CONNECTOR SOCKET, CONNECTOR ASSEMBLY, COOLING PLATE AND COOLING SYSTEM INCLUDING A CONNECTOR SOCKET
20220003346 · 2022-01-06
Assignee
Inventors
Cpc classification
F16L5/027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L41/001
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F16L37/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a connector socket for connecting a spigot (12) to an orifice (10a), said connector socket including a sheet metal plate (10) with said orifice (10a) and a protruding collar structure (16) surrounding said orifice (10a).
It is proposed that the collar structure (16) is integrally made of the sheet metal of said sheet metal plate (10) by a sheet metal forming process.
Claims
1. A connector socket for connecting a spigot (12) to an orifice (10a), comprising: a sheet metal 5 plate (10) with said orifice (10a) and a protruding collar structure (16) surrounding said orifice (10a), wherein said collar structure (16) is integrally made of the sheet metal of said sheet metal plate (10) by a sheet metal forming process.
2. A connector socket according to claim 1, wherein the collar structure (16) is configured to receive a male 15 end of said spigot (12).
3. A connector socket according to claim 1, further including connector means (14) including a ring-shaped snap-on module (18) configured to be 20 fitted over the collar structure (16), said snap-on module (18) including a cylindrical insertion part (18a) con-figured to be inserted into the orifice (10a), wherein a remote end of the cylindrical insertion part (18a) in the insertion direction is provided with first snap-on structures engaging with the collar structure (16).
4. A connector socket according to claim 3, wherein the connector means (14) is configured to create a snap-30 lock connection with both the collar structure (16) and with the male end of the spigot (12).
5. A connector socket according to claim 3, characterized in that wherein the cylindrical inner wall of the insertion part (18a) of the ring-shaped snap-on module (18) is provided a with a notch configured to receive a first O-ring (20).
6. A connector socket according to claim 1, wherein an inner circumference of the collar structure (16) includes a structure configured to support an O-ring to be 5 arranged between collar structure (16) and the outer wall of the insertion part (18a).
7. A connector socket according to claim 1, further comprising a second O-ring (22) provided around an outer wall of the collar structure (16).
8. A connector socket according to claim 1, wherein the collar structure (16) is a cylindrical double layer structure with a rim being arranged on the inside of the collar structure (16).
9. A connector socket according claim 8, wherein the cylindrical double layer structure obtained by folding the sheet metal back.
10. A connector assembly including a connector socket according to claim 3 and said spigot (12), wherein the male end of said spigot (12) includes at least one latching structure on a radial outside surface, said latching structures being configured to interact with corresponding latching structures on a cylindrical inner surface of said connector means (14).
11. A connector assembly according to claim 10, wherein said latching structure on the radial outside surface of the end portion of the spigot (12) is configured to engage around a rim of the cylindrical inner surface of said connector means (14).
12. A connector assembly according to claim 11, wherein the cylindrical inner surface of said connector means (14) is a cylindrical inner surface of said ring-shaped snap-on module (18).
13. A connector assembly according to claim 10, wherein the engagement of the cylindrical insertion part (18a) with the collar structure (16) is locked by the insertion of said male end of said spigot (12).
14. A cooling plate, heat exchanger or battery plate assembly including a connector socket according to claim 1.
15. A cooling system for battery assemblies, including a connector socket according to claim 1.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0033]
[0034] As illustrated in
[0035] The collar structure 16 lends stability to the connection between the spigot 12 and the sheet metal plate 10 and stabilizes the rim of the orifice 10a provided in the centre of the collar structure 16. In the embodiment of
[0036] The connector means 14 further includes a ring-shaped snap-on module 18 formed as an injection-moulded plastic part configured to be fitted over the collar structure 16. The snap-on module 18 includes a cylindrical insertion part 18a configured to be inserted into an orifice 10a of said collar structure 16, wherein a remote end of the cylindrical insertion part 18a in the insertion direction is provided with a plurality of latches 18b with snap-fitting protrusions protruding radially outward as first snap-on structures engaging with the lower rim of the collar structure 16.
[0037] The cylindrical inner wall of the insertion part 18a of the ring-shaped snap-on module 18 is provided with a notch 18c configured to receive a first O-ring 20.
[0038] A male end of said spigot 12 is configured to be inserted into an orifice 10b of the ring-shaped snap-on module 18 and thus into the collar structure 16 and locked in place by interacting with the connector means 14. A flange 28 of the spigot limits the depth of its insertion into the snap-on module 18. The inward deflection of the latches 18b is blocked by the inserted spigot 12. The male end of said spigot 12 includes a plurality latching structure on a radial outside surface of its end portion, the latching structures being configured to engage with the lower rim of the cylindrical inner surface of the ring-shaped snap-on module 18. When inserting the cylindrical insertion part 18a into the orifice 10a of the collar structure 16, the latches 18b are deflected radially inward and snap back upon reaching the final engagement position. As illustrated in
[0039] The ring-shaped snap-on module 18 further includes an outer wall surrounding the collar structure 16 and abutting to the radially outer wall of the collar structure 16 such that the overall profile of the ring-shaped snap-on module 16 is that of a reverse U-shape clipped onto the collar structure 16.
[0040] A second O-ring 22 sealing the connection between the snap-on module 18 and the metal plate 10 is arranged on an inner circumference of the collar structure 16, wherein the latter includes a flange 16a protruding radially inward configured to support the second O-ring 22 arranged between collar structure 16 and the outer wall of the insertion part 18a.
[0041] The remote end of the spigot 12 is configured with a barb structure fitting into a coolant hose, which may for example be further fixed by a hose clamp. However, the structure of the remote end of the spigot 12 is not particularly limited and may be of any structure suitable for connecting hoses or tubes.
[0042]
[0043] The ring-shaped snap-on module 18 may be pre-assembled and snapped on the collar structure 16 of the metal plate 10 in an easily transportable unit without requiring special tools. The pre-assembled structure is illustrated in
[0044] The sheet metal plate 10 with the collar structure 16 is part of a cooling plate, heat exchanger or battery plate assembly but is not limited thereto. The invention can be applied to an easy connectable spigot 12 for all kinds of receptacles in any material.
[0045] The sheet metal plate 10 and the connector assembly are suitable for use in a cooling system, in particular for battery assemblies, for transporting cooling liquids.
[0046]
[0047] In the second embodiment of the invention as shown in
[0048]