supported by the National Major Science and Technology Infrastructure Project of China(No.2017-000052-73-01-002083);the Information Technology Center,Zhejiang University,China.
Temperature rise caused by windage power is a major limitation to the large-scale process of geotechnical centrifuges.However,there is no consensus on how to identify the key parts(parts with high windage power consum...
supported by the US National Science Foundation(Grant No.CMMI-1538211)。
Hypergravity can be realized by creating a field imposed by centripetal acceleration in a centrifuge apparatus.Such an apparatus is often used to test soil response in geotechnical engineering problems.Here we present...
supported by the National Natural Science Foundation of China(Grant Nos.11925206,51988101,and 12272340);Zhejiang Provincial Natural Science Foundation of China(Grant No.LD21A020002).
In order to comprehensively understand the mechanical behavior of biological entities and aerospace applications subjected to hypergravity environments,we delve into the impact of hypergravity on the equivalent compli...
supported by the National Natural Science Foundation of China(51988101);the Key Basic Research Program of Zhejiang Province(2020C01002);the Fundamental Research Funds for the Central Universities(226-2022-00050)
A comprehensive and integrated review of the hypergravity field applied to solidifying alloys is provided.The hypergravity field refers to an environment in which the acceleration of gravity is more significant than t...
Supported by the National Natural Science Foundation of China(U21A20148);Collaborative Innovation Program of Hefei Science Center CAS(2022HSC-CIP002).
Gravity alterations in space cause significant adaptive effects on the human body,including changes to the muscular,skeletal,and vestibular systems.However,multiple factors besides gravity exist in space;therefore,it ...
supported by National Natural Science Foundation of China[grant numbers No.12072235,32271371,12002388];Tianjin Natural Science Foundation[grant numbers No.21JCYBJC00940,21JCYBJC00910].
The bone lacunar-canalicular system(LCS)is an important microscopic infrastructure for signaling and solute transport in bone tissue,which guarantees normal physiological processes of the tissue,but the mass transfer ...
supported by the Basic Science Center Program for Multiphase Media Evolution in Hypergravity of the National Natural Science Foundation of China (Grant No. 51988101);the National Major Scientific and Technological Infrastructure-Centrifugal Hypergravity and Interdisciplinary Experimental Facility (CHIEF);Financial support from the Chinese Program of Introducing Talents of Discipline to University (the 111 Project, Grant No. B18047)。
The gravitational field affects the evolution of multiphase media, such as rocks, soil, and alloy melts. Hypergravity increases the body force of matter, enhancing the driving force of the relative motion between subs...
the Chinese National Natural Science Foundation(No.12072235,No.12002388,No.11432016);the Science Foundation of PAPF Logistics University(WHB202004).
Bone is sensitive to mechanical stimulation and plays a loading-bearing role in the human body.However,regulation of bone biomechanical properties in chronic hypergravity environments is still unclear.In this study,ma...
Under parabolic flight conditions microgravity is not lower than 3 to 5 times 10-2 g. In contrast to parabolic flights, sounding rocket flights are virtually vibrational-free allowing microgravity as low as 10-5 g. Th...
Supported by Shanxi Natural Science Foundation(20031067)~~
The Chinese cabbage seed used in this study was Xinfengkang 90. The tested seeds were treated with 1 000×g, 2 000×g and 4 000×g of hypergravity for 20, 40 and 60 min respectively. The Chinese cabbage leaves were co...