HIGH PRESSURE ISOSTATIC PRESSING ASSEMBLY, IN PARTICULAR FOOD HIGH PRESSURE PROCESSING ASSEMBLY
20210378269 · 2021-12-09
Inventors
- Grzegorz Widlak (Krakow, PL)
- Lukasz Wachowicz (Krakow, PL)
- Rafal Brzegowy (Lipnica Mala, PL)
- Grzegorz Koryl (Rzeszow, PL)
Cpc classification
A23L3/0155
HUMAN NECESSITIES
B30B15/028
PERFORMING OPERATIONS; TRANSPORTING
International classification
A23L3/015
HUMAN NECESSITIES
B30B15/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A high pressure isostatic pressing food processing assembly (1a) has a vessel (2) with an internal chamber (21) closed at both ends with two head assemblies (3), each having a body (31) that includes a blocking chamber (32), a plug (35) disposed displaceably within the blocking chamber (32) and provided with a sealing means (351) apt to enter and sealingly close the internal chamber (21) during a pressure applying phase. The assembly (1a) includes at least two longitudinal tie-rods (4) juxtaposed around an external surface of the vessel (2), wherein each end of each tie rod (4) passes through a tie member (6), coupled with the vessel (2), and is coupled with a resisting surface (421, 43) transferring axial load on the tie member (6) at an axially external side of the end of the tie rod (4).
Claims
1. A high pressure isostatic pressing assembly (1a, 1b) for food processing, comprising at least one high pressure vessel (2) having an internal chamber (21) closed at axial ends of the vessel (2) with two head assemblies (3), each comprising a body (31) adjoining a respective end of the vessel (2), wherein at least one head assembly (3) further comprises a blocking chamber (32) located within the body (31) transversely relative to a longitudinal axis (A) of the vessel (2), a loading outlet (33), substantially aligned with the longitudinal axis (A) of the vessel (2), joining an axially external side of the body (31) with said blocking chamber (32), and having cross-sectional area substantially corresponding to a cross-sectional area of the vessel (2), and a plug (35) disposed displaceably within the blocking chamber (32) and provided with a sealing means (351) apt to enter and sealingly close the internal chamber (21) of the vessel (2) during a pressure applying phase of the vessel (2), the assembly further comprising at least two longitudinal tie-rods (4) juxtaposed around an external surface of the vessel (2) at a radially external side of the blocking chamber (32), wherein an end of each tie rod (4) passes through a tie member (6) coupled with the vessel and is coupled with a resisting surface (421, 43) transferring axial load on said tie member (6) at an axially external side of said end of each tie rod (4), and wherein said resisting surface (421, 43) axially preloads said end of each tie-rod (4), the body (31) and the vessel (2) with a preload force, and the preload force is adjusted at least to a value ensuring that no separation between the body (31) and the vessel (2) occurs during a loading phase and a closing phase of the vessel (2), as well as during a pressure applying phase of the vessel (2) so that the vessel (2) is axially compressed for all pressures acting inside the vessel (2) by the head assemblies (3) coupled with the tie-rods (4).
2. The high pressure assembly according to claim 1, wherein the bodies (31) of the two head assemblies (3) of the high pressure isostatic pressing assembly (1a) are coupled with each other by said at least two longitudinal tie-rods (4).
3. The high pressure assembly according to claim 2, wherein a combined preload force (T.sub.p) of said at least two tie-rods (4) is adjusted at least to a value of an axial force (F.sub.v) generated in the vessel (2) during the pressure applying phase multiplied by an axial stiffness (C.sub.v) of the vessel (2) relative to an axial stiffness (C.sub.t) of said at least two tie-rods (4) and the axial stiffness (C.sub.v) of the vessel (2) according to a formula T.sub.p≥F.sub.v.Math.C.sub.v/(C.sub.v+C.sub.t).
4. The high pressure assembly according to claim 1, wherein said tie member (6a) is the body (31) of the head assembly (3).
5. The high pressure assembly according to claim 1, wherein said tie member (6) adjoins or is coupled with the body (31) of the head assembly (3).
6. The high pressure assembly according to claim 1, wherein the body (31) of the head assembly (3) has a multipart construction and said tie member (6) is a most axially external part of said body (31) transferring axial loads on the vessel (2).
7. The high pressure assembly according to claim 1, wherein the blocking chamber (32) of said at least one head assembly (3) is provided with an axially external face (321) and the plug (35) is provided with an axially external face (352), wherein said at least one head assembly (3) further comprises a blocking gate (34) having axial width lower than an axial width of the blocking chamber (32), wherein the blocking gate is disposed slidably within said blocking chamber (32) and is provided with an axially external face (341) abutting said axially external face (321) of the blocking chamber (32) and an axially internal face (342), wherein the axially external face (352) of the plug (35) abuts the axially internal face (342) of the blocking gate (34) during the pressure applying phase and is axially displaced from the axially internal face (342) of the blocking gate (34) toward the loading outlet (33) during the loading phase.
8. The high pressure assembly according to claim 7, wherein the blocking gate (34) is provided with a loading channel (343) having cross-sectional area substantially corresponding to a cross-sectional area of the internal chamber (21) of the vessel (2), that passes between said axially external face (341) and said axially internal face (342) of said blocking gate substantially in parallel with the axis (A) of the vessel (2), and during the loading phase is substantially aligned with the loading outlet (33).
9. The high pressure assembly according to claim 7, wherein the plug (35) is supported on the blocking gate (34).
10. The high pressure assembly according to claim 1, wherein at least one head assembly (3) further comprises a plug socket (36) joining the blocking chamber (32) with the internal chamber (21) of the vessel (2) and the plug (35) is disposed displaceably also within the plug said plug socket (36).
11. The high pressure assembly according to claim 1, wherein displacements of the plug (35) within the blocking chamber (32) are determined with respect to the body (31) of the head assembly (3).
12. The high pressure assembly according to claim 1, wherein the plug (35) is provided with a pressure applying channel (353).
13. The high pressure assembly according to claim 1, wherein the resisting surfaces (421, 43) are pressed by at least one nut (42).
14. The high pressure assembly according to claim 13, wherein the at least one nut (42) is screwed on an external thread (41) of the end of each tie rod (4).
15. The high pressure assembly according to claim 1, wherein said resisting surfaces (421, 43) are pressed by a multi-bolt tensioning system.
16. The high pressure assembly according to claim 1, wherein the assembly comprises a number of vessels (2) disposed in parallel with each other and closed at respective axial ends thereof with a common head assembly (3).
17. The high pressure assembly according to claim 1, wherein the at least two longitudinal tie-rods (4) are juxtaposed symmetrically around the external surface of the vessel (2) at the radially external side of the blocking chamber (32).
Description
BRIEF DESCRIPTION OF DRAWINGS
[0023] The invention shall be described and explained below in exemplary embodiments and in connection with the attached drawings on which:
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENT
[0028] In the following description numerical references of elements performing the same functions remain the same in the drawings, wherein suffixes (a, b, . . . ) were added, where appropriate, to additionally distinct elements having different construction.
[0029] An exemplary embodiment of a high pressure isostatic pressing assembly 1a for food High Pressure Processing is shown in in
[0030] The vessel 2 is closed from both ends by two head assemblies 3. The head assemblies 3 and thus also the vessel 2 are coupled with each other by four longitudinal tie-rods 4 juxtaposed around the external surface of the vessel 2. Each end of each rod 4 passes through a longitudinal opening in a tie member 6a coupled with the vessel 2. In this embodiment the tie member 6a is a solid body 31 of the head assembly 3. In other embodiments it could be an additional flange or plate adjoining the head assembly 3 or otherwise coupled with the vessel 2 (cf.
[0031] In this embodiment the resisting surfaces 421 are defined by the axially internal surfaces of nuts 42 abutting the bodies 31 at their axially external sides. In other embodiments the resisting surfaces may be defined by washers between the nuts 42 and the tie members 6, heads of the tie-rods 4 (cf.
[0032] In this embodiment the total preload force T.sub.p of all the tie-rods 4 is adjusted at least to the value of the axial force F.sub.v generated in the vessel 2 during the pressure applying phase multiplied by the stiffness C.sub.v of the vessel 2 relative to the stiffness C.sub.t of the tie-rods 4 and the stiffness of the vessel 2 according to the formula
T.sub.p≥F.sub.v.Math.C.sub.v/(C.sub.v+C.sub.t).
[0033] Such a value of the preload force T.sub.p reduces the effect of cycling loading on the tie-rods 4 produced by the pressure inside the vessel during pressure applying phase and extends the service life of the load carrying members of the assembly.
[0034] Each head assembly 3 is further provided with a plugging assembly enabling packaged products 5 containing the substances that are to be subjected to high pressure treatment to be loaded and unloaded in and out of the vessel 2 (cf.
[0035] To this end, as shown in
[0036] In this embodiment the head assembly 3 further comprises a plug socket 36 (cf.
[0037] In this embodiment the head assembly 3 further comprises a blocking gate 34 having axial width lower than the axial width of the blocking chamber 32 which is disposed slidably and substantially perpendicularly to the axis A of the vessel 2, within the blocking chamber 32. The blocking gate 34 is provided with an axially external face 341 abutting the axially external face 321 of the blocking chamber 32, as well as an axially internal face 342. As shown an axially external face 352 of the plug 35 abuts this axially internal face 342 of the blocking gate 34 during the pressure applying phase. During the loading phase (cf.
[0038] In this embodiment the blocking gate 34 is also provided with a loading channel 343, having cross-sectional area substantially corresponding to the cross-sectional area of the internal chamber 21 of the vessel 2, that passes between the axially external face 341 and the axially internal face 342 of the blocking gate 34 substantially in parallel with the axis A of the vessel 2. During the loading phase the loading channel 343 is substantially aligned with said loading outlet 33 of the head assembly 3.
[0039]
[0040]
[0041]
[0042]
[0043] In yet another embodiment of the present invention the high pressure assembly may comprise a number of vessels 2 disposed in parallel with each other and closed at their axial ends with common head assemblies 3.
[0044] The above embodiments of the present invention are merely exemplary. The figures are not necessarily to scale, and for clarity some features may be exaggerated, minimized or omitted. These and other factors, however, should not be considered as limiting the spirit of the invention, the intended scope of protection of which is indicated in appended claims.
LIST OF THE REFERENCE NUMERALS
[0045] 1. high pressure assembly (1a, 1b)
[0046] 2. high pressure vessel [0047] 21. internal chamber
[0048] 3. head assembly [0049] 31. body [0050] 32. blocking chamber [0051] 321. axially external face [0052] 33. loading outlet [0053] 34. blocking gate [0054] 341. axially external face [0055] 342. axially internal face [0056] 343. loading channel [0057] 346. actuator [0058] 35. plug [0059] 351. sealing means [0060] 352. axially external face [0061] 353. pressure applying channel [0062] 356. rail [0063] 357. supporting frame [0064] 36. plug socket [0065] 37. channel
[0066] 4. tie-rod [0067] 41. external thread [0068] 42. nut [0069] 421. resisting surface [0070] 43. resisting surface
[0071] 5. product
[0072] 6. tie member (6a, 6b)