EP3810355A1 - Kennzeichnungselement für ein metallgussteil und verfahren zu seiner herstellung - Google Patents
Kennzeichnungselement für ein metallgussteil und verfahren zu seiner herstellungInfo
- Publication number
- EP3810355A1 EP3810355A1 EP19735498.8A EP19735498A EP3810355A1 EP 3810355 A1 EP3810355 A1 EP 3810355A1 EP 19735498 A EP19735498 A EP 19735498A EP 3810355 A1 EP3810355 A1 EP 3810355A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- capsule
- outer layer
- transponder
- inner layer
- layer material
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22D—CASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
- B22D19/00—Casting in, on, or around objects which form part of the product
- B22D19/0081—Casting in, on, or around objects which form part of the product pretreatment of the insert, e.g. for enhancing the bonding between insert and surrounding cast metal
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22C—FOUNDRY MOULDING
- B22C21/00—Flasks; Accessories therefor
- B22C21/12—Accessories
- B22C21/14—Accessories for reinforcing or securing moulding materials or cores, e.g. gaggers, chaplets, pins, bars
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22D—CASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
- B22D17/00—Pressure die casting or injection die casting, i.e. casting in which the metal is forced into a mould under high pressure
- B22D17/20—Accessories: Details
- B22D17/22—Dies; Die plates; Die supports; Cooling equipment for dies; Accessories for loosening and ejecting castings from dies
- B22D17/24—Accessories for locating and holding cores or inserts
Definitions
- the invention lies in the field of mechanical engineering and process technology as well as foundry technology. It can be used with particular advantage in the casting of metal parts.
- DE 10 2015 203 797 A1 discloses a method in which a thermal insulation capsule is produced and a transponder is inserted into it.
- the capsule consists of a temperature-stable thermoplastic that can protect the transponder from the influence of high temperatures during the casting process at least for a while. After inserting the transponder into the capsule, the capsule is closed.
- the present invention is based on the object of creating a marking element for the marking of a metal casting, which can be produced with little effort and can be introduced into the casting during the casting process in order to enable identification of the casting.
- the object is achieved according to the invention by a labeling element with the features of claim 1.
- the dependent claims relate to implementations of the invention.
- the invention also relates to a casting with such a marking element and to a method for producing a marking element.
- the invention thus initially relates to a marking element for marking a metal casting, during the casting process, with a transponder which is at least partially, in particular completely, surrounded by a capsule made of one or more non-metallic materials, the capsule being a first, inner layer of an inner layer material and a second, the inner layer at least partially, in particular completely surrounding, outer layer of an outer layer material and wherein at least the outer layer material below the melting temperature of the metal can be processed by casting or injection molding.
- the structure may be multi-layered, that is, one or more layers can be provided between the inner layer and the outer layer.
- the transponder is at least partially surrounded by a capsule which protects it from the thermal influences during metal casting.
- the one-, two- or multi-layer structure of the capsule allows a suitable choice of material in such a way that the outer layer is particularly temperature-resistant and withstands the high temperatures occurring during metal casting at least for a time, for example until the metal melt solidifies, but for as long as possible.
- materials are suitable, for example thermoplastics, which on the one hand can be processed at temperatures below the melting point of the metal from which the metal casting is made, but which, at temperatures which the metal melt reaches during the casting process, still have sufficient stability in order to prevent the capsule from being deformed by the metal melt flowing in and compressed during solidification.
- materials can be used for the outer layer whose melting point or softening temperature is below the melting temperature of the metal from which the metal casting is cast.
- the transponder When the transponder is inserted into the outer layer of the capsule, the transponder can be surrounded by the inner layer and thus protected.
- This construction allows, for example, that the transponder, which is surrounded by the inner layer, is encapsulated in the capsule manufacturing process with a high-melting material of the outer layer at high temperatures, without the high temperature acting directly on the trans ponder.
- the inner layer material can have different properties, in particular melt or be processable at lower temperatures than the outer material, so that the transponder can be surrounded, for example in a thermal processing process, with the material of the inner layer at a temperature which the transponder can withstand.
- the inner layer can consist of a material whose melting point is higher than that Melting point of the material of the outer layer. This would stabilize the capsule during metal casting, even if the outer layer is slowly giving way. It can also be provided that the transponder is first attached to a container which forms the outer layer, fixed in this container and extrusion-coated with the material of an inner layer, so that the inner layer is formed in the outer layer which acts as a casting mold.
- the division of the capsule into an inner layer and an outer layer allows specialization in the selection of the properties of the materials which are used for the production of the inner layer and the outer layer.
- the transponder within the inner layer is still surrounded by a gas-filled free space or a gas layer in order to thermally isolate it from the inner layer.
- the transponder can then be held by individual elevations, rods, webs or ribs of the inner layer which project inwards to the transponder. This is also possible if the inner layer is formed by a prefabricated container.
- At least one of the layers which completely surround the transponder is designed to be completely tight, homogeneous and / or free of joints or without subsequently closed openings. This is achieved, for example, by creating and / or arranging at least one of the layers completely around the transponder in a single work step.
- An implementation of the invention can provide, for example, that the inner layer material is identical to the outer layer material.
- marking element can provide that the inner layer material is different from the outer layer material.
- the division of the capsule into two layers allows, for example, that first a container made of a first material, the inner layer material, is produced in which a transponder is enclosed. This can happen, for example, in such a way that the container is manufactured as a folding container with a film joint or is composed of two or more parts.
- the container can also have an opening through which the transponder can be inserted and which can then be closed or injected during the production of the outer layer material. If the inner layer material has a sufficiently low melting point, the trans ponder can also be overmolded directly with the inner layer material.
- one or more intermediate layers and then the outer layer material may be applied, for example by overmolding the inner layer material.
- the outer layer material is usually chosen so that its processing temperature / melting temperature is higher than that of the inner layer material.
- the layers of the inner layer material and the outer layer material can preferably be integrally bonded to one another.
- the processing / melting temperature of the inner layer material should be chosen so that the inner layer material does not liquefy when encapsulated with the outer layer material, at least not during the injection of the outer layer material into an injection mold used.
- the specific heat capacity of the material of the inner layer can be greater or smaller than that of the material of the outer layer. In both cases, the specific thermal resistance of the material of the inner layer can be greater or smaller than the thermal resistance of the outer layer.
- a container made of the inner layer material is selected as the inner layer for enveloping the transponder, which is manufactured separately from the transponder and receives the transponder, it can either be provided that the transponder fits snugly into a recess in the inner layer material or that the inner layer material as a thin-walled container the transponder in a cavity so that a There is space between the wall of the inner layer container and the transponder.
- the material thickness of the inner layer material can be greater, for example more than twice as large, as the material thickness of the outer layer material.
- the thickness of the outer layer material can be chosen to be larger, in particular twice as large as the thickness of the inner layer material.
- the average thickness values are decisive.
- the outer layer material it can be provided that it has PEEK (polyether ether ketone) or consists of this material.
- thermoplastic material has a very high melting point / softening point, so that the material withstands the encapsulation / encapsulation with a metal for a time without softening too much.
- Polyimide, polyamideimide, LCP (Liquid Crystal Polymer) or epoxies, silicones or ceramics can be used as further materials instead of or in connection with the PEEK.
- a further embodiment of the identification element can provide that the transponder is completely and fluid-tightly surrounded by the inner layer material and / or the outer layer material. This ensures that the molten metal does not get near the transponder during the casting process.
- a further implementation of the identification element can provide that the capsule has a receiving part and a fastening part, the receiving part serving to receive the transponder and the fastening part for fastening the capsule in a casting mold prior to the casting process.
- the transponder inside the capsule and in the receiving part in the event that the capsule is inserted into a receptacle in the casting mold, can protrude entirely or at least partially into the wall of the casting mold.
- the transponder can also be arranged wholly or partially within the receiving part in the space which is filled with the molten metal as part of the casting process.
- the decisive factor in the division of the capsule is that the fastening part projects wholly or at least partially into the wall of the casting mold.
- the fastening part is designed as a cantilever element which is connected to the receiving part and projects therefrom, in particular as a rod, web or web arrangement or as a pipe socket.
- a cantilever element can be inserted into a corresponding receptacle / opening in the wall of the mold.
- the fit should be so tight that the fastening part gets stuck in the casting mold and cannot be moved by the metal casting.
- the fastening part should have a draft angle that allows it to be pulled out of the wall of the mold when the metal casting is removed from the mold.
- the fastening part can be designed as a hollow, half-open cantilever element, for example as a pipe socket.
- the wall of the mold advantageously has an opening for inserting the fastening part.
- a further implementation of the identification element can provide that the inner layer material and the outer layer material are integrally connected to one another.
- Intermediate layers can completely or only partially surround the trans ponder and / or an inner layer.
- the transponder is arranged in a preformed, closable container which forms an inner layer and which is completely or partially surrounded by an outer layer which is integrally connected thereto, the container having at least one opening and / or has a gap which is completely covered by the outer layer and is closed, in particular a receiving part provided in the capsule being completely covered by the outer layer and / or in particular a fastening part provided in the capsule being released from the outer layer and furthermore in particular the outer layer is applied to the container by overmolding the container.
- the gaps and / or openings covered by the outer layer are usually the opening or the gap that exist after closing or collapsing a two-part container with minimal permeability.
- the edge / the edges of such openings / gaps should then be cohesively covered with the outer layer and be hermetically sealed in this way.
- the outer layer can be designed as a whole and, for example, cover at least 20%, in particular at least 30% or more than 50% of the surface of the capsule.
- the first layer made of the inner layer material is connected directly to the transponder by a casting process or receives the transponder as a prefabricated container.
- a predetermined breaking point is provided, at which the fastening part can be broken off at least partially from the other areas of the capsule.
- the breaking point of the capsule can have a recognizable cross-sectional shape, in particular if the inner layer material and the outer layer material are different, so that the parting line arranged between these materials can also be recognized at the predetermined breaking point.
- the predetermined breaking point can be designed in such a way that the smoothest possible separation plane (flush with the separation) is created.
- the invention relates in addition to a labeling element of the type described above also to a casting with such a labeling element.
- a cast part can be unmistakably identified by means of the identification element and can be traced back with regard to the manufacturing process or the manufacturing batch.
- the opening in the casting in which the capsule is placed represents a dielectric gap for the trans ponder, through which the transponder can communicate with communication devices by means of electromagnetic, capacitive or inductive coupling as well as radio, Bluetooth, RFID, NFC or other communication standards.
- the invention also relates to a method for producing a marking element of the type explained above, in which a transponder is first completely or at least partially surrounded by an inner layer material and then completely or at least partially encased thereon by an outer layer material.
- a fastening part which is integrally connected to a receiving part for receiving a transponder is formed, which consists of the outer layer material or of the outer layer material and the inner layer material.
- This manufacturing form ensures that the fastening part of the capsule is so temperature-resistant that it remains stable in contact with the molten metal or the casting mold until the molten metal solidifies.
- a further implementation of the method can provide that the transponder is first arranged in a preformed, closable container which forms an inner layer and which is completely or partially surrounded thereon by an outer layer which is integrally connected thereto, the container having at least one opening and / or has a gap which is completely covered and closed by the outer layer, in particular a receiving part provided in the capsule being completely covered by the outer layer and / or in particular a fastening part provided in the capsule being left free by the outer layer, and furthermore in particular the outer layer on the container
- a closable container is understood to mean a container which can be closed by means of a preformed cover, the cover being present separately as a separate component or being connected to the rest of the container, for example by means of a film hinge.
- a further implementation of the method can provide that first a marking element with at least part of the fastening part is inserted into a receptacle of a casting mold and then cast with the casting and that the casting with the capsule or at least with the receiving part is removed from the casting mold.
- the casting with the capsule is removed from the mold and that the fastening part is then separated from the receiving part and used again, for example by melting.
- Fig. 1 in cross section a mold for metal casting with a
- FIG. 2 shows the casting mold from FIG. 1, the capsule being inserted into a receptacle in the wall of the casting mold
- Fig. 3 shows a mold with a cast metal part, in which the
- FIG. 6 shows a cross-sectional view of a capsule, which differs constructively from the capsule from FIG. 5,
- Fig. 7 is a cross-sectional view of the inner layer of the capsule, which as
- Container with a transponder arranged therein is designed
- FIG. 8 shows the container from FIG. 7 in the opened position, 9 the inner layer of the capsule, which is designed as a potting of the transponder,
- FIG. 10 shows a capsule in a cross section with a receiving part and a fastening part molded onto it in the form of a pipe socket
- 11 is a capsule with an integrally formed fastening part in the form of a rod
- 13 is a cross section of a metal casting in the area of the recess in which a capsule is received
- Fig. 14 is a plan view of a metal casting with partially visible
- FIG. 15 is a plan view of a metal casting, as shown in FIG.
- FIG. 1 shows a casting mold 1, which can consist, for example, of metal or a ceramic or of sand, gypsum or phosphate-bound substances, with a pouring opening 2.
- a recess 3 is provided for receiving a capsule 4, preferably with Self-locking and preferably freely formable without undercut.
- the mold 1 is shown with a capsule 4, which is inserted into the acquisition 3.
- a fastening part of the capsule 4 is thus arranged in the receptacle 3, while a receptacle part, in which a transponder is typically arranged, protrudes from the wall of the casting mold 1 and is encapsulated with the metal from which the metal casting is made.
- FIG. 3 shows the situation in which the metal part 5 is cast in the casting mold in such a way that the receiving part of the capsule 4 is cast in the casting part 5.
- the capsule 4 can at least partially protrude from the metal part.
- the part of the capsule 4 usually protrudes from the metal part 5, which was arranged in the receptacle 3 in the wall of the casting mold 1.
- a predetermined breaking point on the capsule 4 in the region of the imaginary continuation of the surface of the metal part 5 can make it possible for a part of the capsule 4 to be broken off in order to be recycled. This is particularly useful when the material from which the capsule 4 is made is valuable.
- a capsule 4 is usually at least partially made from one high-melting substance, for example a high-melting polymer, e.g. B. PEEK (polyether ether ketone), a material that is very expensive. It is worth reusing this material, so it makes sense to reuse part of the capsule.
- the capsule 4 it is sensible for this to design the capsule 4 so that the receiving part, in which a transponder is accommodated, lies completely within the part of the capsule 4 when the metal part is poured, which part is later accommodated in the metal part.
- the predetermined breaking point in the capsule should therefore be such that the capsule is broken along a fracture surface that lies on or outside the contour of the metal part 5.
- a capsule is shown enlarged, for example in Figure 5.
- the capsule 4 comprises an inner layer 4a and an outer layer 4b surrounding it.
- the outer layer 4b made of a high-melting polymer, e.g. B. PEEK exist
- the inner layer 4a may consist of another material whose melting or processing temperature is lower than the melting or processing temperature of the material of the outer layer.
- the inner layer 4a like the outer layer 4b, can also consist of PEEK or generally of the same material as the outer layer.
- the capsule 4 can be divided in its interior, for example by a partition 6, into a receiving part 7, which in FIG. 5 denotes the part of the capsule 4 to the left of the partition 6, and a fastening part 8, which in FIG Partition 6 located part of the capsule 4 be distinguished.
- a partition 6, into a receiving part 7, which in FIG. 5 denotes the part of the capsule 4 to the left of the partition 6, and a fastening part 8, which in FIG Partition 6 located part of the capsule 4 be distinguished.
- two notches 9, 10 are shown symbolically, which designate a predetermined breaking point of the capsule 4 in the form of an indentation of the outer layer surrounding the capsule. In this area, the capsule can later be broken off or cut off in order to reuse the material of the fastening part.
- a capsule 4 ' is shown in FIG. 6, the inner layer 4a' of which is only partially surrounded by an outer layer 4b '.
- the part of the capsule 4 'which is accommodated within the receptacle of the casting mold during the casting process can, for example, be uncovered by an outer layer if the casting mold has a lower temperature than that during the casting process Molten metal. In this case, protection of the inner layer 4a 'by an additional outer layer 4b' in this area may be unnecessary.
- FIG. 7 shows a foldable or pluggable inner layer 4a "which surrounds a transponder 11 in the form of a container.
- an RFID module Radio Frequency Identification Module
- This can be achieved by a so-called dielectric gap Communicate the metal casting with communication devices outside the metal casting via electromagnetic waves, capacitive or inductive coupling, radio or other communication standards.
- the inner layer 4a in the opened position, in which the inner layer can be equipped with a transponder 11. It is advantageous if the inner layer 4a" closes as a container as well as possible, but a fluid-tight seal can also be provided by a covering be made with an outer layer.
- FIG. 9 shows an inner layer 12 which is formed by casting a transponder 11 into a solid body. Between the inner layer 12 and the transponder 11 there are no gaps.
- FIG. 10 shows a capsule 13 which has an inner layer 13a and an outer layer 13b, the space enclosed by the inner layer and the outer layer forming the receiving part 14 of the capsule.
- a fastening part 15 is formed in the form of a pipe socket. This is complementary to a corresponding receptacle in a metal casting mold.
- FIG. 11 shows a capsule 13 'which, like the capsule 13, has two layers.
- a fastening part 15 ' is formed in the form of a tapered rod. This is received in a recess in a metal casting mold in order to fix the capsule 13 'during the metal casting process (preferably self-locking).
- a draft angle ensures that the capsule 13 ' can be removed together with the finished metal casting from the metal mold.
- the fastening part can be formed with little material, so that there is overall a material saving in the capsule.
- a capsule is shown in the left part, which is drawn in dark in the upper area, receives an RFID transponder and is designed there as a receiving part.
- the lower part which serves as a fastening part, is essentially cuboid and is provided with a bevel in both dimensions.
- the capsule is shown once from the long side and once from the transverse side, the transponder being drawn in, although it is not directly visible from the outside.
- a capsule 28 is shown, in which the fastening part is hollowed out in comparison to the capsule shown in the left-hand area of FIG. H. has a recess.
- the exemption is identified in FIG. 12 by reference number 16.
- the recess 16 saves material in the region of the fastening part during the manufacture of the capsule.
- FIG. 13 a part of a metal casting with a recess 17 is shown in a cross section, which receives the receiving part of a capsule.
- the recess 17 has undercuts on which the receiving part of the capsule is retained, for example when a part of the capsule lying outside the metal casting is broken off or otherwise separated for recycling. In addition, the undercut firmly connects the capsule to the casting.
- FIG. 14 shows a plan view of the recess 17, in which a separated part 36 of a capsule is inserted.
- the capsule has a structure made of several materials in the area of the fracture, since there the inner Layer and the outer layer of the capsule, as shown for example in Figure 19, are distinguishable.
- FIG. 15 shows a plan view of a metal casting with a recess and a capsule, the capsule likewise being visible at a break point 37. Since in this case the inner layer and the outer layer consist of the same material and are bonded to one another, no inner structure of the capsule is visible at the break point.
- 16 to 20 show the assembly of a capsule and the arrangement of an RFID transponder in a capsule.
- FIG. 16 shows a two-part container 18a, 18b, the two parts of which can be pushed together to accommodate a transponder.
- the receiving part of the container 18a, 18b has two partial containers 20a, 20b, which together form a container space for receiving a trans ponder 21 when assembled.
- FIG. 17 shows the state in which a transponder 21 is inserted into the partial container 20b.
- Figure 18 shows the container almost completely assembled, while Figure 19 shows the assembled state.
- the container is inserted into an injection mold 26 into which a core or mandrel 27 with a positioning aid 38 for the container has previously been inserted.
- the container 18a, 18b is for injection molding with an outer layer material, for. B. PEEK, placed on the positioning aid, as shown in Figure 21.
- the injection mold is then closed by the upper part 26a and the outer layer is injected.
- a recess 23 in the capsule foot 22, which can be seen in FIG. 22 and the capsule shown there, is taken out through the core 27 in the injection mold 26, 26a.
- the capsule 28 is shown in the completed state with the sprayed outer layer.
- the capsule foot 22, which in this type of capsule Fastening part forms, is formed by a circumferential web-like wall standing around the recess 23 and projecting from the receiving part 20a, 20b.
- the recess 23 can of course also be cylindrical or assume another shape.
- FIG. 23 shows a two-part container 29a, 29b for a transponder, the parts of the container being connected by a film joint 30.
- the container 29a, 29b can be manufactured by injection molding.
- FIG. 24 shows the container with the transponder inserted and FIG. 25 the closed container.
- FIG. 26 shows the closed container from FIG. 25 in a side view rotated by 90 °.
- FIG. 27 shows that the container 29a, 29b is inserted into an injection mold 26, 26a, which is closed thereon with an outer layer in order to encapsulate the container.
- a container 31 is shown in perspective in FIGS. 28 to 31, in which two partial containers are hingedly connected to one another by a film joint 32. As shown in FIG. 29, a trans ponder can be inserted into a receiving space 33 and the container closed (FIG. 30). In Figure 31, the closed container 31 is shown with a transponder 21, wherein the container can be extrusion coated with an outer layer in an injection mold, not shown. The fastening part of the capsule formed in this way can already be formed by the base 34 of the container 31 if, for example, only the widespread region 35 of the container 31 is encapsulated.
- the invention can also relate to a three-layer structure of a capsule for a labeling element, as shown in FIG. 32. It can be provided that a first layer has a higher specific heat capacity than the other two layers, that a second layer has a higher thermal resistance / a higher
- the inner layer 4a can be identical to the first, second or third layer.
- the outer layer 4b can also be identical to the first, second or third layer. A between the
- the inner layer 4a and the intermediate layer 50 lying on the outer layer 4b can likewise be identical to the first, second or third layer.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Details Of Rigid Or Semi-Rigid Containers (AREA)
- Injection Moulding Of Plastics Or The Like (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102018210138.8A DE102018210138A1 (de) | 2018-06-21 | 2018-06-21 | Kennzeichnungselement für ein Metallgussteil und Verfahren zu seiner Herstellung |
| PCT/EP2019/066340 WO2019243492A1 (de) | 2018-06-21 | 2019-06-20 | Kennzeichnungselement für ein metallgussteil und verfahren zu seiner herstellung |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP3810355A1 true EP3810355A1 (de) | 2021-04-28 |
Family
ID=67145770
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP19735498.8A Withdrawn EP3810355A1 (de) | 2018-06-21 | 2019-06-20 | Kennzeichnungselement für ein metallgussteil und verfahren zu seiner herstellung |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP3810355A1 (de) |
| DE (1) | DE102018210138A1 (de) |
| WO (1) | WO2019243492A1 (de) |
Family Cites Families (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE20116141U1 (de) * | 2001-10-01 | 2003-02-13 | Siemens AG, 80333 München | Hitzebeständiges Gehäuse für elektrische Funktionselemente und Verwendung einer solchen Vorrichtung für einen mobilen Datenspeicher |
| DE10153169A1 (de) * | 2001-10-27 | 2003-05-08 | Wolfgang Habe | Signalspeicherkörper und dessen Verwendung |
| DE102005018936A1 (de) | 2004-10-08 | 2006-04-20 | Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. | Gussbauteil mit integrierten Funktionselementen und Verfahren zu seiner Herstellung |
| DE102007035144A1 (de) * | 2007-07-25 | 2009-01-29 | Ralf Bux | Vorrichtung und Verfahren zur Individualisierung bzw. Kennung eines Werkstücks |
| WO2009036874A2 (de) * | 2007-09-13 | 2009-03-26 | Sew-Eurodrive Gmbh & Co. Kg | Antriebseinheit, verfahren zur wartung von komponenten, verfahren zur identifizierung der komponenten, verfahren zur herstellung und baukasten mit komponenten für eine antriebseinheit |
| EP2151875B1 (de) * | 2008-08-07 | 2014-10-22 | Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. | Verfahren und Vorrichtung zur Herstellung eines Bauteils mit einem integrierten Einlegeteil |
| DE102010046170A1 (de) * | 2010-09-23 | 2012-03-29 | Hal Aluminiumguss Leipzig Gmbh | Gussteil mit eingegossenem Transponder |
| DE102015203797A1 (de) | 2015-03-03 | 2016-09-08 | Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. | Gusskörper, Verfahren zu seiner Herstellung sowie Gießwerkzeug zur Herstellung des Gusskörpers |
-
2018
- 2018-06-21 DE DE102018210138.8A patent/DE102018210138A1/de not_active Withdrawn
-
2019
- 2019-06-20 EP EP19735498.8A patent/EP3810355A1/de not_active Withdrawn
- 2019-06-20 WO PCT/EP2019/066340 patent/WO2019243492A1/de not_active Ceased
Also Published As
| Publication number | Publication date |
|---|---|
| DE102018210138A1 (de) | 2019-12-24 |
| WO2019243492A1 (de) | 2019-12-26 |
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