IP Library Granted Patent US 12669419
Granted Patent B2
US 12669419 · App. 18/584,249 · Granted Jun 30, 2026

Fixtures and methods for testing articles in tension when using compression loading

Inventor: James M. Greer, Jr. (Colorado Springs, CO)
Assignee: United States of America as represented by the Secretary of the Air Force
G01N3/08G01M99/007G01N3/02G01N3/04G01N2203/0016G01N2203/0017G01N2203/0019G01N2203/027G01N2203/0435
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Quick Facts
Patent No.
US 12669419
App. No.
18/584,249
Granted
Jun 30, 2026
Kind
B2
Abstract

Fixtures and methods for testing articles in tension when using compression loading are disclosed. The fixture is formed by three plates that are arranged to simulate a clevis-lug joint. The outer plates form the clevis, and the inner plate forms the lug. The plates each have holes that are aligned to accept the lug pin through all three holes. The center plate is attached to one end of the fixture. The outer two plates are attached to the other end of the fixture. Gaps are provided at one end of the plates to facilitate sliding of the outer plates in one direction and sliding of the inner plate in the opposite direction when compressive forces are applied to the ends of the fixture.

Claims (22)

1 . A fixture for testing articles in tension when using compression loading, said fixture comprising:

a first outer plate having a pin-accepting hole therethrough and a first slot therethrough that is spaced apart from the pin-accepting hole and partially surrounds the pin-accepting hole, wherein said first slot has an open end;

a second outer plate having a pin-accepting hole therethrough and a second slot therethrough that is spaced apart from the pin-accepting hole and partially surrounds the pin-accepting hole, wherein said second slot has an open end;

an inner plate having a pin-accepting hole therethrough and a third slot therethrough that is spaced apart from the pin-accepting hole and partially surrounds the pin-accepting hole, wherein said third slot has an open end, and the first outer plate, the second outer plate, and the inner plate are stacked with the inner plate located between the outer plates, wherein the first outer plate, the second outer plate, and the inner plate each have a pair of spaced apart sides and a pair of spaced apart ends, said ends comprising first ends and second ends; and

a pair of end plates comprising a first end plate and a second end plate, said end plates arranged so that the first end plate is positioned adjacent the first ends of the first outer plate, the second outer plate, and the inner plate, and the second end plate is positioned adjacent the second end of the first outer plate, the second outer plate, and the inner plate,

wherein the pin-accepting holes in the first outer plate, the second outer plate, and the inner plate are aligned, and the opening in the third slot is oriented in a different direction than the openings in the first and second slots, and the first and second outer plates and the inner plate are arranged relative to the end plates so that the outer plates are slidable only in a direction from the second end plate toward the first end plate, and the inner plate is slidable only in a direction from the first end plate toward the second end plate.

2 . The fixture of claim 1 wherein the first, second, and third slots each have two leg portions and a connecting portion connecting the legs.

3 . The fixture of claim 2 wherein the leg portions comprise two straight segments and the connecting portion is a curved segment.

4 . The fixture of claim 2 which has a longitudinal axis, wherein the first, second, and third slots each have a centerline, wherein the centerline of the first slot comprises a first centerline, the centerline of the second slot comprises a second centerline, and the centerline of the third slot comprises a third centerline, and there is space between the leg portions of each of the first, second, and third slots, wherein said space forms an open end of the respective first, second, and third slots.

5 . The fixture of claim 4 wherein open ends of the first and second slots are oriented in a first direction, and first and second centerlines are oriented parallel to the longitudinal axis of the fixture, and the open end of the third slot is oriented in the opposite direction relative to the open ends of the first and second slots, and the third centerline is oriented parallel to the longitudinal axis, so that the third slot forms a 180° angle relative to the first and second slots so that said fixture is configured to simulate an axial load.

6 . The fixture of claim 4 wherein the first and second centerlines of the respective first and second slots are oriented at a first oblique angle relative to the longitudinal axis of the fixture, and the third centerline of the third slot is oriented at second oblique angle relative to the longitudinal axis, wherein the third centerline forms an obtuse angle relative to the first and second centerlines so that said fixture is configured to simulate an oblique load.

7 . The fixture of claim 4 wherein the first and second centerlines of the respective first and second slots are oriented at a first angle relative to the longitudinal axis of the fixture, and the third centerline of the third slot is oriented at a second angle relative to the longitudinal axis, wherein the first and second centerlines form a 90° angle relative to the third centerline so that said fixture is configured to simulate a transverse load.

8 . The fixture of claim 1 wherein the first, second, and third slots are generally U-shaped.

9 . A method for testing articles in tension when using compression loading, said method comprising:

a) providing a fixture comprising:

a first outer plate having a pin-accepting hole therethrough and a first slot therethrough that is spaced apart from the pin-accepting hole and partially surrounds the pin-accepting hole, wherein said first slot is in the configuration of a first prong of a clevis that will hold the lug to be tested and said first slot has an open end;

a second outer plate having a pin-accepting hole therethrough and a second slot therethrough that is spaced apart from the pin-accepting hole and partially surrounds the pin-accepting hole, wherein said second slot is in the configuration of a second prong of a clevis that will hold the lug to be tested and said second slot has an open end;

an inner plate having a pin-accepting hole therethrough and a third slot therethrough that is spaced apart from the pin-accepting hole and partially surrounds the pin-accepting hole, wherein said third slot is in the configuration of a lug to be tested and has an open end, and the first outer plate, the second outer plate, and the inner plate are stacked with the inner plate located between the outer plates, wherein the first outer plate, the second outer plate, and the inner plate each have a pair of spaced apart sides and a pair of spaced apart ends, said ends comprising first ends and second ends; and

a pair of end plates comprising a first end plate and a second end plate, said end plates positioned so that the first end plate is positioned adjacent the first ends of the first outer plate, the second outer plate, and the inner plate, and the second end plate is positioned adjacent the second end of the first outer plate, the second outer plate, and the inner plate,

wherein the pin-accepting holes in the first outer plate, the second outer plate, and the inner plate are aligned, and the opening in the third slot is oriented in a different direction than the openings in the first and second slots, and the first and second outer plates and the inner plate are arranged relative to the end plates so that the outer plates are slidable only in a direction from the second end plate toward the first end plate, and the inner plate is slidable only in a direction from the first end plate toward the second end plate; and

b) placing a pin through the pin-accepting holes in the first outer plate, the second outer plate, and the inner plate; and

c) placing the fixture in a compression testing apparatus and applying compressive force to the end plates of the fixture.