SINTERING PRESS AND PRESSURE SINTERING METHOD FOR PRODUCING A SINTERED CONNECTION BY MEANS OF THE SINTERING PRESS
20210121962 · 2021-04-29
Assignee
Inventors
- Dominic BIRKICHT (Emskirchen, DE)
- Juri Heinrich (Rosstal, DE)
- Thomas Franz (Winkelhaid, DE)
- Rudi Ludwig (Winkelhaid, DE)
- Silke KRAFT (Nuremberg, DE)
- Erik MICHAELSEN (Lauf, DE)
- Johannes Weickmann (Forchheim, DE)
Cpc classification
H01L2224/83203
ELECTRICITY
H01L2924/00014
ELECTRICITY
H01L2224/75744
ELECTRICITY
H01L2224/75251
ELECTRICITY
H01L2224/32225
ELECTRICITY
H01L24/75
ELECTRICITY
B22F7/08
PERFORMING OPERATIONS; TRANSPORTING
B22F7/064
PERFORMING OPERATIONS; TRANSPORTING
H01L2224/75252
ELECTRICITY
H01L2224/32238
ELECTRICITY
H01L2924/00014
ELECTRICITY
International classification
B22F7/06
PERFORMING OPERATIONS; TRANSPORTING
B22F3/03
PERFORMING OPERATIONS; TRANSPORTING
B22F7/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A sintering press for producing a sintered connection between a first connection partner and a second connection partner disposed thereabove, having a suction-fixing installation for fixing the first connection partner, having a compression piece which is disposed above the suction-fixing installation. The sintering press for producing the sintered connection is configured for converging the compression piece and the suction-fixing installation relative to one another and for mutually compressing the first connection partner and the second connection partner, wherein the suction-fixing installation on the side thereof that faces the compression piece has first suction openings, wherein the suction-fixing installation, when the first connection partner is disposed above the first suction openings, by generating a negative pressure at the first suction openings, is configured for suctioning the first connection partner and, on account thereof, for fixing the latter in relation to the suction-fixing installation. The invention furthermore relates to a pressure sintering method for producing a sintered connection by the sintering press.
Claims
1. A sintering press for producing a sintered connection between a first connection partner (5) and a second connection partner (6) disposed thereabove, having a suction-fixing installation (3) for fixing the first connection partner (5), having a compression piece (10) which is disposed above the suction-fixing installation (3), wherein: said sintering press (1) for producing the sintered connection, when the first connection partner (5) and the second connection partner (6) are disposed between the compression piece (10) and the suction-fixing installation (3), is configured for converging the compression piece (10) and the suction-fixing installation (3) relative to one another and, on account thereof, for mutually compressing the first connection partner (5) and the second connection partner (6); the suction-fixing installation (3) on the side (3a) thereof that faces the compression piece (10) has first suction openings (9); the suction-fixing installation (3), when the first connection partner (5) is disposed above the first suction openings (9), by means of generating a negative pressure at the first suction openings (9), is configured for suctioning the first connection partner (5) and, on account thereof, for fixing the latter in relation to the suction-fixing installation (3).
2. The sintering press according to claim 1, wherein: the suction-fixing installation (3) is disposed on a compression counterpart (11) of the sintering press (1), or is an integral component part of a compression counterpart (11) of the sintering press (1).
3. The sintering press according to claim 1, wherein: the respective cross-sectional area of the first suction openings (9) is 0.007 mm2 to 3.2 mm.sup.2, in particular 0.03 mm.sup.2 to 1.8 mm2.
4. The sintering press according to claim 3, wherein: the side (3a) of the suction-fixing installation (3) that faces the compression piece (10) has an in particular rectangular fixing region (14); and wherein the first suction openings (9) are disposed within the fixing region (14), wherein at least some (9′) of the first suction openings (9) are disposed in a peripheral region (14c) of the fixing region (14) or are disposed in a central region of the fixing region (14).
5. The sintering press according to claim 4, wherein: the side (3a) of the suction-fixing installation (3) that faces the compression piece (10) has a rectangular fixing region (14); and wherein the number of first suction openings (9) in the corner regions (14b) of the fixing region (14) is increased in comparison to other regions of the fixing region (14).
6. The sintering press according to claim 5, wherein: the sintering press (1) has a suction gripper (22) which, by means of generating a negative pressure at the suction openings (24) thereof, is configured for (i) thinly holding the first connection partner (5) directly or indirectly on said suction gripper (22) and, prior to the pressing procedure, for disposing the first connection partner (5) conjointly with the second connection partner (6) disposed above the first connection partner (5) in the space between the compression piece (10) and the suction-fixing installation (3) and after the pressing procedure, for (ii) removing said first connection partner (5) conjointly with said second connection partner (6) from said space again.
7. The sintering press according to claim 6, wherein: the sintering press (1) for producing the sintered connection, when the first connection partner (5) and the second connection partner (6) are disposed between the compression piece (10) and the suction-fixing installation (3) and the first connection partner (5) is disposed directly on the suction-fixing installation (3), and is configured for converging the compression piece (10) and the suction-fixing installation (3) relative to one another and, on account thereof, for mutually compressing the first connection partner (5) and the second connection partner (6); wherein the suction-fixing installation (3) on the side (3a) thereof that faces the compression piece (10) has first suction openings (9); and wherein the suction-fixing installation (3), when the first connection partner (5) is disposed above the first suction openings (9) so as to be directly on the suction-fixing installation (3), by means of generating a negative pressure at the first suction openings (9), is configured for suctioning the first connection partner (5) and, on account thereof, for fixing the latter in relation to the suction-fixing installation (3).
8. The sintering press according to claim 7, wherein: the suction-fixing installation (3) on the side (3a) thereof that faces the compression piece (10) has at least one second suction opening (15) for suctioning a film portion (4a) of a film (4) when the film portion (4a) is disposed above the first connection partner (5) and the second connection partner (6) and above the at least one second suction opening (15); wherein the at least one second suction opening (15) is disposed in such a manner that the first connection partner (5), when the first connection partner (5) is disposed above the first suction openings (9), is not disposed above the at least one second suction opening (15); and wherein the suction-fixing installation (3), when the film portion (4a) is disposed above the at least one second suction opening (15), by means of generating a negative pressure at the at least one second suction opening (15), is configured for suctioning the film portion (4a) and, on account thereof, for fixing the first connection partner (5) in relation to the suction-fixing installation (3) by way of the film portion (4a).
9. The sintering press according to claim 8, wherein: a plurality of elastic delimitation elements (13) are disposed on the side (3a) of the suction-fixing installation (3) that faces the compression piece (10); said delimitation elements (13), when the first connection partner (5) is disposed directly on the suction-fixing installation (3), delimit or prevent a movement of the first connection partner (5) in a direction perpendicular to the normal direction (N1) of the side (3a) of the suction-fixing installation (3) that faces the compression piece (10).
10. The sintering press according to claim 6, wherein: when the first connection partner (5) and the second connection partner (6) are disposed between the compression piece (10) and the suction-fixing installation (3) and the first connection partner (5) is disposed directly on a workpiece carrier (17) and has a plurality of passage openings (16) so as to be above the passage openings (16) and the workpiece carrier (17) is disposed directly on the suction-fixing installation (3), is configured for converging the compression piece (10) and the suction-fixing installation (3) relative to one another for mutually compressing the first connection partner (5) and the second connection partner (6); wherein the suction-fixing installation (3) on the side (3a) thereof that faces the compression piece (10) has first suction openings (9); and wherein the suction-fixing installation (3), when the first connection partner (5) is disposed directly on a workpiece carrier (17) has a plurality of passage ducts (16) so as to be above the passage ducts (16) and the workpiece carrier (17) is disposed directly on the suction-fixing installation (3) in such a manner that the passage ducts (16) are disposed so as to be in alignment with the first suction openings (9), by means of generating a negative pressure at the first suction openings (9), is configured for suctioning the first connection partner (5) and, on account thereof, for fixing the latter in relation to the suction-fixing installation (3).
11. The sintering press according to claim 10, wherein: the suction-fixing installation (3) on the side (3a) thereof that faces the compression piece (10) has at least one second suction opening (15′) for fixing the workpiece carrier (17) when the latter is disposed directly on the suction-fixing installation (3); and wherein the suction-fixing installation (3), when the workpiece carrier (17) is disposed above the at least one second suction opening (15′), by means of generating a negative pressure at the at least one second suction opening (15′), is configured for suctioning the workpiece carrier (17) and, on account thereof, for fixing the latter in relation to the suction-fixing installation (3).
12. The sintering press according to claim 11, wherein: a frame element (29) encircles the first connection partner (5) and is movable in relation to the workpiece carrier (17) at least in the normal direction (N1) of the side (3a) of the suction-fixing installation (3) that faces the compression piece (10) is disposed on the workpiece carrier (17); and wherein the frame element (29) on the side thereof that faces the suction-fixing installation (3) has ventilation trenches (29a) which in the direction perpendicular to the normal direction (N1) of the side (3a) of the suction-fixing installation (3) that faces the compression piece (10) run through the frame element (29).
13. A pressure sintering method for producing a sintered connection between a first connection partner (5) and a second connection partner (6) disposed thereabove by means of a sintering press (1) which is configured according to claim 1, said method comprising the following method steps in succession: a) disposing between the compression piece (10) and the suction-fixing installation (3) the first connection partner (5) conjointly with the second connection partner (6) disposed above the first connection partner (5), wherein a sintering material (7) to be sintered is disposed between the first connection partner (5) and the second connection partner (6), wherein the first connection partner (5) is disposed above the first suction openings (9); b) fixing the first connection partner (5) in relation to the suction-fixing installation (3) by suctioning the first connection partner (5) by means of generating a negative pressure at the first suction openings (9); c) impinging the first connection partner (5) and the second connection partner (6) and the sintering material (7) with a pressure by converging the compression piece (10) and the suction-fixing installation (3) relative to one another, wherein, on account thereof, the first connection partner (5) and the second connection partner (6) are mutually compressed, and impinging the sintering material (7) with a temperature, wherein the sintering material (7) on account of the impingement with pressure and temperature is converted to a sintered metal; d) diverging the compression piece (10) and the suction-fixing installation (3) relative to one another; e) releasing the first connection partner (5) in relation to the suction-fixing installation (3) by reinstating the gas pressure prevailing above the first connection partner (5) at the first suction openings (9).
14. The pressure sintering method according to claim 13, wherein: between method steps a) and b), or between method steps b) and c), a film portion (4a) of a film (4) is disposed on the first connection partner (5) and the second connection partner (6).
15. The pressure sintering method according to claim 14, wherein: between method steps d) and e) the film portion (4a) is removed from the first connection partner (5) and the second connection partner (6).
16. The pressure sintering method according to claim 15, wherein the sintering press (1) is configured according to claim 7, wherein: in method step a) the first connection partner (5) is disposed directly on the suction-fixing installation (3).
17. The pressure sintering method according to claim 15, wherein: the sintering press (1) is configured according to claim 12; and wherein in method step (a) the first connection partner (5) is disposed directly on the workpiece carrier (17) having passage ducts (16) so as to be above the passage ducts (16), and the workpiece carrier (17) is disposed directly on the suction-fixing installation (3) in such a manner that the passage ducts (16) are disposed so as to be in alignment with the first suction openings (9).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031]
[0032]
[0033]
[0034]
[0035]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0036] Reference will now be made in detail to embodiments of the invention. Wherever possible, same or similar reference numerals are used in the drawings and the description to refer to the same or like parts or steps. The drawings are in simplified form and are not to precise scale. The word ‘couple’ and similar terms do not necessarily denote direct and immediate connections, but also include connections through intermediate elements or devices. For purposes of convenience and clarity only, directional (up/down, etc.) or motional (forward/back, etc.) terms may be used with respect to the drawings. These and similar directional terms should not be construed to limit the scope in any manner. It will also be understood that other embodiments may be utilized without departing from the scope of the present invention, and that the detailed description is not to be taken in a limiting sense, and that elements may be differently positioned, or otherwise noted as in the appended claims without requirements of the written description being required thereto.
[0037] Various operations may be described as multiple discrete operations in turn, in a manner that may be helpful in understanding embodiments of the present invention; however, the order of description should not be construed to imply that these operations are order dependent.
[0038] *A sectional view of a configuration according to the invention of a sintering press 1 having first connection partners 5 and second connection partners 6 disposed in the sintering press 1 is illustrated in
[0039] A sintering press 1 according to the invention for producing a sintered connection between a first connection partner 5 and a second connection partner 6 disposed thereabove is illustrated in
[0040] The first connection partner 5 can be configured, for example, as a substrate, as in the exemplary embodiments. The substrate 5 has an insulation layer 5a which is not electrically conducting, a metallizing layer 5b which has been structured so as to form conductor paths 5b′ being disposed on the first main side 5a′ of said insulation layer 5a that faces the compression piece 10. The conductor paths 5b′ are disposed so as to be mutually spaced apart on the insulation layer 5a. The insulation layer 5a is preferably configured as a ceramic board. The substrate 5 preferably has a structured or non-structured further metallizing layer 5c which is disposed on the insulation layer 5a, wherein the insulation layer 5a is disposed between the metallizing layer 5b and the further metallizing layer 5c. The respective metallizing layer 5b or 5c, respectively, is connected to the insulation layer 5a in a materially-bonded manner. The substrate 5 can be configured, for example, as a direct copper bonded substrate (DCB substrate) or as an active metal brazing substrate (AMB substrate). Alternatively, the substrate 5 can also be configured as an insulated metal substrate (IMS substrate).
[0041] The second connection partner 6, as in the exemplary embodiments, can be configured as a power semiconductor component, for example, wherein the power semiconductor component 6 is preferably present in the form of a power semiconductor switch or a diode. The respective power semiconductor switch herein is preferably present in the form of a transistor such as, for example, an IGBT (insulated gate bipolar transistor) or in the form of a MOSFET (metal oxide semiconductor field effect transistor) or a thyristor. The second connection partner 6 can however also be configured as an electrically conducting load-connection element, for example.
[0042] It is to be noted that the respective connection partner 5 or 6, respectively, can also be composed of a plurality of components which are connected to one another. For example, the first connection partner 5 can thus also comprise a substrate and a power semiconductor component which are already connected to one another in an electrically conducting manner by way of a sintered metal or a solder, and the second connection partner 6 can be present in the form of a metallic foil. The metallic foil is preferably structured so as to form conductor paths and is a component part of a film/foil composite.
[0043] The sintering press 1 furthermore has a suction-fixing installation 3 for fixing the first connection partner 5, and a compression piece 10 which is disposed above the suction-fixing installation 3. The compression piece 10 is preferably configured from metal and can be configured, for example, as a metal plate (see in an exemplary manner
[0044] A film portion 4a of a film 4, in particular of a plastic film 4 which is preferably configured as a polytetrafluoroethylene film (PTFE film) can be disposed between the compression piece 10 and the suction-fixing installation 3 or, if present, between the pressure pad 2 and the suction-fixing installation 3. The film portion 4a can be disposed manually on the first connection partner 5 and the second connection partner 6 prior to the pressing procedure carried out by the sintering press 1 for producing the sintered connection, for example, and after the pressing procedure, once the sintered connection has been produced, can again be manually lifted from the first connection partner 5 and the second connection partner 6 in the direction of the normal direction N1 of the side 3a of the suction-fixing installation 3 that faces the compression piece 10. Alternatively, this procedure can also take place in an automated manner by means of a film-moving installation.
[0045] The sintering press 1 for producing the sintered connection, when the first connection partner 5 and the second connection partner 6 are disposed between the compression piece 10 and the suction-fixing installation 3, is configured for converging the compression piece 10 and the suction-fixing installation 3 relative to one another and, on account thereof, for mutually compressing the first connection partner 5 and the second connection partner 6. The converging of the compression piece 10 and of the suction-fixing installation 3 relative to one another in the invention can take place in that the compression piece 10 moves downward and/or in that the suction-fixing installation 3 moves upward, as is illustrated by the arrows 8 in
[0046] The suction-fixing installation 3 on the side 3a thereof that faces the compression piece 10 has first suction openings 9, wherein the suction-fixing installation 3, when the first connection partner 5 is disposed above the first suction openings 9, by means of generating a negative pressure at the first suction openings 9, is configured for suctioning the first connection partner 5 and, on account thereof, for fixing the latter in relation to the suction-fixing installation 3. The first connection partner 5, as is illustrated in an exemplary manner in
[0047] The suction-fixing installation 3, as is illustrated in an exemplary manner in
[0048] The respective cross-sectional area of the first suction openings 9 is preferably 0.007 mm2 to 3.2 mm2, in particular 0.03 mm2 to 1.8 mm2. The cross-sectional area of the first suction openings 9 is thus preferably relatively small. Damage to the first connection partner 5, and in particular breaking of the first connection partner 5, is reliably avoided on account thereof when a high pressure acts on the first connection partner 5, such as on a substrate, for example, during the pressing procedure, despite said first connection partner 5 not bearing across the full area, the latter being caused by the first suction openings 9. The first suction openings 9 preferably have a circular shape.
[0049] As is illustrated in an exemplary manner in
[0050] In the exemplary embodiment according to
[0051] In the exemplary embodiment according to
[0052] Preferably elastic delimitation elements 13 can be disposed on the side 3a of the suction-fixing installation 3 that faces the compression piece 10, said delimitation elements 13, when the first connection partner 5 is disposed directly on the suction-fixing installation 3, delimiting or preventing a movement of the first connection partner 5 in the direction perpendicular to the normal direction N1 of the side 3a of the suction-fixing installation 3 that faces the compression piece 10, thus in addition to the suction-fixing installation 3 fixing the first connection partner 5, albeit only in the direction perpendicular to the normal direction N1 of the side 3a of the suction-fixing installation 3 that faces the compression piece 10. The suction-fixing installation 3 in relation to the suction-fixing installation 3 fixes the first connection partner 5 in the direction perpendicular to the normal direction N1 of the side 3a of the suction-fixing installation 3 that faces the compression piece 10 and in the direction of the normal direction N1 of the side 3a of the suction-fixing installation 3 that faces the compression piece 10. The delimitation elements 13 preferably also serve as positioning aids for positioning the first connection partner 5 above the first suction openings 9. The delimitation elements 13 can be configured from silicone, for example.
[0053] As opposed to the configuration of the invention according to
[0054] The negative pressure generated at the first suction openings 9 has the effect that a negative pressure is generated in the passage ducts 16 such that the first connection partner 5 is suctioned through the workpiece carrier 17 by the suction-fixing installation 3 and is thus fixed in relation to the suction-fixing installation 3. The gas pressure prevailing in the press chamber 28 of the sintering press 1 above the first connection partner 5 pushes the first connection partner 5 against the workpiece carrier 17, and the workpiece carrier 17 against the suction-fixing installation 3. The gas pressure is preferably present in the form of the air pressure. The pressing procedure of the sintering press 1 for producing a sintered connection takes place in the press chamber 28. The workpiece carrier 17 preferably serves for transporting the first connection partner 5 conjointly with the second connection partner 6 disposed thereabove and with the sintering material 7 which is to be sintered and is disposed between the connection partners 5 and 6 into the sintering press 1 and out of the sintering press 1 once the sintered connection has been produced, wherein the sintering material 7 on account of being impinged with pressure and temperature in the sintering press 1 is converted to a sintered metal.
[0055] The sintering material 7 to be sintered is preferably present in the form of a sintering paste common in this technology. The sintering material 7, in particular the sintering paste, contains metal particles, for example of silver. The workpiece carrier 17 can be present, for example, in the form of a metal plate having passage ducts. The workpiece carrier 17 on the side thereof that faces the first connection partner 5 can have a depression in which a lower part of the first connection partner 5 is disposed for positioning the first connection partner 5, for example, this not being illustrated in
[0056] The region which encircles the periphery of the first connection partner 5 below the film 4a is ventilated by the ventilation trenches 29a, this facilitating the lifting of the film 4a. It is furthermore preferably avoided on account of the frame element 29 that the film 4a adheres to the workpiece carrier 17. The same applies in an analogous manner to the pressure pad 2, if the pressure pad 2 is present and the film 4a is absent. It is to be noted that the frame element 29 can be disposed in a manner identical to that described above so as to be configured on the suction-fixing installation 3 also in the exemplary embodiment according to
[0057] In the exemplary embodiment according to
[0058] Even though not illustrated in
[0059] With the exception of the differences described above, the configuration of the invention according to
[0060] The respective suction openings 9, 15, 15′ of the suction-fixing installation 3 are fluidically connected to a respective negative-pressure connector 26 or 27, respectively, by way of a respective negative-pressure line duct system 20 or 21, respectively. A suctioning installation which by way of the respective negative-pressure line duct system 20 or 21, respectively, generates a respective negative pressure at the respective suction openings 9, 15, 15′ of the suction-fixing installation 3 such that, when the first connection partner 5 is disposed above the first suction openings 9, the first connection partner 5 is suctioned by the first suction openings 9, or when the film portion 4a is disposed above the at least one second suction opening 15 or 15′, respectively, the film portion 4a is suctioned by the at least one second suction opening 15 or 15′, respectively, is connected to the negative-pressure connectors 26 or 27, respectively, said suctioning installation not being illustrated for reasons of clarity in any figures. The negative pressure generated by the suctioning installation in the negative-pressure line duct system 20 or 21, respectively, is preferably controllable in an independent manner such that the negative pressure at the first suction openings 9 and at the at least one second suction opening 15 or 15′, respectively, is in each case controllable in an independent manner. The same applies in analogous manner should the suction-fixing installation 3 have at least one third suction opening.
[0061] The sintering press 1 preferably has a suction gripper 22 which by means of generating a negative pressure at the suction openings 24 thereof is configured for firmly holding the first connection partner 5 directly on said suction gripper 22 and, prior to the pressing procedure, for disposing the first connection partner 5 conjointly with the second connection partner 6 disposed above the first connection partner 5 in the space between the compression piece 10 and the suction-fixing installation 3 and/or, after the pressing procedure, for removing said first connection partner 5 conjointly with said second connection partner 6 from said space again. In the case of the configuration of the invention according to
[0062] A pressure sintering method according to the invention for producing a sintered connection between the first connection partner 5 and the second connection partner 6 disposed thereabove by means of the sintering press 1 according to the invention will be described hereunder.
[0063] In a method step a), disposing between the compression piece 10 and the suction-fixing installation 3 the first connection partner 5 conjointly with the second connection partner 6 disposed above the first connection partner 5 takes place, wherein the sintering material 7 to be sintered is disposed between the first connection partner 5 and the second connection partner 6, wherein the first connection partner 5 is disposed above the first suction openings 9. The first connection partner 5 herein can be disposed directly on the suction-fixing installation 3, as is illustrated in an exemplary manner in
[0064] In a subsequent method step b), fixing the first connection partner 5 in relation to the suction-fixing installation 3 by suctioning the first connection partner 5 by means of generating a negative pressure at the first suction openings 9 takes place.
[0065] In a subsequent method step c), impinging the first connection partner 5 and the second connection partner 6 and the sintering material 7 with pressure takes place by converging the compression piece 10 and the suction-fixing installation 3 relative to one another, wherein, on account thereof, the first connection partner 5 and the second connection partner 6 are mutually compressed, and impinging the sintering material 7 with a temperature takes place, wherein the sintering material 7 on account of the impingement with pressure and temperature is converted to a sintered metal. The conversion of the sintering material 7 to the sintered metal takes place by sintering the metal particles contained in the sintering material 7. The metal particles in the exemplary embodiments are composed of silver such that the sintered metal in the exemplary embodiments is composed of silver. The impingement of the sintering material 7 with a temperature preferably takes place by heating the compression counterpart 11 and/or the suction-fixing installation 3 and/or the compression piece 10. The heat herein is transmitted from the first connection partner 5 and/or from the second connection partner 6 to the sintering material 7. The converging of the compression piece 10 and the suction-fixing installation 3 relative to one another in the invention can take place in that the compression piece 10 is moved downward and/or in that the suction-fixing installation 3 is moved upward, as is illustrated by the arrows 8 in
[0066] In a subsequent method step d), diverging the compression piece 10 and the suction-fixing installation 3 relative to one another takes place. The diverging of the compression piece 10 and the suction-fixing installation 3 relative to one another in the invention can take place in that the compression piece 10 in
[0067] In a subsequent method step e), releasing the first connection partner 5 in relation to the suction-fixing installation 3 takes place by reinstating the gas pressure prevailing in the press chamber 28 of the sintering press 1 above the first connection partner 5 at the first suction openings 9. The gas pressure is preferably present in the form of the air pressure. Subsequently, the first connection partner 5 conjointly with the second connection partner 6 which is disposed above the first connection partner 5 and is connected to the latter by means of the sintered bond is removed from the press chamber 28 again, preferably by means of the suction gripper 22.
[0068] The film portion 4a of the film 4 is preferably disposed on the first connection partner 5 and the second connection partner 6 between method steps a) and b) or between method steps b) and c). This can take place manually or by means of a film-moving installation which disposes the film portion 4a on the first connection partner 5 and the second connection partner 6. Once the film portion 4a has been disposed on the first connection partner 5 and the second connection partner 6, said film portion 4a can be suctioned by way of the at least one second suction opening 15 or 15′, respectively, which is preferably present, as has already been described above.
[0069] Between method steps d) and e), the film portion 4a can be removed from the first connection partner 5 and the second connection partner 6, for example in that the film portion 4a is lifted manually again from the first connection partner 5 and the second connection partner 6 in the direction of the normal direction N1 of the side 3a of the suction-fixing installation 3 that faces the compression piece 10. Alternatively, the lifting of the film portion 4a away from the first connection partner 5 and the second connection partner 6 in the direction of the normal direction N1 of the side 3a of the suction-fixing installation 3 that faces the compression piece 10 can also take place in an automated manner by means of a film-moving installation.
[0070] It is to be noted that of course features of different exemplary embodiments of the invention can be combined with one another in an arbitrary manner, unless the features are mutually exclusive, without departing from the scope of the invention.
[0071] Also, the inventors intend that only those claims which use the specific and exact phrase “means for” are intended to be interpreted under 35 USC 112, sixth paragraph. The structure herein is noted and well supported in the entire disclosure. Moreover, no limitations from the specification are intended to be read into any claims, unless those limitations are expressly included in the claims.
[0072] Having described at least one of the preferred embodiments of the present invention with reference to the accompanying drawings, it will be apparent to those skills that the invention is not limited to those precise embodiments, and that various modifications and variations can be made in the presently disclosed system without departing from the scope or spirit of the invention. Thus, it is intended that the present disclosure cover modifications and variations of this disclosure provided they come within the scope of the appended claims and their equivalents.