IP Library Granted Patent US 9,850,974
Granted Patent B1
US 9,850,974 · App. 14/199,878 · Granted Dec 26, 2017

Buckling column load switch spring

Inventors: Christopher P. Henry (Thousand Oaks, CA); Jie Jiang (Sherman Oaks, CA); Sloan P. Smith (Calabasas, CA); Jacob Mikulsky (Los Angeles, CA)
Assignee: HRL Laboratories, LLC
F16F7/00F16F7/125F16F13/00
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Quick Facts
Patent No.
US 9,850,974
App. No.
14/199,878
Granted
Dec 26, 2017
Kind
B1
Abstract

A nonlinear mechanical element including a buckling column and hard stops. In one embodiment when the nonlinear mechanical element is subjected to an increasing compressive load, the buckling column buckles at a critical load, resulting in reduced stiffness past the critical load. One or more lateral hard stops may be provided adjacent to the buckling column to prevent the buckling deformation from exceeding a certain extent, and axial hard stops may be provided to shift the load path away from the buckling column when a certain amount of compressive displacement has been reached.

Claims (26)

1. A monolithic nonlinear mechanical element, comprising:

a substantially flat buckling column extending in a first direction from a first end to a second end of the flat buckling column, and an integral foot, extending substantially in a second direction perpendicular to the first direction, at each of the first and second ends,

each foot having:

a heel; and

a toe having an angled surface,

the heel of each foot being configured to cause the buckling column to buckle in the second direction when the monolithic nonlinear mechanical element is subjected to a compressive force transmitted to the nonlinear mechanical element by two parallel surfaces substantially perpendicular to the first direction, and

the angled surface of the toe of each foot being configured to protect the buckling column from buckling beyond its elastic limit.

2. A monolithic nonlinear mechanical element, comprising a substantially flat buckling column extruding in a first direction and having two ends, and an integral foot, extending substantially in a second direction perpendicular to the first direction, at each of the two ends,

each foot having:

a heel; and

a toe having an angled surface,

the heel being configured to cause the buckling column to buckle in the second direction when the monolithic nonlinear mechanical element is subjected to a compressive force transmitted to the nonlinear mechanical element by two parallel surfaces substantially perpendicular to the first direction, and

the angled surface of the toe of each foot being configured to protect the buckling column from buckling beyond its elastic limit by coming into contact with one of the two parallel surfaces.

3. A monolithic nonlinear mechanical element, comprising a substantially flat buckling column extending in a first direction and having two ends, and an integral foot, extending substantially in a second direction perpendicular to the first direction, at each of the two ends,

each foot having:

a heel; and

a toe having an angled surface,

the heel being configured to cause the buckling column to buckle in the second direction when the monolithic nonlinear mechanical element is subjected to a compressive force transmitted to the nonlinear mechanical element by two parallel surfaces substantially perpendicular to the first direction,

the angled surface of the toe being configured to protect the buckling column from buckling beyond its elastic limit,

wherein a first heel of the two heels is in contact with a flat portion of one of the two parallel surfaces.

4. A monolithic nonlinear mechanical element, comprising a substantially flat buckling column extending in a first direction and having two ends, and an integral foot, extending substantially in a second direction perpendicular to the first direction, at each of the two ends,

each foot having:

a heel; and

a toe having an angled surface,

the heel of each foot being configured to cause the buckling column to buckle in the second direction when the monolithic nonlinear mechanical element is subjected to a compressive force transmitted to the nonlinear mechanical element directly by two parallel surfaces substantially perpendicular to the first direction, and

the angled surface of the toe being configured to protect the buckling column from buckling beyond its elastic limit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2014
From: HENRY, CHRISTOPHER P.; JIANG, JIE; SMITH, SLOAN P.; MIKULSKY, JACOB
To: HRL LABORATORIES, LLC
Reel/Frame 032441/0770 →
Continuity (1)
Provisional Application 61783499 · Mar 14, 2013