ARRANGEMENT FOR THE TRANSPORT OF MEDIA
20220314521 ยท 2022-10-06
Inventors
- Albert Boecker (Ettlingen, DE)
- Matthias Winter (Rastatt, DE)
- Thorsten Schaefer (Steinfeld, DE)
- Florian Deibel (Sinzheim, DE)
- Artem Tuzin (Stutensee, DE)
Cpc classification
B29C49/42
PERFORMING OPERATIONS; TRANSPORTING
F04D29/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C49/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An Arrangement for transporting media, comprising a base body formed as a blow-molded part and at least one functional element, wherein the functional element is positively fixed to the base body, wherein the positive fit is formed by shaping the base body during blow molding, and a method for producing an arrangement.
Claims
1. An arrangement for transporting media, comprising a base body formed as a blow-molded part and at least one functional element, wherein the functional element is positively fixed to the base body, and wherein the connection between the base body and at least one functional element is formed by shaping the base body during blow molding.
2. The arrangement according to claim 1, wherein the connection of base body and at least one functional element is a positive connection.
3. The arrangement according to claim 1, wherein the connection of the base body and at least one functional element is a substance-to-substance bond.
4. The arrangement according to claim 1, wherein the base body comprises at least one flow channel.
5. The arrangement according to claim 1, wherein the functional element comprises at least one further flow channel.
6. The arrangement according to claim 1, wherein at least one flow-conducting connection exists between the base body and the functional element.
7. The arrangement according to claim 1, wherein the functional element is at least partially formed from plastic.
8. The arrangement according to claim 1, wherein the arrangement forms a distribution structure for temperature control media.
9. The arrangement according to claim 1, wherein the functional element is formed as an adapter, pump, cooler, sensor, valve, hose adapter or as a part of the aforementioned elements.
10. The arrangement according to claim 2, wherein the functional element has recesses into which the base body extends at least partially to form the positive connection.
11. The arrangement according to claim 10, wherein the recesses form an undercut.
12. A method of manufacturing an assembly according to claim 1, wherein at least one functional element and a preform consisting of polymeric material are provided and arranged in a blow mold, wherein the base body is formed from the preform, wherein the preform bears against the functional element during the forming to produce a connection.
13. The method according to claim 12, wherein the preform extends at least partially into the recesses during forming.
14. The method according to claim 12, wherein the preform is deformed during forming in the recesses in such a way that an undercut is formed.
15. The method according to claim 12, wherein, after blow molding, a flow-conducting connection is produced between the base body and the functional element.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Some embodiments of the arrangement according to the disclosure are explained in more detail with reference to the figures. These show, each schematically:
[0027]
[0028]
[0029]
[0030]
[0031]
DETAILED DESCRIPTION
[0032] The figures show an arrangement 1 for transporting media. In the present embodiment, the arrangement 1 is a distribution structure that forms part of a temperature control circuit of an electric vehicle. In this context, the arrangement 1 is used to transport and distribute temperature control media for controlling the temperature of elements of the electric vehicle whose temperatures are to be controlled, for example the batteries, the electric motors and the power electronics.
[0033] The arrangement 1 comprises a base body 2 formed as a blow-molded part and two functional elements 3, which are positively fixed to the base body 2.
[0034] The functional elements 3 are formed from injection-moldable plastic, wherein the glass transition temperature of the plastic selected for the functional elements 3 is above the temperature required for the blow molding process to produce the base body 2. In the present embodiment, the functional elements 3 form part of a pump, namely a pump cover.
[0035] In alternative embodiments, however, the functional element 3 may also be formed as an adapter, pump, cooler, sensor, valve, hose adapter, or may be formed as a part of the aforementioned elements.
[0036] The functional elements 3 are positively fixed to the base body 2. In this case, the positive fit is formed by deformation of the preform to produce the base body 2 during blow molding. The functional elements 3 have recesses 6, wherein the recesses 6 each form an undercut. The base body 2 extends into the recesses 6 to form the positive connection. In doing so, projections 7 are formed from the base body 2, which projections project into the recesses 6. The free ends of the projections 7 expand in the manner of mushroom heads, so that a loss-proof and positive connection is formed between the base body 2 and the functional elements 3. Alternatively, or additionally, the base body 2 can also form a substance-to-substance bond with the functional element 3 during blow molding.
[0037] To produce the arrangement, the functional elements 3 and a preform consisting of polymeric material are first provided and arranged in a blow mold. In the blow molding process, the base body 2 is formed from the preform, wherein the preform bears against the functional elements 3 during the forming process.
[0038] The base body 2 is made of plastic, wherein the glass transition temperature of the plastic selected for the base body 2 is below the glass transition temperature of the plastic selected for the functional elements 3.
[0039] To create the positive connection, the preform extends partially into the recesses 6 during the forming process. In the process, protrusions 7 are formed, which widen within the recesses 6 and expand behind the undercuts like mushroom heads.
[0040]
[0041] The base body 2 has several flow channels 4. The functional elements 3 in turn each have a further flow channel 5. There is a flow-conducting connection between the base body 2 and the functional element 3, wherein one flow channel 4 opens into the further flow channel 5 of the functional elements 3 in each case.
[0042]
[0043]
[0044]
[0045] A nozzle 8 is formed from the further flow channel 5, onto which a seal 9 in the form of an O-ring is fitted on the outer circumference. During the blow molding process, the preform bears against the outside of the nozzle 8 and against the seal 9, and after completion of the blow molding process, the base body 2 bears against the seal 9 on the outside and with elastic pretension to form a seal.
[0046]
[0047]