IP Library › Granted Patent US 12,496,606
Granted Patent B2
US 12,496,606 · App. 16/458,832 · Granted Dec 16, 2025

Sprinkler system attachment

Inventor: Klaus M. A. Vollrath (City Beach, AU)
B05B15/14B05B15/622B05B15/65
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Quick Facts
Patent No.
US 12,496,606
App. No.
16/458,832
Granted
Dec 16, 2025
Kind
B2
Abstract

In an installed sprinkler system, a sprinkler system attachment serves to absorb vertical and lateral forces that a sprinkler assembly or a protruding extension pipe may be exposed to, by providing a flexible body with one or more collapsible zones, having threaded ends or smooth, sliding-fit ends for connecting the sprinkler system attachment between two sections of the sprinkler system.

Claims (9)

1 . A sprinkler attachment to accommodate vertical and lateral forces exerted on a sprinkler head or on a vertical extension pipe of an installed sprinkler system, comprising

a single flexible, substantially spherical, ellipsoid, or hemispherical body with a cylindrical threaded inlet neck portion and a cylindrical threaded outlet neck portion extending from opposite ends of said body, wherein the flexible body is made of a material that is sufficiently resilient to prevent stretching when water passes from the inlet neck portion to the outlet neck portion to avoid vertical elongation, and will collapse upon itself when a compressive vertical force is exerted between the inlet and outlet neck portions and will fully recover its shape when the compressive force is removed, and has a shape that is configured to prevent narrowing of the body when a compressive vertical force is exerted on the body, and

wherein said threaded inlet and outlet neck portions are sized and threaded to complementarily engage with threaded ends of a conventional part of a conventional installed sprinkler system.

2 . A sprinkler attachment of claim 1 , wherein the conventional sprinkler system part includes an extension pipe, connector, extender, or sprinkler assembly of a conventional installed sprinkler system.

3 . A method of protecting an installed sprinkler system against damage from lateral and vertical downward forces exerted on a sprinkler assembly, comprising,

providing a resiliently flexible, substantially spherical, ellipsoid, or hemispherical deformable body that defines a single spherical, ellipsoid, or hemispherical deformable structure with threaded inlet and outlet neck portions that extend from opposite ends of the substantially spherical, ellipsoid, or hemispherical body, wherein the body is configured to collapse upon itself when a compressive force is exerted between the inlet and outlet neck portions and fully recover its shape when the compressive force is removed, wherein the body is made of a material that is sufficiently resilient to prevent stretching when water passes from the inlet neck portion to the outlet neck portion to avoid vertical elongation, and the body is configured to prevent narrowing of the body when a compressive force is exerted on the body, and wherein the threaded inlet and outlet neck portions that extend from opposite ends of the flexibly deformable body are sized and threaded to complementarily engage with threaded ends of extension pipes, connectors, or extenders, of a conventional installed sprinkler system.

4 . A method of claim 3 , wherein the flexibly deformable body is installed below or above ground.

5 . A method of claim 4 , wherein, in order to protect an installed sprinkler system against vertical downward forces, the flexibly deformable body is installed below the ground, between the sprinkler assembly and the underlying connectors or piping that feed that sprinkler assembly.

6 . A method of claim 4 , wherein, in order to protect an installed sprinkler system against damage from lateral forces exerted on a vertical extension pipe or sprinkler assembly, the flexibly deformable body is provided above the ground between the extension pipe and the underlying connectors or piping that feed the extension pipe.

Continuity (2)
Provisional Application 62764425 · Aug 1, 2018
Related Publication 20200038898A1 · Feb 6, 2020
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