AbstractChinese Chang’e lunar exploration project aims to collect and return subsurface lunar soil samples at a minimum penetration depth of 2m in 2017. However, in contrast to those on the Earth, automated drilling and sampling missions on the Moon raise the risk of burning bits. Test-beds are required for testing the thermal properties of drill tools in a lunar environment. In this paper, a novel temperature measuring method based on thermocouples and a slip ring was proposed. Furthermore, a data acquisition system for a drilling process was designed. A vacuous, cryogenic, and anhydrous soil environment simulating the lunar surface was established. A drilling test-bed that can reach a depth of 2.2m was developed. A control strategy based ...
Lunar Polar Volatiles: Permanently shadowed craters at the lunar poles contain water, 5 wt according...
As ISRU system development approaches flight fidelity, there is a need to test hardware in relevant ...
An in situ lunar heat flow measurement is planned using the Japanese Lunar-A penetrators. The temper...
Chinese Chang’e lunar exploration project aims to collect and return subsurface lunar soil samples a...
The upcoming lunar lander missions, for example Chang’e 2 from CNSA and several mission proposals an...
In Situ Resource Utilization (ISRU) enables future planetary exploration by using local resources to...
AbstractUnder the limitation of rockets carrying capacity, the rated torque and power offered by dri...
AbstractDue to the lack of information of subsurface lunar regolith stratification which varies alon...
An experimental apparatus designed for studying drillability of hard volcanic rock in a simulated lu...
The main task of the third Chinese lunar exploration project is to obtain soil samples that are grea...
In this article, the temperature of a sampling drill in drilling lunar rock si-mulant in a high-vacu...
NASA's Resource Prospector (RP) mission is intended to characterize the three-dimensional nature of ...
Geothermal heat flow measurements are a high priority for the future lunar geophysical network missi...
Geothermal heat flow is obtained as a product of the geothermal gradient and the thermal conductivit...
The feasibility of a technique for measuring the thermal conductivity of lunar core samples was inve...
Lunar Polar Volatiles: Permanently shadowed craters at the lunar poles contain water, 5 wt according...
As ISRU system development approaches flight fidelity, there is a need to test hardware in relevant ...
An in situ lunar heat flow measurement is planned using the Japanese Lunar-A penetrators. The temper...
Chinese Chang’e lunar exploration project aims to collect and return subsurface lunar soil samples a...
The upcoming lunar lander missions, for example Chang’e 2 from CNSA and several mission proposals an...
In Situ Resource Utilization (ISRU) enables future planetary exploration by using local resources to...
AbstractUnder the limitation of rockets carrying capacity, the rated torque and power offered by dri...
AbstractDue to the lack of information of subsurface lunar regolith stratification which varies alon...
An experimental apparatus designed for studying drillability of hard volcanic rock in a simulated lu...
The main task of the third Chinese lunar exploration project is to obtain soil samples that are grea...
In this article, the temperature of a sampling drill in drilling lunar rock si-mulant in a high-vacu...
NASA's Resource Prospector (RP) mission is intended to characterize the three-dimensional nature of ...
Geothermal heat flow measurements are a high priority for the future lunar geophysical network missi...
Geothermal heat flow is obtained as a product of the geothermal gradient and the thermal conductivit...
The feasibility of a technique for measuring the thermal conductivity of lunar core samples was inve...
Lunar Polar Volatiles: Permanently shadowed craters at the lunar poles contain water, 5 wt according...
As ISRU system development approaches flight fidelity, there is a need to test hardware in relevant ...
An in situ lunar heat flow measurement is planned using the Japanese Lunar-A penetrators. The temper...