IP Library Granted Patent US 8,978,807
Granted Patent B2
US 8,978,807 · App. 14/207,337 · Granted Mar 17, 2015

Terrain traversing device having a wheel with microhooks

Inventors: Aaron Parness (Los Angeles, CA); Kalind C. Carpenter (Pasadena, CA); Nicholas Wiltsie (Pasadena, CA)
Assignee: California Institute of Technology
B62D57/024B60B9/12B60B15/025B60B2900/721B60Y2200/46B60Y2200/47B60Y2200/48
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,978,807
App. No.
14/207,337
Granted
Mar 17, 2015
Kind
B2
Abstract

A terrain traversing device is described. The device includes an annular rotor element with a plurality of co-planar microspine hooks arranged on the periphery of the annular rotor element. Each microspine hook has an independently flexible suspension configuration that permits the microspine hook to initially engage an irregularity in a terrain surface at a preset initial engagement angle and subsequently engage the irregularity with a continuously varying engagement angle when the annular rotor element is rotated for urging the terrain traversing device to traverse a terrain surface. Improvements related to the design, fabrication and use of the microspine hooks in the device are also described.

Claims (27)

1. A terrain traversing device, comprising:

a housing;

at least one microspine wheel assembly comprising a circular planar rotor with one or more microspine hooks arranged on a circumferential edge of said circular planar rotor, each microspine hook mounted on a respective independently flexible suspension that accommodates variable engagement angles between said microspine hook and irregularities on a terrain surface as the at least one microspine wheel assembly rotates in one direction to urge the terrain traversing device to traverse the terrain surface;

at least two axles, comprising a first and second axle, wherein the at least one microspine wheel assembly is at least two microspine wheel assemblies, each mounted on a respective axle whereby the circular planar rotor of each microspine wheel assembly is rotatable in one direction, with the respective axle, to urge the terrain traversing device to traverse the terrain surface or more motors housed in the housing and coupled to the at least two axles, the two or more motors configured to respectively rotate the at least two microspine wheel assemblies in one direction to urge the terrain traversing device to traverse the terrain surface, wherein

the at least two axles are mounted substantially adjacent to each other with the wheel assemblies substantially parallel to each other and have a sweep angle with respect to each other and to a center of the terrain traversing device, and

a positive sweep angle corresponds to the microspine wheel assemblies of the first and second axles forming a chevron shaped arrangement with respect to the center of the terrain traversing device.

2. The terrain traversing device of claim 1 , wherein a 0° sweep angle corresponds to the microspine wheel assemblies of the first and second axles being parallel and orthogonal with respect to the center of the terrain traversing device.

3. The terrain traversing device of claim 1 , wherein the variable engagement angles are between 60-80°.

4. The terrain traversing device of claim 1 , wherein the two or more motors each have a respective axle of said at least two axles and are configured to independently operate the axles independently thereby adapting the device to turn or provide speed control for the device based on the different instructions given to each of the axles.

5. The terrain traversing device according to claim 1 , wherein the independently flexible suspension comprises a geometrical notch.

6. The terrain traversing device according to claim 1 , wherein the device has a mass between 7 grams to 600 grams.

7. A terrain traversing device, comprising:

a housing;

at least one microspine wheel assembly comprising a circular planar rotor with one or more microspine hooks arranged on a circumferential edge of said circular planar rotor, each microspine hook mounted on a respective independently flexible suspension that accommodates variable engagement angles between said microspine hook and irregularities on a terrain surface as the at least one microspine wheel assembly rotates in one direction to urge the terrain traversing device to traverse the terrain surface;

at least one axle, wherein the at least one microspine wheel assembly are each mounted on a respective axle whereby the circular planar rotor of each microspine wheel assembly is rotatable in one direction, with the respective axle, to urge the terrain traversing device to traverse the terrain surface; and

at least one motor housed in the housing and coupled to the at least one axle, the at least one motor configured to rotate the at least one microspine wheel assembly in one direction to urge the terrain traversing device to traverse the terrain surface, wherein the at least one microspine wheel assembly further comprises adhesive materials, the adhesive materials arranged adjacent to or interstitially with the microspines to provide alterative and additional adhesive forces for engaging the terrain wall.

8. The terrain traversing device of claim 7 , wherein the adhesive materials are electrostatic or electroadhesive materials, fibrillar adhesive pads, pressure sensitive adhesive pads or tape, and electro- or permanent magnets.

9. A terrain traversing device, comprising:

a housing;

at least one microspine wheel assembly comprising a circular planar rotor with one or more microspine hooks arranged on a circumferential edge of said circular planar rotor, each microspine hook mounted on a respective independently flexible suspension that accommodates variable engagement angles between said microspine hook and irregularities on a terrain surface as the at least one microspine wheel assembly rotates in one direction to urge the terrain traversing device to traverse the terrain surface;

at least one axle, wherein the at least one microspine wheel assembly are each mounted on a respective axle whereby the circular planar rotor of each microspine wheel assembly is rotatable in one direction, with the respective axle, to urge the terrain traversing device to traverse the terrain surface;

at least one motor housed in the housing and coupled to the at least one axle, the at least motor configured to rotate the at least one microspine wheel assembly in one direction to urge terrain traversing device to traverse the terrain surface;

a tail, the tail configured to adapt between a first position and a second position and vice versa thereby adapting the device in traversing different surfaces, wherein:

the first position corresponding to the tail has a substantially 90° elbow at the center,

the second position corresponding to the tail being substantially 180° , and the tail comprises one or more microspine wheel assembly mounted on one or more tail axles associated with the tail.

10. The terrain traversing device of claim 9 , wherein the different surfaces being traversed comprises a horizontal ground, stairs, curbs and a vertical wall.

11. The terrain traversing device of claim 9 , wherein the one or more tail axles associated with the tail having corresponding motors and are configured to operate independently from the one or more axles of the terrain traversing device not associated with the tail.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jun 12, 2014
From: CALIFORNIA INSTITUTE OF TECHNOLOGY
To: NASA
Reel/Frame 033202/0808 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2014
From: PARNESS, AARON; CARPENTER, KALIND C.; WILTSIE, NICHOLAS
To: CALIFORNIA INSTITUTE OF TECHNOLOGY
Reel/Frame 032649/0913 →
Continuity (4)
Continuation In Part 13606885 · Sep 7, 2012
Provisional Application 61778004 · Mar 12, 2013
Provisional Application 61533042 · Sep 9, 2011
Related Publication 20140203623A1 · Jul 24, 2014