Surge arrester with a cage design
The invention relates to a surge arrester having at least one varistor block 1 , one end fitting 3 , one reinforcing element 9 which holds the varistor block 1 firmly on the end fitting 3 with a tensile load, and at least one anchoring element 27 which holds the reinforcing element 9 firmly on the end fitting 3 with a tensile load wherein the anchoring element 27 has at least one edge 29 which cuts into the reinforcing element 9 . The anchoring element 27 is preferably a cutting-ring screw union.
1. A surge arrester, comprising:
at least one varistor block;
at least one end fitting;
a plurality of unthreaded reinforcing elements which hold the varistor block firmly on the end fitting, with each of the plurality of unthreaded reinforcing elements being a glass-fiber-reinforced plastic rod or a cable which holds the end fitting and the varistor block together when subjected to a tensile load; and
a plurality of anchoring elements each of which holds an associated one of the plurality of unthreaded reinforcing elements firmly on the end fitting;
wherein each anchoring element has at least one edge defined by two surfaces that are inclined at angles relative to the end fitting and which cuts into the associated unthreaded reinforcing element, and
wherein the edge of each anchoring element forms a cutting ring, which surrounds the glass-fiber-reinforced plastic rod or the cable and cuts into its surface.
2. A surge arrester according to claim 1 , wherein the varistor block is formed from a metal oxide including ZnO.
3. A surge arrester according to claim 1 , wherein the end fitting is formed from a metal.
4. A surge arrester according to claim 3 , wherein the end fitting is formed from aluminum.
5. A surge arrester according to claim 1 , wherein the surge arrester has a housing with at least one screen.
6. A surge arrester according to claim 1 , wherein each anchoring element is a wedge which interacts with a corresponding inclined surface on the end fitting, with the edge being in the form of a cutting blade on that side of the wedge which faces the associated unthreaded reinforcing element, and cuts into the associated unthreaded reinforcing element when subjected to a tensile load by the wedge and the inclined surface.
7. A surge arrester according to claim 1 , wherein a plurality of edges are formed on each of the plurality of anchoring elements and interact with the plurality of unthreaded reinforcing elements.
8. A surge arrester according to claim 1 , wherein the plurality of anchoring elements are connected in an interlocking manner to the plurality of unthreaded reinforcing elements and to the end fitting.
9. A surge arrester according to claim 1 , wherein the edge cuts into the associated unthreaded reinforcing element in a direction opposite to the direction of the tensile load.
10. A surge arrester, comprising:
at least one varistor block;
at least one end fitting;
a plurality of unthreaded reinforcing elements which hold the varistor block firmly to the end fitting, each of the plurality of unthreaded reinforcing elements being a glass-fiber-reinforced plastic rod or a cable; and
a plurality of anchoring elements each of which holds associated one of the plurality of unthreaded reinforcing elements firmly on the end fitting;
wherein each of the plurality of anchoring elements has at least one edge defined by two surfaces that are inclined at angles relative to the end fitting and which cuts into the associated unthreaded reinforcing element, and
wherein each of the plurality of anchoring elements is a wedge which interacts with a corresponding inclined run-on surface on the end fitting, with the edge being in the form of a cutting blade on that side of the wedge which faces the associated unthreaded reinforcing element, and cuts into the associated unthreaded reinforcing element when subjected to a tensile load by the wedge and the run-on surface.
11. A surge arrester according to claim 1 , wherein the cutting of the edge of each anchoring element into the associated unthreaded reinforcing element prevents relative movement between the anchoring element and the associated unthreaded reinforcing element when the surge arrester is used.
12. A surge arrester according to claim 1 , wherein each anchoring element has only one edge.
13. A surge arrester according to claim 10 , wherein each of the plurality of unthreaded reinforcing elements comprises tubular segment composed of a glass-fiber-reinforced plastic material.
14. The surge arrester of claim 10 , wherein each of the plurality of anchoring elements completely surrounds the associated unthreaded reinforcing element.
15. The surge arrester of claim 10 , wherein each of the plurality of anchoring elements comprises a second cutting edge that cuts into the associated unthreaded reinforcing element and is spaced axially from the first recited cutting edge.
16. A surge arrester according to claim 10 , wherein the varistor block is formed from a metal oxide including ZnO.
17. A surge arrester according to claim 10 , wherein the end fitting is formed from a metal including aluminum.
18. A surge arrester according to claim 10 , wherein the surge arrester has a housing with at least one screen.
19. A surge arrester according to claim 10 , wherein the edge cuts into the associated unthreaded reinforcing element in a direction opposite to the direction of the tensile load.
20. A surge arrester according to claim 1 , wherein the plurality of anchoring elements are connected in an interlocking manner to the plurality of unthreaded reinforcing elements and to the end fitting.