perforations or openings constituting the plurality of inlets of the heat absorbing element, wherein the plurality of inlets of the heat absorbing element permit all of the pressure medium guided in the at least one first pressure medium guiding passage to enter into the interior of the heat absorbing element, wherein the second side of the heat absorbing element is facing in a direction towards an inner surface of the first end closure, and wherein each of the plurality of inlets of the heat absorbing element is arranged above the heat insulating portion in a vertical direction and in a flow direction of the pressure medium in the at least one first pressure medium guiding passage towards the first end closure; and wherein another part of the outer cooling loop comprises at least one second pressure medium guiding passage arranged to guide the pressure medium having exited the heat absorbing element in proximity to an inner surface of walls of the pressure cylinder before the pressure medium re-enters into the furnace chamber.
2. A pressing arrangement according to claim 1, wherein the heat absorbing element is arranged such that the first side of the heat absorbing element is opposite to the second side of the heat absorbing element.
3. A pressing arrangement according to claim 2, wherein the at least one outlet of the heat absorbing element comprises at least one opening.
4. A pressing arrangement according to claim 1, wherein the at least one outlet of the heat absorbing element comprises at least one opening.
5. A pressing arrangement according to claim 1, wherein the heat absorbing element comprises a plurality of pressure medium guiding channels arranged to guide the pressure medium having entered into the heat absorbing element within the interior of the heat absorbing element towards or to the at least one outlet of the heat absorbing element.
6. A pressing arrangement according to claim 5, wherein the plurality of pressure medium guiding channels of the heat absorbing element are comprised in or constituted by a honeycomb structure.
7. A pressing arrangement according to claim 6, wherein at least one of the plurality of pressure medium guiding channels of the heat absorbing element has a square, circular, or oval cross section as seen in a direction along the respective pressure medium guiding channel.
8. A pressing arrangement according to claim 5, wherein at least one of the plurality of pressure medium guiding channels of the heat absorbing element has a square, circular, or oval cross section as seen in a direction along the respective pressure medium guiding channel.
9. A pressing arrangement according to claim 1, wherein the at least one second pressure medium guiding passage is further arranged to guide the pressure medium having exited the heat absorbing element further in proximity to the first end closure before the pressure medium re-enters into the furnace chamber.
10. A pressing arrangement according to claim 1, wherein the heat absorbing element is at least partly enclosed by the housing such that there is a space between the second side of the heat absorbing element and a portion of the housing, wherein the pressure medium enters the space after exiting the heat absorbing element, wherein the pressure medium is guided to the at least one second pressure medium guiding passage via at least one opening in said portion of the housing.
11. A pressing arrangement according to claim 1, wherein the heat absorbing element is mechanically connected to the first end closure.
12. A pressing arrangement according to claim 1, wherein said first end closure comprises a top end closure, and wherein said second end closure comprises a bottom end closure, wherein the furnace chamber is arranged so that pressure medium is configured to enter the furnace chamber from, and exit the furnace chamber into, a space between the furnace chamber and the bottom end closure.
13. A pressing arrangement comprising: a pressure vessel comprising a pressure cylinder and a first end closure and a second end closure; a furnace chamber arranged within the pressure vessel, the furnace chamber being at least partly enclosed by a heat insulated casing and arranged so that pressure medium is configured to enter and exit the furnace chamber; a plurality of pressure medium guiding passages in fluid communication with the furnace chamber and arranged to form an outer cooling loop within the pressure vessel; and a passive heat exchanger unit arranged within the pressure vessel and configured to absorb heat from the pressure medium, wherein the passive heat exchanger unit is entirely arranged within the pressure vessel and arranged such that the passive heat exchanger unit does not require any exchange of cooling medium with a source during operation of the pressing arrangement; wherein the heat insulated casing comprises a heat insulated layer and a housing at least partly enclosing the heat insulated layer, and wherein a part of the outer cooling loop comprises at least one first pressure medium guiding passage formed between at least a portion of the housing and at least a portion of the heat insulated layer, and arranged to guide the pressure medium after having exited the furnace chamber towards the first end closure to a space between the first end closure and the furnace chamber in which the passive heat exchanger unit is arranged, the passive heat exchanger unit comprising a plurality of inlets permitting the pressure medium having exited the furnace chamber to enter into an interior of the passive heat exchanger unit, the passive heat exchanger unit being configured so as to permit pressure medium to be guided through the passive heat exchanger unit towards at least one outlet of the passive heat exchanger unit, the at least one outlet permitting the pressure medium to exit the passive heat exchanger unit, wherein the plurality of inlets are arranged on a first side of the passive heat exchanger unit and the at least one outlet is arranged on a second side of the passive heat exchanger unit, wherein at least a portion of the first side of the passive heat exchanger unit comprises a plurality of perforations or openings distributed over the at least a portion of the first side of the passive heat exchanger unit, the plurality of perforations or openings constituting the plurality of inlets of the passive heat exchanger unit, wherein the plurality of inlets of the passive heat exchanger unit permit all of the pressure medium guided in the at least one first pressure medium guiding passage to enter into the interior of the passive heat exchanger unit, wherein the second side of the passive heat exchanger unit is facing in a direction towards an inner surface of the first end closure, and wherein each of the plurality of inlets of the passive heat exchanger unit is arranged above the heat insulating layer in a vertical direction and in a flow direction of the pressure medium in the at least one first pressure medium guiding passage towards the first end closure; wherein another part of the outer cooling loop comprises at least one second pressure medium guiding passage arranged to guide the pressure medium having exited the passive heat exchanger unit in proximity to an inner surface of walls of the pressure cylinder before the pressure medium re-enters into the furnace chamber.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Exemplifying embodiments of the present invention will be described below with reference to the accompanying drawings.
(2)
(3)
(4)
(5)
(6) All the figures are schematic, not necessarily to scale, and generally only show parts which are necessary in order to elucidate embodiments of the present invention, wherein other parts may be omitted or merely suggested.
DETAILED DESCRIPTION
(7) The present invention will now be described hereinafter with reference to the accompanying drawings, in which exemplifying embodiments of the present invention are shown. The present invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments of the present invention set forth herein; rather, these embodiments are provided by way of example so that this disclosure will convey the scope of the present invention to those skilled in the art.
(8)
(9) The pressure vessel 2 comprises a pressure cylinder 1 and a top end closure 3 and a bottom end closure 9. The pressure vessel 2 comprises a furnace chamber 18. The furnace chamber 18 comprises a furnace, or heater or heating elements, for heating of the pressure medium in the pressure vessel for example during a pressing phase of a treatment cycle. The furnace is schematically indicated in
(10) Even though it is not explicitly indicated in any of the figures, the pressure vessel 2 may be arranged such that it can be opened and closed, such that any article 5 within the pressure vessel 2 may be inserted or removed. An arrangement of the pressure vessel 2 such that it can be opened and closed may be realized in a number of different manners, as known in the art. Although not explicitly indicated in
(11) The furnace chamber 18 is enclosed by a heat insulated casing 6, 7, 8, and is arranged so that pressure medium can enter and exit the furnace chamber 18. In accordance with the embodiment of the present invention illustrated in
(12) The pressing arrangement 100 comprises a heat absorbing element 20. The heat absorbing element 20 is arranged within the pressure vessel 2 and is configured to absorb heat from the pressure medium. At least a portion or part of the heat absorbing element 20 may for example be made of metal, or another material having a relatively high thermal conductivity. The heat absorbing element 20 will be further described in the following.
(13) A pressure medium guiding passage 11 is formed between the heat insulating portion 7 and the housing 6. As illustrated in
(14) The heat absorbing element 20 comprises a plurality of inlets 21 which permit the pressure medium that has exited the furnace chamber 18 to enter into an interior 22 of the heat absorbing element 20. The heat absorbing element 20 is configured so as to permit pressure medium to be guided through the heat absorbing element 20 towards a plurality of outlets 23 of the heat absorbing element 20. The plurality of outlets 23 permit the pressure medium to exit the heat absorbing element 20. The inlets 21 are arranged on a first side 24 of the heat absorbing element 20 and the outlets 23 are arranged on a second side 25 of the heat absorbing element 20. It is to be understood that it is not necessary to have a plurality of inlets 21 and a plurality of outlets 23. Possibly, there could be only one inlet 21 on the first side 24 of the heat absorbing element 20, and there could possibly be only one outlet 23 on the second side 25 of the heat absorbing element 20.
(15) The second side 25 of the heat absorbing element 20 is facing in a direction towards an inner surface of the top end closure 3, for example such as illustrated in
(16) Another part of the outer cooling loop comprises a pressure medium guiding passage defined by a space in part defined by the inner surface of the top end closure 3 (e.g., below the top end closure 3), and the pressure medium guiding passage 10. The pressure medium guiding passage defined by the space in part defined by the inner surface of the top end closure 3 and the pressure medium guiding passage 10 are arranged to guide the pressure medium having exited the heat absorbing element 20 in proximity to the top end closure 3 and in proximity to an inner surface 29 of walls of the pressure vessel 2 (e.g., the walls of the pressure cylinder 1, respectively, as illustrated in
(17) The pressure medium that is guided in the pressure medium guiding passage 10 back towards the furnace chamber 18 enters a space between the furnace chamber 18—or the bottom insulating portion 8—and the bottom end closure 9. The furnace chamber 18 may be arranged so that pressure medium can enter the furnace chamber 18 from, and exit the furnace chamber 18 into, the space between the furnace chamber 18 and the bottom end closure 9. For example, and in accordance with the embodiment of the present invention illustrated in
(18) As illustrated in
(19) In accordance with the embodiment of the present invention illustrated in
(20)
(21) The arrangement or configuration of the pressure medium guiding channels 26 within the heat absorbing element 20 may be realized or implemented in different manners. For example, the pressure medium guiding channels 26 of the heat absorbing element 20 could be comprised in or be constituted by a honeycomb structure.
(22) In accordance with the embodiment of the present invention illustrated in
(23) It is to be understood that a configuration of the heat absorbing element 20 with a plurality of pressure medium guiding channels 26 as illustrated in
(24)
(25) In conclusion, a pressing arrangement is disclosed. The pressing arrangement comprises a pressure vessel and a furnace chamber arranged within the pressure vessel. The furnace chamber is at least partly enclosed by a heat insulated casing and arranged so that pressure medium can enter and exit the furnace chamber. The pressing arrangement comprises a plurality of pressure medium guiding passages in fluid communication with the furnace chamber and arranged to form an outer cooling loop within the pressure vessel. The pressing arrangement comprises a heat absorbing element which is arranged within the pressure vessel and which is configured to absorb heat from pressure medium having exited the furnace chamber.
(26) While the present invention has been illustrated in the appended drawings and the foregoing description, such illustration is to be considered illustrative or exemplifying and not restrictive; the present invention is not limited to the disclosed embodiments. Other variations to the disclosed embodiments can be understood and effected by those skilled in the art in practicing the claimed invention, from a study of the drawings, the disclosure, and the appended claims. In the appended claims, the word “comprising” does not exclude other elements or steps, and the indefinite article “a” or “an” does not exclude a plurality. The mere fact that certain measures are recited in mutually different dependent claims does not indicate that a combination of these measures cannot be used to advantage. Any reference signs in the claims should not be construed as limiting the scope.