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Gm global technology operations llc (20240262641). DEPLOYABLE TRUCK RAMP WITH BLADDERS simplified abstract

From WikiPatents

DEPLOYABLE TRUCK RAMP WITH BLADDERS

Organization Name

gm global technology operations llc

Inventor(s)

Paul W. Alexander of Ypsilanti MI (US)

Wonhee Michael Kim of Royal Oak MI (US)

Craig A. Kollar of Sterling Heights MI (US)

Joseph M. Polewarczyk of Lake Orion MI (US)

Bhavesh Shah of Troy MI (US)

Rafael Gabriel Casalduc of Detroit MI (US)

DEPLOYABLE TRUCK RAMP WITH BLADDERS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240262641 titled 'DEPLOYABLE TRUCK RAMP WITH BLADDERS

Simplified Explanation: The patent application describes a deployable ramp for a vehicle's cargo loading system, which includes rigid elements and bladders connected to a compressor to support the load.

Key Features and Innovation:

  • Ramp includes rigid elements and bladders
  • Bladders are fluidly connected to a compressor
  • Bladders can collapse or expand to support the load
  • Compressor provides pressurized fluid to the bladders
  • Innovative design for efficient cargo loading

Potential Applications: This technology can be used in various vehicles with cargo loading systems, such as trucks, trailers, or aircraft.

Problems Solved: The technology solves the problem of efficiently loading and unloading cargo by providing a deployable ramp system that can support heavy loads.

Benefits:

  • Improved efficiency in cargo loading and unloading
  • Enhanced safety for handling heavy loads
  • Versatile application in different types of vehicles

Commercial Applications: Potential commercial applications include logistics companies, transportation services, and industries that require efficient cargo handling solutions.

Prior Art: Readers can explore prior art related to deployable ramps, vehicle loading systems, and hydraulic systems to understand the background of this technology.

Frequently Updated Research: Stay updated on advancements in deployable ramp technologies, vehicle loading systems, and fluid-based support systems for cargo handling.

Questions about Deployable Ramps: 1. What are the key components of a deployable ramp system? 2. How does the fluid-based support system in this technology improve cargo loading efficiency?

1. A relevant generic question not answered by the article, with a detailed answer: How does the deployable ramp technology impact the overall efficiency of cargo loading operations in vehicles?

The deployable ramp technology significantly improves the efficiency of cargo loading operations by providing a versatile and reliable system for supporting heavy loads during loading and unloading processes. This results in faster turnaround times and increased productivity for vehicles equipped with this innovative technology.

2. Another relevant generic question, with a detailed answer: What are the potential cost savings associated with implementing deployable ramp technology in cargo loading systems?

Implementing deployable ramp technology in cargo loading systems can lead to cost savings through increased efficiency, reduced labor costs, and minimized risks of damage to both the cargo and the vehicle. Additionally, the improved safety features of the technology can lower insurance premiums and maintenance expenses over time.


Original Abstract Submitted

a deployable ramp is provided for a cargo loading system of a vehicle. the ramp includes one or more rigid element having a surface for supporting a load. the ramp further includes one or more bladders defining a chamber that is fluidly connected to an outlet of a compressor. the chamber is adapted to receive a fluid from the compressor. the bladder is attached to rigid element, and the at bladder is movable to a collapsed state where the chamber has a first volume. the bladder is further movable to an expanded state where the chamber has a second volume and contains a pressurized fluid for supporting the rigid element, in response to the bladder receiving the fluid from the compressor. the second volume is higher than the first volume.

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