Retaining mesh for an open socket joint
An open socket joint configured to prevent zinc creep includes a retaining mesh that sits on a lip of an outer shell casing of the open socket joint. The retaining mesh is configured to prevent zinc within the open socket joint to extrude.
1 . An open socket joint configured to prevent zinc creep, comprising:
a rounded and curved lip on an outer shell casing of the open socket joint with a zinc casting inside of a conical volume of the open socket joint, wherein
the open socket joint has a doubly curved socket geometry with the rounded and curved lip being a rounded wire-outlet-lip; and
a retaining mesh comprising a plurality of holes configured to prevent zinc within the open socket joint to extrude, wherein
the retaining mesh sits on the rounded and curved lip.
2 . The open socket joint of claim 1 , wherein the plurality of holes facilitate insertion of stay cable wires into the retaining mesh.
3 . The open socket joint of claim 1 , wherein the retaining mesh is configured to prevent a gross plastic flow of zinc and concentrate confining of pressure and stresses in stay cable wires near an outlet of the open socket joint.
4 . The open socket joint claim 3 , wherein the stay cable wires are unraveled and broomed inside of the open socket joint.
5 . The open socket joint of claim 1 , wherein the rounded and curved lip of the outer shell casing is rounded, allowing the retaining mesh to fit against the outer shell casing of the open socket joint.
6 . The open socket joint of claim 1 , wherein the retaining mesh prevents gross plastic flow of the zinc and concentrates confining pressure and stresses in stay cable wires near an outlet of the open joint socket.
7 . The open joint socket of claim 1 , further comprising
a cavity configured to act as a termination point in stay cable wires for transferring loads between two adjacent structures.
8 . The open joint socket of claim 7 , wherein the cavity is filled with zinc, the zinc being bonded to the stay cable wires creating load transfer among the stay cable wires within open joint socket.
9 . The open joint socket of claim 8 , wherein a plasticity of the zinc and a conical volume forces a squeezing effect around the stay cable wires in a narrow portion of the open joint socket.
10 . An open socket joint configured to prevent zinc creep, comprising:
a cavity configured to act as a termination point in stay cable wires for transferring loads between two adjacent structures;
a rounded and curved lip on an outer shell casing of the open socket joint with a zinc casting inside of a conical volume of the open socket joint, wherein
the open socket joint has a doubly curved socket geometry with the rounded and curved lip being a rounded wire-outlet-lip; and
a retaining mesh comprising a plurality of holes configured to prevent zinc within the open socket joint to extrude, wherein
the retaining mesh sits on the rounded and curved lip.
11 . The open socket joint of claim 10 , wherein the plurality of holes facilitate insertion of the stay cable wires into the retaining mesh.
12 . The open socket joint of claim 10 , wherein the retaining mesh is configured to prevent a gross plastic flow of zinc and concentrate confining of pressure and stresses in the stay cable wires near an outlet of the open socket joint.
13 . The open socket joint claim 12 , wherein the stay cable wires are unraveled and broomed inside of the open socket joint.
14 . The open socket joint of claim 10 , wherein the rounded and curved lip of the outer shell casing is rounded, allowing the retaining mesh to fit against the outer shell casing of the open socket joint.
15 . The open socket joint of claim 10 , wherein the retaining mesh prevents gross plastic flow of the zinc and concentrates confining pressure and stresses in the stay cable wires near an outlet of the open joint socket.
16 . The open joint socket of claim 10 , wherein the cavity is filled with zinc, the zinc being bonded to the stay cable wires creating load transfer among the stay cable wires within open joint socket.
17 . The open joint socket of claim 16 , wherein a plasticity of the zinc and a conical volume forces a squeezing effect around the stay cable wires in a narrow portion of the open joint socket.
18 . An open socket joint configured to prevent zinc creep, comprising:
a cavity configured to act as a termination point in stay cable wires for transferring loads between two adjacent structures;
a rounded and curved lip on an outer shell casing of the open socket joint with a zinc casting inside of a conical volume of the open socket joint, wherein
the open socket joint has a doubly curved socket geometry with the rounded and curved lip being a rounded wire-outlet-lip; and
a retaining mesh comprising a plurality of holes configured to prevent zinc within the open socket joint to extrude, wherein
the retaining mesh sits on the rounded and curved lip.
19 . The open socket joint of claim 18 , wherein the plurality of holes facilitate insertion of the stay cable wires into the retaining mesh.
20 . The open socket joint of claim 18 , wherein the retaining mesh is configured to prevent a gross plastic flow of zinc and concentrate confining of pressure and stresses in the stay cable wires near an outlet of the open socket joint.