IP Library Granted Patent US 12,601,441
Granted Patent B2
US 12,601,441 · App. 18/222,954 · Granted Apr 14, 2026

Method, device and system of a hose restraint device installable on a hose carrying a pressurized fluid and a fitting thereof during operation of the hose

Inventor: Steve Beeson (Yukon, OK)
F16L55/005F16L35/00
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Quick Facts
Patent No.
US 12,601,441
App. No.
18/222,954
Granted
Apr 14, 2026
Kind
B2
Abstract

Disclosed are a method, a device and/or a system of a hose restraint device installable on a hose carrying a pressurized fluid and a fitting thereof during operation of the hose. In accordance therewith, the hose restraint device includes a cable and link components that receive portions of the cable bent around the hose and the fitting. The link components each includes a slot through which the cable passes and a notched slot in which a bent portion of the cable is received. Based on loop-based connections of the hose restraint device to the hose and the fitting, the anchoring of the bent portions of the cable to the link components is supplemented by a restoring force of a spring surrounding the cable and expanding between the link components of the hose restraint device to then be solely delimited thereby.

Claims (56)

1 . A method of a coupling a hose restraint device to a hose carrying a pressurized fluid and a fitting thereof, comprising:

providing a first button and a second button at a first end and a second end respectively of a cable of the hose restraint device;

providing the hose restraint device with a first link component and a second link component, each of which comprises a slot through which the cable passes and a notched slot, and the notched slot comprising another slot and a notch; and

in a state of operation of the hose in which the hose is continually connected to the fitting and carries the pressurized fluid,

based on compressing a spring provided between the first link component and the second link component:

bending the cable of the hose restraint device proximate the first end thereof around the hose; and

bending the cable of the hose restraint device proximate the second end thereof over the fitting;

anchoring the cable proximate the first end bent around the hose and the cable proximate the second end bent around the fitting to the first link component and the second link component respectively based on inserting the corresponding first button and the second button completely into the corresponding another slot of the notched slot thereof such that a first portion of the cable proximate the first button at the first end and a second portion of the cable proximate the second button at the second end automatically move into the corresponding notch of the notched slot of the first link component and the second link component respectively; and

forming a first loop-based connection of the hose restraint device around the hose proximate the first end of the cable and a second loop-based connection of the hose restraint device around the fitting proximate the second end of the cable based on the anchoring of the cable proximate the first end thereof and the second end thereof to the corresponding first link component and the second link component in accordance with a restoring force of the spring expanding the spring such that the spring is then solely delimited by the first link component and the second link component of the hose restraint device.

2 . The method of claim 1 , comprising the first button and the second button each having a cross-sectional dimension more than that of the cable of the hose restraint device.

3 . The method of claim 1 , comprising:

the slot of the first link component and the second link component having a cross-sectional dimension more than that of the cable of the hose restraint device;

the another slot of the notched slot of the first link component and the second link component having a cross-sectional dimension more than that of the corresponding first button and the second button; and

the notch of the notched slot of the first link component and the second link component having a width less than the cross-sectional dimension of the corresponding first button and the second button and more than the cross-sectional dimension of the cable of the hose restraint device.

4 . The method of claim 1 , comprising at least one of: the cable, the first button, the second button, the first link component, the second link component and the spring being made of a metallic material.

5 . The method of claim 1 , further comprising providing a sleeve in the slot of the first link component and the second link component such that the cable of the hose restraint device passes through the sleeve.

6 . The method of claim 5 , comprising the sleeve being a polyester sleeve.

7 . The method of claim 1 , comprising designing the hose restraint device in accordance with a minimum load thereof offered to the pressurized fluid carried by the hose obtained from a force of the pressurized fluid coming out of the hose, a cross-sectional area of the hose and a pressure of the pressurized fluid.

8 . A hose restraint device couplable to a hose carrying a pressurized fluid and a fitting thereof, comprising:

a cable;

a first button and a second button at a first end and a second end respectively of the cable;

a first link component and a second link component, each of which comprises a slot through which the cable passes and a notched slot, and the notched slot comprising another slot and a notch; and

a spring provided between the first link component and the second link component,

wherein, in a state of operation of the hose in which the hose is continually connected to the fitting and carries the pressurized fluid,

the spring is compressed to bend the cable proximate the first end around the hose and the cable proximate the second end around the fitting,

the cable proximate the first end bent around the hose and the cable proximate the second end bent around the fitting are anchored to the first link component and the second link component respectively based on inserting the corresponding first button and the second button completely into the corresponding another slot of the notched slot thereof such that a first portion of the bent cable proximate the first button at the first end and a second portion of the bent cable proximate the second button at the second end automatically move into the corresponding notch of the notched slot of the first link component and the second link component respectively, and

a first loop-based connection around the hose proximate the first end of the cable and a second loop-based connection around the fitting proximate the second end of the cable are formed based on the anchoring of the bent cable proximate the first end and the second end to the corresponding first link component and the second link component in accordance with a restoring force of the spring expanding the spring such that the spring is then solely delimited by the first link component and the second link component.

9 . The hose restraint device of claim 8 , wherein the first button and the second button each has a cross-sectional dimension more than that of the cable.

10 . The hose restraint device of claim 8 , wherein:

the slot of the first link component and the second link component has a cross-sectional dimension more than that of the cable,

the another slot of the notched slot of the first link component and the second link component has a cross-sectional dimension more than that of the corresponding first button and the second button, and

the notch of the notched slot of the first link component and the second link component has a width less than the cross-sectional dimension of the corresponding first button and the second button and more than the cross-sectional dimension of the cable.

11 . The hose restraint device of claim 8 , wherein at least one of: the cable, the first button, the second button, the first link component, the second link component and the spring is made of a metallic material.

12 . The hose restraint device of claim 8 , wherein the slot of the first link component and the second link component comprises a sleeve therein such that the cable passes through the sleeve.

13 . The hose restraint device of claim 12 , wherein the sleeve is a polyester sleeve.

14 . A hose restraint system comprising:

a hose carrying a pressurized fluid;

a fitting of the hose; and

a hose restraint device comprising:

a cable;

a first button and a second button at a first end and a second end respectively of the cable;

a first link component and a second link component, each of which comprises a slot through which the cable passes and a notched slot, and the notched slot comprising another slot and a notch; and

a spring provided between the first link component and the second link component,

wherein, in a state of operation of the hose in which the hose is continually connected to the fitting and carries the pressurized fluid,

the spring of the hose restraint device is compressed to bend the cable proximate the first end around the hose and the cable proximate the second end around the fitting,

the cable proximate the first end bent around the hose and the cable proximate the second end bent around the fitting are anchored to the first link component and the second link component respectively based on inserting the first button and the second button completely into the corresponding another slot of the notched slot thereof such that a first portion of the bent cable proximate the first button at the first end and a second portion of the bent cable proximate the second button at the second end automatically move into the corresponding notch of the notched slot of the first link component and the second link component respectively, and

a first loop-based connection proximate the first end of the cable and a second loop-based connection proximate the second end of the cable are formed based on the anchoring of the bent cable proximate the first end and the second end to the corresponding first link component and the second link component in accordance with a restoring force of the spring expanding the spring such that the spring is then solely delimited by the first link component and the second link component of the hose restraint device.

15 . The hose restraint system of claim 14 , wherein the first button and the second button of the hose restraint device each has a cross-sectional dimension more than that of the cable.

16 . The hose restraint system of claim 14 , wherein:

the slot of the first link component and the second link component of the hose restraint device has a cross-sectional dimension more than that of the cable thereof,

the another slot of the notched slot of the first link component and the second link component of the hose restraint device has a cross-sectional dimension more than that of the corresponding first button and the second button of the hose restraint device, and

the notch of the notched slot of the first link component and the second link component of the hose restraint device has a width less than the cross-sectional dimension of the corresponding first button and the second button and more than the cross-sectional dimension of the cable of the hose restraint device.

17 . The hose restraint system of claim 14 , wherein at least one of: the cable, the first button, the second button, the first link component, the second link component and the spring of the hose restraint device is made of a metallic material.

18 . The hose restraint system of claim 14 , wherein the slot of the first link component and the second link component of the hose restraint device comprises a sleeve therein such that the cable of the hose restraint device passes through the sleeve.

19 . The hose restraint system of claim 18 , wherein the sleeve is a polyester sleeve.

20 . The hose restraint system of claim 14 , wherein the hose restraint device is designed in accordance with a minimum load thereof offered to the pressurized fluid carried by the hose obtained from a force of the pressurized fluid coming out of the hose, a cross-sectional area of the hose and a pressure of the pressurized fluid.

Continuity (1)
Related Publication 20250027592A1 · Jan 23, 2025
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