This work is a method to drill into a rock surface regardless of the gravitational field or orientation. The required weight-on-bit (WOB) is supplied by a self-contained anchoring mechanism. The system includes a rotary percussive coring drill, forming a complete sampling instrument usable by robot or human. This method of in situ sample acquisition using micro - spine anchoring technology enables several NASA mission concepts not currently possible with existing technology, including sampling from consolidated rock on asteroids, providing a bolt network for astronauts visiting a near-Earth asteroid, and sampling from the ceilings or vertical walls of lava tubes and cliff faces on Mars. One of the most fundamental parameters of drilling is ...
To successfully explore near-Earth Asteroids the question of mobility emerges as the key issue for a...
A prototype low-force rotary-percussive rock coring tool for use in acquiring samples for geological...
demands that rock fines from a wide variety of rock types ranging from soft shale to very hard basal...
Systems and methods for gravity independent gripping and drilling are described. The gripping device...
To grip rocks on the surfaces of asteroids and comets, and to grip the cliff faces and lava tubes of...
A new gripper mechanism can be used as an end effector for a long arm that reaches out from a nearby...
This paper details the development and early testing of a compliant suspension for a microspine grip...
The Drill for the Mars Science Laboratory mission is a rotary-percussive sample acquisition device w...
Several proposed or planned planetary science missions to Mars and other Solar System bodies over th...
This project is part of the NASA Microg-g NExT Challenge and will involve the design and development...
Two apparatuses now under development are intended to perform a variety of deep-drilling, coring, an...
The ROtary Percussive Coring Drill is a light weight, flight-like, five-actuator drilling system pro...
Rock drilling and coring conceptual designs for the surface activities associated with a manned Mars...
2nd Place at Denman Undergraduate Research ForumOne major limitation of previous NASA missions in ex...
Future robotic exploration missions within the Solar System, focussing on either scientific discover...
To successfully explore near-Earth Asteroids the question of mobility emerges as the key issue for a...
A prototype low-force rotary-percussive rock coring tool for use in acquiring samples for geological...
demands that rock fines from a wide variety of rock types ranging from soft shale to very hard basal...
Systems and methods for gravity independent gripping and drilling are described. The gripping device...
To grip rocks on the surfaces of asteroids and comets, and to grip the cliff faces and lava tubes of...
A new gripper mechanism can be used as an end effector for a long arm that reaches out from a nearby...
This paper details the development and early testing of a compliant suspension for a microspine grip...
The Drill for the Mars Science Laboratory mission is a rotary-percussive sample acquisition device w...
Several proposed or planned planetary science missions to Mars and other Solar System bodies over th...
This project is part of the NASA Microg-g NExT Challenge and will involve the design and development...
Two apparatuses now under development are intended to perform a variety of deep-drilling, coring, an...
The ROtary Percussive Coring Drill is a light weight, flight-like, five-actuator drilling system pro...
Rock drilling and coring conceptual designs for the surface activities associated with a manned Mars...
2nd Place at Denman Undergraduate Research ForumOne major limitation of previous NASA missions in ex...
Future robotic exploration missions within the Solar System, focussing on either scientific discover...
To successfully explore near-Earth Asteroids the question of mobility emerges as the key issue for a...
A prototype low-force rotary-percussive rock coring tool for use in acquiring samples for geological...
demands that rock fines from a wide variety of rock types ranging from soft shale to very hard basal...