...
首页> 外文期刊>Planetary and space science >Experimental study on compression property of regolith analogues
【24h】

Experimental study on compression property of regolith analogues

机译:Regolith类似物压缩特性的实验研究

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

AbstractThe compression property of regolith reflects the strength and porosity of the regolith layer on small bodies and their variations in the layer that largely influence the collisional and thermal evolution of the bodies. We conducted compression experiments and investigated the relationship between the porosity and the compression using fluffy granular samples. We focused on a low-pressure and high-porosity regime. We used tens of μm-sized irregular and spherical powders as analogs of porous regolith. The initial porosity of the samples ranged from 0.80 to 0.53. The uniaxial pressure applied to the samples lays in the range from 30 to 4 × 105 Pa. The porosity of the samples remained at their initial values below a threshold pressure and then decreased when the pressure exceeded the threshold. We defined this uniaxial pressure at the threshold as “yield strength”. The yield strength increased as the initial porosity of a sample decreased. The yield strengths of samples consisting of irregular particles did not significantly depend on their size distributions when the samples had the same initial porosity. We compared the results of our experiments with a previously proposed theoretical model. We calculated the average interparticle force acting on contact points of constituent particles under the uniaxial pressure of yield strength using the theoretical model and compared it with theoretically estimated forces required to roll or slide the particles. The calculated interparticle force was larger than the rolling friction force and smaller than the sliding friction force. The yield strength of regolith may be constrained by these forces. Our results may be useful for planetary scientists to estimate the depth above which the porosity of a regolith layer is almost equal to that of the regolith surface and to interpret the compression property of an asteroid surface obtained by a lander.HighlightsWe conducted compression experiments using analogs of porous regolith.We focused on a low-pressure and high-porosity regime of the compression curves.The porosity of the samples remained almost unchanged below a threshold pressure.The threshold may be constrained by theoretical interparticle forces.This constraint may be useful to estimate the compressive property of regolith.
机译: 摘要 regolith的压缩特性反映了小物体上regolith层的强度和孔隙率,以及它们在很大程度上影响碰撞的层中的变化。和身体的热演化。我们进行了压缩实验,并研究了蓬松颗粒状样品的孔隙率与压缩之间的关系。我们专注于低压和高孔隙度的情况。我们使用了数十μm大小的不规则和球形粉末作为多孔灰泥的类似物。样品的初始孔隙度为0.80至0.53。施加到样品上的单轴压力范围为30至4×10 5 Pa。样品的孔隙率保持在其初始值低于阈值压力以下然后在压力超过阈值时降低。我们将该阈值下的单轴压力定义为“屈服强度”。屈服强度随样品的初始孔隙率降低而增加。当样品具有相同的初始孔隙率时,由不规则颗粒组成的样品的屈服强度并不明显取决于其尺寸分布。我们将实验结果与先前提出的理论模型进行了比较。我们使用理论模型计算了在屈服强度的单轴压力下作用于组成颗粒接触点的平均颗粒间力,并将其与滚动或滑动颗粒所需的理论估算力进行了比较。计算出的粒子间力大于滚动摩擦力且小于滑动摩擦力。这些因素可能会限制硬石膏的屈服强度。我们的研究结果可能对行星科学家估计深度而言,在该深度之上,硬砾石层的孔隙率几乎等于硬砾石表面的孔隙率,并解释着陆器获得的小行星表面的压缩特性。 突出显示 我们使用多孔灰泥的类似物进行了压缩实验。 / ce:para> 我们重点研究了压缩曲线的低压和高孔隙率状态。 样品的孔隙率在下面基本保持不变阈值压力。 阈值可能受到理论上的粒子间作用力的限制。 •< / ce:label> 此约束对于估计regolith的压缩特性可能有用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号