IP Library Granted Patent US 11,608,001
Granted Patent B1
US 11,608,001 · App. 17/684,365 · Granted Mar 21, 2023

Retracting step system

Inventors: Matt Rahm (Buford, GA); Steven Thomas Sexton (Lawrenceville, GA); Gerard Biagi (Sugar Hill, GA)
Assignee: Cottrell Incorporated
B60R3/02
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Quick Facts
Patent No.
US 11,608,001
App. No.
17/684,365
Granted
Mar 21, 2023
Kind
B1
Abstract

An automatically extending and retracting step system according to the solution may reside in a retracted state when the deck of a car-carrying vehicle is substantially horizontal to the ground, i.e. when the deck is in a payload state. Advantageously, when the deck is tilted and extended to a ramp state for receiving cargo, the step system according to the solution extends laterally outward from beneath the deck, thereby providing a convenient and visible step for a user to use in getting down from the deck. When the deck is returned from the ramp state to its payload state, the step automatically retracts to a travel state beneath the deck.

Claims (21)

1. An automatically extending and retracting step system mounted beneath the cargo deck of a car-carrying vehicle that is operable to translate the cargo deck between a substantially level payload state for carrying cargo and a tilted/extended ramp state for receiving cargo, the system comprising:

a step carriage mounted to a chassis of the car-carrying vehicle;

a step slidably mounted within the step carriage; and

a rotatable actuation lever mounted to the chassis of the car-carrying vehicle and the step;

wherein when the cargo deck is transitioned to the tilted/extended ramp state, an actuating force is applied to the rotatable actuation lever such that the step is slidably extended from the step carriage; and

wherein when the cargo deck is transitioned to the payload state, the actuating force is removed such that the step is slidably retracted into the step carriage.

2. The automatically extending and retracting step system of claim 1 , wherein the step is configured to slidably extend from the step carriage toward a side of the car-carrying vehicle.

3. The automatically extending and retracting step system of claim 1 , wherein the step is configured to slidably retract into the step carriage by an opposing force generated by a spring.

4. The automatically extending and retracting step system of claim 1 , wherein the step comprises a non-slip surface.

5. The automatically extending and retracting step system of claim 1 , wherein the step is constructed from one or more of aluminum, stainless steel, carbon steel, and plastic.

6. An automatically extending and retracting step system mounted beneath the cargo deck of a car-carrying vehicle that is operable to translate the cargo deck between a substantially level payload state for carrying cargo and a tilted/extended ramp state for receiving cargo, the system comprising:

a pair of retracting step subsystems, each of the retracting step subsystems associated with a given side of the car-carrying vehicle and comprising:

a step carriage mounted to a chassis of the car-carrying vehicle;

a step slidably mounted within the step carriage; and

a rotatable actuation lever mounted to the chassis of the car-carrying vehicle and the step;

wherein when the cargo deck is transitioned to the tilted/extended ramp state, an actuating force is applied to the rotatable actuation lever such that the step is slidably extended from the step carriage; and

wherein when the cargo deck is transitioned to the payload state, the actuating force is removed such that the step is slidably retracted into the step carriage.

7. The automatically extending and retracting step system of claim 6 , wherein for each of the pair of retracting step subsystems the step is configured to slidably extend from the step carriage toward a side of the car-carrying vehicle.

8. The automatically extending and retracting step system of claim 7 , wherein for each of the pair of retracting step subsystems the step is configured to slidably retract into the step carriage by an opposing force generated by a spring.

9. The automatically extending and retracting step system of claim 7 , wherein for each of the pair of retracting step subsystems the step comprises a non-slip surface.

10. The automatically extending and retracting step system of claim 7 , wherein for each of the pair of retracting step subsystems the step is constructed from one or more of aluminum, stainless steel, carbon steel, and plastic.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2022
From: RAHM, MATT; SEXTON, STEVEN; BIAGI, GERARD
To: COTTRELL INCORPORATED
Reel/Frame 059280/0565 →
Continuity (3)
Continuation 16919772 · Jul 2, 2020
Continuation In Part 16707388 · Dec 9, 2019
Provisional Application 62776897 · Dec 7, 2018