Patient transport apparatus with brake assembly and steer lock assembly

US12496243B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12496243-B2
Application numberUS-202117926700-A
CountryUS
Kind codeB2
Filing dateMay 21, 2021
Priority dateMay 21, 2020
Publication dateDec 16, 2025
Grant dateDec 16, 2025

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A patient transport apparatus comprises a support structure and at least one caster assembly coupled to the structure to facilitate movement of the structure along a floor. Each caster assembly comprises a wheel, an actuator moveable between three actuator positions, a steer lock assembly moveable by the actuator between a steer and non-steer locked state, and a brake assembly movable by the actuator between a braked and unbraked state. The brake assembly includes a plunger, a retainer coupled to the plunger, a brake pad for sliding movement along the retainer, and a brake biasing element disposed between the plunger and the brake pad to urge the brake pad away from the plunger such that movement of the actuator to place the brake assembly in the braked state simultaneously brings the brake pad into engagement with the wheel and slides the brake pad along the retainer to compress the biasing element.

First claim

Opening claim text (preview).

What is claimed is: 1 . A patient transport apparatus for transporting a patient, the patient transport apparatus comprising: a support structure comprising a base, a frame, and a patient support surface to support the patient; at least one caster assembly coupled to the support structure to facilitate movement of the support structure along a floor surface, the at least one caster assembly comprising: a wheel; a wheel support coupled to the wheel to support the wheel for rotation about a rotational axis and for rotation about a swivel axis as the support structure moves along the floor surface; an actuator operatively coupled to the wheel support and arranged for movement between a first actuator position, a second actuator position, and a third actuator position; a steer lock assembly movable by the actuator between a non-steer locked state permitting the wheel support and coupled wheel to swivel about the swivel axis, and a steer locked state limiting rotation of the wheel support and coupled wheel about the swivel axis, the steer lock assembly comprising: a locking receiver, a locking element to engage the locking receiver in the steer locked state when the actuator is in the second actuator position, a first steer lock spring to bias the locking element toward the locking receiver, and a second steer lock spring to bias the steer lock assembly to the non-steer locked state by withdrawing the locking element from the locking receiver upon movement of the actuator out of the second actuator position; and a brake assembly movable by the actuator between a braked state preventing the wheel from rotating about the rotational axis, and an unbraked state permitting the wheel to rotate about the rotational axis to facilitate movement of the support structure along the floor surface, the brake assembly comprising: a plunger arranged for movement relative to the wheel support, a retainer coupled to the plunger, a brake pad supported for sliding movement along the retainer to engage the wheel when the brake assembly is in the braked state with the actuator in the third actuator position and to disengage from the wheel when the brake assembly is in the unbraked state, and a brake biasing device disposed between the plunger and the brake pad to urge the brake pad away from the plunger such that movement of the actuator from the first actuator position to the third actuator position to place the brake assembly in the braked state simultaneously brings the brake pad into engagement with the wheel and slides the brake pad along the retainer to compress the brake biasing device. 2 . The patient transport apparatus of claim 1 , wherein the plunger comprises a cap portion arranged for engagement with the actuator, and a pole portion extending to a lower end. 3 . The patient transport apparatus of claim 2 , wherein retainer comprises a shaft portion operatively attached to the pole portion of the cap portion; and wherein the brake biasing device is disposed around the shaft portion and is arranged in force-translating relationship between the brake pad and the lower end of the pole portion of the plunger. 4 . The patient transport apparatus of claim 3 , wherein the plunger and the retainer move independently relative to the brake pad when the brake assembly moves between the braked state and the unbraked state. 5 . The patient transport apparatus of claim 3 , wherein the brake pad comprises: an upper ring portion; a lower conical portion having an outer surface, the lower conical portion having an inner surface defining a first cavity region extending along the swivel axis, a stem portion extending from the lower conical portion and within the upper ring portion, the stem portion having an inner surface defining a second cavity region extending along the swivel axis and open to the first cavity region, the stem portion including a top shelf surface extending transverse to the swivel axis, and a transverse shoulder surface connecting the inner surface of the stem portion to the inner surface of the lower conical portion; and wherein the brake biasing device is positioned around the shaft portion and located between the top shelf surface and the lower end of the pole portion. 6 . The patient transport apparatus of claim 5 , wherein the retainer comprises a head portion; and wherein movement of the brake assembly from the unbraked state to the braked state causes the head portion of the retainer to move from a position engaged to the transverse shoulder surface to a position spaced from the transverse shoulder surface. 7 . The patient transport apparatus of claim 6 , wherein the movement of the brake assembly from the unbraked state to the braked state causes the outer surface of the lower conical portion of the brake pad to move from a position disengaged from the wheel to a position engaged with the wheel. 8 . The patient transport apparatus of claim 7 , wherein the movement of the brake assembly from the unbraked state to the braked state causes the brake biasing device to be further compressed between the top shelf surface and the lower end of the pole portion. 9 . The patient transport apparatus of claim 1 , wherein the actuator is a foot pedal that pivots in the opposite first and second directions about a pivot axis to place the brake assembly in the braked state or the unbraked state. 10 . The patient transport apparatus of claim 9 , comprising an axle pin wherein the foot pedal is mounted to the support structure with the axle pin extending through an opening in the foot pedal, with the axle pin defining the pivot axis. 11 . The patient transport apparatus of claim 1 , wherein the retainer is engaged to the plunger, and wherein the engagement of the retainer relative to the plunger can be adjusted so as to adjust the compressive force on the brake biasing device element in the braked or unbraked state or in the steer locked or non-steer-locked state. 12 . A caster assembly for use with a patient transport apparatus, the caster assembly comprising: a wheel; a wheel support coupled to the wheel to support the wheel for rotation about a rotational axis and for rotation about a swivel axis; an actuator operatively coupled to the wheel support and arranged for movement between a first actuator position, a second actuator position, and a third actuator position; a steer lock assembly movable by the actuator between a non-steer locked state permitting the wheel support and coupled wheel to swivel about the swivel axis, and a steer locked state limiting rotation of the wheel support and coupled wheel about the swivel axis, the steer lock assembly comprising: a locking receiver, a locking element to engage the locking receiver in the steer locked state when the actuator is in the second actuator position, a first steer lock spring to bias the locking element toward the locking receiver, and a second steer lock spring to bias the steer lock assembly to the non-steer locked state by withdrawing the locking element from the locking receiver upon movement of the actuator out of the second actuator position; and a brake assembly movable by the actuator between a braked state preventing the wheel from rotating about the rotational axis, and an unbraked state permitting the wheel to rotate about the rotational axis, the brake assembly comprising: a plunger arranged for movement relative to the wheel support, a retainer coupled to the plunger, a brake pad supported for sliding movement along the retainer to engage the wheel when the brake assembly is in the braked state with the actuator in the third actuator position and to disengage fro

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What does patent US12496243B2 cover?
A patient transport apparatus comprises a support structure and at least one caster assembly coupled to the structure to facilitate movement of the structure along a floor. Each caster assembly comprises a wheel, an actuator moveable between three actuator positions, a steer lock assembly moveable by the actuator between a steer and non-steer locked state, and a brake assembly movable by the ac…
Who is the assignee on this patent?
Stryker Corp
What technology area does this patent fall under?
Primary CPC classification A61G7/0528. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Dec 16 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 6 related publications on this page (citations in our corpus or others sharing the same primary CPC).