PLUG-IN COUPLING FOR FLUID LINES
20230003323 ยท 2023-01-05
Assignee
Inventors
Cpc classification
International classification
Abstract
A plug-in coupling for fluid lines, having a coupling sleeve (1) made of plastic, which has blocking openings (3), wherein the coupling sleeve (1) has, in the region of the blocking openings (3), at least one reinforcement (9) made of a metal material. The reinforcement (9) may have apertures (10) which correspond to the blocking openings (3) and through which a spring blocking element (5) can engage with pawls (7). As a result, it is possible to ensure that, even in the event of high contact pressures between the spring blocking element (5) and the coupling sleeve (1), separation of the blocking openings (3) can be ruled out.
Claims
1.-5. (canceled)
6. A plug-in coupling for fluid lines comprising: at least one female line portion (1) comprising plastic and in which a male line portion (12) is able to be plugged in a sealing manner; and, at least one resilient locking device, by which the at least one female line portion (1) and the male line portion (12) are able to be locked together and unlocked from one another, wherein the device comprises at least one spring blocking element (5) and the female line portion (1) has blocking openings (3) which correspond to the at least one spring blocking element (5); wherein the female line portion (1) has, in the region of the blocking openings (3), at least one reinforcement (9) made of a metal material.
7. The plug-in coupling as claimed in claim 1, wherein the at least one metal reinforcement (9) is in the form of a ring which is arranged around the female line portion (1) in the region of the blocking openings (3).
8. The plug-in coupling as claimed in claim 7, wherein the metal ring (9) comprises apertures (10) which correspond to the blocking openings (3) such that the spring blocking element (5), with the coupling fully assembled, can engage both through the apertures (10) in the metal ring (9) and through the blocking openings (3).
9. The plug-in coupling as claimed in claim 6, wherein the metal ring (9) is in the form of a split spring ring and the female line portion (1) has axially spaced-apart ring webs (2A) between which the split spring ring (9) is able to be positioned such that the spring ring (9) is fixed axially to the female line portion (1).
10. The plug-in coupling as claimed in claim 6, wherein the metal ring (9) is in the form of a closed ring with a predetermined diameter, and wherein the closed ring (9) is embedded in the plastic of the female line portion (1).
Description
[0018] Exemplary embodiments of the invention will be explained in more detail in the following text on the basis of the drawing, in which:
[0019]
[0020]
[0021]
[0022]
[0023] A blocking clip 5 has a spring bow 6 and pawls 7. The blocking clip 5 is made of spring wire 5A, wherein the spring bow 6 and pawls 7 have been formed by bending the wire 5A. To make assembly easier, the ends of the blocking clip 5 have been formed as rounded end pieces 8, likewise by bending the wire 5A.
[0024] A split reinforcement ring 9 made of metal material has apertures 10 which correspond in position and number to the blocking slots 3 in the coupling sleeve 1.
[0025]
[0026] The blocking clip 5 has been plugged onto the assembly made up of the main body 2 and blocking clip 5 such that its pawls 7 project through the aligned openings made up of the apertures 10 in the reinforcement ring 9 and blocking slots 3 in the main body 2 of the coupling sleeve 1.
[0027] A coupling plug (not shown here) is able to be plugged into the coupling sleeve 1, wherein the pawls 7 are able to move resiliently outward and to catch behind suitably formed elements of the coupling plug (not shown here), which is known per se.
[0028] If dynamic forces in an axial direction occur in the fully assembled coupling, these are able to be transferred to the reinforcement ring 9 via the blocking clip 5. The blocking clip 5 is supported on the ring webs 2A of the coupling sleeve 1 such that the forces are not absorbed between the pawls 7 of the blocking clip 5 and the blocking slots 3 in the coupling sleeve 1 but between the reinforcement ring 9 and the ring webs 2A. Therefore, on account of the much larger contact surfaces, the surface pressure is much lower and so separation of the blocking slots 3 is avoidable.
[0029]
LIST OF REFERENCE SIGNS
(Part of the Description)
[0030] 1 Female part, coupling sleeve [0031] 2 Main body of the coupling sleeve 1 [0032] 2A Ring webs of the main body 2 [0033] 3 Blocking slots in the main body 2 of the coupling sleeve 1 [0034] 4 Cutout in the main body 2 [0035] 5 Blocking clip [0036] 5A Spring wire of the blocking clip 5 [0037] 6 Spring bow of the blocking clip 5 [0038] 7 Pawls of the blocking clip 5 [0039] 8 End pieces of the blocking clip 5 [0040] 9 Reinforcement ring [0041] 10 Apertures in the reinforcement ring 9 [0042] 11 Interior of the coupling sleeve 1 [0043] 12 Coupling plug [0044] 13 Seal [0045] 14 Supporting ring [0046] 15 Blocking web of the coupling plug 12