The ability to penetrate subsurfaces and perform sample acquisition at depth of meters may be critical for future NASA in-situ exploration missions to bodies in the solar system, including Mars and Europa. A corer/sampler was developed with the goal of enabling acquisition of samples from depths of several meters where if used on Mars would be beyond the oxidized and sterilized zone. For this purpose, we developed a rotary-hammering coring drill, called Auto-Gopher, which employs a piezoelectric actuated percussive mechanism for breaking formations and an electric motor that rotates the bit to remove the powdered cuttings. This sampler is a wireline mechanism that can be fed into and retrieved from the drilled hole using a winch and a cable...
The results from the Phoenix mission led scientists to believe it is possible that primitive life ex...
In the last years several European and US space projects have been focused on the development of sur...
Rock drilling and coring conceptual designs for the surface activities associated with a manned Mars...
Accessing regions on planetary bodies that potentially preserved biosignatures or are presently habi...
Subsurface penetration by coring, drilling or abrading is of great importance for a large number of ...
The rocks on extraterrestrial objects contain plenty of original geological and biological informati...
Increasingly, NASA exploration mission objectives include sample acquisition tasks for in-situ analy...
demands that rock fines from a wide variety of rock types ranging from soft shale to very hard basal...
Two apparatuses now under development are intended to perform a variety of deep-drilling, coring, an...
A prototype low-force rotary-percussive rock coring tool for use in acquiring samples for geological...
The Drill for the Mars Science Laboratory mission is a rotary-percussive sample acquisition device w...
The next series of planetary exploration missions require a method of extracting rock and soil core ...
Several recent and planned space projects have been focussed on surface rovers for planetary mission...
The ROtary Percussive Coring Drill is a light weight, flight-like, five-actuator drilling system pro...
VTT Automation has developed an advanced rover-based mobile drilling device for planetary exploratio...
The results from the Phoenix mission led scientists to believe it is possible that primitive life ex...
In the last years several European and US space projects have been focused on the development of sur...
Rock drilling and coring conceptual designs for the surface activities associated with a manned Mars...
Accessing regions on planetary bodies that potentially preserved biosignatures or are presently habi...
Subsurface penetration by coring, drilling or abrading is of great importance for a large number of ...
The rocks on extraterrestrial objects contain plenty of original geological and biological informati...
Increasingly, NASA exploration mission objectives include sample acquisition tasks for in-situ analy...
demands that rock fines from a wide variety of rock types ranging from soft shale to very hard basal...
Two apparatuses now under development are intended to perform a variety of deep-drilling, coring, an...
A prototype low-force rotary-percussive rock coring tool for use in acquiring samples for geological...
The Drill for the Mars Science Laboratory mission is a rotary-percussive sample acquisition device w...
The next series of planetary exploration missions require a method of extracting rock and soil core ...
Several recent and planned space projects have been focussed on surface rovers for planetary mission...
The ROtary Percussive Coring Drill is a light weight, flight-like, five-actuator drilling system pro...
VTT Automation has developed an advanced rover-based mobile drilling device for planetary exploratio...
The results from the Phoenix mission led scientists to believe it is possible that primitive life ex...
In the last years several European and US space projects have been focused on the development of sur...
Rock drilling and coring conceptual designs for the surface activities associated with a manned Mars...